首页> 外文期刊>IEEE Journal of Solid-State Circuits >A Micropower Chopper-Stabilized Operational Amplifier Using a SC Notch Filter With Synchronous Integration Inside the Continuous-Time Signal Path
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A Micropower Chopper-Stabilized Operational Amplifier Using a SC Notch Filter With Synchronous Integration Inside the Continuous-Time Signal Path

机译:微功耗斩波稳定的运算放大器,在连续时间信号路径内使用带有同步积分的SC陷波滤波器

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摘要

A micropower chopper stabilized opamp is presented. The new topology incorporates a switched capacitor filter with synchronous integration inside the continuous time signal path virtually eliminating chopping noise. A three-stage amplifier with multipath nested Miller compensation is modified to incorporate chopping of the input stage, sinc filtering to notch any chopping ripple, and a compensation scheme to maintain an undistorted high-speed signal path. Characteristics of the amplifier presented include rail to rail input and output operating on supplies of 1.8 to 5.5 V over -40degC to 125degC. Quiescent supply current is 17 muA, input offset is 3 muV, input offset drift is 0.02 muV/degC, GBW is 350 kHz, and the chopping frequency is 125 kHz. Die area is 0.7 mm2 using a precision analog mixed-signal CMOS process combining low-noise 0.6-mum analog transistors with 0.3-mum digital CMOS capability
机译:提出了一种微功率斩波稳定的运算放大器。新的拓扑结构在连续时间信号路径内集成了开关电容器滤波器和同步积分功能,几乎消除了斩波噪声。修改了具有多路径嵌套米勒补偿的三级放大器,以合并输入级的斩波,sinc滤波以消除任何斩波纹波,并采用一种补偿方案来保持高速信号路径不失真。所展示放大器的特性包括轨至轨输入和输出,在-40°C至125°C的温度范围内以1.8至5.5V的电源供电。静态电源电流为17μA,输入失调为3μV,输入失调漂移为0.02μV/ degC,GBW为350 kHz,斩波频率为125 kHz。芯片面积为0.7 mm2,采用精密模拟混合信号CMOS工艺,结合了低噪声0.6微米模拟晶体管和0.3微米数字CMOS功能

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