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值得提出的是文章使用衬底驱动,觉得挺有意思。
文章摘要:A new solution for an ultra-low-voltage, ultra-low-power operational transconductanceamplifier (OTA) is presented in the paper. The design exploits a three-stage structure with a ReversedMiller 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 outperformsother ultra-low-voltage OTAs in terms of a DC voltage gain and power efficiency, expressed by standardfigures of merit. Experimental verification using a 0.18 µm 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 kHzand an average slew-rate of 9.1 V/ms at 30 pF load capacitance. The experimental results agree well withsimulations.
资料是IEEE网站中作者发布的文章和用candence实现原理图仿真。
仿真图片如下:
1.开环增益:
2.共模输入范围:
3.共模抑制比
有兴趣可以仿仿别的参数,比如转换速率,电源抑制比,环路增益(stb)
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