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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 9. Отображено 8.
24-01-2017 дата публикации

Offset stacked vertical planting containers

Номер: US0009549508B2

Stacked growing containers. The growing containers are stacked so that they are offset to each other in order to expose their corners to optimum light. Each growing container has a locking mechanism to ensure that the growing containers are locked into their correct offset position. Also each growing container has a drainage hole. A drainage container is positioned below the stack of growing containers and receives the excess water from the stack. Piping may be used to remove and redirect the excess water from the drainage container if required. In a preferred embodiment the growing containers are offset by 45 degrees.

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15-09-2016 дата публикации

PHASE DETECTION AUTOFOCUS USING SUBAPERTURE IMAGES

Номер: US20160269620A1
Принадлежит:

A light-field camera may have enhanced autofocus functionality that does not require a dedicated optical pathway or dedicated sensors, and yet brings the camera rapidly into focus for image capture. According to one method, light may be received through the aperture of a light-field camera, with the main lens of the light-field camera at a first focus setting. The light may be directed to a sensor of the light-field camera via an optical pathway. The sensor may capture the light to generate preliminary light-field data. In a processor, the preliminary light-field data may be used to generate an offset, which may be used to refocus the main lens to a second focus setting. Additional light may be directed along the same optical pathway and captured with the main lens at the second focus setting to capture a focused light-field image. 1. A method for focusing a light-field camera , the method comprising:through an aperture of the light-field camera, receiving first light with a main lens of the light-field camera at a first focus setting;directing the first light to a sensor of the light-field camera via an optical pathway;in the sensor, capturing the first light to generate preliminary light-field data;in a processor, using the preliminary light-field data to generate an offset; andusing the offset to refocus the main lens to a second focus setting.2. The method of claim 1 , wherein using the preliminary light-field data to generate the offset comprises:using the preliminary light-field data to generate a plurality of subaperture images;computing relative displacements between the subaperture images; andbased on the relative displacements, generating the offset.3. The method of claim 2 , wherein computing relative displacements between the subaperture images comprises:cropping each of the subaperture images to provide a cropped subaperture image such that all cropped subaperture images depict the same image portion;identifying at least one feature of each of the ...

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02-07-2015 дата публикации

OFFSET STACKED VERTICAL PLANTING CONTAINERS

Номер: US20150181814A1
Принадлежит:

Stacked growing containers. The growing containers are stacked so that they are offset to each other in order to expose their corners to optimum light. Each growing container has a locking mechanism to ensure that the growing containers are locked into their correct offset position. Also each growing container has a drainage hole. A drainage container is positioned below the stack of growing containers and receives the excess water from the stack. Piping may be used to remove and redirect the excess water from the drainage container if required. In a preferred embodiment the growing containers are offset by 45 degrees. 1. A growing column , comprising: 1. at least one locking mechanism to lock said plurality of growing containers at said offset position,', '2. at least one hole drainage hole to allow water flow out of said growing container,, 'A. a plurality of growing containers stacked at an offset position to each other to expose the corners of said plurality of growing containers to light, each said growing container comprisingB. a drainage container positioned below said stack of plurality of growing containers, said drainage container for receiving excess water from said stack of plurality of growing containers,C. piping connected to said drainage container, said piping for removing excess water from said drainage container.2. The growing column as in claim 1 , wherein said locking mechanism comprises:A. at least one locking tab, andB. at least one locking slot to engage said at least one locking tab.3. The growing column as in claim 1 , wherein said offset position is a forty-five degree offset position and each said growing container is offset forty-five degrees with respect to its adjacent said growing container.4. The growing column as in claim 1 , wherein said at least one locking tab is eight locking tabs and wherein said at least one locking slot is eight locking slots.5. The growing column as in claim 1 , wherein said at least one locking tab is at ...

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27-08-2020 дата публикации

Stackable plant pot assembly

Номер: US20200267909A1
Автор: Edmond Chung
Принадлежит: Individual

The present invention is directed to a stackable pot assembly having pots arranged in horizontal and vertical directions to form the stacked pot assembly. The assembly includes two or more blocks mounted over each other. The first block mounted over the floor having one or more rows of twin-bases arranged lengthwise or side-by-side. The upper blocks mounted one over another, and the upper blocks mounted over the first block. The upper block comprises twin-pots and round-pots. The twin-pots and round-pots have feet configured in their bottom, wherein the twin-pot have two spaced-apart feet while the round pot has a single feet. A lid secures the twin-bases, twin-pots, and round-pots, wherein the lid is having apertures for receiving the feet when a twin-pot or a round-pot is mounted over the lid secured to below block. The lid is further having a plant hole.

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09-11-2017 дата публикации

Offset stacked vertical planting containers

Номер: US20170318752A1
Принадлежит: Individual

Stacked growing containers. The growing containers are stacked so that they are offset to each other in order to expose their corners to optimum light. Each growing container has a locking mechanism to ensure that the growing containers are locked into their correct offset position. Also each growing container has a drainage hole. A drainage container is positioned below the stack of growing containers and receives the excess water from the stack. Piping may be used to remove and redirect the excess water from the drainage container if required. In a preferred embodiment the growing containers are offset by 45 degrees.

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29-04-2021 дата публикации

Contactless elevator control system and method

Номер: AU2021100918A4
Принадлежит: HONG KONG PRODUCTIVITY COUNCIL

The present invention provides a contactless elevator control system and method. The system comprises an infrared touch sensor, a relay control device and an elevator button control device, wherein: the infrared touch sensor emits an array of multiple infrared beams, receives reflected infrared beams, calculates a vertical and lateral displacement, determines a corresponding coordinate information, calculates a corresponding elevator button, and sends a corresponding control; the relay control device drives the corresponding relay contacts to close. The solution uses the infrared touch sensor to achieve contactless control of elevator buttons, reducing the risk of spreading bacteria and viruses when touching the elevator buttons. 1/2 elevator button infrared touch sensor p relay control device control device Fig.1 transmitter receiver microcontroller Fig.2

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26-07-2021 дата публикации

Contactless elevator control system

Номер: PH22021050305U1
Принадлежит: HONG KONG PRODUCTIVITY COUNCIL

The present utility model provides a non-contact elevator control system. The system comprises an infrared touch sensor, a relay control device and an elevator button drive device, wherein: the infrared touch sensor emits an array of multiple infrared beams, receives reflected infrared beams, calculates a vertical and lateral displacement, determines a corresponding coordinate information, calculates a corresponding elevator button, and sends a corresponding control; the relay control device drives the corresponding relay contacts to close. The solution uses the infrared touch sensor to achieve contactless control of elevator buttons, reducing the risk of spreading bacteria and viruses when touching the elevator buttons.

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26-07-2021 дата публикации

Contactless elevator control system

Номер: PH22021050305Y1
Принадлежит: HONG KONG PRODUCTIVITY COUNCIL

The present utility model provides a non-contact elevator control system. The system comprises an infrared touch sensor, a relay control device and an elevator button drive device, wherein: the infrared touch sensor emits an array of multiple infrared beams, receives reflected infrared beams, calculates a vertical and lateral displacement, determines a corresponding coordinate information, calculates a corresponding elevator button, and sends a corresponding control; the relay control device drives the corresponding relay contacts to close. The solution uses the infrared touch sensor to achieve contactless control of elevator buttons, reducing the risk of spreading bacteria and viruses when touching the elevator buttons.

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