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Multiphysics System Co-Design of a High-Precision, High-Voltage (±600V) Isolated Hall-Effect Current Sensor

机译:多体系系统共设计高精度,高压(±600V)隔离霍尔效应电流传感器

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Hall-Effect current sensor is a transducer type, which senses the strength of a magnetic field caused by the detected current and changes its voltage output accordingly. Linear Hall-Effect integrated circuits (ICs) provide non-invasive, safe sensing, and detection of high DC, AC, and pulse current levels without dissipating additional power associated with resistive current-sensing methods. Typical applications of current sensing include overcurrent protection, monitoring and diagnostics, and closed-loop control in high-voltage, high-current systems. The current sensor options available for high-voltage applications are typically isolated shunt-based, closed-loop Hall-effect, or an in-package based Hall-Effect. The in-package Hall-Effect current sensor technology is preferred as market needs drive highly-integrated, high-performance, and cost-effective solutions. While beneficial, integration leads to multiple design complexities due to increasing system multiphysics interactions. This paper presents a multiphysics system (silicon + package + PCB) co-design of an in-package Hall-Effect current sensor IC that can be adopted early in the design process. The development and implementation of the coupled electrothermal and system modeling methodology are fully detailed. Silicon validation measurements on a high-precision, high-voltage (±600V) Hall-Effect current sensor device are presented that validate the integrity of the multiphysics system co-design modeling and analysis methodology.
机译:霍尔效应电流传感器是一种传感器类型,其感测由检测电流引起的磁场的强度,并相应地改变其电压输出。线性霍尔效应集成电路(IC)提供非侵入性,安全感和检测高DC,AC和脉冲电流水平,而不会消散与电阻电流传感方法相关的额外功率。电流检测的典型应用包括高电流保护,监控和诊断,以及高压高电流系统中的闭环控制。高压应用的电流传感器选项通常是分离的基于分流的,闭环霍尔效应,或基于包装的霍尔效应。随着市场需求推动高度集成,高性能和具有成本效益的解决方案,套餐霍尔效应电流传感器技术是首选。虽然有益,但由于系统多史型相互作用的增加,集成导致多种设计复杂性。本文介绍了一种多体系系统(硅+封装+ PCB)共同设计,可以在设计过程中提前采用。耦合电热和系统建模方法的开发和实施完全详细。介绍了高精度,高压(±600V)霍尔效应电流传感器装置的硅验证测量,验证了多体系系统共设计建模和分析方法的完整性。

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