ORGANIC-INORGANIC COMPOSITE FILMS AND METHODS OF MANUFACTURING THE SAME
    4.
    发明申请
    ORGANIC-INORGANIC COMPOSITE FILMS AND METHODS OF MANUFACTURING THE SAME 有权
    有机无机复合膜及其制造方法

    公开(公告)号:US20160103233A1

    公开(公告)日:2016-04-14

    申请号:US14738530

    申请日:2015-06-12

    CPC classification number: G01T1/244 G01T1/24 H01B1/02 H01L27/14676

    Abstract: A method of manufacturing an organic-inorganic composite thin film may include: forming a thin film from a paste that includes an inorganic powder and an organic compound binder by using a screen printing process; and/or performing a pressing process and a heating process with respect to the thin film. The heating process may be performed at a glass transition temperature of the organic compound binder or in a temperature range higher than the glass transition temperature of the organic compound binder. An X-ray detector configured to detect X-rays irradiated from an outside of the X-ray detector may include: a photoconductive material layer in which electron-hole pairs are formed due to absorption of the X-rays. The photoconductive material layer may be formed of an organic-inorganic composite thin film that includes an inorganic powder and an organic compound binder.

    Abstract translation: 制造有机 - 无机复合薄膜的方法可以包括:通过使用丝网印刷方法从包含无机粉末和有机化合物粘合剂的糊状物形成薄膜; 和/或对薄膜进行加压处理和加热处理。 加热过程可以在有机化合物粘合剂的玻璃化转变温度下或在高于有机化合物粘合剂的玻璃化转变温度的温度范围内进行。 用于检测从X射线检测器外部照射的X射线的X射线检测器可以包括:由于吸收X射线而形成电子 - 空穴对的感光材料层。 光导材料层可以由包含无机粉末和有机化合物粘合剂的有机 - 无机复合薄膜形成。

    LIGHT MODULATING APPARATUS AND METHOD OF DRIVING THE SAME
    5.
    发明申请
    LIGHT MODULATING APPARATUS AND METHOD OF DRIVING THE SAME 有权
    光调制装置及其驱动方法

    公开(公告)号:US20160062153A1

    公开(公告)日:2016-03-03

    申请号:US14810861

    申请日:2015-07-28

    CPC classification number: G02F1/01716 G02F1/0121 G02F2001/0155 G02F2203/12

    Abstract: Disclosed is a light modulating apparatus. The light modulating apparatus includes a pixel array including a plurality of pixels, a light modulating device that absorbs or transmit light incident on the pixel array according to an applied voltage, a flip-flop circuit that outputs a first voltage based on a device driving signal indicating a level of a second voltage applied to be applied to the light modulating device, and an amplifier that amplifies the first voltage to generate the second voltage and applies the second voltage to the light modulating device.

    Abstract translation: 公开了一种光调制装置。 光调制装置包括:包括多个像素的像素阵列;根据施加电压吸收或透射入射在像素阵列上的光的光调制装置;基于装置驱动信号输出第一电压的触发电路; 指示施加到光调制装置的第二电压的电平;以及放大器,放大第一电压以产生第二电压,并将第二电压施加到光调制装置。

    LIGHT MODULATORS AND DIGITAL EXPOSURE APPARATUSES INCLUDING THE SAME
    6.
    发明申请
    LIGHT MODULATORS AND DIGITAL EXPOSURE APPARATUSES INCLUDING THE SAME 审中-公开
    光调制器和数字曝光装置,包括它们

    公开(公告)号:US20150323816A1

    公开(公告)日:2015-11-12

    申请号:US14528394

    申请日:2014-10-30

    CPC classification number: G02F1/017 G03F7/70058 G03F7/70291

    Abstract: A light modulator may include: a light modulating unit formed as a pixel-array type by using a PIN diode including multiple quantum wells including a Group-III nitride semiconductor material, and configured to modulate light by electroabsorption; and/or a control unit including a transistor configured to control voltage applied to the PIN diode of the light modulating unit. The PIN diode and the transistor may be arrayed in an active matrix form.

    Abstract translation: 光调制器可以包括:光调制单元,其通过使用包括III族氮化物半导体材料的多个量子阱的PIN二极管形成为像素阵列型,并且被配置为通过电吸收来调制光; 和/或包括晶体管的控制单元,晶体管被配置为控制施加到光调制单元的PIN二极管的电压。 PIN二极管和晶体管可以以有源矩阵形式排列。

    LONG WAVELENGTH INFRARED SENSOR AND ELECTRONIC DEVICE INCLUDING THE SAME

    公开(公告)号:US20230213390A1

    公开(公告)日:2023-07-06

    申请号:US17836568

    申请日:2022-06-09

    CPC classification number: G01J5/20 G01J5/58 G01J2005/202

    Abstract: A long wavelength infrared sensor includes a first magnetoresistive unit; a second magnetoresistive unit; and a light absorption layer that absorbs light and emits heat, wherein the first magnetoresistive unit includes a first magnetoresistive element and a second magnetoresistive element electrically connected to each other, the second magnetoresistive unit includes a third magnetoresistive element and a fourth magnetoresistive element electrically connected to each other, the first and third magnetoresistive elements each have an antiparallel state of magnetization direction, the second and fourth magnetoresistive elements each have a parallel state of magnetization direction, and the first magnetoresistive element is electrically connected to the third magnetoresistive element by way of the second magnetoresistive element.

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