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首页> 外文期刊>Very Large Scale Integration (VLSI) Systems, IEEE Transactions on >A Voltage Monitoring IC With HV Multiplexer and HV Transceiver for Battery Management Systems
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A Voltage Monitoring IC With HV Multiplexer and HV Transceiver for Battery Management Systems

机译:带有HV多路复用器和HV收发器的电压监控IC,用于电池管理系统

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摘要

This paper presents a voltage monitoring IC with high-voltage multiplexer (HVMUX) and HV transceiver for battery interconnect module (BIM) used in battery management systems (BMSs). The voltage monitoring IC must be able to accommodate input voltage up to tens of volts, perhaps even hundreds of volts, which is difficult to be realized using a logic-based solution. To realize a solution on silicon, the voltage monitoring IC shall be fabricated using an advanced HV semiconductor process, which usually is constrained by the voltage drop limitation between gate and source of HV devices. To overcome such a limitation, an HV switch is proposed in this paper, including an HV gate voltage driver (HVGVD) driving the HV MOS without any over-voltage hazard. In addition, an HV transceiver is proposed using CMOS transistors without any isolator. An experimental prototype is fabricated using a typical 0.25 1-poly 3-metal 60 V BCD process. The measurement results reveal that the error and off-isolation of HVMUX is less than 2.54% and , respectively. Meanwhile, the HV transceiver can transmit and receive data with a common voltage.
机译:本文提出了一种带有高压多路复用器(HVMUX)和用于电池管理系统(BMS)的电池互连模块(BIM)的高压收发器的电压监控IC。电压监控IC必须能够容纳高达数十伏,甚至数百伏的输入电压,而使用基于逻辑的解决方案很难实现。为了在硅上实现解决方案,电压监视IC必须使用先进的HV半导体工艺制造,通常会受到HV器件的栅极和源极之间的压降限制的限制。为了克服这种限制,本文提出了一种HV开关,其中包括一个HV栅极电压驱动器(HVGVD),该驱动器可在没有任何过电压危害的情况下驱动HV MOS。另外,提出了使用没有任何隔离器的CMOS晶体管的HV收发器。实验原型是使用典型的0.25 1-poly 3-metal 60 V BCD工艺制造的。测量结果表明,HVMUX的误差和离隔离度分别小于2.54%和。同时,HV收发器可以以公共电压发送和接收数据。

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