工作点稳定的轨对轨CMOS运放

P. Gartner, H. Richter
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引用次数: 0

摘要

本文提出了一种实现CMOS运算放大器轨对轨共模输入电压摆幅的新方案。MOS差分级的共模输入范围受输入晶体管的阈值电压的限制。一对互补输入级可以覆盖从GND到VDD的整个范围。它们的漏极电流相加,但是当其中一个输入级在电源轨附近关闭时,所产生的电流以及求和节点的直流电压会发生剧烈变化。新方法采用内置反馈回路和辅助运放来稳定求和节点的电压。这样可以保证一个非常稳定的工作点和理想的CMRR。通过选择晶体管宽高比,可以在整个共模输入电压范围内获得几乎恒定的电压增益。
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Rail-to-rail CMOS opamp with stabilized operating point
The paper presents a new solution to achieve rail-to-rail common mode input voltage swing for CMOS operational amplifiers. The common mode input range of a MOS differential stage is limited by the threshold voltage of the input transistors. With a pair of complementary input stages the whole range from GND to VDD can be covered. Their drain currents are summed up but the resulting current as well as the DC voltage of the summing node drastically change when one of the input stages turns off near the power rails. The new method applies a built-in feedback loop with an auxiliary opamp for stabilizing the voltage at the summing node. This way a very stable operating point and ideal CMRR can be assured. With selected transistor aspect ratios nearly constant voltage gain can be achieved for the whole common mode input voltage range.
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