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A sub-1V high-gain two-stage OTA using bulk-driven and positive feedback techniques

机译:使用批量驱动和正反馈技术的低于1V的高增益两级OTA

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This paper presents the design and simulation of a fully differential two-stage operational trans-conductance amplifier (OTA) in a 0.18μm CMOS process with a 0.9V supply voltage. For this purpose, both the bulk-driven and positive feedback techniques are employed. These techniques increase the dc gain about 18.4 dB without any change in the power dissipation, unity-gain bandwidth, phase margin, and other specifications of the OTA. The simulation results show a dc gain of 73.8dB, unity-gain bandwidth of 272MHz and phase margin of 64°. The slew rate is 190V/μs and the OTA dissipates about 2.72mW from a 0.9V supply voltage.
机译:本文介绍了采用0.18μmCMOS工艺,供电电压为0.9V的全差分两级运算跨导放大器(OTA)的设计和仿真。为此,采用了批量驱动技术和正反馈技术。这些技术在不增加功耗,单位增益带宽,相位裕度和OTA其他规格的情况下,将直流增益提高了约18.4 dB。仿真结果表明,直流增益为73.8dB,单位增益带宽为272MHz,相位裕度为64°。压摆率为190V /μs,OTA从0.9V的电源电压消耗约2.72mW的功率。

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