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    • 33. 发明授权
    • Image display system and method for eliminating mura defects
    • 图像显示系统及其解决方案
    • US08106930B2
    • 2012-01-31
    • US12113486
    • 2008-05-01
    • Shou-Cheng WangDu-Zen Peng
    • Shou-Cheng WangDu-Zen Peng
    • G09G5/02G09G5/00G06F3/038
    • G09G3/3688G09G3/3648G09G2310/0297G09G2320/0209G09G2320/0219
    • Image display techniques for eliminating mura defects, which collects reference data and adjusts the gray levels. The image display systems comprising a plurality of pixels, a memory, and an ASIC. Each of the pixels relates to a mura compensation coefficient set. The mura compensation coefficient sets of the pixels are generated by a coefficient generator. The memory stores the mura compensation coefficient sets of the pixels. The ASIC reads the mura compensation coefficient sets from the memory. With different mura compensation coefficient sets, the ASIC serves as different mura compensation function sets. Each mura compensation function set relates to one of the aforementioned pixels and is used for transforming an original gray level to a mura-eliminated gray level to drive the corresponding pixel.
    • 用于消除mura缺陷的图像显示技术,其收集参考数据并调整灰度级。 图像显示系统包括多个像素,存储器和ASIC。 像素中的每一个与mura补偿系数组相关。 像素的mura补偿系数组由系数发生器产生。 存储器存储像素的mura补偿系数组。 ASIC从存储器读取mura补偿系数组。 使用不同的mura补偿系数组,ASIC用作不同的mura补偿功能集。 每个mura补偿功能集涉及上述像素中的一个,并且用于将原始灰度级转换为mura消除的灰度级以驱动相应的像素。
    • 35. 发明授权
    • Systems for displaying images involving display panels
    • 用于显示涉及显示面板的图像的系统
    • US07652681B2
    • 2010-01-26
    • US11402588
    • 2006-04-11
    • Shih-Chang ChangDu-Zen Peng
    • Shih-Chang ChangDu-Zen Peng
    • G09G5/02H01L29/18
    • G09G3/02G09G2320/02G09G2360/142
    • Systems for displaying images are provided. A representative system comprises a display panel. The display panel comprises first, second and third signal lines, and first and second pixel areas. The first and second signal lines are extended straight along a first direction. The third signal line is extended straight along a second direction and interlaced with the first and second signal lines. The first pixel area is coupled to the first signal line, and the second pixel area is coupled to the second signal line and the first signal line and has a second driving area. A relative position of a first driving area in the first pixel area is different from that of a second driving area in the second pixel area and the first and second pixels display the same color.
    • 提供显示图像的系统。 代表性系统包括显示面板。 显示面板包括第一,第二和第三信号线以及第一和第二像素区域。 第一和第二信号线沿第一方向直线延伸。 第三信号线沿着第二方向直线延伸并且与第一和第二信号线交错。 第一像素区域耦合到第一信号线,并且第二像素区域耦合到第二信号线和第一信号线并且具有第二驱动区域。 第一像素区域中的第一驱动区域的相对位置与第二像素区域中的第二驱动区域的相对位置不同,并且第一和第二像素显示相同的颜色。
    • 36. 发明授权
    • Organic electroluminescent device and fabrication methods thereof
    • 有机电致发光器件及其制造方法
    • US07397065B2
    • 2008-07-08
    • US11381213
    • 2006-05-02
    • Chang-Ho TsengDu-Zen PengYaw-Ming Tsai
    • Chang-Ho TsengDu-Zen PengYaw-Ming Tsai
    • H01L29/08H01L33/00
    • H01L27/3269
    • The invention discloses an organic electroluminescent device comprising a pixel element. The pixel element comprises a substrate comprising a control area and a sensitive area, a switch device and a driving device overlying the control area, a photo diode serving as a photo sensor overlying the sensitive area, an OLED element disposed in the sensitive area and illuminating to the photo sensor, and a capacitor coupled to the photo sensor and the driving device. Specifically, a photo current corresponding to a brightness of the OLED element is generated by the photo diode responsive to the OLED element illuminating the photo diode such that a voltage of the capacitor is adjusted by the photo current to control the current passing through the driving device, thus changing the illumination of the OLED element. A method for fabricating the OLED is also provided.
    • 本发明公开了一种包括像素元件的有机电致发光器件。 像素元件包括:包括控制区域和敏感区域的基板,覆盖控制区域的开关装置和驱动装置,用作覆盖敏感区域的光电传感器的光电二极管,设置在敏感区域中的OLED元件和照明 耦合到光传感器和耦合到光传感器和驱动装置的电容器。 具体地,对应于OLED元件的亮度的光电流由光电二极管产生,响应于OLED元件照射光电二极管,使得电容器的电压由光电流调节以控制通过驱动装置的电流 ,从而改变OLED元件的照明。 还提供了制造OLED的方法。
    • 37. 发明申请
    • ORGANIC ELECTROLUMINESCENT DEVICE AND FABRICATION METHODS THEREOF
    • 有机电致发光器件及其制造方法
    • US20070257250A1
    • 2007-11-08
    • US11381213
    • 2006-05-02
    • Chang-Ho TsengDu-Zen PengYaw-Ming Tsai
    • Chang-Ho TsengDu-Zen PengYaw-Ming Tsai
    • H01L29/08H01L33/00
    • H01L27/3269
    • The invention discloses an organic electroluminescent device comprising a pixel element. The pixel element comprises a substrate comprising a control area and a sensitive area, a switch device and a driving device overlying the control area, a photo diode serving as a photo sensor overlying the sensitive area, an OLED element disposed in the sensitive area and illuminating to the photo sensor, and a capacitor coupled to the photo sensor and the driving device. Specifically, a photo current corresponding to a brightness of the OLED element is generated by the photo diode responsive to the OLED element illuminating the photo diode such that a voltage of the capacitor is adjusted by the photo current to control the current passing through the driving device, thus changing the illumination of the OLED element. A method for fabricating the OLED is also provided.
    • 本发明公开了一种包括像素元件的有机电致发光器件。 像素元件包括:包括控制区域和敏感区域的基板,覆盖控制区域的开关装置和驱动装置,用作覆盖敏感区域的光电传感器的光电二极管,设置在敏感区域中的OLED元件和照明 耦合到光传感器和耦合到光传感器和驱动装置的电容器。 具体地,对应于OLED元件的亮度的光电流由光电二极管产生,响应于OLED元件照射光电二极管,使得电容器的电压由光电流调节以控制通过驱动装置的电流 ,从而改变OLED元件的照明。 还提供了制造OLED的方法。
    • 39. 发明授权
    • Early trigger of ESD protection device by a current spike generator
    • 通过电流尖峰发生器早期触发ESD保护装置
    • US5870268A
    • 1999-02-09
    • US954945
    • 1997-10-22
    • Shi-Tron LinDu-Zen PengShyh-Chyi Wong
    • Shi-Tron LinDu-Zen PengShyh-Chyi Wong
    • H01L27/02H02H3/22
    • H01L27/0251H01L27/0259H01L27/0266
    • A transient switching circuit is provided to generate a voltage signal with fast voltage switching phenomenon during the initial ESD transient. The voltage signal is applied to a current spike generator for generating a current spike which forward bias an n+/pwell diode for injecting minority carriers into a substrate on which ESD protection device is embodied. The injected minority carriers are used to trigger turn-on of the ESD protection device. These minority carriers flow toward the drain-substrate junction of the NMOS transistor such that the NMOS transistor is triggered at a trigger voltage lower than that provided by the prior arts. The present invention improves the ESD performance of an ESD protection device, such as a MOSFET or bipolar transistor, which is provided for protecting the power bus or IC pins during an ESD event.
    • 提供瞬态开关电路以在初始ESD瞬变期间产生具有快速电压切换现象的电压信号。 电压信号被施加到电流尖峰发生器,用于产生正向偏置n + / pwell二极管的电流尖峰,用于将少数载流子注入到其上体现ESD保护装置的衬底中。 注入的少数载流子用于触发ESD保护装置的导通。 这些少数载流子流向NMOS晶体管的漏极 - 衬底结,使得在比现有技术提供的触发电压低的触发电压下触发NMOS晶体管。 本发明改进了ESD保护装置(例如MOSFET或双极晶体管)的ESD性能,其被提供用于在ESD事件期间保护电源总线或IC引脚。
    • 40. 发明授权
    • Display system
    • 显示系统
    • US08842059B2
    • 2014-09-23
    • US13552073
    • 2012-07-18
    • Shou-Cheng WangTse-Yuan ChenDu-Zen Peng
    • Shou-Cheng WangTse-Yuan ChenDu-Zen Peng
    • G09G3/30
    • G09G3/3233G09G2300/0852G09G2300/0861
    • A display system including at least one pixel is disclosed. The pixel includes a switching unit and a controlling unit. The switching unit controls a level of a first node. The controlling unit controls a level of a second node. During a first period, the level of the first node equals to a first reference level and the level of the second node equals to a second reference level. During a second period, the level of the first node equals to a third reference level and the voltage difference between the first and the second nodes equals to a threshold voltage of a driving unit. During a third period, the level of the first node equals to a data signal. During a fourth period, the driving unit lights a luminescence unit according to the voltage difference between the first and the second nodes.
    • 公开了包括至少一个像素的显示系统。 像素包括切换单元和控制单元。 开关单元控制第一节点的电平。 控制单元控制第二节点的电平。 在第一时段期间,第一节点的等级等于第一参考电平,而第二节点的电平等于第二参考电平。 在第二时段期间,第一节点的电平等于第三参考电平,并且第一和第二节点之间的电压差等于驱动单元的阈值电压。 在第三时段期间,第一节点的电平等于数据信号。 在第四时段期间,驱动单元根据第一和第二节点之间的电压差点亮发光单元。