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    • 3. 发明申请
    • Reference voltage generating circuit and reference current generating circuit
    • 参考电压发生电路和参考电流产生电路
    • US20060202745A1
    • 2006-09-14
    • US11366745
    • 2006-03-03
    • Kazuyuki KobayashiTatsuya SuzukiYasuhiro Kaneta
    • Kazuyuki KobayashiTatsuya SuzukiYasuhiro Kaneta
    • G05F1/10
    • G05F3/24
    • In a reference current generating circuit, an output voltage of a regulator is divided by a resistance dividing circuit consisting of resistors to generate a micro reference voltage. It is possible to connect and disconnect the resistance dividing circuit using a switch consisting of a transistor. A switch consisting of a transistor is provided between a connection point of the resistors and a reference voltage output terminal. A capacitor is connected to the reference voltage output terminal. The transistors are periodically subjected to ON/OFF control according to a clock pulse outputted by a control circuit. The capacitor is charged to a reference voltage when the transistors are on and keeps the reference voltage output terminal at the reference voltage when the transistors are off. A current mirror circuit uses the micro reference voltage to generate a micro reference current while suppressing an increase in a resistance of a reference resistor that determines an output current. With this constitution, it is possible to reduce an area of the reference resistor in the reference current generating circuit constituted as a semiconductor integrated circuit.
    • 在参考电流产生电路中,调节器的输出电压被由电阻组成的电阻分压电路分压,以产生微参考电压。 可以使用由晶体管组成的开关来连接和断开电阻分割电路。 在电阻的连接点和参考电压输出端子之间设置由晶体管构成的开关。 电容器连接到参考电压输出端子。 晶体管根据由控制电路输出的时钟脉冲周期性地进行ON / OFF控制。 当晶体管导通时,电容器被充电到参考电压,并且当晶体管关断时,将参考电压输出端子保持在参考电压。 电流镜电路使用微参考电压来产生微参考电流,同时抑制确定输出电流的参考电阻器的电阻的增加。 利用这种结构,可以减小构成半导体集成电路的基准电流发生电路中的基准电阻的面积。
    • 4. 发明授权
    • Signal processing circuit for electrostatic capacity type touch sensor
    • 静电电容型触摸传感器信号处理电路
    • US08878812B2
    • 2014-11-04
    • US12837029
    • 2010-07-15
    • Kazuyuki KobayashiTatsuya SuzukiKumiko FukaiYasuhiro Kaneta
    • Kazuyuki KobayashiTatsuya SuzukiKumiko FukaiYasuhiro Kaneta
    • G06F3/045G06F3/044G06F3/0354
    • G06F3/044G06F3/03547
    • There is offered a signal processing circuit for an electrostatic capacity type touch sensor capable of detecting a larger number of locations with a smaller number of touch pads as well as improving noise immunity. A selection circuit selects either a signal from a combination of the first and second kinds of touch pads outputted through the first and second output terminals CO1 and CO2 in a touch panel or a signal from a combination of the third and fourth kinds of touch pads outputted through the third and fourth output terminals CO3 and CO4. An electric charge amplifier outputs first and second output voltages V1 and V2 corresponding to a difference between capacitances of the touch pads on the touch panel based on the signals from the selected combination. A delta sigma type A/D converter converts the first and second output voltages V1 and V2 into digital signals.
    • 提供了一种用于静电容量型触摸传感器的信号处理电路,其能够用较少数量的触摸板检测更大数量的位置以及提高抗噪声性。 选择电路选择来自触摸面板中通过第一和第二输出端子CO1和CO 2输出的第一和第二种触摸板的组合的信号或来自第三和第四种触摸板的组合的信号输出 通过第三和第四输出端子CO3和CO4。 电荷放大器基于来自所选择的组合的信号输出与触摸面板上的触摸板的电容之差相对应的第一和第二输出电压V1和V2。 Δ西格玛型A / D转换器将第一和第二输出电压V1和V2转换成数字信号。
    • 5. 发明申请
    • SIGNAL PROCESSING CIRCUIT FOR ELECTROSTATIC CAPACITY TYPE TOUCH SENSOR
    • 用于静电容量式触摸传感器的信号处理电路
    • US20110012863A1
    • 2011-01-20
    • US12837029
    • 2010-07-15
    • Kazuyuki KOBAYASHITatsuya SuzukiKumiko FukaiYasuhiro Kaneta
    • Kazuyuki KOBAYASHITatsuya SuzukiKumiko FukaiYasuhiro Kaneta
    • G06F3/045
    • G06F3/044G06F3/03547
    • There is offered a signal processing circuit for an electrostatic capacity type touch sensor capable of detecting a larger number of locations with a smaller number of touch pads as well as improving noise immunity. A selection circuit selects either a signal from a combination of the first and second kinds of touch pads outputted through the first and second output terminals CO1 and CO2 in a touch panel or a signal from a combination of the third and fourth kinds of touch pads outputted through the third and fourth output terminals CO3 and CO4. An electric charge amplifier outputs first and second output voltages V1 and V2 corresponding to a difference between capacitances of the touch pads on the touch panel based on the signals from the selected combination. A delta sigma type A/D converter converts the first and second output voltages V1 and V2 into digital signals.
    • 提供了一种用于静电容量型触摸传感器的信号处理电路,其能够用较少数量的触摸板检测更大数量的位置以及提高抗噪声性。 选择电路选择来自触摸面板中通过第一和第二输出端子CO1和CO 2输出的第一和第二种触摸板的组合的信号或来自第三和第四种触摸板的组合的信号输出 通过第三和第四输出端子CO3和CO4。 电荷放大器基于来自所选择的组合的信号输出与触摸面板上的触摸板的电容之差相对应的第一和第二输出电压V1和V2。 Δ西格玛型A / D转换器将第一和第二输出电压V1和V2转换成数字信号。
    • 7. 发明授权
    • Signal processing device of touch panel
    • 触摸屏信号处理装置
    • US08525810B2
    • 2013-09-03
    • US12652334
    • 2010-01-05
    • Kazuyuki KobayashiTatsuya SuzukiKumiko FukaiYasuhiro Kaneta
    • Kazuyuki KobayashiTatsuya SuzukiKumiko FukaiYasuhiro Kaneta
    • G06F3/045
    • G06F3/044G06F3/0416
    • There is offered a signal processing device of touch panel using an electrostatic capacity, which realizes improvement in noise tolerance and linear detection. An excitation pad, a first touch pad and a second touch pad are disposed on a substrate in a way that the excitation pad is interposed between the first and second touch pads. On the other hand, an alternating current power supply that provides the excitation pad with an alternating voltage through a wiring is provided on a sensor IC side of the signal processing device of touch panel. Also, there is provided an electric charge amplifier. The first touch pad is connected to a non-inverting input terminal (+) of the electric charge amplifier through an wiring, while the second touch pad is connected to an inverting input terminal (−) of the electric charge amplifier through a wiring.
    • 提供了使用静电电容的触摸面板的信号处理装置,实现了噪声容限和线性检测的改善。 励磁焊盘,第一触摸板和第二触摸板以激励焊盘介于第一和第二触摸板之间的方式设置在基板上。 另一方面,在触摸面板的信号处理装置的传感器IC侧设置有通过配线向激励焊盘提供交流电压的交流电源。 另外,还提供了一种电荷放大器。 第一触摸板通过布线连接到电荷放大器的非反相输入端(+),而第二触摸板通过布线连接到电荷放大器的反相输入端( - )。
    • 8. 发明申请
    • SIGNAL PROCESSING CIRCUIT OF ELECTROSTATIC CAPACITY TYPE TOUCH PANEL
    • 静电容量型触摸屏信号处理电路
    • US20100309165A1
    • 2010-12-09
    • US12794281
    • 2010-06-04
    • Kazuyuki KOBAYASHITatsuya SuzukiKumiko FukaiYasuhiro Kaneta
    • Kazuyuki KOBAYASHITatsuya SuzukiKumiko FukaiYasuhiro Kaneta
    • G06F3/044
    • G06F3/044G06F3/0416
    • There is offered a signal processing circuit of the electrostatic capacity type touch panel which can eliminate duplication of components to reduce a cost of the components. A touch panel 51 is formed on a glass substrate 200. Sensor circuits 50A and 50B are arrayed in a Y direction, and sensor circuits 50C and 50D are arrayed in an X direction on the periphery of the touch pane 51. Serial clock terminals SCL of the sensor circuits 50A-50D are connected to a serial clock line 53 all together, while serial data terminals SDA are connected to a serial data line 54 all together. A microcomputer 52 is disposed on a PCB substrate outside the glass substrate 200. Data communication can be performed between the microcomputer 52 and the sensor circuits 50A-50D through the serial clock line 53 and the serial data line 54.
    • 提供了一种静电电容型触摸面板的信号处理电路,可以消除组件的重复,从而降低组件的成本。 触摸面板51形成在玻璃基板200上。传感器电路50A和50B沿Y方向排列,传感器电路50C和50D沿触摸窗格51的周边上的X方向排列。串行时钟端子SCL 传感器电路50A-50D一起连接到串行时钟线53,而串行数据终端SDA一起连接到串行数据线54。 微计算机52设置在玻璃基板200外部的PCB基板上。数据通信可以通过串行时钟线53和串行数据线54在微计算机52和传感器电路50A-50D之间进行。
    • 9. 发明申请
    • SIGNAL PROCESSING DEVICE OF TOUCH PANEL
    • 触摸面板的信号处理装置
    • US20100171723A1
    • 2010-07-08
    • US12652334
    • 2010-01-05
    • Kazuyuki KOBAYASHITatsuya SuzukiKumiko FukaiYasuhiro Kaneta
    • Kazuyuki KOBAYASHITatsuya SuzukiKumiko FukaiYasuhiro Kaneta
    • G06F3/044
    • G06F3/044G06F3/0416
    • There is offered a signal processing device of touch panel using an electrostatic capacity, which realizes improvement in noise tolerance and linear detection. An excitation pad, a first touch pad and a second touch pad are disposed on a substrate in a way that the excitation pad is interposed between the first and second touch pads. On the other hand, an alternating current power supply that provides the excitation pad with an alternating voltage through a wiring is provided on a sensor IC side of the signal processing device of touch panel. Also, there is provided an electric charge amplifier. The first touch pad is connected to a non-inverting input terminal (+) of the electric charge amplifier through an wiring, while the second touch pad is connected to an inverting input terminal (−) of the electric charge amplifier through a wiring.
    • 提供了使用静电电容的触摸面板的信号处理装置,实现了噪声容限和线性检测的改善。 励磁焊盘,第一触摸板和第二触摸板以激励焊盘介于第一和第二触摸板之间的方式设置在基板上。 另一方面,在触摸面板的信号处理装置的传感器IC侧设置有通过配线向激励焊盘提供交流电压的交流电源。 另外,还提供了一种电荷放大器。 第一触摸板通过布线连接到电荷放大器的非反相输入端(+),而第二触摸板通过布线连接到电荷放大器的反相输入端( - )。