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A High Power Efficiency Class AB Switched-Opamp for Low Voltage Low Power Sigma-Delta Modulators

机译:用于低压低功耗Sigma-Delta调制器的高功率效率AB级开关op

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Two-stage Class-A switched-opamp (SO) is the most popular module in previous low voltage low power SO sigma-delta modulators (SDM). The SO saves about 30%~40% of the total power since its output stage is just turned off at the integrating phase. To further increase efficiency a novel high power efficiency class AB current mirror SO is proposed in this paper. By turning off the entire SO together with its common mode feedback (CMFB) circuit, the power consumption of the SO can be reduced by 50%. A Class-AB load-compensated opamp version improves the power efficiency further. The proposed SO was fabricated in a 0.35μm TSMC CMOS standard process and achieved a DC gain of 62.7dB, a GBW of 4.39MHz and a slew rate of 1.2V/μs when the load capacitor is 10pF. The effective power consumption including the CMFB circuit is 6.6μW under 1.5V supply voltage. The simulation results showed that the proposed SO can be applied to low power low voltage SDM with a sampling frequency of less than 0.5MHz.
机译:两阶段Class-A交换opamp(SO)是之前的低压低功耗中最流行的模块,因此Sigma-Delta调制器(SDM)。因此,因此节省了总功率的约30%〜40%,因为它的输出级刚刚在集成阶段关闭。为了进一步提高效率,本文提出了一种新型的高功率效率AB电流镜。通过将整个整体与其共模反馈(CMFB)电路一起关闭,因此可以减少50%的功耗。 AB类负载补偿的Opamp版本进一步提高了功率效率。所提出的所以在0.35μm的TSMC CMOS标准过程中制造,并在负载电容为10PF时实现了62.7dB的直流增益,4.39MHz的GBW,1.2V /μs的转换速率。在1.5V电源电压下,包括CMFB电路的有效功耗为6.6μW。仿真结果表明,所提出的仿真结果可以应用于低功率低电压SDM,采样频率小于0.5MHz。

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