首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 5.6 nV/ √ Hz Chopper Operational Amplifier Achieving a 0.5 μ V Maximum Offset Over Rail-to-Rail Input Range With Adaptive Clock Boosting Technique
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A 5.6 nV/ √ Hz Chopper Operational Amplifier Achieving a 0.5 μ V Maximum Offset Over Rail-to-Rail Input Range With Adaptive Clock Boosting Technique

机译:5.6 nV /√Hz斩波运算放大器,采用自适应时钟增强技术,可在轨至轨输入范围内实现最大0.5μV的失调

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This paper presents a standalone 5.6 nV/√Hz chopper op-amp that operates from a 2.1-5.5 V supply. Frequency compensation is achieved in a power-and area-efficient manner by using a current attenuator and a dummy differential output. As a result, the overall op-amp only consumes 1.4 mA supply current and 1.26 mm2 die area. Up-modulated chopper ripple is suppressed by a local feedback technique, called auto correction feedback (ACFB). The charge injection of the input chopping switches can cause residual offset voltages, especially with the wider switches needed to reduce thermal noise. By employing an adaptive clock boosting technique with NMOS input switches, the amount of charge injection is minimized and kept constant as the input common-mode voltage changes. This results in a 0.5 μV maximum offset and 0.015 μV/°C maximum drift over the amplifier's entire rail-to-rail input common-mode range and from -40 °C to 125 °C. The design is implemented in a 0.35 μm CMOS process augmented by 5 V CMOS transistors.
机译:本文介绍了一个独立的5.6 nV /√Hz斩波运算放大器,它采用2.1-5.5 V电源供电。通过使用电流衰减器和虚拟差分输出,可以以省电高效的方式实现频率补偿。结果,整个运算放大器仅消耗1.4 mA的电源电流和1.26 mm2的管芯面积。上调的斩波纹波通过称为自动校正反馈(ACFB)的局部反馈技术来抑制。输入斩波开关的电荷注入会导致残留失调电压,尤其是在需要减少热噪声的较宽开关时。通过将自适应时钟升压技术与NMOS输入开关配合使用,电荷注入的数量将最小化,并随着输入共模电压的变化而保持恒定。这样可在放大器的整个轨至轨输入共模范围内(从-40°C至125°C)产生0.5μV的最大失调电压和0.015μV/°C的最大漂移。该设计以0.35μmCMOS工艺实现,并由5 V CMOS晶体管增强。

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