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27.9 A 200kS/s 13.5b integrated-fluxgate differential-magnetic-to-digital converter with an oversampling compensation loop for contactless current sensing

机译:27.9一个200kS / s 13.5b集成磁通门差分磁数字转换器,具有过采样补偿环路,用于非接触式电流检测

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High voltage applications such as electric motor controllers, solar panel power inverters, electric vehicle battery chargers, uninterrupted and switching mode power supplies benefit from the galvanic isolation of contactless current sensors (CCS) [1]. These include magnetic sensors that sense the magnetic field emanating from a current-carrying conductor. The offset and resolution of Hall-effect sensors is in the μT-level [1-3], in contrast to the μT-level accuracy of integrated-fluxgate (IFG) magnetometers [4]. Previously reported sampled-data closed-loop IFG readouts have limited BWs as their sampling frequencies (4) are limited to be less than or equal to the IFG excitation frequency, f [5-7]. This paper describes a differential closed-loop IFG CCS with f>f. The differential architecture rejects magnetic stray fields and achieves 750x larger BW than the prior closed-loop IFG readouts [6-7] with 10×better offset than the Hall-effect sensors [1-3].
机译:非接触式电流传感器(CCS)的电流隔离使诸如电动马达控制器,太阳能电池板逆变器,电动汽车电池充电器,不间断和开关模式电源等高电压应用受益[1]。这些传感器包括磁传感器,该传感器可感测从载流导体发出的磁场。霍尔效应传感器的偏移和分辨率为μT级别[1-3],而集成磁通门(IFG)磁力计的μT级别精度为[4]。先前报道的采样数据闭环IFG读数的带宽有限,因为其采样频率(4)被限制为小于或等于IFG激励频率f [5-7]。本文介绍了一种f> f的差分闭环IFG CCS。差分架构可抑制杂散磁场,并且比以前的闭环IFG读数[6-7]大750倍,其偏移比霍尔效应传感器[1-3]好10倍。

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