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A high voltage analog multiplexer with digital calibration for battery management systems

机译:带有数字校准功能的高压模拟多路复用器,用于电池管理系统

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This work presents a multi-channel high voltage analog multiplexer with digital calibration for battery management systems (BMS). For a high voltage battery management systems, the front end circuit must be able to accommodate input voltage up to tens of volts, perhaps even hundreds of volts. To realize a possible solution on silicon, the front end of BMS shall be fabricated using an advanced HV (high voltage) semiconductor process, which usually is constrained by the voltage limitation between gate and source of HV devices. To overcome such a limitation, a high voltage gate control circuit is proposed in this work, including digital calibration that can compensate the output voltage loss of the multiplexer. An experimental prototype is implemented using a typical 0.25 µm 1-poly 3-metal 60V BCD process. The post-layout-extracted simulation results reveal that the worst-case error is less than 2 mV with calibration, which is 91% improvement compared with the state of art based on thorough simulations.
机译:这项工作提出了一种用于电池管理系统(BMS)的具有数字校准功能的多通道高压模拟多路复用器。对于高压电池管理系统,前端电路必须能够容纳高达数十伏,甚至数百伏的输入电压。为了在硅上实现可能的解决方案,BMS的前端必须使用先进的HV(高压)半导体工艺制造,该工艺通常受HV器件的栅极和源极之间的电压限制所约束。为了克服这种限制,在这项工作中提出了一种高压栅极控制电路,其中包括可以补偿多路复用器输出电压损失的数字校准。实验原型是使用典型的0.25 µm 1-poly 3-metal 60V BCD工艺实现的。布局后提取的仿真结果表明,校准后最坏情况的误差小于2 mV,与基于彻底仿真的最新技术相比,改进了91%。

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