A new concept of a Gm tuning circuit for voltage- or current-controlled transconductance circuits

A. Hyogo, K. Sekine
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Abstract

A new concept of a transconductance (Gm) tuning circuit using switched-capacitor (SC) circuits for voltage- or current-controlled transconductance circuits is proposed. This concept uses an integrator which is controlled by time (or frequency) as a current-to-voltage converter for tuning. The Gm can be determined by the integrated time of the current from the transconductance circuit, the integration capacitor and the reference voltage(s). Moreover, the Gm control voltage produced by the proposed circuit has no ripple. The proposed circuit can tune operational transconductance amplifiers, MOS resistive circuits and so on. Finally, an offset voltage cancellation technique for the integrator is shown. SPICE simulations are performed to verify the performance of the proposed circuits.
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一种用于电压或电流控制跨导电路的Gm调谐电路的新概念
提出了一种利用开关电容(SC)电路控制电压或电流的跨导调谐电路的新概念。这个概念使用由时间(或频率)控制的积分器作为电流-电压转换器进行调谐。Gm可以由来自跨导电路的电流、积分电容和参考电压的积分时间来确定。此外,该电路产生的Gm控制电压无纹波。该电路可调谐跨导放大器、MOS电阻电路等。最后,给出了一种用于积分器的偏置电压抵消技术。通过SPICE仿真验证了所提电路的性能。
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