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    • 31. 发明授权
    • Fresnel liquid crystal lens and 2D/3D switchable display panel
    • 菲涅尔液晶镜头和2D / 3D可切换显示面板
    • US09261738B2
    • 2016-02-16
    • US14542642
    • 2014-11-16
    • AU Optronics Corp.
    • Sheng-Chi LiuPo-Sen YangYi-Lin SunJen-Lang Tung
    • G02F1/1335G02F1/1343G02F1/133G02F1/1333G02B27/22
    • G02F1/134309G02B27/2214G02F1/13306G02F1/13338G02F1/29G02F2001/134345
    • A Fresnel liquid crystal lens and a 2D/3D switchable display panel are provided. The Fresnel liquid crystal lens includes a plurality of liquid crystal lens units. Each liquid crystal lens unit includes a first main electrode and two first sub electrodes disposed on a first substrate, a second main electrode and two second sub electrodes disposed on a second substrate, and a liquid crystal layer disposed between the first and second substrates. The first sub electrodes are disposed on two opposite sides of the first main electrode, and a first gap is formed between the first main electrode and the first sub electrode. The second sub electrodes are disposed on two opposite sides of the second main electrode, and a second gap is formed between the second main electrode and the second sub electrode. In a vertical projection direction, the first main electrode overlaps the second main electrode, the first sub electrodes overlap the second sub electrodes, and the first main electrode partially overlaps the second sub electrodes.
    • 提供菲涅尔液晶透镜和2D / 3D可切换显示面板。 菲涅尔液晶透镜包括多个液晶透镜单元。 每个液晶透镜单元包括第一主电极和布置在第一基板上的两个第一子电极,设置在第二基板上的第二主电极和两个第二子电极以及设置在第一和第二基板之间的液晶层。 第一子电极设置在第一主电极的两个相对侧上,并且在第一主电极和第一子电极之间形成第一间隙。 第二子电极设置在第二主电极的两个相对侧上,并且在第二主电极和第二子电极之间形成第二间隙。 在垂直投影方向上,第一主电极与第二主电极重叠,第一副电极与第二副电极重叠,第一主电极部分地与第二副电极重叠。
    • 32. 发明授权
    • Shift register circuit
    • 移位寄存器电路
    • US09251911B2
    • 2016-02-02
    • US14184779
    • 2014-02-20
    • AU Optronics Corp.
    • Wei-Li LinChun-Hsin LiuChia-Heng ChenShu-Fang Hou
    • G11C19/00G11C19/28
    • 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。
    • 33. 发明授权
    • Level shift circuit with short-circuit detection mechanism and short-circuit detection method thereof
    • 具有短路检测机构的电平移位电路及其短路检测方法
    • US09250284B1
    • 2016-02-02
    • US14546605
    • 2014-11-18
    • AU OPTRONICS CORP.
    • Jin-Jang YangChing-Hung WangHuang-Ti Lin
    • H03L5/00G01R31/02H03K19/0185H03K3/356
    • G01R31/025G01R19/16576H03K19/00315H03K19/018521
    • A level shift circuit includes a level shift module and a voltage comparing module. The level shift module includes a plurality of stages of level shift units, each including a front-end circuit and an inverter circuit. The inverter circuit is electrically coupled to the front-end circuit and receives and inverts an output signal of the front-end circuit. The front-end circuit receives a clock signal, converts high/low voltage level of the clock signal into first/second voltage level, respectively, and outputs a respective signal with the first/second voltage level. The voltage comparing module is coupled to the level shift module and receives output signals of the inverter circuit of the first level shift unit and of the front-end circuit in the second level shift unit and compares the two output signals. The voltage comparing module outputs a short-circuit protection trigger signal when the two output signals have different voltages.
    • 电平移位电路包括电平移位模块和电压比较模块。 电平移位模块包括多级电平移位单元,每级包括前端电路和反相器电路。 逆变器电路电耦合到前端电路,并接收和反相前端电路的输出信号。 前端电路接收时钟信号,分别将时钟信号的高/低电压电平转换为第一/第二电压电平,并输出具有第一/第二电压电平的相应信号。 电压比较模块耦合到电平移位模块,并且接收第二电平移位单元中的第一电平移位单元和前端电路的逆变器电路的输出信号并比较两个输出信号。 当两个输出信号具有不同的电压时,电压比较模块输出短路保护触发信号。
    • 36. 发明授权
    • Pixel structure
    • 像素结构
    • US09224868B2
    • 2015-12-29
    • US14622906
    • 2015-02-15
    • AU Optronics Corp.
    • Ssu-Hui LuMing-Hsien Lee
    • H01L29/786H01L21/30H01L27/12
    • H01L29/78675H01L21/3003H01L27/1214H01L27/1248H01L27/127
    • A pixel structure includes a substrate, a patterned semiconductor layer, an insulation layer, a gate electrode, a first inter-layer dielectric (ILD) layer, a second ILD layer, a third ILD layer, a source electrode and a drain electrode. The patterned semiconductor layer is disposed on the substrate. The insulation layer is disposed on the patterned semiconductor layer. The gate electrode is disposed on the insulation layer. The first ILD layer is disposed on the gate electrode, the second ILD layer is disposed on the first ILD layer, and the third ILD layer is disposed on the second ILD layer. The source electrode and the drain electrode are disposed on the third ILD layer, wherein the source electrode and the drain electrode are electrically connected to the patterned semiconductor layer via a first contact window and a second contact window respectively.
    • 像素结构包括衬底,图案化半导体层,绝缘层,栅电极,第一层间电介质(ILD)层,第二ILD层,第三ILD层,源电极和漏电极。 图案化半导体层设置在基板上。 绝缘层设置在图案化的半导体层上。 栅电极设置在绝缘层上。 第一ILD层设置在栅电极上,第二ILD层设置在第一ILD层上,第三ILD层设置在第二ILD层上。 源电极和漏极设置在第三ILD层上,其中源电极和漏电极分别经由第一接触窗口和第二接触窗口电连接到图案化半导体层。
    • 37. 发明授权
    • Light emitting diode display panel
    • 发光二极管显示面板
    • US09214479B2
    • 2015-12-15
    • US14284402
    • 2014-05-22
    • AU Optronics Corp.
    • Peng-Bo Xi
    • H01L27/32H01L27/12
    • H01L27/124G09G2300/0426H01L27/3279
    • A light emitting diode (LED) display panel includes a plurality of pixel units, a plurality of first bar-shaped electrode layers arranged along a first direction and a plurality second bar-shaped electrode layers arranged along a second direction. The first bar-shaped electrode layers are coupled to a first power supply and the pixel units, and the second bar-shaped electrode layers are also coupled to the first power supply. Only a non-complete portion of overlap positions between the first and second bar-shaped electrode layers have first conductive paths configured to couple the first bar-shaped electrode layers to the corresponding second bar-shaped electrode layers.
    • 发光二极管(LED)显示面板包括多个像素单元,沿着第一方向布置的多个第一棒状电极层和沿着第二方向布置的多个第二棒状电极层。 第一条形电极层耦合到第一电源并且像素单元,并且第二条形电极层也耦合到第一电源。 在第一和第二棒状电极层之间只有非完整部分的重叠位置具有被配置为将第一条形电极层耦合到相应的第二条形电极层的第一导电路径。
    • 38. 发明授权
    • Shift register circuit and shift register
    • 移位寄存器电路和移位寄存器
    • US09208737B2
    • 2015-12-08
    • US14325392
    • 2014-07-08
    • AU Optronics Corp.
    • Kai-Wei HongPin-Yu ChanLi-Wei LiuYung-Chih Chen
    • G09G3/36
    • G09G3/3674G09G2310/0286
    • A shift register circuit has a plurality of shift registers. Each of the shift registers has at least four input terminals, a signal input terminal, an output terminal, a pull-up circuit, a driving circuit, a stability driving circuit, and a pull-down circuit. The signal input terminal receives an input signal, and the pull-up circuit is configured to pull up a voltage level of a node of the shift register. The driving circuit outputs a gate driving signal according to the voltage level of the node. The pull-down circuit is configured to pull down the voltage level of the node. The stability driving circuit can pull down the voltage of the output terminal according to the voltages of the four input terminals, and, thus, can reduce the response time of the shift register circuit and increase the operation region of the shift register circuit.
    • 移位寄存器电路具有多个移位寄存器。 每个移位寄存器具有至少四个输入端子,信号输入端子,输出端子,上拉电路,驱动电路,稳定性驱动电路和下拉电路。 信号输入端子接收输入信号,并且上拉电路被配置为上拉移位寄存器的节点的电压电平。 驱动电路根据节点的电压电平输出栅极驱动信号。 下拉电路被配置为降低节点的电压电平。 稳定驱动电路可以根据四个输入端子的电压来降低输出端子的电压,从而可以减少移位寄存器电路的响应时间并增加移位寄存器电路的工作区域。
    • 39. 发明授权
    • Light sensing apparatus and adjustment method thereof
    • 光感测装置及其调整方法
    • US09182277B2
    • 2015-11-10
    • US13714652
    • 2012-12-14
    • AU OPTRONICS CORP.
    • Chun-Lung HungChang-Hung YangChun-Wei YangChien-Ming Ko
    • G01J1/46G01J1/18G01J1/42G06F3/041G06F3/042
    • G01J1/46G01J1/18G01J1/4228G06F3/0412G06F3/0416G06F3/0421
    • A light sensing apparatus includes a light sensing module, a signal conversion module and a processing module. The light sensing module is configured to output a first and second sense signals according to a light intensity emitting thereon. The signal conversion module is electrically coupled to the light sensing module and configured to receive the first and second sense signals and output a sense value according to a relative difference between the first and second sense signals, The comparison module is electrically coupled to the signal conversion module and configured to adjust a light sensing characteristic of the light sensing module according to the sense value so as to adjust a light sensing characteristic of the light sensing module. An adjustment method for a light sensing apparatus is also provided.
    • 光感测装置包括光感测模块,信号转换模块和处理模块。 光感测模块被配置为根据在其上发射的光强度输出第一和第二感测信号。 信号转换模块电耦合到光感测模块并且被配置为接收第一和第二感测信号,并根据第一和第二感测信号之间的相对差输出感测值。比较模块电耦合到信号转换 模块,并且被配置为根据感测值调整光感测模块的光感测特性,以便调节光感测模块的光感测特性。 还提供了一种用于光感测装置的调节方法。
    • 40. 发明授权
    • Method for driving active display
    • 驱动主动显示的方法
    • US09153174B2
    • 2015-10-06
    • US11417136
    • 2006-05-04
    • Yu-Chun Tang
    • Yu-Chun Tang
    • G09G3/36G09G3/32
    • G09G3/325G09G2300/0417G09G2300/0842G09G2310/0251G09G2310/0254G09G2320/043
    • A method for adjusting the electricity of a TFT has the steps of starting a displaying sequence by driving the TFT and resetting the electricity of the TFT. The step of starting the display sequence by driving the TFT further comprises the steps of: (a) providing a gate driving voltage to the gate electrode of the TFT; (b) providing a source driving voltage to the source electrode of the TFT; and (c) providing a drain driving voltage to the drain electrode of the TFT. The step of resetting the electricity of the TFT comprises the steps of: (a) providing a gate resetting voltage to the gate electrode of the TFT; (b) providing a source resetting voltage to the source electrode of the TFT; and (c) providing a drain resetting voltage to the drain electrode of the TFT. The gate resetting voltage is smaller than or equal to the source resetting voltage or the drain resetting voltage. The source resetting voltage and the drain resetting voltage are adjustable.
    • 用于调整TFT的电力的方法具有通过驱动TFT并重新设置TFT的电流来开始显示顺序的步骤。 通过驱动TFT开始显示顺序的步骤还包括以下步骤:(a)向TFT的栅电极提供栅极驱动电压; (b)向TFT的源电极提供源极驱动电压; 和(c)向TFT的漏电极提供漏极驱动电压。 复位TFT的电路的步骤包括以下步骤:(a)向TFT的栅电极提供栅极复位电压; (b)向TFT的源极提供源极复位电压; 和(c)向TFT的漏电极提供漏极复位电压。 栅极复位电压小于或等于源极复位电压或漏极复位电压。 源极复位电压和漏极复位电压可调。