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Schmitt Trigger Based Single-Ended Voltage Amplifier with Positive Feedback Control for Ultra-Low-Voltage Supplies

机译:基于施密特触发器的具有正反馈控制的单端电压放大器,用于超低压电源

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This work presents a Schmitt trigger based pseudo-differential single-ended voltage amplifier using a Schmitt trigger inverter cell in parallel with a push-pull inverter cell to eliminate hysteresis and improve voltage gain for ultra-low-voltage supplies. Positive feedback is controlled by changing independently the Schmitt trigger and push-pull cells body input terminal voltages, which enables high voltage gain operation without hysteresis for supply voltages as low as 200 mV and as high as 500 mV. A prototype was fabricated for a 130 nm CMOS process and its DC characteristic curve measurements show a 32 dB DC voltage gain at a 0.2 V supply voltage, and simulations show a 330 kHz and unity-gain-bandwidth product and 90° phase margin for a 10pF capacitive load, and a 450 nW power consumption also at a 200 mV supply voltage.
机译:这项工作提出了一种基于施密特触发器的伪差分单端电压放大器,该放大器将施密特触发器反相器单元与推挽反相器单元并联使用,以消除磁滞现象并提高超低压电源的电压增益。正反馈通过独立地改变施密特触发器和推挽单元的输入端电压来控制,这使得高电压增益操作能够在低至200 mV和高至500 mV的电源电压下无滞后。制造了用于130 nm CMOS工艺的原型,其直流特性曲线测量结果表明,在0.2 V电源电压下,DC电压增益为32 dB,而仿真结果表明,对于330 nm CMOS工艺,其330 kHz和单位增益带宽乘积以及90°相位裕度10pF容性负载,在200 mV电源电压下的功耗也为450 nW。

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