基于噪声分析的全差分压控磁通门传感器励磁电流源设计方法

Maximilian Scherzer, M. Auer
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引用次数: 0

摘要

磁通门传感器可用于需要测量磁场的不同应用范围。它们以其高动态范围和出色的线性度而闻名。为了驱动传感器,需要一个专用的电子电路来保持这些优异的品质。通过对反馈线圈的激励,一个完全差分电压控制的电流源可以用于磁通门传感器的线性化。本文对基于改进霍兰德电流源的桥式励磁电路进行了噪声分析。提出了一种星载磁通门磁强计的噪声改进设计方法。为此,采用了基于Verilog-A的单端运算放大器模型。如果采用所提出的设计流程,Cadence Spectre®的仿真结果显示信噪比为119.9 dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Noise Analysis Based Design Approach of a Fully Differential Voltage Controlled Current Source for Fluxgate Sensor Excitation
Fluxgate sensors can be used in a different range of applications, where the magnetic field needs to be measured. They are known for their high dynamic range and outstanding linearity. To drive the sensor a dedicated electronic circuitry is required to retain these excellent qualities. A fully differential voltage controlled current source can be used for the linearization of the fluxgate sensor via excitation of the feedback coil. In this paper a noise analysis was accomplished for an excitation circuit which is based on an Improved Howland Current Source in bridge configuration. Further, a noise improved design approach for a spaceborne fluxgate magnetometer is presented. For this reason a Verilog-A based model of a single ended operational amplifier is employed. Simulation results with Cadence Spectre ® show a signal-to-noise ratio of 119.9 dB, if the presented design flow is used.
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