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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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Форма поиска

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 14. Отображено 14.
29-03-2012 дата публикации

METHOD AND SYSTEM FOR DETECTING OBJECT

Номер: US20120076408A1
Принадлежит:

Provided are a system and method for detecting an object. The method includes selecting a macroscopic scan mode in which there are a small number of divided regions or a microscopic scan mode in which there are a large number of divided regions according to complexity of a background including an object to be detected, dividing an input image into one or more regions according to the selected scan mode, merging adjacent regions having similar characteristics among the divided regions, extracting a search region by excluding a region having a high probability that the object to be detected does not exist from the divided or merged regions, extracting feature data including a feature vector for detecting the object in the search region, and detecting the object in the search region using the extracted feature data. 1. A method of detecting an object , comprising:selecting a macroscopic scan mode in which there are a small number of divided regions or a microscopic scan mode in which there are a large number of divided regions according to complexity of a background including an object to be detected;dividing an input image into one or more regions according to the selected scan mode;merging adjacent regions having similar characteristics among the divided regions;extracting a search region by excluding a region having a high probability that the object to be detected does not exist from the divided or merged regions;extracting feature data including a feature vector for detecting the object in the search region; anddetecting the object in the search region using the extracted feature data.2. The method of claim 1 , wherein dividing the input image into one or more regions includes continuously dividing a region until the region has a uniform characteristic.3. The method of claim 1 , wherein merging the adjacent regions having similar characteristics includes merging the adjacent regions having a difference in feature of a threshold or less among the divided regions.4. ...

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14-01-2016 дата публикации

SUPERCONDUCTOR, SUPERCONDUCTING WIRE, AND METHOD OF FORMING THE SUPERCONDUCTOR

Номер: US20160012944A1
Принадлежит:

A super conductor is formed by a process including a first step of forming liquid-phase rare earth-copper-barium oxide by heat treating a superconductor precursor including a rare earth element, barium, and copper, a second step of forming a first superconductor of the rare earth-copper-barium oxide that is epitaxially grown from the liquid-phase rare earth-copper-barium oxide, and a third step of forming a second superconductor of the rare earth-copper-barium oxide by heat treating the first superconductor, wherein the heat treatment of the third step is performed in an atmosphere in which the rare earth-copper-barium oxide has no liquid phase. 1. A method of forming a superconductor , the method comprising:providing a superconductor precursor including a rare earth element, barium, and copper;performing a pre-annealing process on the superconductor precursor to form a first superconductor in which rare earth-copper-barium oxide is epitaxially grown; andperforming a post-annealing process on the first superconductor to form a second superconductor,wherein the pre-annealing process comprises:a first heat treatment step in which the rare earth-copper-barium oxide has a liquid phase containing grains of rare earth oxide; anda second heat treatment step in which the rare earth-copper-barium oxide is epitaxially grown by cooling the liquid-phase rare earth-copper-barium oxide at a lower temperature than that of the first heat treatment step, andthe post-annealing process is performed at a lower temperature than that of the first heat treatment step.2. The method of claim 1 , wherein the first heat treatment step is performed at an oxygen partial pressure of 10Torr to 10Torr and a temperature of 800° C. or more.3. The method of claim 2 , wherein the second heat treatment step is performed at an oxygen partial pressure of 10Torr to 10Torr and a temperature of 800° C. or less.4. The method of claim 3 , wherein the post-annealing process is performed in a temperature range ...

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03-03-2022 дата публикации

DISPLAY DEVICE

Номер: US20220069245A1
Принадлежит:

A display device includes: a display panel; and a color conversion panel overlapping the display panel, where the display panel includes a transistor disposed on a first substrate; a light-emitting element electrically connected to the transistor; and a passivation layer disposed between the transistor and the light-emitting element and including a first recess portion. The light-emitting element is disposed on the first recess portion, the color conversion panel includes a first color conversion layer, a second color conversion layer and a transmission layer, which are disposed between a second substrate and the display panel, and at least one selected from the first color conversion layer, the second color conversion layer and the transmission layer overlaps the first recess portion. 1. A display device comprising:a display panel; anda color conversion panel overlapping the display panel, a transistor disposed on a first substrate;', 'a light-emitting element electrically connected to the transistor; and', 'a passivation layer disposed between the transistor and the light-emitting element and including a first recess portion,', 'wherein the light-emitting element is disposed on the first recess portion,, 'wherein the display panel includeswherein the color conversion panel includes a first color conversion layer, a second color conversion layer and a transmission layer, which are disposed between a second substrate and the display panel, andwherein at least one selected from the first color conversion layer, the second color conversion layer and the transmission layer overlaps the first recess portion.2. The display device of claim 1 , whereinthe display panel further includes an encapsulation layer disposed on the light-emitting element, andthe encapsulation layer has a flat upper surface.3. The display device of claim 2 , whereinthe encapsulation layer includes a convex part facing the first recess portion, andthe encapsulation layer includes two or more regions ...

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13-08-2015 дата публикации

SUPERCONDUCTING BODY AND METHOD OF FORMING THE SAME

Номер: US20150228379A1
Принадлежит:

Provided is a method of forming a superconducting body. The method includes providing amorphous rare-earth-copper-barium oxide and performing a heat treatment on the amorphous rare-earth-copper-barium oxide to form a superconductor containing distributed rare-earth oxide grains. 1. A method of forming a superconducting body , comprising:providing rare-earth element-copper-barium oxide including a rare-earth element, barium, and copper; andperforming a heat treatment on the rare-earth element-copper-barium oxide to form a superconductor containing grains of rare-earth oxide distributed therein,wherein performing the heat treatment comprises:a first heat treatment step in which a temperature increases such that the rare-earth element-copper-barium oxide has a liquid phase containing the rare-earth oxide; anda second heat treatment step in which a temperature and/or an oxygen pressure are changed from that of the first heat treatment step to form a single-crystalline rare-earth element-copper-barium oxide.2. The method as set forth in claim 1 , wherein the single-crystalline rare-earth element-barium-copper oxide is grown from the rare-earth oxide.3. The method as set forth in claim 2 , wherein an oxygen partial pressure in the first heat treatment step is 10˜10Torr claim 2 , and an oxygen partial pressure in the second heat treatment step is 10˜10Torr.4. The method as set forth in claim 2 , wherein a grain of the rare-earth oxide has a size less than 1 micrometer.5. The method as set forth in claim 1 , wherein the rare-earth element-copper-barium oxide is formed on a substrate claim 1 , andwherein the substrate includes a metal having a textured structure or an oxide buffer layer having a textured structure on a metal substrate.6. Crystalline rare-earth-barium-copper oxide comprising grains of rare-earth oxide and grains of barium-cooper oxide which are distributed therein.7. The crystalline rare-earth-barium-copper oxide as set forth in claim 6 , further comprising: ...

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08-02-2024 дата публикации

Display device

Номер: US20240049577A1
Принадлежит: Samsung Display Co Ltd

A display device includes a substrate, a low refractive index layer disposed on the substrate, a first capping layer disposed on the low refractive index layer and directly contacting an upper surface of the low refractive index layer, a second capping layer disposed on the first capping layer, and a wavelength conversion layer disposed on the second capping layer and having a refractive index higher than a refractive index of the low refractive index layer, wherein a nitrogen atomic ratio of the first capping layer is different from a nitrogen atomic ratio of the second capping layer.

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21-03-2024 дата публикации

Display device

Номер: US20240099071A1
Принадлежит: Samsung Display Co Ltd

A display device includes a first substrate, a first electrode above the first substrate, a pixel-defining film above the first electrode, and defining an emission area, a light-emitting layer above the first electrode and the pixel-defining film, a second electrode above the light-emitting layer, a thin-film encapsulation structure above the second electrode, and including an organic film defining an opening, and a color control layer above the thin-film encapsulation structure in the opening.

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14-02-2024 дата публикации

Display device

Номер: EP4322729A2
Принадлежит: Samsung Display Co Ltd

A display device includes a substrate, a low refractive index layer disposed on the substrate, a first capping layer disposed on the low refractive index layer and directly contacting an upper surface of the low refractive index layer, a second capping layer disposed on the first capping layer, and a wavelength conversion layer disposed on the second capping layer and having a refractive index higher than a refractive index of the low refractive index layer, wherein a nitrogen atomic ratio of the first capping layer is different from a nitrogen atomic ratio of the second capping layer.

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27-03-2024 дата публикации

Display device

Номер: EP4344388A1
Принадлежит: Samsung Display Co Ltd

A display device includes a first substrate, a first electrode above the first substrate, a pixel-defining film above the first electrode, and defining an emission area, a light-emitting layer above the first electrode and the pixel-defining film, a second electrode above the light-emitting layer, a thin-film encapsulation structure above the second electrode, and including an organic film defining an opening, and a color control layer above the thin-film encapsulation structure in the opening.

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15-05-2024 дата публикации

Display device

Номер: EP4322729A3
Принадлежит: Samsung Display Co Ltd

A display device includes a substrate, a low refractive index layer disposed on the substrate, a first capping layer disposed on the low refractive index layer and directly contacting an upper surface of the low refractive index layer, a second capping layer disposed on the first capping layer, and a wavelength conversion layer disposed on the second capping layer and having a refractive index higher than a refractive index of the low refractive index layer, wherein a nitrogen atomic ratio of the first capping layer is different from a nitrogen atomic ratio of the second capping layer.

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14-04-2022 дата публикации

Inkjet printing apparatus

Номер: US20220111646A1
Принадлежит: Samsung Display Co Ltd

An inkjet apparatus comprises a stage, and an inkjet head positioned over the stage and including a plurality of nozzles through which ink including a plurality of particles is discharged. The inkjet head comprises a base portion constituting a main body of the inkjet head, a discharge portion adjacent to the base portion and including the plurality of nozzles, and an inner flow path between the base portion and the discharge portion and configured to accommodate the ink, wherein the base portion includes a first surface contacting the inner flow path, and at least a part of the first surface is at an incline.

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09-04-2024 дата публикации

Inkjet printing apparatus

Номер: US11951741B2
Принадлежит: Samsung Display Co Ltd

An inkjet apparatus comprises a stage, and an inkjet head positioned over the stage and including a plurality of nozzles through which ink including a plurality of particles is discharged. The inkjet head comprises a base portion constituting a main body of the inkjet head, a discharge portion adjacent to the base portion and including the plurality of nozzles, and an inner flow path between the base portion and the discharge portion and configured to accommodate the ink, wherein the base portion includes a first surface contacting the inner flow path, and at least a part of the first surface is at an incline.

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27-06-2024 дата публикации

Inkjet printing apparatus

Номер: US20240208221A1
Принадлежит: Samsung Display Co Ltd

An inkjet apparatus comprises a stage, and an inkjet head positioned over the stage and including a plurality of nozzles through which ink including a plurality of particles is discharged. The inkjet head comprises a base portion constituting a main body of the inkjet head, a discharge portion adjacent to the base portion and including the plurality of nozzles, and an inner flow path between the base portion and the discharge portion and configured to accommodate the ink, wherein the base portion includes a first surface contacting the inner flow path, and at least a part of the first surface is at an incline.

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09-04-2024 дата публикации

Display device

Номер: US11956979B2
Принадлежит: Samsung Display Co Ltd

A display device includes: a display panel; and a color conversion panel overlapping the display panel, where the display panel includes a transistor disposed on a first substrate; a light-emitting element electrically connected to the transistor; and a passivation layer disposed between the transistor and the light-emitting element and including a first recess portion. The light-emitting element is disposed on the first recess portion, the color conversion panel includes a first color conversion layer, a second color conversion layer and a transmission layer, which are disposed between a second substrate and the display panel, and at least one selected from the first color conversion layer, the second color conversion layer and the transmission layer overlaps the first recess portion.

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25-04-2017 дата публикации

Superconductor, superconducting wire, and method of forming the superconductor

Номер: US09634223B2
Принадлежит: SNU R&DB FOUNDATION, Sunam Co Ltd

A super conductor is formed by a process including a first step of forming liquid-phase rare earth-copper-barium oxide by heat treating a superconductor precursor including a rare earth element, barium, and copper, a second step of forming a first superconductor of the rare earth-copper-barium oxide that is epitaxially grown from the liquid-phase rare earth-copper-barium oxide, and a third step of forming a second superconductor of the rare earth-copper-barium oxide by heat treating the first superconductor, wherein the heat treatment of the third step is performed in an atmosphere in which the rare earth-copper-barium oxide has no liquid phase.

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