Department of Electronics and Information Systems, Ghent University, 9000 Ghent, Belgium.
Sensors (Basel). 2022 Aug 14;22(16):6069. doi: 10.3390/s22166069.
In this paper, a Hall plate readout with a randomized four-phase spinning-current scheme is proposed. The goal is to remove the maximum number of offset components, including the offset associated with spike demodulation. The outcome is that only the smallest possible offset remains, corresponding to the residual offset of the Hall plate which cannot be distinguished from the Hall signal. An additional innovation is to operate various offset-reduction loops in spread-spectrum mode, allowing the removal of error components without notching out any in-band signals. The resulting approach delivers a very large notch-free bandwidth while simultaneously reducing the Hall plate residual offset, making it an enabler for high-bandwidth Hall-based current sensors. To demonstrate the proposed techniques, we have realized a mixed-mode experimental circuit, where the analog part is implemented in a custom integrated circuit, and the digital control system in an FPGA is connected to the analog chip. Measurement results feature a Hall readout system with a notch-free bandwidth up to 820 kHz and a 47 μTrms noise floor. The input-referred Hall plate offset, based on statistical measurements on 10 samples from a single wafer, is reduced from 130±22 μT to only 23±22 μT.
本文提出了一种采用随机四相信号旋转电流方案的霍尔板读出技术。其目的是消除最大数量的偏移分量,包括与尖峰解调相关的偏移。结果是只留下最小的偏移,对应于无法从霍尔信号中区分的霍尔板残余偏移。另一个创新是在扩频模式下操作各种偏移减小环路,允许在不削除任何带内信号的情况下去除误差分量。这种方法提供了非常大的无陷波带宽,同时降低了霍尔板的残余偏移,使其成为高带宽霍尔电流传感器的实现手段。为了演示所提出的技术,我们实现了一个混合模式实验电路,其中模拟部分在定制集成电路中实现,数字控制系统在 FPGA 中实现,并与模拟芯片连接。测量结果显示,无陷波带宽高达 820 kHz,输入参考霍尔板偏移的噪声基底为 47 μTrms。基于单个晶圆上 10 个样本的统计测量,输入参考霍尔板偏移从 130±22 μT 降低到仅 23±22 μT。