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    • 51. 发明授权
    • Display panel
    • 显示面板
    • US09070897B2
    • 2015-06-30
    • US13471480
    • 2012-05-15
    • Yen-Shih HuangChia-Yuan YehBo-Feng LeeTa-Wei Chiu
    • Yen-Shih HuangChia-Yuan YehBo-Feng LeeTa-Wei Chiu
    • H01L27/12H01L51/52H01L27/32
    • H01L51/524H01L27/3258H01L27/3276
    • A display panel includes a substrate, a TFT device, a patterned dielectric layer, a patterned metal layer and a bridge line. The TFT device is disposed in a display region. The patterned dielectric layer includes an ILD layer disposed over the TFT device, and a sealant stage disposed in a peripheral region. The patterned metal layer includes a signal line disposed on the ILD layer, and a first connecting line and a second connecting line. The first connecting line is disposed in an inner side of the sealant stage facing the display region, and the first connecting line is electrically connected to the signal line. The second connecting line is disposed in an outer side of the sealant stage opposite to the display region. The bridge line is disposed under the sealant stage, and the first connecting line and the second connecting line are electrically connected through the bridge line.
    • 显示面板包括基板,TFT器件,图案化电介质层,图案化金属层和桥接线。 TFT器件设置在显示区域中。 图案化电介质层包括设置在TFT器件上的ILD层和设置在周边区域中的密封剂级。 图案化金属层包括设置在ILD层上的信号线,以及第一连接线和第二连接线。 第一连接线设置在面向显示区域的密封剂阶段的内侧,并且第一连接线电连接到信号线。 第二连接线设置在与显示区域相对的密封剂台的外侧。 桥接线设置在密封剂阶段下方,第一连接线和第二连接线通过桥接线电连接。
    • 53. 发明授权
    • Display with wireless charging function, operation method thereof and corresponding portable electronic apparatus
    • 具有无线充电功能的显示器,其操作方法和相应的便携式电子设备
    • US09030457B2
    • 2015-05-12
    • US13757943
    • 2013-02-04
    • AU Optronics Corp.
    • Jia-Wei LiuYueh-Han Li
    • G09G3/00G09G3/20
    • G09G3/00G09G3/20G09G2330/02G09G2380/04
    • A display with wireless power charging function, an operation method thereof and a corresponding portable electronic apparatus are provided. The display includes a RFID read/write module and is applicable to electrically charge a portable electronic apparatus with a RFID tag. The operation method includes steps of: displaying an image on the display surface of the display panel of the display; transmitting data between the Radio Frequency Identification read/write module of the display and the Radio Frequency Identification tag of the portable electronic apparatus and electrically charging the energy storage unit of the portable electronic apparatus while the portable electronic apparatus is placed in the readable/writable area; and adjusting, while the portable electronic apparatus is placed in the readable/writable area, the image to an updated image having no overlap with the readable/writable area if the image has an overlap with the readable/writable area.
    • 提供具有无线充电功能的显示器,其操作方法和相应的便携式电子设备。 显示器包括RFID读/写模块,并且可应用于对具有RFID标签的便携式电子设备进行电荷充电。 该操作方法包括以下步骤:在显示器的显示面板的显示面上显示图像; 在显示器的射频识别读/写模块和便携式电子设备的射频识别标签之间传输数据,并且在便携式电子设备放置在可读/可写区域中时对便携式电子设备的能量存储单元进行充电 ; 以及如果所述图像与所述可读/可写区域重叠,则将所述便携式电子设备放置在所述可读/可写区域中,将所述图像调整为与所述可读/可写区域不重叠的更新图像。
    • 55. 发明申请
    • DISPLAY DEVICE
    • 显示设备
    • US20150085220A1
    • 2015-03-26
    • US14159714
    • 2014-01-21
    • AU Optronics Corp.
    • Ming-Lung CHENKun-Hung HSIEH
    • G02F1/1333
    • G02F1/133606G02F2001/133607
    • A display device includes a flexible display panel, a light module and an optical film. The flexible display panel has a first axis and curving about the first axis as an axis of curvature. The light module is located on one side of the flexible display panel. The optical film is located between the flexible display panel and the light module. The optical film includes a substrate and multiple first strip microstructures. The substrate has a first side and a second side that are opposite to each other. The first side faces the light module while the second side faces the flexible display panel. The first strip microstructures are located on the first side of the substrate, and the first strip microstructures extend along a second axis.
    • 显示装置包括柔性显示面板,光模块和光学薄膜。 柔性显示面板具有第一轴线并围绕作为曲率轴的第一轴线弯曲。 光模块位于柔性显示面板的一侧。 光学膜位于柔性显示面板和光模块之间。 光学膜包括基底和多个第一条带微结构。 基板具有彼此相对的第一侧和第二侧。 第一面朝向光模块,而第二面朝向柔性显示面板。 第一条带微结构位于基板的第一侧上,第一条带微结构沿第二轴延伸。
    • 58. 发明授权
    • Semiconductor device and method of making the same
    • 半导体器件及其制造方法
    • US08981377B2
    • 2015-03-17
    • US13447295
    • 2012-04-16
    • Shou-Peng Weng
    • Shou-Peng Weng
    • H01L29/786H01L27/12H01L29/423
    • H01L27/1262H01L27/1251H01L29/42384H01L29/66757H01L29/786H01L29/78618
    • A semiconductor device and method of making the same are provided. The method of forming semiconductor device uses non-implant process to form doped layers, and thus is applicable for large-size display panel. The method of forming semiconductor device uses annealing process to reduce the resistance of the doped layers, which improves the electrical property of the semiconductor device. A first dielectric layer of the semiconductor device is able to protect a semiconductor layer disposed in a first region of the substrate from being damaged during the process, and an etching stop layer of the semiconductor device is able to protect the semiconductor layer disposed in a second region of the substrate from being damaged when defining second doped layers. The first dielectric layer and the etching stop layer are formed by the same patterned dielectric layer, thus no extra process is required, fabrication cost is reduced, and yield is increased.
    • 提供半导体器件及其制造方法。 半导体器件的形成方法采用非注入工艺形成掺杂层,因此适用于大尺寸显示面板。 半导体器件的形成方法使用退火工艺来降低掺杂层的电阻,这改善了半导体器件的电性能。 半导体器件的第一电介质层能够保护设置在衬底的第一区域中的半导体层在工艺期间被损坏,并且半导体器件的蚀刻停止层能够保护设置在第二层中的半导体层 当限定第二掺杂层时,衬底的区域被损坏。 第一电介质层和蚀刻停止层由相同的图案化电介质层形成,因此不需要额外的工艺,制造成本降低,产量增加。
    • 60. 发明申请
    • Shift Register Circuit
    • 移位寄存器电路
    • US20150049853A1
    • 2015-02-19
    • US14184779
    • 2014-02-20
    • AU Optronics Corp.
    • Wei-Li LinChun-Hsin LiuChia-Heng ChenShu-Fang Hou
    • G11C19/28
    • G11C19/28G09G3/003G09G2310/0286
    • A shift register circuit includes first-type and second-type shift registers, each comprising a pull-down control circuit, a pull-down circuit, a key pull-down circuit, a 3D-mode pull-up circuit, and a 2D-mode pull-up circuit. The pull-down circuit is connected to the pull-down control circuit. The key pull-down circuit, connected to the pull-down circuit, pulls down a driving signal and a gate control signal. When the 2D-mode pull-up circuit operates, a first-type shift register generates a driving signal for a second-type shift register. When the 3D-mode pull-up circuit operates, a first-type shift register generates another driving signal for another first-type shift register.
    • 移位寄存器电路包括第一类型和第二类型移位寄存器,每个移位寄存器包括下拉控制电路,下拉电路,键下拉电路,3D模式上拉电路和2D- 模式上拉电路。 下拉电路连接到下拉控制电路。 连接到下拉电路的关键下拉电路拉下驱动信号和门控信号。 当2D模式上拉电路工作时,第一类型移位寄存器产生用于第二类型移位寄存器的驱动信号。 当3D模式上拉电路工作时,第一类型的移位寄存器产生用于另一第一类型移位寄存器的另一个驱动信号。