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A Current-Feedback Instrumentation Amplifier With 5 $mu{hbox{V}}$ Offset for Bidirectional High-Side Current-Sensing

机译:双向高端电流检测的电流反馈仪表放大器,具有5 $ mu {hbox {V}} $的偏移量

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摘要

This paper describes an instrumentation amplifier for bidirectional high-side current-sensing applications. It uses a multipath indirect current-feedback topology. To achieve low offset, the amplifier employs a combination of chopping and auto-zeroing in a low frequency path to cancel the offset of a wide-band amplifier in a high frequency path. With a 60 kHz chopper clock and a 30 kHz auto-zero clock, this offset-stabilization scheme results in an offset voltage of less than 5 $mu{hbox{V}}$ , a CMRR of 143 dB and a common-mode input voltage range from 1.9 to 30 V. The input voltage-to-current (V-I) converters required by the current-feedback topology are implemented with composite transistors, whose transconductance is determined by laser-trimmed resistors. This results in a less than 0.1% gain inaccuracy. The instrumentation amplifier was realized in a 0.8 $mu{hbox{m}}$ BiCMOS process with high voltage transistors, and has an effective chip area of 2.5 ${hbox{mm}}^{2}$ .
机译:本文介绍了一种用于双向高端电流检测应用的仪表放大器。它使用多路径间接电流反馈拓扑。为了实现低偏移,该放大器在低频路径中采用了斩波和自动调零的组合,以消除宽带放大器在高频路径中的偏移。利用60 kHz斩波器时钟和30 kHz自动归零时钟,这种失调稳定方案的失调电压小于5 $ mu {hbox {V}} $,CMRR为143 dB,并且具有共模输入电压范围为1.9至30V。电流反馈拓扑结构所需的输入电压-电流(VI)转换器由复合晶体管实现,复合晶体管的跨导由激光微调电阻确定。这导致增益误差小于0.1%。仪表放大器采用高压晶体管采用0.8μmu{hbox {m}} $ BiCMOS工艺实现,有效芯片面积为2.5 $ {hbox {mm}} ^ {2} $。

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