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A 0.3-V 98-dB Rail-to-Rail OTA in 0.18 μ m CMOS

机译:0.3V 98-DB轨到轨OTA在0.18μmcmos中

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A new solution for an ultra-low-voltage, ultra-low-power operational transconductance amplifier (OTA) is presented in the paper. The design exploits a three-stage structure with a Reversed Miller Compensation Scheme, where the input stage is based on a non-tailed bulk-driven differential pair. Optimization of the structure for very low supply voltage is discussed. The resulting amplifier outperforms other ultra-low-voltage OTAs in terms of a DC voltage gain and power efficiency, expressed by standard figures of merit. Experimental verification using a 0.18 mu m CMOS technology, with supply voltage of 0.3-V, showed a dissipation power of 13 nW, a DC voltage gain of 98 dB, a gain-bandwidth product of 3.1 kHz and an average slew-rate of 9.1 V/ms at 30 pF load capacitance. The experimental results agree well with simulations.
机译:本文提出了一种用于超低压超低功耗运行跨导放大器(OTA)的新解决方案。该设计利用具有反向米勒补偿方案的三级结构,其中输入级基于非尾散装驱动的差分对。讨论了用于非常低电源电压的结构的优化。由DC电压增益和功率效率,所得到的放大器在DC电压增益和功率效率方面优于其他超低电压OTA。使用0.18 mu M CMOS技术的实验验证,电源电压为0.3-V,显示出耗散功率为13 nW,DC电压增益为98 dB,增益带宽乘积为3.1 kHz,平均重放率为9.1 V / MS为30 PF负载电容。实验结果与模拟很好。

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