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    • 3. 发明授权
    • Sensor apparatus with different proximity sensors and sensing method thereof
    • 具有不同接近传感器的传感器装置及其感测方法
    • US08723838B2
    • 2014-05-13
    • US13329869
    • 2011-12-19
    • Cheng-Chieh HuangJinn-Ann KuoChi-Huang ChangYu-Hao Kao
    • Cheng-Chieh HuangJinn-Ann KuoChi-Huang ChangYu-Hao Kao
    • G06F3/042
    • G06F3/0421G06F2203/04101
    • The present invention discloses a proximity sensing apparatus and a method thereof. A sensor apparatus comprises a panel, an emitting device, and a proximity sensor module. The panel includes a first transparent area and a second transparent area; an emitting device is located under the panel and the emitting device emitting a light passing through the first transparent area. The proximity sensor module is located under the panel and the proximity sensor module includes at least one proximity sensor with high sensitivity which is a second proximity sensor and at least one proximity sensor with low sensitivity which is a first proximity sensor, and the proximity sensor module receives the light passing through the second transparent area. The light passing through the first transparent area and then reflecting from an object to passing through the second transparent area, and the panel is able to provide a touch function.
    • 本发明公开了一种接近感测装置及其方法。 传感器装置包括面板,发光装置和接近传感器模块。 面板包括第一透明区域和第二透明区域; 发光装置位于面板下方,发光装置发射穿过第一透明区域的光。 接近传感器模块位于面板下方,并且接近传感器模块包括具有高灵敏度的至少一个接近传感器,其是第二接近传感器和具有低灵敏度的至少一个接近传感器,其是第一接近传感器,并且接近传感器模块 接收通过第二透明区域的光。 光穿过第一透明区域然后从物体反射通过第二透明区域,并且面板能够提供触摸功能。
    • 4. 发明授权
    • Photo sensing method with a variation of received light calculated based on a difference between positive and negative voltages of a capacitance
    • 基于电容的正负电压之差计算的接收光的变化的感光方法
    • US07964838B2
    • 2011-06-21
    • US12546215
    • 2009-08-24
    • Cheng Chieh HuangJinn-Ann Kuo
    • Cheng Chieh HuangJinn-Ann Kuo
    • H01J40/14
    • G01V8/10G01S7/487G01S17/026
    • The present invention discloses a photosensitive circuit comprising a photosensitivity unit, a capacitance and a switch unit. The photosensitivity unit is capable of receiving a received light, and the capacitance is capable of storing a photoelectric current corresponding to the received light. The switch unit is used to respectively provide the positive voltage of the capacitance to a comparison unit at a first time period, and the negative voltage of the capacitance to a comparison unit at a second time period. The comparison unit outputs a detection value according to the positive voltage and the negative voltage of the capacitance, the detection value is related to the distance between an object and the photosensitive circuit. The present invention further disclose a photosensitive chip to drive a luminescent unit to provide a detective light. The photosensitive chip comprises a sampling clock generator, the ambient light sensor unit, a proximity sensor unit and a driving clock generator.
    • 本发明公开了一种光敏电路,包括光敏单元,电容和开关单元。 感光单元能够接收接收的光,并且电容能够存储对应于所接收的光的光电流。 开关单元用于分别在第一时间段向比较单元提供电容的正电压,并且在第二时间段将电容的负电压提供给比较单元。 比较单元根据电容的正电压和负电压输出检测值,检测值与物体和感光电路之间的距离有关。 本发明还公开了一种用于驱动发光单元以提供检测光的感光芯片。 感光芯片包括采样时钟发生器,环境光传感器单元,接近传感器单元和驱动时钟发生器。
    • 5. 发明授权
    • Photosensitive circuit for detecting an object having a switch unit respectively providing positive voltage and negative voltage of a capacitance to a comparison unit at a first and a second time period
    • 用于检测具有开关单元的物体的感光电路,其在第一和第二时间段分别向比较单元提供电压的正电压和负电压
    • US07633049B1
    • 2009-12-15
    • US12219702
    • 2008-07-28
    • Cheng Chieh HuangJinn-Ann Kuo
    • Cheng Chieh HuangJinn-Ann Kuo
    • H01J40/14
    • G01V8/10G01S7/487G01S17/026
    • The present invention discloses a photosensitive circuit comprising a photosensitivity unit, a capacitance and a switch unit. The photosensitivity unit is capable of receiving a received light, and the capacitance is capable of storing a photoelectric current corresponding to the received light. The switch unit is used to respectively provide the positive voltage of the capacitance to a comparison unit at a first time period, and the negative voltage of the capacitance to a comparison unit at a second time period. The comparison unit outputs a detection value according to the positive voltage and the negative voltage of the capacitance, the detection value is related to the distance between an object and the photosensitive circuit. The present invention further disclose a photosensitive chip to drive a luminescent unit to provide a detective light. The photosensitive chip comprises a sampling clock generator, the ambient light sensor unit, a proximity sensor unit and a driving clock generator.
    • 本发明公开了一种光敏电路,包括光敏单元,电容和开关单元。 感光单元能够接收接收的光,并且电容能够存储对应于所接收的光的光电流。 开关单元用于分别在第一时间段向比较单元提供电容的正电压,并且在第二时间段将电容的负电压提供给比较单元。 比较单元根据电容的正电压和负电压输出检测值,检测值与物体与感光电路的距离有关。 本发明还公开了一种用于驱动发光单元以提供检测光的感光芯片。 感光芯片包括采样时钟发生器,环境光传感器单元,接近传感器单元和驱动时钟发生器。
    • 8. 发明授权
    • Electrically polar integrated capacitor and method of making same
    • 电极集成电容及其制作方法
    • US06597562B1
    • 2003-07-22
    • US10065043
    • 2002-09-13
    • Man-Chun HuJinn-Ann KuoWen-Chung Lin
    • Man-Chun HuJinn-Ann KuoWen-Chung Lin
    • H01G4228
    • H01L28/82H01L23/5223H01L23/5225H01L2924/0002H01L2924/00
    • An integrated capacitor includes a semiconductor substrate. A first vertical plate is laid over the semiconductor substrate. The first vertical plate consists of a plurality of first conductive slabs connected vertically using multiple first via plugs. A second vertical plate is laid over the semiconductor substrate in parallel with the first vertical plate. The second vertical plate consists of a plurality of second conductive slabs connected vertically using multiple second via plugs. A conductive plate is laid under the first vertical plate and second vertical plate over the semiconductor substrate for shielding the first vertical plate from producing a plate-to-substrate parasitic capacitance thereof. The second vertical plate is electrically connected with the conductive plate using a third via plug.
    • 集成电容器包括半导体衬底。 第一垂直板被放置在半导体衬底上。 第一垂直板由多个第一导电板构成,其使用多个第一通孔插头垂直连接。 第二垂直板与第一垂直板平行地放置在半导体衬底上。 第二垂直板由多个第二导电板构成,其使用多个第二通孔插头垂直连接。 导电板被放置在半导体衬底上的第一垂直板和第二垂直板之下,用于屏蔽第一垂直板以产生其板对衬底的寄生电容。 第二垂直板使用第三通孔塞与导电板电连接。
    • 9. 发明授权
    • Comparator circuit for analog-to-digital converter
    • 模拟 - 数字转换器的比较器电路
    • US06404373B1
    • 2002-06-11
    • US09689673
    • 2000-10-13
    • Chu-Chiao YuHer-Y ShihJinn-Ann Kuo
    • Chu-Chiao YuHer-Y ShihJinn-Ann Kuo
    • H03M136
    • H03M1/0646H03M1/36
    • A comparator circuit used in an analog-to-digital converter includes an input voltage signal line; a reference voltage signal line; a plurality of comparators connected to said input voltage signal line and said reference voltage signal line; a plurality of amplifiers corresponding separately to each of said plurality of comparators and connected respectively between said input voltage signal lines, said reference voltage signal lines, and their corresponding comparators; and a thermocode channel connected to outputs of said plurality of comparators. A plurality of resistors with resistances in a constant ratio are provided in said reference voltage signal line and each is connected between the inputs of two adjacent amplifiers. A plurality of averaging resistors are provided and each is connected between the drains of the input transistor of two adjacent comparators; wherein said plurality of averaging resistors have the same resistance.
    • 在模数转换器中使用的比较器电路包括输入电压信号线; 参考电压信号线; 连接到所述输入电压信号线和所述参考电压信号线的多个比较器; 多个放大器分别对应于所述多个比较器中的每一个并分别连接在所述输入电压信号线,所述参考电压信号线及其对应的比较器之间; 以及连接到所述多个比较器的输出端的热电极通道。 在所述参考电压信号线中提供具有恒定比例的电阻的多个电阻器,并且每个电阻器连接在两个相邻放大器的输入端之间。 提供多个平均电阻器并且各自连接在两个相邻比较器的输入晶体管的漏极之间; 其中所述多个平均电阻具有相同的电阻。