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Небесная энциклопедия

Космические корабли и станции, автоматические КА и методы их проектирования, бортовые комплексы управления, системы и средства жизнеобеспечения, особенности технологии производства ракетно-космических систем

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Мониторинг СМИ

Мониторинг СМИ и социальных сетей. Сканирование интернета, новостных сайтов, специализированных контентных площадок на базе мессенджеров. Гибкие настройки фильтров и первоначальных источников.

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Поддерживает ввод нескольких поисковых фраз (по одной на строку). При поиске обеспечивает поддержку морфологии русского и английского языка
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Применить Всего найдено 17. Отображено 15.
16-03-2017 дата публикации

OPTICAL COMPOSITE LAYER STRUCTURE WITH A BUILT-IN TOUCH SENSITIVE POLYMER DISPERSED LIQUID CRYSTAL STRUCTURE

Номер: US20170075153A1
Принадлежит:

The invention provides an optical composite layer structure with a built-in touch sensitive polymer dispersed liquid crystal (PDLC) structure. The optical composite layer structure comprises an upper transparent substrate, a lower transparent substrate, an upper transparent conductive layer, a lower transparent conductive layer and a PDLC layer. A PDLC circuit and a touch sensitive circuit are provided on the upper and lower transparent conductive layers. A cable region that is electrically connected to external soft circuit cables is provided at an end of the upper transparent conductive layer and the lower transparent conductive layer to electrically connect to an external control unit. With a touch sensitive operation of a touch sensitive circuit of the optical composite layer structure, a signal instruction is provided to the control unit. The corresponding PDLC circuit may drive the corresponding regions of PDLC layer to conduct the change of light transmission of local region. 1. An optical composite layer structure with a built-in touch sensitive polymer dispersed liquid crystal structure , electrically connected with an external control unit , comprising:an upper transparent substrate, having an upper curing layer on a side surface of the upper transparent substrate;an upper transparent conductive layer, provided on a side surface of the upper curing layer, and electrically connected with the external control unit;a lower transparent substrate, having a lower curing layer on a side surface of the lower transparent substrate;a lower transparent conductive layer, provided on a side surface of the lower curing layer to correspond with the upper transparent conductive layer, and electrically connected with the external control unit; anda polymer dispersed liquid crystal (PDLC) layer, provided between the upper transparent conductive layer and the lower transparent conductive layer,wherein the upper transparent conductive layer comprises an upper circuit region, ...

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08-03-2018 дата публикации

Optical composite layer structure with a built-in touch sensitive polymer dispersed liquid crystal structure

Номер: US20180067346A1
Принадлежит: Nanobit Tech Co ltd

The invention provides an optical composite layer structure with a built-in touch sensitive polymer dispersed liquid crystal (PDLC) structure. The optical composite layer structure comprises an upper transparent substrate, a lower transparent substrate, an upper transparent conductive layer, a lower transparent conductive layer and a PDLC layer. A PDLC circuit and a touch sensitive circuit are provided on the upper and lower transparent conductive layers. A cable region that is electrically connected to external soft circuit cables is provided at an end of the upper transparent conductive layer and the lower transparent conductive layer to electrically connect to an external control unit. With a touch sensitive operation of a touch sensitive circuit of the optical composite layer structure, a signal instruction is provided to the control unit. The corresponding PDLC circuit may drive the corresponding regions of PDLC layer to conduct the change of light transmission of local region.

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08-03-2018 дата публикации

Optical composite layer structure with a built-in touch sensitive polymer dispersed liquid crystal structure

Номер: US20180067347A1
Принадлежит: Nanobit Tech Co ltd

The invention provides an optical composite layer structure with a built-in touch sensitive polymer dispersed liquid crystal (PDLC) structure. The optical composite layer structure comprises an upper transparent substrate, a lower transparent substrate, an upper transparent conductive layer, a lower transparent conductive layer and a PDLC layer. A PDLC circuit and a touch sensitive circuit are provided on the upper and lower transparent conductive layers. A cable region that is electrically connected to external soft circuit cables is provided at an end of the upper transparent conductive layer and the lower transparent conductive layer to electrically connect to an external control unit. With a touch sensitive operation of a touch sensitive circuit of the optical composite layer structure, a signal instruction is provided to the control unit. The corresponding PDLC circuit may drive the corresponding regions of PDLC layer to conduct the change of light transmission of local region.

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18-09-2014 дата публикации

TOUCH PANEL STRUCTURAL AND DISPLAY DEVICE USING TOUCH PANEL

Номер: US20140267073A1
Принадлежит: TECO NANOTECH CO., LTD.

A touch panel comprises: a substrate, a transparent conductive layer and a conductive circuit layer. The transparent conductive layer is formed on a surface of the substrate, and the transparent conductive layer has a touch area and an un-touch area. The un-touch area has a plurality of barrier blocks arranged in a matrix, and the barrier blocks form a plurality of vertical and horizontal barrier slots. The conductive circuit layer is directly distributed on the barrier slots formed by the barrier blocks of the touch area, so as to increase the space to distributing circuits on the conductive circuit layer and save cost to manufacturing. 110. A touch panel () comprising:{'b': '1', 'a substrate ();'}{'b': 2', '1', '2', '21', '22', '21', '23', '22', '24', '241', '24, 'a transparent conductive layer (), disposed on a surface of the substrate , the transparent conductive layer () having a touch area () and an un-touch area (), the touch area () having an electrode conductive layer (), the un-touch area () having a plurality of barrier blocks (), a plurality of barrier slots () being among the barrier blocks (); and'}{'b': 3', '241', '22, 'a conductive circuit layer (), disposed on the barrier slots () of the un-touch area ().'}2101. The touch panel () according to claim 1 , wherein the substrate () is made of transparent plastic or transparent glass.31023231232. The touch panel () according to claim 2 , wherein the electrode conductive layer () has a plurality of strip-shaped or lump-shaped positive conductive blocks () and negative conductive blocks ().4102. The touch panel () according to claim 3 , wherein material of the transparent conductive layer () is selected from the group consisted of indium tin oxide and carbon nano tube.51024. The touch panel () according to claim 4 , wherein the barrier blocks () are arranged in a matrix.61024241. The touch panel () according to claim 5 , wherein the barrier blocks () form the plurality of vertical and horizontal barrier ...

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20-08-2020 дата публикации

SOLAR CELL HERMETIC PACKAGE STRUCTURE

Номер: US20200266311A1
Автор: CHAN Te-Fong
Принадлежит:

A solar cell hermetic package structure includes a lower-cover plate, a conductive layer, a photovoltaic layer, a lower-electrode lead, an upper-electrode lead, an upper-cover plate, a border and dividers. The conductive layer and the photovoltaic layer are orderly arranged on one side of the lower-cover plate. The upper-electrode lead and the lower-electrode lead are arranged on the lower-cover plate and electrically connected to the photovoltaic layer and the conductive layer. The border is arranged on corresponding side edges of the lower-cover plate and the upper-cover plate. After the upper-cover plate and the lower-cover plate are combined, the photovoltaic layer is arranged in a hermetic package structure between the upper-cover plate and the lower-cover plate. A hermetic area accommodating the photovoltaic layer is formed by the border. The dividers are arranged in gaps of photovoltaic components and used as supports between the upper-cover plate and the lower-cover plate. 1. A solar cell hermetic package structure comprising:a lower-cover plate;a conductive layer arranged on one side of the lower-cover plate;a photovoltaic layer arranged on one side of the conductive layer and comprising a plurality of photovoltaic components, a plurality of gaps defined between the photovoltaic components;a lower-electrode lead arranged on the lower-cover plate and electrically connected to the conductive layer;an upper-electrode lead arranged on the lower-cover plate and electrically connected to the photovoltaic components of the photovoltaic layer;an upper-cover plate arranged above the photovoltaic layer;a border arranged on edges of corresponding sides of the lower-cover plate and the upper-cover plate; anda plurality of dividers arranged on one side of the upper-cover plate and arranged in the gaps defined between the photovoltaic components,wherein after the upper-cover plate and the lower-cover plate are combined, the photovoltaic layer is arranged in a hermetic ...

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20-10-2005 дата публикации

Mesh structure of tetraode field-emission display and method of fabricating the same

Номер: US20050231089A1
Принадлежит: Teco Nanotech Co Ltd

A mesh structure of tetraode field-emission display and a method of fabricating the same are disclosed. The mesh has a gate layer, an insulation layer, a converging electrode layer and a glass plate. The converging electrode layer fabricated from a metal conductive plate is adhered on the glass plate. The insulation layer is formed on the converging electrode layer and a conductive layer is formed on the insulation layer. The glass plate serves as a spacer, and the conductive layer serves as the gate layer. The spacing glass plate, the converging electrode layer, the insulation layer and the gate layer are perforated with at least one aperture to establish a path of electron beam between an anode and a cathode of the tetraode field-emission display.

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11-05-2023 дата публикации

Capacitive sensing identification tag

Номер: US20230142280A1
Принадлежит: Nanobit Tech Co ltd

A capacitive sensing identification tag includes a substrate and a touch sensing layer disposed on one side of the substrate. The touch sensing layer includes high-sensing regions and low-sensing regions with different shapes. Both the high-sensing regions and the low-sensing regions have different stacked conductive layers and dielectric layers. A difference between the high-sensing regions and the low-sensing regions is that each of the high-sensing regions contains a dielectric layer, while each of the low-sensing regions does not. The capacitive sensing identification tag achieves an effect of sampling and identification of a touch panel by a capacitive sensing quantity that is different from a capacitive touch panel. And the capacitive sensing identification tag will not cause a difference in color or light transmittance between the high-sensing regions and the low-sensing regions, so there is no visible difference between the high-sensing regions and the low-sensing regions.

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31-07-2018 дата публикации

Optical composite layer structure with a built-in touch sensitive polymer dispersed liquid crystal structure

Номер: US10036916B2
Принадлежит: Nanobit Tech Co ltd

The invention provides an optical composite layer structure with a built-in touch sensitive polymer dispersed liquid crystal (PDLC) structure. The optical composite layer structure comprises an upper transparent substrate, a lower transparent substrate, an upper transparent conductive layer, a lower transparent conductive layer and a PDLC layer. A PDLC circuit and a touch sensitive circuit are provided on the upper and lower transparent conductive layers. A cable region that is electrically connected to external soft circuit cables is provided at an end of the upper transparent conductive layer and the lower transparent conductive layer to electrically connect to an external control unit. With a touch sensitive operation of a touch sensitive circuit of the optical composite layer structure, a signal instruction is provided to the control unit. The corresponding PDLC circuit may drive the corresponding regions of PDLC layer to conduct the change of light transmission of local region.

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09-06-2005 дата публикации

Laminate oleophilic reformative clay and a method of production for the same, the material and method of production of ABS nano-metric composite material produced by the same

Номер: US20050121819A1
Принадлежит: Teco Nanotech Co Ltd

A laminate oleophilic reformative clay and a method of production for the same are described, and a material and method of production for ABS nano-metric composite material produced by the same are also described. The ABS nano-metric composite material is waterproof for a self-cleaning ability and has enhanced strength. The cost to produce the ABS nano-metric composite material is also reasonable. The ABS nano-metric composite material is made of ABS substrate formed from ABS material and laminate oleophilic reformative clay uniformly distributed in the ABS substrate.

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14-11-2006 дата публикации

Tetraode field-emission display and method of fabricating the same

Номер: US7134931B2
Принадлежит: Teco Nanotech Co Ltd

A method of fabricating a tetraode field-emission display. A mesh is disposed between an anode plate and a cathode plate. The mesh has a gate layer and a converging electrode layer separated by an insulation layer to form a sandwich structure. The mesh has a plurality of apertures in correspondence with each set of anode and cathode. The converging electrode layer is facing the anode plate, such that the divergent range of an electron beam emitted by an electron emission source can be restricted. Thereby, the electron beam can impinge the corresponding anode more precisely.

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03-11-2020 дата публикации

Solar cell hermetic package structure

Номер: US10825942B2
Автор: Te-Fong Chan
Принадлежит: Nanobit Tech Co ltd

A solar cell hermetic package structure includes a lower-cover plate, a conductive layer, a photovoltaic layer, a lower-electrode lead, an upper-electrode lead, an upper-cover plate, a border and dividers. The conductive layer and the photovoltaic layer are orderly arranged on one side of the lower-cover plate. The upper-electrode lead and the lower-electrode lead are arranged on the lower-cover plate and electrically connected to the photovoltaic layer and the conductive layer. The border is arranged on corresponding side edges of the lower-cover plate and the upper-cover plate. After the upper-cover plate and the lower-cover plate are combined, the photovoltaic layer is arranged in a hermetic package structure between the upper-cover plate and the lower-cover plate. A hermetic area accommodating the photovoltaic layer is formed by the border. The dividers are arranged in gaps of photovoltaic components and used as supports between the upper-cover plate and the lower-cover plate.

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26-12-2017 дата публикации

Optical composite layer structure with a built-in touch sensitive polymer dispersed liquid crystal structure

Номер: US9851596B2
Принадлежит: Nanobit Tech Co ltd

The invention provides an optical composite layer structure with a built-in touch sensitive polymer dispersed liquid crystal (PDLC) structure. The optical composite layer structure comprises an upper transparent substrate, a lower transparent substrate, an upper transparent conductive layer, a lower transparent conductive layer and a PDLC layer. A PDLC circuit and a touch sensitive circuit are provided on the upper and lower transparent conductive layers. A cable region that is electrically connected to external soft circuit cables is provided at an end of the upper transparent conductive layer and the lower transparent conductive layer to electrically connect to an external control unit. With a touch sensitive operation of a touch sensitive circuit of the optical composite layer structure, a signal instruction is provided to the control unit. The corresponding PDLC circuit may drive the corresponding regions of PDLC layer to conduct the change of light transmission of local region.

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20-12-2007 дата публикации

Laminate oleophilic reformative clay and a method of production for the same, the material and method of production of ABS nano-metric composite material produced by the same

Номер: US20070290390A1
Принадлежит: Teco Nanotech Co Ltd

A laminate oleophilic reformative clay and a method of production for the same are described, and a material and method of production for ABS nano-metric composite material produced by the same are also described. The ABS nano-metric composite material is waterproof for a self-cleaning ability and has enhanced strength. The cost to produce the ABS nano-metric composite material is also reasonable. The ABS nano-metric composite material is made of ABS substrate formed from ABS material and laminate oleophilic reformative clay uniformly distributed in the ABS substrate.

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20-10-2005 дата публикации

Tetraode field-emission display and method of fabricating the same

Номер: US20050231090A1
Принадлежит: Teco Nanotech Co Ltd

A tetraode field-emission display and a method of fabricating the same are disclosed. A mesh is disposed between an anode plate and a cathode plate. The mesh has a gate layer and a converging electrode layer separated by an insulation layer to form a sandwich structure. The mesh has a plurality of apertures in correspondence with each set of anode and cathode. The converging electrode layer is facing the anode plate, such that the divergent range of an electron beam emitted by an electron emission source can be restricted. Thereby, the electron beam can impinge the corresponding anode more precisely.

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14-09-2006 дата публикации

Tetraode Field-Emission Display and Method of Fabricating the same

Номер: US20060202608A1
Принадлежит: TECO NONOTECH Co Ltd

A method of fabricating a tetraode field-emission display. A mesh is disposed between an anode plate and a cathode plate. The mesh has a gate layer and a converging electrode layer separated by an insulation layer to form a sandwich structure. The mesh has a plurality of apertures in correspondence with each set of anode and cathode. The converging electrode layer is facing the anode plate, such that the divergent range of an electron beam emitted by an electron emission source can be restricted. Thereby, the electron beam can impinge the corresponding anode more precisely.

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