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    • 64. 发明申请
    • Type of Radial Circuit Used as LCD Drivers
    • 用作LCD驱动器的径向电路类型
    • US20080150922A1
    • 2008-06-26
    • US11935906
    • 2007-11-06
    • Liangtao ZhangYun Yang
    • Liangtao ZhangYun Yang
    • G06F3/038
    • G09G3/3685G09G2330/021
    • This invention discloses a type of radial circuit for use in driving LCD monitors. The radial circuit includes an odd-even column data generator. The odd-even column data generator receives data from a modulation counter and divides the data into two groups of data having opposite levels: odd column modulation data and even column modulation data. The odd-even column data generator then sends the two sets of data to a comparator comparing the display data and modulation data of the LCD. The comparator is used to control the odd and even columns of the LCD. This utility model divides all the columns in the same row into odd and even columns. An opposite driver voltage waveform is output from between the odd and even columns of the neighboring columns. While the odd columns discharge, the even column recharges. This type of simultaneous discharge and recharge process creates just the right mutual electric charge compensation; and it results in minimizing the electric charge dissipation which saves energy.
    • 本发明公开了一种用于驱动LCD监视器的径向电路。 径向电路包括奇数偶数列数据发生器。 奇数列数据生成器从调制计数器接收数据,并将数据分成具有相反电平的两组数据:奇数列调制数据和偶数列调制数据。 奇数列数据发生器然后将两组数据发送到比较LCD的显示数据和调制数据的比较器。 比较器用于控制LCD的奇数和偶数列。 此实用程序模型将同一行中的所有列分为奇数列和偶数列。 从相邻列的奇数列和偶数列之间输出相反的驱动器电压波形。 当奇数列排出时,偶数列再充电。 这种同时放电和充电过程产生正确的相互电荷补偿; 并且导致最小化节省能量的电荷耗散。
    • 65. 发明申请
    • METHOD FOR AVOIDING POLYSILICON DEFECT
    • 避免多晶硅缺陷的方法
    • US20080132076A1
    • 2008-06-05
    • US11852936
    • 2007-09-10
    • Yun YangZhenliang YangHyun Jae KimGangning Wang
    • Yun YangZhenliang YangHyun Jae KimGangning Wang
    • H01L21/311
    • H01L21/31116H01L21/31111H01L27/10852
    • A method for avoiding a polysilicon defect includes: forming a silicon oxide layer on a silicon substrate; forming a polysilicon plug in the silicon oxide layer, with the polysilicon plug going through the silicon oxide layer; forming on the silicon oxide layer a silicon nitride layer covering the polysilicon plug; forming interlayer dielectric layers on the silicon nitride layer; etching the interlayer dielectric layers over the polysilicon plug to form an opening; etching the silicon nitride layer at the opening to expose the polysilicon plug; and filling polysilicon into the opening such that the opening is in communication with polysilicon plug. In this way, there will be no reaction of the HSC1 with the polysilicon plug due to the protection by the silicon nitride layer. Moreover, since the silicon nitride layer is the last to be etched, there will be no residual thereof, enabling a subsequent flat filling.
    • 一种避免多晶硅缺陷的方法包括:在硅衬底上形成氧化硅层; 在所述氧化硅层中形成多晶硅插塞,所述多晶硅插塞穿过所述氧化硅层; 在所述氧化硅层上形成覆盖所述多晶硅插塞的氮化硅层; 在氮化硅层上形成层间电介质层; 蚀刻多晶硅插塞上的层间电介质层以形成开口; 在开口处蚀刻氮化硅层以暴露多晶硅插塞; 并将多晶硅填充到开口中,使得开口与多晶硅插塞连通。 以这种方式,由于氮化硅层的保护,HSC 1与多晶硅插塞将不会发生反应。 此外,由于氮化硅层是最后被蚀刻的,所以不会残留氮化硅层,从而能够进行随后的平坦填充。
    • 67. 发明授权
    • Induction unit, touch detecting assembly and touch sensitive device
    • 感应单元,触摸检测组件和触敏设备
    • US09459739B2
    • 2016-10-04
    • US14131729
    • 2012-07-26
    • Zhengang LiChen HuangYun Yang
    • Zhengang LiChen HuangYun Yang
    • G06F3/041G06F3/044
    • G06F3/044G06F3/0416G06F2203/04112
    • An induction unit, a touch detecting assembly, and a touch sensitive device are provided. The touch sensitive device comprises: a substrate (100); a plurality of induction units (200) not intersecting with each other, and a detecting module (300) connected with the first electrodes (210) and the second electrodes (220) respectively. The induction unit (200) comprises a first electrode (210), a second electrode (220), a plurality of first structures (230) and a plurality of second structures (240). The plurality of first structures (230) are connected end to end via the plurality of second structures (240). The detecting module (300) is configured to apply a level signal to the first electrodes (210) and/or the second electrodes (220) to charge a self capacitor, to calculate a ratio between a first resistor and a second resistor, and to determine a touch position in a first direction and a touch position in a second direction.
    • 提供感应单元,触摸检测组件和触敏设备。 触敏装置包括:基板(100); 多个彼此不相交的感应单元(200),以及分别与第一电极(210)和第二电极(220)连接的检测模块(300)。 感应单元(200)包括第一电极(210),第二电极(220),多个第一结构(230)和多个第二结构(240)。 多个第一结构(230)经由多个第二结构(240)端对端地连接。 检测模块(300)被配置为向第一电极(210)和/或第二电极(220)施加电平信号以对自身电容器充电,以计算第一电阻器和第二电阻器之间的比率,并且 确定在第一方向上的触摸位置和在第二方向上的触摸位置。
    • 68. 发明授权
    • Induction unit, touch detecting assembly and touch sensitive device
    • 感应单元,触摸检测组件和触敏设备
    • US09411476B2
    • 2016-08-09
    • US14131810
    • 2012-07-26
    • Zhengang LiChen HuangYun Yang
    • Zhengang LiChen HuangYun Yang
    • G06F3/045G06F3/044
    • G06F3/044G06F3/0416G06F2203/04112
    • A touch detecting assembly, a touch sensitive device, and a portable electronic apparatus are provided. The touch detecting assembly (100) comprises: a substrate (1); and a plurality of induction units (2) disposed on the substrate (1) and not intersecting with each other, each induction unit (2) comprising an induction body (20), and a first electrode (21) and a second electrode (22) connected with the induction body (20) respectively. Each induction body (20) has a plurality of empty parts (24), and the plurality of empty parts (24) are arranged in a predetermined pattern to define a current passage (25) for increasing a resistance between the first electrode (21) and the second electrode (22).
    • 提供了触摸检测组件,触敏设备和便携式电子设备。 触摸检测组件(100)包括:基板(1); 以及设置在所述基板(1)上并且彼此不相交的多个感应单元(2),每个感应单元(2)包括感应体(20),以及第一电极(21)和第二电极 )分别与感应体(20)连接。 每个感应体(20)具有多个空的部分(24),并且多个空的部分(24)以预定的图案布置以限定一个电流通道(25),用于增加第一电极(21)和第二电极 和第二电极(22)。
    • 69. 发明申请
    • INDUCTION UNIT, TOUCH DETECTING ASSEMBLY AND TOUCH SENSITIVE DEVICE
    • 感应单元,触摸检测组件和触摸敏感设备
    • US20140168159A1
    • 2014-06-19
    • US14131729
    • 2012-07-26
    • Zhengang LiChen HuangYun Yang
    • Zhengang LiChen HuangYun Yang
    • G06F3/044
    • G06F3/044G06F3/0416G06F2203/04112
    • An induction unit, a touch detecting assembly, and a touch sensitive device are provided. The touch sensitive device comprises: a substrate (100); a plurality of induction units (200) not intersecting with each other, and a detecting module (300) connected with the first electrodes (210) and the second electrodes (220) respectively. The induction unit (200) comprises a first electrode (210), a second electrode (220), a plurality of first structures (230) and a plurality of second structures (240). The plurality of first structures (230) are connected end to end via the plurality of second structures (240). The detecting module (300) is configured to apply a level signal to the first electrodes (210) and/or the second electrodes (220) to charge a self capacitor, to calculate a ratio between a first resistor and a second resistor, and to determine a touch position in a first direction and a touch position in a second direction.
    • 提供感应单元,触摸检测组件和触敏设备。 触敏装置包括:基板(100); 多个彼此不相交的感应单元(200),以及分别与第一电极(210)和第二电极(220)连接的检测模块(300)。 感应单元(200)包括第一电极(210),第二电极(220),多个第一结构(230)和多个第二结构(240)。 多个第一结构(230)经由多个第二结构(240)端对端地连接。 检测模块(300)被配置为向第一电极(210)和/或第二电极(220)施加电平信号以对自身电容器充电,以计算第一电阻器和第二电阻器之间的比率,并且 确定在第一方向上的触摸位置和在第二方向上的触摸位置。