会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Method for preparing CIS compounds and thin layer, and solar cell having CIS compound thin layer
    • 制备CIS化合物和薄层的方法,以及具有CIS化合物薄层的太阳能电池
    • US09293613B2
    • 2016-03-22
    • US12309531
    • 2007-07-23
    • Seok-Hyun YoonKyoung-Soo Lee
    • Seok-Hyun YoonKyoung-Soo Lee
    • H01L31/032
    • H01L31/0322Y02E10/541
    • A method for preparing a CIS (Cu—In—Se) compound includes (S1) producing a plurality of first composite particles having an indium selenide outer layer physically coupled to at least a part of a copper selenide seed particle surface or a plurality of second composite particles having a copper selenide outer layer physically coupled to at least a part of an indium selenide seed particle surface; and (S2) making a CIS compound by thermally treating composite particles selected from the group consisting of the first composite particles, the second composite particles and their mixtures. This method may prevent loss of selenium, which inevitably requires selenium environment, and also improves dispersion, coupling and reaction uniformity for the formation of a CIS compound.
    • 制备CIS(Cu-In-Se)化合物的方法包括(S1)制备多个第一复合颗粒,该第一复合颗粒具有与至少一部分硒化铜种子颗粒表面物理耦合的铟硒化物外层或多个第二复合颗粒 具有与硒化铟种子颗粒表面的至少一部分物理耦合的铜硒化物外层的复合颗粒; 和(S2)通过热处理选自第一复合颗粒,第二复合颗粒及其混合物的复合颗粒来制备CIS化合物。 该方法可以防止硒的损失,硒不可避免地需要硒环境,并且还可以改善形成CIS化合物的分散性,偶联性和反应均匀性。
    • 4. 发明申请
    • GAMMA CONTROL MAPPING CIRCUIT AND METHOD, AND ORGANIC EMITTING DISPLAY DEVICE
    • 游戏控制映射电路和方法以及有机发光显示装置
    • US20120200608A1
    • 2012-08-09
    • US13240841
    • 2011-09-22
    • In-Hwan KimKyoung-Soo LeeMin-Cheol Kim
    • In-Hwan KimKyoung-Soo LeeMin-Cheol Kim
    • G06K9/34G09G5/10
    • G09G3/3258G09G2320/0276
    • A gamma control data mapping circuit, a mapping method, and a display device using the gamma control data mapping circuit are provided. The gamma control data mapping circuit is for converting input data into grayscale data to display an original image on a display device. The mapping circuit separates the input data into high-order bit data and low-order bit data, and outputs a low-order grayscale boundary and a high-order grayscale boundary by using the high-order bit data. The gamma control data mapping circuit divides a grayscale region defined by the low-order grayscale boundary and the high-order grayscale boundary by a unit grayscale number to calculate unit grayscale data of the grayscale region, multiplies the low-order bit data by the unit grayscale data to calculate linear grayscale data, and adds the low-order grayscale boundary to the linear grayscale data to generate the grayscale data.
    • 提供伽马控制数据映射电路,映射方法和使用伽马控制数据映射电路的显示装置。 伽马控制数据映射电路用于将输入数据转换为灰度数据以在显示装置上显示原始图像。 映射电路将输入数据分离成高阶位数据和低位数据,并通过使用高阶位数据输出低阶灰度边界和高阶灰度边界。 伽马控制数据映射电路将由低阶灰度边界和高阶灰度边界定义的灰度区域以单位灰​​度数除以灰度区域的单位灰度数据,将低位数据乘以单位 灰度数据来计算线性灰度数据,并将低阶灰度边界添加到线性灰度数据以生成灰度数据。
    • 7. 发明授权
    • Light emission device and power supply therefor
    • 发光装置及其电源
    • US07173377B2
    • 2007-02-06
    • US11128706
    • 2005-05-13
    • Sung-Chon ParkKyoung-Soo Lee
    • Sung-Chon ParkKyoung-Soo Lee
    • G09G3/10
    • G09G3/3225G09G2320/043G09G2330/028H02M3/07H02M2001/0045H02M2001/009
    • A power supply device supplying power to a data driver of a light emission display device. The power supply device includes: an external reference voltage supply supplying an external reference voltage; a reference voltage generator converting external power into a regulated direct current (DC) reference voltage and outputs the regulated DC reference voltage when the external power is changed. A reference voltage selector selects one of the reference voltages output from the external reference voltage supply and the reference voltage generator and outputs a selected reference voltage. A voltage converter converts the regulated reference voltage output from the reference voltage selector into a plurality of internal DC power sources to be supplied to the drivers.
    • 向发光显示装置的数据驱动器供电的电源装置。 电源装置包括:提供外部参考电压的外部参考电压电源; 参考电压发生器将外部电源转换为调节直流(DC)参考电压,并在外部电源改变时输出调节的直流参考电压。 参考电压选择器选择从外部参考电压源和参考电压发生器输出的参考电压之一并输出所选择的参考电压。 电压转换器将从参考电压选择器输出的调节参考电压转换成多个内部直流电源,以提供给驱动器。
    • 8. 发明授权
    • Light emitting display
    • 发光显示
    • US08179390B2
    • 2012-05-15
    • US12170418
    • 2008-07-09
    • Kyoung Soo LeeKi Myeong EomJin Hyun Choi
    • Kyoung Soo LeeKi Myeong EomJin Hyun Choi
    • G06F3/038
    • G09G3/32G02F1/136286G09G2320/0223G09G2320/0233G09G2330/02
    • A light emitting display includes a substrate, a pixel area, a first power source line to supply a first power signal to each pixel on a first side of the pixel area, a second power source line to supply the first power signal to each pixel on a second side of the pixel area, and an impedance compensator for compensating a difference in a voltage drop between the first power source line and the second power source line. A voltage drop caused by line resistance that depends on the length of the first and second power source line that supply the first power signal to a lower and upper side of a pixel area, respectively, is equalized, thereby minimizing the voltage drop of the first power signal supplied to all pixels, and minimizing non-uniformity of brightness due to the voltage drop differences at each pixel.
    • 发光显示器包括:衬底,像素区域,用于向像素区域的第一侧上的每个像素提供第一功率信号的第一电源线;将第一功率信号提供给每个像素的第二电源线; 像素区域的第二侧,以及用于补偿第一电源线和第二电源线之间的电压降差的阻抗补偿器。 由线电阻引起的电压降分别取决于将第一功率信号提供给像素区域的下侧和上侧的第一和第二电源线的长度,从而最小化第一 功率信号提供给所有像素,并且由于每个像素处的电压降差异使亮度的不均匀性最小化。
    • 10. 发明申请
    • Method For Preparing Cis Compounds and Thin Layer, and Solar Cell Having Cis Compound Thin Layer
    • 制备化合物和薄层的方法,以及具有复合薄层的太阳能电池
    • US20090242033A1
    • 2009-10-01
    • US12309531
    • 2007-07-23
    • Seok-Hyun YoonKyoung-Soo Lee
    • Seok-Hyun YoonKyoung-Soo Lee
    • H01L31/0272C01B19/00
    • H01L31/0322Y02E10/541
    • A method for preparing a CIS (Cu—In—Se) compound includes (S1) producing a plurality of first composite particles having an indium selenide outer layer physically coupled to at least a part of a copper selenide seed particle surface or a plurality of second composite particles having a copper selenide outer layer physically coupled to at least a part of an indium selenide seed particle surface; and (S2) making a CIS compound by thermally treating composite particles selected from the group consisting of the first composite particles, the second composite particles and their mixtures. This method may prevent loss of selenium, which inevitably requires selenium environment, and also improves dispersion, coupling and reaction uniformity for the formation of a CIS compound.
    • 制备CIS(Cu-In-Se)化合物的方法包括(S1)制备多个第一复合颗粒,该第一复合颗粒具有与至少一部分硒化铜种子颗粒表面物理耦合的铟硒化物外层或多个第二复合颗粒 具有与硒化铟种子颗粒表面的至少一部分物理耦合的铜硒化物外层的复合颗粒; 和(S2)通过热处理选自第一复合颗粒,第二复合颗粒及其混合物的复合颗粒来制备CIS化合物。 该方法可以防止硒的损失,硒不可避免地需要硒环境,并且还可以改善形成CIS化合物的分散性,偶联性和反应均匀性。