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    • 1. 发明授权
    • Voltage-to-current conversion circuit and OTA using the same
    • 电压 - 电流转换电路和OTA使用相同
    • US06661289B2
    • 2003-12-09
    • US10176063
    • 2002-06-21
    • Takahide SatoNobuo FujiiSigetaka TakagiKazuyuki Wada
    • Takahide SatoNobuo FujiiSigetaka TakagiKazuyuki Wada
    • H03F316
    • G05F1/561G05F3/242
    • A voltage-to-current conversion circuit composed of MOSFETs of the same polarity and an OTA with Rail-to-Rail with a simple configuration that uses the same have been disclosed. The voltage-to-current conversion circuit comprises a first MOSFET, to which a fixed drain-source voltage is applied all the time, and which generates a first current signal for an input voltage, a second MOSFET, which has the same polarity as that of the first MOSFET, to which the fixed drain-source voltage is applied all the time, and which generates a second current signal complementary to the first current signal for the input voltage, and a difference current operation circuit that performs the operation of subtraction between the first current signal and the second current signal, thereby an output current is generated in accordance with the input voltage.
    • 已经公开了由具有相同极性的MOSFET组成的电压 - 电流转换电路和具有使用它们的简单配置的轨至轨的OTA。 电压 - 电流转换电路包括第一MOSFET,一直施加固定的漏极 - 源极电压,并且其产生用于输入电压的第一电流信号,第二MOSFET具有与之相同极性的第二MOSFET 所述第一MOSFET的固定漏极 - 源极电压一直被施加到所述第一MOSFET,并且产生与所述输入电压的所述第一电流信号互补的第二电流信号;以及差动电流运算电路, 第一电流信号和第二电流信号,从而根据输入电压产生输出电流。
    • 4. 发明授权
    • Switching circuit
    • 开关电路
    • US08760223B2
    • 2014-06-24
    • US13490101
    • 2012-06-06
    • Kazuhiro FujikawaNobuo ShigaTakashi OhiraKazuyuki WadaHiroshi Ishioka
    • Kazuhiro FujikawaNobuo ShigaTakashi OhiraKazuyuki WadaKazuya Ishioka
    • H02M3/07
    • H03K17/04123H03K2217/0036H03K2217/0045H03K2217/009
    • A switching circuit according to one embodiment is a switching circuit including at least one semiconductor switch element having an input, output, and a common terminals, a pulse-like signal being applied between the input and common terminals to switch a current between the output and common terminals. The switching circuit further includes a capacitance suppression element section connected at least one of between the input and output terminals, between the input terminal common terminals, and between the output and common terminals. The capacitance suppression element section reduces a parasitic capacitance between the terminals of the semiconductor switch element where the capacitance suppression element section is connected to less than that obtained when the capacitance suppression element section is not connected at a frequency N times (N is an integer of 1 or more) as high as a clock frequency of the pulse-like signal.
    • 根据一个实施例的开关电路是包括具有输入,输出和公共端子的至少一个半导体开关元件的开关电路,脉冲状信号被施加在输入端和公共端子之间以切换输出和 公共终端 开关电路还包括电容抑制元件部分,其连接在输入和输出端子之间,输入端子公共端子之间以及输出端子和公共端子之间的至少一个。 电容抑制元件部分减小了电容抑制元件部分连接的半导体开关元件的端子之间的寄生电容小于当电容抑制元件部分未以N倍的频率连接时获得的寄生电容(N为 1或更高)与脉冲状信号的时钟频率一样高。
    • 5. 发明申请
    • SWITCHING CIRCUIT
    • 切换电路
    • US20120306288A1
    • 2012-12-06
    • US13490240
    • 2012-06-06
    • Kazuhiro FujikawaNobuo ShigaTakashi OhiraKazuyuki WadaKazuya IshiokaHiroshi Ishioka
    • Kazuhiro FujikawaNobuo ShigaTakashi OhiraKazuyuki WadaKazuya IshiokaHiroshi Ishioka
    • H01H47/00
    • H03K17/04123H03K2217/0036H03K2217/0045Y10T307/747
    • A switching circuit according to one embodiment includes first to fourth semiconductor switch elements. A pulse-like signal is applied to each input terminal of the switch elements such that when the first and fourth switch elements are in an ON (OFF) state, the remaining switch elements are in an OFF (ON) state. The switching circuit includes first and second capacitance elements. The first capacitance elements connected between an output terminal of the second semiconductor switch element and the second capacitance elements connected between an input terminal of the second semiconductor switch element and an output terminal of the fourth semiconductor switch element has a capacitance to reduce a parasitic capacitance between the input and output terminals of each of the fourth and second switch elements at a frequency N times (N is an integer of 1 or more) as high as a clock frequency of the pulse-like signal.
    • 根据一个实施例的开关电路包括第一至第四半导体开关元件。 脉冲状信号被施加到开关元件的每个输入端子,使得当第一和第四开关元件处于导通(OFF)状态时,剩余的开关元件处于断开(ON)状态。 开关电路包括第一和第二电容元件。 连接在第二半导体开关元件的输出端子和连接在第二半导体开关元件的输入端子和第四半导体开关元件的输出端子之间的第二电容元件之间的第一电容元件具有电容以减小第二半导体开关元件的输出端之间的寄生电容 以与脉冲状信号的时钟频率相同的频率N倍(N为1以上的整数)的第四开关元件和第二开关元件的输入输出端子。
    • 8. 发明授权
    • Switching circuit
    • 开关电路
    • US08766699B2
    • 2014-07-01
    • US13490240
    • 2012-06-06
    • Kazuhiro FujikawaNobuo ShigaTakashi OhiraKazuyuki WadaHiroshi Ishioka
    • Kazuhiro FujikawaNobuo ShigaTakashi OhiraKazuyuki WadaKazuya Ishioka
    • H03K17/30
    • H03K17/04123H03K2217/0036H03K2217/0045Y10T307/747
    • A switching circuit according to one embodiment includes first to fourth semiconductor switch elements. A pulse-like signal is applied to each input terminal of the switch elements such that when the first and fourth switch elements are in an ON (OFF) state, the remaining switch elements are in an OFF (ON) state. The switching circuit includes first and second capacitance elements. The first capacitance elements connected between an output terminal of the second semiconductor switch element and the second capacitance elements connected between an input terminal of the second semiconductor switch element and an output terminal of the fourth semiconductor switch element has a capacitance to reduce a parasitic capacitance between the input and output terminals of each of the fourth and second switch elements at a frequency N times (N is an integer of 1 or more) as high as a clock frequency of the pulse-like signal.
    • 根据一个实施例的开关电路包括第一至第四半导体开关元件。 脉冲状信号被施加到开关元件的每个输入端子,使得当第一和第四开关元件处于导通(OFF)状态时,剩余的开关元件处于断开(ON)状态。 开关电路包括第一和第二电容元件。 连接在第二半导体开关元件的输出端子和连接在第二半导体开关元件的输入端子和第四半导体开关元件的输出端子之间的第二电容元件之间的第一电容元件具有电容以减小第二半导体开关元件的输出端之间的寄生电容 以与脉冲状信号的时钟频率相同的频率N倍(N为1以上的整数)的第四开关元件和第二开关元件的输入输出端子。
    • 10. 发明申请
    • SWITCHING CIRCUIT
    • 切换电路
    • US20120306563A1
    • 2012-12-06
    • US13490101
    • 2012-06-06
    • Kazuhiro FUJIKAWANobuo ShigaTakashi OhiraKazuyuki WadaKazuya IshiokaHiroshi Ishioka
    • Kazuhiro FUJIKAWANobuo ShigaTakashi OhiraKazuyuki WadaKazuya IshiokaHiroshi Ishioka
    • H03K17/687
    • H03K17/04123H03K2217/0036H03K2217/0045H03K2217/009
    • A switching circuit according to one embodiment is a switching circuit including at least one semiconductor switch element having an input, output, and a common terminals, a pulse-like signal being applied between the input and common terminals to switch a current between the output and common terminals. The switching circuit further includes a capacitance suppression element section connected at least one of between the input and output terminals, between the input terminal common terminals, and between the output and common terminals. The capacitance suppression element section reduces a parasitic capacitance between the terminals of the semiconductor switch element where the capacitance suppression element section is connected to less than that obtained when the capacitance suppression element section is not connected at a frequency N times (N is an integer of 1 or more) as high as a clock frequency of the pulse-like signal.
    • 根据一个实施例的开关电路是包括具有输入,输出和公共端子的至少一个半导体开关元件的开关电路,脉冲状信号被施加在输入端和公共端子之间以切换输出和 公共终端 开关电路还包括电容抑制元件部分,其连接在输入和输出端子之间,输入端子公共端子之间以及输出端子和公共端子之间的至少一个。 电容抑制元件部分减小了电容抑制元件部分连接的半导体开关元件的端子之间的寄生电容小于当电容抑制元件部分未以N倍的频率连接时获得的寄生电容(N为 1或更高)与脉冲状信号的时钟频率一样高。