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Применить Всего найдено 9584. Отображено 100.
16-05-1995 дата публикации

Ветроизмеритель

Номер: RU0000000438U1

Ветроизмеритель, состоящий из корпуса, флюгарки, преобразователей угла поворота, машинной стрелки, отличающийся тем, что в него введен вычислитель, выполненный и едином корпусе с индикатором, входы которого соединены с выходами преобразователей, выход соединен с входом индикатора, а преобразователь угла поворота магнитной стрелки, выполненный в виде кодового диска, закрепленного в часовых опорах, и оптронных элементов съема информации, расположен на карданном подвесе, причем магнитная стрелка размещена на диске преобразователя и жестко связана с ним, а флюгарка с преобразователем угол-код установлена с возможностью поворота относительно корпуса. (19) RU (11) (13) 438 U1 (51) МПК G01P 13/02 (1995.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 93006047/10, 02.02.1993 (46) Опубликовано: 16.05.1995 (71) Заявитель(и): Центральный научно-исследовательский институт точного машиностроения 4 3 8 (73) Патентообладатель(и): Центральный научно-исследовательский институт точного машиностроения R U (72) Автор(ы): Гончаренко С.С., Гордейчик Л.Д., Казаков О.И., Соловьев А.Н., Строчков B.C., Шаров В.Г. 4 3 8 R U (57) Формула полезной модели Ветроизмеритель, состоящий из корпуса, флюгарки, преобразователей угла поворота, машинной стрелки, отличающийся тем, что в него введен вычислитель, выполненный и едином корпусе с индикатором, входы которого соединены с выходами преобразователей, выход соединен с входом индикатора, а преобразователь угла поворота магнитной стрелки, выполненный в виде кодового диска, закрепленного в часовых опорах, и оптронных элементов съема информации, расположен на карданном подвесе, причем магнитная стрелка размещена на диске преобразователя и жестко связана с ним, а флюгарка с преобразователем угол-код установлена с возможностью поворота относительно корпуса. Ñòðàíèöà: 1 U 1 U 1 (54) Ветроизмеритель RU 438 U1 RU 438 U1 RU 438 U1 RU 438 U1

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16-04-1997 дата публикации

УСТРОЙСТВО ДЛЯ ОПРЕДЕЛЕНИЯ ЛИНИИ РАЗВИТИЯ ПРОТЯЖЕННОЙ ТУРБУЛЕНТНОЙ АНОМАЛИИ С ПОДВИЖНОГО НОСИТЕЛЯ

Номер: RU0000004007U1
Автор: Федоров С.Ф.

1. Устройство для определения линии развития протяженной турбулентной аномалии с подвижного носителя, содержащее преобразователь гидрофизического поля и регистрирующий прибор, отличающееся тем, что в него введены последовательно соединенные полосовой фильтр, блок вычисления модуля, блок усреднения, преобразователь аналог - код и блок определения максимума, последовательно соединенные генератор тактовых импульсов, элемент И и счетчик, а также блок вычисления функции где Φ - угол между направлением движения подвижного носителя и линией развития протяженной турбулентной аномалии; max - максимальное значение числа на выходе преобразователя аналог - код; l - значение числа на выходе счетчика; К и α - постоянные величины, при этом первый и второй входы упомянутого блока вычисления соединены с выходами соответственно блока определения максимума и счетчика, а его выход соединен с регистрирующим прибором, при этом вход полосового фильтра соединен с выходом преобразователя гидрофизического поля, управляющий вход преобразователя аналог - код соединен с выходом преобразователя гидрофизического поля, управляющий вход преобразователя аналог - код соединен с выходом генератора тактовых импульсов, а второй вход элемента И является входом "Обнаружение" устройства. 2. Устройство по п.1, отличающееся тем, что преобразователь гидрофизического поля выполнен в виде преобразователя турбулентных пульсаций скорости. 3. Устройство по п.1, отличающееся тем, что генератор тактовых импульсов выполнен в виде преобразователя напряжение - частота, управляющий вход которого является входом "Скорость" устройства. (19) RU (11) (13) 4 007 U1 (51) МПК G01P 13/00 (1995.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 95120492/20, 04.12.1995 (46) Опубликовано: 16.04.1997 (71) Заявитель(и): Акционерное общество закрытого типа "Гранит-7" (72) Автор(ы): Федоров С.Ф. U 1 4 0 0 7 R U где Φ - угол между направлением движения подвижного ...

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10-08-2000 дата публикации

ФЛЮГЕР

Номер: RU0000014674U1

1. Флюгер, состоящий из закрепленной на мачте неподвижной стойки с указателем сторон света и стержнем с острым конусом, на которой размещена с возможностью свободного вращения трубка-вертушка, в нижней части которой закреплена флюгарка и противовес-указатель на стержне, а в верхней - рамка с дугой и штифтами для определения скорости ветра, противовес и вертикально висящая с возможностью ее свободного колебания под воздействием ветра относительно горизонтальной оси доска указательная, при этом рама и доска указательная прикреплены так, что они размещены на одной стороне трубки-вертушки, где и лопасти флюгарки, а плоскость вертикально висящей доски указательной перпендикулярна стержню с противовесом-указателем, отличающийся тем, что неподвижная стойка снабжена подшипником скольжения, а указатель сторон света снабжен дополнительными штифтами, указывающими промежуточные стороны света, рамка снабжена подпятником для навешивания ее на стержень. 2. Флюгер по п.1, отличающийся тем, что он дополнительно снабжен осветительной системой. (19) RU (11) 14 674 (13) U1 (51) МПК G01P 13/02 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2000105171/20 , 02.03.2000 (24) Дата начала отсчета срока действия патента: 02.03.2000 (46) Опубликовано: 10.08.2000 (72) Автор(ы): Солдаткин Н.П., Харчева Л.Т., Рубекин В.Г., Номикос О.Н., Кашаев В.Ю. R U Адрес для переписки: 634055, г.Томск, пр. Академический 10/3, ИОМ СО РАН (71) Заявитель(и): Институт оптического мониторинга СО РАН (73) Патентообладатель(и): Институт оптического мониторинга СО РАН Ñòðàíèöà: 1 U 1 1 4 6 7 4 R U U 1 (57) Формула полезной модели 1. Флюгер, состоящий из закрепленной на мачте неподвижной стойки с указателем сторон света и стержнем с острым конусом, на которой размещена с возможностью свободного вращения трубка-вертушка, в нижней части которой закреплена флюгарка и противовес-указатель на стержне, а в верхней - рамка с дугой и штифтами для ...

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20-02-2001 дата публикации

СИСТЕМА КОНТРОЛЯ И РЕГИСТРАЦИИ ИНТЕНСИВНОСТИ ДОРОЖНОГО ДВИЖЕНИЯ

Номер: RU0000016872U1

Система контроля и регистрации интенсивности дорожного движения, включающая индуктивные датчики, размещенные в дорожной одежде по два на каждую полосу движения, кабельные линии, соединяющие датчики с электронным блоком, и электронный блок, состоящий из модуля генераторов, модуля измерения параметров колебаний, микропроцессорного модуля обработки и накопления информации с установленным программным обеспечением и модуля электропитания, отличающаяся тем, что изменения частоты колебаний генераторов, вызванные прохождением транспортных средств над индуктивными датчиками, сравниваются в микропроцессорном модуле обработки и накопления информации с эталонными сигналами идентифицированных транспортных средств, хранящимися в памяти микропроцессорного модуля, что позволяет различать классы транспортных средств и вести их раздельный учет, а также тем, что отслеживание корреляции сигналов от датчиков на соседних полосах движения позволяет регистрировать прохождение транспортных средств между полосами. (19) RU (11) 16 872 (13) U1 (51) МПК G01P 3/50 (2000.01) G01P 13/00 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2000107428/20 , 27.03.2000 (24) Дата начала отсчета срока действия патента: 27.03.2000 (46) Опубликовано: 20.02.2001 (72) Автор(ы): Ефимов Д.Б., Степанов Г.В. (73) Патентообладатель(и): Закрытое акционерное общество "Элис" U 1 1 6 8 7 2 R U Ñòðàíèöà: 1 U 1 (57) Формула полезной модели Система контроля и регистрации интенсивности дорожного движения, включающая индуктивные датчики, размещенные в дорожной одежде по два на каждую полосу движения, кабельные линии, соединяющие датчики с электронным блоком, и электронный блок, состоящий из модуля генераторов, модуля измерения параметров колебаний, микропроцессорного модуля обработки и накопления информации с установленным программным обеспечением и модуля электропитания, отличающаяся тем, что изменения частоты колебаний генераторов, вызванные ...

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27-04-2002 дата публикации

УСТРОЙСТВО ДЛЯ КОНТРОЛЯ ДВИЖЕНИЯ

Номер: RU0000022828U1

Устройство для контроля движения, содержащее первичный преобразователь и элемент задержки, отличающееся тем, что в него введены последовательно соединенные фильтр, усилитель, компаратор, преобразователь частота-напряжение, выход которого соединен с входом элемента задержки, а также ключ, генератор модулирующих импульсов и элемент управления, причем выход генератора модулирующих импульсов соединен с входом первичного преобразователя, выход которого соединен с входом фильтра, а выход элемента задержки соединен с входом ключа, выход которого соединен с входом элемента управления, выход которого является выходом устройства. (19) RU (11) 22 828 (13) U1 (51) МПК G01P 13/00 (2000.01) H03M 1/30 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2001134411/20 , 24.12.2001 (24) Дата начала отсчета срока действия патента: 24.12.2001 (46) Опубликовано: 27.04.2002 (72) Автор(ы): Бирюков Ю.В., Ромашков Д.Г., Шестаков Д.Н. (73) Патентообладатель(и): Общество с ограниченной ответственностью "ПРОМРАДАР" U 1 2 2 8 2 8 R U Ñòðàíèöà: 1 U 1 (57) Формула полезной модели Устройство для контроля движения, содержащее первичный преобразователь и элемент задержки, отличающееся тем, что в него введены последовательно соединенные фильтр, усилитель, компаратор, преобразователь частота-напряжение, выход которого соединен с входом элемента задержки, а также ключ, генератор модулирующих импульсов и элемент управления, причем выход генератора модулирующих импульсов соединен с входом первичного преобразователя, выход которого соединен с входом фильтра, а выход элемента задержки соединен с входом ключа, выход которого соединен с входом элемента управления, выход которого является выходом устройства. 2 2 8 2 8 (54) УСТРОЙСТВО ДЛЯ КОНТРОЛЯ ДВИЖЕНИЯ R U Адрес для переписки: 117602, Москва, а/я 343, Н.В.Панфилову (71) Заявитель(и): Общество с ограниченной ответственностью "ПРОМРАДАР" RU 22 828 U1 RU 22 828 U1 RU 22 828 U1 RU 22 828 ...

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27-06-2002 дата публикации

УСТРОЙСТВО ДЛЯ КОНТРОЛЯ СОСТОЯНИЯ СЫПУЧИХ ПРОДУКТОВ

Номер: RU0000023684U1
Принадлежит: ООО "ПРОМРАДАР"

Устройство для контроля состояния сыпучих продуктов, содержащее первый первичный преобразователь и генератор модулирующих сигналов, отличающееся тем, что в него введены второй первичный преобразователь, первый и второй каналы передачи информации, причем выход генератора модулирующих сигналов соединен с входом первого первичного преобразователя, выход которого соединен с входом первого канала передачи информации, выход которого является первым выходом устройства, выход второго первичного преобразователя соединен с входом второго канала передачи информации, выход которого является вторым выходом устройства, причем каждый из каналов передачи информации содержит последовательно соединенные фильтр, усилитель, компаратор, пиковый детектор, элемент задержки, блок переключения и выходной блок, при этом входы фильтров являются входами каналов передачи информации, а выходы выходных блоков - выходами каналов передачи информации. (19) RU (11) 23 684 (13) U1 (51) МПК G01P 13/00 (2000.01) H03M 1/30 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2002102360/20 , 04.02.2002 (24) Дата начала отсчета срока действия патента: 04.02.2002 (46) Опубликовано: 27.06.2002 (72) Автор(ы): Бирюков Ю.В., Ромашков Д.Г., Шестаков Д.Н. (73) Патентообладатель(и): ООО "ПРОМРАДАР" U 1 2 3 6 8 4 R U Ñòðàíèöà: 1 U 1 (57) Формула полезной модели Устройство для контроля состояния сыпучих продуктов, содержащее первый первичный преобразователь и генератор модулирующих сигналов, отличающееся тем, что в него введены второй первичный преобразователь, первый и второй каналы передачи информации, причем выход генератора модулирующих сигналов соединен с входом первого первичного преобразователя, выход которого соединен с входом первого канала передачи информации, выход которого является первым выходом устройства, выход второго первичного преобразователя соединен с входом второго канала передачи информации, выход которого является вторым ...

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10-05-2003 дата публикации

Индикатор потока воздуха

Номер: RU0000029377U1
Автор: Анучин С.Г.

1. Индикатор потока воздуха, содержащий вертикально расположенный корпус из оптически прозрачного материала с измерительным каналом, в котором с возможностью продольного перемещения на участке между ограничителями размещен поплавок, при этом нижний и верхний концы измерительного канала сопряжены с соответствующими резьбовыми цилиндрическими участками для соединения соответственно с впускным и выпускным патрубками, отличающийся тем, что корпус выполнен цельнолитым из поликарбоната с коэффициентом светопропускания 70-95% в форме усеченного конуса с нижним основанием меньшей площади, измерительный канал также выполнен в форме усеченного конуса, меньшее основание которого сопряжено с резьбовым цилиндрическим участком для подсоединения впускного патрубка, а внешняя поверхность корпуса выполнена с конусностью 1 : (10-45). 2. Индикатор по п.1, отличающийся тем, что ограничители выполнены в виде отрезков трубочек, размещены в диаметральной плоскости симметрии корпуса и запрессованы в нем. (19) RU (11) 29 377 (13) U1 (51) МПК G01P 13/00 (2000.01) H01H 33/02 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2003102747/20 , 05.02.2003 (24) Дата начала отсчета срока действия патента: 05.02.2003 (46) Опубликовано: 10.05.2003 (72) Автор(ы): Анучин С.Г. (73) Патентообладатель(и): Анучин Сергей Георгиевич R U Адрес для переписки: 117534, Москва, ул. Акад. Янгеля, 3, кв.47, С.Г. Анучину (71) Заявитель(и): Анучин Сергей Георгиевич 2 9 3 7 7 R U Ñòðàíèöà: 1 U 1 (57) Формула полезной модели 1. Индикатор потока воздуха, содержащий вертикально расположенный корпус из оптически прозрачного материала с измерительным каналом, в котором с возможностью продольного перемещения на участке между ограничителями размещен поплавок, при этом нижний и верхний концы измерительного канала сопряжены с соответствующими резьбовыми цилиндрическими участками для соединения соответственно с впускным и выпускным патрубками, ...

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Номер: RU0000095407U1

Эллипсограф, содержащий стойку, телескопические кривошип и шатун, ползун, направляющую для перемещения ползуна, которая может поворачиваться и фиксироваться относительно стойки и планку, перпендикулярную направляющей, на кривошипе неподвижно установлен лазерный источник света так, что его световой луч параллелен продольной оси кривошипа и попадает на планку ползуна, а на кривошипе, шатуне и ползуне установлены самописцы, отличающийся тем, что планка подвижно соединена с направляющей ползуна и имеет координатную шкалу с началом на этой направляющей, на шатуне и планке установлены дополнительные ползуны, образующие друг с другом вращательную кинематическую пару. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 95 407 (13) U1 (51) МПК G01P 13/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2010101401/22, 18.01.2010 (24) Дата начала отсчета срока действия патента: 18.01.2010 (45) Опубликовано: 27.06.2010 (73) Патентообладатель(и): Государственное образовательное учреждение высшего профессионального образования "Курский государственный университет" (RU) U 1 9 5 4 0 7 R U Ñòðàíèöà: 1 ru CL U 1 Формула полезной модели Эллипсограф, содержащий стойку, телескопические кривошип и шатун, ползун, направляющую для перемещения ползуна, которая может поворачиваться и фиксироваться относительно стойки и планку, перпендикулярную направляющей, на кривошипе неподвижно установлен лазерный источник света так, что его световой луч параллелен продольной оси кривошипа и попадает на планку ползуна, а на кривошипе, шатуне и ползуне установлены самописцы, отличающийся тем, что планка подвижно соединена с направляющей ползуна и имеет координатную шкалу с началом на этой направляющей, на шатуне и планке установлены дополнительные ползуны, образующие друг с другом вращательную кинематическую пару. 9 5 4 0 7 (54) ЭЛЛИПСОГРАФ R U Адрес для переписки: 305000, г.Курск, ул. Радищева, 33, КГУ, НИС, В.Н. Вервейко ( ...

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10-06-2011 дата публикации

ДАТЧИК ИЗМЕРЕНИЯ АЭРОДИНАМИЧЕСКИХ УГЛОВ ФЛЮГЕРНОГО ТИПА

Номер: RU0000105463U1

Датчик измерения аэродинамического угла флюгерного типа, включающий в себя чувствительный элемент, якорь, электромагнит, усилитель, двигатель, редуктор, сельсин-датчик, отличающийся тем, что якорь закреплен с чувствительным элементом (флюгаркой), при изменении положения которого возникает электрический сигнал на выходе сигнальных обмоток, который, в свою очередь, усиливается на усилительном узле и поступает на двигатель, который через редуктор отрабатывает сигнал и перемещает электромагнит в новое положение до полной компенсации сигнала с сигнальных обмоток, кроме этого, данный сигнал при помощи сельсин-датчика является информационным сигналом об аэродинамическом угле. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 105 463 (13) U1 (51) МПК G01P 13/02 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21)(22) Заявка: 2010145867/28, 10.11.2010 (24) Дата начала отсчета срока действия патента: 10.11.2010 (45) Опубликовано: 10.06.2011 1 0 5 4 6 3 R U Формула полезной модели Датчик измерения аэродинамического угла флюгерного типа, включающий в себя чувствительный элемент, якорь, электромагнит, усилитель, двигатель, редуктор, сельсин-датчик, отличающийся тем, что якорь закреплен с чувствительным элементом (флюгаркой), при изменении положения которого возникает электрический сигнал на выходе сигнальных обмоток, который, в свою очередь, усиливается на усилительном узле и поступает на двигатель, который через редуктор отрабатывает сигнал и перемещает электромагнит в новое положение до полной компенсации сигнала с сигнальных обмоток, кроме этого, данный сигнал при помощи сельсин-датчика является информационным сигналом об аэродинамическом угле. Ñòðàíèöà: 1 ru CL U 1 U 1 (54) ДАТЧИК ИЗМЕРЕНИЯ АЭРОДИНАМИЧЕСКИХ УГЛОВ ФЛЮГЕРНОГО ТИПА 1 0 5 4 6 3 Адрес для переписки: 664074, г.Иркутск-74, ул. Чернышевского, 15, ГОУ ВПО "ИрГУПС", патентнолицензионный отдел, начальнику отдела к.э.н. О.В. Видякиной (73) ...

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27-05-2012 дата публикации

ДАТЧИК АЭРОДИНАМИЧЕСКИХ УГЛОВ С ОБОГРЕВОМ

Номер: RU0000116647U1

Датчик аэродинамических углов с обогревом, содержащий флюгер с размещенными внутри него и соединенными между собой нагревательными элементами с положительным температурным коэффициентом сопротивления и токоведущими элементами, отличающийся тем, что флюгер выполнен в виде двух тонкостенных элементов, представляющих собой зеркальное отражение друг друга, на внутренней поверхности которых размещены с возможностью обеспечения равномерного температурного поля нагревательные элементы, выполненные в виде небольших дисков, закрепленные непосредственно на тонкостенных элементах конструкции посредством пайки и соединенные параллельно между собой, причем тонкостенные элементы являются общим токоведущим элементом, а расположенные внутри токоведущие элементы электроизолированы от тонкостенных элементов. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 116 647 U1 (51) МПК G01P 13/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2011140906/28, 07.10.2011 (24) Дата начала отсчета срока действия патента: 07.10.2011 (45) Опубликовано: 27.05.2012 Бюл. № 15 1 1 6 6 4 7 R U Формула полезной модели Датчик аэродинамических углов с обогревом, содержащий флюгер с размещенными внутри него и соединенными между собой нагревательными элементами с положительным температурным коэффициентом сопротивления и токоведущими элементами, отличающийся тем, что флюгер выполнен в виде двух тонкостенных элементов, представляющих собой зеркальное отражение друг друга, на внутренней поверхности которых размещены с возможностью обеспечения равномерного температурного поля нагревательные элементы, выполненные в виде небольших дисков, закрепленные непосредственно на тонкостенных элементах конструкции посредством пайки и соединенные параллельно между собой, причем тонкостенные элементы являются общим токоведущим элементом, а расположенные внутри токоведущие элементы электроизолированы от тонкостенных элементов. Стр.: 1 U 1 U 1 (54) ДАТЧИК ...

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10-12-2012 дата публикации

УЗЕЛ ВРАЩЕНИЯ ФЛЮГЕРА

Номер: RU0000122778U1

1. Узел вращения флюгера, содержащий неподвижную вертикальную ось, на которой соосно установлена с возможностью свободного вращения втулка, и установленный в ее нижней части подшипник скольжения, отличающийся тем, что в верхней части втулки установлен второй подшипник скольжения, при этом подшипники скольжения закреплены на неподвижной оси или втулке, и к наружной поверхности втулки симметрично и параллельно относительно вертикальной оси вращения втулки прикреплены две пластины, нижний край которых закреплен на пластине, расположенной под прямым углом к вертикальной оси вращения втулки, и прикрепленной к наружной поверхности втулки. 2. Узел вращения по п.1, отличающийся тем, что в каждой из пластин, прикрепленных симметрично и параллельно относительно вертикальной оси вращения втулки, выполнено по крайней мере два круговых отверстия, предназначенных для крепления флюгарки или указателя ветра. 3. Узел вращения по п.1, отличающийся тем, что пластины присоединены к наружной поверхности втулки путем сварки. 4. Узел вращения по п.1, отличающийся тем, что подшипники скольжения выполнены в виде втулок из антифрикционного материала. 5. Узел вращения по п.1, отличающийся тем, что подшипники запрессованы во втулку. Ц 122778 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ 7 ВУ’? 122 778 1 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: 21.07.2021 Дата внесения записи в Государственный реестр: 21.07.2022 Дата публикации и номер бюллетеня: 21.07.2022 Бюл. №21 Стр.: 1 па ЗС СЕ ЕП

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27-11-2013 дата публикации

ФЛЮГЕР МУЛЬТИФУНКЦИОНАЛЬНЫЙ

Номер: RU0000135150U1

1. Флюгер мультифункциональный, содержащий основание, ось с втулкой и закрепленные на оси флюгарку и противовес, вращающийся в горизонтальной плоскости, отличающийся тем, что и флюгарка, и противовес имеют форму лопасти, они шарнирно подвешены своими верхними кромками к кронштейнам, лежащим на одной прямой, нормально закрепленным к оси так, что каждая лопасть имеет свободу отклонения от вертикали только в одну сторону, так как ограничена наличием стопоров, также закрепленных на оси, причем стопоры ограничивают отклонение обеих лопастей в противоположные стороны. 2. Флюгер мультифункциональный по п.1, отличающийся тем, что закрепленные на оси стопоры представляют собой прямолинейные штыри, параллельные кронштейнам. 3. Флюгер мультифункциональный по п.1, отличающийся тем, что на торце лопасти нанесены контрастные метрические риски. 4. Флюгер мультифункциональный по п.1, отличающийся тем, что в качестве втулки применен подшипник. 5. Флюгер мультифункциональный по п.1, отличающийся тем, что в основании помещен электрогенератор. 6. Флюгер мультифункциональный по п.1, отличающийся тем, что на лопастях нанесена рекламная информация. 7. Флюгер мультифункциональный по п.1, отличающийся тем, что лопасти выполнены прямоугольной формы. 8. Флюгер мультифункциональный по п.2, отличающийся тем, что стопорные штыри выполнены с возможностью убираться с пути отклонения лопастей. 9. Флюгер мультифункциональный по п.8, отличающийся тем, что стопорные штыри могут убираться с пути отклонения лопастей дистанционно. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 135 150 U1 (51) МПК G01P 13/02 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2013124075/28, 27.05.2013 (24) Дата начала отсчета срока действия патента: 27.05.2013 (72) Автор(ы): Грунин Юрий Александрович (RU) (73) Патентообладатель(и): Грунин Юрий Александрович (RU) R U Приоритет(ы): (22) Дата подачи заявки: 27.05.2013 (45) Опубликовано: 27.11.2013 Бюл. № 33 Адрес ...

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13-02-2018 дата публикации

Компактный буй для измерения статистических характеристик коротких поверхностных волн на морской поверхности

Номер: RU0000177210U1

Полезная модель относится к области исследования динамики морской поверхности. Компактный буй для измерения статистических характеристик коротких поверхностных волн на морской поверхности имеет водонепроницаемый корпус, трехосевой датчик ускорения и угловой скорости, трехосевой магнитометр, блок питания, блок управления, передатчик с антенной, при этом имеет цилиндрический корпус с высотой, существенно меньшей основания, а именно диаметром 20 и высотой 3 см. Технический результат – измерение в коротковолновой области спектра морского волнения. 1 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 177 210 U1 (51) МПК G01P 13/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК G01P 13/00 (2006.01) (21)(22) Заявка: 2016152313, 28.12.2016 (24) Дата начала отсчета срока действия патента: Дата регистрации: Приоритет(ы): (22) Дата подачи заявки: 28.12.2016 (45) Опубликовано: 13.02.2018 Бюл. № 5 2561229 C1, 27.08.2015. RU 2490679 C1, 20.08.2013. US 4220044 A1, 02.09.1980. (54) Компактный буй для измерения статистических характеристик коротких поверхностных волн на морской поверхности (57) Реферат: Полезная модель относится к области блок управления, передатчик с антенной, при исследования динамики морской поверхности. этом имеет цилиндрический корпус с высотой, Компактный буй для измерения статистических существенно меньшей основания, а именно характеристик коротких поверхностных волн на диаметром 20 и высотой 3 см. Технический морской поверхности имеет водонепроницаемый результат – измерение в коротковолновой корпус, трехосевой датчик ускорения и угловой области спектра морского волнения. 1 ил. скорости, трехосевой магнитометр, блок питания, R U 1 7 7 2 1 0 (56) Список документов, цитированных в отчете о поиске: US 4515013 A, 07.05.1985. RU Стр.: 1 U 1 U 1 Адрес для переписки: 192007, Санкт-Петербург, ул. Воронежская, 79, Шилов Д.В. 1 7 7 2 1 0 (73) Патентообладатель(и): федеральное государственное бюджетное ...

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11-09-2018 дата публикации

Плоский рычажный механизм

Номер: RU0000183100U1

Полезная модель относится к наглядным демонстрационным пособиям, предназначенным для использования в учебном процессе, в частности, при изучении плоскопараллельного движения тела и его частных случаев в теоретической механике, теории машин и механизмов, а также на стадии начального проектирования в приборостроении, робототехнике. Плоский рычажный механизм содержит стойку в виде планшета, кривошип и шатун, выполненные телескопическими с возможностью фиксации их длин, ползун, направляющую для его перемещения, которая может фиксироваться в плоскости движения механизма, линейку, перпендикулярную направляющей ползуна и неподвижно соединённую с ползуном, лазерный источник света, самописцы, соединённые со всеми звеньями механизма, кроме стойки в виде планшета. Ползун дополнительно соединён вращательной кинематической парой со ступенчатым диском, в виде двух соосных дисков разных диаметров, выполненных с возможностью кататься по дополнительной направляющей, параллельной направляющей ползуна, опираясь на неё бортиком диска меньшего диаметра. На оси ступенчатого диска параллельно плоскости планшета закреплен стержень, а на периферии дисков размещены самописцы, пишущие элементы которых обращены к планшету. Технический результат: расширение семейства траекторий точек звеньев циклоидами (нормальными, удлинёнными и укороченными) и расширение функциональных и демонстрационных возможностей. 2 ил. 183100 Ц ко РОССИЙСКАЯ ФЕДЕРАЦИЯ ВУ” 183 100” 44 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: 22.10.2018 Дата внесения записи в Государственный реестр: 20.01.2020 Дата публикации и номер бюллетеня: 20.01.2020 Бюл. №2 Стр.: 1 ООГ$З па ЕП

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Многофункциональный измеритель воздушных данных

Номер: RU0000183334U1

Заявляемый в качестве полезной модели многофункциональный измеритель воздушных данных относится к измерительной технике и может быть использован для измерения высотно-скоростных параметров и аэродинамических углов в системах воздушных сигналов летательных аппаратов. Техническим результатом является уменьшение погрешности измерения высотно-скоростных параметров, значительное снижение массы многофункционального измерителя воздушных данных, в первую очередь, за счет исключения пневмотрасс, расположенных между приемником воздушных давлений и узлом датчиков давления. Сущность полезной модели заключается в том, что многофункциональный измеритель воздушных данных содержит приемник воздушных давлений, датчики давлений, вычислитель. Причем датчики объединены в единый корпус датчиков давлений, соединенный с приемником воздушных давлений и вычислителем. Также содержит дополнительный вычислитель высотно-скоростных параметров, соединенный с выходом узла датчиков давлений, и узел контроля обогрева, соединенный с приемником воздушных давлений и вычислителями. Предлагаемый многофункциональный измеритель воздушных данных позволяет уменьшить погрешность измерения аэродинамического угла до значений порядка 0,25° от первоначальных величин порядка 1-1,5°. Также позволяет уменьшить на 20-30% динамическую погрешность измерения высотно-скоростных параметров и на 15-30% уменьшить массу канала измерения высотно-скоростных параметров за счет исключения пневмотрасс. При этом заявляемый в качестве полезной модели многофункциональный измеритель воздушных данных позволяет повысить на 10-40% эффективность электрообогрева. 1 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 183 334 U1 (51) МПК G01L 11/00 (2006.01) G01P 13/02 (2006.01) G01P 5/165 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК G01L 11/00 (2018.05); G01P 13/02 (2018.05); G01P 5/165 (2018.05) (21)(22) Заявка: 2018115924, 27.04.2018 (24) Дата начала отсчета срока действия патента ...

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10-04-2019 дата публикации

Дрейфующий волнографический комплекс для измерения параметров коротких ветровых волн на морской поверхности

Номер: RU0000188357U1

Полезная модель относится к области исследования динамики морской поверхности, в частности модель относится к устройствам для измерения параметров морского волнения и может быть использована при наблюдениях с борта судна, а также с неподвижных морских платформ. Технический результат, достигаемый в заявленном устройстве, заключается в возможности измерений в коротковолновой области спектра морского волнения. Технический результат достигается благодаря уменьшению габаритов устройства, а также за счет измерения уровня погружения корпуса относительно поверхности моря. Устройство имеет пластмассовый корпус в виде цилиндра с основанием диаметром 3 см и высотой 15 см, к которому крепится фал для поднятия на борт. Внутри расположены аккумулятор, блок управления, трехосевые датчики ускорений и угловых скоростей, трехосевой датчик магнитного поля, три датчика уровня погружения корпуса, накопитель данных. 1 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 188 357 U1 (51) МПК G01P 13/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК G01P 13/00 (2018.05) (21) (22) Заявка: 2018103728, 31.01.2018 (24) Дата начала отсчета срока действия патента: 31.01.2018 Приоритет(ы): (22) Дата подачи заявки: 31.01.2018 (45) Опубликовано: 10.04.2019 Бюл. № 10 2561229 C1, 27.08.2015. RU 2490679 C1, 20.08.2013. ES 2454915 A1, 11.04.2014. US 4220044 A, 02.09.1980. US 3769838 A, 06.11.1973. (54) Дрейфующий волнографический комплекс для измерения параметров коротких ветровых волн на морской поверхности (57) Реферат: Полезная модель относится к области габаритов устройства, а также за счет измерения исследования динамики морской поверхности, в уровня погружения корпуса относительно частности модель относится к устройствам для поверхности моря. Устройство имеет измерения параметров морского волнения и пластмассовый корпус в виде цилиндра с может быть использована при наблюдениях с основанием диаметром 3 см и высотой 15 см, к борта судна, а также ...

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23-09-2019 дата публикации

Плоский рычажный механизм

Номер: RU0000192606U1

Полезная модель относится к наглядным демонстрационным пособиям, предназначенным для использования в учебном процессе, в частности при изучении плоскопараллельного движения тела и его частных случаев в теоретической механике, теории машин и механизмов, а также на стадии начального проектирования в приборостроении, робототехнике. Техническим результатом полезной модели является расширение семейства траекторий точек звеньев прототипа циклоидами (не только нормальными, удлинёнными и укороченными, но и бахристохронами и таутохронами), что позволяет обеспечить расширение функциональных и демонстрационных возможностей. Технический результат достигается тем, что плоский рычажный механизм содержит стойку в виде планшета, кривошип и шатун, выполненные телескопическими с возможностью фиксации их длин, ползун, направляющую для его перемещения, линейку, перпендикулярную направляющей ползуна, лазерный источник света, самописцы с пишущими элементами, обращенными к планшету, соединённые со всеми подвижными звеньями механизма, ползун дополнительно соединён вращательной кинематической парой со ступенчатым катком в виде двух соосных дисков разных диаметров, выполненных с возможностью кататься по дополнительной направляющей, параллельной направляющей ползуна, опираясь на неё бортиком высотой 5-10 мм диска меньшего диаметра. При этом направляющая ползуна выполнена телескопической с фиксацией её длины и составляет со стойкой вращательную кинематическую пару, на диске размещены самописцы, пишущие элементы которых обращены к планшету. 2 ил. И 1 192606 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ ВУ” 192 606” 44 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: 28.10.2019 Дата внесения записи в Государственный реестр: 15.01.2021 Дата публикации и номер бюллетеня: 15.01.2021 Бюл. №2 Стр.: 1 па 9509261 ЕП

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22-10-2019 дата публикации

Реечная передача датчика линейного положения

Номер: RU0000193298U1

Реечная передача датчика линейного положения (далее, также полезная модель, техническое решение, устройство) относится к области машиностроения, а именно к механическим датчикам, конструктивно основанным на механизме зубчато-реечной передачи, с возможностью последующей передачи углового положения зубчатого колеса на считывающее устройство. Спектр применения достаточно широк, к примеру, это могут быть промышленные роботы или же механические тренажеры-имитаторы движения, обучающие навыкам вождения транспортного средства, а равно иные изделия, в конструкции которых необходимо преобразование поступательного движения во вращательное, с возможностью фиксации углового перемещения вращающегося звена. Техническим результатом предлагаемой полезной модели является создание устройства, упрощенного по конструкции и эксплуатации (последнее - за счет исключения необходимости периодической ручной подстройки механизма регулировки бокового зазора). Поставленная задача достигается тем, что заявляемое техническое решение, состоящее из корпуса, внутри которого установлено вращающееся зубчатое колесо, взаимодействующее с подвижной зубчатой рейкой, которая прижата к зубчатому колесу прижимным роликом, последний конструктивно установлен на качающемся одноплечевом рычаге, который поджат к зубчатой рейке упругим элементом, при этом ось зубчатого колеса и ось прижимного ролика находятся на одной линии. Реечная передача датчика линейного положения включает в себя следующие элементы: корпус, зубчатое колесо, зубчатую рейку, прижимной механизм, считывающий датчик. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 193 298 U1 (51) МПК F16H 19/04 (2006.01) G01B 3/00 (2006.01) G01B 5/00 (2006.01) G01P 13/04 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК F16H 19/04 (2019.02); G01B 3/00 (2019.02); G01B 5/00 (2019.02); G01P 13/04 (2019.02) (21)(22) Заявка: 2018136728, 17.10.2018 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель ...

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03-05-2012 дата публикации

Thermal flow sensor integrated circuit with low response time and high sensitivity

Номер: US20120103085A1
Принадлежит: KONINKLIJKE PHILIPS ELECTRONICS NV

A thermal flow sensor integrated circuit for sensing flow in a channel based on temperature measurements, the integrated circuit having a temperature sensing element ( 30 ) on a front side of the integrated circuit arranged to face the channel, and a bond pad ( 60, 200 ) coupled electrically to the temperature sensing element, for making electrical contact off the integrated circuit, the bond pad being arranged to face away from the channel. By having the bond pad facing away from the channel, the space needed for the bond pad and any connections to it need not extend beyond the temperature sensing element and get in the way of the channel. Hence the temperature sensing element can be located closer to the channel or in the channel to enable measurements with better response time and sensitivity.

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24-05-2012 дата публикации

Motion analyzing apparatus

Номер: US20120128203A1
Автор: Yasushi Nakaoka
Принадлежит: Seiko Epson Corp

A sensor unit is installed to a target object and detects a given physical amount. A data acquisition unit acquires output data of the sensor unit in a period including a first period for which a real value of a value of m time integrals of the physical amount is known and a second period that is a target for motion analysis. An error time function estimating unit performs m time integrals of the output data of the sensor unit and estimates a time function of an error of a value of the physical amount detected by the sensor unit with respect to the real value of the value of the physical amount detected by the sensor unit based on a difference between a value of m time integrals of the output data and the real value for the first period.

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05-07-2012 дата публикации

Atmospheric Measurement System

Номер: US20120169053A1
Принадлежит: Michigan Aerospace Corp

A magnitude and direction, or a measure responsive thereto, of a velocity (V) of a first portion ( 17 ) of an atmosphere ( 20 ) are determined from at least first and second portions of scattered light ( 30 ) generated along a common beam of light ( 28 ) within the first portion ( 17 ) of the atmosphere ( 20 ) and received along linearly independent directions at locations that are relatively remote with respect to one another, at least one of which is relatively remote from a source ( 11 ) of the beam of light ( 28 ).

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26-07-2012 дата публикации

Mems/moems sensor design

Номер: US20120186338A1
Автор: Pierre Bonnat
Принадлежит: Individual

A MEMS/MOEMS sensor and method for using such sensor to detect a person's breath or other fluid for purposes of controlling a user interface of an electronic device.

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30-08-2012 дата публикации

Low average velocity pedestrial motion identification

Номер: US20120221289A1
Автор: John Michael Burke
Принадлежит: Qualcomm Inc

Systems and methods for identifying a motion state of a mobile device are disclosed. In one embodiment, identifying a motion state of a mobile device using acceleration signals from one or more accelerometers comprises: detecting any pedestrial steps associated with a user of the mobile device during an observation period based on the acceleration signals; determining a maximum number of consecutive pedestrial steps taken during the observation period from the detected pedestrial steps; and declaring a high average velocity motion state or a low average velocity motion state for the observation period based on the determined maximum number of consecutive pedestrial steps.

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29-11-2012 дата публикации

Aircraft wing and sensor

Номер: US20120298801A1
Автор: William Frank Ellison
Принадлежит: BAE SYSTEMS plc

An apparatus is disclosed which includes an aircraft wing and a sensing unit. The sensing unit includes: a blister on an underside of the aircraft wing; a first and second sensor, at least part of each sensor being either housed in the blister or mounted on or integrated with an outer surface of the blister; wherein the first sensor is arranged to measure a first parameter; the second sensor is arranged to measure a second parameter; a measured value for the first parameter is dependent on a speed of the aircraft in a first direction; a measured value for the second parameter is dependent on a speed of the aircraft in a second direction; the first direction is in a plane perpendicular to an aircraft lateral axis; and the second direction is in a plane perpendicular to an aircraft roll axis.

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03-01-2013 дата публикации

Methods for detection of unique physical motions

Номер: US20130006572A1
Автор: David Hayner
Принадлежит: Individual

Apparatus and methods for the generation, collection and use of specific user-induced motions of an appliance device and the use of the correspondence between these collected measures of user-induced motions and previously generated and possibly stored measures of user-induced motions of an appliance device are provided. This system includes methods for generating the stored measures of user-induced motions and for continuously updating these stored references.

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31-01-2013 дата публикации

Wind current indicator

Номер: US20130025361A1
Автор: Richard Ostrander
Принадлежит: Individual

A wind current indicator device is provided for use in assisting in the hunting of wild game animals and includes a thin strand of fiber having a lightweight feather affixed at a first end and a swivel member affixed to opposite second end. The swivel member includes two rotating loops on opposite sides, wherein the first rotating loop is secured to the strand of fiber while the second rotating loop is secured to a second strand of fiber that is adapted for attachment to an object, such as the barrel of a rifle. In operation, wind currents lift and carry the feather, pulling the strand taut, indicating the direction of the wind current. Each of the rotating loops independently pivots and rotates in response to changes in wind current direction, thereby avoiding twisting and entanglement of either strand portion.

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07-02-2013 дата публикации

Method for detecting the rotation and direction of rotation of a rotor

Номер: US20130035889A1
Автор: Joachim Baumann
Принадлежит: SENSUS SPECTRUM LLC

A method for detecting a rotation and a direction of a rotation of a rotor, on which at least one damping element is positioned, wherein two sensors are arranged. The sensors are damped depending on a position of the damping element. After a standardization has been performed, the measurements are taken by observing consecutive rotational angle positions and then standardization rules are applied to the measured decay times of the sensors. Then a vector, which is entered into a coordinate system, is formed from the values. The present vector angle is determined and compared to the value of a suitable prior vector angle. From the result of the comparison, it is determined whether the rotor has performed a rotation and whether the rotation was forward or backward. By repeating the measurements in the rhythm of the scanning frequency, the rotational motions of the rotor can be detected with high accuracy.

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14-03-2013 дата публикации

Device for multipoint acquisition/distribution of fluid, in particular probe for tapping pressure in a turbomachine air inlet

Номер: US20130061964A1
Принадлежит: Turbomeca SA

To achieve accurate and rapid acquisition or distribution of fluid—at multipoints—with good spatial resolution and minimal bulk, a twisted arrangement of ducts is provided in the acquisition/distribution zone making it possible to perform several acquisitions/distributions over several heights with one and the same device. The device is a pressure probe in which a probe body exhibits a first part or section for acquiring pressure forming a cylinder less than 6 mm in diameter. The probe exhibits internal ducts forming parallel helicoidal traces on the section and channels formed in a metal alloy body between the ducts and inlet orifices. The number of internal ducts is advantageously equal to nine, including three orifices being disposed over three different heights of the probe body.

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16-05-2013 дата публикации

SYSTEMS AND METHODS FOR IDENTIFYING AND ACTING UPON STATES AND STATE CHANGES

Номер: US20130122928A1
Автор: Pfluger Mark Oliver
Принадлежит:

Systems and methods for determining states and state changes on a personal wireless device, and triggering actions upon these state changes. The personal wireless device includes at least a user interface, a positioning system and a system to determine the device acceleration. Examples of these systems are an accelerometer to determine the device acceleration and GPS (Global Positioning System) to determine the device position. States incurred from user movement include, but are not limited to: walking, driving, stationary. In one embodiment, the location of a parked vehicle is automatically saved, and a user interface to display past parking locations and guide the user to one of these parking locations, is offered. 1. A method for testing for a state change of a user , comprising:(a) receiving, from a first sensor of an electronic device of said user, a plurality of signals;(b) determining from said plurality of signals a change of mobility state of said user, said mobility state selected from walking, driving and stationary; and(c) verifying said change in mobility state of said user using a second sensor of said electronic device.2. The method of claim 1 , wherein said first sensor is an inertial motion sensor.3. The method of claim 2 , wherein said inertial motion sensor is an accelerometer.4. The method of claim 2 , wherein said inertial motion sensor is a gyrometer.5. The method of claim 1 , wherein said first sensor is a geolocation system.6. The method of claim 5 , wherein said geolocation system is a global positioning system or a system based on triangulation of wireless senders claim 5 , e.g. cell towers or Wi-Fi access points.7. The method of claim 1 , wherein said first sensor is a magnetometer or a humidity sensor or a illuminance sensor or an ambient pressure sensor or an ambient temperature sensor.8. The method of claim 1 , wherein said second sensor is a magnetometer or a humidity sensor or a illuminance sensor or an ambient pressure sensor or an ...

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16-05-2013 дата публикации

MEASURING METHOD OF LIFE ACTIVITY, MEASURING DEVICE OF LIFE ACTIVITY, TRANSMISSION METHOD OF LIFE ACTIVITY DETECTION SIGNAL, OR SERVICE BASED ON LIFE ACTIVITY INFORMATION

Номер: US20130123639A1
Автор: Ando Hideo
Принадлежит:

According to a measuring method or a control method of life activity, a life object is illuminated with an electromagnetic wave including a wavelength in a designated waveband, and a characteristic in a local area of the life object is detected, or a life activity thereof is controlled. This “local area” is an area constituted by one or more cells. The “designated waveband” is defined based on any one of the following phenomena: 1. A detecting method of life activity , comprising:illuminating the life object with an electromagnetic wave of which a wavelength is included in a designated waveband or the wavelength relates to a designated peak; anddetecting the activity at least in a local area in the life object.2. A controlling method of life activity , comprising:illuminating the life object with an electromagnetic wave of which a wavelength is included in a designated waveband or the wavelength relates to a designated peak; andcontrolling the activity at least in a local area in the life object.3. A transmission method of information related to life activity , comprising:illuminating the life object with an electromagnetic wave of which a wavelength is included in a designated waveband or the wavelength relates to a designated peak; andtransmitting information obtained on the basis of detection of the activity at least in a local area in the life object.4. The detecting method of life activity according to claim 1 , wherein:the designated waveband relates to a wavelength of not less than 0.84 μm but not more than 110 μm.5. The detecting method of life activity according to claim 1 , whereinthe designated peak relates to a chemical shift value in a range of not less than δ1.7 ppm but not more than δ4.5 ppm.6. The designated method of life activity according to claim 1 , whereinthe designated waveband is determined on the basis of transition energy between a plurality of states constituted by a specific ground state in the local area which ground state is able to ...

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04-07-2013 дата публикации

MOTION ANALYSIS METHOD AND MOTION ANALYSIS APPARATUS

Номер: US20130173212A1
Принадлежит: SEIKO EPSON CORPORATION

A motion analysis apparatus includes a sensor that is attached to an object and detects a physical value of the object, a holder that holds the object and sets the sensor in a first position, and a motion analyzer that acquires an output from the sensor and analyzes the motion of the object based on the output, the output including first output data from the sensor set in the first position and second output data from the sensor produced after the object is separated from the holder and the sensor is set in at least one known second position. 1. A motion analysis method comprising:setting an object to which a sensor is attached in a first position with the sensor held stationary in a holder;acquiring an output from the sensor, the output including known first output data from the sensor produced when the sensor is set in the first position and second output data from the sensor produced after the object is separated from the holder and the sensor is set in at least one known second position; andanalyzing motion of the object based on the first output data and the second output data.2. The motion analysis method according to claim 1 ,wherein the at least one known second position coincides with the first position where the object having been separated from the holder is returned to the holder.3. The motion analysis method according to claim 1 ,wherein the at least one known second position is where the sensor is located when the object passes through a known pass point.4. The motion analysis method according to claim 1 ,wherein a signal produced when the object is separated from the holder is acquired and the motion of the object is analyzed based on the signal.5. The motion analysis method according to claim 2 ,wherein a signal produced when the object having been separated from the holder is mounted on the holder is acquired and the motion of the object is analyzed based on the signal.6. A motion analysis apparatus comprising:a sensor that is attached to an object ...

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18-07-2013 дата публикации

Activity and Inactivity Monitoring

Номер: US20130184613A1
Принадлежит: Nike Inc

Systems and methods are provided for calculating point values for users who participate in activities. An activity is first captured with a sensor. A processor classifies the activity by comparing a sensor signal to templates. Once the activity is classified, an activity factor is selected. Point values are then calculated as a function of the activity factor and duration of the activity. If a predetermined criteria is met, such as

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18-07-2013 дата публикации

Activity Points

Номер: US20130185016A1
Принадлежит: Nike, Inc.

Systems and methods are provided for calculating point values for users who participate in activities. An activity is first captured with a sensor. A processor classifies the activity by comparing a sensor signal to templates. Once the activity is classified, an activity factor is selected. Point values are then calculated as a function of the activity factor and duration of the activity. 1. A method comprising:(a) capturing activity of a user with at least one sensor;(b) classifying the captured activity;(c) determining an activity factor corresponding to the classified activity; and(d) at a processor calculating a point value by multiplying the activity factor by a duration of the activity.2. The method of claim 1 , wherein (a) comprises capturing the activity of the user with a wrist-worn device that includes the at least one sensor.3. The method of claim 2 , wherein the sensor comprises an accelerometer.4. The method of claim 3 , wherein the accelerometer comprises a multi-axis accelerometer.5. The method of claim 4 , wherein the accelerometer comprises a 3 axis accelerometer.6. The method of claim 1 , wherein (b) comprises comparing at least one signal from the at least one sensor to activity templates.7. The method of . wherein at least one template is created by a user.8. The method of claim 6 , wherein the activity templates include a template for walking and a template for running.9. The method of claim 1 , wherein (b) comprises comparing at least one signal from the at least one sensor to activity templates using a best match approach.10. The method of claim 1 , wherein (b) comprises comparing at least one signal from the at least one sensor to activity templates using a best match approach and a leaving an activity unclassified if there is not a sufficient match.11. The method of claim 1 , wherein point totals are calculated daily claim 1 , weekly and monthly.12. The method of claim 1 , further comprising disregarding an activity if an activity factor ...

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01-08-2013 дата публикации

DEVICE AND METHOD FOR DETECTING THE DIRECTION OF THE FLOW OF LIQUID THROUGH A DIALYZER

Номер: US20130193039A1
Автор: KOPPERSCHMIDT Pascal
Принадлежит: FRESENIUS MEDICAL CARE DEUTSCHLAND GMBH

The present invention relates to a device and a method for detecting the direction of the fluid flow through a dialyzer, as well as an extracorporeal blood treatment apparatus which comprises a device for detecting the direction of the fluid flow through the dialyzer. The devices and methods according to the present invention are based on the change in a physical and/or chemical property, for example the substance concentration or the temperature, of a fluid flowing into the one chamber of the dialyzer and the measurement of the change in the physical and/or chemical property of the fluid flowing out of the one chamber of the dialyzer. 122-. (canceled)23. A device for detecting the direction of the fluid flow through a dialyzer which comprises a first chamber which has a first and second connection and a second chamber which has a first and second connection , wherein the first chamber and the second chamber are separated from one another by a semipermeable membrane , the device comprising:a system for reversing the flow direction configured such that the dialyzer can be switched over between an equi-directional flow operation, wherein a first fluid flows into the first connection of the first chamber and the first fluid flows out of the second connection of the first chamber, while the second fluid flows into the first connection of the second chamber and the second fluid flows out of the second connection of the second chamber, and a counter-flow operation, wherein the first fluid flows into the second connection of the first chamber and the first fluid flows out of the first connection of the first chamber, while the second fluid flows into the first connection of the second chamber and the second fluid flows out of the second connection of the second chamber, or alternatively, between the counter-flow operation and the equi-directional flow operation;a system for changing a physical and/or chemical property of the fluid flowing into the first and/or second ...

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08-08-2013 дата публикации

SYSTEMS AND METHODS FOR SENSING BALANCED-ACTION FOR IMPROVING MAMMAL WORK-TRACK EFFICIENCY

Номер: US20130204545A1
Автор: Solinsky James C.
Принадлежит:

An example system includes one or more sleeves, each configured for attachment to a leg and comprising a pressure sensor, an accelerometer and a magnetometer. A processor processes sensor signals from the pressure sensor, the accelerometer and the magnetometer to estimate action (A) and work (W) using event detections of peak stance and valley swing events associated with leg movement. 1. A system comprising:one or more sleeves, each configured for attachment to a leg and comprising a pressure sensor, an accelerometer and a magnetometer;a processor for processing sensor signals from the pressure sensor, the accelerometer and the magnetometer to estimate action (A) and work (W) using event detections of peak stance and valley swing events associated with leg movement.2. The system according to claim 1 , wherein each sleeve comprises a board to which the pressure sensor claim 1 , the accelerometer and the magnetometer are affixed.3. The system according to claim 2 , wherein the magnetometer and accelerometer are affixed to a first side of the board and the pressure sensor is affixed to a second claim 2 , opposite side of the board.4. The system according to claim 1 , wherein each sleeve further comprises a wireless module for communication with the processor to provide for information feedback and systematic information collection for training and medical health assessment.5. A system comprising:a first sleeve comprising one or more pressure sensors for continuously sensing leg muscle expansion and contraction;a processor for processing signals from the sensors to determine aspects of swing phases of a walking gait cycle.6. The system according to claim 5 , wherein the sleeve is configured for sensing expansion and contraction of calf muscles.7. The system according to claim 5 , wherein the sleeve is configured for sensing expansion and contraction of thigh muscles.8. The system according to claim 5 , further comprising:a second sleeve comprising one or more pressure ...

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15-08-2013 дата публикации

METHOD AND APPARATUS FOR SENSING A HORSE'S MOODS

Номер: US20130211773A1
Автор: Loeschinger Juergen
Принадлежит:

In a method for sensing a horse's moods, in which multiple sensors sense physical parameters of the horse and a statement on the horse's well-being is derived from said measured values, the position of at least one ear is sensed by a sensor, and a statement reflecting the horse's mood in a differentiated manner on the basis of body language-related signals is output. 111.-. (canceled)12. A method for determining moods of a horse , comprising the steps of:determining, by a plurality of sensors, physiological parameters of the horse, including determining at least one of a movement and position of at least one ear of the horse;recognizing and quantifying body language signals mediated by the at least one of a movement and position of the at least one ear determined in said step of determining; andoutputting a statement derived from the determined physiological parameters indicating the moods of the horse.13. The method of claim 12 , wherein said step of determining further comprises determining at least one of a movement and position of the tail of the horse by the sensors.14. The method of claim 12 , wherein one of the sensors used for determining the at least one of a movement and position of the at least one ear is a motion sensor determining intensity of movement and/or orientation in space of the at least one ear.15. The method of claim 14 , wherein a magnetic field sensor is used as a motion sensor to determine the intensity of movement and/or orientation in space of the at least one ear.16. The method of claim 14 , wherein an acceleration sensor is used as a motion sensor to determine the intensity of movement and/or orientation in space of the at least one ear.17. The method of claim 12 , wherein said step of determining further comprises determining at least one of a movement and position of the head of the horse and calculating the at least one of a movement and position of the ear relative to the head.18. The method of claim 12 , wherein a sensor for ...

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15-08-2013 дата публикации

Fitting system for sporting equipment

Номер: US20130211774A1
Принадлежит: Blast Motion Inc

Enables a fitting system for sporting equipment using an application that executes on a mobile phone for example to prompt and accept motion inputs from a given motion capture sensor to measure a user's size, range of motion, speed and then utilizes that same sensor to capture motion data from a piece of equipment, for example to further optimize the fit of, or suggest purchase of a particular piece of sporting equipment. Utilizes correlation or other data mining of motion data for size, range of motion, speed of other users to maximize the fit of a piece of equipment for the user based on other user's performance with particular equipment. For example, this enables a user of a similar size, range of motion and speed to data mine for the best performance equipment, e.g., longest drive, lowest putt scores, highest winning percentage, etc., associated with other users having similar characteristics.

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29-08-2013 дата публикации

FLUID BODY FLOW VISUALIZATION DEVICE AND VISUALIZATION METHOD

Номер: US20130220009A1
Принадлежит:

When a flow of a liquid body around a measuring object is visualized, a first liquid body as a tracer is supplied from a nozzle hole into a flow field of a second liquid body, and a laser beam having a wavelength optically absorbed by the first liquid body is irradiated in a manner such that the laser beam traverse across the flow field. At this point, the irradiation position of the laser beam is controlled in such a manner that the flow field is scanned with the laser beam. On the other hand, the laser beam that has passed through the flow field is received and a position where the first liquid body traverses the laser beam is obtained using the scan intensity signal of the received laser beam so that the flow of the second liquid body is visualized. The position where the first liquid body traverses the laser beam can be obtained based on a position on a time axis where a value of the scan intensity signal is less than a set threshold. According to the above described visualization, the flow field can reliably be visualized even for the high-speed fluid body. 1. A fluid body flow visualization device for visualizing a flow of a fluid body around a measuring object , the device comprising:a fluid body supply unit operable to supply a first fluid body as a tracer from a nozzle hole to a flow field of a second fluid body;a laser beam supply unit operable to irradiate the flow field with a laser beam having a wavelength optically absorbed by the first fluid body in a manner such that the laser beam traverses the flow field, and operable to control an irradiation position of the laser beam in a manner such that the flow field is scanned;a beam receiving unit operable to receive the laser beam which has traversed the flow field; anda processing unit operable to visualize a flow of the second fluid body in the flow field using a scan intensity signal of the received laser beam.2. The fluid body flow visualization device according to claim 1 , wherein the processing unit ...

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19-09-2013 дата публикации

DETECTING THAT A MOBILE DEVICE IS RIDING WITH A VEHICLE

Номер: US20130245986A1
Принадлежит: QUALCOMM INCORPORATED

Systems and methods herein enable a mobile device to detect that a user is traveling in association with a vehicle based at least on motion data. In some embodiments, accelerometer data is used. Motion data is leveraged in combination with various observations regarding vehicular movement to determine whether or not a mobile device is located in or on the vehicle. For instance, before entering the state of vehicular movement, it can be determined that the user is first in a walking state (e.g., walking to the car, bus, etc., and entering it). Likewise, after exiting the state of vehicular movement, the user re-enters the walking state (e.g., after stepping out of the car, bus, etc., the user again begins walking). Further, it can be determined that when the user is in the walking state, the accelerometer signals appear different to any accelerometer signals seen in the vehicular movement state. 1. A method comprising:obtaining motion data from one or more motion-detecting devices; andfiltering the motion data to obtain present motion states for respective time intervals based on the motion data, the present motion states comprising one or more pedestrian motion states and one or more vehicular motion states, the one or more pedestrian motion states comprising a walk state, and the one or more vehicular motion states comprising a vehicular stop state;wherein, during the filtering, transitions from the one or more pedestrian motion states to the one or more vehicular motion states are restricted to transitions from the walk state to the vehicular stop state and transitions from the one or more vehicular motion states to the one or more pedestrian motion states are restricted to transitions from the vehicular stop state to the walk state.2. The method of further comprising computing likelihoods for the one or more pedestrian motion states and the one or more vehicular motion states for the respective time intervals.3. The method of wherein computing the likelihoods ...

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24-10-2013 дата публикации

OPERATING MOVEMENT DETECTION DEVICE, OPERATING MOVEMENT DETECTION METHOD, AND PROGRAM

Номер: US20130282325A1
Принадлежит: FUJITSU LIMITED

An operating movement detection device, which detects a shaking movement performed on an electronic device in a first direction, includes an acquisition unit that acquires a first acceleration value in the first direction and a second acceleration value in a second direction different from the first direction, the first acceleration value and the second acceleration value being sensed by an acceleration sensor, a calculation unit that calculates a determination threshold based on the second acceleration value acquired in a first determination period, and a determination unit that determines whether or not the shaking movement has been performed based on the first acceleration value acquired in the first determination period and the calculated determination threshold. 1. An operating movement detection device that detects a shaking movement performed on an electronic device in a first direction , the operating movement detection device comprising:an acquisition unit that acquires a first acceleration value in the first direction and a second acceleration value in a second direction different from the first direction, the first acceleration value and the second acceleration value being sensed by an acceleration sensor;a calculation unit that calculates a determination threshold based on the second acceleration value acquired in a first determination period; anda determination unit that determines whether or not the shaking movement has been performed based on the first acceleration value acquired in the first determination period and the calculated determination threshold.2. The operating movement detection device according to claim 1 , further comprising:a determination period setting unit that when the determination unit determines that the shaking movement has not been performed, causes a start position of a second determination period to be at a position at which the first acceleration value acquired in the first determination period first exceeds the ...

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14-11-2013 дата публикации

MOBILITY DETERMINATION

Номер: US20130304414A1
Автор: Aizenbud Yaron, Levy Gil
Принадлежит: ANAGOG LTD.

A mobile device includes at least one accelerometer and a mobility state determiner to utilize the variance in output of the accelerometer(s) to distinguish at least between a walking state and a driving state of a user of the mobile device. 1. A mobile device comprising:at least one accelerometer; anda mobility state determiner to utilize the variance in output of said at least one accelerometer to distinguish at least between a walking state and a driving state of a user of said mobile device.2. The mobile device according to and wherein said mobility state determiner comprises a peak/valley detector to detect minimum and maximum values in a window of acceleration data from said accelerometer.3. The mobile device according to and wherein said mobility state determiner comprises variance counters to count the number of large peak-to-valley distances and small peak-to-valley distances within a window of time claim 2 , where the large peak-to-valley distances indicate walking and the small peak-to-valley distances indicate driving.4. A mobility state determiner comprising:means to receive output of at least one accelerometer; anda processor to utilize the variance in output of said at least one accelerometer to distinguish at least between a walking state and a driving state of a user of a mobile device.5. The determiner according to and wherein said processor comprises a peak/valley detector to detect minimum and maximum values in a window of acceleration data from said accelerometer.6. The determiner according to and wherein said processor comprises variance counters to count the number of large peak-to-valley distances and small peak-to-valley distances within a window of time claim 5 , where the large peak-to-valley distances indicate walking and the small peak-to-valley distances indicate driving. This application claims benefit from U.S. Provisional Patent Application No. 61/435,364, filed Jan. 24, 2011, which is hereby incorporated in its entirety by reference ...

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05-12-2013 дата публикации

Methods and Systems for Processing Social Interactive Data and Sharing of Tracked Activity Associated with Locations

Номер: US20130325394A1
Принадлежит: Fitbit LLC

A method includes determining a location of a first monitoring device used while performing an activity. The first monitoring device is worn by a first user. The method includes determining a location of a second monitoring device used while performing an activity. The second monitoring device is worn by a second user. The method further includes determining whether the locations of the first and second monitoring devices are within a range and whether the activities are similar. The method includes sending a prompt to the first monitoring device upon determining that the activities are similar and the locations are within the range. The prompt includes a request for permission from a first user account to allow a second user account to access information from the first user account regarding the activity performed using the first monitoring device.

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26-12-2013 дата публикации

Method for obtaining data of substrate processing apparatus and sensor substrate

Номер: US20130346018A1
Автор: Hikaru AKADA
Принадлежит: Tokyo Electron Ltd

According to an embodiment of the present invention, a data obtainment method for obtaining data on gas flow directions in a plurality of measurement regions in a surface of a substrate loaded onto a loading unit of a substrate processing apparatus is provided. The method includes loading a sensor substrate onto the loading unit in a first direction, and changing the first direction into a second direction. Further, it is obtained a vector data of a gas flow in a first straight direction and a vector data of a gas flow in a second straight direction from each first sensor of the sensor substrate loaded in the first and second directions. Also, the method includes calculating a gas flow direction at each starting point in the first and second measurement regions by combining the vector data.

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02-01-2014 дата публикации

MOVING OBJECT DETECTING DEVICE, MOVING OBJECT DETECTING METHOD, AND COMPUTER PROGRAM

Номер: US20140003669A1
Принадлежит: SONY CORPORATION

An apparatus for detecting movement of an object captured by an imaging device, the apparatus includes a moving object detection unit, that is (1) operable to detect movement of an object based on a first moving object detecting process, and (2) operable to detect movement of the object based on a second moving object detecting process. The apparatus also includes an output unit operable to generate an output based on the detection by the moving object detection unit based on at least one of the first and second moving object detecting processes. 133-. (canceled)34. An apparatus for detecting movement of an object captured by an imaging device , the apparatus comprising: operable to detect movement of an object based on a first moving object detecting process, and', 'operable to detect movement of the object based on a second moving object detecting process; and, 'a moving object detection unit,'}an output unit operable to generate an output based on the detection by said moving object detection unit based on at least one of the first and second moving object detecting processes. 1. Field of the InventionThe present invention relates generally to a moving object detecting device, a moving object detecting method, and a computer program for detecting a moving object. More particularly, the present invention relates to a moving object detecting device, method and computer program that precisely detects a moving object based on whether the moving object is near or remote.2. Background DiscussionTypically, in an intrusion detection system of a monitoring camera, a moving object is detected. For example, JP-A-2007-102556, describes that captured image data from which a motion should be detected is divided into plural area blocks depending on the number of error occurrence blocks. A status variation in the smoothed image data of each image block is detected and a map of the detected status variation blocks is compared with a map of status variation blocks detected prior ...

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09-01-2014 дата публикации

MEASURING SUBSTRATE, SUBSTRATE TREATMENT APPARATUS AND SUBSTRATE TREATMENT APPARATUS OPERATION METHOD

Номер: US20140007669A1
Автор: AKADA Hiraku
Принадлежит:

The present invention includes a first substrate having a sensor part for measuring a measured factor and a second substrate that is to be detachably stacked on a lower side of the first substrate, the second substrate including: a signal processing part that processes a measurement signal obtained by measurement by the sensor part; a power supply part for feeding power to the sensor part; and at least either a memory that stores measurement data obtained by being processed in the signal processing part or a communication part for transmitting the measurement data by wireless, wherein the second substrate is in common use for a plurality of kinds of first substrates different in measured factor measured by the sensor part from each other. 1. A measuring substrate used for a substrate treatment apparatus in which a treatment target substrate is carried by a substrate carrier mechanism into a treatment module and treated , and for performing measurement of a factor affecting a treatment state of the treatment target substrate or a factor relating to a carry operation for the substrate , the measuring substrate comprising:a first substrate having a sensor part for measuring at least either of the factors; anda second substrate that is to be detachably stacked on a lower side of the first substrate, a signal processing part that processes a measurement signal obtained by measurement by the sensor part;', 'a power supply part for feeding power to the sensor part; and', 'at least either a memory that stores measurement data obtained by being processed in the signal processing part or a communication part for transmitting the measurement data by wireless,, 'the second substrate comprisingwherein the second substrate is in common use for a plurality of kinds of first substrates different in measured factor measured by the sensor part from each other.2. The measuring substrate as set forth in claim 1 ,wherein the sensor part provided on the first substrate of one of the ...

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16-01-2014 дата публикации

MOTION ANALYZING APPARATUS

Номер: US20140019083A1
Автор: NAKAOKA Yasushi
Принадлежит: SEIKO EPSON CORPORATION

A sensor unit is installed to a target object and detects a given physical amount. A data acquisition unit acquires output data of the sensor unit in a period including a first period for which a real value of a value of m time integrals of the physical amount is known and a second period that is a target for motion analysis. An error time function estimating unit performs m time integrals of the output data of the sensor unit and estimates a time function of an error of a value of the physical amount detected by the sensor unit with respect to the real value of the value of the physical amount detected by the sensor unit based on a difference between a value of m time integrals of the output data and the real value for the first period. 1. A motion analyzing apparatus comprising:a data acquisition unit that acquires output data of a sensor unit in a period including a first period for which a real value of a value of m time integrals (here, m is an integer equal to or greater than one) of the physical amount is known and a second period that is a target for motion analysis;a. data correcting unit that corrects a value of m time integrals of the output data for the second period based on a difference between a value of m time integrals of the output data and the real value for the first period; anda motion analysis information generating unit that generates motion analysis information of the target object based on the value of the m time integrals for the second period that is corrected by the data correcting unit.2. The motion analyzing apparatus according to claim 1 , wherein an error time function estimating unit that estimates a time function of an error of a value of the physical amount detected by the sensor unit with respect to the real value based on the difference between a value of m time integrals of the output data and the real value for the first period.3. The motion analyzing apparatus according to claim 2 , wherein the error time function estimating ...

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06-02-2014 дата публикации

Methods and Systems for Geo-Location Optimized Tracking and Updating for Events Having Combined Activity and Location Information

Номер: US20140039839A1
Принадлежит: Fitbit LLC

A method includes obtaining a first geo-location and a second geo-location. The first and second geo-locations are associated with a monitoring device. The monitoring device is configured to be used by a user. The first geo-location is determined at a first time and the second geo-location is determined at a second time. The first time and the second time are associated with a rate of obtaining geo-location data. The method includes calculating a difference in distance between the second and first geo-locations and changing the rate of obtaining a third geo-location associated with the monitoring device based on the difference in distance between the second and first geo-locations.

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06-02-2014 дата публикации

Methods and Systems for Classification of Geographic Locations for Tracked Activity

Номер: US20140039840A1
Принадлежит: Fitbit, Inc.

A method includes receiving activity of a monitoring device that is configured to be worn by a user having a user account. The activity includes an amount of movement of the monitoring device and occurs for a period of time. The method further includes receiving geo-location data for the monitoring device and processing the activity data and geo-location data received for the period of time. The operation of processing is performed to segment the period of time into at least two events. The method includes assigning an identifier to each event. The identifier has a default description for the geo-location data. The default description is selected from a plurality of descriptions based on the activity data obtained by the movement of the monitoring device for the geo-location data. 1. A method comprising:receiving activity of a monitoring device that is configured to be worn by a user having a user account, the activity including an amount of movement of the monitoring device and the activity occurring for a period of time;receiving geo-location data for the monitoring device;processing the activity data and geo-location data received for the period of time, the processing configured to segment the period of time into at least two events; andassigning an identifier to each event, the identifier having a default description for the geo-location data, the default description being selected from a plurality of descriptions based on the activity data obtained by the movement of the monitoring device for the geo-location data.2. The method of claim 1 , wherein an increased level of activity influences selection of a first default description and a decreased level of activity influences a second default description that is different than the first default description.3. The method of claim 1 , further comprising claim 1 ,receiving a user-defined description to replace the default description for use with the user account, for the user account making the user-defined ...

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06-02-2014 дата публикации

Methods and Systems for Identification of Event Data Having Combined Activity and Location Information of Portable Monitoring Devices

Номер: US20140039841A1
Принадлежит: Fitbit, Inc.

Systems and methods for segmenting a period of time into identification of locations of a user who performs activities are described. One of the methods includes detecting activity of a monitoring device worn by the user. The activity includes an amount of movement of the monitoring device. The activity is performed for a period of time. The method further includes obtaining geo-location data for the monitoring device and storing, during the period of time, the detected activity and corresponding geo-location data. The method also includes analyzing the detected activity and the corresponding geo-location data to identify one or more events. Each event is associated with a group of activity data and one or more of the groups of activity data is associated with an identifier, which is obtained using the geo-location data. 1. A method comprising:detecting activity of a monitoring device that is configured to be worn by a user, the activity including an amount of movement of the monitoring device and the activity performed for a period of time;obtaining geo-location data for the monitoring device;storing, during the period of time, the detected activity and corresponding geo-location data; andanalyzing the detected activity and the corresponding geo-location data to identify one or more events, each event being associated with a group of activity data and one or more of the groups of activity data being associated with an identifier, the identifier obtained using the geo-location data.2. The method of claim 1 , further comprising identifying within the event a time of entry or exit of the location by the monitoring device.3. The method of claim 1 , further comprising combining amounts of time of a common activity over a period of time to indicate a combined amount of time for which the common activity is performed.4. The method of claim 1 , further comprising combining activity levels of one or more activities over a period of time to indicate a combined activity level ...

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06-02-2014 дата публикации

Methods and Systems for Generation and Rendering Interactive Events Having Combined Activity and Location Information

Номер: US20140039842A1
Принадлежит: Fitbit, Inc.

A computer-implemented method is described. The computer-implemented method is used for populating data of a graphical user interface (GUI). The computer-implemented method includes generating one or more graphical elements of one or more activities captured by a monitoring device. The monitoring device is usable by a user during the capturing. The method further includes generating a timeline including a time period over which the activities are performed. The timeline includes a chronological order of time within the time period. The method further includes generating an activity symbol for one or more of the activities performed during the time period. The activity symbol has an image that is graphically overlaid on the graphical elements of the activities. 1. A computer-implemented method for populating data of a graphical user interface (GUI) , the computer-implemented method comprising:generating one or more graphical elements of one or more activities captured by a monitoring device, the monitoring device usable by a user during the capturing;generating a timeline including a time period over which the activities are performed, the timeline including a chronological order of time within the time period; andgenerating an activity symbol for one or more of the activities performed during the time period, the activity symbol having an image that is graphically added to the GUI for association with the graphical elements of the activities.2. The computer-implemented method of claim 1 , further comprising generating a location symbol for one or more of the activities claim 1 , the location symbol having an image that is graphically added to the GUI for association with one or more graphical elements representing a location associated with the activities.3. The computer-implemented method of claim 2 , further comprising transferring data for the GUI that includes the graphical elements claim 2 , the timeline claim 2 , the activity symbol claim 2 , and the location ...

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13-02-2014 дата публикации

Controlling Fan Motors Using Capacitive Sensing

Номер: US20140042877A1
Автор: Sehat Sutardja
Принадлежит: MARVELL WORLD TRADE LTD

A motor having a rotor, the rotor including a first metal plate having a first size and a second metal plate having a second size arranged on a first surface associated with the rotor. The first metal plate and the second metal plate are arranged adjacent to each other at a predetermined distance from an axis of rotation of the rotor. The first surface rotates perpendicularly about the axis in response to the rotor being rotated about the axis. A stator includes a third metal plate arranged on a second surface associated with the stator. The third metal plate is arranged on the second surface at the predetermined distance from the axis. The second surface is parallel to the first surface and faces the first surface.

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20-03-2014 дата публикации

SYSTEM AND METHOD FOR MONITORING MOVEMENT IN STRATA

Номер: US20140076049A1
Принадлежит:

A system for monitoring movement in strata including at least one sensor embedded in the strata for detecting movement in the strata and for generating first signals indicative of the movement; a storage device in communication with the at least one sensor for collecting and storing the first signals; an analyser in communication with the storage device for analysing the first signals and for triggering an alarm upon a predetermined outcome of the analysis of the first signals. 1. A system for monitoring movement in strata comprising:at least one sensor embedded in the strata for detecting movement in the strata and for generating first signals indicative of the movement;a storage device in communication with the at least one sensor for collecting and storing the first signals;an analyser in communication with the storage device for analysing the first signals an analyser in communication with the storage device for analysing the first signals and for triggering an alarm upon a predetermined outcome of the analysis of the first signals.2. A system according to wherein the analyser generates a second signal indicative of a predicted future movement of the strata.3. A system according to wherein the sensor generates the first signals at a predetermine time interval.4. A system according to wherein the at least one sensor generates the first signal in real time.5. A system according to wherein the analyser generates the second signal in real time.6. A system according to wherein the at least one sensor is in network communication with the storage device.7. A system according to wherein the plurality of sensors are embedded in the strata at predetermine points within the strata.8. A system according to wherein the analyser includes an alarm that is triggered in the event of a predetermined predicted move of the strata.9. A system according to wherein the storage device stores historical data associated with the first signal.10. A system according to wherein the analyser ...

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27-03-2014 дата публикации

DETERMINATION DEVICE, ELECTRICAL DEVICE, AND METHOD OF DETERMINING MOVING STATE

Номер: US20140082952A1
Автор: FUJIWARA Kazunori
Принадлежит: LAPIS SEMICONDUCTOR CO., LTD.

A determination device includes a geomagnetism value obtaining unit for obtaining a geomagnetism value detected with a geomagnetism sensor; and a geomagnetism value determining unit for determining whether a user having the geomagnetism sensor is in a moving state in an automobile or on a train according to a magnitude of a change in the geomagnetism value obtained with the geomagnetism value obtaining unit. 1. A determination device , comprising:a geomagnetism value obtaining unit for obtaining a geomagnetism value detected with a geomagnetism sensor; anda geomagnetism value determining unit for determining whether a user having the geomagnetism sensor is in a moving state in an automobile or on a train according to a magnitude of a change in the geomagnetism value obtained with the geomagnetism value obtaining unit.2. The determination device according to claim 1 , wherein said geomagnetism value determining unit is configured to determine whether the user is in the moving state in the automobile or on the train according to the magnitude of the change in the geomagnetism value including at least one of a dispersion of the geomagnetism value claim 1 , a difference between a minimum value and a maximum value of the geomagnetism value claim 1 , the maximum value of the geomagnetism value claim 1 , and the minimum value of the geomagnetism value.3. The determination device according to claim 1 , further comprising:an acceleration value obtaining unit for obtaining an acceleration value detected with an acceleration sensor; andan acceleration value determining unit for determining whether the user having the acceleration sensor is in a moving state of walking or running or on a bicycle, or the moving state in the automobile or on the train according to the acceleration value obtained with the acceleration value obtaining unit,wherein said geomagnetism value determining unit is configured to determine whether the user is in the moving state in the automobile or on the ...

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27-03-2014 дата публикации

Adjustable motion detector

Номер: US20140083188A1
Принадлежит: Oy Baltic Instruments Ab

The invention relates to a motion detector comprising at least of one accelerometer and corresponding control electronics encapsulated in an enclosure with means for attaching the enclosure to a moving body. In accordance with the invention the motion detector includes means for turning, aligning and locking the detector in any desired direction relative to the moving body with the help of the enclosure. 1. A motion detector comprising: at least of one accelerometer and corresponding control electronics encapsulated in an enclosure with means for attaching the enclosure to a moving body whereby the motion detector includes means for turning , aligning and locking the detector in any desired direction relative to the moving body with the help of the enclosure , wherein the support surface between the enclosure and means for attaching of the enclosure is spherical and that that the spherical enclosure of the motion detector can be turned and locked into its position by an expandable and retractable ring structure.2. A motion detector according to claim 1 , wherein the enclosure of the motion detector has one or several reference surfaces or slots that can be used as references for aligning or leveling the enclosure relative to the moving body.3. A motion detector according to claim 1 , wherein the motion detector has means for turning claim 1 , aligning and locking the detector into a given direction relative to the gravity vector.4. A motion detector according to claim 1 , wherein the motion detector includes a lockable ball joint structure for turning and locking the detector into its position.5. A motion detector according to claim 1 , wherein the motion detector includes a lockable single or double hinged or gimbaled structure for turning and locking the detector into its position.6. A motion detector according to claim 1 , wherein the means for attaching the detector on the moving body includes a separate attachment base enabling the motion detector to be removed ...

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27-03-2014 дата публикации

Methods, Systems and Devices for Linking User Devices to Activity Tracking Devices

Номер: US20140088922A1
Принадлежит: Fitbit, Inc.

Methods, systems and devices for linking devices to tracking devices is provided. One method includes scanning, by an activity tracking device, for a semi-unique identifier broadcasted by a device. The method connects the device with the activity tracking device after the semi-unique identifier is found to be of the device by the activity tracking device. The activity tracking device is configured to communicate with the device to obtain a device identification (ID) of the device. The method then automatically linking the device to the activity tracking device when the device ID of the device matches a copy of the device ID stored in the activity tracking device. In one example, the tracking devices operate as a master and the devices operate as a slave. 1. A method ,scanning, by an activity tracking device, for a semi-unique identifier broadcasted by a device;connecting the device with the activity tracking device after the semi-unique identifier is found to be of the device by the activity tracking device, the activity tracking device configured to query the device to obtain a device identification (ID) of the device; andlinking the device to the activity tracking device when the device ID of the device matches a copy of the device ID stored in the activity tracking device, the method being executed by a processor.2. The method of claim 1 , wherein the activity tracking device operates in a master mode to initiate the scanning for the device claim 1 , and the device operates in a slave mode.3. The method of claim 1 , wherein the scanning and connecting is repeated for other devices having the semi-unique identifier until the match is made between the device ID and the copy of the device ID.4. The method of claim 1 , wherein the activity tracking device is configured to store additional device IDs associated with devices that have been pre-defined link to the activity tracking device.5. The method of claim 4 , wherein devices are pre-defined to link to the activity ...

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03-01-2019 дата публикации

SYSTEMS AND METHODS FOR DETERMINING AXIAL ORIENTATION AND LOCATION OF A USER'S WRIST

Номер: US20190000354A1
Принадлежит:

This relates to systems and methods for determining the axial orientation and location of the user's wrist using one or more sensors located on the strap, the device underbody, or both. For example, the strap can include a plurality of elastic sections and a plurality of rigid sections. Each elastic section can include one or more flex sensors. In some examples, on or more electromyography (EMG) sensors can be included to measure the user's electrical signals, and the user's muscle activity can be determined. In some examples, a plurality of strain gauges can be included to generate one or more signals indicative of any changes in shape, size, and/or physical properties of the user's wrist. In some examples, the device can include a plurality of capacitance sensors for increased granularity and/or sensitivity in measuring the amount of tension exerted by the user's wrist. 1. A method of determining a performance of a wrist of a user , the method comprising:determining a tension of the wrist of the user using one or more sensors included in a device;determining a motion of the wrist using one or more of an accelerometer, gyroscopic sensors, and barometric sensors included in the device;simulating the performance of the wrist using the determined tension and the determined motion;analyzing the performance by comparing the simulated performance to one or more stored ideal performances; andproviding the simulation and the analysis to the user.2. The method of claim 1 , wherein the performance is associated with a sports performance claim 1 , and the tension of the wrist includes gripping a sports instrument.3. The method of claim 2 , wherein the sports performance includes weight training claim 2 , and the sports instrument includes a dumbbell.4. The method of claim 2 , wherein the one or more sensors include piezoelectric sensors claim 2 , and the determination of the tension of the wrist includes:receiving one or more signals in response to a change in properties of ...

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07-01-2021 дата публикации

STRESS DETECTION METHOD AND TERMINAL

Номер: US20210000403A1
Автор: HUANG Jiejing, Xu Zhe
Принадлежит:

This application provides a stress detection method and a terminal, and relates to the field of terminal technologies, to resolve a problem of relatively low reliability of data collected during stress detection. The method includes: obtaining an event of a terminal, determining a stress measurement time based on the event of the terminal, and detecting stress of a user based on the time. The event is at least one of a schedule, a reminder, and a running application program. This application is applicable to a stress detection process. 1. A stress detection method , comprising:obtaining an event of a terminal, wherein the event is at least one of a schedule, a reminder, or a running application program;determining a stress measurement time based on the event of the terminal; anddetecting stress of a user based on the stress measurement time.2. The method according to claim 1 , wherein the event is at least one of the schedule or the reminder claim 1 , and the determining the stress measurement time based on the event of the terminal claim 1 , and detecting stress of the user based on the stress measurement time comprises:determining, based on the schedule or the reminder, whether stress is caused to the user; andif the schedule or the reminder causes stress to the user, detecting the stress of the user at a time point or in a time period in an occurrence process of an event in the schedule or an event in the reminder.3. The method according to claim 1 , wherein the event is the running application program claim 1 , and the determining the stress measurement time based on the event of the terminal claim 1 , and the detecting stress of the user based on the stress measurement time comprises:determining whether the running application program belongs to a first application list, wherein the first application list comprises a list of application programs that affect the stress of the user;if the running application program belongs to the first application list and a ...

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07-01-2021 дата публикации

SENSOR DATA CORRECTION SYSTEM

Номер: US20210000425A1
Принадлежит:

A sensor data correction system, includes: a standard motion mechanism unit for performing a standard motion of a wearable sensor; a determination unit calculating a relationship between first sensor data that is sensed by a first wearable sensor provided with the standard motion mechanism unit and second sensor data that is sensed by a second wearable sensor provided with the standard motion mechanism unit; and a correction unit correcting the first sensor data or the second sensor data, on the basis of the relationship that is calculated by the determination unit. 1. A sensor data correction system , comprising:a standard motion mechanism unit for performing a standard motion of a wearable sensor;a determination unit calculating a relationship between first sensor data that is sensed by a first wearable sensor provided with the standard motion mechanism unit and second sensor data that is sensed by a second wearable sensor provided with the standard motion mechanism unit; anda correction unit correcting the first sensor data or the second sensor data, on the basis of the relationship that is calculated by the determination unit.2. The sensor data correction system according to claim 1 ,wherein the determination unit calculates properties of the first wearable sensor by using the first sensor data in an operation zone of the first wearable sensor, and calculates properties of the second wearable sensor by using the second sensor data in a zone corresponding to the operation zone, andthe correction unit performs correction, on the basis of the relationship that is calculated by the determination unit from the properties of the first wearable sensor and the properties of the second wearable sensor.3. A sensor data correction system claim 1 , comprising:a standard motion mechanism unit for performing a standard motion of a wearable sensor;a determination unit calculating a relationship between standard sensor data that is sensed by the wearable sensor provided with ...

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07-01-2021 дата публикации

PORTABLE INSTRUMENT FOR MANAGING A SPORTS OR WELL-BEING ACTIVITY

Номер: US20210001175A1

A portable instrument provided with a device for controlling or managing a sports or well-being activity of a person wearing the portable instrument. The control device includes at least a motion sensor and a pressure sensor connected to a calculation unit, and a GNSS receiver module connected to the calculation unit. The calculation unit of the control device is arranged to activate the GNSS receiver module for a time of activation defined subsequent to variations in movement detected by the motion sensor differing from known movement data or walking profiles in order to determine at least one reference speed of the person, and to deactivate the GNSS receiver module after the activation time for a deactivation time greater than the activation time. 1. A portable instrument provided with a device for controlling or managing a sports or well-being activity of a person wearing the portable instrument , the control device comprising at least one motion sensor connected to a calculation unit and a GNSS receiver module connected to the calculation unit ,wherein the calculation unit of the control device is arranged to activate the GNSS receiver module for an activation time defined subsequent to variations in movement detected by the motion sensor differing from known movement data or walking profiles in order to determine at least one reference speed of the person, and to deactivate the GNSS receiver module after the activation time for a deactivation time greater than the activation time.2. The portable instrument according to claim 1 , wherein the control device comprises at least one memory connected to the calculation unit to memorise at least speed data and various customised walking or running profiles of the person wearing the portable instrument.3. The portable instrument according to claim 2 , wherein the memory connected to the calculation unit comprises a recorded calculation algorithm for the estimation of speed or of pace of the movement of a person wearing ...

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02-01-2020 дата публикации

BICYCLE COMPUTER

Номер: US20200001132A1
Принадлежит: POLAR ELECTRO OY

A bicycle computer for monitoring performance of a user of a bicycle includes a processing circuitry; a user interface; an attaching unit for arranging the bicycle computer in an attached position; and at least one integrated proximity sensor arranged and dimensioned to measure, in the attached position, proximity data being indicative of a distance to a body part. The processing circuitry is configured to obtain the proximity data from the at least one integrated proximity sensor and to process the proximity data into one or more cycling metric. The user interface is configured to output the one or more cycling metric. 1. A bicycle computer for monitoring performance of a user of a bicycle , the bicycle computer comprising:a processing circuitry;a user interface;an attaching unit for arranging the bicycle computer in an attached position; andat least one integrated proximity sensor arranged and dimensioned to measure, in the attached position, proximity data being indicative of a distance to a body part,wherein the processing circuitry is configured to obtain the proximity data from the at least one integrated proximity sensor and to process the proximity data into one or more cycling metric,and wherein the user interface is configured to output the one or more cycling metric.2. The bicycle computer of claim 1 , wherein the at least one integrated proximity sensor comprises a proximity sensor arranged and dimensioned to measure claim 1 , in the attached position claim 1 , first proximity data being indicative of a distance to upper body part of the user of the bicycle claim 1 ,and wherein the processing circuitry is configured to process the first proximity data into a riding position metric.3. The bicycle computer of claim 2 , wherein the upper body part comprises at least one of a stomach of the user claim 2 , chest of the user claim 2 , head of the user.4. The bicycle computer of claim 1 , wherein the at least one integrated proximity sensor comprises a cadence ...

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04-01-2018 дата публикации

Wind turbine with wind sensor

Номер: US20180003160A1
Автор: Claus Vad
Принадлежит: SIEMENS AG

A wind turbine including a rotor, a nacelle, a generator, and a wind sensor is provided, wherein the wind sensor is arranged above a part of the generator that extends between the rotor and the nacelle. Furthermore, a wind farm including a plurality of interconnected wind turbines is described. Yet further, a method of assembling or modifying a wind turbine is described.

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13-01-2022 дата публикации

ULTRAVIOLET PATHOGEN DISINFECTION SYSTEM

Номер: US20220008588A1
Принадлежит: Sood, Seth, Khatri & Chaudhary LLC

A mobile communication device includes a pathogen disinfection apparatus including an ultraviolet (UV) light source configured to emit UV light having a mean peak wavelength between 200-280 nanometers toward a target location to at least partially inactivate pathogens exposed to the emitted UV light in the path of the emitted light and a surface of the target location. Further, the mobile communication device includes an application including processor executable instructions configured to generate signals to control the pathogen disinfection apparatus, including to operate the UV light source. 1. A mobile communication device with an integrated pathogen disinfection apparatus , comprising:an exterior housing of the mobile communication device;a touchscreen display disposed on a front portion of the exterior housing;an ultraviolet (UV) light source disposed on a rear portion of the exterior housing, the UV light source configured to emit UV light having a mean peak wavelength between 200-280 nanometers toward a target location to at least partially inactivate pathogens exposed to the emitted UV light in the path of the emitted light and a surface of the target location;at least one visible light source disposed on the rear portion of the exterior housing;an application including processor executable instructions configured to generate signals to control the pathogen disinfection apparatus to: (a) activate both the at least one visible light source and the UV light source so that when the UV light source is active and emitting the UV light toward the target location, the visible light source is also active and emitting a first visible light to illuminate the target location, the first visible light having a first color or intensity indicating that the UV light source is active; and (b) selectively activate the at least one visible light source to emit a second visible light to illuminate the target location only when the at least one UV light source is inactive, the ...

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13-01-2022 дата публикации

METHOD FOR DETECTING THE THEFT OF A VEHICLE

Номер: US20220009448A1
Автор: Kalt Urs, Michel Bernhard
Принадлежит:

A method for detecting theft of a vehicle, includes the following steps: detecting a vehicle movement by an inductive vehicle charging system, checking the authorization for a detected vehicle movement, and outputting a message signal if an unauthorized vehicle movement is detected. The checking of the authorization for a detected vehicle movement is started after the start of a vehicle charging process. 1. A method for detecting theft of a vehicle , comprising:detecting a vehicle movement by an inductive vehicle charging system,checking the authorization for a detected vehicle movement, andoutputting a message signal if an unauthorized vehicle movement is detected,wherein the checking of the authorization for a detected vehicle movement is started after the start of a vehicle charging process.2. The method as claimed in claim 1 , in which the checking of the authorization for a detected vehicle movement is continued after the vehicle charging process has ended until an authorized vehicle movement is detected.3. The method as claimed in claim 2 , in which an authorized vehicle movement is detected if it is detected after the vehicle has been started by a vehicle-specific vehicle key and/or after release by a release signal output by a communication device.4. The method as claimed in claim 1 , in which claim 1 , in order to detect the vehicle movement claim 1 , a measured coil current or a measured voltage of the inductive vehicle charging system is evaluated.5. The method as claimed in claim 1 , in which an impedance of the inductive vehicle charging system is evaluated in order to detect the vehicle movement.6. The method as claimed in claim 1 , in which the vehicle movement is detected on the basis of foreign object detection of the inductive vehicle charging system.7. The method as claimed in claim 1 , in which the vehicle movement is detected on the basis of living object detection of the inductive vehicle charging system.8. The method as claimed in claim 1 , in ...

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07-01-2021 дата публикации

COVERING DEVICE FOR PROTECTING ANEMOMETER ENGAGED WITH EXTERNAL FRAME MOUNTED ON VEHICLE

Номер: US20210003427A1
Принадлежит:

A covering device for protecting an anemometer engaged with an external frame on a moving body is provided. The covering device includes: a propeller protecting part including (1_1)-st and (1_2)-nd case units for protecting a propeller, wherein space created by combining the (1_1)-st and (1_2)-nd case units holds the propeller; a body protecting part including (2_1)-st and (2_2)-nd case units for protecting a main body and its vertical tail, wherein space created by combining the (2_1)-st and (2_2)-nd case units holds the main body and the vertical tail; and a supporting member protecting part including (3_1)-st and (3_2)-nd case units for protecting a supporting member, wherein space created by combining the (3_1)-st and (3_2)-nd case units holds the supporting member; wherein the (3_1)-st and (3_2)-nd case units engage the external frame, to allow all the case units to be fixed. 1. A covering device for protecting an anemometer engaged with an external frame mounted on a moving body , comprising:a propeller protecting part which includes a (1_1)-st case unit and a (1_2)-nd case unit to be used for protecting a propeller of the anemometer, wherein the propeller is engaged with a frontal end of a main body of the anemometer and wherein first space created by combining the (1_1)-st case unit and the (1_2)-nd case unit has volume capable of holding the propeller;a body protecting part which includes a (2_1)-st case unit and a (2_2)-nd case unit to be used for protecting the main body and a vertical tail formed on a rear end of the main body, wherein second space created by combining the (2_1)-st case unit and the (2_2)-nd case unit has volume capable of holding the main body and the vertical tail of the anemometer; anda supporting member protecting part which includes a (3_1)-st case unit and a (3_2)-nd case unit to be used for protecting a supporting member which supports the main body of the anemometer, wherein third space created by combining the (3_1)-st case unit ...

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07-01-2021 дата публикации

RETRACTABLE ASSEMBLY, SYSTEM AND METHOD FOR DETECTING MOVEMENT THEREIN

Номер: US20210003605A1
Принадлежит:

The present disclosure includes a retractable assembly for immersion, flow and mounted measuring systems in analytical process technology, comprising: an essentially cylindrical housing with a housing interior; a dip tube which can be moved axially in the housing interior between a service position and a process position by means of supply energy, in particular compressed air; and an acceleration sensor. The present disclosure also includes a method for detecting a movement of the dip tube. 1. A retractable assembly for immersion , flow and mounted measuring systems in analytical process technology , the retractable assembly comprisinga substantially cylindrical housing that defines a housing interior;a dip tube that is axially movable in the housing interior between a service position and a process position using supply energy; andan acceleration sensor.2. The retractable assembly of claim 1 , wherein the supply energy is compressed air.3. The retractable assembly of claim 1 , wherein the acceleration sensor is disposed in the housing interior.4. The retractable assembly of claim 1 , wherein the acceleration sensor is disposed on the dip tube.5. The retractable assembly of claim 1 , wherein:the retractable assembly further comprises at least one insert component;the insert component is disposed on or in the dip tube; andthe acceleration sensor is arranged on the insert component.6. The retractable assembly of claim 5 , wherein the at least one insert component is a sensor and/or a cable.7. The retractable assembly of claim 1 , wherein the retractable assembly further comprises a temperature sensor claim 1 , which is disposed on or in the insert component.8. A system claim 1 , comprising:{'claim-ref': {'@idref': 'CLM-00001', 'claim 1'}, 'a retractable assembly according to ; and'}a transmitter, wherein the transmitter is connected to the acceleration sensor and is configured to detect a movement of the dip tube using the acceleration sensor.9. A method for detecting ...

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03-01-2019 дата публикации

SIDESLIP GUIDANCE FOR ONE ENGINE INOPERATIVE CONDITION

Номер: US20190004081A1
Принадлежит:

The present disclosure describes systems and methods associated with providing sideslip guidance for an aircraft. A sideslip offset based on aileron position is used to adjust an initial target sideslip, which is further modified using the actual sideslip of the aircraft. 1. A method for providing sideslip guidance for an aircraft , the method comprising:determining an initial target sideslip based on current operating conditions of the aircraft;determining a sideslip offset based on an actual position of at least one aileron of the aircraft and a neutral position of the at least one aileron;adjusting the initial target sideslip using the sideslip offset to generate an adjusted target sideslip;obtaining an actual sideslip of the aircraft; andproviding a target sideslip as a difference between the adjusted target sideslip and the actual sideslip.2. The method of claim 1 , wherein determining the initial target sideslip comprises using at least one of an airspeed of the aircraft and a flap configuration of the aircraft as the current operating conditions.3. The method of claim 1 , wherein determining the initial target sideslip comprises using an engine operating status for each engine of the aircraft as the current operating conditions.4. The method of claim 1 , further comprising determining the actual position of the at least one aileron as an average of an actual position of a first aileron and an actual position of a second aileron.5. The method of claim 1 , wherein obtaining the actual sideslip of the aircraft comprises estimating the actual sideslip of the aircraft.6. The method of claim 5 , wherein estimating the actual sideslip comprises:determining an initial sideslip estimate using aircraft operating parameters; andadjusting the initial sideslip estimate by a gain factor.7. The method of claim 1 , further comprising:detecting an engine failure of at least one engine of the aircraft; andwhen the engine failure is detected, determining an operating mode of ...

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07-01-2021 дата публикации

A DUAL-PRECISION SENSOR SYSTEM USING HIGH-PRECISION SENSOR DATA TO TRAIN LOW-PRECISION SENSOR DATA FOR OBJECT LOCALIZATION IN A VIRTUAL ENVIRONMENT

Номер: US20210004075A1
Автор: PROTTER Matan, Rotem Efrat
Принадлежит: Alibaba Technology (Israel) Ltd.

A system and method is provided for improving sensor precision. In a training phase, a relatively low precision sensor system and a relatively high precision sensor system may record relatively low precision and relatively high precision training motion signals respectively of substantially the same training scene. Machine learning may be performed to generate a transformation mapping information from the relatively low precision training motion signal to the relatively high precision training motion signal. In a run-time phase, a run-time sensor system having a precision significantly less than the precision of the relatively high precision sensor system, may record run-time motion signals of a run-time scene. The run-time motion signal may be transformed using the transformation to generate a transformed run-time motion signal with a precision significantly greater than the precision of the run-time sensor system. 1. A method for improving sensor precision , the method comprising: recording, by a relatively low precision sensor system and a relatively high precision sensor system, motion signals of substantially the same training scene to generate a relatively low precision training motion signal and a relatively high precision training motion signal, respectively;', 'performing machine learning to generate a transformation mapping information from the relatively low precision training motion signal to information from the relatively high precision training motion signal;, 'in a training phase, executed by a dual-precision sensor system recording, by a run-time sensor system having a precision significantly less than the precision of the relatively high precision sensor system, motion signals of a run-time scene to generate a run-time motion signal; and', 'transforming the run-time motion signal using the transformation to generate a transformed run-time motion signal with a precision significantly greater than the precision of the run-time sensor system., 'in a ...

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01-01-2015 дата публикации

Optical Sensor

Номер: US20150006106A1
Автор: ISHIKAWA HIROTO
Принадлежит:

Three light emitting elements and one light receiving element are provided on a surface of a substrate. An arithmetic processing portion of a signal processing circuit separates three reflected light signals from a light detection signal from the light receiving element. The arithmetic processing portion calculates a square sum of the difference between the entire waveforms of the reflected light signals while the reflected light signal is shifted. The arithmetic processing portion calculates a phase difference between the reflected light signals on the basis of a shift amount with which the calculated value is minimum. On the basis of similar processing, the arithmetic processing portion calculates a phase difference between the reflected light signals. The arithmetic processing portion identifies a movement direction of a detection object on the basis of the phase differences. 1. An optical sensor comprising:a substrate;at least three light emitting elements disposed on the substrate;a light emission controller configured to control the at least three light emitting elements;at least one light receiving element disposed on the substrate and configured to receive reflected light that is emitted from the at least three light emitting elements and reflected from a detection object; and obtain three reflected light signals corresponding to the reflected light received by the at least one light receiving element from the three light emitting elements, respectively,', 'calculate respective phase differences based on differences or correlations among entire waveforms of the three reflected light signals; and', 'determine a movement direction of the detection object based on at least two of the phase differences., 'a microprocessor configured to2. The optical sensor according to claim 1 , wherein claim 1 , when the reflected light signals are temporally shifted by a predetermined shift amount claim 1 , the microprocessor sums a square of a difference from at least two of ...

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01-01-2015 дата публикации

MOTION RECOGNITION APPARATUS, MOTION RECOGNITION SYSTEM, AND MOTION RECOGNITION METHOD

Номер: US20150006446A1
Автор: Chiba Yuki, Miyazaki Yoji
Принадлежит: NEC Corporation

Provided are a motion recognition apparatus, a motion recognition system and a motion recognition method that enable ‘event motions’ to be recognized with a small number of calculations. The motion recognition system, which recognizes user motions by using sensor data, is configured to be provided with: a cyclical loss detection means for detecting cyclical losses of sensor data when a user is moving; and a recognition processing means for setting data intervals to be used for recognizing motions in accordance with the cyclical losses of sensor data that were detected, and for recognizing user motions on the basis of sensor data for the data intervals that have been set. 1. A motion recognizing apparatus that recognizes a motion of a user using sensor data , comprising:a cyclicity loss detecting unit configured to detect loss of cyclicity of the sensor data when the user is making the motion; anda recognition processing unit configured to set a data section used for motion recognition according to the detected loss of the cyclicity of the sensor data, and to recognize the motion of the user based on the sensor data of the data section.2. The motion recognizing apparatus according to claim 1 , wherein the cyclicity of the sensor data is cyclicity of a peak which is a data point which takes at least a local maximum or a local minimum in the sensor data.3. The motion recognizing apparatus according to wherein the data section is set to have predetermined time duration per type of a recognition target operation.4. The motion recognition apparatus according to claim 1 , comprising the recognition processing unit intended for each type of a recognition target operation.510-. (canceled)11. The motion recognizing apparatus according to claim 1 , wherein the sensor data is output data of an acceleration sensor that operates accompanying the motion of the user.12. The motion recognizing apparatus according to claim 1 , wherein the cyclicity loss detecting unit comprises:a ...

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13-01-2022 дата публикации

TWO OUTPUT PIN PROTOCOL FOR SPEED, DIRECTION, AND DIAGNOSIS

Номер: US20220014131A1
Принадлежит: INFINEON TECHNOLOGIES AG

A sensor device includes a first sensor element that generates a first sensor signal based on a varying magnetic field; a second sensor element that generates a second sensor signal based on the varying magnetic field; a signal processing circuit configured to generate a first pulsed signal based on the first sensor signal and generate a second pulsed signal based on the second sensor signal; a fault detector that detects a fault and generates an error signal indicating the fault; and an output generator that receives the error signal based on a first condition that the fault detector detects the fault, and simultaneously outputs a first output signal and a second output signal. In response to the first condition being satisfied, the output generator maintains the first output signal in a steady state and outputs the second pulsed signal as the second output signal. 1. A sensor device , comprising:at least one first sensor element having a first sensing direction and configured to generate at least one first sensor signal based on sensing a first magnetic field component of a varying magnetic field aligned in the first sensing direction;at least one second sensor element having a second sensing direction and configured to generate at least one second sensor signal based on sensing a second magnetic field component of the varying magnetic field aligned in the second sensing direction;a signal processing circuit configured to generate a first pulsed signal based on the at least one first sensor signal and generate a second pulsed signal based on the at least one second sensor signal;a fault detector configured to detect at least one fault and generate an error signal indicating the at least one fault in response to detecting the at least one fault; andan output generator configured to receive the first pulsed signal and the second pulsed signal, receive the error signal based on a first condition that the fault detector detects the at least one fault, and ...

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02-01-2020 дата публикации

SURROUNDING INTELLIGENT MOTION SENSOR WITH ADAPTIVE RECOGNITION

Номер: US20200005628A1
Принадлежит:

A wearable proximity warning device is provided that uses a novel method of processing images from a high frame rate digital camera to detect human threats from behind and determine if there are any approaching threats by using novel pixel counting and threat detection analysis algorithms. The device is worn on the back of the body either by use of a belt clip or with chest straps. The user may use select from a variety of warning options from the device including audible warning tones, device vibration or smartphone SMS/MMS text messaging. Stored video is saved by the device and may be periodically uploaded to secure cloud storage. The device contains a rechargeable battery that may be recharged using a USB port. The device uses adaptive human recognition that switches between facial recognition detection mode and body recognition detection mode depending on distance of the threat from the user. 1. A wearable device for detection and warning of approaching threats , comprising:a motherboard that uses a threat detection algorithm to detect an approaching human threat;an alert device electronically connected to and controlled by the motherboard;a digital camera electronically connected to the motherboard; the digital camera configured and arranged to detect a distance of the threat from the wearable device;the threat detection algorithm being configured and arranged to detect an entire body of the approaching human threat and a face of the approaching human threat; andthe threat detection algorithm being configured and arranged to detect a face of an approaching human threat using facial recognition when a distance of the threat is less than a predetermined threshold amount and being configured and arranged to detect a full body of an approaching human threat using body recognition when a distance of the threat is more the predetermined threshold amount.2. The wearable device of claim 1 , wherein the distance of the threat to the device is calculated by detecting ...

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08-01-2015 дата публикации

Motion detection device and motion analysis system

Номер: US20150007658A1
Принадлежит: Seiko Epson Corp

A motion detection device specifies a movement of at least one of a subject and a sporting gear as an indicator of a trigger signal, using an output from an inertial sensor. The movement of at least one of the subject and the sporting gear is specified in the output from the inertial sensor. The trigger signal is generated according to the specified movement. The subject causes the trigger signal to be generated at proper timing through his or her own movement.

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20-01-2022 дата публикации

DOOR HANDLE SANITIZING DEVICE

Номер: US20220016280A1
Автор: Schumacher Dean
Принадлежит:

A door handle sanitizing apparatus may include a posterior wall configured to be disposed anterior of and substantially parallel to a door surface and having an inner surface, an arch portion extending in an anterior direction from the posterior wall, the arch portion having an anterior end and an inner surface, a first sanitizing agent source disposed on the posterior wall, and a second sanitizing agent source disposed on the inner surface of the arch portion. 1. A door handle sanitizing apparatus comprising:a posterior wall configured to be disposed anterior of and substantially parallel to a door surface and having an inner surface;an arch portion extending in an anterior direction from the posterior wall, the arch portion having an anterior end and an inner surface;a first sanitizing agent source disposed on the posterior wall inner surface; anda second sanitizing agent source disposed on the inner surface of the arch portion.2. The door handle sanitizing apparatus of claim 1 , wherein the first sanitizing agent source or the second sanitizing agent source is a germicidal ultraviolet light source.3. The door handle sanitizing apparatus of claim 1 , wherein the first sanitizing agent source or the second sanitizing agent source is an LED.4. The door handle sanitizing apparatus of claim 1 , wherein the first sanitizing agent source is angled at between 30 degrees and 60 degrees with respect to the posterior wall.5. The door handle sanitizing apparatus of claim 1 , wherein the second sanitizing agent source is angled to project the sanitizing agent towards the posterior wall.6. The door handle sanitizing apparatus of claim 1 , further comprising a motion sensor disposed under the arch portion claim 1 , wherein the apparatus is configured to deactivate the first and second sanitizing agent sources responsive to the motion sensor detecting motion.7. The door handle sanitizing apparatus of claim 6 , further comprising an electronic controller in electronic ...

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08-01-2015 дата публикации

External gnss receiver module with motion sensor suite for contextual inference of user activity

Номер: US20150009067A1
Принадлежит: TRIMBLE NAVIGATION LTD

A method for contextual inference of user activity is disclosed. In one embodiment, an indication of the motion of a pole mounted sensing device comprising at least one motion sensor and a Global Navigation Satellite System (GNSS) receiver configured to at least generate raw GNSS observables is received from the at least one motion sensor. The indication of the motion of the pole mounted sensing device is correlated with an operation defined in a gesture library regarding GNSS data collect by the GNSS receiver at a time when the indication of the motion is detected. The indication and the GNSS data are stored.

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14-01-2021 дата публикации

Endoscope device, endoscope operation method, and program

Номер: US20210007581A1
Автор: Toshihiro USUDA
Принадлежит: Fujifilm Corp

There is provided an endoscope device, an endoscope operation method, and a program which can allow the operator to simply perform operations using mechanisms and buttons of an operation unit already provided, without confusing the assigned operations. An endoscope device (10) includes a motion pattern identification unit (103) that identifies a single or plurality of motion patterns indicating a specific movement of a scope head of a scope unit; an operation storage unit (101) that stores a single or plurality of pieces of operation information for instructing an operation of the endoscope device, and the single or plurality of motion patterns of the scope head in association with each other; an operation information acquisition unit (105) that acquires the operation information corresponding to the motion pattern from the operation storage unit on the basis of the motion pattern identified by the motion pattern identification unit; and an operation execution unit (107) that executes an operation corresponding to the operation information acquired by the operation information acquisition unit.

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14-01-2021 дата публикации

MOTION DETECTION AND CORRECTION IN MRI AND OTHER IMAGING APPLICATIONS USING MEMS SENSORS

Номер: US20210007696A1
Принадлежит:

A motion sensor for a patient in an imaging application. A MEMS motion sensor is arranged for mounting or attachment to the patient's head, the motion sensor configured to detect the patient's motion and provide sensor signals to a utilization device such as a motion compensation processor to compensate patient images for the detected motion or a controller to send a message to the patient when motion is detected. 1. A motion sensor for a patient in an imaging application utilizing a patient imaging system , comprising:a MEMS motion sensor system arranged for mounting or attachment to the patient's head;a device for mounting or attaching or securing the MEMS sensor to the patient's head during an imaging procedure;wherein the MEMS motion sensor system is configured to detect motion of the patient's motion during the imaging procedure and to provide sensor signals to compensate patient images for the detected motion.2. The motion sensor of claim 1 , wherein the imaging application is one of MRI claim 1 , fMRI claim 1 , CT claim 1 , PET.3. The motion sensor of claim 1 , wherein the attachment device comprises a head band structure configured to be worn by the patient claim 1 , the MEMS sensor attached to the headband structure.4. The motion sensor of claim 1 , wherein the MEMS sensor system includes a plurality of MEMS sensors.5. The motion sensor of claim 1 , wherein the MEMS sensor system is configured to detect motion in each of the X claim 1 , Y and Z axis.6. The motion sensor of claim 1 , wherein the attachment device comprises a bite bar having one end configured for being held in the patient's mouth claim 1 , the MEMS sensor system attached to the bite bar.7. The motion sensor of claim 1 , wherein the MEMS sensor system is integrated with a video goggle configured to be worn by the patient in the imaging application claim 1 , the attachment device comprising the video goggle.8. The motion sensor of claim 1 , further comprising a communication link configured to ...

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09-01-2020 дата публикации

FLY ROD INCLUDING CAST SENSORS

Номер: US20200008410A1
Принадлежит:

A fly rod including sensors and methods of using the same are provided, particularly where the sensors assist the user in casting or in logging data associated with fishing activities. In a described embodiment, the fly rod comprises: a handle portion that includes a butt end; a center shaft portion that extends from the handle portion; a tip portion that extends from the shaft portion and includes a tip; a first movement sensor disposed in the tip portion; and a second movement sensor spaced apart from the first sensor. 1. A fly rod comprising:a handle portion that includes a butt end;a center shaft portion that extends from the handle portion;a tip portion that extends from the shaft portion and includes a tip;a first movement sensor disposed in the tip portion; anda second movement sensor spaced apart from the first sensor.2. The fly rod of claim 1 , further comprising:a small chipset; anda main chipset disposed in the handle portion;wherein the second sensor is disposed at the main chipset;wherein the first sensor is disposed at the small chipset; andwherein the main chipset is larger than the small chipset.3. The fly rod of claim 2 , wherein the first movement sensor and second movement sensor both have an electrical connection to the main chipset.4. The fly rod of claim 3 , wherein the electrical connection comprises at least one wire that runs from the tip portion to the handle portion.5. The fly rod of claim 4 , further including a power source claim 4 , wherein the power source is electrically connected to the first movement sensor claim 4 , the second movement sensor claim 4 , and the main chipset claim 4 , and wherein the power source is disposed in the handle portion.6. The fly rod of claim 1 , wherein the first movement sensor includes a 3 axis accelerometer and the second movement sensor includes a 9 axis accelerometer.7. A method for sensing the movement of a fly rod claim 1 , the method comprising:providing a fly rod having a handle portion that ...

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27-01-2022 дата публикации

MATCHING SYSTEM, MATCHING METHOD, AND MATCHING PROGRAM

Номер: US20220023717A1
Принадлежит: TOYOTA JIDOSHA KABUSHIKI KAISHA

The present disclosure provides a matching system capable of performing appropriate matching among persons based on the movements of these persons. A first exemplary aspect is a matching system, including: an acquisition unit configured to acquire information about movement of a person in a time series; a calculation unit configured to calculate a similarity score numerically indicating a similarity between the acquired information about the movement of the person and information about movement of a person with whom a comparison is to be made by comparing the acquired information about the movement of the person with the information about movement of the person with whom the comparison is to be made; and a generation unit configured to generate matching information based on the similarity score. 1. A matching system comprising:an acquisition unit configured to acquire information about movement of a person in a time series;a calculation unit configured to calculate a similarity score numerically indicating a similarity between the acquired information about the movement of the person and information about movement of a person with whom a comparison is to be made by comparing the acquired information about the movement of the person with the information about movement of the person with whom the comparison is to be made; anda generation unit configured to generate matching information based on the similarity score.2. The matching system according to claim 1 , wherein the calculation unit calculates the similarity score based on a difference between a first state score indicating a total sum of distances obtained by adding claim 1 , at a first cycle claim 1 , a distance between two predetermined points on a body of the person claim 1 , the distance being calculated based on the acquired information about the movement of the person claim 1 , and a second state score indicating a total sum of distances obtained by adding claim 1 , at the first cycle claim 1 , a distance ...

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27-01-2022 дата публикации

WEARABLE DEVICE

Номер: US20220026946A1
Автор: WEN Kuei Ann
Принадлежит:

The present invention provides a wearable device comprising a housing and at least one indicator signal provided on the housing. The housing comprises a contact surface and a front surface opposite to the contact surface; the two are connected by a first side. The indicator surface of the signal is provided on the first side and extends to the contact surface and/or the front surface. The indicator signal surface may also be provided on a junction of the first side surface and a second side with the contact and the front surfaces. 1. A wearable device , comprising a housing , a sensing device and a processing device , wherein at least a part of the sensing device and/or the processing device is enclosed in the housing;wherein the sensing device detects its own movement and outputs a sensing signal, and the processing device receives the sensing signal and converts the sensing signal into sensing values;wherein the housing provides a contact surface and a front surface opposite to the contact surface and connected to the contact surface by a first side;wherein the housing is provided at least one signal indicator, with a display surface disposed on the first side and extending to a level at least substantially flush with the contact surface and the front surface; andwherein the wearable device further comprises a power device for supplying power to the sensing device, the processing device and the signal indicator.2. The wearable device of claim 1 , wherein the display surface extends beyond the contact surface and/or the front surface claim 1 , and protrudes from the contact surface and/or the front surface.3. The wearable device of claim 1 , wherein the signal indicator comprises an indicator source and a display panel to receive and propagate indicators generated by the indicator source; wherein a display surface of the display panel is disposed on the first side and extending to a level at least substantially flush with the contact surface and the front surface.4 ...

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11-01-2018 дата публикации

DOWNHOLE FLUID FLOW DIRECTION SENSOR

Номер: US20180010444A1
Принадлежит:

A system for use in a wellbore can include a component that is positioned in a flow path through a tubular for fluid. The component can be movable by the fluid between a first position and a second position for changing a magnitude of a magnetic field that is detectable by a sensor or inducing a current in the sensor. The system can also include the sensor positioned external to the tubular for determining a direction of a flow of the fluid through the tubular based on the magnitude of the magnetic field or a polarity of the current. 1. A system for use in a wellbore , the system comprising:a component that is positioned in a flow path through a tubular for fluid, the component being movable by the fluid between a first position and a second position for changing a magnitude of a magnetic field that is detectable by a sensor or for inducing a current in the sensor; andthe sensor positioned external to the tubular for determining a direction of a flow of the fluid through the tubular based on the magnitude of the magnetic field or a polarity of the current.2. The system of claim 1 , wherein the sensor comprises a Hall effect sensor and the component is movable between the first position and the second position for changing the magnitude of the magnetic field that is detectable by the sensor.3. The system of claim 1 , wherein the sensor comprises a coil positioned coaxially around an outer housing of the tubular and the component is movable between the first position and the second position for inducing the current in the coil.4. The system of claim 1 , wherein the component is coupled to a pivotable device for pivoting between the first position and the second position.5. The system of claim 4 , wherein the pivotable device is coupled to an inner tubular positioned within the tubular.6. The system of claim 5 , wherein the inner tubular comprises a concave cutaway for allowing the component to pivot between the first position and the second position.7. The system of ...

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08-01-2015 дата публикации

Aircraft comprising a measuring probe and method for determining flight parameters of such an aircraft

Номер: US20150012155A1
Автор: Jacques Mandle
Принадлежит: Thales SA

The invention relates to an aircraft including a fuselage and a first measuring probe including means for measuring the local incidence, means for measuring the static pressure, and optionally means for measuring the total pressure. The fuselage includes at least one first zone where the pressure coefficient of the aircraft depends on the unique local incidence irrespective of the sideslip and incidence values of the aircraft, and the first measuring probe is arranged in said first zone

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14-01-2016 дата публикации

COMPUTER-IMPLEMENTED METHODS AND COMPUTER SYSTEMS/MACHINES FOR IDENTIFYING DEPENDENT AND VEHICLE INDEPENDENT STATES

Номер: US20160010984A1
Принадлежит:

This application relies on terminology found in the Vehicle State Detection (STATE) patent and describes methods of detecting acceleration, deceleration, accidents and cornering operational states, which we will also call vehicle dependent states, and vehicle independent states, triggered when the portable device is moved independently of movement of the vehicle. These methods enhance classification of driving behavior. 1. The method of detecting the condition of a vehicle turning , comprising estimating an angle of how closely a rotation vector is aligned with a gravity vector.2. The method of further comprises estimating the probability of the vehicle turning as a function of the angle between the rotation vector and the gravity vector.3. The method of detecting a direction of a speed change vector claim 1 , comprising:a. detecting a condition of a vehicle turning;b. detecting a movement vector during the turn;c. estimating the angle between movement vector and speed change vector;d. determining that the speed change vector is acceleration vector if the estimated angle below certain threshold and determining that the speed change vector is deceleration vector if the estimated angle is above certain threshold.4. The method of further comprises estimating the probability of the speed change vector to be an acceleration or deceleration vector—as a function of the angle between the speed change vector and the movement vector.5. The method of performing one or more actions on a portable device carried by an individual claim 3 , comprising:a. monitoring at least one operation indicator transparently to the individual, wherein the at least one operation indicator is created by an on-board component of the device when the portable device is located inside a vehicle;b. detecting when the at least one operation indicator meets one or more predetermined criteria; i. one or more vehicle independent states;', 'ii. one or more vehicle dependent states, 'c. determining entirely ...

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11-01-2018 дата публикации

Flow Detection Device

Номер: US20180010978A1
Автор: BAILEY Samuel
Принадлежит: HomeServe plc

A flow detector for detecting flow rates of fluid in pipes by measuring the temperature of the pipe and the ambient temperature and determining from the signals whether there is a flow in the pipe,by the shape of the temperature signals without providing any heat input to the pipe or fluid. 148-. (canceled)49. A fluid flow detector for detecting a water leak in a pipe system comprising at least one of a domestic water supply pipe system and an office water supply pipe system , the detector fluid flow comprising:a first temperature sensor to detect ambient temperature;a second temperature sensor to detect a pipe temperature, the second temperature sensor configured to be coupled adjacent or in thermal contact with a pipe of the pipe system; and a plurality of temperature differences between the first and second temperature sensors over a predetermined period of time, and', 'whether fluid is flowing in the pipe system by comparing the plurality of temperature differences to a predetermined set of at least one parameter to indicate a convergent approach of the ambient temperature and pipe temperature., 'a processing means for determining'}50. A fluid flow detector of claim 49 , wherein the processing means performs a calibration to account for an expected rate of convergence of the ambient temperature and the pipe temperature.51. A fluid flow detector of claim 49 , wherein the comparison determines if the temperature differences are approximating an exponential approach.52. A fluid flow detector of claim 49 , wherein the processing means determines that no fluid is flowing if said comparing indicates convergence of the ambient temperature and the pipe temperature.53. A fluid flow detector of claim 49 , wherein the predetermined set comprises a plurality of said parameters and the processing means is configured to claim 49 , if the temperature differences remain within or equal to the predetermined set of parameters for a predetermined period claim 49 , determine that ...

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14-01-2021 дата публикации

METHOD AND SYSTEM FOR IMPROVED MOTION ROBUSTNESS DURING LOCATION MEASUREMENT

Номер: US20210010800A1
Принадлежит:

A method () for determining a position and an orientation of a portion of a handheld personal care device relative to a user's body (), comprising: providing () a handheld personal care device comprising at least one energy source () and at least one detector (), both the at least one energy source and the at least one detector located within the handheld personal care device, the at least one energy source arranged at a first position and having a first orientation within the handheld personal care device; emitting () energy in a three dimensional space surrounding the handheld personal care device; detecting () a portion of the energy emitted; generating () sensor data; extracting () one or more features from the generated sensor data; and estimating () a position and an orientation of a portion of the handheld personal care device relative to the user's body based on the extracted one or more features.

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09-01-2020 дата публикации

Motion Sensor with Drift Correction

Номер: US20200011669A1
Автор: Seth Rohit
Принадлежит:

Systems and/or devices for implementing a tracking device for tracking a position/location and orientation of an object are provided herein. The device comprises one or more sides that define a predetermined shape, and a plurality of inertial measurement units (IMU) mounted to the one or more sides of the predetermined shape. Each IMU is configured to detect movement of the object and generate inertial output data representing a position and/or orientation of the object. Each IMU includes a first sub-sensor and a second sub-sensor. Each IMU is positioned at a predetermined distance and orientation relative to a center point of the tracking device. The device also comprises a controller communicatively coupled to the plurality of IMUs, the controller configured to receive output data from each of the plurality of IMUs, and determine position/location and orientation of the object based on the received output data from the plurality of IMUs and known data points for the predetermined shape to eliminate drift from sensor data. 1. A tracking device for tracking a location and orientation of an object , the tracking device comprising:one or more sides that define a predetermined shape;a plurality of inertial measurement units (IMU) mounted to the one or more sides of the predetermined shape, wherein each IMU is configured to detect movement of the object and generate inertial output data representing the location and/or orientation of the object, wherein each IMU includes a first sub-sensor and a second sub-sensor, wherein each IMU is positioned at a predetermined distance and orientation relative to a center of mass of the tracking device; receiving first sub-sensor inertial output data and second sub-sensor inertial output data from each of the plurality of IMUs at a high sampling rate;', generating calibrated inertial output data based on the first sub-sensor inertial output data and the second sub-sensor inertial output data;', 'cross-correlating the first sub-sensor ...

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09-01-2020 дата публикации

SYSTEM AND METHOD OF MONITORING A DIAGNOSTIC SYSTEM OF A PROCESS CONTROL SYSTEM

Номер: US20200011755A1
Принадлежит:

Monitoring systems and methods for a relief valve system. In one example, a monitoring system for a relief valve includes at least one tilt sensor coupled to one or more of a cover or a latch of the relief valve. The at least one tilt sensor is associated with an interface. Upon detection by the at least one tilt sensor that one of the cover is open or the latch is unlocked, a signal is transmitted by the interface indicating one or more of the cover is open or the latch is unlocked. 1. A monitoring system for a relief valve , the relief valve having a body and a cover coupled to the body by a latch , the monitoring system comprising:at least one tilt sensor adapted to be coupled to one or more of the cover or the latch of the relief valve;an interface associated with the at least one tilt sensor;where, upon detection by the at least one tilt sensor that an angle of one or more of the cover or the latch is greater than zero, the interface transmits a signal indicating the cover is open or the latch is unlocked.2. The monitoring system of claim 1 , further comprising a base station including a base processor and a base memory claim 1 , the base station communicatively coupled to the at least one tilt sensor via a wireless network and adapted to receive the signal transmitted by the interface indicating one or more of the latch is unlocked or the cover is open.3. The monitoring system of claim 1 , wherein the at least one tilt sensor includes a first tilt sensor adapted to be coupled to the latch and a second tilt sensor adapted to be coupled to the cover claim 1 , the first tilt sensor detecting an angle of the latch is greater than zero and the latch is unlocked claim 1 , and the second tilt sensor detecting an angle of the cover is greater than zero and the cover is open.4. A monitoring system for a lockdown hatch claim 1 , the lockdown hatch having a body and a cover coupled to the body by an arm claim 1 , the monitoring system comprising:at least one tilt sensor ...

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14-01-2021 дата публикации

Input Devices that Use Self-Mixing Interferometry to Determine Movement Within an Enclosure

Номер: US20210011559A1
Принадлежит:

An input device includes an enclosure defining a three-dimensional input space and one or more self-mixing interferometry sensors coupled to the enclosure and configured to produce a self-mixing interferometry signal resulting from reflection of backscatter of emitted light by a body part in the three-dimensional input space. In various examples, movement of the body part may be determined using the self-mixing interferometry signal, which may in turn be used to determine an input. In some examples, a body part displacement or a body part speed and an absolute distance to the body part may be determined using the self-mixing interferometry signal and used to determine an input. In a number of examples, multiple self-mixing interferometry sensors may be used and the movement may be determined by analyzing differences between the respective produced self-mixing interferometry signals. 1. An input device , comprising:an enclosure defining a three-dimensional input space;a self-mixing interferometry sensor coupled to the enclosure and configured to emit a beam of coherent light from an optical resonant cavity to illuminate a body part in the three-dimensional input space, receive a reflection or backscatter of the beam into the optical resonant cavity, and produce a self-mixing interferometry signal resulting from self-mixing of the coherent light within the optical resonant cavity; anda processor configured to:determine a body part displacement or a body part speed and an absolute distance to the body part using the self-mixing interferometry signal; anddetermine an input using the body part displacement or the body part speed and the absolute distance.2. The input device of claim 1 , wherein the input corresponds to a touch of the body part to an object.3. The input device of claim 2 , wherein the processor estimates an amount of force exerted on the object by the body part.4. The input device of claim 1 , wherein the self-mixing interferometry sensor is configured to ...

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03-02-2022 дата публикации

TEMPERATURE REGULATING SYSTEM

Номер: US20220031499A1
Принадлежит: CLIM8

A temperature regulation system for regulating the temperature of a portion of a body, in particular of a user's body. 1. A temperature regulation system for regulating the temperature of a body , the temperature regulation system comprising:at least one humidity sensor adapted to generate a humidity measurement that relates to humidity in the vicinity of the given portion of a body;at least one temperature adjustment element adapted to provide heat to a given portion of the body;a memory unit adapted to store at least one threshold humidity related value, and one or more reference user information related values; determine at least one instant user information related value;', 'perform a comparison between at least one instant user information related value and at least one triggering user information related value, said at least one triggering user information related valued being based on one of said reference user information related values,', 'activate the temperature adjustment element to provide heat to a given portion of the body depending on the result of said comparison,, 'a controlling unit in communication with the humidity sensor, with the memory unit and with the temperature adjustment element, and being configured towherein the controlling unit is further configured to receive at least one instant humidity related value measured in the vicinity of the given portion of the body from the humidity sensor, perform a comparison between said at least one instant humidity related value and at least one triggering humidity related value, said at least one triggering humidity related value being based on said at least one threshold humidity related value, and to set the at least one triggering user information related value to a value lower than the one of said reference user information related values when the at least one instant humidity related value is greater or equal to said at least one threshold humidity related value.2. The temperature regulation ...

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03-02-2022 дата публикации

Method for manufacturing a wind turbine tower structure based on wind direction

Номер: US20220032496A1
Принадлежит: General Electric Co

A method for manufacturing a tower structure of a wind turbine at a wind turbine site. The method includes determining an optimized shape of the tower structure based on one or more site parameters. Further, the optimized shape of the tower structure is non-symmetrical. In a further step, the method include printing, via an additive printing device, the optimized shape of the tower structure of the wind turbine at the wind turbine site, at least in part, of a cementitious material. In addition, the method includes allowing the cementitious material to cure so as to form the tower structure of the wind turbine.

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03-02-2022 дата публикации

Systems and methods for vehicle wireless charging

Номер: US20220032802A1
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

Method and apparatus are disclosed for preventing damage to an object within a charging field of a wireless vehicle battery charger. An example vehicle includes a wireless vehicle battery charger having a charging field, a plurality of Bluetooth antennas, and a processor. The processor is configured to identify a location of an object using one or more of the plurality of Bluetooth antennas, and, responsive to determining that the object is within the charging field, disable the wireless vehicle battery charger.

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19-01-2017 дата публикации

ROAD SURFACE SUBMERGENCE ESTIMATION DEVICE

Номер: US20170015329A1
Принадлежит: TOYOTA JIDOSHA KABUSHIKI KAISHA

A road surface submergence estimation device including a motion sensor that acquires an actual acceleration of a vehicle; a torque acquisition sensor that acquires an actual torque transmitted from a driving source to wheels of the vehicle, the driving source being mounted in the vehicle; and an estimation processor that estimates that a road surface on which the vehicle is traveling is submerged when it is determined that a submergence determination condition is satisfied. The road surface submergence estimation device may also include a wireless communication device configured to either send submergence information to a central server, or receive additional submergence information from a central server. 1. A road surface submergence estimation device comprising:a motion sensor configured to acquire an actual acceleration of a vehicle;a torque acquisition sensor configured to acquire an actual torque transmitted from a driving source to wheels of the vehicle, the driving source being mounted in the vehicle; andan estimation processor configured to determine whether a predetermined submergence determination condition is satisfied using the actual acceleration and the actual torque, and when it is determined that the submergence determination condition is satisfied, estimates that a road surface on which the vehicle is traveling is submerged,wherein the estimation processor is also configured to determine that the submergence determination condition is satisfied at least when a first condition that a first parameter is larger than a first threshold is satisfied, the first parameter being a parameter that becomes larger as a difference between a first variable and a second variable becomes larger, the first variable being a variable that becomes larger as the actual acceleration becomes larger, and the second variable being a variable that becomes larger as an actual torque becomes larger.2. The road surface submergence estimation device according to claim 1 , ...

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09-01-2020 дата публикации

CALIBRATION DEVICE AND METHOD OF OPERATING THE SAME

Номер: US20200014912A1
Принадлежит:

A calibration method is provided. The calibration method includes capturing an image of a target, acquiring image information of the target, acquiring motion information of a calibration target device by measuring an acceleration of the calibration target device and determining a rotation direction of the calibration target device, matching a first coordinate system corresponding to a camera configured to capture the image of the target and a second coordinate system corresponding to a measurer configured to acquire the motion information of the calibration target device to a third coordinate system, simultaneously performing, based on the third coordinate system, an image calibration operation with respect the image information and a motion calibration operation with respect the motion information, generating calibration motion information via the image calibration operation with respect to the image information, and generating calibration image information via the motion calibration operation with respect to the motion information. 1. A calibration device comprising: at least one camera configured to capture an image of a target and acquire image information of the target, and', 'at least one measurer configured to acquire motion information of the calibration target device based on an acceleration of the calibration target device and a rotation direction of the calibration target device; and, 'a first calibrator configured to rotate or move a calibration target device, the calibration target device comprising match a first coordinate system corresponding to the at least one camera and a second coordinate system corresponding to the at least one measurer to a third coordinate system,', 'simultaneously perform, based on the third coordinate system, an image calibration operation with respect to the image information and a motion calibration operation with respect to the motion information,', 'generate calibration motion information via the image calibration ...

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18-01-2018 дата публикации

Monitoring device and method of an oil flow mixed with air

Номер: US20180017211A1
Автор: Walter Divisi
Принадлежит: Dropsa Spa

A monitoring device of an oil flow mixed with air, including a tubular element coupled with at least one first and one second photoelectric sensor that emit a radiation along a first and a second optical line respectively, the tubular element being at least partially transparent to the radiation, the first and the second photoelectric sensor being mounted on the tubular element so that the first and the second optical line are mutually angled.

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03-02-2022 дата публикации

Method and apparatus for processing trajectory, roadside device and cloud control platform

Номер: US20220036096A1
Автор: Wei Ma

The present disclosure discloses a method and apparatus for processing a trajectory, a roadside device, and a cloud control platform, relates to the field of intelligent transportation, and in particular to the field of computer vision. An implementation scheme is: acquiring a to-be-processed trajectory, the to-be-processed trajectory comprising at least three sequential position points; determining an auxiliary line based on the position points and a preset number of interpolation points; determining positions of the interpolation points based on the preset number of interpolation points; and determining and outputting a target trajectory based on the auxiliary line and the positions of the interpolation points.

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