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Применить Всего найдено 9416. Отображено 100.
16-01-1995 дата публикации

Устройство для весового дискретного дозирования сыпучих или текучих материалов

Номер: RU0000000200U1

Устройство для весового дискретного дозирования сыпучих или текучих материалов, содержащее корпус, имеющий по меньшей мере один канал для подачи дозируемого материала, а также питатель, грузоприемный контейнер в виде не менее одной емкости с разгрузочным клапаном, силоизмерительный датчик с вертикальной осью чувствительности, отличающееся тем, что силоизмерительный датчик расположен над грузоприемным контейнером и сливным отверстием канала для подачи дозируемого материала так, что его ось чувствительности проходит через центр тяжести контейнера, а подвижная часть выполнена в виде закрепленной на грузоприемном контейнере рамы, охватывающей корпус и измерительный датчик и взаимодействующей с контактным элементом датчика, а также связана с возможностью вертикальных перемещений со стойкой корпуса посредством по меньшей мере трех горизонтальных пружинящих устройств, например соединительных звеньев с плоскопружинными шарнирами, образующих пространственный параллелограммный механизм, охватывающий силоизмерительный датчик таким образом, что контактный элемент датчика располагается в центре инерции воображаемого многоугольника с вершинами в шарнирах пружинящих устройств в местах их соединения с подвижной частью. (19) RU (11) (13) 200 U1 (51) МПК G01G 21/23 (1995.01) G01G 21/24 (1995.01) G01G 01/26 (1995.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 93013380/10, 15.03.1993 (46) Опубликовано: 16.01.1995 (71) Заявитель(и): Вагин В.А., Волосников А.В., Кудрявцев А.Г. R U (72) Автор(ы): Вагин В.А., Волосников А.В., Кудрявцев А.Г. (73) Патентообладатель(и): Кудрявцев Александр Георгиевич Ñòðàíèöà: 1 U 1 2 0 0 R U U 1 (57) Формула полезной модели Устройство для весового дискретного дозирования сыпучих или текучих материалов, содержащее корпус, имеющий по меньшей мере один канал для подачи дозируемого материала, а также питатель, грузоприемный контейнер в виде не менее одной емкости с разгрузочным клапаном, ...

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27-01-2002 дата публикации

ОПОРНЫЙ МОДУЛЬ ТЕНЗОМЕТРИЧЕСКИХ ПЛАТФОРМЕННЫХ ВЕСОВ

Номер: RU0000021657U1
Автор: Чернов В.П.

1. Опорный модуль тензометрических платформенных весов, содержащий шарик, размещенный между опорными поверхностями, отличающийся тем, что опорные поверхности выполнены в виде чашек с вогнутой внутренней поверхностью конической формы и с отогнутыми по периметру краями, края чашек скреплены резиновой обечайкой с возможностью смещения чашек относительно друг друга, а шарик выполнен с диаметром, превышающим суммарную глубину чашек, для обеспечения постоянного контакта с чашками. 2. Опорный модуль по п.1, отличающийся тем, что верхняя чашка снабжена шпилькой в виде стержня с наружной резьбой. 3. Опорный модуль по п.1, отличающийся тем, что он снабжен корпусом в виде чашки. 4. Опорный модуль по п. 1, отличающийся тем, что чашки выполнены путем штамповки. 5. Опорный модуль по п. 1, отличающийся тем, что чашки выполнены литыми. (19) RU (11) 21 657 (13) U1 (51) МПК G01G 21/23 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2001125632/20 , 20.09.2001 (24) Дата начала отсчета срока действия патента: 20.09.2001 (46) Опубликовано: 27.01.2002 (72) Автор(ы): Чернов В.П. (73) Патентообладатель(и): Чернов Владимир Петрович R U Адрес для переписки: 191187, Санкт-Петербург, а/я 578, патентная служба (71) Заявитель(и): Чернов Владимир Петрович 2 1 6 5 7 R U Ñòðàíèöà: 1 U 1 (57) Формула полезной модели 1. Опорный модуль тензометрических платформенных весов, содержащий шарик, размещенный между опорными поверхностями, отличающийся тем, что опорные поверхности выполнены в виде чашек с вогнутой внутренней поверхностью конической формы и с отогнутыми по периметру краями, края чашек скреплены резиновой обечайкой с возможностью смещения чашек относительно друг друга, а шарик выполнен с диаметром, превышающим суммарную глубину чашек, для обеспечения постоянного контакта с чашками. 2. Опорный модуль по п.1, отличающийся тем, что верхняя чашка снабжена шпилькой в виде стержня с наружной резьбой. 3. Опорный модуль по п.1 ...

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27-10-2002 дата публикации

МОДУЛЬНЫЕ ВЕСЫ

Номер: RU0000025936U1

1. Модульные весы, содержащие грузоприемные балки, попарно соединенные струнками и посредством узлов опоры связанные с весовыми модулями, закрепленными на фундаменте, весовой терминал, отличающиеся тем, что весовые модули выполнены в виде герметичных фундаментных стоек с установленными в них тензодатчиками, а узлы опоры образованы кардановыми подвесами. 2. Весы по п.1, отличающиеся тем, что грузоприемные балки оборудованы ограничителями груза, связанными с полками грузоприемных балок через резиновые прокладки. 3. Весы по п.1, отличающиеся тем, что грузоприемная платформа образована настилом из прокатного профиля, нежестко закрепленного на накладках грузоприемных балок. (19) RU (11) 25 936 (13) U1 (51) МПК G01G 21/00 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2002110571/20 , 23.04.2002 (24) Дата начала отсчета срока действия патента: 23.04.2002 (46) Опубликовано: 27.10.2002 (72) Автор(ы): Драчук П.Э., Драчук Э.Ф. (73) Патентообладатель(и): Драчук Павел Эвальдович, Драчук Эвальд Федорович U 1 2 5 9 3 6 R U Ñòðàíèöà: 1 U 1 (57) Формула полезной модели 1. Модульные весы, содержащие грузоприемные балки, попарно соединенные струнками и посредством узлов опоры связанные с весовыми модулями, закрепленными на фундаменте, весовой терминал, отличающиеся тем, что весовые модули выполнены в виде герметичных фундаментных стоек с установленными в них тензодатчиками, а узлы опоры образованы кардановыми подвесами. 2. Весы по п.1, отличающиеся тем, что грузоприемные балки оборудованы ограничителями груза, связанными с полками грузоприемных балок через резиновые прокладки. 3. Весы по п.1, отличающиеся тем, что грузоприемная платформа образована настилом из прокатного профиля, нежестко закрепленного на накладках грузоприемных балок. 2 5 9 3 6 (54) МОДУЛЬНЫЕ ВЕСЫ R U Адрес для переписки: 454048, г.Челябинск, ул. Воровского, 52а, кв.2, Э.Ф. Драчуку (71) Заявитель(и): Драчук Павел Эвальдович, Драчук Эвальд ...

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10-11-2002 дата публикации

ПЛАТФОРМЕННЫЕ ВЕСЫ

Номер: RU0000026126U1
Автор: Смирнов М.Ю.

Платформенные весы, содержащие грузоприемное устройство в виде платформы, тензодатчики балочного типа, регулируемые опоры с фиксацией, устройство вывода информации, отличающиеся тем, что тензодатчики балочного типа установлены по углам платформы и ориентированы вдоль ее диагоналей к геометрическому центру. (19) RU (11) 26 126 (13) U1 (51) МПК G01G 21/00 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2002105737/20 , 05.03.2002 (24) Дата начала отсчета срока действия патента: 05.03.2002 (71) Заявитель(и): Общество с ограниченной ответственностью "ПетВес" (72) Автор(ы): Смирнов М.Ю. Адрес для переписки: 198099, Санкт-Петербург, ул. Промышленная, 19, к.31, а/я 99, ООО "ПетВес" (73) Патентообладатель(и): Общество с ограниченной ответственностью "ПетВес" (57) Формула полезной модели Платформенные весы, содержащие грузоприемное устройство в виде платформы, тензодатчики балочного типа, регулируемые опоры с фиксацией, устройство вывода информации, отличающиеся тем, что тензодатчики балочного типа установлены по углам платформы и ориентированы вдоль ее диагоналей к геометрическому центру. 2 6 1 2 6 (54) ПЛАТФОРМЕННЫЕ ВЕСЫ R U (46) Опубликовано: 10.11.2002 R U 2 6 1 2 6 U 1 U 1 Ñòðàíèöà: 1 U 1 U 1 2 6 1 2 6 2 6 1 2 6 R U R U Ñòðàíèöà: 2 RU 26 126 U1 RU 26 126 U1 RU 26 126 U1 RU 26 126 U1 RU 26 126 U1 RU 26 126 U1

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10-12-2002 дата публикации

УДАРОПРОЧНОЕ ВЕСОИЗМЕРИТЕЛЬНОЕ УСТРОЙСТВО

Номер: RU0000026649U1
Автор:

1. Ударопрочное весоизмерительное устройство, содержащее грузоприемную платформу в виде верхней и нижней рам с демпфирующими узлами между ними, опирающуюся на стойки основания через узлы встройки с тензодатчиками, соединенными кабелями с весовым терминалом, отличающееся тем, что на стойках основания закреплены кронштейны с резьбами, в которых установлены с возможностью поворота до контакта с пятками верхней рамы упорные болты с контргайками. 2. Устройство по п.1, отличающееся тем, что демпфирующие узлы выполнены в виде пружин, закрепленных шпильками на бобышках на верхней и нижней рамах. (19) RU (11) 26 649 (13) U1 (51) МПК G01G 21/12 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2002105099/20 , 26.02.2002 (24) Дата начала отсчета срока действия патента: 26.02.2002 (46) Опубликовано: 10.12.2002 (73) Патентообладатель(и): Закрытое акционерное общество "Эталон-прибор" R U Адрес для переписки: 454048, г.Челябинск, ул. Энтузиастов, 6-А, ЗАО "Эталон-прибор", М.С. Гололобову (71) Заявитель(и): Закрытое акционерное общество "Эталон-прибор" 2 6 6 4 9 R U Ñòðàíèöà: 1 U 1 (57) Формула полезной модели 1. Ударопрочное весоизмерительное устройство, содержащее грузоприемную платформу в виде верхней и нижней рам с демпфирующими узлами между ними, опирающуюся на стойки основания через узлы встройки с тензодатчиками, соединенными кабелями с весовым терминалом, отличающееся тем, что на стойках основания закреплены кронштейны с резьбами, в которых установлены с возможностью поворота до контакта с пятками верхней рамы упорные болты с контргайками. 2. Устройство по п.1, отличающееся тем, что демпфирующие узлы выполнены в виде пружин, закрепленных шпильками на бобышках на верхней и нижней рамах. 2 6 6 4 9 U 1 (54) УДАРОПРОЧНОЕ ВЕСОИЗМЕРИТЕЛЬНОЕ УСТРОЙСТВО RU 26 649 U1 RU 26 649 U1 RU 26 649 U1 RU 26 649 U1 RU 26 649 U1 RU 26 649 U1 RU 26 649 U1 RU 26 649 U1

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10-12-2005 дата публикации

ГРУЗОПРИЕМНОЕ УСТРОЙСТВО

Номер: RU0000049986U1

Грузоприемное устройство, содержащее платформу, опоры с датчиками, фиксаторы, отличающееся тем, что фиксаторы выполнены в виде жестко связанных с низом платформы кронштейнов с отверстием для установки болта с шайбами, закрепляемого в теле корпуса, в котором расположен вкладыш с возможностью контакта с пальцем, установленного в корпусе на вкладышах и жестко связанного с основанием. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 49 986 (13) U1 (51) МПК G01G 21/00 (2000.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2005106864/22 , 14.03.2005 (24) Дата начала отсчета срока действия патента: 14.03.2005 (45) Опубликовано: 10.12.2005 (72) Автор(ы): Пономарев В.В. (RU) Адрес для переписки: 440600, г.Пенза, ул. Кирова, 67, кв.46, пат.пов. В.Н.Королеву, рег.№ 564 U 1 4 9 9 8 6 R U Ñòðàíèöà: 1 U 1 Формула полезной модели Грузоприемное устройство, содержащее платформу, опоры с датчиками, фиксаторы, отличающееся тем, что фиксаторы выполнены в виде жестко связанных с низом платформы кронштейнов с отверстием для установки болта с шайбами, закрепляемого в теле корпуса, в котором расположен вкладыш с возможностью контакта с пальцем, установленного в корпусе на вкладышах и жестко связанного с основанием. 4 9 9 8 6 (54) ГРУЗОПРИЕМНОЕ УСТРОЙСТВО R U (73) Патентообладатель(и): Закрытое акционерное общество "ИЗМЕРИТЕЛЬНАЯ ТЕХНИКА" (RU) RU 5 10 15 20 25 30 35 40 45 50 49 986 U1 Предполагаемая полезная модель относится к весоизмерительной технике и может быть использовано в весах, весовых установках для измерения масс, в конструкциях платформенных и мостовых весов. Известен компенсатор погрешности весов, изложенный в а.с. СССР №522419, МКИ G 01 G 21/00. Он содержит грузоприемное устройство, установленное на коромысле весов с возможностью перемещения относительно данного коромысла, и фиксатор положения грузоприемного устройства, причем грузоприемное устройство выполнено в виде рычага, установленного на оси ...

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27-01-2006 дата публикации

ВЕСОИЗМЕРИТЕЛЬНОЕ УСТРОЙСТВО

Номер: RU0000051206U1

Весоизмерительное устройство, содержащее грузоприемную платформу в виде верхней и нижней рам с демпфирующими узлами между ними, основание, установленные на основании и связанные с нижней плитой узлы тензодатчиков, выходы которых соединены с весовым терминалом, предохранительные упоры, отличающееся тем, что оно снабжено дополнительно односторонними амортизаторами, имеющими шарнирное соединение с верхней и нижней рамами. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 51 206 (13) U1 (51) МПК G01G 21/10 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2005126734/22 , 23.08.2005 (24) Дата начала отсчета срока действия патента: 23.08.2005 (45) Опубликовано: 27.01.2006 (72) Автор(ы): Величко Владимир Иванович (RU), Гололобов Михаил Станиславович (RU), Лосев Анатолий Васильевич (RU) Адрес для переписки: 454048, г.Челябинск, ул. Энтузиастов, 6а, ЗАО "Эталон Веспром" U 1 5 1 2 0 6 R U Ñòðàíèöà: 1 U 1 Формула полезной модели Весоизмерительное устройство, содержащее грузоприемную платформу в виде верхней и нижней рам с демпфирующими узлами между ними, основание, установленные на основании и связанные с нижней плитой узлы тензодатчиков, выходы которых соединены с весовым терминалом, предохранительные упоры, отличающееся тем, что оно снабжено дополнительно односторонними амортизаторами, имеющими шарнирное соединение с верхней и нижней рамами. 5 1 2 0 6 (54) ВЕСОИЗМЕРИТЕЛЬНОЕ УСТРОЙСТВО R U (73) Патентообладатель(и): Закрытое акционерное общество "Эталон Веспром" (RU) U 1 U 1 5 1 2 0 6 5 1 2 0 6 R U R U Ñòðàíèöà: 2 RU 5 10 15 20 25 30 35 40 45 50 51 206 U1 Изобретение относится к весоизмерительной технике, в частности к конструкциям весов с грузоприемной платформой, и может быть использовано преимущественно в тяжелой промышленности, для которой характерны перегрузки ударного типа. Известно весоизмерительное устройство, содержащее две опорные плиты, между которыми размещены два ряда роликоопор, ...

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27-07-2006 дата публикации

РУЧНЫЕ ЭЛЕКТРОННЫЕ ВЕСЫ

Номер: RU0000055125U1

1. Ручные электронные весы с автономным электропитанием, содержащий корпус со встроенными в него электромеханическим преобразователем силы, микропроцессорным устройством, выведенные на лицевую панель корпуса цифровые, операционные и функциональные клавиши, а также индикаторы цены, массы и стоимости, отличающиеся тем, что, с целью повышения функциональных возможностей, на лицевой панели корпуса имеются клавиша фиксации показаний индикаторов, клавиши, активизирующие каждый из индикаторов, соответствующее ему запоминающее устройство и операционную клавишу сложения, и клавиши ввода содержимого индикаторов в память и вывода его из памяти в индикатор. 2. Ручные электронные весы по п.1, отличающиеся тем, что на лицевой панели корпуса имеется клавиша включения-выключения режима калькулятора. 3. Ручные электронные весы по п.1, отличающиеся тем, что, с целью повышения надежности и удобства процедуры взвешивания, часть корпуса весов имеет рельеф, который отвечает рельефу полусогнутой кисти руки. 4. Ручные электронные весы по п.1, отличающиеся тем, что в корпусе весов имеется по крайней мере одно овальное отверстие для пальцев кисти руки. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 55 125 (13) U1 (51) МПК G01G 21/28 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2006104680/22 , 15.02.2006 (24) Дата начала отсчета срока действия патента: 15.02.2006 (45) Опубликовано: 27.07.2006 (72) Автор(ы): Завьялов Виктор Дмитриевич (RU) (73) Патентообладатель(и): Завьялов Виктор Дмитриевич (RU) U 1 5 5 1 2 5 R U Ñòðàíèöà: 1 U 1 Формула полезной модели 1. Ручные электронные весы с автономным электропитанием, содержащий корпус со встроенными в него электромеханическим преобразователем силы, микропроцессорным устройством, выведенные на лицевую панель корпуса цифровые, операционные и функциональные клавиши, а также индикаторы цены, массы и стоимости, отличающиеся тем, что, с целью повышения ...

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10-05-2007 дата публикации

УДАРОПРОЧНЫЕ ВЕСЫ

Номер: RU0000063058U1

1. Ударопрочные весы, содержащие грузоприемную платформу, опирающуюся через демпфирующие узлы на тензодатчики, установленные на основание и скоммутированные с весовым терминалом, упорные болты с контргайками с возможностью поворота до контакта с нагруженной грузоприемной платформой, отличающиеся тем, что каждый демпфирующий узел выполнен в виде двух стаканов с донышками, общей пружиной и соединительной осью, а упорные болты с контргайками вынесены на углы грузоприемной платформы. 2. Весы по п.1, отличающиеся тем, что демпфирующие узлы через опорные звенья соединены с тензодатчиками балочного типа, причем под опорными звеньями на основании установлены регулируемые ограничители хода. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 63 058 (13) U1 (51) МПК G01G 21/12 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2006145042/22 , 18.12.2006 (24) Дата начала отсчета срока действия патента: 18.12.2006 (45) Опубликовано: 10.05.2007 (73) Патентообладатель(и): Закрытое акционерное общество "Бизнес Контрол" (RU) U 1 6 3 0 5 8 R U Ñòðàíèöà: 1 U 1 Формула полезной модели 1. Ударопрочные весы, содержащие грузоприемную платформу, опирающуюся через демпфирующие узлы на тензодатчики, установленные на основание и скоммутированные с весовым терминалом, упорные болты с контргайками с возможностью поворота до контакта с нагруженной грузоприемной платформой, отличающиеся тем, что каждый демпфирующий узел выполнен в виде двух стаканов с донышками, общей пружиной и соединительной осью, а упорные болты с контргайками вынесены на углы грузоприемной платформы. 2. Весы по п.1, отличающиеся тем, что демпфирующие узлы через опорные звенья соединены с тензодатчиками балочного типа, причем под опорными звеньями на основании установлены регулируемые ограничители хода. 6 3 0 5 8 (54) УДАРОПРОЧНЫЕ ВЕСЫ R U Адрес для переписки: 454048, г.Челябинск, ул. Энтузиастов, 6А, ЗАО "Бизнес Контрол", директору А.В. Лосеву ( ...

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27-06-2007 дата публикации

МОДУЛЬНЫЕ ВЕСЫ

Номер: RU0000064362U1

1. Модульные весы, содержащие грузоприемную платформу, установленную на основания через весовые модули с тензодатчиками, связанными с весовым терминалом, отличающиеся тем, что весовые модули выполнены каждый на трех тензодатчиках, образующих треугольник опоры. 2. Весы по п.1, отличающиеся тем, что силовые контакты грузоприемной платформы с крышками весовых модулей выполнены наваркой прутков по проекциям линий, соединяющим центры головок тензодатчиков. 3. Весы по п.1, отличающиеся тем, что силовые контакты грузоприемной платформы с крышками весовых модулей выполнены наваркой угольников на крышки весовых модулей по ширине весов, причем расстояния от вершины угольников до линии, соединяющей два тензодатчика, и до вершины третьего тензодатчика относятся, как 1:2. 4. Весы по п.1, отличающиеся тем, что крышки весовых модулей снабжены демпфирующими пружинами, расположенными по осям тензодатчиков и стянутыми шпильками. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 64 362 (13) U1 (51) МПК G01G 21/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2007104531/22 , 05.02.2007 (24) Дата начала отсчета срока действия патента: 05.02.2007 (45) Опубликовано: 27.06.2007 (73) Патентообладатель(и): ЗАКРЫТОЕ АКЦИОНЕРНОЕ ОБЩЕСТВО "Бизнес Контрол" (RU) U 1 6 4 3 6 2 R U Ñòðàíèöà: 1 U 1 Формула полезной модели 1. Модульные весы, содержащие грузоприемную платформу, установленную на основания через весовые модули с тензодатчиками, связанными с весовым терминалом, отличающиеся тем, что весовые модули выполнены каждый на трех тензодатчиках, образующих треугольник опоры. 2. Весы по п.1, отличающиеся тем, что силовые контакты грузоприемной платформы с крышками весовых модулей выполнены наваркой прутков по проекциям линий, соединяющим центры головок тензодатчиков. 3. Весы по п.1, отличающиеся тем, что силовые контакты грузоприемной платформы с крышками весовых модулей выполнены наваркой угольников на крышки ...

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27-10-2007 дата публикации

УДАРОСТОЙКИЕ ВЕСЫ

Номер: RU0000067710U1

1. Ударостойкие весы, содержащие грузоприемную платформу, опирающуюся через защитные блоки на тензодатчики, установленные на основание и скоммутированные с весовым терминалом, отличающиеся тем, что каждый защитный блок выполнен в виде двух обращенных друг к другу полостей, внутри которых расположен демпфирующий элемент, причем одна полость закреплена на грузоприемной платформе, а другая связана с силоприемным устройством тензодатчика. 2. Весы по п.1, отличающиеся тем, что в качестве демпфирующего элемента использована витая или тарельчатая пружина. 3. Весы по п.1, отличающиеся тем, что в качестве демпфирующего элемента применен набор из чередующихся металлических и резиновых пластин. 4. Весы по п.1, отличающиеся тем, что демпфирующим элементом является резиновый или пластиковый вкладыш. 5. Весы по п.1, отличающиеся тем, что демпфирующий элемент представляет собой нарезку резиновых или пластиковых трубок. 6. Весы по п.1, отличающиеся тем, что демпфирующим элементом являются наполненные газом или жидкостью герметичные резиновые или пластиковые объемы. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 67 710 (13) U1 (51) МПК G01G 21/12 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2007122266/22 , 13.06.2007 (24) Дата начала отсчета срока действия патента: 13.06.2007 (45) Опубликовано: 27.10.2007 (73) Патентообладатель(и): ЗАКРЫТОЕ АКЦИОНЕРНОЕ ОБЩЕСТВО "Бизнес Контрол" (RU) Ñòðàíèöà: 1 U 1 6 7 7 1 0 R U U 1 Формула полезной модели 1. Ударостойкие весы, содержащие грузоприемную платформу, опирающуюся через защитные блоки на тензодатчики, установленные на основание и скоммутированные с весовым терминалом, отличающиеся тем, что каждый защитный блок выполнен в виде двух обращенных друг к другу полостей, внутри которых расположен демпфирующий элемент, причем одна полость закреплена на грузоприемной платформе, а другая связана с силоприемным устройством тензодатчика. 2. Весы по п.1, ...

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10-02-2009 дата публикации

УДАРОПРОЧНЫЕ ВЕСЫ

Номер: RU0000080562U1

1. Ударопрочные весы, содержащие грузоприемную платформу, опирающуюся через демпфирующие узлы и опорные звенья на тензодатчики, установленные на основании и скоммутированные с весовым терминалом, регулируемые ограничители перемещения платформы в вертикальной плоскости, которые вынесены на углы грузоприемной платформы, отличающиеся тем, что демпфирующий узел выполнен в виде стакана и плунжера, входящего в стакан с образованием полости, внутри которой расположен демпфирующий элемент, а на основании выполнены регулируемые ограничители перемещений платформы в горизонтальной плоскости. 2. Ударопрочные весы по п.1, отличающиеся тем, что в качестве демпфирующего элемента применен набор резиновых пластин и металлических элементов, выполненных в виде соединения пластины с полусферой, соприкасающейся с резиновой пластиной, объем которой на 15-20% больше металлического элемента. 3. Ударопрочные весы по пп.1 и 2, отличающиеся тем, что опорные звенья выполнены в виде маятниковой опоры. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 80 562 U1 (51) МПК G01G 21/12 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2008133170/22, 12.08.2008 (24) Дата начала отсчета срока действия патента: 12.08.2008 (45) Опубликовано: 10.02.2009 (73) Патентообладатель(и): Общество с ограниченной ответственностью "Авитек-Плюс" (RU) U 1 8 0 5 6 2 R U Ñòðàíèöà: 1 ru CL U 1 Формула полезной модели 1. Ударопрочные весы, содержащие грузоприемную платформу, опирающуюся через демпфирующие узлы и опорные звенья на тензодатчики, установленные на основании и скоммутированные с весовым терминалом, регулируемые ограничители перемещения платформы в вертикальной плоскости, которые вынесены на углы грузоприемной платформы, отличающиеся тем, что демпфирующий узел выполнен в виде стакана и плунжера, входящего в стакан с образованием полости, внутри которой расположен демпфирующий элемент, а на основании выполнены регулируемые ...

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27-10-2011 дата публикации

УДАРОПРОЧНОЕ ВЕСОИЗМЕРИТЕЛЬНОЕ УСТРОЙСТВО

Номер: RU0000109852U1

1. Ударопрочное весоизмерительное устройство, содержащее грузоприемную платформу в виде верхней и нижней рам с демпфирующими узлами между ними, основание, установленные на основании узлы встройки тензодатчиков, соединенные с весовым терминалом, предохранительные упоры, отличающееся тем, что дополнительный демпфирующий узел размещен последовательно с основным демпфирующим узлом тензодатчика. 2. Ударопрочное весоизмерительное устройство по п.1, отличающееся тем, что собственную частоту дополнительного демпфирующего узла устанавливают в пределах от 2,5 до 4 раз больше собственной частоты основного демпфирующего узла. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 109 852 U1 (51) МПК G01G 21/10 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2009142193/28, 16.11.2009 (24) Дата начала отсчета срока действия патента: 16.11.2009 (72) Автор(ы): Платонов Александр Львович (RU) Приоритет(ы): (22) Дата подачи заявки: 16.11.2009 (45) Опубликовано: 27.10.2011 Бюл. № 30 1 0 9 8 5 2 R U Формула полезной модели 1. Ударопрочное весоизмерительное устройство, содержащее грузоприемную платформу в виде верхней и нижней рам с демпфирующими узлами между ними, основание, установленные на основании узлы встройки тензодатчиков, соединенные с весовым терминалом, предохранительные упоры, отличающееся тем, что дополнительный демпфирующий узел размещен последовательно с основным демпфирующим узлом тензодатчика. 2. Ударопрочное весоизмерительное устройство по п.1, отличающееся тем, что собственную частоту дополнительного демпфирующего узла устанавливают в пределах от 2,5 до 4 раз больше собственной частоты основного демпфирующего узла. Стр.: 1 U 1 U 1 (54) УДАРОПРОЧНОЕ ВЕСОИЗМЕРИТЕЛЬНОЕ УСТРОЙСТВО 1 0 9 8 5 2 Адрес для переписки: 620077, г. Екатеринбург, а/я 127, ООО "АвитекПлюс" R U (73) Патентообладатель(и): Общество с ограниченной ответственностью "Авитек-Плюс" (RU) U 1 U 1 1 0 9 8 5 2 1 0 9 8 5 2 R U R ...

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27-02-2014 дата публикации

СИСТЕМА ИЗОЛЯЦИИ ЧУВСТВИТЕЛЬНЫХ К ВОЗДЕЙСТВИЮ ОКРУЖАЮЩЕЙ СРЕДЫ ЭЛЕМЕНТОВ ВЕСОВ ОТ НЕБЛАГОПРИЯТНЫХ ФАКТОРОВ ОКРУЖАЮЩЕЙ СРЕДЫ И ТЕХНОГЕННЫХ ФАКТОРОВ (ВАРИАНТЫ)

Номер: RU0000137970U1

1. Система изоляции чувствительных к воздействию окружающей среды элементов весов от неблагоприятных факторов окружающей среды и техногенных факторов, содержащая тензодатчики, помещенные в изолированный контур, отличающаяся тем, что внутри контура расположены каналы с функцией вентиляционного продува воздухом или для прокачки теплоносителя, либо хладагента, причем источником подачи воздуха по каналам или прокачки теплоносителя, либо хладагента служит климатический модуль контроля, выполненный с возможностью анализа температуры воздуха и его влажности, либо анализа только температуры, а также приведения воздуха или теплоносителя, либо хладагента к заданным нормируемым значениям температуры и влажности или только температуры, который в свою очередь соединен воздушными каналами с изолирующими контурами тензодатчиков, имеющих отверстия с функцией вывода воздуха обратно в окружающую среду, либо каналы замыкания системы на климатический модуль контроля. 2. Система изоляции по п.1, отличающаяся тем, что климатический модуль контроля соединен воздушным каналом с изолирующим контуром сводящей коробки, которая в свою очередь соединена воздушными каналами с изолирующими контурами тензодатчиков. 3. Система изоляции по п.1, отличающаяся тем, что контур выполнен с возможностью изоляции тензодатчиков от протекания недопустимых токов посредством установки теплоизоляционных диэлектрических крышек. 4. Система изоляции по п.1, отличающаяся тем, что климатический модуль контроля оснащен системой управления, в автоматическом режиме регулирующей параметры климатического модуля, и выполненной с возможностью при отсутствии необходимости регулирования параметров окружающей среды выключения полностью либо частично в климатическом модуле систем приведения температуры и влажности к нормированным значениям. 5. Система изоляции по п.1, отличающаяся тем, что климатический модуль контроля оснащен воздушным фильтром. 6. Система изоляции чувствительных к воздействию окружающей среды элементов весов ...

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20-07-2014 дата публикации

САМОУСТАНАВЛИВАЮЩИЙСЯ УЗЕЛ ВСТРОЙКИ ДАТЧИКА СИЛЫ

Номер: RU0000143325U1

Самоустанавливающийся узел встройки датчика силы, снабженного верхней силовводящей и нижней опорной головками со сферическими силоприемными поверхностями, содержащий верхний силовводящий узел и нижний опорный узел, каждый из которых содержит центрирующее углубление с плоским дном, перпендикулярным линии действия измеряемой силы, в центрирующих углублениях верхнего силовводящего узла и нижнего опорного узла размещены верхняя силовводящая и нижняя опорная головки соответственно, отличающийся тем, что, с целью повышения точности путем улучшения центрирования измеряемой силы при самоустановке, боковые поверхности центрирующих углублений в верхнем силовводящем и нижнем опорных узлах выполнены в виде прямых круговых конических поверхностей с вершинами конусов, обращенными в сторону датчика силы, а боковые поверхности верхней силовводящей и нижней опорной головок со сферическими силоприемными поверхностями выполнены в виде прямых круговых конических поверхностей с вершинами конусов, обращенными в сторону датчика силы, при этом максимальный диаметр каждой конической поверхности на боковых поверхностях верхней силовводящей и нижней опорной головок со сферическими силоприемными поверхностями больше минимального диаметра каждой прямой круговой конической поверхности, выполненных в верхнем силовводящем и нижнем опорном узлах соответственно. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 143 325 U1 (51) МПК G01G 21/06 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2014108007/28, 04.03.2014 (24) Дата начала отсчета срока действия патента: 04.03.2014 (72) Автор(ы): Годзиковский Василий Александрович (RU), Сенянский Михаил Васильевич (RU) (45) Опубликовано: 20.07.2014 Бюл. № 20 1 4 3 3 2 5 R U Формула полезной модели Самоустанавливающийся узел встройки датчика силы, снабженного верхней силовводящей и нижней опорной головками со сферическими силоприемными поверхностями, содержащий верхний силовводящий узел и нижний ...

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29-05-2017 дата публикации

УНИВЕРСАЛЬНЫЕ ВЕСЫ

Номер: RU0000171357U1

Полезная модель относится к весоизмерительной технике и может быть использована для взвешивания различных сыпучих грузов (песок, цемент, комбикорм и т.д.) и жидких грузов. Весы содержат три регулируемые по высоте опоры, горизонтальную площадку, тензодатчик и панель управления, включающую блок управления, кнопки и дисплей. Регулируемые по высоте опоры соединены между собой двумя поперечными дугообразными балками, образуя жесткую пространственную раму. Горизонтальная площадка размещена сверху центральной, регулируемой по высоте опоры. На площадке установлены опоры подшипников с подшипниками. На подшипниках установлена труба. Труба имеет возможность вращения и фиксации. Внутри трубы закреплен тензодатчик, жестко соединенный с кольцом, в кольце закреплена тара для взвешиваемого груза. Тарой для взвешиваемого груза является ведро или мешок. Фиксатор трубы выполнен в виде болта с барашком, который вкручивается в резьбовое отверстие планки, вертикально закрепленной на горизонтальной площадке. Регулируемые по высоте опоры имеют неподвижную наружную часть и подвижную внутреннюю часть, которая фиксируется внутри наружной части с помощью болта с барашком через резьбовое отверстие в наружной части опоры. Неподвижная наружная часть регулируемых опор, поперечные дугообразные балки, горизонтальная площадка и планка выполнены из металла и соединены с помощью сварки. Технический результат заключается в возможности дозирования взвешиваемого груза по весу без прерывания процесса взвешивания. 3 ил. И 1 171357 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ 7 ВУ” 171 357 414 ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ИЗВЕЩЕНИЯ К ПАТЕНТУ НА ПОЛЕЗНУЮ МОДЕЛЬ ММ9К Досрочное прекращение действия патента из-за неуплаты в установленный срок пошлины за поддержание патента в силе Дата прекращения действия патента: 11.02.2019 Дата внесения записи в Государственный реестр: 18.12.2019 Дата публикации и номер бюллетеня: 18.12.2019 Бюл. №35 Стр.: 1 па ДАЕТ ЕП

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21-07-2017 дата публикации

ВЕСЫ ПРОТИВОУДАРНЫЕ

Номер: RU0000172724U1

Полезная модель относится к весоизмерительной технике и может применяться для взвешивания металлопроката, слябов и другой продукции металлургических предприятий. Весы включают основание, верхнюю и нижнюю рамы, пружины между верхней и нижней рамами, тензодатчики, установленные на основании и соединенные кабелями с весовым терминалом. В качестве узла встройки каждого тензодатчика между нижней рамой и тензодатчиком используется шарик, расположенный между двух чашек с вогнутыми сферическими поверхностями. При ударных нагрузках вертикальное перемещение верхней рамы на пружинах и горизонтальное перемещение нижней рамы на узлах встройки тензодатчиков ограничивается предохранительными упорами. Технический результат заключается в упрощении конструкции весов и возможности использования в ней балочных тензодатчиков. 1 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 172 724 U1 (51) МПК G01G 21/23 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21)(22) Заявка: 2017100683, 10.01.2017 (24) Дата начала отсчета срока действия патента: 10.01.2017 (72) Автор(ы): Гололобов Михаил Станиславович (RU), Лосев Анатолий Васильевич (RU) 21.07.2017 Приоритет(ы): (22) Дата подачи заявки: 10.01.2017 (56) Список документов, цитированных в отчете о поиске: RU 26649 U1 10.12.2002. RU 1 7 2 7 2 4 R U (54) ВЕСЫ ПРОТИВОУДАРНЫЕ (57) Реферат: Полезная модель относится к весоизмерительной технике и может применяться для взвешивания металлопроката, слябов и другой продукции металлургических предприятий. Весы включают основание, верхнюю и нижнюю рамы, пружины между верхней и нижней рамами, тензодатчики, установленные на основании и соединенные кабелями с весовым терминалом. В качестве узла встройки каждого тензодатчика между нижней рамой и тензодатчиком Стр.: 1 используется шарик, расположенный между двух чашек с вогнутыми сферическими поверхностями. При ударных нагрузках вертикальное перемещение верхней рамы на пружинах и горизонтальное перемещение нижней ...

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12-10-2017 дата публикации

ФУНДАМЕНТ ВЕСОВ, ИСПОЛЬЗУЕМЫХ ДЛЯ ВЗВЕШИВАНИЯ КОЛЕСНОГО ТРАНСПОРТА

Номер: RU0000174425U1

Заявленное устройство относится к весоизмерительной технике, а именно, к фундаментам весов для взвешивания колесного транспорта, таким как автомобильные весы или вагонные весы. Устройство содержит опоры для фундамента, на которых установлена площадка для приема взвешиваемого груза, причем между опорами и площадкой установлены датчики веса, отличающееся тем, что каждая из опор фундамента выполнена в виде набора связанных между собой стальных труб, которые укладывают рядами и друг на друга. Технический результат заключается в упрощении и облегчении конструкции, сокращении трудоемкости установки. 2 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 174 425 U1 (51) МПК G01G 21/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21)(22) Заявка: 2016142751, 01.11.2016 (24) Дата начала отсчета срока действия патента: 01.11.2016 (72) Автор(ы): Пащенко Александр Викторович (RU) (73) Патентообладатель(и): Пащенко Александр Викторович (RU) Дата регистрации: (56) Список документов, цитированных в отчете о поиске: CN 201653534 U, 24.11.2010. RU Приоритет(ы): (22) Дата подачи заявки: 01.11.2016 2229562 C1, 27.05.2004. RU 2310722 C2, 20.11.2007. R U 12.10.2017 (45) Опубликовано: 12.10.2017 Бюл. № 29 U 1 1 7 4 4 2 5 R U Стр.: 1 U 1 (54) ФУНДАМЕНТ ВЕСОВ, ИСПОЛЬЗУЕМЫХ ДЛЯ ВЗВЕШИВАНИЯ КОЛЕСНОГО ТРАНСПОРТА (57) Реферат: Заявленное устройство относится к отличающееся тем, что каждая из опор весоизмерительной технике, а именно, к фундамента выполнена в виде набора связанных фундаментам весов для взвешивания колесного между собой стальных труб, которые укладывают транспорта, таким как автомобильные весы или рядами и друг на друга. Технический результат вагонные весы. Устройство содержит опоры для заключается в упрощении и облегчении фундамента, на которых установлена площадка конструкции, сокращении трудоемкости для приема взвешиваемого груза, причем между установки. 2 ил. опорами и площадкой установлены датчики веса, 1 7 4 4 2 5 Адрес для ...

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21-02-2018 дата публикации

ГИРЯ

Номер: RU0000177413U1

Полезная модель относится к приборостроению, в частности, к весоизмерительной технике и может быть использована в качестве гири общего назначения, а также образцовой гири, преимущественно номинальной массой не более 20 кг. Задачей, на решение которой направлена заявляемая полезная модель, является создание конструкции гири, технологичной в изготовлении, надежной и удобной в эксплуатации и поверке. Гиря представляет собой корпус цилиндрической формы с подгоночной полостью, в верхней части корпуса выполнена эргономичная ручка, приподнятая над корпусом гири, выполненная вытянутой формы с утолщениями на концах. Внизу корпуса выполнена проточка круглой формы, при этом размер проточки подогнан под размер ручки, а в корпусе ниже ручки имеется подгоночная полость для удобной калибровки гири. 1 з.п. ф-лы, 3 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 177 413 U1 (51) МПК G01G 21/26 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК G01G 21/26 (2006.01) (21)(22) Заявка: 2016151029, 23.12.2016 (24) Дата начала отсчета срока действия патента: Дата регистрации: (73) Патентообладатель(и): Общество с ограниченной ответственностью "Промконструкция" (RU) 21.02.2018 (56) Список документов, цитированных в отчете о поиске: RU 54176 U1, 10.06.2006. RU 49618 (45) Опубликовано: 21.02.2018 Бюл. № 6 U1, 27.11.2005. CN 204594564, 26.08.2015. US 1094895 A1, 28.04.1914.. 1 7 7 4 1 3 R U (54) ГИРЯ (57) Реферат: Полезная модель относится к приборостроению, в частности, к весоизмерительной технике и может быть использована в качестве гири общего назначения, а также образцовой гири, преимущественно номинальной массой не более 20 кг. Задачей, на решение которой направлена заявляемая полезная модель, является создание конструкции гири, технологичной в изготовлении, надежной и удобной в эксплуатации и поверке. Гиря Стр.: 1 представляет собой корпус цилиндрической формы с подгоночной полостью, в верхней части корпуса выполнена эргономичная ...

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07-08-2018 дата публикации

Грузоприемное устройство автомобильных весов

Номер: RU0000182196U1

Заявленное устройство относится к весоизмерительной технике и может быть использовано в конструкциях платформенных и мостовых весов. Грузоприемное устройство выполнено в виде опоры, поверх которой расположен рифленый лист. Рифленый лист расположен поверх опор, выполненных из набора бывших в употреблении элементов труб, разрезанных на части, уложенных в ряд и соединенных сварным соединением. Технический результат заключается в сокращении материалоемкости, повышении надежности. 7 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 182 196 U1 (51) МПК G01G 21/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК G01G 21/00 (2006.01) (21)(22) Заявка: 2018108668, 13.03.2018 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель(и): Пащенко Александр Викторович (RU) Дата регистрации: 07.08.2018 (56) Список документов, цитированных в отчете о поиске: RU 49986 U1 10.12.2005. RU 174425 U1 12.10.2017. RU 142649 U1 27.06.2014. (45) Опубликовано: 07.08.2018 Бюл. № 22 Адрес для переписки: 127566, Москва, Высоковольтный пр-д, 1, корп. 3, кв. 192, пат. пов. Мохову Е.В., рег. N 1232 1 8 2 1 9 6 R U Стр.: 1 U 1 (54) ГРУЗОПРИЕМНОЕ УСТРОЙСТВО АВТОМОБИЛЬНЫХ ВЕСОВ (57) Реферат: Заявленное устройство относится к расположен поверх опор, выполненных из набора весоизмерительной технике и может быть бывших в употреблении элементов труб, использовано в конструкциях платформенных и разрезанных на части, уложенных в ряд и мостовых весов. Грузоприемное устройство соединенных сварным соединением. Технический выполнено в виде опоры, поверх которой результат заключается в сокращении расположен рифленый лист. Рифленый лист материалоемкости, повышении надежности. 7 ил. 1 8 2 1 9 6 Приоритет(ы): (22) Дата подачи заявки: 13.03.2018 U 1 R U 13.03.2018 (72) Автор(ы): Пащенко Александр Викторович (RU) U 1 U 1 1 8 2 1 9 6 1 8 2 1 9 6 R U R U Стр.: 2 RU 5 10 15 20 25 30 35 40 45 182 196 U1 Предполагаемая полезная модель относится к ...

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29-11-2018 дата публикации

ГИРЯ

Номер: RU0000185306U1

Предлагаемое техническое решение относится к приборостроению, в частности к весоизмерительной технике, и может быть использовано в качестве гири общего назначения, а также образцовой гири, преимущественно номинальной массой более 20 кг с платформенными, автомобильными весами и дозаторами. Задачей предлагаемого технического решения является создание конструкции гири, надежной и удобной при перемещении гири средствами механизации и исключение выхода из строя грузозахватного приспособления в процессе эксплуатации. Указанная задача достигается тем, что в гире, содержащей литой прямоугольный в плане корпус с грузозахватным элементом, в форме скобы, размещенной в центрально-симметричном пазу на верхней части корпуса, комплементарные фиксирующие элементы на верхней и нижней сторонах корпуса и подгоночное отверстие по длине корпуса, внутри которого располагается подгоночный материал, подгоночное отверстие выполнено в виде жесткой металлической трубы, грузозахватный элемент жестко соединен с наружной поверхностью металлической трубы, а подгоночное отверстие корпуса выполнено глухим с одной стороны. 1 з.п. ф-лы, 3 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 185 306 U1 (51) МПК G01G 21/26 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК G01G 21/26 (2006.01) (21)(22) Заявка: 2017142418, 05.12.2017 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель(и): Общество с ограниченной ответственностью "Промконструкция" (RU) Дата регистрации: 29.11.2018 U1, 10.06.2006. JP 2006226882 A, 31.08.2006. US 3997015 A1, 14.12.1976. (45) Опубликовано: 29.11.2018 Бюл. № 34 1 8 5 3 0 6 R U (54) ГИРЯ (57) Реферат: Предлагаемое техническое решение относится к приборостроению, в частности к весоизмерительной технике, и может быть использовано в качестве гири общего назначения, а также образцовой гири, преимущественно номинальной массой более 20 кг с платформенными, автомобильными весами и дозаторами. Задачей ...

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30-05-2019 дата публикации

ГИРЯ

Номер: RU0000189680U1

Полезная модель относится к приборостроению, в частности к весоизмерительной технике, и может быть использована в качестве гири общего назначения, а также образцовой гири, преимущественно номинальной массой от 500 кг до 5000 кг. Техническим результатом является создание конструкции гири, технологичной в изготовлении, имеющей высокую механическую прочность, безопасной в эксплуатации. Заявленная гиря содержит герметичный корпус, состоящий из листов металлического сплава параллелепипедной формы с утопленной в центре проушиной в верхней части корпуса, являющейся составной частью гири и выполненной из одного куска металла, с торцов гири имеются подгоночные полости, выполненные в виде цилиндра, соосные горизонтальной оси гири, закрывающиеся стальными крышками с уплотнительными кольцами, в верхней части корпуса имеются направляющие в виде усеченного конуса, расположенные симметрично вертикальной оси гири, в основании гири имеются выемки для направляющих, внутри корпуса находятся несколько секций, разделенных перегородками, данные секции заполняются металлом определенным способом, обеспечивающим безопасность при перемещении гири в ходе ее эксплуатации. 1 з.п. ф-лы, 1 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 189 680 U1 (51) МПК G01G 21/26 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК G01G 21/26 (2019.02) (21)(22) Заявка: 2019100649, 10.01.2019 (24) Дата начала отсчета срока действия патента: Дата регистрации: 30.05.2019 (45) Опубликовано: 30.05.2019 Бюл. № 16 1 8 9 6 8 0 R U (54) ГИРЯ (57) Реферат: Полезная модель относится к приборостроению, в частности к весоизмерительной технике, и может быть использована в качестве гири общего назначения, а также образцовой гири, преимущественно номинальной массой от 500 кг до 5000 кг. Техническим результатом является создание конструкции гири, технологичной в изготовлении, имеющей высокую механическую прочность, безопасной в эксплуатации. Заявленная гиря содержит ...

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18-06-2019 дата публикации

ГИРЯ

Номер: RU0000190080U1

Полезная модель относится к метрологическому оборудованию, используемому в весоповерочных вагонах, в частности к весоизмерительной технике, и может быть использована в качестве образцовой гири, преимущественно, номинальной массой 2000 кг. Технический результат полезной модели заключается в повышенной сбалансированности гири при ее перемещении и при складировании гирь одну на другую с помощью захвата за проушину в центральной части гири грузозахватным устройством, в том числе в отсутствии кренов на одну сторону, диагонального вывешивания и поворота относительно оси грузозахватного устройства. Гиря представляет собой параллелепипед, с грузозахватным элементом, в форме скобы, размещенным в центрально-симметричном сквозном канале в центре корпуса, комплементарные фиксирующие конусообразные элементы на верхней и нижней сторонах корпуса, с обеих сторон параллелепипеда в верхней части гири имеются подгоночные полости, закрытые крышками с пробками в нижней части, размер которых меньше размера крышки и соответствует размеру верхней части полости. 3 з.п. ф-лы, 2 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 190 080 U1 (51) МПК G01G 21/26 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК G01G 21/26 (2019.02) (21)(22) Заявка: 2019104323, 15.02.2019 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель(и): Общество с ограниченной ответственностью "СПЕЦАВТОИНЖИНИРИНГ" (RU) Дата регистрации: 18.06.2019 (56) Список документов, цитированных в отчете о поиске: SU 723389 A1, 25.03.1980. RU (45) Опубликовано: 18.06.2019 Бюл. № 17 1 9 0 0 8 0 R U (54) ГИРЯ (57) Реферат: Полезная модель относится к метрологическому оборудованию, используемому в весоповерочных вагонах, в частности к весоизмерительной технике, и может быть использована в качестве образцовой гири, преимущественно, номинальной массой 2000 кг. Технический результат полезной модели заключается в повышенной сбалансированности гири при ее перемещении и ...

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29-09-2020 дата публикации

Корпус для встраиваемого в дорожное полотно весоизмерительного модуля

Номер: RU0000199938U1

Техническое решение относится к весоизмерительной технике, а именно к встраиваемым в дорожное полотно весоизмерительным модулям, размещаемым в зоне взвешивания автомобильных весов, систем взвешивания, постов весового контроля транспортных средств, позволяющих определять весовые параметры при взвешивании транспортного средства в движении. Корпус для встраиваемого в дорожное полотно весоизмерительного модуля, длина которого значительно превышает размеры его поперечного сечения, выполнен в виде прямоугольного параллелепипеда, содержит основание, боковые и торцевые стенки, основную часть, предназначенную для размещения линейного весоизмерительного датчика с чувствительными элементами, в которой выполнены отверстия для создания разъемного соединения с датчиком, дополнительную часть, предназначенную для обслуживания датчика, в одной из стенок которой выполнено сквозное отверстие для вывода кабеля наружу. Техническим результатом является расширение арсенала технических средств весоизмерительного модуля, встраиваемого в дорожное полотно, для взвешивания транспортного средства в движении за счет создания корпуса, позволяющего повысить его технологичность. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 199 938 U1 (51) МПК G01G 21/28 (2006.01) G01G 19/02 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК G01G 21/28 (2020.08); G01G 19/02 (2020.08) (21)(22) Заявка: 2020122330, 06.07.2020 (24) Дата начала отсчета срока действия патента: Дата регистрации: Приоритет(ы): (22) Дата подачи заявки: 06.07.2020 (45) Опубликовано: 29.09.2020 Бюл. № 28 1 9 9 9 3 8 R U (54) Корпус для встраиваемого в дорожное полотно весоизмерительного модуля (57) Реферат: Техническое решение относится к часть, предназначенную для размещения весоизмерительной технике, а именно к линейного весоизмерительного датчика с встраиваемым в дорожное полотно чувствительными элементами, в которой весоизмерительным модулям, размещаемым в выполнены отверстия для ...

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09-02-2012 дата публикации

Weighing scale with display- and operating unit

Номер: US20120031684A1
Автор: Thomas Schön
Принадлежит: Mettler Toledo Albstadt GmbH

A weighing scale ( 10 ) has a display/operating unit ( 20 ), a scale platform ( 30 ), an electronic system ( 60 ) for the control of the scale ( 10 ), and a pedestal ( 40 ) that connects the display/operating unit to the scale platform. The pedestal contains a pedestal chamber ( 41 ). The pedestal also has a pedestal opening ( 42 ). A carrier element ( 70 ) is arranged in or at the pedestal chamber. At least parts of the electronic system are arranged on the carrier element, and the parts of the electronic system which are arranged on the carrier element can be at least partially taken out of the pedestal opening for servicing.

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19-04-2012 дата публикации

Feed Bin Monitoring System and Method

Номер: US20120090901A1
Автор: Mark H. Jaeger
Принадлежит: Jaeger Mark H

A bin monitoring system functions both as a device for lifting the bin and as a weighing system for monitoring or measuring the level of feed or other product in a bin. Various embodiments and methods of retrofitting the bin monitoring system to existing bins are provided. Further, the accuracy provided by various embodiments enables one to accurately predict when the bin will be empty. Thus, a feed mill, for example, can be aware of anticipated needs days in advance, allowing the feed mill to better optimize its scheduling and deliveries.

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17-05-2012 дата публикации

Electronic scale having function of compensating for air pressure changes in glove box

Номер: US20120123721A1

The present invention relates to an electronic scale having an air pressure change compensation function, which can precisely measure the weight of an object to be weighed even in an environment in which air pressure changes moment by moment in an airtight space such as in a glove box. According to the present invention, there is provided an electronic scale having an internal air pressure measurement sensor, by which the function of correcting the weight of an object to be weighed is provided even in an environment in which air pressure changes such as in the glove box is provided, thus enabling the weight of a sample to be precisely measured even in an environment in which air pressure changes moment by moment.

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02-08-2012 дата публикации

Pos-based code symbol reading system with integrated scale base and system housing having an improved produce weight capturing surface design

Номер: US20120193407A1
Принадлежит: Metrologic Instruments Inc

A POS-based system including (i) a system housing having a horizontal housing portion and a vertical housing portion. The vertical housing portion is configured substantially orthogonal with respect to the horizontal housing portion. At least one reading window is formed in the system housing. A support frame having a plurality of spaced apart support surfaces, supports the system housing when the system housing is position over the support surfaces. A convex weigh surface is integrated with the vertical housing portion, for supporting the weight of produce items supported thereon during weighing operations. A code symbol reading subsystem is disposed in the system housing, for optically reading code symbols on objects being transported through a 3D reading volume definable relative to at least one code symbol reading window, and producing symbol character data representative of the read code symbols. An electronic weigh scale subsystem is provided including a base portion having a plurality of load cells for measuring the weight supported thereupon.

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11-10-2012 дата публикации

Powder dispensing and sensing apparatus and methods

Номер: US20120255645A1
Принадлежит: MANNKIND CORP

Powder dispensing and sensing apparatus and methods are provided. The powder dispensing and sensing apparatus includes a tray support structure to receive a cartridge tray holding cartridges, a powder dispenser assembly including powder dispenser modules to dispense powder into respective cartridges of a batch of cartridges in the cartridge tray, a powder transport system to deliver powder to the powder dispenser modules, a sensor module including sensor cells to sense respective fill states, such as the weights, of each of the cartridges in the batch of cartridges, and a control system to control the powder dispenser modules in response to the respective sensed fill states of each of the cartridges of the batch of cartridges.

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11-10-2012 дата публикации

Apparatus, system, and method for wafer characterization

Номер: US20120255795A1
Принадлежит: MICROTRONIC Inc

An apparatus for characterizing a wafer comprising an aligner comprising a chuck for receiving and rotating the wafer, a sensor for detecting the position of the wafer as it is rotated, a first actuator for lowering and raising the wafer vertically, and a second actuator for moving the chuck horizontally; and a weighing scale comprising a weight sensor disposed proximate to the aligner, and a cantilevered arm extending laterally from the weight sensor over the chuck of the aligner, the cantilevered arm having a through hole surrounding the chuck. The chuck is vertically movable relative to the weighing scale from a first position in which the wafer is supported by the chuck to a second position in which the wafer is supported by the cantilevered arm of the weighing scale. A method for characterizing a wafer using the instant apparatus is also disclosed.

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10-01-2013 дата публикации

Snow shield for a truck scale

Номер: US20130008728A1
Автор: Denis L. Nelson
Принадлежит: Individual

A snow shield for a truck scale for covering the gap between the lower side of the scale deck of the truck scale and a support surface at each side of the truck scale. A first flexible sheet member has its upper end secured to the outer side of the first frame siderail of the truck scale for the length thereof and extends downwardly therefrom outwardly of the gap at one side of the truck scale. A second flexible sheet member has its upper end secured to the outer side of the second frame siderail of the truck scale for the length thereof and extends downwardly therefrom outwardly of the gap at the other side of the truck scale. The lower ends of the sheet members are secured in place to either the supporting surface or the ground adjacent thereto.

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21-03-2013 дата публикации

WEIGHING DEVICE HAVING A WEIGHING CHAMBER

Номер: US20130068542A1
Автор: Izumo Naoto, Oda Hisanori
Принадлежит: A&D COMPANY, LIMITED

A weighing device is provided that suppresses air convection currents generated in a weighing chamber in the opening/closing of a door of the chamber with a relatively simple configuration. A weighing space is partitioned into two spaces with a partition plate to form a lower small-capacity weighing chamber, which enables to settle down the convection in a short time if convection is generated in the chamber. Suspended walls adjacent to the doors are attached to the partition plate edge sides along the door opening/closing directions. Even when a door is opened, warm air stagnant in the upper space in the chamber is restricted or blocked to flow out to the outside by the suspended walls, which generates no convection or slight convection, which settles down in a short time, without adverse effect on a weighing operation. The upper space may be utilized for another purpose such as a neutralization chamber. 1. An electronic scale comprising a weighing space , which is openable and closable , in which a weighing dish is internally disposed , the electronic scale having a weighing chamber whereinthe entire weighing space is configured as a weighing chamber, andplate-like suspended walls which are at an upper part of the weighing chamber and adjacent to doors of the weighing chamber, and have given widths vertically, are disposed along opening and closing directions of the doors.2. The electronic scale having the weighing chamber according to claim 1 , whereinthe weighing space is partitioned into upper and lower spaces with a partition plate,the lower space is configured as a weighing chamber, andthe suspended walls are disposed so as to be drooped on the lower space side at the side edges adjacent to the doors among side edges of the partition plate.3. The electronic scale having the weighing chamber according to claim 2 , wherein the upper space formed by the partition plate is configured as a neutralization chamber.4. The electronic scale having the weighing chamber ...

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25-04-2013 дата публикации

METHOD FOR CALIBRATING LARGE FIXED ELECTRONIC SCALE

Номер: US20130098136A1
Принадлежит: FUJIAN METROLOGY INSTITUTE

A method for calibrating large fixed electronic scale is provided. The method applies an auxiliary verification device to calibrate the large fixed electronic scale without using a weight and includes following steps of: loading and unloading every supporting point on the scale table board of the scale by at least one self-locating loading and unloading mechanism; measuring and displaying a load that each loading and unloading mechanisms applies to the scale table board by at least one high accuracy load gauge; controlling a size of the load that each loading and unloading mechanisms applies to the scale table board by a constant load control device; and comparing a precise load displayed by the high accuracy load gauge with a gauge weighing display value of the scale to obtain a calibration error of the scale. The present method greatly improves working efficiency and safety and reduces costs. 1. A method for calibrating a large fixed electronic scale , said method being a verification method which applies an auxiliary verification device to calibrate said large fixed electronic scale without using a weight , characterized in that said verification method includes steps of:step 1: loading and unloading every supporting point on a scale table board of said scale by at least four self-locating loading and unloading mechanisms;step 2: applying at least four high accuracy load gauges to measure and display a load that each of said loading and unloading mechanisms applies to said scale table board;step 3: applying a constant load control device to control a size of said load that each of said loading and unloading mechanisms applies to said scale table board and further control a size of a load of each supporting point on said scale table board so that said load of each supporting point corresponds to a required load applied to each of said supporting points while calibrating said scale; andstep 4: comparing a precise load displayed by said high accuracy load gauges ...

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02-05-2013 дата публикации

Verification system for large-scale weighing machine and self-location loading-unloading load measuring device

Номер: US20130104620A1
Принадлежит: Individual

A verification system for a large-scale weighing machine comprises at least four tension frameworks penetrating through a weighing platform hole preset on a weighing platform surface of the weighing machine, for connecting to a weighing platform foundation and being disposed perpendicular to the weighing platform surface, at least four self-location loading-unloading load measuring devices disposed corresponding to the tension frameworks, and a constant-load control device connected with the loading-unloading mechanism and allows the loading-unloading mechanism to maintain constant applied load while loading. The self-location loading-unloading load measuring devices includes a self-location loading-unloading mechanism and a high-precision load measuring instrument adjacent to the top side of the loading-unloading mechanism. The high-precision load measuring instrument is at least three times larger than an accuracy of the weighing machine. The verification system has a rational structure and can greatly improve operating efficiency and safety and save cost.

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09-05-2013 дата публикации

WEIGHING SCALES

Номер: US20130112488A1
Принадлежит: BSH BOSCH UND SIEMENS HAUSGERÄTE GMBH

A weighing scales includes a step-on surface, on which a person to be weighed stands, and a plurality of artificial gemstones arranged beneath or in the step-on surface. At least some of the artificial gemstones are adapted for illumination from below so as to produce information, such as a weight indication, which is readable visually from above. 110-. (canceled)11. A weighing scales , comprising:a step-on surface, on which a person to be weighed stands; anda plurality of artificial gemstones arranged beneath or in the step-on surface, at least some of the artificial gemstones being adapted for illumination from below so as to produce information which is readable visually from above.12. The weighing scales of claim 11 , wherein the information is a weight indication.13. The weighing scales of claim 11 , wherein the artificial gemstones are selected from the group consisting of rhinestones claim 11 , crystals and ground glass pieces.14. The weighing scales of claim 11 , further comprising a screen to allow isolated illumination of at least one of the artificial gemstones.15. The weighing scales of claim 14 , wherein the screen has at least one cutout to hold the at least one of the artificial gemstones.16. The weighing scales of claim 14 , wherein the screen has a top face which forms the step-on surface claim 14 , with the artificial gemstones being let into the screen so that their surfaces are flush.17. The weighing scales of claim 14 , further comprising a transparent glass plate arranged above the screen and forming the step-on surface.18. The weighing scales of claim 11 , further comprising a number of light-emitting diodes to illuminate the artificial gemstones.19. The weighing scales of claim 18 , wherein at least one of the light-emitting diodes is configured as an SMD-LED (surface mounted light-emitting diode).20. The weighing scales of claim 18 , further comprising a circuit board and a screen resting on the circuit board and allowing isolated ...

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09-05-2013 дата публикации

APPARATUS FOR WEIGHING

Номер: US20130112489A1
Автор: Aschke Walter
Принадлежит: SECA AG

The apparatus serves for weighing and has a placement surface () for the object to be weighed. The placement surface () is provided by a placement element () which is supportable by at least two carrying elements () with respect to a steepening surface. The carrying elements () are configured identically relative to one another. Each of the carrying elements () has at least one load cell () for weight acquisition and a levelling device for height adjustment. 112-. (canceled)13. A device for weighing an object , comprising: a placement surface for the object to be weighed; a bearing element that supports the placement surface; and at least two carrying elements that support the bearing element relative to an installation surface , wherein the carrying elements are identical to each other and each of the carrying elements has at least one weighing cell for determining weight and a leveling device for vertical adjustment.14. The device according to claim 13 , wherein the carrying element includes a base element and a spacer element positionable relative to the base element.15. The device according to claim 14 , wherein the spacer element has a foot.16. The device according to claim 15 , wherein the spacer element is mounted so as to be pivotable relative to the base element.17. The device according to claim 16 , wherein an elastic element is arranged in an area of a pivoting joint that connects the spacer element to the base element.18. The device according to claim 17 , further comprising an adjusting element for positioning the spacer element relative to the base element.19. The device according to claim 18 , wherein the adjusting element is arranged relative to the foot opposite the pivoting joint.20. The device according to claim 13 , and further comprising a frame claim 13 , the carrying elements being connected to the frame.21. The device according to claim 20 , and further comprising spacer arms that connect the carrying elements to the frame.22. The device ...

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16-05-2013 дата публикации

Semiconductor Wafer Metrology Apparatus

Номер: US20130118816A1
Автор: WILBY Robert John
Принадлежит: METRYX LIMITED

A semiconductor wafer metrology technique comprising performing atmospheric buoyancy compensated weighing of a wafer, in which the wafer is weighed in a substantially upright condition. A vertical or near vertical wafer orientation causes the surface area in the direction of a force (weight) sensor to be reduced compared with a horizontal wafer orientation. Hence, the electrostatic force components acting in the same direction as the wafer weight force component is reduced. 1. Apparatus for measuring the mass of a semiconductor wafer , the apparatus having:a weighing instrument for measuring the weight of the wafer;a chamber for containing the wafer during measurement;monitoring means arranged to determine the buoyancy exerted on the wafer by the atmosphere in the chamber; anda wafer holder arranged to support the plane of the wafer in a substantially upright orientation when the wafer's weight is measured.2. Apparatus according to claim 1 , wherein the wafer holder is arranged to support the plane of the wafer within 5° from a vector in the direction of the force of gravity.3. Apparatus according to claim 1 , wherein the wafer holder includes a base for supporting a lower edge of the wafer in the upright orientation and a upstanding backrest for supporting an upper part of the wafer such that the upright orientation is a small non-zero angle from exact vertical.4. Apparatus according to claim 3 , wherein the base has an upstanding lip to prevent the wafer from slipping.5. Apparatus according to claim 1 , wherein the monitoring means includes a temperature monitor claim 1 , a pressure monitor and a humidity monitor arranged to determine the temperature claim 1 , pressure and humidity in the chamber.6. Apparatus according to including wafer conveying means controlled by a computer claim 1 , the wafer conveying means being arranged to releasably carry a wafer claim 1 , and being movable from outside the chamber to inside the chamber through an opening to place the ...

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27-06-2013 дата публикации

WEIGHING CELL BASED ON THE PRINCIPLE OF ELECTROMAGNETIC FORCE COMPENSATION WITH OPTOELECTRONIC POSITION SENSOR

Номер: US20130161103A1
Принадлежит: METTLER-TOLEDO AG

A weighing cell based on the principle of electromagnetic force compensation. A permanent magnet system is mounted on a base part and includes an air gap within which is suspended a coil that is connected to a load receiver through a force-transmitting mechanism. The coil carries an electrical compensation current when the weighing cell is in operation. An optoelectronic position sensor is also included, and its signal corresponds to the deflection of the coil from a zero position which occurs as a result of placing a load on the load receiver. A closed-loop controller regulates the compensation current in response to the sensor signal in such a way that the coil and the load receiver that is connected to it are returned to their zero position by the electromagnetic force that is acting between the coil and the permanent magnet. 1. A weighing cell based on the principle of electromagnetic force compensation , comprisinga stationary base part;a load receiver constrained to the base part in guided movement and serving to receive the weight force of a weighing load;a permanent magnet system mounted on the base part, said permanent magnet system having an air gap;a coil suspended in the air gap with guided mobility and adapted to conduct an electrical compensation current when the weighing cell is in operation;a force-transmitting mechanism connecting the load receiver to the coil;an optoelectronic position sensor comprising a light emitter and a light receiver that are mounted on the base part with an interstitial space between them and a shutter vane that traverses said interstitial space and participates in the movement of the coil, the light emitter being mounted in a centered position on the connecting line between two first fastening locations of a first carrier element that is arranged on the base part, and/or the light receiver being mounted in a centered position on the connecting line between two second fastening locations of a second carrier element that is ...

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11-07-2013 дата публикации

DEVICE AND METHOD FOR THE ADJUSTMENT OF AN ECCENTRIC LOAD ERROR IN A PARALLEL-GUIDING MECHANISM

Номер: US20130175098A1
Принадлежит: METTLER-TOLEDO AG

A parallel-guiding mechanism () has a movable parallel leg (), a stationary parallel leg (), a first parallel-guiding member () and a second parallel-guiding member (). The parallel legs and the parallel-guiding members are connected to each other by flexure pivots, in the form of narrow material connections. There is at least one adjustment zone (). An adjustment flexure fulcrum () is arranged between a flexure pivot () and a parallel leg. The adjustment zone is connected to the first lever end () of an adjustment lever (). The adjustment flexure fulcrum forms the lever fulcrum () of the adjustment lever, which has an elastic domain with a section modulus that is smaller than a section modulus of the adjustment flexure fulcrum. 1. A parallel-guiding mechanism , comprising:a movable parallel leg;a stationary parallel leg;a first and a second parallel-guiding member, the parallel-guiding members constraining the movable parallel leg in guided movement relative to the stationary parallel leg;flexure pivots that connect the parallel legs and the parallel-guiding members to each other, the flexure pivots being in the form of narrow material connections;at least one adjustment zone, each of which has a corresponding adjustment flexure fulcrum, arranged between one of the flexure pivots and one of the parallel legs; andan adjustment lever corresponding to, and connected to, each of the adjustment zones, each adjustment lever having a first lever end with the corresponding adjustment flexure fulcrum forming a fulcrum therefor, such that an elastic sector of the adjustment lever has a section modulus which is smaller than the section modulus of the corresponding adjustment flexure fulcrum.2. The mechanism of claim 1 , wherein:at least one of the at least one adjustment zones is divided into a pair of adjacent adjustment zone parts, each of the adjacent adjustment zone parts having a corresponding adjustment flexure fulcrum, each of the adjacent adjustment zone parts ...

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18-07-2013 дата публикации

Surface Acoustic Wave Scale

Номер: US20130185011A1
Автор: Kats Vyacheslav D.
Принадлежит: CIRCUITS & SYSTEMS, INC.

Apparatus and related methods are provided for automatically recalibrating a SAW scale for changing environmental factors. During a period of time when there is no change to a weight applied to the scale, readings of SAW transducers which relate to weight indications and environmental factor indications are taken for two adjacent operating modes of the scale, and two calibrated weight calculations are made utilizing those readings. The difference in calibrated weight calculations is then related to a variable utilized to transform the readings into weights, which is updated, thereby recalibrating the scale. 1. An electronic weighing apparatus comprising:a) a displaceable elastic member that receives a load is displaced by the load such that the displacement of said elastic member is related to the weight of the load;b) a first piezoelectric transducer having a first substrate and one of a first surface acoustic wave (SAW) transmitter and a first SAW receiver, said first piezoelectric transducer being coupled to said elastic member;c) a second piezoelectric transducer having a second substrate and the other of said first SAW transmitter and said first SAW receiver, said second piezoelectric transducer being mounted in close proximity to said first piezoelectric transducer such that said displacement of said elastic member causes a corresponding displacement of one of said first and second piezoelectric transducers relative to each other;d) a first amplifier having an input and an output, said input of said first amplifer being coupled to said first SAW receiver and said output of said first amplifier being coupled to said first SAW transmitter such that said first SAW receiver, said first amplifier and said first SAW transmitter form a first oscillator having a first output, said first oscillator adapted to operate in a plurality of modes including a first mode and a second mode adjacent said first mode;e) a second SAW receiver;f) a second SAW transmitter;g) a second ...

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29-08-2013 дата публикации

WEIGHING CELL BASED ON THE PRINCIPLE OF ELECTROMAGNETIC FORCE COMPENSATION WITH OPTOELECTRONIC POSITION SENSOR

Номер: US20130220711A1
Принадлежит: METTLER-TOLEDO AG

A weighing cell based on the principle of electromagnetic force compensation and having an optoelectronic position sensor that includes a light source, a light receiver, and a shutter vane. The light receiver functions to generate a position sensor signal corresponding to a deflection of the shutter vane from a zero position which occurs as a result of placing a load onto a load receiver of the weighing cell. A controller functions to regulate compensation current in response to the position sensor signal in such a way that the shutter vane and the movable parts of the weighing cell connected to the shutter vane are returned to the zero position by the electromagnetic force between a coil and permanent magnet system of the weighing cell. 1. Weighing cell based on the principle of electromagnetic force compensation , comprising:a stationary base part;a load receiver constrained to the base part with guided mobility and serving to accept the weight force of a weighing load;a permanent magnet system with an air gap;a coil that is movably suspended in the air gap and, when operating in a weighing mode, conducts a flow of a compensation current;a force-transmitting mechanical connection between the load receiver and the coil; a light source and a light receiver arranged facing each other across a space interval such that center points of the light source and the light receiver define an optical axis, and', 'a shutter vane that is solidly connected to the force-transmitting connection, the shutter vane movably arranged at a shutter distance on the optical axis between the light source and the light receiver, the shutter distance lying in a subsection of the space interval that is adjoining to the light receiver and extends over no more than one-third of the space interval;', 'wherein, the light receiver is adapted to generate a position sensor signal corresponding to a deflection of the shutter vane from a zero position which is caused by placing the load onto the load ...

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29-08-2013 дата публикации

Digital Filter for Digital Weigher, Digital Weigher Including Digital Filter for Digital Weigher and Wave Filtering Process Method

Номер: US20130226494A1
Принадлежит: YAMATO SCALE CO., LTD.

A digital filter for a digital weigher reduces a calculation time in an adapted filter while maintaining weighing accuracy, a digital weigher includes the filter for the weigher, and a wave filtering process method uses the digital filter for the digital weigher. A fixation section of a FIR filter removes an oscillating component in a predetermined frequency range, from a digital weighing signal. A determination device determines whether an amplitude of an oscillating component contained in a digital weighing signal derived by performing a wave filtering process falls within a predetermined damping range. A control device changes a frequency range of an oscillating component to be removed by an adaptive section of the filter based on a result of the determination. The adaptive section of the filter performs the wave filtering process with respect to the oscillating component in the frequency range changed by the control device. 1. A digital filter for a digital weigher , comprising:a FIR filter for performing a wave filtering process with respect to a digital weighing signal containing an oscillating component;a determination device for determining whether or not an amplitude of an oscillating component contained in a digital weighing signal derived by performing the wave filtering process by the FIR filter falls within a predetermined allowable damping range, in every predetermined sampling of the digital weighing signal within one weighing cycle; anda control device;wherein the FIR filter includes a fixation section for removing an oscillating component in a predetermined frequency range, and an adaptive section for removing an oscillating component in a changeable frequency range; andwherein the control device is configured to change the frequency range of the oscillating component which is to be removed by the adaptive section, based on a result of the determination performed by the determination device.2. The digital filter for the digital weigher according to ...

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19-09-2013 дата публикации

DYNAMIC THICKNESS ADAPTATION FOR AN IN-LINE SCALE

Номер: US20130239648A1
Автор: TURNER Bryan
Принадлежит: RAF Technology, Inc.

Methods and apparatus for weighing an article, such as a mail piece, while the article is moving at high speed. An article () is received from an intake transport (), and gripped in a weighing station (), in between a capstan roller and a pinch roller (), which are synchronized to minimize slipping. A first precision servo system () alters the speed of the article, and in the process acquires torque data for storage and analysis (). A second precision servo system () applies a constant force, via a tension arm (), urging the pinch roller () against the capstan roller, independently of the thickness of the mail piece. Active electronic damping () reduces oscillation when an inconsistency in thickness of the article is encountered during weighing. The damping force is subtracted from the capstan motor torque data for improved accuracy (FIG. B). 1. A method for weighing a moving article on the fly , comprising:receiving an incoming article having a first velocity;without stopping the article, gripping the article between a capstan roller and an opposed pinch roller;synchronizing rotation of the pinch roller and the capstan roller to avoid slippage of the article gripped between them;providing a capstan servo motor having a shaft operatively coupled to the capstan roller and opposed pinch roller;providing a first servo amplifier coupled to the capstan servo motor so as to form a first closed-loop servo system for driving the capstan servo motor and for monitoring torque applied by the capstan servo motor;in the first servo amplifier, commanding the capstan servo motor to a predetermined command speed that is different from the first velocity of the article in order to cause an acceleration of the article;beginning after the article is gripped between the pinch roller and the capstan roller, weighing the article on the fly by acquiring a series of capstan servo motor torque sample data as the article moves between the pinch roller and capstan roller, so that the captured ...

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31-10-2013 дата публикации

Biometric Monitoring Device having a Body Weight Sensor, and Methods of Operating Same

Номер: US20130289889A1
Принадлежит:

A system comprising a biometric monitoring device including a housing including a platform to receive at least one foot of the user, a body weight sensor to generate body weight data, processing circuitry to calculate user weight data which corresponds to the user's weight, using the body weight data, and communication circuitry to: (a) receive user identification data which identifies the user or a portable activity monitoring device, and (b) transmit the user weight data to data storage associated with the user identification data. The system further includes the portable activity monitoring device including a housing having a physical size and shape that is adapted to couple to the user's body, a sensor to generate sensor data, and communication circuitry to receive physiologic data which is based on the user weight data, and processing circuitry to calculate activity data using the sensor data and physiologic data. 1. A biometric monitoring system comprising: a housing including a platform configured to receive at least one foot of the user and capable of supporting the body weight of the user;', 'a body weight sensor, mechanically coupled to the platform, to generate sensor data which is representative of the weight of the user;', 'processing circuitry, disposed in the housing and coupled to the body weight sensor, to calculate the user weight data which corresponds to the weight of the user, using the sensor data;', 'a visual display, coupled to the processing circuitry, to display the user weight data; and', wirelessly receive user identification data directly from the portable activity monitoring device, wherein the user identification data identifies the user or a portable activity monitoring device, and', 'transmit the user weight data to data storage which is associated with the user identification data; and, 'communication circuitry to], 'a biometric monitoring device to measure a weight of a user, the biometric monitoring device including a housing ...

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07-11-2013 дата публикации

METHOD IN THE CHECK WEIGHING OF A WEIGHING SYSTEM AND SOFTWARE PRODUCT AND ARRANGEMENT IN THE CHECK WEIGHING OF A WEIGHING SYSTEM AND MATERIALS HANDLING EQUIPMENT

Номер: US20130292190A1
Автор: Havimäki Esko
Принадлежит: PONSSE OYJ

The invention relates to a method in the check weighing of a weighing system. In the method, a hoist () equipped with a weighing system () is used to lift a load (), which is weighed, and the value measured by the weighing system () is recorded. In the method, the weighing system () is adjusted as required, on the basis of the recorded values. A real load (), which is weighed when not moving, is used as the load (). The same real load () is also weighed during a normal movement while moving. A reference value is defined from these two weighings of the same real load (), on the basis of which the weighing system () is adjusted if necessary and/or the precision probably achieved by the weighing system () is estimated. The invention also relates to a software product and an arrangement in the check weighing of a weighing system, and materials handling equipment.

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07-11-2013 дата публикации

SCALE WITH DECOUPLING MECHANISM AND WINDSHIELD

Номер: US20130292192A1
Автор: JAIA Aldo
Принадлежит:

A scale with a weighing system (), a weighing chamber () that is delimited by a windshield (), and a drive for opening and closing the windshield (). The scale has a load transferring part () with which the weight of the load is transferred onto the weighing system (). A decoupling mechanism is mechanically connected to the drive for rotating the windshield () such that the weighing system () is mechanically decoupled from the load transferring part in the load direction if the windshield () is open in order to not introduce transverse forces into the weighing system () during loading of the weight. 1. A scale comprising:a weighing system,a weighing chamber which is delimited by a windshield and into which a load transferring part projects, wherein the load transferring part accepts the weight of a load and introduces the weight into the weighing system in a load direction,a drive for opening and closing the windshield, anda mechanical decoupling mechanism connected to the drive, which decouples the weighing system mechanically from the load transferring part in the load direction when the windshield is opened and couples the weighing system in the load direction to the load transferring part when the windshield is closed.2. The scale as claimed in claim 1 , wherein the decoupling mechanism comprises a lifting mechanism for lifting and lowering the load transferring part.3. The scale as claimed in claim 2 , wherein the lifting mechanism mechanically converts a rotary movement of the windshield into a lifting or lowering movement.4. The scale as claimed in claim 2 , wherein the lifting mechanism comprises a ramp surface at one of two mutually opposing parts which rotate relative to one another.5. The scale as claimed in claim 4 , wherein the lifting mechanism further comprises a roller element which runs along the ramp surface.6. The scale as claimed in claim 15 , wherein the coupling member is an annular base attached to a lower edge of the windshield and extending ...

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07-11-2013 дата публикации

WORK BOOTH HAVING AN INTEGRATED SCALE

Номер: US20130292193A1
Принадлежит:

A work booth () having a work chamber () and an integrated scale () that includes a load carrier () which is arranged in the work chamber () of the work booth (), a weighing system () which is arranged outside the work chamber of the work booth (), and a coupling element () which connects the load carrier () to the weighing system (). The work chamber () of the work booth () has a ventilation opening (), through which air can be extracted from the work chamber () of the work booth (). 1. Work booth comprising:a work chamber, andan integrated scale having a load carrier which is arranged in the work chamber of the work booth, a weighing system which is arranged outside the work chamber of the work booth, and a coupling element which connects the load carrier to the weighing system, wherein the work chamber of the work booth has a ventilation opening and an associated extractor through which air is extracted from the work chamber of the work booth.2. The work booth as claimed in claim 1 , further comprising a separating wall with a passage for the coupling element between the work chamber and the weighing system claim 1 , wherein the coupling element is guided through the passage in an essentially media-tight manner.3. The work booth as claimed in claim 2 , wherein the separating wall coincides with a rear wall of the work booth.4. The work booth as claimed in claim 2 , wherein the separating wall projects into the work chamber.5. The work booth as claimed in claim 2 , wherein an opening is provided in the separating wall and wherein a pressure difference is established between the work chamber and a space in which the weighing system is arranged.6. The work booth as claimed in claim 5 , wherein the weighing system is arranged in a housing which is provided with an inlet opening for external air.7. The work booth as claimed in claim 6 , wherein the inlet opening is provided with a diaphragm which has an adjustable cross-section.8. The work booth as claimed in claim 6 ...

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14-11-2013 дата публикации

FORCE-MEASURING CELL WITH A FORCE-COMPENSATING COIL

Номер: US20130299250A1
Принадлежит:

A multi-layered electromagnetic coil for a force-measuring system is based upon the principle of electromagnetic force compensation, as is a method for manufacturing the coil. The coil has a multifilar, specifically bifilar, wiring arrangement of coil wires. Preferably, the coil wires have a substantially rectangular cross-sectional profile. The cross-sectional profile of the coil wire is designed for achieving the densest possible packing of the windings in the coil can be achieved. 1. A force-measuring cell , based on the principle of electromagnetic force compensation , the cell comprising:a force-transmitting device with a parallel guiding mechanism having a stationary part and a vertically-movable part, pivotably connected to each other so that a load received by one of the parts causes relative movement of the parts;a permanent magnet system, arranged in fixed connection with one of the parts, the permanent magnet system including an air gap;a multi-layered electromagnetic coil, connected to the other part and arranged for movement in the air gap, the coil comprising an at least bifilar arrangement wound from a wire combination that comprises a first and a second coil wire and an insulating coating that holds the respective coil wires together in fixed position while electrically isolating the respective coil wires from each other, each of the first and second coil wires having a rectangular cross-sectional profile; anda force compensation circuit, comprising a device that measures the position of the part connected to the electromagnetic coil and, based on the position, applies a compensation current to one of the coil wires so that the coil is held in the same position or returned to the same position after a change in the load occurs.2. The cell of claim 1 , wherein:the cross-sectional profile is a rounded rectangular shape, with the shorter sides being formed in a biconvex shape and the longer sides being flattened.3. The cell of claim 1 , wherein:the ...

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28-11-2013 дата публикации

PORTABLE LUGGAGE SCALE

Номер: US20130313028A1
Принадлежит: Design Go Ltd.

A portable luggage scale () comprising a lifting handle () or grip, a luggage support (), a housing (), a spring based weighing mechanism () within the housing (), a weight indicating dial (), the weight indicating dial () being adapted for movement relative to the housing () in response to spring reactions of the spring based weighing mechanism (), and a measured weight indicating marker () for indicating a measured weight, that weight being readable off the dial () at the location of the marker (). The lifting handle () can be telescopic, and the luggage support () can be a loop () of webbing. 1. A portable luggage scale comprising a lifting handle , a luggage support , a weighing mechanism contained within a housing , and a weight indicating screen or dial for indicating weight measured with the weighing mechanism , wherein the luggage support takes the form of a strap forming a loop at its first end for allowing the strap to be attached to a handle of an item of luggage with a looped hitch , rather than needing a knot to be tied in the strap , and a second end extending away from the first end , and through a slot in the housing , the second end extending into the housing , through the slot , and being attached to the weighing mechanism within the housing , and wherein the lifting handle , in use , extends from a top of the housing , the handle being telescopically movable relative to the housing for sliding between an extended , in use position , in which the handle can be grasped by a user , and a retracted , travelling position , in which fingers cannot be passed around and through the handle.2. A portable luggage scale comprising a lifting handle or grip , a luggage support , a housing , a spring based weighing mechanism within the housing , a weight indicating dial , the weight indicating dial being adapted for movement relative to the housing in response to spring reactions of the spring based weighing mechanism , and a measured weight indicating marker ...

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05-12-2013 дата публикации

Load cell and method for adjusting a load cell

Номер: US20130319072A1
Автор: Michael Laubstein

A load cell ( 10 ), which includes a weighing system ( 14 ) having a force application point ( 18 ), a load boom arm ( 20 ) for receiving the loads to be weighed at a position remote from the force application point ( 18 ) and an adjusting device, wherein an adjusting weight boom arm ( 28 ) is provided which extends in a longitudinal direction (A) defined by the load boom arm on the side opposing the load boom arm ( 20 ) relative to the force application point ( 18 ) and which has at least two pre-determined adjusting weight engagement points ( 36, 38 ). An activating unit ( 34 ) places at least one adjusting weight ( 30, 32 ) on at least one of the adjusting weight engagement points ( 36, 38 ).

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19-12-2013 дата публикации

Weighing compartment with integrated balance

Номер: US20130333957A1

A weighing compartment ( 10 ) having a work surface ( 22 ), including a balance which is integrated into the weighing compartment and which has a scale pan ( 24 ) arranged on the work surface ( 22 ), and at least one operation surface ( 26 ) which is arranged within the area of the work surface ( 22 ). The work surface ( 22 ) is formed by the surface of a smooth, continuous plate ( 20 ) and the operation surface ( 26 ) is integrated into the work surface ( 22 ) and is designed as a sensor panel, wherein a sensor ( 28 ) is arranged below the plate which forms the work surface.

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26-12-2013 дата публикации

BIOMETRIC APPARATUS

Номер: US20130341104A1
Автор: SUZUKI Shun
Принадлежит: TANITA CORPORATION

A biometric apparatus configured to measure biometric information of a user including: a biometric information measuring unit configured to measure the biometric information; a sensor configured to output a sensor signal according to the proximity of the user to the biometric apparatus; and a controller configured to determine the proximity of the user to the biometric apparatus on the basis of the sensor signal and controls the operating state of the biometric apparatus on the basis of the result of determination thereof. 1. A biometric apparatus configured to measure biometric information of a user comprising:a biometric information measuring unit configured to measure the biometric information;a sensor configured to output a sensor signal according to the proximity of the user to the biometric apparatus;a controller configured to determine the proximity of the user to the biometric apparatus on the basis of the sensor signal and control the operating state of the biometric apparatus on the basis of the result of determination thereof.2. The biometric apparatus according to claim 1 , wherein in a case where the operating state of the biometric apparatus is a state in use claim 1 , the control of the operating state by the controller is to convert the biometric apparatus from the state in use to a state not in use after the controller determines that the user is not in proximity to the biometric apparatus.3. The biometric apparatus according to claim 1 , wherein in a case where the operating state of the biometric apparatus is a state in use claim 1 , the control of the operating state by the controller is to restrict the conversion of the biometric apparatus from the state in use to a state not in use while the controller determines that the user is in proximity to the biometric apparatus and convert the biometric apparatus from the state in use to the state not in use after the controller determines that the user is not in proximity to the biometric apparatus4. ...

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02-01-2014 дата публикации

WEIGHT ASSEMBLY

Номер: US20140000968A1
Автор: Yustus Joseph A.
Принадлежит:

A test weight system includes a first assembly having a first body member and a plurality of ear members arranged about the first body member. The test weight system also includes a second assembly interlocked with the first assembly, the second assembly having a second body member defining a plurality of slots. A portion of each ear member extends through one of the plurality of slots. 1. A test weight system comprising:a first assembly having a first body member and a plurality of ear members arranged about the first body member; anda second assembly interlocked with the first assembly, the second assembly having a second body member defining a plurality of slots, wherein a portion of each ear member extends through one of the plurality of slots.2. The test weight system of claim 1 , wherein the second body member is a disc-like plate.3. The test weight system of claim 1 , wherein the second assembly includes a substantially cylindrical body extending axially from the second body member.4. The test weight system of claim 3 , wherein the plurality of slots are circumferentially arranged about the cylindrical body.53. The test weight system of claim 3 , wherein the second assembly includes a plurality of ear stop members extending radially from the cylindrical body.6. The test weight system of claim 5 , wherein the ear stop members extend circumferentially about the cylindrical body.7. The test weight system of claim 6 , wherein the ear stop members engage the ear members.8. The test weight system of claim 1 , wherein each of the ear members defines a top surface claim 1 , a bottom surface claim 1 , and a notch disposed between the top surface and the bottom surface.9. The test weight system of claim 8 , wherein the notches engage the second body member to interlock the first assembly to the second assembly.10. The test weight system of claim 1 , wherein the slots are upper assembly slots claim 1 , and wherein the first assembly includes a plate having a plurality ...

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09-01-2014 дата публикации

Biometric Monitoring Device having a Body Weight Sensor, and Methods of Operating Same

Номер: US20140012512A1
Принадлежит: Fitbit, Inc.

A system comprising a biometric monitoring device including a housing including a platform to receive at least one foot of the user, a body weight sensor to generate body weight data, processing circuitry to calculate user weight data which corresponds to the user's weight, using the body weight data, and communication circuitry to: (a) receive user identification data which identifies the user or a portable activity monitoring device, and (b) transmit the user weight data to data storage associated with the user identification data. The system further includes the portable activity monitoring device including a housing having a physical size and shape that is adapted to couple to the user's body, a sensor to generate sensor data, and communication circuitry to receive physiologic data which is based on the user weight data, and processing circuitry to calculate activity data using the sensor data and physiologic data. 1. A biometric monitoring system comprising: a housing including a platform configured to receive at least one foot of the user and capable of supporting the body weight of the user;', 'a body weight sensor, mechanically coupled to the platform, to generate body weight data which is representative of the weight of the user;', 'processing circuitry, disposed in the housing and coupled to the body weight sensor, to calculate user weight data which corresponds to the weight of the user, using the body weight data; and', receive user identification data, wherein the user identification data identifies the user or a portable activity monitoring device, and', 'transmit the user weight data to data storage which is associated with the user identification data; and, 'communication circuitry, physically coupled to the housing, to], 'a biometric monitoring device to measure a weight of a user, the biometric monitoring device including a housing having a physical size and shape that is adapted to couple to the body of the user;', 'a sensor, disposed in the ...

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06-03-2014 дата публикации

Weight Monitoring System

Номер: US20140060941A1
Автор: Mark H. Jaeger
Принадлежит: HerdStar LLC

A monitoring system functions both as a device for lifting the object and as a weighing system for monitoring or measuring the weight of an object, such as a feed bin. Various embodiments having a suspended load cell and methods of retrofitting the monitoring system to existing object are provided. Further, the accuracy provided by various embodiments enables one to accurately predict when the feed bin will be empty. Thus, the feed mill can be aware of anticipated needs days in advance, allowing the feed mill to better optimize its scheduling and deliveries.

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13-03-2014 дата публикации

Real-time weight measuring system for hospital bed

Номер: US20140069729A1
Автор: Boris Shih
Принадлежит: Caremed Supply Inc

A weight measuring system for hospital bed includes a bed bottom frame having two load cell mounting spaces formed at a front end and a rear end of the bed bottom frame between a first and a second supporting frame thereof; and a plurality of load cells mounted on the bed bottom frame to locate in the two load cell mounting spaces. Each load cell includes a supporting unit and at least one strain measurement unit attached to a lateral surface of the supporting unit for measuring an extent of strain elongation of the supporting unit under a bedridden patient's weight. With these arrangements, a nurse can not only measure a bedridden patient's weight without the need of moving the patient, but also monitor the patient's movement on the hospital bed in real time, preventing the patient from getting out of bed alone or carelessly falling off the hospital bed.

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06-01-2022 дата публикации

Weight Measurement Device

Номер: US20220003592A1
Принадлежит: Tanita Corp

A weight measurement device comprises: an upper surface cover on which a measurement target is placed; a load cell to detect weight of the measurement target placed on the upper surface cover; a bridge to support the load cell; a receiving member to receive the weight of the measurement target placed on the upper surface cover; and a bottom surface cover provided on a lower surface side of the receiving member, and further comprises a sliding part provided between the lower surface of the receiving member and an upper surface of the bottom surface cover to enable the receiving member to move in a horizontal direction relative to the bottom cover. The bridge comprises a pivot which is a fulcrum to make it possible to change inclination of the bridge relative to the bottom surface cover and is in contact with an upper surface of the receiving member.

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07-01-2016 дата публикации

SURFACTANTS BASED ON MONOUNSATURATED FATTY ALCOHOL DERIVATIVES

Номер: US20160002571A1
Принадлежит:

Surfactant compositions comprising an alkoxylate, a sulfate, or ether sulfate of a C-Cmonounsaturated alcohol are disclosed. The alkoxylate, sulfate, or ether sulfate may derive from undecylenic acid or undecylenic alcohol. Compared with their saturated analogs, the monounsaturated alkoxylates, sulfates, and ether sulfates are less irritating, making them valuable for personal care, laundry, cleaners, and other household applications. Microscopy studies show that the alkoxylates, sulfates, and ether sulfates have favorable phase behavior over a wide range of actives levels, expanding opportunities for products with greater compaction. When combined with cationic surfactants, the alkoxylates, sulfates, and ether sulfates exhibit synergy, and they have improved solubility compared with their saturated analogs. The surfactants find value for the personal care, laundry and cleaning, emulsion polymerization, agricultural products, oilfield applications, and specialty foams industries. 1. A surfactant composition comprising water and 1 to 99 wt. % of a surfactant comprising an alkoxylate , a sulfate , or an ether sulfate of a C-Cmonounsaturated alcohol.2. The composition of comprising 2 to 98 wt. % of the surfactant.3. The composition of wherein the surfactant comprises:{'sub': 10', '12, '(a) 40 to 60 wt. % of a monounsaturated C-Cprimary alcohol sulfate; and'}{'sub': 10', '12, '(b) 40 to 60 wt. % of a secondary hydroxyalkyl C-Cprimary alcohol sulfate.'}4. The composition of wherein the surfactant further comprises 0.1 to 20 wt. % of sulfonated products.5. The composition of wherein (a) and (b) derive from a Cmonounsaturated alcohol.6. The composition of wherein (a) and (b) derive from undecylenic alcohol.7. The composition of wherein (a) has the structure:{'br': None, 'sub': '3', 'R—O—SOX'}{'sub': 10', '12, 'wherein R is a linear or branched C-Cmonounsaturated hydrocarbyl group, and X is a mono- or divalent cation or an ammonium or substituted ammonium cation.'}8. The ...

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04-01-2018 дата публикации

POWDER DISPENSING AND SENSING APPARATUS AND METHODS

Номер: US20180003545A1
Принадлежит: MANNKIND CORPORATION

Powder dispensing and sensing apparatus and methods are provided. The powder dispensing and sensing apparatus includes a tray support structure to receive a cartridge tray holding cartridges, a powder dispenser assembly including powder dispenser modules to dispense powder into respective cartridges of a batch of cartridges in the cartridge tray, a powder transport system to deliver powder to the powder dispenser modules, a sensor module including sensor cells to sense respective fill states, such as the weights, of each of the cartridges in the batch of cartridges, and a control system to control the powder dispenser modules in response to the respective sensed fill states of each of the cartridges of the batch of cartridges. 1. Powder dispensing and sensing apparatus comprising:a tray support structure to receive a cartridge tray holding an array of cartridges;a powder dispenser assembly including powder dispenser modules to dispense powder into respective cartridges in the cartridge tray;a sensor module including an array of sensor cells to sense respective fill states of the cartridges in the array of cartridges; anda control system to control the powder dispenser modules to simultaneously fill respective cartridges in response to the respective sensed fill states of the cartridges in the array of cartridges, wherein the sensor cells in the array of sensor cells individually sense the fill states of respective cartridges during simultaneous filling of the cartridges.2. Powder dispensing and sensing apparatus as defined in claim 1 , wherein the sensor cells comprise weight sensor cells.3. Powder dispensing and sensing apparatus as defined in claim 1 , wherein the cartridge tray is configured to support the cartridges in a two-dimensional array of rows and columns.4. Powder dispensing and sensing apparatus as defined in claim 1 , further comprising:a powder transport system to deliver powder to the powder dispenser modules.5. Powder dispensing and sensing ...

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04-01-2018 дата публикации

OVERLOAD PREVENTION MECHANISM

Номер: US20180003548A1
Автор: DODATE Yutaka, Izumo Naoto
Принадлежит:

Provided is an overload prevention mechanism including a load receiving part provided with a flange having at least three ribs on the upper surface of the flange; a pedestal located below the load receiving part; an elastic body which has one end in contact with the load receiving part and the other end in contact with the pedestal, and which biases the load receiving part and the pedestal in such a direction that the load receiving part and the pedestal are separated from each other; and a connection member having on the lower surface thereof recessed grooves which engage with the ribs. The three or more ribs are disposed so as to restrict inclination and rattling of the load receiving part due to a load applied to the load receiving part. 1. An overload prevention mechanism comprising: a support part supporting a weighing dish,', 'a side wall continuously provided downward from the support part, and', 'a flange continuously provided sideways from a vicinity of a lower end of the side wall, and having three or more ribs on an upper surface thereof;, 'a load receiving part comprising'}a pedestal located below the load receiving part and having a fastening hole at a peripheral edge thereof;an elastic body in contact with the load receiving part at one end and with the pedestal at the other end, and biasing the load receiving part and the pedestal in a direction to be apart from each other; anda connection member having grooves engaging with the ribs on a lower surface thereof, having a through hole in contact with a base of the side wall in the center thereof and having a fastening hole at a building portion,the three or more ribs being disposed so as to restrict inclination and rattling of the load receiving part due to a load applied to the load receiving part, andthe connection member and the pedestal being fixed to each other by fastening between the fastening hole of the connection member and the fastening hole of the pedestal.2. The overload prevention ...

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02-01-2020 дата публикации

WEIGHING DEVICE WITH MULTIPLE WEIGHING SENSORS

Номер: US20200003610A1
Принадлежит:

A weighing device () has a load-bearing portion () that supports an object being weighed, a plurality of transition portions (), and a separation portion (). The transition portions are positioned on the separation portion, and the load-bearing portion is positioned on the transition portions, with the transition portions connected to the load-bearing portion and the separation portion. A plurality of weighing sensors () are provided at a bottom of the separation portion. A support portion () is below the weighing sensors to provide support therefor. The weighing device simplifies the loading condition of weighing sensors and isolates the horizontal mechanical deformation/distortion of the weighing load-bearing mechanism. It also reduces the influence of mechanical deformation/distortion, thereby improving the weighing performance and the effectiveness of the weighing device. 1. A device for weighing an object , comprising:a load-bearing portion to support an object being weighed;a support portion;a plurality of weighing sensors, supported by the support portion;a separation portion, positioned to bear upon the plurality of weighing sensors; anda plurality of transition portions, located between, and connected to, both the load bearing portion and the separation portion.2. The device of claim 1 , wherein there are at least three weighing sensors.3. The device of claim 1 , wherein the transition portions are made of an elastic material.4. The device of claim 1 , wherein the transition portions are fixedly connected to the load-bearing portion and the separation portion.5. The device of claim 1 , wherein the transition portions are configured as a movable mechanism comprising:an upper movable portion that is fixedly connected to a bottom of the load-bearing portion, with a lower end surface of the upper movable portion comprising a concave surface; anda lower movable portion that is fixedly connected to a top of the separation portion, with an upper end surface of the ...

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14-01-2016 дата публикации

DIAGNOSTIC METHOD FOR A WEIGHING CELL

Номер: US20160011038A1
Принадлежит:

A force-measuring device () with a parallelogram linkage has a measurement transducer coupled to it. A coil () of the transducer has guided mobility in a magnet system () and can carry an electric current (). A position sensor () detects the deflection of the coil () from a balanced position relative to the magnet system when a load is placed on the force-measuring device. The electric current () flowing through the coil (), by way of the interaction between the coil and the magnet system, returns the coil and the movable parallel leg to the balanced position. A system-characterizing means () is established in a processor unit (). The system-characterizing means and an unchangeable system reference means () are compared to determine the functionality of the device. The functionality is verified by the magnitudes of the electric current and the deflection of the coil from its balanced position. 1. A method for verifying a functionality of a force-measuring device which works according to the principle of electromagnetic force compensation , the force measuring device comprising a stationary parallel leg , a movable parallel leg which receives the load of a weighing object , two parallel guides that connect the stationary and movable parallel legs , a measurement transducer that is coupled to the parallel leg through a force-transmitting connection and comprises a coil that is arranged with guided mobility in a magnet system and that can carry an electric current , a position sensor , arranged to detect a deflection of the coil from a balanced position relative to the magnet system , the deflection occurring as a result of placing a load on the movable parallel leg , such that an electric current flows through the coil by way of the electromagnetic force acting between the coil and the magnet system to return to , or to maintain in , the balanced position the coil and the movable parallel leg , which is connected to either the coil or the magnet system , the method ...

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11-01-2018 дата публикации

LOAD CELL

Номер: US20180010952A1
Автор: Johnson Thomas H.
Принадлежит:

The invention relates to a load cell symmetrical about a central vertical axis and comprising first and second mounting surfaces, each on the same horizontal plane and configured for attachment to a support structure and to a loading fixture respectively. 1. A load cell symmetrical about a central vertical axis and comprising first and second mounting surfaces , each on the same horizontal plane and configured for attachment to a support structure and to a loading fixture respectively , wherein the load cell has a length , a width and a height , wherein the length is the largest dimension , and wherein the first and second mounting surfaces are at different locations along the length direction.2. A load cell according to wherein the load cell is longitudinally and transversely symmetrical respectively about a central longitudinal plane and a central transverse plane perpendicular to one another and transecting at the central vertical axis.3. The load cell of claim 1 , wherein the load cell includes a first through passage extending from a first side of the load cell to a second side of the load cell claim 1 , the second side of the load cell opposite the first side of the load cell claim 1 , and a second through passage extending from a third side of the load cell to a fourth side of the load cell claim 1 , the fourth side opposite the second side claim 1 , wherein the first and second through passages extend in a direction normal to the length direction claim 1 , and wherein the first and second passages meet each other such that a through passage extends from the first side to the fourth side and a through passage extends from the second side to the third side.4. A load cell according to wherein the mounting surfaces are located at opposing ends of the load cell and are equidistant the central vertical axis.5. A load cell according to wherein the mounting surfaces are located at opposing ends of the load cell and are equidistant the central vertical axis and are ...

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11-01-2018 дата публикации

METHOD AND SYSTEM TO QUICKLY DETERMINE A WEIGHT

Номер: US20180010956A1
Принадлежит: WITHINGS

A method for determining the weight of an entity/item to be weighed on a weighing device (), the weighing device comprising at least a weight sensor and a control unit (), 114. A method for determining the weight of an entity/item to be weighed on a weighing device () , the weighing device comprising at least a weight sensor and a control unit () ,the method comprising the following steps:{'b': '0', '/a/ collecting weight raw samples (WSi) of the total weight sensed at the weight sensor(s), at a sampling frequency (F), and converting each of the weight raw samples (WSi) into digitalized weight raw samples (DSi),'}/b/ entering sequentially each of the digitalized weight raw samples (DSi) into a Butterworth filter, the latter issuing filtered weight samples (FSi),/c/ defining a rolling window (RW) containing a parametrized number NS of latest filtered weight samples (FSi),/d1/ determining, in the rolling window, the minimum (MIN) and maximum (MAX) values of filtered weight samples,/d2/ comparing the value of MAX−MIN with regard to a parametrized Threshold (T),/e/ if MAX−MIN is greater than Threshold (T), repeat steps /a/ to /d2/, and as soon as MAX−MIN is less than Threshold (T), output a final weight value (DV), obtained from one or more of the most recent filtered weight samples.2. The method of claim 1 , wherein the entity/item is a human individual standing or lying on the weighing device claim 1 , and wherein at step /e/ the final weight value (DV) is displayed on a display.3. The method of claim 1 , wherein the outputted final weight value (DV) is equal to the average of the NS most recent filtered weight sample.40. The method of claim 1 , wherein all the steps are performed subsequently at the sampling frequency (F).5. The method of claim 2 , wherein the Butterworth filter is a second order Butterworth filter.60. The method of claim 2 , wherein the sampling frequency (F) is comprised between 20 Hz and 500 Hz.7. The method of claim 2 , wherein the number NS is ...

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14-01-2021 дата публикации

WEIGHING PLATFORM

Номер: US20210010853A1
Принадлежит:

This invention relates to a weighing platform, particularly used in the livestock sector, formed by a base plate (), which is constituted by a first upper surface () and a second lower surface (), the second surface () being provided with a plurality of first bars () with an I-shaped cross-section, which are arranged parallel to the longitudinal axis and fixed on the second surface (), the first bars () being aligned in parallel and arranged spaced apart from each other, with the platform having a functional design capable of imparting a ciliary movement, necessary to prevent dirt from settling on the platform, as well as to guarantee the necessary resistance to confer excellent durability to the platform. 11123331331. A weighing platform formed by a base plate () , the base plate () including a first upper surface () and a second lower surface () , the platform being characterized in that the second surface () is provided with a plurality of first I-shaped cross-section bars () , which are arranged in parallel to a longitudinal axis and fixed on the second surface () , with the first bars () being aligned in parallel and spaced apart.231111. The weighing platform according to claim 1 , characterized in that the first bars () comprise a height (H) ranging from 30 to 100 millimeters claim 1 , a width (L) ranging from 30 to 50 millimeters and a thickness (E) which varies between 6 and 8 millimeters.3311311. A weighing platform according to claim 1 , characterized in that the first bars () are arranged equally spaced along a width (L) of the base plate () claim 1 , with a minimum quantity of at least one first bar () every 3.8 millimeters of width (L) from the base plate ().433231332313. A weighing platform according to claim 1 , characterized in that the second surface () is further provided with a plurality of second bars () with a circular cross-section claim 1 , which are arranged orthogonally to the first bars () and parallel to a transverse axis of the second ...

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14-01-2021 дата публикации

SYSTEMS AND METHODS FOR SCALE CALIBRATION

Номер: US20210010854A1
Принадлежит:

Systems and methods for scale calibration. One example embodiment provides a system for calibrating a scale. The system may generally include an actuator for applying force to a platform of the medical scale, and an electronic processor communicatively coupled to the actuator. The electronic processor may be configured to control an actuator to apply, for a first interval, a first applied force having a first value greater than a target force value, and control the actuator to apply, for a second interval, a second applied force having a second value substantially equal to the target force value. 1. A method for calibrating a scale , the method comprising:(a) for a first interval, applying a first applied force having a first value greater than a target force value; and(b) for a second interval, applying a second applied force having a second value substantially equal to the target force value.2. The method of claim 1 , wherein applying the second applied force includes claim 1 , prior to applying the second applied force claim 1 , applying a third applied force having a third value less than the target force value.3. The method of claim 1 , further comprising claim 1 , during the second interval claim 1 , receiving claim 1 , from a load cell claim 1 , an applied force value for the second applied force.4. The method of claim 3 , further comprising claim 3 , when the applied force value is less than the target force value by a first threshold claim 3 , increasing the second applied force to the target force value.5. The method of claim 3 , further comprising claim 3 , when the applied force value is greater than the target force value by a second threshold claim 3 , reducing the second applied force to the target force value.6. The method of claim 1 , further comprising:determining a plurality of target force values; andfor each of the plurality of target force values, repeating acts (a) and (b).7. The method of claim 1 , further comprising:determining a location ...

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15-01-2015 дата публикации

CHLORINE MEASUREMENT/FILTER TESTING/BRINE CONTAINER MONITORING OF A WATER TREATMENT SYSTEM

Номер: US20150014068A1
Автор: Völker Manfred
Принадлежит:

The water treatment system, particularly reverse-osmosis system, comprising a salt water container, is characterized in that the salt water container is arranged on a weighing device which measures the weight of the salt water container. 1. A water treatment system , particularly reverse-osmosis system , comprising a salt water container ,wherein the salt water container is arranged on a weighing device which measures the weight of the salt water container.2. The water treatment system according to claim 1 ,wherein the weighing device is designed as an independent constructional understructure.3. The water treatment system according to claim 1 ,wherein the weighing device comprises a weighing platform with feet and a weighing cell.4. The water treatment system according to claim 3 ,wherein the feet are fastened underneath supports which extend in star-shaped configuration at the same angle relative to one another and hold the feet at the same distance relative to one another and from the center of the star shape.5. The water treatment system according to claim 4 ,wherein three supports are provided with a respective foot.6. The water treatment system according to claim 5 ,wherein the weighing platform rests on the supports.7. The water treatment system according to claim 1 ,wherein a foot forms a measuring foot in that the weighing cell is disposed between the measuring foot and the weighing platform.8. The water treatment system according to claim 1 ,wherein the weighing platform comprises upright wall sections for centering the salt water container on the weighing platform.9. The water treatment system according to claim 3 ,wherein the weighing cell is connected to electronics which processes the signals thereof.10. The water treatment system according to claim 9 ,wherein an optical and/or acoustic warning indicator is connected to the electronics, which outputs a warning signal when a predetermined limit value is reached. The present invention refers to a fluid ...

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09-01-2020 дата публикации

WEIGHT MEASURING DEVICE AND STOCK CONTROL SYSTEM

Номер: US20200013002A1
Принадлежит: Smart Shopping, Inc.

A weight measuring device that includes a housing having a flat panel shape, a weight sensor that measures a weight of a product placed on a top of the housing, a memory that stores address information of an address of a server on a network, and processing circuitry that wirelessly communicates with the server on the network, acquires measurement data from the weight sensor, and sends the acquired measurement data to the server using the address information stored in the memory. 1. A weight measuring device , comprisinga housing having a flat panel shape;a weight sensor configured to measure a weight of a product placed on a top of the housing;a memory configured to store address information of an address of a server on a network; and wirelessly communicate with the server on the network;', 'acquire measurement dam from the weight sensor; and', 'send the acquired measurement data lo the server using the address information stored in the memory., 'processing circuitry configured to'}2. The weight measuring device according to claim 1 , further comprising:a battery compartment configured to house a battery for supplying power to the weight sensor, the memory, and the processing circuitry.3. The weight measuring device according to claim 1 , wherein the housing includes a mat claim 1 , and the weight sensor is included in the mat.4. The weight measuring device according to claim 1 , wherein the hosing is configured to be combined with another housing of another weight measuring device in a planar direction.7. The weight measuring device according to claim 1 , whereinthe memory is configured to store a set value of a measurement frequency, andthe processing circuitry is configured to acquire the measurement data from the weight sensor and send the measurement data to the server at the measurement frequency stored in the memory.8. The weight measuring device according to claim 2 , whereinthe processing circuitry is configured to send information about remaining power of ...

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03-02-2022 дата публикации

INADVERTENT SUBSEQUENT SCAN PREVENTION FOR SYMBOLOGY READER WITH WEIGHING PLATTER

Номер: US20220034706A1
Принадлежит:

Methods of detecting scan avoidance events during decode sessions are disclosed herein. An example method includes during a timeout period at one or more processors of the symbology scanner, identifying and decoding a transaction affecting indicia on an object in one or more images to obtain a transaction affecting payload; during the timeout period at the one or more processors, identifying one or more visual features in the one or more images; and in response to identifying a non-transaction affecting indicia associated with the one or more visual features, and failing to identify or decode the transaction affecting indicia, determining a potential scan avoidance attempt and generating a scan avoidance alarm signal. 1. A computer-implemented method for preventing inadvertent subsequent scanning using a symbology reader , the method comprising:scanning and decoding a barcode on an object using the symbology scanner;detecting presence of the object at a weighing platter of the symbology reader and detecting stabilization of the object at the weighing platter; andresponsive to detecting the stabilization of the object, preventing reporting of subsequent decoding of the barcode until a release condition is satisfied.2. The computer-implemented method of claim 1 , further comprising: monitoring for the release condition starting from the detection of the stabilization of the object.3. The computer-implemented method of claim 2 , wherein the release condition is a timeout period measured from the detection of the stabilization of the object.4. The computer-implemented method of claim 1 , further comprising:detecting an destabilization of the object; andmonitoring for the release condition from the detection of the destabilization of the object.5. The computer-implemented method of claim 4 , wherein the release condition is a timeout period measured from the detection of the destabilization of the object.6. The computer-implemented method of claim 4 , wherein the ...

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19-01-2017 дата публикации

STRAIN GAUGE SPAN BLOCK

Номер: US20170016756A1
Автор: DEWALD Brian Dale
Принадлежит:

A system includes a span block configured to couple with an extension from a top drive at a first end of the span block and configured to couple to a tubular at a second end of the span block. The system also includes a sensor block of the span block. The sensor block extends between the first end and the second end of the span block. Moreover, the sensor block is configured to provide an electronic indication of deformation of a portion of the sensor block in response to forces placed on the span block. 1. A system , comprising:a span block configured to couple with an extension from a top drive at a first end of the span block and configured to couple to a tubular at a second end of the span block; anda sensor block of the span block, wherein the sensor block extends between the first end and the second end of the span block and wherein the sensor block is configured to provide an electronic indication of deformation of a portion of the sensor block in response to forces placed on the span block.2. The system of claim 1 , wherein the span block comprises a plurality of sensor blocks positioned circumferentially about the span block.3. The system of claim 1 , wherein the sensor block comprises:a first portion at a first end of the span block;a second portion at a second end of the span block; anda reactive section positioned between the first portion and the second portion, wherein the reactive section is configured to couple the first portion to the second portion.4. The system of claim 3 , wherein the first portion comprises a first width claim 3 , the second portion comprises a second width claim 3 , and the reactive portion comprises a third width that is smaller than each of the first and second widths.5. The system of claim 3 , wherein the first portion comprises a first length claim 3 , the second portion comprises a second length claim 3 , and the reactive portion comprises a third length claim 3 , and the third length is smaller than the first and second ...

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21-01-2016 дата публикации

DYNAMIC SCALE WITH MULTIPLE WEIGHING PANS

Номер: US20160018251A1
Принадлежит: Francotyp Postalia GmbH

A dynamic scale to achieves a higher throughput, by at least one of a spring steel sheet being installed in the travel direction of the first shaft of the first transport belt, and/or the control of the motors as well as the transmission of the sensor signals taking place via ribbon cables which are arranged parallel to the transport belts, and/or an electronic evaluation of interference oscillations of the signals of the sensors of the weighing cell takes place, within at least one lowpass filter being used, and wherein at least two digital notch filters are used.

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18-01-2018 дата публикации

Granule Dosing System for Plastics Processing Machines

Номер: US20180017431A1
Автор: Konermann Stefan
Принадлежит:

A granule-dosing system for plastics processing machines including a weighing container removably retained in an operating position on a framework; a plurality of supply containers having outlets which are connected to an inlet of the weighing container via dosing mechanisms; a mixer with an inlet which is connected to an outlet of the weighing container; and a safety switch and a control device designed to switch off the dosing mechanisms and/or the mixer when the safety switch emits a switch-off signal, wherein the weighing container is configured such that, in the operating position, it blocks access to the dosing mechanisms and/or to the inlet of the mixer, and the safety switch is arranged on the framework such that it emits the switch-off signal when the weighing container is removed from the operating position. 1. A granule dosing system for plastics processing machines comprising:a weighing container removably retained in an operating position on a framework;a plurality of supply containers having outlets which are connected to an inlet of the weighing container via dosing mechanisms;a mixer with an inlet which is connected to an outlet of the weighing container; and the dosing mechanisms and', 'the mixer', 'when the safety switch emits a switch-off signal,, 'a safety switch and a control device designed to switch off at least one of the dosing mechanisms and', 'the inlet of the mixer, and, 'wherein the weighing container is configured such that, in the operating position, it blocks access to at least one ofwherein the safety switch is arranged on the framework such that it emits the switch-off signal when the weighing container is removed from the operating position.2. The system according to claim 1 , wherein the framework has a frame which is C-shaped in plan view and in which a funnel-shaped lower part of the weighing container is supported in the operating position.3. The system according to claim 2 , wherein the safety switch is arranged on a side of ...

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18-01-2018 дата публикации

Balance having a load changing device and method for operating said balance

Номер: US20180017432A1

A balance with a load changing device ( 14 ) that has a magazine table, mounted to be horizontally movable and having a plurality of vertical openings ( 26 ) arranged in groups. The balance ( 12 ) has a load cell ( 34 ) and a load receptor ( 42 ) with a carrier arrangement ( 44 ) corresponding to each of the groups of openings. The magazine table and the balance are height adjustable relative to each other. In a weighing position, a group of openings above the load receptor is penetrated by the carrier arrangement. In a changing position, the carrier arrangement is positioned lower than the openings in the magazine table. The magazine table is mounted at a fixed height relative to a base ( 16 ), and the balance is height adjustable relative to the base. The travel of the balance is upwardly limited by a stop ( 32 ), which is at a fixed height relative to the base.

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16-01-2020 дата публикации

DELIVERY LANDING PADS FOR UNMANNED AERIAL VEHICLES (UAVs)

Номер: US20200017237A1
Автор: James Kendall Walker
Принадлежит: Boeing Co

Delivery landing pads for unmanned aerial vehicles (UAVs) are disclosed. A disclosed landing pad to support a UAV includes a landing surface, and a pressure sensor operatively coupled to the landing surface. The landing pad also includes a processor to determine a presence of the UAV on the landing pad and calculate a weight of a payload transported by the UAV based on a measurement of the pressure sensor to determine whether the payload has been delivered to the landing pad.

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17-04-2014 дата публикации

Method for Weighing Masses on a Conveyer System and Device for Treating Food Products

Номер: US20140102811A1
Автор: Danwerth Peter J.
Принадлежит: Schröder Maschinenbau KG

A method for weighing masses on a conveyor system () on which the masses to be weighed are advanced in horizontal direction and which includes a conveyor section () that is limp in a vertical bending direction, including the steps of continuously measuring the weight force that acts upon the limp conveyor section () while the masses are advanced on this conveyor section, recording a force/displacement function that indicates the weight force as a function of the distance traveled by the conveyor system (), and calculating the mass flow rate of the conveyor system by evaluating the force/displacement function. 1. A method for weighing masses on a conveyor system on which the masses to be weighed are advanced in a horizontal direction and in which the conveyor system includes a conveyor section that is limp in a vertical bending direction , comprising the steps of:continuously measuring a weight force that acts upon the limp conveyor section while the masses are advanced on this conveyor section,recording a force/displacement function that indicates the weight force as a function of a distance traveled by the conveyor system, andcalculating a mass flow rate of the conveyor system by evaluating the force/displacement function.2. The method according to claim 1 , wherein the limp conveyor section is uniformly supported on a force measuring device for a predetermined length in the direction of conveyance claim 1 , so that the measured force is independent of the distribution of the masses on the conveyor section.3. The method according to claim 2 , wherein the step of calculating the mass flow rate includes the step of integrating the force/displacement function over the distance that the conveyor system has traveled.4. The method according to claim 2 , wherein the step of calculating the mass flow rate includes the step of calculating a difference between a derivative of the force/displacement function at an input end of the supported conveyor section and a derivative ...

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22-01-2015 дата публикации

FLEX CIRCUIT INTERFACE FOR STRAIN GAUGES

Номер: US20150021105A1
Принадлежит: ILLINOIS TOOL WORKS INC.

A load cell may include a bar having a supported end, an unsupported end and a sensor holding portion disposed between the supported end and the unsupported end. The load cell may further include a plurality of electronic sensors including a first strain gauge pair and a second strain gauge pair disposed along the sensor holding portion. The load cell may further include an interface member directly connecting the electronic sensors for weight calculation responsive to application of a load to the unsupported end. In some cases, the interface member may include a flex circuit. 1. A load cell comprising:a bar having a supported end, an unsupported end and a sensor holding portion disposed between the supported end and the unsupported end;a plurality of electronic sensors including a first strain gauge pair and a second strain gauge pair disposed along the sensor holding portion; andan interface member directly connecting the electronic sensors for weight calculation responsive to application of a load to the unsupported end,wherein the interface member comprises a flex circuit.2. The load cell of claim 1 , wherein the interface member includes conductive traces disposed on a flexible substrate claim 1 , the flexible substrate being adhered to the sensor holding portion.3. The load cell of claim 2 , wherein the conductive traces extend from pad portions disposed at corresponding ends of arms of the interface member to a hub portion of the interface member to couple the first strain gauge pair and the second strain gauge pair to a Wheatstone bridge.4. The load cell of claim 1 , wherein the first strain gauge pair is disposed along one side of the bar at which a maximum compression force is experienced claim 1 , and wherein the second strain gauge pair is disposed along an opposite side of the bar at which a maximum tension force is experienced.5. The load cell of claim 4 , wherein the arms have multiple turns therein of about 90 degrees.6. The load cell of claim 4 , ...

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21-01-2021 дата публикации

Food scale

Номер: US20210018357A1
Принадлежит: Individual

A food scale comprising: a weighing surface; a bottom surface on a side of the scale opposite the weighing surface; a first bracket adjustably attachable to the bottom surface, the first bracket comprising a first lip that extends away from the bottom surface; a second bracket adjustably attachable to the bottom surface, the second bracket comprising a second lip that extends away from the bottom surface; where the first and second lips are configured to line up with and abut the sides of a cutting board when the food scale is placed on the cutting board, with the weighing surface facing upward.

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21-01-2021 дата публикации

SCALE CALIBRATION DEVICE AND METHOD OF USE

Номер: US20210018358A1
Принадлежит:

A scale calibration device and method of use. The device may include a base supportable on and movable along a surface to a location. The base further includes a base surface for supporting a scale to be calibrated proximate the location. The device includes a frame assembly connected to the base and operable to support, in a position over the base surface, means for simulating a dead weight, the means being operable to apply a force to the scale supported on the base surface. 1. A device comprising:a base supportable on and movable along a surface to a location, the base including a base surface for supporting a scale to be calibrated proximate the location; anda frame assembly connected to the base and operable to support, in a position over the base surface, means for simulating a dead weight, the means being operable to apply a force to the scale supported on the base surface.2. The device of claim 1 , further comprising the means for simulating a dead weight supported on the frame assembly.3. The device of claim 1 , wherein the frame assembly includes generally vertical first and second beams connected to the base and a generally horizontal beam extending between the first and second beams.4. The device of claim 1 , wherein the frame assembly is removable from the base.5. The device of claim 4 , further comprising a toolless connection mechanism operable to releasably connect the frame assembly to the base.6. The device of claim 5 , wherein the connection mechanism includesa rod extending through a portion of the frame assembly and engageable in a recess defined in the base, andan actuator connected to the rod and operable to move the rod into and out of engagement with the recess to selectively connect and disconnect, respectively, the frame assembly from the base.7. The device of claim 1 , further comprising a work support assembly including a post coupled to one of the frame assembly and the base and a support member connected to the post.8. The device of ...

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26-01-2017 дата публикации

PRECISION BALANCE OR MASS COMPARATOR WITH MODULE FOR DETECTING A MEASUREMENT UNCERTAINTY

Номер: US20170023400A1
Принадлежит:

A precision balance including a weighing chamber (), a draft shield () which surrounds the weighing chamber, a climate module () which is detachably disposed in the weighing chamber, a processor (), a data input unit, and a data transmission path over which data is exchanged between the climate module and the processor. The processor has a measurement uncertainty determining module () with which the measurement uncertainty of the balance is determined. Also disclosed are a method for determining a measurement uncertainty of a balance and a climate module that forms a self-contained modular unit, and includes an air pressure sensor (), an air humidity sensor () and an air temperature sensor (). A data transmission path transmits data to a processor external to the climate module. 1. Precision balance , comprising:a weighing chamber,a draft shield which surrounds the weighing chamber,a climate module which comprises an air pressure sensor, an air humidity sensor and an air temperature sensor, and which is detachably disposed in the weighing chamber and is configured to mount within an to detach from the weighing chamber,a processor, a data input unit, anda data transmission path over which data is exchanged between the climate module and the processor,wherein the processor comprises a measurement uncertainty determining module with which a measurement uncertainty of the balance is determined.2. The precision balance as claimed in claim 1 , wherein the data transmission path comprises an electrical plug-in connection or a wireless transmission path.3. The precision balance as claimed in claim 1 , further comprising a sensor coupled to the data transmission path and configured to determine a degree of ionization in the weighing chamber.4. The precision balance as claimed in claim 1 , wherein the weighing chamber comprises a light sensor claim 1 , which is coupled to the data transmission path.5. The precision balance as claimed in claim 1 , wherein the processor is ...

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10-02-2022 дата публикации

Weight checker

Номер: US20220042841A1
Принадлежит: Ishida Co Ltd

A weight checker includes a transport unit, a weighing unit, a body, and a frame. The transport unit transports products under inspection. The weighing unit determines the weights of the products under inspection on the transport unit. The body has a screen relating to the weighing performed by the weighing unit. The frame anchors the transport unit and the weighing unit. The frame has rail members that extend in a transport direction of the transport unit. The body is independent of the transport unit and the weighing unit and is mounted to the rail members such that its position in the transport direction TD can be changed.

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29-01-2015 дата публикации

Dual Capacitor Load Cell

Номер: US20150027790A1
Принадлежит: NCR Corporation

A dual capacitor load cell is presented that includes two coupled capacitors with a common plate between them where the common plate is responsive to a force applied to the load cell. The capacitance of the two capacitors varies inversely and changes in response to the applied force. The combined capacitance of each capacitor is used to determine the magnitude of the force being applied to the load cell. 1. A capacitive based sensor for measuring a received force comprising:a first support beam and a second support beam where the first and the second support beams are horizontally spaced apart and generally parallel;a top capacitive plate disposed horizontally across and attached to the first support beam and the second support beam;a force responsive deflectable plate including a vertically deflectable main portion attached to a first side portion and a second side portion, the first side portion attached to the first support beam, the second side portion attached to the second support beam, the main portion being resiliently connected to the first and the second support beams such that the main portion is configured to move vertically in response to the received force and where the force responsive deflectable plate is located below the top capacitive plate;a bottom capacitive plate disposed horizontally between and attached to the first support beam and the second support beam and located below the force responsive deflectable plate; andwhere the top capacitive plate and the force responsive deflectable plate form a first capacitor, and the bottom capacitive plate and the force responsive deflectable plate form a second capacitor, and the capacitance of the first capacitor and the second capacitor change inversely as the result of movement of the force responsive deflectable plate.2. The sensor of claim 1 , further comprising:a capacitance to digital converter adapted to measure and output the deferential capacitance between the first capacitor and the second ...

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29-01-2015 дата публикации

Electromagnetically Force-Compensating Force-Measuring Apparatus

Номер: US20150027792A1
Принадлежит:

An electromagnetically force-compensating force-measuring apparatus () that includes a force dependent support coil () and an integrating analog/digital converter (′) that converts the coil current (I) into a digital output signal. A current/voltage converter () is connected downstream of the support coil (), the output of the current/voltage converter being connected to a measurement voltage input () of the analog/digital converter (′) and to the input of a voltage amplifier (). The resistance value of a first heating resistor (R) is equal to the resistance value of the support coil (), the resistance value of a second heating resistor (R) is equal to the conversion factor (R) of the current/voltage converter () and the gain factor of a voltage amplifier () is equal to the ratio of the resistance value of the first heating resistor to the resistance value of the second heating resistor. 2. The force-measuring apparatus as claimed in claim 1 ,whereinthe current/voltage converter comprises a converter resistor connected in series between the support coil and the input of the A/D converter, and a difference amplifier connected in parallel to the current/voltage converter.3. The force-measuring apparatus as claimed in claim 1 ,whereinthe inverter is a component of a power compensation circuit within the A/D converter. This is a Continuation of International Application PCT/EP2013/000838, with an international filing date of Mar. 20, 2013, which in turn claims priority to German Patent Application 10 2012 103 037.5, filed Apr. 10, 2012. The entire disclosures of both these related applications are incorporated into the present application by reference.The invention relates to an electromagnetically force-compensating force-measuring apparatus, comprisingDigital force-measuring devices operating according to the principle of electromagnetic force compensation, for example digital balances, have long been known. EP 2 253 944 A1 discloses a digital balance of this type. ...

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28-01-2021 дата публикации

WEIGHING PLATFORM WITH A LATTICED LOAD-BEARING STRUCTURE

Номер: US20210025751A1
Автор: JACH Marek, ZACH Piotr
Принадлежит:

The weighing platform with a lattice load-bearing structure shaped spatially and made of load-bearing elements and connecting elements intersecting with them, affixed to a joint frame, whereas the load-bearing elements, in the place of intersection with the connecting profiles, have cuts in the shape adjusted to the shape of the connecting elements, and additionally the platform contains at least one load-bearing shell, measurement elements, regulated feet and connectors, according to the invention is characterised in that the connecting elements () are located strictly in the cuts () of the load-bearing structure () at the depth “g”, equal to height “h” of the connecting elements () and at the same time less than half of the height “H” of the load-bearing elements (), while to the bottom of the weighing platform at least two profile panels () are fixed, with openings () for the screw connectors (), to which panels () the measurement elements () and regulated feet () are fixed. 18717873106345. The weighing platform with a lattice load-bearing structure shaped spatially and made of load-bearing elements and connecting elements intersecting with them , affixed to a joint frame , whereas the load-bearing elements , in the place of intersection with the connecting profiles , have cuts in the shape adjusted to the shape of the connecting elements , and additionally the platform contains at least one load-bearing shell , measurement elements , regulated feet and connectors , characterised in that the connecting elements () are located strictly in the cuts (.) of the load-bearing structure () at the depth “g” , equal to height “h” of the connecting elements () and at the same time less than half of the height “H” of the load-bearing elements () , while to the bottom of the weighing platform at least two profile panels () are fixed , with openings () for the screw connectors () , to which panels () the measurement elements () and regulated feet () are fixed.27. According to ...

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24-01-2019 дата публикации

Functional Case for Portable Electronic Device

Номер: US20190028584A1
Принадлежит:

A functional case for a portable electronic device. There is a case that is adapted to be coupled to the portable electronic device, one or more sensors built into the case, wherein the sensors are configured to detect the weight of an item placed onto the case and wherein the sensors output sensor data, and a processor that is functionally coupled to the sensors, for receiving sensor output data and determining the weight of the item, and transmitting the weight to a display associated with the case or associated with another device. 1. A functional case for a portable electronic device , comprising:a case that is adapted to be coupled to the portable electronic device;one or more sensors built into the case, wherein the sensors are configured to detect the weight of an item placed onto the case and wherein the sensors output sensor data; anda processor that is functionally coupled to the sensors, for receiving sensor output data and determining the weight of the item, and transmitting the weight to a display associated with the case or associated with another device.2. The functional case of claim 1 , wherein the case is constructed and arranged to hold an insertable module.3. The functional case of claim 2 , wherein the insertable module comprises a breathometer or a thermometer or a mechanical device.4. The functional case of claim 1 , wherein the sensors comprise piezoelectric sensors.5. The functional case of claim 1 , wherein the sensors comprise strain-based weighing sensors.6. The functional case of claim 1 , wherein the case has four corners and there are four weight sensors claim 1 , one built into each corner of the case.7. The functional case of claim 1 , wherein the portable electronic device comprises an app that is enabled to turn on the sensors via wireless commands sent to the processor of the case.8. The functional case of claim 7 , wherein the app automatically commands the portable electronic device to disable the sending or reception of ...

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31-01-2019 дата публикации

SYSTEMS, METHODS AND COMPUTER PROGRAM PRODUCTS FOR MONITORING THE BEHAVIOR, HEALTH, AND/OR CHARACTERISTICS OF AN ANIMAL

Номер: US20190029226A1
Автор: Triener Alexander
Принадлежит:

Systems, methods, and computer code products for monitoring the behavior, health, and/or characteristics of an animal are disclosed herein. In one implementation, the animal is positioned inside a waste container placed on a system that is adapted to determine, record and communicate over a network various animal health parameters. These parameters can be processed to determine trends, statistics and changes of animal physiological functions. The results can be used to access animal health conditions and issue warnings, alarms, messages, and other notifications to designated caretakers. These notifications may be displayed using various means such as computers and/or mobile devices. Data retrieval and review capability can provide improved understanding of an animal's health conditions and facilitate early illness detection. 120-. (canceled)21. A method for monitoring the behavior of an animal , the method comprising:detecting, with a sensor, a presence of the animal;measuring, with a measuring device, a characteristic of the animal when the presence of the animal is detected;storing the measured characteristic of the animal on a storage device;calculating derived data from the measured characteristic, wherein at least a portion of the derived data is selected from the group consisting of (i) an average rate of food consumption expressed in weight of food consumed per unit of time, (ii) a maximum rate of food consumption expressed in weight of food consumed per unit of time, (iii) a minimum rate of food consumption expressed in weight of food consumed per unit of time, (iv) an average rate of water consumption expressed in weight of food consumed per unit of time, (v) a maximum rate of water consumption expressed in weight of food consumed per unit of time, (vi) a minimum rate of water consumption expressed in weight of food consumed per unit of time, and (vii) combinations thereof;comparing at least one of the measured characteristic or the derived data to stored ...

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31-01-2019 дата публикации

FOODWARE SYSTEM HAVING VISUAL-STIMULATING, SENSING, HEATING, AND WIRELESS-COMMUNICATION COMPONENTS

Номер: US20190029472A1
Автор: Kramer James F.
Принадлежит:

An active foodware system includes a mechanical structure and provides visual stimuli, heating of food, and wireless communication by having a power source, a visual stimulating component, a heating component, and a wireless communication component. Other components can provide sensing, data processing, as well as auditory and haptic stimuli. The mechanical structure can be a single unit where the components and circuitry are all contained in the unit and protected from water, or can be two units: an upper food surface for receiving food, and an underplate comprising components and circuitry. 1. An active foodware system comprising:a food surface supported by a mechanical structure, said food surface being recessed in relation to a region surrounding said food surface, said food surface recessed for receiving food and preventing spillage from said food surface;a heating component for heating said food;a sensing component for providing sensed data, and for controlling said heating component for maintaining a desired temperature;a wireless communication component for wirelessly communicating said temperature, said sensed data, digital data related to said food, or electrical power; anda visual stimulating component for providing visual stimulation related to said temperature, said sensed data, said digital data, or said electrical power.2. The active foodware system according to claim 1 , wherein said mechanical structure comprises said heating component and said wireless communication component.3. The active foodware system according to claim 1 , wherein said sensing component is for sensing (a) weight claim 1 , position claim 1 , proximity claim 1 , pressure claim 1 , center of mass claim 1 , calories claim 1 , moisture claim 1 , light claim 1 , color claim 1 , reflectivity claim 1 , opacity claim 1 , density claim 1 , temperature claim 1 , velocity claim 1 , or acceleration of said food claim 1 , or (b) a user claim 1 , or (c) an active foodware member of a place ...

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02-02-2017 дата публикации

Slow speed weigh-in-motion system with flexure

Номер: US20170030764A1
Принадлежит: RINSTRUM Pty Ltd

In one embodiment, a weighing system includes a base, a platform structure movable with respect to the base, at least one flexure fixedly attached to the platform and the base, the at least one flexure configured to inhibit movement of the platform structure along a horizontal plane relative to the base, and a plurality of load cell assemblies, each of the plurality of load cell assemblies including an upper portion pivotably supported by the base through a first pivot assembly and a lower portion pivotably supporting the platform structure through a second pivot assembly, wherein an axis of rotation of the first pivot assembly is parallel to an axis of rotation of the second pivot assembly.

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02-02-2017 дата публикации

SELF-LEVELING SCALE

Номер: US20170030765A1
Автор: Oneid George
Принадлежит:

A weighing scale for measuring the weight of an object is disclosed. The weighing scale includes a base portion, a platform extending along a plane above the base portion to support the object, and at least one peg extending below the platform along an axis that is adjustable from a first position perpendicular to the plane to a second position not perpendicular to the plane. 1. A weighing scale for measuring the weight of an object , comprising:a base portion;a platform extending along a plane above the base portion to support the object; anda peg having an upper portion, which peg extends below the platform along an axis that is adjustable from a first position perpendicular to the plane to a second position not perpendicular to the plane.2. The weighing scale of claim 1 , further comprising a sensor disposed at the upper portion of the peg to sense a force between the peg and the platform.3. The weighing scale of claim 1 , further comprising a compliant member disposed at the upper portion of the peg to adjustably retain the peg in the base portion.4. The weighing scale of claim 3 , wherein the compliant member is a flexible disk.5. The weighing scale of claim 1 , further comprising a second peg extending below the platform along a second axis that is adjustable from a first position perpendicular to the plane to a second position not perpendicular to the plane.6. A weighing scale for measuring the weight of an object claim 1 , comprising:a base portion;a platform extending along a first plane above the base portion to support the object;a first peg having an upper portion, which first peg extends below the platform and defines a first axis; anda second peg having an upper portion, which second peg extends below the platform and defines a second axis, wherein at least one of the first peg and the second peg is adjustable to a position whereby the first axis is not parallel with the second axis.7. The weighing scale of claim 6 , further comprising a first sensor ...

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01-02-2018 дата публикации

LOAD CELL DEVICE

Номер: US20180031412A1
Автор: TRAKHIMOVICH Michael
Принадлежит:

A weighing scale and a load cell assembly therefor, the weighing scale including: (a) a weighing platform; (b) a base; and (c) a load cell arrangement including: (i) a load cell body, disposed below the platform and above the base, the body secured to the platform at a first position along a length of the body, and secured to the base at a second position along the length, the load cell body having a first cutout window transversely disposed through the body, the window adapted such that a downward force exerted on a top face of the weighing platform distorts the window to form a distorted window; and (ii) at least one strain-sensing gage, mounted on at least a first surface of the load cell body, the strain-sensing gage adapted to measure a strain in the first surface; and (d) an at least a one-dimensional flexure arrangement having at least a second cutout window transversely disposed through the body, the second cutout window shaped and positioned to at least partially absorb an impact delivered to a top surface of the load cell body. 134-. (canceled)35. A load cell assembly comprising: said load cell body having, transversely disposed through said body, with respect to said first and second dimensions:', '(i) a first cutout window; and', '(ii) a first flexure arrangement having a plurality of cutout windows, disposed one on top of the other;, '(a) a load cell body having a first dimension bounded by first and second faces, and second and third dimensions, disposed transversely to said first dimension, said second dimension being bounded by third and fourth faces, said first dimension being a longest dimension of said load cell body;'}(b) at least one strain-sensing gage, each said strain-sensing gage mounted on a particular surface of said third and fourth faces, longitudinally aligned with said first cutout window, along said first dimension, said at least one strain-sensing gage adapted to measure a strain in said particular surface;(c) a second flexure ...

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24-02-2022 дата публикации

METHOD FOR MEASURING ENERGY EFFICIENCY OF A QUANTITATIVE WEIGHING DEVICE

Номер: US20220057253A1
Принадлежит:

A method is provided for measuring an energy efficiency of a quantitative weighing device. A data measurement part is formed by: recording a control time of fast charging, recording a control time of slow charging, recording a comparison prohibition time, and recording weighing data. A current device reliability parameter, a fast charging feed flow, and a slow charging feed flow are calculated, based on the comparison prohibition time and the control time of slow charging. The fastest feed time under a requirement of a target reliability parameter is calculated as the difference between the target reliability parameter and the calculated control reliability parameter. By using the method, application data, such as capability of a quantitative control device and energy efficiency of the quantitative weighing device, can be intuitively obtained. This facilitates commissioning, maintenance, and use of the quantitative weighing control device. 1. A method for measuring an energy efficiency of a quantitative weighing device , comprising: a control time of fast charging (Ft),', 'a control time of slow charging (St),', 'a comparison prohibition time (Ht), and', 'weighing data (Wt);', 'calculating, based on the comparison prohibition time (Ht) and the control time of slow charging (St):', 'a control reliability parameter (Y) of the quantitative weighing device,', 'a fast charging feed flow (Cf), and', 'a slow charging feed flow (Cs); and', 'calculating a fastest feed time under a condition of a target reliability parameter based on a difference between the target reliability parameter and the calculated control reliability parameter (Y)., 'recording, for the quantitative weighing device, to form a data measurement part2. The method of claim 1 , wherein the comparison prohibition time (Ht) is obtained by:checking whether a slow charging off moment is after a fast charging off moment; and if the moment is found, this moment is recorded; or', 'if the moment is not found, the ...

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07-02-2019 дата публикации

Scales for Weighing Piglets

Номер: US20190041253A1
Принадлежит:

The invention relates to scales for weighing piglets, including a base frame; at least one weighing element arranged on the base frame; and a weigh platform arranged on the at least one weighing element, wherein the weighing platform is elongate, wherein the top surface of the weighing platform is arranged at a distance above the base and wherein the width of the elongate top surface is at least half of the width of the base in order to provide space for the legs of a piglet when supported on the belly by the elongate top surface. 1. A scale for weighing piglets , comprising:a base frame;at least one weighing element arranged on the base frame; anda weigh platform arranged on the at least one weighing element,wherein the weighing platform is elongate, wherein the top surface of the weighing platform is arranged at a distance above the base and wherein the width of the elongate top surface is less than half of the width of the base in order to provide space for the legs of a piglet when supported on the belly by the elongate top surface.2. The scale according to claim 1 , wherein the length of the top surface of the weighing platform is at least five times the width of the top surface.3. The scale according to claim 1 , wherein the width of the top surface is less than 70 millimeters claim 1 , preferably less than 60 millimeters and wherein the length of the top surface is more than 400 millimeters claim 1 , preferably more than 450 millimeters.4. The scale according to claim 1 , wherein the weighing platform comprises a bend plate having a U-shaped cross-section.5. The scale according to claim 1 , wherein the weighing platform comprises two side walls arranged at a distance from the top surface of the weighing platform claim 1 , which side walls extend perpendicular to the top surface claim 1 , and wherein the distance between the two side walls and the top surface provides space between the top surface and the two side walls for the legs of a piglet when supported ...

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07-02-2019 дата публикации

DEVICE FOR THE QUANTITATIVE ANALYSIS OF DEBRIS PRODUCED WHILE DRILLING A WELL

Номер: US20190041255A1
Автор: CALLERI Antonio
Принадлежит:

A device includes: a frame; a tray supported by the frame; a measurement device configured to weigh debris loaded on the tray; wherein the tray has a front end and a rear end with a first side and a second side each extending therebetween; wherein the first side has a first protrusion and a second protrusion with a movement member being configured to make the first protrusion follow a first trajectory; a guide is configured to make the second protrusion follow a second trajectory while the first protrusion is moved along said first trajectory; wherein the movement member is configured to act on said first protrusion so as to roto-translate the tray between a first position, wherein the tray is configured to carry debris to be weighted, and a second position wherein the tray is configured to discharge the debris. 1. A device comprising:a frame;a tray supported by said frame;a measurement device configured to weigh debris loaded on said tray;wherein the tray has a front end and a rear end;wherein the tray has a first side and a second side each extending from said front end to said rear end;wherein said first side has a first protrusion and a second protrusion;the device further comprising a movement member configured to make the first protrusion follow a first trajectory;the device further comprising a guide configured to make the second protrusion follow a second trajectory while the first protrusion is moved along said first trajectory;wherein said movement member is configured to act on said first protrusion so as to roto-translate said tray between a first position, wherein the tray is configured to carry debris to be weighted, and a second position wherein said tray is configured to discharge said debris.2. The device according to claim 1 , wherein said first trajectory is defined by at least a portion of a circle.3. The device according to claim 1 , wherein the second trajectory is curved with concavity facing upwards.4. The device according to claim 1 , ...

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07-02-2019 дата публикации

WEIGH MODULE WITH GUIDING ARRANGEMENT

Номер: US20190041256A1
Принадлежит:

A weigh module () comprises a load cell (), a supporting member () and a guiding arrangement. The supporting member () comprises a receiving hole () extending vertically and through the supporting member (). The guiding arrangement comprises a connecting member () and two parallel inner faces () defined in the receiving hole (). One end of the connecting member () is fixed to the load cell () and another end of the connecting member () extends into the receiving hole (). The connecting member () cooperates with the two inner faces () whereby the supporting member () can substantially move in a direction parallel with the inner faces (). 1. A weigh module , comprising:a load cell;a supporting member comprising a receiving hole extending vertically and through the supporting member; anda guiding arrangement comprising a connecting member and two parallel inner faces defined in the receiving hole, one end of the connecting member fixed to the load cell and another end of the connecting member extending into the receiving hole, the connecting member cooperating with the two inner faces whereby the supporting member can substantially move in a direction parallel with the inner faces.2. The weigh module of claim 1 , further comprising:a guiding member arranged in the receiving hole defining the two inner faces.3. The weigh module of claim 1 , wherein:the connecting member is in point contact with each of the inner faces.4. The weigh module of claim 3 , wherein:the receiving hole comprises a first receiving space and a second receiving space connecting with the first receiving space, the connecting member comprising a limiting end extending from the first receiving space into the second receiving space, a fixing end fixed to the load cell and a connecting part connecting the limiting end to the fixing end, wherein the limiting end is configured as an end stop in such a way that the supporting member is limited to move in the vertical direction.5. The weigh module of claim ...

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07-02-2019 дата публикации

WEIGH MODULE WITH SUPPORTING MEMBER

Номер: US20190041257A1
Принадлежит:

A weigh module () comprises a load cell (), a supporting member (), a connecting member () and a sealing member (). The supporting member () comprises a receiving hole () extending vertically and thoroughly. The connecting member () comprises a fixing end () fixed to the load cell () and a limiting end () extending into the receiving hole (). The limiting end () is configured to prevent the supporting member () from getting rid of the connecting member (). The sealing member () comprises a first end () fixed to the supporting member (), a second end () fixed to the load cell () and a raised portion (). 1. A weigh module , comprising:a load cell;a supporting member comprising a receiving hole extending vertically and through the supporting member; anda connecting member, the connecting member comprising a fixing end fixed to the load cell and a limiting end extending into the receiving hole, the limiting end being configured to prevent the supporting member to be lift off from the connecting member; anda sealing member comprising a first end fixed to the supporting member, a second end fixed to the load cell and a raised portion.2. The weigh module of claim 1 , wherein:the load cell comprises two blind holes, the sealing member comprising two limiting portions inserting into the two blind holes.3. The weigh module of claim 1 , wherein:the sealing member is made of rubber material, a second rigid part being embedded in the second end of the sealing member, the raised portions being formed on the second rigid part.4. The weigh module of claim 1 , wherein:the raised portion is formed between the supporting member and the load cell.5. The weigh module of claim 1 , wherein:the second end is fixed to the load cell by the connecting member.6. The weigh module of claim 1 , wherein:the receiving hole comprises thread therein, the weigh module further comprising a bearing member disposed in the receiving hole and connecting with the supporting member by screw joint and a ...

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12-02-2015 дата публикации

MEASUREMENT SYSTEM, MEASUREMENT METHOD OF MEASUREMENT DEVICE, MEASUREMENT DEVICE, AND NON-TRANSITORY STORAGE MEDIUM ENCODED WITH COMPUTER READABLE CONTROL PROGRAM, CAPABLE OF COMPLETING MEASUREMENT IN SIMPLE MANNER AND PROMPTLY

Номер: US20150046120A1
Принадлежит: NINTENDO CO., LTD.

An exemplary embodiment provides a measurement system. A measurement system measuring body weight includes a weight detection unit detecting weight at predetermined detection cycles, and a calculating unit calculating an average value based on measurement values detected by the weight detection unit at the detection cycles. The detection cycle is shorter than a cycle at which a transient signal waveform predicted in accordance with measurement values detected by the weight detection unit can be obtained. 1. A measurement system measuring body weight , comprising:a weight detection unit detecting weight at predetermined detection cycles; anda calculating unit calculating an average value based on measurement values detected at said detection cycles by said weight detection unit,said detection cycle is shorter than a cycle at which a transient signal waveform predicted in accordance with measurement values detected by said weight detection unit can be obtained.2. The measurement system according to claim 1 , whereinsaid calculating unit calculates an average value based on measurement values detected by said weight detection unit during a predetermined interval.3. The measurement system according to claim 2 , whereinsaid calculating unit determines whether or not the measurement values detected by said weight detection unit satisfy a predetermined condition, andsaid calculating unit calculates the average value based on the measurement values for said predetermined interval when determined that the predetermined condition is satisfied.4. The measurement system according to claim 3 , whereinsaid calculating unit determines whether or not the measurement values detected by said weight detection unit for a predetermined period satisfy a predetermined condition, andsaid predetermined interval includes said predetermined period determined that said predetermined condition is satisfied.5. The measurement system according to claim 3 , whereinsaid predetermined interval ...

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18-02-2016 дата публикации

Load cell for weight measurement

Номер: US20160047702A1
Принадлежит: Bizerba SE and Co KG

The invention relates to a load cell for weight measurement with a load beam which has an overload protection. In order to achieve a cost-effective manufacture, it is provided that the overload protection has a bar, running parallel to the center plane of the load beam, which freely engages in a recess on the movable force application side of the load beam, with the result that there is an upper and a lower air gap between the bar and the force application side. In the case of an overload, the upper or the lower air gap is bridged and the force application side comes to rest against the bar, with the result that no further movement of the force application side relative to the stationary side of the load cell is possible.

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15-02-2018 дата публикации

Weight Scale and Corresponding Systems and Methods for Preventing Advancement of Congestive Heart Failure

Номер: US20180045558A1
Принадлежит:

A weight scale () for assisting with management of congestive heart failure and other ailments includes a housing () that can define a substantially flat planar surface (). A weight measurement device () measures a weight of a user. A control circuit () stores in a memory () a first predefined weight threshold () and a second predefined weight threshold (). The scale includes light sources () operable with the control circuit to selectively present one of three color-coded indications. When the weight is between the below the first predefined weight threshold, the light sources present a first color indication. When the weight is between the first predefined weight threshold and the second predefined weight threshold, the light sources present a second color indication. When the weight is above the second predefined weight threshold, the light sources present a third color indication. 1. A weight scale , comprising:a housing defining a substantially planar surface;a weight measurement device measuring a weight of a predefined user when on the substantially planar surface;a display disposed along the substantially planar surface;control circuit operable with the display, the control circuit storing in a memory a first predefined weight threshold of the predefined user and a second predefined weight threshold corresponding the predefined user; anda plurality of light sources, operable with the control circuit to selectively present one of three color-coded indications, wherein each of the plurality of light sources is separate from the display; when the weight is between the below the first predefined weight threshold, at least one light source of the plurality of light sources to present a first color indication;', 'when the weight is between the first predefined weight threshold and the second predefined weight threshold, the at least one light source of the plurality of light sources to present a second color indication; and', 'when the weight is above the second ...

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25-02-2021 дата публикации

SYSTEM AND METHOD FOR ACCURATE WEIGHT MEASUREMENT

Номер: US20210053604A1
Принадлежит: Sbot Technologies, Inc.

Disclosed herein relates to a system, comprising: at least one load receiver mounted on a shopping cart or basket and configured to receive an item placed into the shopping cart or basket for a weighing operation; a plurality of sensors configured to detect a plurality of parameters relating to the weighing operation of the item including at least one of: a relative angle between a force sensing axis of the at least one load receiver and a direction of gravity, a motion of the shopping cart or basket, and an ambient temperature surrounding the shopping cart or basket and the at least one load receiver; and a processor configured to determine an actual weight of the item based on at least a portion of the plurality of parameters. 1. (canceled)2. A system , comprising: at least one load receiver configured to perform a weighing operation of an item placed into the shopping cart or basket,', 'a plurality of sensors configured to detect a plurality of parameters relating to the weighing operation of the item, and', obtain information of the item from a computing device via a communication network;', 'determine an actual weight of the item based at least upon the information of the item obtained from the computing device and a portion of the plurality of parameters, and', 'inhibit the weighing operation of the item in response to detecting that at least the portion of the plurality of parameters exceeds a selected threshold; and, 'a processor configured to], 'a shopping cart or basket, comprisingthe computing device configured to store the information of the item and transmit the information to the processor of the shopping cart or basket in response to detecting the item has been identified by the shopping cart or basket and placed on the at least one load receiver.3. The system of claim 2 , wherein the plurality of parameters relating to the weighing operation of the item at least include a relative angle between a force sensing axis of the at least one load receiver ...

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14-02-2019 дата публикации

MOUNTING ASSEMBLY FOR A WEIGHING DEVICE

Номер: US20190049288A1
Автор: Stewart Aaron, Wood Brian
Принадлежит:

A mounting assembly for a weighing device according to an exemplary aspect of the present disclosure includes, among other things, a vertical structure mount, a first link attached to the vertical structure mount, a second link for attachment to a weighing device, a third link pivotably attached to one of the first link and second link, and a fourth link pivotably attached to one of the first and second link. 1. A mounting assembly for a weighing device comprising:a vertical structure mount;a first link attached to the vertical structure mount;a second link for attachment to a weighing device;a third link pivotably attached to one of the first link and second link;a fourth link pivotably attached to one of the first and second link.2. The mounting assembly as recited in claim 1 , wherein the second link is configured for attachment to an upper weighing surface of the weighing device.3. The mounting assembly as recited in claim 1 , comprising a fifth link pivotably attached to the second link.4. The mounting assembly as recited in claim 3 , comprising a sixth link pivotably attached to the second link.5. The mounting assembly as recited in claim 4 , wherein the third link is pivotably attached to the fifth link claim 4 , and the fourth link is pivotably attached to the sixth link.6. The mounting assembly as recited in claim 4 , wherein the third link and fourth link are pivotably attached to the first link.7. The mounting assembly as recited in claim 5 , wherein the vertical structure mount is configured to be attached to a wall surface.8. The mounting assembly as recited in claim 1 , wherein the first link is vertically movable within the vertical structure mount.9. The mounting assembly as recited in claim 1 , wherein the second link is configured for attachment to an upper weighing surface of a weighing device.10. The mounting assembly as recited in claim 9 , wherein the second link includes a first extension and a second extension for attachment to the upper ...

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14-02-2019 дата публикации

MOUNTING ASSEMBLY FOR A WEIGHING DEVICE

Номер: US20190049289A1
Автор: Stewart Aaron, Wood Brian
Принадлежит:

A mounting assembly for a weighing device according to an exemplary aspect of the present disclosure includes, among other things, a vertical structure mount, a first link attached to the vertical structure mount, a second link for attachment to a weighing device, a third link pivotably attached to one of the first link and second link, and a fourth link pivotably attached to one of the first and second link. 1. A mounting assembly for a weighing device comprising:a vertical structure mount;a first link attached to and vertically movable within the vertical structure mount;a second link for attachment to a weighing device;a third link pivotably attached to one of the first link and second link;a fourth link pivotably attached to one of the first and second link.2. The mounting assembly as recited in claim 1 , comprising a bracket for attaching the second link to the weighing device.3. The mounting assembly as recited in claim 1 , comprising a fifth link pivotably attached to the second link.4. The mounting assembly as recited in claim 4 , comprising a sixth link pivotably attached to the second link.5. The mounting assembly as recited in claim 5 , wherein the third link is pivotably attached to the fifth link claim 5 , and the fourth link is pivotably attached to the sixth link.6. The mounting assembly as recited in claim 4 , wherein the third link and fourth link are pivotably attached to the first link.7. The mounting assembly as recited in claim 5 , wherein the vertical structure mount is configured to be attached to a wall surface.8. A method for mounting a weighing device to a vertical structure claim 5 , comprising:attaching a bracket to a weighing device;attaching the bracket to a mounting assembly, wherein the mounting assembly comprises a vertical structure mount, a first link within the vertical structure mount, a second link for attachment to the weighing device, a third link pivotably attached to the first link, and a fourth link pivotably attached to ...

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