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Применить Всего найдено 15544. Отображено 100.
10-07-2004 дата публикации

УСТАНОВКА ДЛЯ ПОЛУЧЕНИЯ КВАРЦЕВЫХ ИЗДЕЛИЙ

Номер: RU0000039005U1

1. Установка для получения кварцевых изделий методом электродугового наплава, содержащая поворотное устройство с двумя или более плавильными емкостями, оснащенными механизмами вращения и наклона, защитную перегородку, узел загрузки и формования крупки, включающий взвешивающее устройство и блок управления толщиной формируемого слоя крупки, устройство наплавки заготовки изделия в виде электродов и механизма горизонтального и вертикального их перемещения, механизма выгрузки заготовки изделия, отличающаяся тем, что защитная перегородка установлена между плавильными емкостями зоны наплавления и зоны загрузки и выгрузки, блок управления толщиной слоя крупки выполнен в виде датчика, связанного с механизмом распределения крупки внутри формы, взаимодействующего с компьютером или механизмом ручного управления. 2. Установка по п.1, отличающаяся тем, что в устройстве наплавления установлен защитно-регулировочный экран. 3. Установка по п.1, отличающаяся тем, что на поворотном устройстве установлены плавильные емкости различных типоразмеров. 4. Установка по п.1, отличающаяся тем, что установка снабжена профилирующим ножом, выполненным с возможностью введения его внутрь плавильной емкости. 5. Установка по п.1, отличающаяся тем, что блок управления процессом формования связан с механизмом ручного управления. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 39 005 (13) U1 (51) МПК H01J 5/46 (2000.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2004103341/22 , 09.02.2004 (24) Дата начала отсчета срока действия патента: 09.02.2004 (46) Опубликовано: 10.07.2004 (73) Патентообладатель(и): Открытое акционерное общество "Подольский химико-металлургический завод" (RU) Ñòðàíèöà: 1 U 1 3 9 0 0 5 R U U 1 Формула полезной модели 1. Установка для получения кварцевых изделий методом электродугового наплава, содержащая поворотное устройство с двумя или более плавильными емкостями, оснащенными механизмами вращения и ...

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27-08-2006 дата публикации

ПИРОЭЛЕКТРИЧЕСКИЙ ЭЛЕМЕНТ

Номер: RU0000056068U1

1. Пироэлектрический элемент, содержащий слой пироэлектрического материала с нанесенными на него с обеих сторон электродами в виде слоев электропроводящего материала, отличающийся тем, что материал выполнен из оксидной керамики, содержащей свинец, кальций, кадмий, неодим титан и вольфрам в соотношениях, описываемых формулой PbCaCdNdTiWО, где δ=0,02-0,05; Х=0,20-0,24; Y=0,01-0,03; Z=0,04-0,05. 2. Элемент по п.1, отличающийся тем, что электроды выполнены из серебра. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 56 068 (13) U1 (51) МПК H01J 5/00 (2006.01) C04B 35/46 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2005139161/22 , 15.12.2005 (24) Дата начала отсчета срока действия патента: 15.12.2005 (45) Опубликовано: 27.08.2006 (73) Патентообладатель(и): Закрытое акционерное общество "АВиГраф" (ЗАО "АВиГраф") (RU) U 1 5 6 0 6 8 R U где δ=0,02-0,05; Х=0,20-0,24; Y=0,01-0,03; Z=0,04-0,05. 2. Элемент по п.1, отличающийся тем, что электроды выполнены из серебра. Ñòðàíèöà: 1 U 1 Формула полезной модели 1. Пироэлектрический элемент, содержащий слой пироэлектрического материала с нанесенными на него с обеих сторон электродами в виде слоев электропроводящего материала, отличающийся тем, что материал выполнен из оксидной керамики, содержащей свинец, кальций, кадмий, неодим титан и вольфрам в соотношениях, описываемых формулой Pb( 1 - δ ) ( 1 - X - Y - Z )CaXCdYNdZTi0 , 9 8W0 , 0 2О3, 5 6 0 6 8 (54) ПИРОЭЛЕКТРИЧЕСКИЙ ЭЛЕМЕНТ R U Адрес для переписки: 119992, Москва, Ленинские горы, 1, стр.75, оф.725, а/я 64, Пат. пов. Е.Л. Носыревой, рег.№ 886 (72) Автор(ы): Стефанович Сергей Юрьевич (RU), Сигаев Владимир Николаевич (RU), Сегалла Андрей Генрихович (RU), Орлова Елена Валерьевна (RU) RU 5 10 15 20 25 30 35 40 45 50 56 068 U1 Область техники. Полезная модель относится к относится к электронным пиро-пьезокерамическим элементам с высокой обнаружительной способностью по отношению к источникам ...

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27-04-2008 дата публикации

ЛАМПА НАКАЛИВАНИЯ

Номер: RU0000072784U1

1. Лампа накаливания, содержащая герметичную осесимметричную стеклянную колбу с двумя выведенными наружу электродами, внутри которой вдоль оси симметрии колбы расположена нить накаливания, концы которой закреплены на концах электродов, а по меньшей мере одна из поверхностей колбы имеет многослойное диэлектрическое покрытие, селективно отражающее свет преимущественно в инфракрасном диапазоне спектра, отличающаяся тем, что количество слоев N покрытия удовлетворяет условию 3≤N≤9, оптическая толщина каждого слоя nd удовлетворяет условию 0,35λ≤nd≤0,65λ, где λ=2 мкм и не совпадает с толщиной по крайней мере одного из соседних слоев, а геометрическая толщина покрытия D удовлетворяет условию 2,5 мкм Подробнее

24-11-2017 дата публикации

ВАКУУМНЫЙ КОРПУС ФОТОЭЛЕКТРОННОГО ПРИБОРА

Номер: RU0000175163U1

Техническое решение относится к фотоэлектронным приборам, а более конкретно к вакуумным корпусам фотоэлектронных приборов, и может быть использовано в конструкциях таких упомянутых фотоэлектронных приборов, как фотоэлектронные умножители, детекторы фотонов, телевизионные передающие трубки, электронно-оптические преобразователи. Вакуумный корпус фотоэлектронного прибора содержит боковую трубку с воображаемой центральной осью, с внутренней периферийной поверхностью, с внешней периферийной поверхностью и с концевой частью на ее конце в направлении воображаемой центральной оси. Также вакуумный корпус фотоэлектронного прибора содержит торцевую панель, прикрепленную к концевой части боковой трубки и представляющую собой электродный узел фотоэлектронного прибора. Также вакуумный корпус фотоэлектронного прибора содержит уплотнение, выполненное из индийсодержащего металлического материала между концевой частью боковой трубки и торцевой панелью. Концевая часть боковой трубки выполнена из стали нержавеющей хромистой ферритной и имеет торцевую поверхность, а торцевая панель прижата к торцевой поверхности концевой части боковой трубки для деформации индийсодержащего металлического материала и герметизации соединения между боковой трубкой и торцевой панелью. Технический результат заключается в повышении точности позиционирования электродов фотоэлектронного прибора относительно друг друга, уменьшении вероятности растрескивания электродного узла, выполненного с применением стекла, повышении степени герметичности вакуумного корпуса, уменьшении вероятности попадания частиц металлического материала во внутреннее пространство вакуумного корпуса и возникновения обусловленных этим коротких замыканий и автоэмиссионных процессов внутри вакуумного корпуса, а также в исключении дополнительных металлических покрытий вокруг границ торцевой поверхности концевой части боковой трубки. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 175 163 U1 (51) МПК H01J 5/22 (2006.01) H01J 43/02 (2006.01) ФЕДЕРАЛЬНАЯ ...

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07-08-2018 дата публикации

Вакуумный герметизатор многократного использования

Номер: RU0000182186U1

Полезная модель вакуумный герметизатор многократного использования относится к вакуумной технике и может быть использована для герметичного перекрытия вакуумных систем с последующим отсоединением от откачной системы и поддержанием стабильного давления остаточного газа. Герметизатор включает запорный орган, который выполнен в виде фланца-переходника, содержащего медное уплотнительное кольцо, обеспечивающее герметичное перекрытие откачного канала, и затворного штока, выполненного в виде фланца для соединения с вакуумной откачной системой, прижимного диска с выступом и полого цилиндра, включающий резиновые уплотнения и откачные отверстия, привод перемещения запорного органа. Привод перемещения запорного органа выполнен в виде направляющих шпилек, снабженных стягивающими гайками, соединяющими последовательно фланец-переходник, корпус с выступом и затворный шток, и ограничительными гайками, регулирующими расстояние между медным уплотнительным кольцом и затворным штоком. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 182 186 U1 (51) МПК H01J 5/02 (2006.01) F16K 3/04 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК F16K 3/04 (2006.01) (21)(22) Заявка: 2018113720, 16.04.2018 (24) Дата начала отсчета срока действия патента: Дата регистрации: 07.08.2018 (45) Опубликовано: 07.08.2018 Бюл. № 22 Адрес для переписки: 308015, Белгородская обл., г. Белгород, ул. Победы, 85, НИУ "БелГУ", Цуриковой Н.Д. (73) Патентообладатель(и): федеральное государственное автономное образовательное учреждение высшего образования "Белгородский государственный национальный исследовательский университет" (НИУ "БелГУ") (RU) (56) Список документов, цитированных в отчете о поиске: RU 2114481 C1, 27.06.1998. SU U 1 1 8 2 1 8 6 R U (54) Вакуумный герметизатор многократного использования (57) Реферат: Полезная модель вакуумный герметизатор для соединения с вакуумной откачной системой, многократного использования относится к прижимного диска с выступом и ...

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20-03-2019 дата публикации

Устройство для определения профиля распределения плотности ионов в пучках

Номер: RU0000187849U1

Полезная модель относится к вакуумной технике, технике ускорителей и может быть использовано в области исследования взаимодействия ионов с материалами (металлами и их сплавами), а так же в области исследования влияния ионно-индуцированных дефектов структуры на свойства материалов. Техническим результатом полезной модели является создание устройства, позволяющего определять распределение плотности ионов при облучении образцов материалов (металлов и их сплавов) потоком заряженных частиц от внешнего источника (ускорителя ионов). Для достижения этого результата предложено устройство для определения профиля распределения плотности ионов, содержащее опорный фланец в виде пластины, на котором перпендикулярно его плоскости закреплены несущие шпильки, на которых последовательно смонтированы направляющие электрода с электродом 4, с возможностью линейного движения электрода по направляющим, кольца изоляционные, супрессор, изолятор, держатель ламелей с ламелями, изолятор, прижимная пластина, защитный экран, при этом опорный фланец, электрод, супрессор, изоляторы, держатель ламелей, прижимная пластина, защитный экран содержат сквозное отверстие, и электрод, супрессор и ламели выполнены с возможностью подключения к электрическим контактам измерительной аппаратуры. 3 з.п. ф-лы, 2 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 187 849 U1 (51) МПК H05H 5/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК H05H 5/00 (2019.02) (21)(22) Заявка: 2018133165, 19.09.2018 (24) Дата начала отсчета срока действия патента: Дата регистрации: 20.03.2019 (45) Опубликовано: 20.03.2019 Бюл. № 8 1 8 7 8 4 9 R U (56) Список документов, цитированных в отчете о поиске: SU 1021264 A1, 30.09.1994. RU 2616930 C2, 18.04.2017. US 6402882 B1, 11.06.2002. WO 2009035841 A1, 19.03.2009. (54) УСТРОЙСТВО ДЛЯ ОПРЕДЕЛЕНИЯ ПРОФИЛЯ РАСПРЕДЕЛЕНИЯ ПЛОТНОСТИ ИОНОВ В ПУЧКАХ (57) Реферат: Полезная модель относится к вакуумной пластины, на котором перпендикулярно ...

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16-11-2021 дата публикации

Устройство подсоединения вакуумного газоразрядного прибора с медным штенгелем к вакуумному посту

Номер: RU0000207777U1

Полезная модель относится к области вакуумной техники, в частности к соединительным устройствам элементов вакуумных систем. Требуемый технический результат, заключающийся в повышении надежности применения, достигается в устройстве, включающем двусторонний фланец с уплотняющим зубом для вдавливания его в торец медного штенгеля, а также тарельчатую пружину для компенсации пластической деформации в медного штенгеле во время длительного обезгаживания газоразрядного прибора при повышенной температуре, при этом уплотняющий зуб для вдавливания его в торец медного штенгеля с внутренним углом в 54 градуса выполнен симметричной треугольной формы с радиусом закругления вершины, равным 0,1 мм. 2 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 207 777 U1 (51) МПК H05H 1/00 (2006.01) H01J 5/02 (2006.01) F16L 23/02 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК H01J 5/00 (2021.08) (21)(22) Заявка: 2021118304, 23.06.2021 (24) Дата начала отсчета срока действия патента: Дата регистрации: 16.11.2021 (45) Опубликовано: 16.11.2021 Бюл. № 32 (54) Устройство подсоединения вакуумного газоразрядного прибора с медным штенгелем к вакуумному посту (57) Реферат: Полезная модель относится к области пружину для компенсации пластической вакуумной техники, в частности к деформации в медного штенгеле во время соединительным устройствам элементов длительного обезгаживания газоразрядного вакуумных систем. Требуемый технический прибора при повышенной температуре, при этом результат, заключающийся в повышении уплотняющий зуб для вдавливания его в торец надежности применения, достигается в медного штенгеля с внутренним углом в 54 устройстве, включающем двусторонний фланец градуса выполнен симметричной треугольной с уплотняющим зубом для вдавливания его в формы с радиусом закругления вершины, равным торец медного штенгеля, а также тарельчатую 0,1 мм. 2 ил. R U 2 0 7 7 7 7 (56) Список документов, цитированных в отчете о поиске: RU 203211U1, 25.03 ...

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19-01-2012 дата публикации

Ultra-high-pressure mercury lamp

Номер: US20120013250A1
Принадлежит: OSRAM GMBH

An ultra-high-pressure mercury lamp according to various embodiments is an ultra-high-pressure mercury lamp in which a luminous tube employing a quartz bulb is attached to a neck part of a reflector by injecting first cement, and a metal base is attached to the neck-part end of the luminous tube by injecting second cement, wherein, if a is the outer diameter of the first cement and second cement after injection, b is the total axial depth of the first cement and second cement after injection, and c is the outer diameter of the quartz bulb in the vicinity of the luminous tube where the metal base is attached, the following relationships are satisfied: 1.3<a/c<2.4; 0.5<b/c<1.6.

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08-03-2012 дата публикации

Low thermal expansion filler, method for preparing the same and glass composition

Номер: US20120058877A1
Автор: Koji Sugiura
Принадлежит: TOAGOSEI CO LTD

An object of the present invention is to provide a low thermal expansion filler for low thermal expansion glasses which has a low coefficient of thermal expansion and exhibits superior flowability in a molten state, and a glass composition containing the same. It has been found that a low thermal expansion filler composed of a hexagonal zirconium phosphate powder where a specific particle size of 0.8 μm to 50 μm is 95% or more on a volume basis has excellent low thermal expansion property and excellent flowability, and a glass composition containing the filler has been accomplished.

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12-04-2012 дата публикации

Polymer layer on x-ray window

Номер: US20120087476A1
Принадлежит: Moxtek Inc

An x-ray window comprising a plurality of thin film layers stacked together, including a thin film layer and a polymer layer. The thin film layer can be diamond, graphene, diamond-like carbon, beryllium, and combinations thereof. The polymer layer can be a polyimide. A boron hydride layer may also be included.

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12-04-2012 дата публикации

Method and device of electromagnetics

Номер: US20120088377A1
Автор: Fredrik Ohlsson
Принадлежит: Huawei Technologies Co Ltd

A method and device for electromagnetic shielding is disclosed. An example arrangement includes a first and a second printed circuit board arranged adjacently and having an electromagnetic shield cover. An electrically conductive plug electrically provides an interconnection of the electromagnetic shielding.

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19-04-2012 дата публикации

Electronic appliance and camera device

Номер: US20120093497A1
Автор: Masami Takahashi
Принадлежит: Panasonic Corp

An electronic appliance is a camera device ( 1 ) including a resin case ( 2 ) containing electronic components for taking a camera images, and a metal shield member ( 3 ) to be attached to the inside of the case ( 2 ). The shield member ( 3 ) is provided with two staking holes ( 4 ), and three staking tabs ( 5 ) which protrude inward are provided around each of the staking holes ( 4 ). The case ( 2 ) is provided with a boss ( 6 ) in a position corresponding to each of the staking holes ( 4 ). In a state where the shield member ( 3 ) is attached to the case ( 2 ), each boss ( 6 ) is pushed into the staking hole ( 4 ) and fastened by the three deformed staking tabs ( 5 ), so that the shield member ( 3 ) is fixed to the case ( 2 ).

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14-06-2012 дата публикации

Manufacturing of a camera module

Номер: US20120146170A1
Принадлежит: STMicroelectronics Grenoble 2 SAS

A camera module includes a sensor die, a glass plate, peripheral spacer, an optical element, an outer surface having a shoulder extending in a direction substantially parallel to the sensor die, and a metal layer at least partially covering the outer surface. A method of manufacturing a camera module includes providing an assembly including a sensor dice wafer, a spacer wafer in front of the sensor dice wafer, and an optical element wafer in front of the spacer wafer. The method includes sawing a top cut, using a first saw blade of a first thickness, proceeding in a direction from the optical element wafer toward the sensor dice wafer, stopping before the sensor dice wafer is reached, and sawing a bottom cut, using a second saw blade of a second thickness, proceeding in a direction from the sensor dice wafer toward the optical element wafer.

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28-06-2012 дата публикации

Discharge lamp lighting device

Номер: US20120163002A1
Принадлежит: Koito Manufacturing Co Ltd

A discharge lamp lighting device includes a discharge lamp, a circuit module configured to supply a voltage to the discharge lamp so as to turn on the discharge lamp, a case member configured to accommodate the circuit module, and a connecting member, in which the discharge lamp is mounted, configured to connect the discharge lamp to the circuit module. The circuit module includes a substrate. The connecting member is integrated with the substrate of the circuit module.

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28-06-2012 дата публикации

Automotive headlamps

Номер: US20120163008A1
Принадлежит: Koito Manufacturing Co Ltd

An automotive headlamp is provided with: a light-emitting module; a control circuit unit configured to control the lighting of the light-emitting module; a support substrate configured to support both the light-emitting module and the control circuit unit; and a reflector configured to reflect, through an inner surface of the reflector, light emitted by the light-emitting module and collect the reflected light. The support substrate is arranged in a manner such that the control circuit unit is positioned in a region outside the reflector.

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12-07-2012 дата публикации

connecting component for lighting devices

Номер: US20120176807A1
Принадлежит: OSRAM GMBH

In various embodiments, a coupling component is configured to hold a lighting body inserted in a protection bulb via a mouth portion of the bulb, the coupling component having a groove for receiving the rim of the mouth portion of the bulb, the groove including sculptured formations to keep the mouth rim received in the groove spaced from the bottom of the groove to produce a discontinuous contact between the mouth rim and the groove.

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06-09-2012 дата публикации

Pcb with heat dissipation structure and processing methods thereof

Номер: US20120222888A1
Автор: Tian Zhang

The invention relates to a printed circuit board (PCB) with a heat dissipating structure. The PCB comprises a conducting layer and a PCB carrier layer, wherein the PCB carrier layer is a porous heat conducting layer; heat conducting liquid or a solid-liquid phase change heat conducting material is injected into holes of the porous heat conducting layer; the conducting layer is arranged on a first surface of the porous heat conducting layer; and a second surface of the porous heat conducting layer is a contact interface with external media. In the invention, the carrier layer of the PCB is a porous heat conducting layer which is made of a porous material with high thermal conductivity, heat conducting liquid such as heat conducting ink or the solid-liquid phase change heat conducting material permeates into the holes of the porous heat conducting layer; when the PCB is heated, the heat conducting ink is separated out of the porous material because the expansion coefficient of the porous material is inconsistent with that of the heat conducting ink, and the separated heat conducting ink fills air gaps between the contact interface and the external medium in the contact interface of the PCB via capillary phenomenon, so that heat resistance between a light-emitting diode (LED) and the contact interface is reduced greatly and the thermal conductivity of the PCB is enhanced; moreover, the PCB has low cost, simple structure and easy installation.

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20-09-2012 дата публикации

Discharge lamp bulb

Номер: US20120235563A1
Принадлежит: Koito Manufacturing Co Ltd

A discharge lamp bulb includes an arc tube having: a pair of electrodes that are opposed to each other inside a luminous tube; an outer tube having the luminous tube therein; a pair of lead wires connected to the electrodes; and a metal band mounted on an outer periphery of the outer tube, a support plug having: a plug body having a hollow, inner cylindrical section therein that opens at a front end; an arc-tube support portion mounted on a front-end edge of the inner cylindrical section; and a flange, and a lead support wire extending outside the outer tube in the longitudinal direction and connecting one of the lead wires with the support plug, wherein a front-end face of the inner cylindrical section is substantially flush with a front-end face of the flange or positioned on a back-end side with respect to the front-end face of the flange.

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04-10-2012 дата публикации

Discharge lamp, light source apparatus, exposure apparatus, and exposure apparatus manufacturing method

Номер: US20120248960A1
Принадлежит: Nikon Corp

A light source apparatus is equipped with a discharge lamp, which has a glass tube that forms a light emitting part and a base member that is coupled thereto, and a mounting apparatus that holds the discharge lamp via the base member. Therein, the base member has a flange part that contacts positioning plate of the mounting apparatus, and a fixed part that is urged with a pressing force that presses the flange part to the positioning plate. Furthermore, the mounting apparatus has a fixing arm that urges the fixed part by a compression coil spring.

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08-11-2012 дата публикации

Easily solderable shield case for electromagnetic wave shielding

Номер: US20120281386A1
Автор: Sun-Ki Kim
Принадлежит: Joinset Co Ltd

An easily soldered shield case for electromagnetic-wave shielding comprises: a metal main body in the shape of a box of which the bottom surface is open; a flange which is formed extending integrally outward or inward from the open edge of the main body; a plurality of through holes formed along the flange or a plurality of recesses formed along the rear surface of the flange; and a solder member which is stably placed on the through holes or the recesses and projects in the thickness direction of the flange, wherein the shield case is mounted on a printed circuit board and the solder member is electrically and mechanically joined to the printed circuit board by means of soldering.

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08-11-2012 дата публикации

Illumination lamp with dual beam functions

Номер: US20120281424A1
Принадлежит: Peterson Manufacturing Co

Implementations described and claimed herein provide a dual function illumination lamp in compliance with regulations for vehicular forward lighting. In one implementation, the illumination lamp includes a first reflector and a second reflector. The first reflector has a first reflecting region adapted to reflect light emitted from a first light emitting diode through an optics-free lens. The light reflected from the first reflecting region forms a first beam light pattern. The second reflector has a second reflecting region adapted to reflect light emitted from a second light emitting diode through the optics-free lens. The light reflected from the second reflecting region forms a second beam light pattern that is different from the first beam light pattern. In some implementations, the first beam light pattern is a low beam light pattern, and the second beam light pattern is a high beam light pattern.

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15-11-2012 дата публикации

High pressure sodium lamp

Номер: US20120286660A1
Автор: Fuqing Qian, SONG Qian
Принадлежит: Individual

A high pressure sodium lamp includes a lamp base, a light admissible housing and a sodium vapor illumination arrangement, which includes a light core extended from the lamp base into the light admissible housing; a supporting frame, and an arc tube. The supporting frame longitudinally extends in the light admissible housing, and has an upper end portion supported by an upper portion of the light admissible housing, and a lower end portion supported by the light core. The arc tube has a first and a second electrode formed at two ends thereof and electrically connected with the upper end portion of the supporting frame and the light core respectively, wherein sodium vapor in the arc tube is electrically excited to discharge light having an intensity equivalent to that generated by more than 1000 W power.

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03-01-2013 дата публикации

Shielding plate and shielding assembly with same

Номер: US20130000969A1
Автор: Guang-Fei Cao, Xin Fang

A shielding structure includes a frame and a removable plate. The frame includes a peripheral wall, and the removable plate located in the opening may be fixed to the connecting board, the removable plate defining an access hole. A scored line is defined between the removable plate and the connecting board. The shielding structure further defines an arcuate gap between the removable plate and the connecting board and communicating with the scored line, and a mating hole, the arcuate gap is for increasing the shearing stresses on shielding structure the scored line when the removable plate must be removed.

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31-01-2013 дата публикации

Ceramic metal halide lamp with feedthrough comprising an iridium wire

Номер: US20130026914A1
Принадлежит: KONINKLIJKE PHILIPS ELECTRONICS NV

The invention relates to a ceramic metal halide lamp having a ceramic discharge vessel, characterized in that the discharge vessel encloses a discharge space which comprises an electrode, which electrode is electrically connected to a conductor outside the discharge vessel by means of a feedthrough comprising an Ir wire, the feedthrough being gas-tight mounted in an extended plug, also referred to as vup, of the discharge vessel, the feedthrough comprising an electrode—feedthrough combination made up of at least three parts with a W or W—Re rod or a Mo or Mo alloy wire extending out of the vup for burner mounting, which W or W—Re or MO or MO alloy wire is welded to the Ir wire.

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07-03-2013 дата публикации

Electromagnetic wave shielding case

Номер: US20130058059A1

Disclosed is an electromagnetic wave shielding case. More particularly, an electromagnetic wave shielding case for a circuit board provided with a connector includes an upper case configured to cover an upper portion of the circuit board, and a lower case configured to form an internal space when the upper case is connected therewith, wherein the circuit board is attached to an upper surface of the lower case. A shield configured to shield electromagnetic waves, is attached to the circuit board within the internal space formed by the upper case and the lower case to shield components (both inside the case and out) from electromagnetic waves.

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21-03-2013 дата публикации

Automatic Facility and Automatic Method for Decorating Items made of Rough or Refined Glass or of Plastic with Raised Patterns

Номер: US20130068385A1
Принадлежит: POCHET DU COURVAL

The present invention provides an automatic facility for decorating items made of rough or refined glass or of plastic with raised patterns including a carrier for continuously moving the items between a station for loading the items onto the carrier, a station for screen-printing a decoration onto each item with UV ink, a station for ultraviolet pre-polymerization of the ink of the decoration, the ink remaining slightly tacky on the surface, a station applying a paper film using heat by adhering the paper film onto the ink of the decoration and a station for unloading the items towards a tunnel for the final ultraviolet polymerization of the decoration. A method is also provided. 17-. (canceled)8. An automatic installation for decorating rough or refined glass or plastic material items with raised patterns , including a carrier for continuously displacing the items between different stations comprising:a loading station for loading the items on the carrier;a screen printing station for screen-printing a decoration on each item by means of a UV ink;a station for ultraviolet pre-polymerization of the ink of the decoration, the ink remaining slightly tacky at the surface;a station for hot laying a paper film by adherization on the ink of the decoration of each item, anda station for unloading each item to a polymerization tunnel for final ultraviolet polymerization of said decoration.9. The installation according to claim 8 , wherein the displacement carrier is a rotationally displaceable table or a conveyor belt.10. The installation according to claim 8 , wherein the loading station includes a dust removal device or a decontamination device or a surface treatment device.11. The installation according to claim 8 , wherein the pre-polymerization station includes at least one ultraviolet lamp or ultraviolet light-emitting diodes.12. The installation according to claim 11 , wherein the exposure time of each item in the pre-polymerization station is about one second and ...

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21-03-2013 дата публикации

MULTICOLORED LINEAR LIGHT SOURCE

Номер: US20130069519A1
Принадлежит: I2IC CORPORATION

A multicolored linear light source is disclosed. In an embodiment, the multicolored linear light source comprises a linear light source emanating light of a first spectrum, and regions of photoluminescent material. The light of the first spectrum interacts with regions of photoluminescent material to give light of a different spectrum. The composition of different regions of photoluminescent material is different, providing light of different spectra in different regions. Coupled to each region of photoluminescent material is a columnar light guide such that light produced by the regions traverses respective columnar light guides and gets extracted. 1. An apparatus comprising:a light source emanating light of a first spectrum,a plurality of regions of photoluminescent material disposed on the surface of the light source, anda plurality of light guides situated perpendicular to the light source, wherein least a first region of photoluminescent material and a second region of photoluminescent material emanate light of different spectra.2. The apparatus of claim 1 , wherein the light source is a gas discharge tube.3. The apparatus of claim 1 , wherein the light source comprises a light guide claim 1 , diffuser particles and a second light source.4. The apparatus of claim 1 , further comprising a mirror partially covering the surface of the light source claim 1 , whereinthe plurality of regions of photoluminescent material is disposed in an area wherethe mirror is not disposed on the surface of the light source.5. The apparatus of claim 1 , wherein each light guide of the plurality of light guides is situated closed to a particular region of the plurality of regions of photoluminescent material.6. The apparatus of claim 1 , wherein each light guide of the plurality of light guides further comprises means of extracting light.7. The apparatus of claim 6 , wherein the means of extracting light comprises particles that scatter light.8. The apparatus of claim 1 , wherein the ...

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11-04-2013 дата публикации

LAMP

Номер: US20130088138A1
Принадлежит: IWASAKI ELECTRIC CO., LTD.

The present invention relates to a lamp having a spacer which is made of a thin metal plate being put on a closed end of an inner tube and held between the inner tube and the outer tube for keeping a predetermined constant distance therebetween for coaxially arranging the inner tube and the outer tube. In order to reduce the deepness of the shadow caused by strips of the spacer that shield light emitting through the inner tube, the spacer is attached to an exhaust portion protruding from a center of the closed end of the inner tube by inserting the exhaust portion into a hole, and strips, - - - extending in the direction of the opening end of the inner tube from peripheral edge of the center plate are inclined in a circumferential direction around an optical axis of the lamp. 1. A lamp comprising:an inner tube housing an arc tube or a luminous filament,an outer tube housing the inner tube,a base having a mount to which each open end of the inner tube and outer tube is fixed by an adhesive, anda spacer made of a thin metal plate and attached to a closed end of the inner tube so as to coaxially support the inner tube to the outer tube, in whichthe spacer hasa center plate which is attached to an exhaust portion protruding from a center of the closed end of the inner tube by inserting the exhaust portion into a hole of the center plate, andat least three strips protruding from the peripheral edge of the center plate and extending in direction of the open end of the inner tube, characterized in thatthe strips are inclined in a circumferential direction of the inner tube around the optical axis of the lamp.2. A lamp according to the claim 1 , whereinthe strips are protruded each at a substantially equal distance along the peripheral edge of the center plate, and they are inclined each in the same circumferential direction.3. A lamp according to the claim 1 , wherein an angle of inclination of each strip to the optical axis of the lamp is 15 to 45 degree.4. A lamp ...

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11-04-2013 дата публикации

Lead-Free Low Melting Point Glass Composition

Номер: US20130090226A1
Автор: Jun Hamada
Принадлежит: Central Glass Co Ltd

Disclosed is a lead-free, low melting point glass composition, which is characterized by being substantially free from a lead component and comprising 0-8 mass % of SiO 2 , 2-12 mass % of B 2 O 3 , 2-7 mass % of ZnO, 0.5-3 mass % of RO (MgO+CaO+SrO+BaO), 0.5-5 mass % of CuO, 80-90 mass % of Bi 2 O 3 , 0.1-3 mass % of Fe 2 O 3 , and 0.1-3 mass % of Al 2 O 3 . This glass composition is not easily crystallized at high temperatures and is stable. Therefore, it is useful as an insulating coating material and a sealing material for electronic material substrates.

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18-04-2013 дата публикации

Conductive Layer Net Ignition Aids

Номер: US20130093318A1
Принадлежит: GENERAL ELECTRIC COMPANY

Embodiments of the present invention relate to high intensity discharge (“HID”) lamps which have an electrically insulating arc tube including a central portion with an interior discharge region and two legs each extending from an end of the central portion, the central portion being a larger size than the legs. Electrical conductors extend through each of the legs and are ending in electrode components which are spaced apart from each other in the discharge region. A light transmitting envelope encloses the arc tube, and a frame member is electrically attached to one of the electrical conductors. Pursuant to some embodiments, an ignition aid is provided which includes an electrically conductive element disposed on one of the legs. The ignition aid includes a conductive layer that extends from the electrically conductive element to the central portion. 1. A high intensity discharge lamp comprising:an electrically insulating arc tube including a central portion with an interior discharge region and two legs each extending from an end of said central portion, said central portion being a larger diameter than said legs;electrical conductors extending through each of said legs and spaced apart from each other in said discharge region;a light transmitting envelope enclosing said arc tube;an ignition aid comprising an electrically conductive element disposed on one of said legs and a conductive layer extending from said electrically conductive element to said central portion.2. The high intensity discharge lamp of claim 1 , further comprising:a frame member electrically attached to one of said electrical conductors;3. The high intensity discharge lamp of claim 2 , wherein the electrically conductive element is a foil claim 2 , the foil in electrical contact with said frame member and wrapped around said one of said legs.4. The high intensity discharge lamp of claim 1 , wherein the electrically conductive element is a metallic structure including at least one of (i) a ...

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18-04-2013 дата публикации

ASSEMBLY AND METHOD FOR REDUCING FOIL WRINKLES

Номер: US20130094993A1
Принадлежит: TETRA LAVAL HOLDINGS & FINANCE S.A.

An assembly of a support plate and an exit window foil for use in an electron beam generating device. The support plate is designed to reduce wrinkles in the foil. The foil is bonded to the support plate along a closed bonding line bounding an area in which the support plate is provided with a pattern of apertures and foil support portions alternately. When vacuum is created in the housing the pattern is adapted to form a topographical profile of the foil substantially absorbing any surplus foil. Another aspect involves a method in a filling machine for sterilizing a packaging material web. 1. An assembly of a support plate and an exit window foil for use in an electron beam generating device , said support plate being designed to reduce wrinkles in said foil , which wrinkles may arise due to surplus foil arising in the assembly process , said foil being bonded to the support plate along a closed bonding line bounding an area in which the support plate is provided with apertures and foil support portions and in which area the foil is adapted to serve as a portion of a wall of a vacuum tight housing of the electron beam generating device ,the support plate, within said area, is provided with a pattern of apertures and foil support portions alternately, which pattern, when vacuum is created in the housing, is being adapted to form a topographical profile of the foil substantially absorbing any surplus foil.2. Assembly according to claim 1 , wherein the absorption is made in such a way that a substantially dominant bending of the foil occurs in said apertures.3. Assembly according to claim 2 , wherein the dominant bending is made around an axis directed substantially perpendicular to the bonding line in a plane of the support plate.4. Assembly according to claim 2 , wherein the area bounded by said bonding line is divided in at least two sections each comprising at least one aperture claim 2 , and that in each respective section the dominant bending is created in the ...

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09-05-2013 дата публикации

Electrodeless plasma lighting device, in particular microwave lamp

Номер: US20130113373A1
Автор: Boris Lutterbach
Принадлежит: Individual

The invention relates to an electrodeless plasma lighting or illuminating device (microwave lighting device), comprising an illuminant member ( 2 ), which is excited by an rf-radiation for illumination and held by a shaft ( 3 ), and a supporting member ( 30 ) for supporting the shaft ( 3 ) together with the illuminant member, wherein the supporting member ( 30 ) is coupled with a rotary drive ( 20 ) for rotating the supporting member ( 30 ) together with the shaft ( 3 ) around a longitudinal axis thereof. According to the invention a plurality of supporting spots ( 37 ) or point-like supporting members ( 37 ) protrude from a surface, preferably an inner surface, of the supporting member ( 30 ) for supporting the shaft ( 3 ) in a punctual manner. Accordingly the surface contact between the hot shaft ( 3 ) and the supporting member is effectively reduced to thereby reduce the efforts required for cooling said shaft, in particular in the region of the supporting member.

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16-05-2013 дата публикации

HIGH PRESSURE DISCHARGE LAMP

Номер: US20130119853A1
Принадлежит: IWASAKI ELECTRIC CO., LTD.

A high pressure discharge lamp of the present invention is provided with a light-emitting bulb comprising a light-emitting part and sealing sections; metal foils embedded within the sealing sections; and a pair of electrodes having one end protruding into the light-emitting part and having the other end embedded in the corresponding sealing section and joined to the corresponding metal foil. An embedded length L (mm) of the electrodes that is defined by the length between a light-emitting part side end of the metal foil and the border section between the protruding section and the embedded section of the electrode, and the temperature T (° C.) at the joint region of the electrode and the metal foil are set to satisfy 1.8≦2.8 and T≦970. 1. A high pressure discharge lamp comprising:a light-emitting bulb including a light-emitting part, and first and second sealing sections interposing the light-emitting part;first and second metal foils embedded in the first and second sealing sections, respectively;first and second electrodes each having one end protruding into the light-emitting part and having the other end embedded in the corresponding one of the first and second sealing sections and joined to the corresponding one of the first and second metal foils; anda sub-mirror covering at least a portion on a second electrode side of the light-emitting bulb without covering the first electrode side of the light-emitting bulb, whereinthe light-emitting bulb comprises quartz glass, and an embedded length L (mm) of the second electrode that is defined as a distance from a border section between a protruding section and an embedded section of the second electrode to a light-emitting part side end of the second metal foil, and a temperature T (° C.) at a joint region of the second electrode and the second metal foil during a discharging of the lamp satisfy 1.8≦L≦2.8 and T≦970 so that the quartz glass and the second metal foil do not detach by the discharging of the lamp.2. The ...

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16-05-2013 дата публикации

STRAIGHT TUBE LED LAMP, LAMP SOCKET SET, AND LIGHTING FIXTURE

Номер: US20130119896A1
Принадлежит:

A straight tube LED lamp includes: a straight tube in which a plurality of light emitting diodes is housed; a first cap for forming a power feeding connection to the plurality of light emitting diodes, provided on one axial direction end side of the straight tube; and a second cap for grounding, provided on another axial direction end side of the straight tube. A first terminal for forming an electrical connection to a power feeding terminal of a first lamp socket is provided in the first cap. A second terminal for forming an electrical connection to a grounding terminal of a second lamp socket is provided in the second cap. 1. A straight tube LED lamp comprising:a straight tube in which a plurality of light emitting diodes is housed;a first cap for forming a power feeding connection to the plurality of light emitting diodes, said first cap being provided on one axial direction end side of the straight tube; anda second cap for grounding, said second cap being provided on another axial direction end side of the straight tube,wherein a first terminal for forming an electrical connection to a terminal of a first lamp socket is provided in the first cap, anda second terminal for forming an electrical connection to a terminal of a second lamp socket is provided in the second cap.2. The straight tube LED lamp according to claim 1 , further comprising a conductive member claim 1 ,wherein the second terminal is electrically connected to the conductive member.3. The straight tube LED lamp according to claim 2 , wherein the conductive member takes an elongated shape and forms a part of the straight tube.4. The straight tube LED lamp according to claim 3 , wherein the plurality of light emitting diodes are mounted on an elongated substrate in a lengthwise direction thereof so as to form an LED module claim 3 , andthe conductive member is a heat sink disposed in thermal contact with the LED module.5. The straight tube LED lamp according to claim 1 , wherein the first terminal ...

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23-05-2013 дата публикации

Transmission type radiation generating source and radiography apparatus including same

Номер: US20130129045A1
Принадлежит: Canon Inc

A transmission type radiation generating device includes an electron emitting source; a substrate that transmits radiation; a target provided on a surface of the substrate facing the electron emitting source and configured to generate radiation when electrons emitted from the electron emitting source are applied thereto; a shield member having a radiation passage that allows the radiation transmitted through the substrate to pass therethrough, the shield member being connected to the substrate and including at least a forward shield portion that protrudes in a direction away from the electron emitting source with respect to the target; and an insulating fluid in contact with the forward shield portion. The shield member includes a low-melting-point metal or a low-melting point alloy provided at least in the forward shield portion.

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06-06-2013 дата публикации

FASTENING DEVICE

Номер: US20130140702A1
Принадлежит: Micronas GmbH

A fastening device is provided that includes a semiconductor body with an integrated circuit, and a dielectric passivation layer formed on the surface of the semiconductor body, and a trace formed underneath the passivation layer, and an oxide layer formed beneath the trace, and a connecting component that forms a frictional connection between a component formed above the passivation layer and the semiconductor body, wherein a formation passing through the passivation layer and the oxide layer and having a bottom surface is formed, and a conductive layer is formed on the bottom surface and the connecting component forms an electrical connection between the conductive layer and the component. 1. A fastening device comprising:a semiconductor body with an integrated circuit;a dielectric passivation layer provided on the surface of the semiconductor body;a trace provided underneath the passivation layer;an oxide layer provided beneath the trace;a connecting component that forms a frictional connection between a component arranged above the passivation layer and the semiconductor body;a formation passing through the passivation layer and the oxide layer, the formation having a bottom surface; anda conductive layer provided on the bottom surface and/or on a lateral surface of the formation, the connecting component having an organic polymer and forms an electrical connection between the conductive layer and the component,wherein the component is provided as a first part and the connecting component is provided as a second part of an integrated component formed underneath the passivation layer.2. The fastening device according to claim 1 , wherein one elevation is formed on the bottom surface.3. The fastening device according to claim 2 , wherein a plurality of elevations are formed on the bottom surface.4. The fastening device according to claim 2 , wherein the elevation is implemented as a tungsten plug.5. The fastening device according to claim 2 , wherein the elevation ...

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27-06-2013 дата публикации

DISPLAY DEVICE AND METHOD FOR PRODUCING THE SAME

Номер: US20130162138A1
Принадлежит: Shinoda Plasma Co., Ltd.

A display device includes a plasma tube array including a plurality of plasma tubes arranged in parallel; a plurality of display electrodes provided on a front side of the plasma tube array so as to be extended perpendicularly to a longitudinal direction of the plasma tubes; and a plurality of address electrodes provided on a rear side of the plasma tube array so that each address electrode is extended along each plasma tube longitudinally; each plasma tube having a tube, a discharge assisting film having a thickness different from part to part, and a phosphor film, wherein the discharge assisting film is provided on an inner surface of each tube, the thickness of the discharge assisting film is larger at the front side than at the rear side, and the phosphor film is formed on the discharge assisting film at the rear side. 1. A display device comprising:a plasma tube array including a plurality of plasma tubes arranged in parallel and having front and rear sides;a plurality of display electrodes provided on the front side across the plasma tubes; anda plurality of address electrodes each provided along each plasma tube;each plasma tube having a tube, a discharge assisting film having a thickness different from part to part, and a phosphor film, whereinthe discharge assisting film is provided on an inner surface of each tube, the thickness of the discharge assisting film is larger at the front side than at the rear side, and the phosphor film is formed on the discharge assisting film at the rear side.2. The display device according to claim 1 , wherein the discharge assisting film includes magnesium oxide crystal particles partly emerging from a surface of the discharge assisting film.3. The display device according to claim 1 , wherein each tube comprises a flattened glass tube having major and minor diameters; and a pair of flat faces parallel to the major diameter claim 1 , and one of the pair of flat faces is used for the front side of the plasma tube array and ...

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27-06-2013 дата публикации

DISPLAY APPARATUS WITH AN ELECTROMAGNETIC WAVE SHIELDING STRUCTURE

Номер: US20130163214A1
Принадлежит: SAMSUNG ELECTRONICS CO., LTD.

A display apparatus having an electromagnetic wave shielding structure and an electromagnetic wave reducing structure, are provided. The electromagnetic wave shielding and reducing structures are applicable to various materials. The display apparatus includes a display panel, a rear case disposed at a rear of the display panel and formed of a non-conductive material, a printed circuit board disposed at a rear of the rear case, and an electromagnetic wave reducer provided at one surface of the rear case and being formed of a conductive material to reduce the electromagnetic wave generated at the printed circuit board, wherein the electromagnetic wave reducer is electrically connected to the printed circuit board. 1. A display apparatus , comprising:a display panel,a rear case disposed at a rear of the display panel and formed of a non-conductive material,a printed circuit board disposed at a rear of the rear case, andan electromagnetic wave reducer provided at one surface of the rear case and formed of a conductive material to reduce electromagnetic waves generated at the printed circuit board,wherein the electromagnetic wave reducer is electrically connected to the printed circuit board.2. The display apparatus of claim 1 , further comprising:at least one first connecting apparatus configured to electrically connect the printed circuit board to the electromagnetic wave reducing member.3. The display apparatus of claim 2 , wherein:the at least one first connecting apparatus comprises a first stud, which is installed at the rear case and configured to be electrically connected to the electromagnetic wave reducer, and a coupling member coupled between the printed circuit board and the first stud.4. The display apparatus of claim 1 , wherein:the rear case is formed with glass.5. The display apparatus of claim 1 , wherein:the electromagnetic wave reducer is formed with a metallic layer.6. The display apparatus of claim 5 , wherein:an anti-scattering film is attached to a ...

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04-07-2013 дата публикации

THERMAL TRANSFER FILM AND ORGANIC ELECTROLUMINESCENT DISPLAY MANUFACTURED USING THE SAME

Номер: US20130171379A1
Принадлежит:

A thermal transfer film and an organic electroluminescent display manufactured using the thermal transfer film, the thermal transfer film including a base layer; and a transfer enhancement layer having a surface energy of about 25 dyne/cm or less. 1. A thermal transfer film , comprising:a base layer; anda transfer enhancement layer having a surface energy of about 25 dyne/cm or less.2. The thermal transfer film as claimed in claim 1 , further comprising a transfer layer stacked on the transfer enhancement layer claim 1 , the transfer layer including an organic electroluminescent material layer.3. The thermal transfer film as claimed in claim 1 , wherein the transfer enhancement layer has a peel strength of about 600 gf/inch or less.4. The thermal transfer film as claimed in claim 1 , wherein the transfer enhancement layer has a water contact angle of about 80° or more.5. The thermal transfer film as claimed in claim 1 , wherein the transfer enhancement layer has an n-hexadecane contact angle of about 25° or more.6. The thermal transfer film as claimed in claim 1 , wherein the transfer enhancement layer is prepared from a composition including a UV-curable fluorine compound claim 1 , a UV-curable siloxane compound claim 1 , or a mixture thereof.7. The thermal transfer film as claimed in claim 6 , wherein the UV-curable fluorine compound includes a compound represented by Formula 1:{'br': None, 'sub': 2', 'n, 'sup': 1', 'f, '(CH═CRCOO)R,\u2003\u2003[Formula 1]'}{'sup': 1', 'f, 'sub': 1', 's, 'wherein, in Formula 1, n is an integer of 1 or more; Ris hydrogen or a Cto Cstraight or branched alkyl group; and Ris a fluoroalkyl group, a fluoroalkylene group, a perfluoroalkyl group, or a perfluoroalkylene group), and'}wherein the UV-curable siloxane compound includes a (meth)acrylic group-containing polyether-modified dialkyl polysiloxane.8. The thermal transfer film as claimed in claim 1 , wherein a light-to-heat conversion (LTHC) layer is stacked on the base layer claim 1 ...

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08-08-2013 дата публикации

EMI SHIELDING MEMBER, PARTICULARLY SUITABLE FOR SHIELDING OF MODULE CAGES

Номер: US20130199835A1
Принадлежит: Molex Incorporated

A receptacle assembly includes a hollow conductive cage with a front end and an opening to an interior portion of the cage. The opening is configured to receive a module assembly therein. The cage has a bottom with a bottom opening communicating with the interior portion, and the bottom is configured to be joined to a circuit board. A layered EMI shield member is provided between the bottom of the cage and the circuit board and the shield member extends completely around the bottom opening of the cage. The EMI shield member is formed as a flexible, low-cost assembly that utilizes a pair or insulative layers that flank a conductive layer. 1. A receptacle assembly , comprising:a hollow cage having a front end with an opening communicating with a hollow interior portion thereof, the opening being configured to receive a module therein, the cage having a plurality of walls, the walls including at least two opposing sidewalls, and opposing top and bottom walls, the bottom wall including a bottom opening disposed therein sized to receive a connector therein which is mounted to a circuit board, said bottom wall being configured to be joined to the circuit board; anda flexible layered, EMI shield member provided along said bottom wall and extending completely around the bottom wall opening, the shield member having a generally horizontal body portion with a plurality of contact points extending out of the plane of said shield member, said shield member being held between said cage and said circuit board when said cage is mounted to said circuit board, said shield member forming a shielded interface between said cage and said circuit board and completely encompassing said bottom opening.2. The receptacle assembly of claim 1 , wherein said shield member is formed from an ESD bag material.3. The receptacle assembly of claim 1 , wherein said shield member is a multilayered material including at least one conductive layer sandwiched between two insulative layers.4. The ...

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08-08-2013 дата публикации

VACUUM GLASS PANEL AND METHOD FOR MANUFACTURING SAME

Номер: US20130202821A1
Автор: Son Beom-Goo, Song Su-Bin
Принадлежит:

A vacuum glass panel includes patterned spacers formed by a print system using ceramic ink to enable the shapes of the patterned spacers and spacing between the patterned spacers to be uniformly controlled and to improve the speed of forming patterned spacers. The vacuum glass panel comprises: an upper glass sheet; a lower glass sheet facing the upper glass sheet; a sealing material arranged along the edges of the upper glass sheet and lower glass sheet to seal the upper glass sheet and the lower glass sheet such that a vacuum layer is formed in the space between the upper glass sheet and the lower glass sheet; and one or more patterned spacers inserted into the vacuum layer between the upper glass sheet and the lower glass sheet so as to maintain a gap having a predetermined thickness between the upper glass sheet and the lower glass sheet. 1. A vacuum glass panel comprising:an upper glass sheet;a lower glass sheet facing the upper glass sheet;a sealing material arranged along edges of the upper and lower glass sheets to seal a space between the upper and lower glass sheets such that a vacuum layer is formed in the space between the upper and lower glass sheets; andone or more patterned spacers interposed in the vacuum layer between the upper and lower glass sheets to maintain a gap having a predetermined thickness between the upper and lower glass sheets, the patterned spacers being formed of ceramic ink.2. The vacuum glass panel according to claim 1 , wherein the gap between the upper and lower glass sheets ranges from 0.1 mm to 0.5 mm.3. The vacuum glass panel according to claim 1 , wherein the patterned spacers are disposed in a matrix array.4. The vacuum glass panel according to claim 1 , wherein the patterned spacers are formed in a hexahedral or cylindrical shape.5. The vacuum glass panel according to claim 4 , wherein the patterned spacers have a length of 0.2 mm to 1 mm and a height of 0.1 mm to 0.5 mm6200400. The vacuum glass panel according to claim 1 , ...

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15-08-2013 дата публикации

Electronics device and a method for making the same

Номер: US20130208435A1
Автор: Johnny Hederoth
Принадлежит: Huawei Technologies Co Ltd

The disclosure relates generally to an electronics device having a first housing part connected with a second housing part. The second housing part includes a Printed Circuit Board (PCB) with electronics components, an electromagnetic shielding cover being mounted for electromagnetic shielding (ES) of the electronics components, the cover including a bottom or base wall spaced apart from the PCB and projecting walls contacting the PCB, the projecting walls being arranged to surround one or more of the electronics components. The device includes compressible members arranged between the cover and the first housing part, an engagement structure opposite the cover engaging and compressing the compressible member. In this manner the screws required for fixing the cover is reduced substantially, or eliminated.

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05-09-2013 дата публикации

MANUFACTURING METHOD OF SEMICONDUCTOR DEVICE, AND SEMICONDUCTOR DEVICE

Номер: US20130228908A1
Автор: TAKAHASHI Noriyuki
Принадлежит: RENESAS ELECTRONICS CORPORATION

Provided is a resin sealed semiconductor device with improved reliability. After positioning a cap (lid) so as to cover semiconductor chips and wires, resin is supplied into a space formed by the cap, so that a sealing body is formed to cover the semiconductor chips and the wires. In the step of forming the sealing body, the resin is supplied from an opening formed at a corner of the cap in the planar view. The sealing body is exposed at the corner of the cap, so that the exposed part of the sealing body can be kept away from the wires. 1. A manufacturing method of a semiconductor device , comprising the steps of:(a) providing a lead frame having a chip mounting portion and a plurality of leads arranged around the chip mounting portion;(b) after the step (a), mounting a semiconductor chip over the chip mounting portion, said semiconductor chip having a front surface, a plurality of electrodes formed over the front surface, and a back surface opposite to the front surface;(c) after the step (b), electrically connecting the leads with the electrodes of the semiconductor chip via a plurality of wires;(d) after the step (c), arranging a lid so as to cover the semiconductor chip and the wires, and bonding the lid to the leads by a sealant; and(e) after the step (d), supplying resin into a space inside the lid with the semiconductor chip arranged therein, thereby sealing the wires and the semiconductor chip with the resin,wherein a shape in a plan view of the lid is comprised of a quadrangle having a first corner,wherein in the step (d), a gap between adjacent ones of the leads is filled with a part of the sealant, andwherein in the step (e), the resin is supplied into the space from the first corner not filled with the sealant.2. The manufacturing method of a semiconductor device according to claim 1 , wherein the lid is made of metal claim 1 , andwherein in the step (d), the lid and the leads are bonded together via the sealant made of insulating material such that the ...

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05-09-2013 дата публикации

X-Ray Tube

Номер: US20130230147A1
Принадлежит: FUTABA CORPORATION

An X-ray tube is disclosed. The X-ray tube includes a substrate, a box-shaped case attached to the substrate and being in a high-vacuum state, an X-ray target arranged in the opening of the first substrate in the inside of the case, and a cathode arranged in the case and supplying an electron to the X-ray target. The substrate includes first and second substrates made of 426 alloy and respectively having an opening of honeycomb structure, and an X-ray transmissive window sandwiched between the first and second substrates which is made of a titanium foil and close the opening. The X-ray transmissive window is reinforced by a honeycomb structure of the substrate from both surfaces. Thus, the substrate and the X-ray transmissive window are not deformed, and strength of the package is improved. 1. A X-ray tube comprising:a substrate including radiopaque first and second substrates made of a metal;a rectangular or slit shaped opening arranged in each of said first and second substrates having a framework;an X-ray transmissive window arranged on the substrate, said X-ray transmissive window being sandwiched between the first and second substrates and closing the opening;a box shaped case attached to the substrate, the inside of said case being in high-vacuum state;an X-ray target arranged on the opening of the substrate in the inside of the case and adhering to the X-ray transmissive window, andan electron source arranged in the inside of the case, said electron source having a plurality of control electrodes including a liner cathode extending along the opening of the substrate and an opening extending along the longitudinal direction of the cathode for deriving electrons emitted from the cathode, and supplying the electrons to the X-ray target.2. The X-ray tube as claimed in claim 1 , wherein the electron source includes at least a back plate formed on an inner surface of the case claim 1 , a linear cathode claim 1 , a first control electrode including a mesh shaped ...

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12-09-2013 дата публикации

COATED X-RAY WINDOW

Номер: US20130235979A1
Принадлежит: EXCILLUM AB

An X-ray window including a primary and a secondary window element. In order to evaporate debris by ohmic heating, current flows through the secondary (upstream) window element. Meanwhile, electric charge originating from electron irradiation and/or depositing charged particles is to be drained off the window element. To prevent large debris particles from short-circuiting the window element and changing the desired heating pattern, the current for heating the window element flows through a layer which is insulated from the charge-drain layer. 120-. (canceled)21. An X-ray window for separating an ambient pressure region from a reduced pressure region , the window comprising:a primary X-ray-transparent window element separating the ambient pressure region from an intermediate region;a secondary window element separating the intermediate region from the reduced pressure region, which secondary window element comprises a side facing the reduced pressure region for receiving a contaminant depositing thereon; andheating means for applying an electric voltage between areas of said secondary window element for thereby evaporating contaminant having deposited thereon,wherein said secondary window element comprises:an electrically insulating layer;a charge-drain layer, which faces the reduced pressure region and is connected to a charge sink; anda heater layer, which is electrically insulated from the charge-drain layer, wherein said areas, between which the voltage is applied, are located in the heater layer.22. The X-ray window of claim 21 , further comprising a screen claim 21 , at least partially surrounding said secondary window element on the side facing the reduced pressure region claim 21 , said screen being electrically conducting and connected to a charge sink.23. The X-ray window of claim 22 , wherein the charge-drain layer is completely surrounded by the screen and overlaps by a first distance with the screen.24. The X-ray window of claim 22 , wherein the screen ...

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19-09-2013 дата публикации

CERAMIC BUSHING FOR A HIGH-PRESSURE DISCHARGE LAMP

Номер: US20130241405A1
Принадлежит: OSRAM GMBH

A bushing for a high-pressure discharge lamp, which is suitable for connecting an electrode in the interior of a ceramic discharge vessel to a supply lead in a gastight manner on the exterior of the discharge vessel, wherein the bushing is an electrically conductive ceramic composite consisting of a mixture of LaBand at least one second material from the group AlO, DyAlO, AlN, AlON and DyOis disclosed. 1. A bushing for a high-pressure discharge lamp , which is suitable for connecting an electrode in the interior of a ceramic discharge vessel to a supply lead in a gastight manner on the exterior of the discharge vessel , wherein the bushing is an electrically conductive ceramic composite consisting of a mixture of LaBand at least one second material from the group AlO , DyAlO , AlN , AlON and DyO.2. The bushing as claimed in claim 1 , wherein the bushing is a pin.3. The bushing as claimed in claim 1 , wherein the proportion of LaBis between 95 and 30% by volume.4. The bushing as claimed in claim 3 , wherein the proportion of LaBis between 80 and 50% by volume.5. The bushing as claimed in claim 1 , wherein the second material is AlOor DyAlO.6. An electrode for a high-pressure discharge lamp claim 1 , which is connected to a bushing claim 1 , which is suitable for connecting the electrode in the interior of a ceramic discharge vessel to a supply lead in a gastight manner on the exterior of the discharge vessel claim 1 , wherein the bushing is an electrically conductive ceramic composite consisting of a mixture of LaBand at least one second material from the group AlO claim 1 , DyAlO claim 1 , AlN claim 1 , AlON and DyQ.7. The electrode as claimed in claim 6 , wherein the electrode and the bushing are produced integrally from the ceramic composite.8. A high-pressure discharge lamp having a bushing claim 6 , which is suitable for connecting an electrode in the interior of a ceramic discharge vessel to a supply lead in a gastight manner on the exterior of the discharge ...

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10-10-2013 дата публикации

Aircraft Landing Gear Stop Pad

Номер: US20130264417A1
Принадлежит:

A stop pad () for an aircraft landing gear arranged to provide protection against impact between first and second elements of the landing gear, the stop pad being arranged to provide an indication that it is been subject to an impact against one of the first or second landing gear elements, the impact having an impact load above a predetermined threshold level. 1. A stop pad for an aircraft landing gear arranged to provide protection against impact between first and second elements of the landing gear , the stop pad being arranged to provide an indication that it has been subjected to an impact against one of the first or second landing gear elements , the impact having an impact load above a predetermined threshold level.2. A stop pad according to claim 1 , wherein said indication is a visual indication.3. A stop pad according to claim 2 , wherein said visual indication may comprise the deformation of one or more external surfaces of the stop pad.4. A stop pad according to claim 3 , wherein an external surface of the stop pad may have one or more recesses formed therein and the visual indication comprises the deformation of at least one of these recesses.5. A stop pad according to claim 3 , wherein the stop pad may comprise a porous material and the plastic yield point of the porous material is determined as a function of the materials porosity.6. A stop pad according to claim 2 , wherein the visual indication may comprise at least partial egress of a substance from the stop pad.7. A stop pad according to claim 6 , comprising at least one layer of said substance extending to an edge of the stop pad claim 6 , wherein the substance has a plastic yield point equal to the predetermined threshold level such that when the stop pad is subject to an impact load above the predetermined threshold level claim 6 , at least a portion of the layer of said substance is extruded beyond the edge of the stop pad.8. A stop pad according to comprising multiple layers of said substance ...

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10-10-2013 дата публикации

APPARATUS AND METHODS FOR RESIZING ELECTRONIC DISPLAYS

Номер: US20130265738A1
Автор: JR. Lawrence E., Tannas
Принадлежит:

Apparatus and methods are provided for resizing an electronic display that includes front and back plates, a perimeter seal spacing apart the plates and defining an enclosed cell area between the plates that includes an original display image area, image-generating medium sealed in the enclosed cell area, and electrical circuits on inner surfaces of the plates extending throughout the original display image area. For example, a cut line may be identified that intersects across the original display image area of the display. A laser may be directed adjacent the cut line to heat and/or separate leads of the electrical circuits adjacent the cut line. The display may be cut adjacent the cut line, e.g., before or after separating leads along the cut line, resulting in a target display portion with an exposed edge, and an excess display portion, and then the exposed edge may be sealed. 1. A method for resizing an electronic display , wherein the display comprises front and back plates , a perimeter seal spacing apart the plates and at least partially defining an enclosed cell area between the plates that comprises an original display image area , image-generating medium sealed in the enclosed cell area , and electrical circuits on inner surfaces of the plates extending throughout the original display image area , the method comprising:identifying a cut line that intersects across the original display image area of the display;directing a laser adjacent the cut line to sever the electrical circuits adjacent the cut line;cutting the display adjacent the cut line resulting in a target display portion with an exposed edge, and an excess display portion; andsealing the exposed edge.2. The method of claim 1 , wherein the laser is directed substantially parallel to the cut line such that the laser severs the electrical circuits along a line offset from the cut line by a predetermined distance.3. The method of claim 2 , wherein the laser severs the electrical circuits along a ...

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14-11-2013 дата публикации

FLAT PANEL DISPLAY AND METHOD OF MANUFACTURING THE SAME

Номер: US20130300283A1
Принадлежит:

Flat panel displays and methods of manufacturing the displays are disclosed. In one embodiment, the flat panel display includes: i) a substrate, ii) a display unit formed over the substrate, iii) an encapsulation substrate formed so as to face the display unit and iv) a sealing member formed between the substrate and the encapsulation substrate so as to substantially surround the display unit. The display may further include i) a wiring unit formed between the substrate and the encapsulation substrate so as to substantially overlap with the sealing member, wherein the wiring unit includes at least one via hole and ii) an inlet unit connected to the wiring unit and connectable to an external power source. 1. A flat panel display comprising:a substrate;a display unit formed over the substrate;an encapsulation substrate formed so as to face the display unit;a sealing member formed between the substrate and the encapsulation substrate so as to substantially surround the display unit;a single wiring unit formed between the substrate and the encapsulation substrate so as to substantially overlap with the sealing member, wherein the wiring unit includes at least one via hole, wherein the at least one via hole passes through the single wiring unit, and wherein the wiring unit surrounds the four sides of the display unit; andan inlet unit connected to the wiring unit and connectable to an external power source.2. The flat panel display of claim 1 , wherein the sealing member contacts the substrate through the via hole.3. The flat panel display of claim 1 , wherein the wiring unit is formed on the substrate claim 1 , and wherein the sealing member is formed between the wiring unit and the encapsulation substrate.4. The flat panel display of claim 1 , wherein the sealing member substantially fills the via hole.5. The flat panel display of claim 1 , wherein the sealing member contacts the encapsulation substrate.6. The flat panel display of claim 1 , wherein the sealing member ...

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28-11-2013 дата публикации

In-vehicle indoor illumination apparatus

Номер: US20130314938A1
Принадлежит: Yazaki Corp

The in-vehicle indoor illumination apparatus which includes a design section, a functional section that is engaged with the design section, and a connector that is inserted to the functional section in a removable manner, wherein an interposition holder of the functional section is provided with two locking frames erected upward from a base housing of the design section at an interval and having resilience, and two locking hooks each engaged with the two locking frames of the design section from outside the two locking frames when the functional section is engaged with the design section, and a section between the two second locking frames is a connector insertion hole into which a housing of the connector is inserted.

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05-12-2013 дата публикации

IMAGE DISPLAY DEVICE AND TELEVISION RECEIVER

Номер: US20130321710A1
Принадлежит: Panasonic Corporation

An image display device has a display panel which displays an image; a first case which accommodates the display panel; an ion generating unit which generates ion mist; a second case which accommodates therein the ion generating unit; and a blower which is disposed inside the second case, and generates an air flow for emitting the ion mist generated by the ion generating unit to outside of the second case. The second case has an inlet provided upstream in the air flow relative to the ion generating unit; and an outlet for emitting air flowing in from the inlet and including the ion mist generated by the ion generating unit to the outside of the second case. The air including the ion mist and emitted from the outlet is emitted to a viewing space in front of the display panel. 1. An image display device comprising:a display panel displaying an image;a first case accommodating the display panel;an ion generating unit generating ion mist;a second case accommodating the ion generation unit; anda blower disposed inside the second case and generating an air flow for emitting the ion mist generated by the ion generating unit to outside of the second case, whereinthe second case includes:an air inlet provided in an upstream side of the ion generating unit; andan air outlet for emitting the air including the ion mist generated by the ion generating unit to the outside of the second case, and whereinthe air including the ion mist is emitted to a viewing space in front of the display panel.2. The image display device according to claim 1 , wherein the second case includes:a first wall disposed perpendicular to aback surface of the display panel and having the air inlet formed therein;a second wall disposed parallel to the back surface of the display panel and having a through hole penetrating a section crossing the first wall; anda covering member covering the through hole.3. The image display device according to claim 1 , further comprisinga control circuit controlling an ...

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12-12-2013 дата публикации

Optical Assembly Positioning Structure, LCD Device, and Manufacturing Method

Номер: US20130329293A1

The invention provides an optical assembly positioning structure, an LCD device, and a manufacturing method thereof. The optical assembly positioning structure includes a positioning part and a clamping part used for clamping different optical layers of the optical assembly; a connecting part is arranged between the positioning part and the clamping part, and the positioning part is connected and fixed to one end of the clamping part by the connecting part. The optical layers of the optical assembly of the invention are fixed by separate positioning structures. The positioning part and clamping part of the positioning structure are respectively in contact with the upper and lower surfaces of the optical assembly. The positioning part is fixed and connected to the clamping part by the connecting part. Thus, all optical layers of the optical assembly are clamped and fixed. The optical assembly is assembled firstly, and then the assembled optical assembly is totally fixed in the backlight module, thereby reducing human power; in addition, all the optical layers are integratedly assembled, thereby effectively reducing the relative displacement between the optical layers, and ensuring that large scratch will not be generated between the optical layers.

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12-12-2013 дата публикации

FEED-THROUGH AND METHOD FOR INTEGRATING THE FEED-THROUGH IN A HOUSING BY ULTRASONIC WELDING

Номер: US20130330604A1
Принадлежит: SCHOTT AG

A feed-through, in particular a feed-through which passes through a housing component of a housing, for example a battery housing, such as a battery cell housing. The housing component includes at least one opening through which at least one conductor, for example an essentially pin-shaped conductor, is guided. The pin-shaped conductor is at least partially surrounded by an insulator, for example made of a glass or a glass ceramic material. The at least one conductor connection, for example of the essentially pin-shaped conductor and/or of the housing component with the insulator, which is a glass or a glass ceramic material, is formed, the connection being an ultrasonic welding. 1. A feed-through , comprising:a housing component of a housing, said housing component having at least one opening;an insulator;at least one conductor which is at least partially surrounded by said insulator, said at least one conductor being guided through said at least one opening of said housing component; andan ultrasonic welding connection between said at least one conductor and at least one of said housing component and said insulator.2. The feed-through according to claim 1 , wherein said housing is a battery cell housing.3. The feed-through according to claim 1 , wherein said at least one conductor is an essentially pin-shaped conductor.4. The feed-through according to claim 1 , wherein said insulator is a material which is one of a glass material and a glass ceramic material.5. The feed-through according to claim 3 , wherein said conductor includes a head part and said insulator is positioned between said head part and said housing component.6. The feed-through according to claim 3 , wherein said conductor includes a metal.7. The feed-through according to claim 6 , wherein said metal is one of copper claim 6 , copper silicon carbide (CuSiC) claim 6 , a copper alloy claim 6 , aluminum claim 6 , aluminum silicon carbide (AlSiC) claim 6 , an aluminum alloy claim 6 , nickel-iron (NiFe ...

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19-12-2013 дата публикации

HIGH-PRESSURE DISCHARGE LAMP HAVING AN ARC TUBE IN WHICH A PAIR OF ELECTRODE RODS ARE DISPOSED, LUMP UNIT, AND PROJECTOR-TYPE IMAGE DISPLAY APPARATUS

Номер: US20130335715A1
Принадлежит:

A high-pressure discharge lamp having an arc tube with a casing made of glass. The arc tube includes a light-emitting part and sealing parts connected to the light-emitting part. A pair of electrode rods are disposed within the glass casing such that their tips face each other with a gap therebetween and project into the discharge space, and their base ends are embedded in the sealing parts and overlap surfaces of metal foils provided in the sealing parts. Each base end is coated with a coating foil made of metal and having a C-like cross section with a slit formed between edges thereof. An end of the coating foil farthest from the light-emitting part is located closer to the light-emitting part than an end of the metal foil closest to the light-emitting part. 1. A high-pressure discharge lamp comprising an arc tube , whereinthe arc tube includes: a light-emitting part within which a discharge space is formed; sealing parts connected to the light-emitting part; and a casing made of glass and housing the light-emitting part and the sealing parts,a pair of electrode rods are disposed within the casing such that (i) tips of the electrode rods face each other with a gap therebetween and project into the discharge space, (ii) a base end of each electrode rod is embedded in a corresponding one of the sealing parts, and (iii) the base end of each electrode rod overlaps, and is thus in contact with, a surface of a corresponding one of metal foils respectively provided in the sealing parts,the base end of each electrode rod is coated with a coating foil that is made of metal and has a C-like cross section with a slit formed between edges thereof,an end of the coating foil farthest from the light-emitting part is located closer to the light-emitting part than an end of the metal foil closest to the light-emitting part, and an outer circumference of the coating foil has two intersection points with the surface of the metal foil on which a point of contact with the electrode ...

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19-12-2013 дата публикации

TELEVISION AND ELECTRONIC APPARATUS

Номер: US20130335941A1
Принадлежит: KABUSHIKI KAISHA TOSHIBA

According to one embodiment, an electronic apparatus includes a housing, a component in the housing, an antenna in the housing, and an electrically conductive wall in the housing. The component is configured to emit electromagnetic noise. The wall is between the component and the antenna. 1. A television comprising:a housing;a component in the housing, the component configured to emit electromagnetic noise;an antenna in the housing;a first electrically conductive rib in the housing, the first rib projecting in a thickness direction of the housing between the component and the antenna; anda second electrically conductive rib projecting in the thickness direction of the housing from an inner surface of the housing, the second rib between the component and the first rib or between the first rib and the antenna.2. The television of claim 1 , whereinthe first rib comprises a first pass, andthe antenna comprises a cable extending through the first pass of the first rib.3. The television of claim 2 , whereinthe first rib further comprises a first portion between the component and the antenna and a second portion comprising the first pass, the second portion extending in a direction crossing the first portion, and the second portion not facing the component.4. The television of claim 2 , whereinthe second rib comprises a second pass through which the cable extends, andthe first pass and the second pass are at positions offset from each other.5. The television of claim 4 , whereinthe cable is set in the first pass after the cable is set in the second pass and connected to the housing, anda width of the first pass is greater than a width of the second pass.6. The television of claim 1 , wherein the first rib is a portion of the housing.7. The television of claim 1 , further comprising a member in the housing claim 1 , the member over at least a portion of the component and at least a portion of the antenna claim 1 , and wherein the first rib is a portion of the member.8. An ...

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26-12-2013 дата публикации

ELECTRONIC COMPONENT AND METHOD FOR PRODUCING THE ELECTRONIC COMPONENT

Номер: US20130343028A1
Автор: Henn Gudrun
Принадлежит: EPCOS AG

The invention specifies an electronic component which has a first electrode (), a second electrode (), an active region (), which is electrically coupled to the first electrode () and to the second electrode (), and a housing (), wherein the housing () contains carbon layers which are monoatomic at least in subregions. 1. An electronic component comprising:a first electrode;a second electrode;an active region, which is electrically coupled to the first electrode and the second electrode; anda housing, wherein the housing contains monoatomic carbon layers at least in partial regions.2. The electronic component according to claim 1 , wherein the monoatomic carbon layers are planar claim 1 , are shaped to form tubes or are partly planar and partly shaped to form tubes.3. The electronic component according to or claim 1 , wherein the monoatomic carbon layers are arranged as monolayers or as multilayers.4. The electronic component according to claim 1 , which is an electroacoustic component claim 1 , wherein the active region comprises a piezoelectric layer.5. The electronic component according to claim 4 , wherein the first and second electrodes are arranged on one side of the piezoelectric layer or on mutually opposite sides of the piezoelectric layer.6. The electronic component according to claim 1 , wherein the housing has a cavity arranged on the active region.7. The electronic component according to claim 6 , wherein a layer sequence spanning the cavity is arranged on the cavity.8. The electronic component according to claim 7 , wherein a first stabilizing layer is arranged between the cavity and the layer sequence.9. The electronic component according to or claim 7 , wherein the layer sequence has at least one stabilizing layer comprising monoatomic carbon layers.10. The electronic component according to claim 8 , wherein the first stabilizing layer comprises monoatomic carbon layers.11. The electronic component according to claim 9 , wherein the stabilizing layer ...

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09-01-2014 дата публикации

RADIATION ENTRY WINDOW FOR A RADIATION DETECTOR

Номер: US20140008538A1
Принадлежит:

The invention concerns a radiation entry window () for a radiation detector (), in particular for a semiconductor drift detector (), with a flat window element (), which is at least partially permeable for the radiation to be detected by the radiation detector (), as well as with a window frame (), which laterally frames the window element (), wherein the window frame () consists of a semiconductor material and is considerably thicker than the window element (). 116-. (canceled)17. A radiation entry window for a radiation detector , comprising:(a) a flat window element, which is at least partially permeable for radiation to be detected by the radiation detector; and (i) the window frame consists of a semiconductor material and is thicker than the window element;', '(ii) the window frame is manufactured in planar technology in a semiconductor process; and', '(iii) the window frame is connected quasi monolithically with the window element., '(b) a window frame, which laterally frames the window element, wherein18. The radiation entry window according to claim 17 , wherein the window frame is essentially arranged on an inner side of the flat window element facing away from the radiation.19. The radiation entry window according to claim 17 , wherein the window frame is essentially arranged on an external side of the flat window element facing the radiation.20. The radiation entry window according to claim 18 , wherein the window frame has a cross-section profile claim 18 , which widens outwardly from the inner side facing away from the radiation.21. The radiation entry window according to claim 19 , wherein the window frame has a cross-section profile claim 19 , which widens inwardly from an outside facing the radiation.22. The radiation entry window according to claim 17 , wherein the flat window element consists of a single planar layer.23. The radiation entry window according to claim 17 , wherein the flat window element has a plurality of different planar layers ...

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09-01-2014 дата публикации

Display device and the method thereof

Номер: US20140009723A1
Принадлежит: Samsung Display Co Ltd

A display device including: first, second and third substrates, where the second substrate is between the first and third substrates; a light amount controlling layer between the first and second substrates; a color providing layer between the second and third substrates; a light source unit which provides light; and a light guide plate disposed below the first substrate, where the light guide plate guides the light from the light source to the first substrate, where the light amount controlling layer and the color providing layer include pixels corresponding to each other, light from the light guide plate and passed through a pixel of the light amount controlling layer to pass through an adjacent pixel of the color providing layer, and the pixels of the color providing layer include a color conversion region and a transparent region.

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09-01-2014 дата публикации

SEALING APPARATUS AND METHOD OF MANUFACTURING FLAT DISPLAY DEVICE USING THE SAME

Номер: US20140011418A1
Принадлежит:

A sealing apparatus and a method of manufacturing a flat display device using the sealing apparatus. The sealing apparatus to attach a first substrate and a second substrate to each other using an attachment member disposed between the first and second substrates, the sealing apparatus comprises a stage on which the first substrate is seated, a halogen lamp irradiating light, and a reflector reflecting light irradiated from the halogen lamp to the attachment member. 136-. (canceled)37. A method of sealing a first substrate and a second substrate , the method comprising:converging irradiated light onto an attachment member disposed between a first substrate and second substrate so as to define cells; andsimultaneously melting the attachment member for multiple cells while irradiating the light onto the attachment member to seal the first substrate and the second substrate.38. The method of claim 37 , further comprising hardening the attachment member melted by the irradiated light to attach the first substrate and the second substrate to each other.39. The method of claim 37 , wherein the converged irradiated light is irradiated across a first direction that is a whole section area of the first substrate covering multiple cells.40. The method of claim 39 , further comprising irradiating light in a second direction that is not parallel to the first direction while simultaneously irradiating light across the first direction by moving the light irradiated across the first direction in the second direction.41. The method of claim 37 , wherein the attachment member is a frit material. This application claims the benefit of Korean Application No. 10-2009-0033189, filed Apr. 16, 2009 in the Korean Intellectual Property Office, the disclosure of which is incorporated herein by reference.1. Field of the InventionAspects of the present invention relate to a sealing apparatus and a method of manufacturing a flat display device using the sealing apparatus.2. Description of the ...

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16-01-2014 дата публикации

High frequency module having surface acoustic wave device and method for manufacturing the same

Номер: US20140016293A1
Автор: In Ho Song
Принадлежит: Wisol Co Ltd

A high frequency module having a surface acoustic wave device and a method of manufacturing the same are provided. The high frequency module includes a substrate provided with a top ground pattern at both upper ends and provided with, inside thereof, an inner ground pattern electrically connected to the top ground pattern through a via electrode; at least one SAW device installed on the substrate; a molding layer formed on the substrate to cover the SAW device and provided with a groove at both ends to expose the top ground pattern; and an electromagnetic wave shield layer formed to cover a surface of the molding layer including an inside of the groove.

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16-01-2014 дата публикации

Interior illuminating apparatus for vehicle

Номер: US20140016339A1
Автор: Shinji Mochizuki
Принадлежит: Yazaki Corp

In the case of storing a bus bar in a housing, terminals for switch connection of the bus bar are arranged so as to be exposed to a port for switch of the housing, and terminals for roof harness connection of the bus bar are arranged so as to be exposed to a connector port for roof W/H connection of the housing, and crimp terminal parts of the bus bar are arranged so as to be exposed to the inside of an electric wire holder port of the housing, and engaging protrusions formed on a bus bar holder are engaged and fixed to engaging recesses formed in the housing.

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23-01-2014 дата публикации

THERMAL TRANSFER FILM AND ORGANIC ELECTROLUMINESCENT DEVICE PREPARED USING THE SAME

Номер: US20140023801A1
Принадлежит:

A thermal transfer film includes a base layer, and a light-to-heat conversion layer on the base layer, the light-to-heat conversion layer including at least one of particles selected from tungsten oxide particles and composite tungsten oxide particles, the particles being present in an amount of about 20 wt % to about 65 wt % in the light-to-heat conversion layer. 1. A thermal transfer film , comprising:a base layer; anda light-to-heat conversion layer on the base layer, the light-to-heat conversion layer including at least one of particles selected from tungsten oxide particles and composite tungsten oxide particles, the particles being present in an amount of about 20 wt % to about 65 wt % in the light-to-heat conversion layer.2. The thermal transfer film as claimed in claim 1 , wherein the particles have an average particle diameter of greater than 0 to about 500 nm or less.3. The thermal transfer film as claimed in claim 1 , wherein:the light-to-heat conversion layer includes the tungsten oxide particles, and{'sub': y', 'z, 'the tungsten oxide particles are represented by Formula WO, where W is tungsten, O is oxygen, and 2.2≦z/y≦3.0.'}4. The thermal transfer film as claimed in claim 1 , wherein:the light-to-heat conversion layer includes the composite tungsten oxide particles, and{'sub': x', 'y', 'z, 'the composite tungsten oxide particles are represented by Formula MWO, where M is at least one element selected from H, He, an alkali metal, an alkali earth metal, a rare earth element, a halogen, Zr, Cr, Mn, Fe, Ru, Co, Rh, Ir, Ni, Pd, Pt, Cu, Ag, Au, Zn, Cd, Al, Ga, In, Tl, Si, Ge, Sn, Pb, Sb, B, P, S, Se, Te, Ti, Nb, V, Mo, Ta, Re, Hf, Os, and Bi; W is tungsten; O is oxygen; 0.001≦x/y≦1.1; and 2.2≦z/y≦3.0.'}5. The thermal transfer film as claimed in claim 1 , wherein the light-to-heat conversion layer includes a cured product of a composition that includes at least one of particles selected from the tungsten oxide particles and the composite tungsten oxide ...

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06-02-2014 дата публикации

SURFACE MOUNT CHIP

Номер: US20140035132A1
Автор: Le Coq Cedric, ORY Olivier
Принадлежит:

A surface mount chip including, on the side of a surface, first and second pads of connection to an external device, wherein, in top view, the first pad has an elongated general shape, and the second pad is a point-shaped pad which is not aligned with the first pad. 1. A surface mount chip comprising , on the side of a surface , only two pads , a first pad having an elongated shape , and a second point-shaped pad.2. The chip of claim 1 , wherein claim 1 , in top view claim 1 , the largest dimension of the first pad is greater by at least a factor 2 than that of the second pad.3. The chip of having claim 1 , in top view claim 1 , a rectangular general shape.4. The chip of claim 3 , wherein the first pad is substantially parallel to the two shortest chip edges.5. The chip of claim 3 , wherein the second pad is approximately equidistant from the two longest chip edges.6. The chip of claim 1 , wherein claim 1 , in top view claim 1 , the largest dimension of the first pad is at least equal to half the smallest width of the chip.7. The chip of claim 1 , wherein claim 1 , in top view claim 1 , the largest dimension of the second pad is smaller than 10 percent of the smallest width of the chip.8. The chip of claim 1 , wherein claim 1 , in top view claim 1 , the smallest width of the rectangle circumscribed in the first pad is substantially equal to the largest dimension of the second pad.9. The chip of claim 1 , wherein the first pad comprises two conductive bumps or drops interconnected by a conductive strip.10. The chip of claim 1 , wherein the second pad comprises a conductive bump or drop. This application claims the priority benefit of French patent application serial number 12/57536, filed on Aug. 2, 2012, which is hereby incorporated by reference to the maximum extent allowable by law.1. Technical FieldThe present disclosure relates to the field of electronic chips. It more specifically aims at surface mount (or flip-chip) chips, that is, chips comprising, on the ...

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06-03-2014 дата публикации

Ion generation method and ion source

Номер: US20140062286A1
Автор: Masateru Sato
Принадлежит: SEN Corp

An ion generation method uses a direct current discharge ion source provided with an arc chamber formed of a high melting point material, and includes: generating ions by causing molecules of a source gas to collide with thermoelectrons in the arc chamber and producing plasma discharge; and causing radicals generated in generating ions to react with a liner provided to cover an inner wall of the arc chamber at least partially. The liner is formed of a material more reactive to radicals generated as the source gas is dissociated than the material of the arc chamber.

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06-03-2014 дата публикации

SEALING COMPOUND AND CERAMIC DISCHARGE VESSEL COMPRISING SUCH SEALING COMPOUND

Номер: US20140062295A1
Принадлежит: KONINKLIJKE PHILIPS N.V.

Disclosed is a lamp comprising a ceramic discharge vessel () with end parts () and with electrodes () which are connected to a respective external contact via a respective feedthrough (). Each feedthrough is sealed with a sealing part () thereof by a sealing compound () in the end part. The discharge vessel gastightly encloses a discharge space into which said two electrodes extend from the end part and which contains an ionizable filling. The sealing compound comprises at least one first component chosen from the group consisting of ruthenium (Ru), iridium (Ir), osmium (Os) and rhenium (Re), and comprises at least one second component chosen from the group consisting of silicium (Si), boron (B), phosphor (P). Thus, a halide resistant lamp vessel is obtained exhibiting excellent lifetime characteristics and long lifetimes. 1. A discharge vessel comprising a ceramic body enclosing a discharge space provided with an ionizable filling , the discharge space being sealed in a gastight manner with a sealing compound ,wherein the sealing compound comprises at least one first component chosen from a first group consisting of ruthenium (Ru), Osmium (Os), Rhenium (Re), and comprises at least one second component chosen from a second group consisting of silicon (Si), boron (B), phosphorus (P).2. A discharge vessel as claimed in claim 1 , wherein it further comprises an end part sealed to the ceramic body claim 1 , an electrode mounted on an electrode feedthrough claim 1 , said feedthrough being sealed in said end part with the sealing compound claim 1 , the electrode extending from the end part into the discharge space.3. A discharge vessel as claimed in claim 1 , wherein the ceramic body at the discharge space comprises an opening claim 1 , the opening being sealed with the sealing compound.4. A discharge vessel as claimed in claim 1 , wherein the sealing compound is chosen from a group of brazing alloys consisting of ruthenium-boride (RuB) and ruthenium-iridium-boride (RuIrB ...

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06-03-2014 дата публикации

FLEXIBLE DISPLAY DEVICE MANUFACTURING METHOD AND CARRIER SUBSTRATE FOR THE METHOD

Номер: US20140065916A1
Принадлежит: Samsung Display Co., Ltd.

A method of manufacturing a flexible display device and a carrier substrate for manufacturing the same are disclosed. In one aspect, the method includes preparing a first release area and a first attachment area around the first surface area on a first surface, attaching a base substrate to the first surface, and forming a display unit on the base substrate corresponding to the first release area of the carrier substrate. The method also includes cutting the area of the base substrate corresponding to the first release area of the carrier substrate so as to include the display unit, and separating the cut base substrate from the carrier substrate. Thus, the carrier substrate and the base substrate may be smoothly combined with each other and separated from each other without an additional mask deposition process. Also, damage to a product that may occur during combination and separation of the substrates may be much reduced. 1. A method of manufacturing a flexible display device , the method comprising:preparing a first release area and a first attachment area around the first release area on a first surface;attaching a base substrate to the first surface;forming a display unit on the base substrate corresponding to the first release area of the carrier substrate;cutting the base substrate around an area corresponding to the first release area of the carrier substrate, so as to include the display unit; andseparating the cut base substrate from the carrier substrate.2. The method of claim 1 , wherein the first release area is formed by a sand-blast process.3. The method of claim 2 , wherein each of the base substrate and the carrier substrate comprises a glass material having a surface roughness of about 0.2 nm to about 0.3 nm.4. The method of claim 3 , wherein a surface roughness of the first release area is about 0.15 μm to about 1.2 μm by the sand-blast process.5. The method of claim 1 , wherein the attaching of the base substrate comprises:combining the carrier ...

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27-03-2014 дата публикации

AIRCRAFT LANDING GEAR

Номер: US20140084108A1
Автор: Goodburn Simon
Принадлежит: Messier-Dowty Limited

Aircraft landing gear including: a bogie beam coupled to a main strut; a first and second axles mounted on the bogie beam, each axle having a respective brake assembly and wheel assembly; and first and second stabilising arms mechanically coupling the first and second brake assemblies to respective first and second anchor points on the landing gear so as to react respective first and second brake torques generated as respective brake assembly applies a braking force to the respective wheel assembly. The first and second stabilising arms couple the respective first and second brake assemblies to the respective first and second anchor points such that the first and second brake torques result in both stabilising arms experiencing a tensile force or both stabilising arms experiencing a compressive force. 1. An aircraft landing gear including:a bogie beam coupled to a main strut;a first axle mounted on the bogie beam, the first axle carrying a first brake assembly and a first wheel assembly;a second axle mounted on the bogie beam, the second axle carrying a second brake assembly and a second wheel assembly, the first and second axles being adjacent so as to form an axle pair;a first stabilising arm arranged to mechanically couple the first brake assembly to a first anchor point on the landing gear so as to react a first brake torque generated as the first brake assembly applies a braking force to the first wheel assembly; anda second stabilising arm arranged to mechanically couple the second brake assembly to a second anchor point on the landing gear so as to react a second brake torque generated as the second brake assembly applies a braking force to the second wheel assembly,wherein the first and second stabilising arms couple the respective first and second brake assemblies to the respective first and second anchor points such that the first and second brake torques result in both stabilising arms experiencing a tensile force.2. An aircraft landing gear according to ...

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27-03-2014 дата публикации

ELECTRONIC MODULE AND METHOD FOR SAME

Номер: US20140085857A1
Принадлежит:

An electronic module includes a circuit board, a plurality of electronic components, a plurality of molding layers, at least one first conductive layer, at least one insulating filler, and one second conductive layer. The circuit board has a first plane and at least one grounding pad on the first plane. The electronic components are mounted on the first plane and electrically connected with the circuit board. The molding layers cover the electronic components and the first plane. The trench appears between two adjacent molding layers. The grounding pad is positioned at the bottom of the trench. The first conductive layer covers the sidewall of the trench and the grounding pad. The grounding pad electrically connected with the first conductive layer. The insulating filler is positioned in the trench. The second conductive layer covers the molding layers and the insulating filler, and electrically connects with the first conductive layer. 1. An electronic module , comprising:a circuit board with a first plane and at least one grounding pad, wherein the at least one grounding pad is located on the first plane;a plurality of electronic components mounted on the first plane and electrically connected with the circuit board;a plurality of molding layers covering the electronic components and the first plane, wherein a trench appears between two adjacent molding layers, and at least one grounding pad is located at the bottom of the trench;at least one first conductive layer covered the side wall of the trench and the at least one grounding pad, and electrically connected with the at least one grounding pad;at least one insulating filler is filled in the trench; andone second conductive layer covering the molding layers and the at least one insulating filler and electrically connected with the first conductive layer, wherein the at least one insulating filler is positioned between the second conductive layer and the first conductive layer.2. The electronic module of claim 1 ...

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03-04-2014 дата публикации

Modified spectrum lamp

Номер: US20140091699A1
Принадлежит: Osram Sylvania Inc

There is herein described a lamp having a light-transmissive envelope, a tungsten-halogen capsule and a coating disposed on the surface of the light-transmissive envelope or doped in the light-transmissive material. The light-transmissive envelope may comprise a light-transmissive material. The tungsten-halogen capsule can be positioned inside the light-transmissive envelope.

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03-04-2014 дата публикации

X-ray Tube

Номер: US20140093047A1
Принадлежит:

An X-ray tube includes a radiopaque substrate including a window portion, an X-ray transmission window closing the window portion, an X-ray target provided at the window portion from an inner surface side of the substrate, a highly-evacuated container portion attached to the inner surface of the substrate, a cathode, a first control electrode and a second control electrode provided inside the container portion. A shielding electrode is provided at the inner surface of the substrate so as to surround the window portion. Electrons collide with the X-ray target to generate X-rays. Electrons reflected on the X-ray target between the shielding electrodes are absorbed by the shielding electrodes, so an inner surface of the container portion is not charged. The electron emission from the cathode is not affected by the reflected electrons, so a change in target current is small, and thus X-rays of substantially constant intensity can be radiated. 1. An X-ray tube comprising:a radiopaque substrate including a slit-like window portion;an X-ray transmission window provided from a side of an outer surface of the substrate so as to close the window portion;an X-ray target provided at the window portion from a side of an inner surface of the substrate;a container portion attached to the inner surface of the substrate, an inside of the container portion being in a high vacuum state;an electron source provided to the inside of the container portion and arranged to supply electrons to the X-ray target;a first control electrode positioned between the electron source and the X-ray target inside the container portion, the first control electrode being arranged to draw electrons from the electron source; anda second control electrode positioned inside the container portion and between the first control electrode and the X-ray target, the second control electrode defining an irradiation area of an electron beam;wherein a shielding electrode is provided at the inner surface of the ...

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05-01-2017 дата публикации

LAMP HAVING SYNTHETIC CERAMIC GLASS ELECTRODES

Номер: US20170004960A1
Автор: LIN Wen-Fei
Принадлежит:

The present invention relates to a lamp having synthetic ceramic glass electrodes, which comprises a glass tube, a plurality of synthetic ceramic glass electrodes, and a plurality of connecting members. The plurality of connecting members are disposed between the glass tube and the plurality of synthetic ceramic glass electrodes. The plurality of connecting members have different thermal expansion coefficients. Thereby, by using the plurality of connecting members to connect the plurality of synthetic ceramic glass electrodes, the glass tube and the plurality of synthetic ceramic glass electrodes can be sealed tightly. 1. A lamp having synthetic ceramic glass electrodes , comprising:a glass tube;a plurality of connecting members, disposed at one or more end of said glass tube; anda plurality of synthetic ceramic glass electrodes, disposed at both ends of said glass tube, respectively, and said plurality of connecting members connecting one or more of said plurality of synthetic ceramic glass electrodes and said glass tube, respectively;where said plurality of connecting members have different thermal expansion coefficients, respectively.2. The lamp having synthetic ceramic glass electrodes of claim 1 , and further comprising one or more blocking members disposed at one or more end of said glass tube claim 1 , and said plurality of connecting members disposed against said one or more blocking member.3. The lamp having synthetic ceramic glass electrodes of claim 1 , wherein the neighboring surfaces if said plurality of connecting members are connected to one another; the side surfaces of said plurality of connecting members adjacent to said plurality of synthetic ceramic glass electrodes are attached to a side end surface of said plurality of synthetic ceramic glass electrode claim 1 , respectively; and said plurality of connecting members away from said plurality of synthetic ceramic glass electrodes are attached and fixed on the surface of said glass tube.4. The ...

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02-01-2020 дата публикации

CERAMIC/ALUMINUM BONDED BODY, INSULATING SUBSTRATE, LED MODULE, CERAMIC MEMBER, METHOD FOR PRODUCING CERAMIC/ALUMINUM BONDED BODY, AND METHOD FOR PRODUCING INSULATING SUBSTRATE

Номер: US20200006168A1
Автор: Terasaki Nobuyuki
Принадлежит:

In a ceramic/aluminum bonded body according to the present invention, a ceramic member and an aluminum member formed of aluminum or an aluminum alloy are bonded to each other, the ceramic member has a ceramic main body formed of silicon nitride, and an aluminum nitride layer or an aluminum oxide layer formed on the surface of the ceramic main body to which the aluminum member is bonded, the ceramic member and the aluminum member are bonded to each other through the aluminum nitride layer or the aluminum oxide layer, the ceramic main body is provided with silicon nitride phases and a glass phase formed between the silicon nitride phases, Al is present in a portion of the glass phase of the ceramic main body at an interface with the aluminum nitride layer or aluminum oxide layer. 1. A ceramic/aluminum bonded body comprising:a ceramic member; andan aluminum member formed of aluminum or an aluminum alloy,wherein the ceramic member and the aluminum member are bonded to each other,the ceramic member has a ceramic main body formed of silicon nitride, and an aluminum nitride layer or an aluminum oxide layer formed on a surface of the ceramic main body to which the aluminum member is bonded, and the aluminum member is bonded to the ceramic member through the aluminum nitride layer or the aluminum oxide layer,the ceramic main body is provided with silicon nitride phases and a glass phase formed between the silicon nitride phases, andAl is present in a portion of the glass phase of the ceramic main body at an interface with the aluminum nitride layer or the aluminum oxide layer.2. The ceramic/aluminum bonded body according to claim 1 ,wherein the aluminum nitride layer is formed on the surface of the ceramic main body to which the aluminum member is bonded, and the aluminum nitride layer has a first aluminum nitride layer having a nitrogen concentration of 50 atom % or more and 80 atom % or less and having a nitrogen concentration gradient in a thickness direction, and a ...

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14-01-2016 дата публикации

DISPLAY APPARATUS

Номер: US20160011459A1
Автор: DONG Yefei, Li Wenbo
Принадлежит:

An embodiment of the present invention discloses a display apparatus comprising: a display panel having a first side and a second side in opposite to the first side; a first polarizer arranged on the first side of the display panel; and a second polarizer arranged on either of the first side and the second side of the display panel, wherein an angle between a direction of a light transmission axis of the second polarizer and a direction of a light transmission axis of the first polarizer is adjustable. 1. A display apparatus comprising:a display panel having a first side and a second side opposite the first side;a first polarizer arranged on the first side of the display panel; anda second polarizer arranged on either the first side or the second side of the display panel,wherein an angle between a direction of a light transmission axis of the second polarizer and a direction of a light transmission axis of the first polarizer is adjustable.2. The display apparatus according to claim 1 , wherein the first polarizer at least overlaps partially with the second polarizer in a direction perpendicular to a surface of the display panel.3. The display apparatus according to claim 1 , wherein the first polarizer is fixed on the first side of the display panel claim 1 , and wherein the angle between the direction of the light transmission axis of the second polarizer and the direction of the light transmission axis of the first polarizer is adjusted by rotation of the second polarizer.4. The display apparatus according to claim 3 , wherein the second polarizer has a rotation angle of 0-360 degrees.5. The display apparatus according to claim 3 , wherein the second polarizer has a substantially circular shape.6. The display apparatus according to claim 3 , further comprising a rotation adjusting member configured to adjust a rotation angle of the second polarizer.7. The display apparatus according to claim 6 , further comprising a rotation control module configured to control ...

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14-01-2021 дата публикации

LIGHT-EMITTING MODULE FOR VEHICLE LAMP

Номер: US20210010652A1
Принадлежит:

Disclosed is a light-emitting module, comprising: a circuit board, a conductive layer, a light-emitting device, and an adhesive material. The circuit board comprises a device-attachment area, the conductive layer being disposed on the device-attachment area, the light-emitting device being disposed on the conductive layer and electrically connected to the circuit board through the conductive layer, and the adhesive layer being used for connecting the light-emitting device to the circuit board, wherein a curing temperature of the adhesive layer is lower than a melting point of the conductive layer. Adopting the aforementioned technical means, the degree of offset in the position of the light-emitting device after reflow soldering can be greatly reduced. In addition, a vehicle lamp device using the light-emitting module is also provided. 1. A light-emitting module for vehicle lamp , comprising:a circuit board comprising a device-attachment area;a conductive layer disposed on the device-attachment area;a light-emitting device disposed on the conductive layer and electrically connected to the circuit board through the conductive layer; andan adhesive material in shape of a single droplet and disposed only at one peripheral edge of the device-attachment area, wherein the adhesive material exclusively contacts a lateral side and a bottom side of the light-emitting device and does not cover a top emitting surface of the light-emitting device, for connecting the light-emitting device to the circuit board without entirely surrounding the light-emitting device.2. The light-emitting module of claim 1 , wherein the adhesive material has a first portion and a second portion connected with the first portion claim 1 , the first portion is formed inside a gap between the light-emitting device and the circuit board claim 1 , and the second portion is formed outside the gap.3. The light-emitting module of claim 2 , wherein the first portion of the adhesive material is in contact with ...

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09-01-2020 дата публикации

LIGHT-EMITTING MODULE FOR VEHICLE LAMP

Номер: US20200011498A1
Принадлежит:

Disclosed is a light-emitting module, comprising: a circuit board, a conductive layer, a light-emitting device, and an adhesive material. The circuit board comprises a device-attachment area, the conductive layer being disposed on the device-attachment area, the light-emitting device being disposed on the conductive layer and electrically connected to the circuit board through the conductive layer, and the adhesive layer being used for connecting the light-emitting device to the circuit board, wherein a curing temperature of the adhesive layer is lower than a melting point of the conductive layer. Adopting the aforementioned technical means, the degree of offset in the position of the light-emitting device after reflow soldering can be greatly reduced. In addition, a vehicle lamp device using the light-emitting module is also provided. 1. A light-emitting module for vehicle lamp , comprising:a circuit board comprising a device-attachment area;a conductive layer disposed on the device-attachment area;a light-emitting device disposed on the conductive layer and electrically connected to the circuit board through the conductive layer; andan adhesive material having at least one point structure disposed at a portion of a periphery of the device-attachment area, wherein the adhesive material exclusively contacts a lateral side and a bottom side of the light-emitting device and does not cover a top emitting surface of the light-emitting device, for connecting the light-emitting device to the circuit board without entirely surrounding the light-emitting device, and a curing temperature of the adhesive material is lower than a melting point of the conductive layer;wherein the light-emitting device is mounted on the device-attachment area after the adhesive material is disposed on the circuit board.2. The light-emitting module of claim 1 , wherein the adhesive material has a first portion and a second portion connected with the first portion claim 1 , the first portion is ...

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14-01-2016 дата публикации

MANUFACTURING METHOD OF HIGH-PRESSURE DISCHARGE LAMP AND SEALED PART STRUCTURE FOR HIGH-PRESSURE DISCHARGE LAMP

Номер: US20160013008A1
Принадлежит:

A method of manufacturing a high-pressure discharge lamp, comprising the steps of: inserting a mount into an interior of a glass tube having an outer diameter smaller than an inner diameter of an end part of a sealed container; radially constricting the glass tube at a first position located away from a metallic foil toward a tip of an electrode; sealing the mount by a region of the glass tube that ranges from the first position to at least the other end of the metallic foil; protruding the electrode out of the glass tube located away from the first position toward the tip of the electrode to form a glass-tube air-tightly sealed mount; inserting the sealed mount into the end part of the sealed container; and radially constricting the end part of the sealed container to sealing the glass tube of the sealed mount by the end part. 1. A method of manufacturing a high-pressure discharge lamp , comprising the steps of:forming a mount including a metallic foil, an electrode and an external lead rod by welding the electrode to one end of the metallic foil and welding the external lead rod to the other end of the metallic foil;inserting the mount into an interior of a glass tube having an outer diameter smaller than an inner diameter of an end part of a sealed container;radially constricting the glass tube at a first position located away from the metallic foil toward a tip of the electrode;air-tightly sealing the mount by a region of the glass tube, the region ranging from the first position to at least the other end of the metallic foil;protruding the electrode out of the glass tube located away from the first position toward the tip of the electrode so as to form a glass-tube air-tightly sealed mount;inserting the glass-tube air-tightly sealed mount into the end part of the sealed container such that the tip of the electrode is inserted first; andradially constricting the end part so as to air-tightly sealing the glass tube of the glass-tube air-tightly sealed mount by ...

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14-01-2021 дата публикации

Die Attach Methods and Semiconductor Devices Manufactured based on Such Methods

Номер: US20210013132A1
Принадлежит:

A semiconductor device includes a carrier, a power semiconductor die that includes first and second opposite facing main surfaces, a side surface extending from the first main surface to the second main surface, and first and second electrodes disposed on the first and second main surfaces, respectively, a die attach material arranged between the carrier and the first electrode, wherein the die attach material forms a fillet at the side surface of the power semiconductor die, wherein a fillet height of the fillet is less than about 95% of a height of the power semiconductor die, wherein the height of the power semiconductor die is a length of the side surface, and wherein a maximum extension of the die attach material over edges of a main surface of the power semiconductor die facing the die attach material is less than about 200 micrometers. 1. A semiconductor device , comprising:a carrier;a power semiconductor die that comprises first and second opposite facing main surfaces, a side surface extending from the first main surface to the second main surface, and first and second electrodes disposed on the first and second main surfaces, respectively;a die attach material arranged between the carrier and the first electrode,wherein the die attach material forms a fillet at the side surface of the power semiconductor die,wherein a fillet height of the fillet is less than about 95% of a height of the power semiconductor die,wherein the height of the power semiconductor die is a length of the side surface, andwherein a maximum extension of the die attach material over edges of a main surface of the power semiconductor die facing the die attach material is less than about 200 micrometers.2. The semiconductor device of claim 1 , wherein the height of the power semiconductor die is less than about 400 micrometers.3. The semiconductor device of claim 2 , wherein the height of the power semiconductor die is less than about 150 micrometers.4. The semiconductor device of claim ...

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09-01-2020 дата публикации

Liquid Crystal Polymer for Mounting X-ray Window

Номер: US20200013578A1
Принадлежит: Moxtek Inc

An x-ray window can include an adhesive layer sandwiched between and providing a hermetic seal between a thin film and a housing. The adhesive layer can include liquid crystal polymer. The liquid crystal polymer can be opaque, gas-tight, made of low atomic number elements, able to withstand high temperature, low outgassing, low leakage, able to relieve stress in the x-ray window thin film, capable of bonding to many different materials, or combinations thereof.

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09-01-2020 дата публикации

Semiconductor Package

Номер: US20200013743A1
Принадлежит: SAMSUNG ELECTRONICS CO., LTD.

A semiconductor package includes a semiconductor chip including a body, a connection pad, a passivation film, a first connection bump disposed, and a first coating layer; an encapsulant covering at least a portion of the semiconductor chip; and a connection structure including an insulating layer, a redistribution layer, and a connection via. The first connection bump includes a low melting point metal, the redistribution layer and the connection via include a conductive material, and the low melting point metal has a melting point lower than a melting point of the conductive material. 1. A semiconductor package , comprising:a semiconductor chip including a body having an active surface on which a connection pad is disposed and an inactive surface opposing the active surface, a passivation film disposed on the active surface of the body and covering at least a portion of the connection pad, a first connection bump disposed on the passivation film and electrically connected to the connection pad, and a first coating layer disposed on the passivation film and covering at least a portion of a side surface of the first connection bump;an encapsulant covering at least a portion of the semiconductor chip; anda connection structure including an insulating layer disposed on the first coating layer of the semiconductor chip, a redistribution layer disposed on the insulating layer, and a connection via passing through the insulating layer and electrically connecting the first connection bump to the redistribution layer,wherein the first connection bump includes a low melting point metal,the redistribution layer and the connection via include a conductive material, andthe low melting point metal has a melting point lower than a melting point of the conductive material.2. The semiconductor package of claim 1 , wherein the low melting point metal includes a solder claim 1 , andthe conductive material includes copper (Cu).3. The semiconductor package of claim 1 , wherein a ...

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15-01-2015 дата публикации

Radiation window with support structure

Номер: US20150016593A1
Принадлежит: Individual

An improved radiation window comprises a film permeable to radiation disposed on a support structure. The support structure comprises a primary transmissive area comprising a plurality of support members defining a plurality of apertures for radiation to pass through; a flange disposed around the periphery of the primary transmissive area having generally greater mechanical rigidity than the primary transmissive area; and a transition region disposed between, and contiguous with, the primary transmissive area and the flange; the transition region having generally greater mechanical rigidity than the primary transmissive area and generally lesser mechanical rigidity than the flange, thereby providing an intermediate rigidity transition between the dissimilar rigidities of the primary transmissive area and the flange. A radiation detection system comprises a sensor configured to detect radiation, disposed behind such an improved radiation window.

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14-01-2021 дата публикации

VAPOR CHAMBER WITH CIRCUIT UNIT

Номер: US20210015002A1
Автор: CHENG Cheng-Chen
Принадлежит:

A vapor chamber with circuit unit is provided, which has a first flexible substrate structure and a second flexible substrate structure, wherein the first flexible substrate structure and the second flexible substrate structure relatively enclose a working fluid. A plurality of wicking spaces is formed between the first flexible substrate structure and the second flexible substrate structure. A circuit unit is formed at least partially on the side of the first flexible substrate structure away from the working fluid, so as to integrate the electronic components and circuit units, and to evenly dissipate the heat generated by the electronic components and circuit units. The vapor chamber with circuit unit makes an effective improvement to the space efficiency of the electronic device. 1. A vapor chamber with circuit unit , comprising:a plate-like first flexible substrate structure, a plate-like second flexible substrate structure, a working fluid and a wicking structure, wherein said first flexible substrate structure and said second flexible substrate structure relatively enclose the working fluid, and the first flexible substrate structure and the second flexible substrate structure are combined through low-temperature hot melting or low-temperature sintering to from a seal edge, thus making an air-tight encapsulation of the working fluid between the first flexible substrate structure and the second flexible substrate structure;a first conductive metal film is formed on the side of the first flexible substrate structure facing toward the working fluid; a first polymer film is formed on the side of the first flexible substrate structure away from the working fluid; the first polymer film is made of non-conducting polymers with high thermal stability;the second flexible substrate structure is a thin plate made of metal;the wicking structure is configured between the first flexible substrate structure and the second flexible substrate structure, so that a plurality of ...

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09-01-2020 дата публикации

ANTI-ELECTROMAGNETIC INTERFERENCE CIRCUIT BOARD

Номер: US20200015350A1
Принадлежит:

An anti-electromagnetic interference circuit board includes a circuit board and a magnetic conductor. The circuit board has a plurality of vias, and the magnetic conductor is covered on the circuit board to cover some of the vias. The magnetic conductor includes a plate, a carrier, a sprayed magnetic conductor, and a wave absorbing magnetic conductor. 1. An anti-electromagnetic interference circuit board , comprising:a circuit board, having a plurality of vias, anda magnetic conductor, covered on the circuit board to cover some of the vias.2. The anti-electromagnetic interference circuit board according to claim 1 , wherein the magnetic conductor comprises a plate or a carrier.3. The anti-electromagnetic interference circuit board according to claim 2 , wherein the plate comprises a plurality of openings to accommodate elements on the circuit board.4. The anti-electromagnetic interference circuit board according to claim 2 , wherein the plate further comprises an adhesive layer to be attached on the circuit board.5. The anti-electromagnetic interference circuit board according to claim 2 , wherein the carrier comprises a plurality of fixing elements to fix the carrier and the plate on the circuit board.6. The anti-electromagnetic interference circuit board according to claim 2 , further comprising a plurality of clamping elements to clamp the plate on the circuit board.7. The anti-electromagnetic interference circuit board according to claim 2 , further comprising a grounding terminal to connect to the plate or the carrier.8. The anti-electromagnetic interference circuit board according to claim 1 , wherein the magnetic conductor is a sprayed magnetic conductor claim 1 , or a wave absorbing magnetic conductor. This application claims the priority benefit of TW application serial No. 107209124, filed on Jul. 5, 2018. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of the specification.The disclosure ...

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17-01-2019 дата публикации

LED HEADLAMP WITH DAYTIME RUNNING LAMP

Номер: US20190016247A1
Автор: Sassoon Charles I.
Принадлежит:

Improved light emitting diode (LED) vehicle headlamps having a dedicated daytime running lamp (DRL) component are described. In various embodiments, a combination Low Beam/DRL headlamp is provided, which uses pulse width modulation (PWM) detection to determine which of the two internal LED light sources (Low Beam or DRL) is powered on. If the Low Beam/DRL headlamp detects a PWM signal on the Low Beam voltage input then it switches to drive the DRL LEDs. If, alternatively, it detects a steady state input voltage then it switches to drive the Low Beam LEDs. 1. A control circuit for operating a daytime running lamp (DRL) component of a vehicle headlamp comprising:a pulse width modulation (PWM) detection circuit connected to a three-contact power connector comprising a low beam contact, a high beam contact, and a ground;a switching circuit connected to the PWM detection circuit;a DRL LED driver and application circuit connected to one or more DRL LEDs constructed and arranged specifically for DRL functionality, to output daytime running light under daylight conditions when the vehicle's engine is turned on; anda low beam LED driver and application circuit connected to one or more low beam LEDs constructed and arranged to output low beam head light when the low beam is selectively turned on,wherein the control circuit is configured to continuously monitor input voltage, to activate the DRL LED(s) when a PWM signal is detected on the low beam contact, and to activate the low beam LED(s) when a steady state input voltage is detected on the low beam contact or the high beam contact.2. The control circuit of claim 1 , wherein the power connector comprises a three-pin connector comprising a low beam pin claim 1 , a high beam pin claim 1 , and a ground.3. The control circuit of claim 1 , wherein the input voltage on the low beam contact is used to power the DRL LED(s) or the low beam LED(s) claim 1 , and the headlamp requires no direct connection to the vehicle's battery.4. ...

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21-01-2016 дата публикации

METHOD OF MANUFACTURING FLAT PANEL DISPLAY

Номер: US20160020056A1
Автор: Kim Taekon
Принадлежит:

A method of manufacturing a flat panel display is disclosed. In one aspect, the method includes forming a plurality of display elements over a first substrate and forming over the first substrate or a second substrate a plurality of sealing units respectively surrounding the display elements. The method further c includes arranging the first and second substrates to face each other and emitting a laser beam to the sealing units so as to bond the first and second substrates. The emitting includes (a) emitting a first laser beam, from a first laser source, clockwise or counterclockwise along perimeters of the sealing units and (b) substantially simultaneously emitting a second laser beam, from a second laser source, to facing sides of adjacent ones of the sealing units.

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18-01-2018 дата публикации

Improved materials and structures for large area x-ray dectector windows

Номер: US20180019089A1
Принадлежит: Luxel Corp

Embodiments for detectors windows up to 100 mm are disclosed.

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18-01-2018 дата публикации

MANUFACTURING METHOD OF HIGH-PRESSURE DISCHARGE LAMP AND SEALED PART STRUCTURE FOR HIGH-PRESSURE DISCHARGE LAMP

Номер: US20180019090A1
Принадлежит:

A method of manufacturing a high-pressure discharge lamp, comprising the steps of: inserting a mount into an interior of a glass tube having an outer diameter smaller than an inner diameter of an end part of a sealed container; radially constricting the glass tube at a first position located away from a metallic foil toward a tip of an electrode; sealing the mount by a region of the glass tube that ranges from the first position to at least the other end of the metallic foil; protruding the electrode out of the glass tube located away from the first position toward the tip of the electrode to form a glass-tube air-tightly sealed mount; inserting the sealed mount into the end part of the sealed container; and radially constricting the end part of the sealed container to sealing the glass tube of the sealed mount by the end part. 1. A sealed part structure for a high-pressure discharge lamp , the high-pressure discharge lamp including a luminous tube part and a sealed part , the sealed part being embedded with a glass tube including a metallic foil in an interior thereof , one end of the metallic foil being attached to an electrode , a tip of the electrode being introduced into the luminous tube part , the other end of the metallic foil being attached to an external lead rod , the external lead rod being extended out of the sealed part , wherein ,before being embedded in the sealed part, the glass tube is radially constricted at a first position located away from the metallic foil toward the tip of the electrode and,after the radially constriction is completed, the metallic foil is air-tightly sealed by the glass tube.2. The sealed part structure according to claim 1 , whereinthe electrode has a shaft part, anda distance from a surface of the shaft part of the electrode to an outer circumference of the electrode side end of the glass tube is 0.1 mm or less. This application is a divisional application of U.S. patent application Ser. No. 14/747,459, filed Jun. 23, 2015 ...

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17-01-2019 дата публикации

Damping ring

Номер: US20190019665A1
Принадлежит: Xylem IP Management SARL

A UV radiator unit includes an elongated gas discharge lamp with an essentially cylindrical UV transparent lamp body with sealed ends, which encloses a gas volume. The lamp body defines a longitudinal axis and has an outer diameter. A UV transparent sleeve tube with an inner diameter, which surrounds the lamp body and wherein the inner diameter is larger than the outer diameter of the lamp body. At least one damping ring is interposed between the lamp body and the sleeve tube. The damping ring includes a first side element, a second side element and at least one connecting portion. An axial distance is provided between the first side element and the second side element. The at least one connecting portion physically connects the first side element and the second side element.

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21-01-2021 дата публикации

X-RAY SOURCE WITH ROTATING ANODE AT ATMOSPHERIC PRESSURE

Номер: US20210020398A1
Принадлежит:

An x-ray source includes an anode assembly having at least one surface configured to rotate about an axis, the at least one surface in a first region. The x-ray source further includes an electron-beam source configured to emit at least one electron beam configured to bombard the at least one surface of the anode assembly. The electron-beam source includes a housing, a cathode assembly, and a window. The housing at least partially bounds a second region and comprises an aperture. The cathode assembly is configured to generate the at least one electron beam within the second region. The window is configured to hermetically seal the aperture, to maintain a pressure differential between the first region and the second region, and to allow the at least one electron beam to propagate from the second region to the first region 1. An x-ray source comprising:an anode assembly comprising at least one surface configured to rotate about an axis, the at least one surface in a first region; a housing at least partially bounding a second region, the housing comprising an aperture;', 'a cathode assembly configured to generate the at least one electron beam within the second region; and', 'a window configured to hermetically seal the aperture, to maintain a pressure differential between the first region and the second region, and to allow the at least one electron beam to propagate from the second region to the first region., 'an electron-beam source configured to emit at least one electron beam configured to bombard the at least one surface of the anode assembly, the electron-beam source comprising2. The x-ray source of claim 1 , wherein the window has a thickness in a range of 0.1 micron to 10 microns and a width in a range of 10 microns to 2000 microns.3. The x-ray source of claim 1 , wherein the window comprises at least one material in the group consisting of: diamond claim 1 , silicon claim 1 , silicon nitride claim 1 , boron nitride claim 1 , boron carbide claim 1 , ...

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26-01-2017 дата публикации

Radiation Source Assembly

Номер: US20170022073A1
Автор: Penhale Douglas
Принадлежит:

There is disclosed a coupling for a radiation source assembly that comprises an elongate radiation source and an elongate radiation transparent protective sleeve for receiving the elongate radiation source. The coupling disengages in two stages when it is desired to remove the elongate radiation source for servicing (or any other purpose). The coupling is disengaged from a first position in which a seal is made between the sleeve bolt element and the lamp plug element. When this action takes place, the lamp plug element is still secure with respect to the sleeve bolt element but since there is no seal between the two, any fluid which has flooded the elongate radiation source (e.g., due to breakage or other damage to the protective sleeve) will emerge from the coupling warning the operator not to fully disengage the lamp plug element from the sleeve bolt element. If no such fluid is seen by operator, the operator may continue to disengage the lamp plug element from the sleeve bolt element to withdraw the elongate radiation source from the elongate radiation transparent protective sleeve. 1. A radiation source assembly comprising:an elongate radiation source;an elongate radiation transparent protective sleeve for receiving the elongate radiation source;a sleeve bolt element configured to secure the elongate radiation transparent protective sleeve to a fluid treatment housing;a lamp plug element configured to: (i) be reversibly engageable with respect to the elongate radiation source, and (ii) supply electrical power to the elongate radiation source; anda first seal element configured to be moveable between a first position in which the first seal provides a substantially fluid tight seal between the sleeve bolt element and the lamp plug element and a second position in which the sleeve bolt element and the lamp plug element are unsealed upon non-rotational retraction of the lamp plug element in a direction substantially parallel to a longitudinal axis of the elongate ...

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24-04-2014 дата публикации

Manufacturing Method for Glass Panel with Glazing Gasket and Glazing Gasket Molding Apparatus

Номер: US20140110044A1
Автор: NAGASE Yugo, OKAMOTO Yohei
Принадлежит:

In a manufacturing method for a glass panel with a gasket, an elastic member is placed on a table, and a multilayer glass panel is placed thereupon. A die is pressed against a top surface of the multilayer glass panel, thereby compressing the elastic member and glazing gasket molding material together with adhesive ejected from the application nozzle and applied to the top surface of the multilayer glass panel. 1. A manufacturing method for a glass panel with a glazing gasket for ejecting glazing gasket molding material together with adhesive from an application nozzle onto a periphery of a top surface of the glass panel that is facing upwards and placed on a table , the glass panel and the application nozzle being moved relative to one another to apply the glazing gasket molding material , the method comprising:placing an elastic member on the table, the elastic member being made from an elastically deformable material;placing the glass panel on the elastic member; andapplying the glazing gasket molding material to the top surface of the glass panel by ejecting the glazing gasket together with the adhesive slanting downward from an outlet to the rear in a direction of movement of the application nozzle, while a portion of the application nozzle in which the outlet is formed is pressed against the top surface of the glass panel to compress the elastic member.2. The manufacturing method for a glass panel with a glazing gasket according to claim 1 , wherein the glazing gasket molding material is applied by starting at an application starting point located on the fixture plate and by finishing at an application finishing point located on the fixture s late the method further comprising:detachably attaching a fixture plate to a portion of the periphery of the top surface of the glass panel so that the fixture plate is immoveable,applying the glazing gasket molding material together with the adhesive to the periphery of the top surface of the glass panel,cutting portions ...

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25-01-2018 дата публикации

X-RAY EMITTER

Номер: US20180025883A1
Принадлежит:

An X-ray emitter includes an emitter housing in which an X-ray tube is disposed and held in the emitter housing by a fixing facility. The fixing facility includes a fixed bearing disposed on the cathode side and a floating bearing disposed on the anode side. At least the floating bearing has at least one damping element. In the X-ray emitter, the X-ray tube is aligned inside the emitter housing and fixed in a respectively low-vibration or vibration-damped manner, resulting in a more stable focus position relative to a beam exit and also a correspondingly improved image quality. 1. An X-ray emitter , comprising:an emitter housing;an X-ray tube disposed in said emitter housing;a fixing facility holding said X-ray tube in said emitter housing;said fixing facility including a fixed bearing disposed on a cathode side and a floating bearing disposed on an anode side; andat least said floating bearing having at least one damping element.2. The X-ray emitter according to claim 1 , wherein said fixed bearing has at least one damping element.3. The X-ray emitter according to claim 1 , wherein said X-ray tube is an all-metal tube.4. The X-ray emitter according to claim 1 , wherein said X-ray tube is a metal center section tube.5. The X-ray emitter according to claim 1 , wherein said X-ray tube is a metal ceramic tube.6. The X-ray emitter according to claim 1 , wherein said emitter housing is an X-ray emitter housing.7. The X-ray emitter according to claim 1 , wherein said emitter housing is a single-tank housing.8. The X-ray emitter according to claim 1 , wherein said emitter housing is a duo-block.9. The X-ray emitter according to claim 1 , wherein said fixed bearing includes a tube flange and a fixing flange claim 1 , said tube flange is fixed rigidly to said X-ray tube and said fixing flange is part of said emitter housing.10. The X-ray emitter according to claim 9 , wherein said tube flange encloses an outer periphery of a beam exit window disposed in said X-ray tube. This ...

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29-01-2015 дата публикации

ELECTRON EXIT WINDOW FOIL

Номер: US20150028220A1
Принадлежит: TETRA LAVAL HOLDINGS & FINANCE S.A.

An electron exit window foil for use with a high performance electron beam generator operating in a corrosive environment is provided. The electron exit window foil comprises a sandwich structure having a film of Ti, a first layer of a material having a higher thermal conductivity than Ti, and a flexible second layer of a material being able to protect said film from said corrosive environment, wherein the second layer is facing the corrosive environment. 1. An electron exit window foil for use with a high performance electron beam generator operating in a corrosive environment , the electron exit window foil comprising a sandwich structure havinga film of Ti,a first layer of a material having a higher thermal conductivity than Ti, anda flexible second layer of a material being able to protect said film from said corrosive environment, wherein the second layer is facing the corrosive environment.2. The electron exit window foil according to claim 1 , wherein the first layer is arranged between the film and the second layer.3. The electron exit window foil according to claim 1 , wherein the Ti film is arranged between the first layer and the second layer.4. The electron exit window foil according to claim 1 , wherein the first layer may be selected from a group consisting of materials having a ratio between thermal conductivity and density being higher than of Ti.5. The electron exit window foil according to claim 1 , wherein the first layer is selected from the group consisting of Al claim 1 , Cu claim 1 , Ag claim 1 , Au claim 1 , and Mo.6. The electron exit window foil according to claim 1 , wherein the second layer is selected from the group consisting of AlO claim 1 , Zr claim 1 , Ta claim 1 , and Nb.7. The electron exit window foil according to claim 1 , further comprising at least one adhesive barrier coating between the Ti film and the first layer and/or the second layer.8. The electron exit window foil according to claim 1 , further comprising at least one ...

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28-01-2016 дата публикации

Imaging Device, Medium Transporting Apparatus, and Printing Apparatus

Номер: US20160028914A1
Принадлежит:

An imaging device includes an imaging unit that includes an imaging element for imaging a lower surface of continuous forms paper, an image processing unit that image-processes an image of the lower surface of the continuous forms paper captured by the imaging unit, a cable that electrically connects the imaging unit and the image processing unit with each other, and an electric box that covers the imaging element, the image processing unit, and the cable and functions as an electromagnetic shield. 1. An imaging device comprising:an imaging unit that includes an imaging element for imaging a medium;an image processing unit that image-processes an image of the medium captured by the imaging unit;an electrical transmission line that electrically connects the imaging unit and the image processing unit with each other; andan electromagnetic shield that covers the imaging element, the image processing unit, and the electrical transmission line.2. The imaging device according to claim 1 ,wherein in the electromagnetic shield, the imaging unit and the image processing unit are disposed to be separated from each other, and a thermal insulation member which partitions the imaging element and the image processing unit is disposed between the imaging unit and the image processing unit.3. The imaging device according to claim 1 , further comprising:a cooling fan that cools an image processing unit.4. A medium transporting apparatus comprising:a transporting unit that transports a medium; andan imaging device that images the medium transported by the transporting unit, an imaging unit that includes an imaging element for imaging a medium,', 'an image processing unit that image-processes an image of the medium captured by the imaging unit,', 'an electrical transmission line that electrically connects the imaging unit and the image processing unit with each other, and', 'an electromagnetic shield that covers the imaging element, the image processing unit, and the electrical ...

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29-01-2015 дата публикации

MOUNTING SYSTEM FOR SEALING AND ALIGNING THE BURNER OF THE LAMP AT THE CENTRE OF ITS BASE

Номер: US20150028736A1

A lamp having a longitudinal axis, comprising of a burner pinched at one end and a cement less base holding the contact points protruding from the burner. At least one end of the burner is sealed and aligned at the centre of the base in an upright direction following the lamp axis by means of a spring clip, which is mounted from the side of the pinch of the burner and does not interfere with the lead wires. 1. A lamp having a longitudinal axis , comprising of a burner pinched at one end , and a cement-less base in the form of a trough-shaped holder to hold contact points of supply lead protruding from the burner , wherein , at least one end of the burner is sealed and aligned at the center of the cement-less base in an upright direction following the longitudinal axis by means of a spring clip; wherein said spring clip: (a) is mounted from a side of the pinch of the burner; (b) does not occupy the space below the pinch of the burner in the cement-less base; and (c) does not interfere with lead wires.2. The lamp as claimed in claim 1 , wherein the spring clip does not interact with the cement-less base of the pinch and engages the pinch higher in the cement-less base.3. The lamp as claimed in claim 1 , wherein the spring clip seals and aligns one end of the burner at the center of the cement-less base by a form fit or spring force.4. The lamp as claimed in claim 1 , wherein the spring clip has a first limb and a second limb claim 1 , which gets engaged inside the cement-less base and mounts the lamp from a top side of the cement-less base.5. The lamp as claimed in claim 4 , wherein the first limb extends in a direction transverse to the longitudinal axis of the lamp and the second proximate limb is disposed in a direction parallel to the longitudinal axis of the lamp.6. The lamp as claimed in claim 5 , wherein the second limb runs along one side wall of the cement-less base extending to a bottom of the cement-less base and controls an insertion length of the lamp in ...

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25-01-2018 дата публикации

METHODS, DEVICES, AND SYSTEMS FOR FILTERING ELECTROMAGNETIC INTERFERENCE

Номер: US20180027705A1
Автор: McNally Stephen D.
Принадлежит:

Provided herein are methods, devices, and systems that relate to electromagnetic interference (EMI) filters that, in certain embodiments, comprise: (a) a housing comprising a substantially enclosed first compartment and a substantially enclosed second compartment; (b) a first circuit card located in the first compartment of the housing that converts a signal transmitted on a conductive based medium to a signal transmitted on a non-conductive based medium; (c) a second circuit card located in the second compartment of the housing that converts a signal transmitted on a non-conductive based medium to a signal transmitted on a conductive based medium; (d) at least one non-conductive based medium that transmits a signal from the first circuit card to the second circuit card; and (e) at least one waveguide through which the non-conductive based medium passes from the first compartment to the second compartment. 1. An electromagnetic interference (EMI) filter comprising:(a) a housing comprising a substantially enclosed first compartment and a substantially enclosed second compartment;(b) a first circuit card located in the first compartment of the housing that converts a signal transmitted on a conductive based medium to a signal transmitted on a non-conductive based medium;(c) a second circuit card located in the second compartment of the housing that converts a signal transmitted on a non-conductive based medium to an Ethernet signal that is compliant with the IEEE 802.3 family of standards;(d) at least one non-conductive based medium that transmits a signal from the first circuit card to the second circuit card; and(e) at least one waveguide through which the non-conductive based medium passes from the first compartment to the second compartment;the filter providing a radiated electromagnetic emission amplitude (dBμV/m) versus frequency (Hz) graph having a largest peak within a frequency range of about 30 MHz to about 1 GHz that is equal to or less than about 44 dBμV/m ...

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04-02-2016 дата публикации

High Strength Carbon Fiber Composite Wafers For Microfabrication

Номер: US20160031188A1
Принадлежит:

A method of making a high strength carbon fiber composite (CFC) wafer with low surface roughness comprising at least one sheet of CFC including carbon fibers embedded in a matrix. A stack of at least one sheet of CFC is provided with the stack having a first surface and a second surface. The stack is pressed between first and second pressure plates with a porous breather layer disposed between the first surface of the stack and the first pressure plate. The stack is cured by heating the stack to a temperature of at least 50° C. 1. A method of making a wafer , the method comprising:a. providing a stack of at least one sheet of carbon fiber composite (CFC) including carbon fibers embedded in a matrix, the stack having a first surface and a second surface;b. pressing the stack between first and second pressure plates with a porous breather layer disposed between the first surface of the stack and the first pressure plate; andc. curing by heating the stack to a temperature of at least 50° C., defining a first curing process.2. The method of claim 1 , further comprising disposing a solid claim 1 , polished layer between the second surface of the stack and the second pressure plate during the first curing process with the polished layer having a root mean square surface roughness Rq of less than 300 nm in an area of 100 micrometers by 100 micrometers claim 1 , on a side facing the stack.3. The method of claim 1 , further comprising:a. releasing pressure from the stack;b. removing the porous layer from the stack;c. disposing a polished layer on each side of the stack, the polished layers having a root mean square surface roughness Rq of less than 300 nm in an area of 100 micrometers by 100 micrometers, on a side facing the stack; andd. pressing the stack and polished layers between first and second pressure plates;e. curing by heating the stack to a temperature of at least 50° C., defining a second curing process.4. The method of claim 1 , wherein the porous breather layer ...

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23-01-2020 дата публикации

GLASS-METAL FEEDTHROUGH

Номер: US20200027715A1
Автор: Hettler Robert
Принадлежит: SCHOTT AG

A glass-metal feedthrough consists of an external conductor, a glass material and an internal conductor. The internal conductor has a coefficient of expansion α, the glass material has a coefficient of expansion α, and the external conductor has a coefficient of expansion α. The coefficient of expansion of the internal conductor αis greater than the coefficient of expansion of the glass material αand the coefficient of expansion of the external conductor αis at least 2 ppm/K, such as at least 4 ppm/K, greater than the coefficient of expansion of the glass material αin the temperature range of 20° C. to the glass transformation temperature. 1. A glass-metal feedthrough , consisting of:{'sub': 'glass', 'a glass material having a coefficient of expansion α;'}{'sub': external', 'glass', 'external', 'glass, 'an external conductor having a coefficient of expansion αthat is greater than the coefficient of expansion of the glass material α, a difference between the coefficient of expansion of the external conductor αand the coefficient of expansion of the glass material αis at least 2 ppm/K in a temperature range of 20° C. to a glass transformation temperature of the glass material; and'}{'sub': internal', 'glass, 'an internal conductor having a coefficient of expansion αthat is greater than the coefficient of expansion of the glass material α.'}2. The glass-metal feedthrough of claim 1 , wherein the coefficient of expansion of the internal conductor αis 1.1 times to 4 times greater than the coefficient of expansion of the glass material α.3. The glass-metal feedthrough of claim 1 , wherein the external conductor consists of a nickel-free claim 1 , non-corrosive claim 1 , chemically stable steel.4. The glass-metal feedthrough of claim 3 , wherein the external conductor consists of an austenitic high grade steel.5. The glass-metal feedthrough of claim 3 , wherein the external conductor consists of a ferritic high grade stainless steel.6. The glass-metal feedthrough of claim ...

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28-01-2021 дата публикации

RADIATION ANODE TARGET SYSTEMS AND METHODS

Номер: US20210027973A1
Принадлежит:

Presented systems and methods facilitate efficient and effective generation and delivery of radiation. A radiation generation system can comprise: a particle beam gun, a high energy dissipation anode target (HEDAT); and a liquid anode control component. In some embodiments, the particle beam gun generates an electron beam. The HEDAT includes a solid anode portion (HEDAT-SAP) and a liquid anode portion (HEDAT-LAP) that are configured to receive the electron beam, absorb energy from the electron beam, generate a radiation beam, and dissipate heat. The radiation beam can include photons that can have radiation characteristics (e.g., X-ray wavelength, ionizing capability, etc.). The liquid anode control component can control a liquid anode flow to the HEDAT. The HEDAT-SAP and HEDAT-LAP can cooperatively operate in radiation generation and their configuration can be selected based upon contribution of respective HEDAT-SAP and the HEDAT-LAP characteristics to radiation generation. 1. A therapeutic radiation generation system comprising:a particle beam gun that generates an electron beam;a high energy dissipation anode target (HEDAT), configured to receive the electron beam, absorb energy from the electron beam, generate a radiation beam, and dissipate heat, wherein the (HEDAT) includes a plurality of channels; anda liquid anode control component configured to control a flow of a liquid anode to the HEDAT.2. The therapeutic radiation generation system of claim 1 , wherein the plurality of channels are configured to accommodate a plurality of liquid anode flows.3. The therapeutic radiation generation system of claim 2 , wherein a first one of the plurality of channels is configured to accommodate a first liquid anode flow and a second one of the plurality of channels is configured to accommodate a second liquid anode flow.4. The therapeutic radiation generation system of claim 2 , wherein the first liquid anode flow and the second liquid anode flow are different.5. The ...

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01-02-2018 дата публикации

Headlamp fastening system for motor vehicles and method

Номер: US20180029524A1
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

A headlamp fastening system for a vehicle is provided herein. The headlamp fastening system includes a support structure, a headlamp structure, and an alignment element. The alignment element is configured to align and fix the headlamp structure with the support structure with respect to the z-direction of the vehicle. The alignment element holds the sup port structure and the headlamp in an alignment position. In the alignment position the support structure and the headlamp structure are relatively displaceable in the x-, y-, and z- direction relative to one another. The alignment element fixes the support structure and the headlamp in the fixed position, wherein, upon the alignment element fixing the support structure and the headlamp structure relative to one another with respect to the z-direction, the support structure and the headlamp structure simultaneously become fixed relative to one another in the x- and y-direction.

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05-02-2015 дата публикации

METHOD FOR MANUFACTURING SEMICONDUCTOR DEVICE AND SEMICONDUCTOR DEVICE

Номер: US20150035132A1
Принадлежит:

In a method for manufacturing a semiconductor device according to the present invention, as shown in FIG. (A), a case () including a first terminal () is placed on a working table () with an opening () formed at the bottom of the case (). Subsequently, as shown in FIG. (B), a plurality of packages () including second terminals () are placed on the working table () through the opening () of the case (), forming a clearance () between the first terminal () and the second terminal (). As shown in FIG. (C), a bonding material () is disposed in the clearance () so as to electrically connect the first terminal () and the second terminal (). Thus, the exposed surfaces of the packages () in the opening () of the case () are aligned at the same height, thereby reducing variations in thermal resistance among the packages (). 1. A method for manufacturing a semiconductor device including a plurality of packages disposed in a resin-molded case , the package containing a power semiconductor element ,the method comprising:placing the case on a working table with an opening formed at a bottom of the case, the case including a first terminal with one end internally drawn along the bottom of the case and connected to the power semiconductor element;placing the package on the working table through the opening of the case, the package including a second terminal connected to the power semiconductor element, and forming a clearance between the first terminal of the case and the second terminal of the package; andelectrically connecting the first terminal and the second terminal with a bonding material disposed in the clearance.2. A method for manufacturing a semiconductor device including a plurality of packages disposed in a resin-molded case , the package containing a power semiconductor element ,the method comprising:placing the package on a working table, the package including a second terminal connected to the power semiconductor element, the second terminal being extended along ...

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