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Design of AFE and PWM Drive for Lithium-Ion Battery Management System for HEV/EV System

机译:HEV / EV系统锂离子电池管理系统的AFE和PWM驱动设计

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This paper describes Analog-front-end (AFE) for lithium-ion battery management system. It includes the design of the differential clocked comparator which compares the cell voltage and the external reference voltage in the cell voltage domain to find if the cell voltage is within the safe operating range. This also includes PWM drive for the external fly-back dc-dc converter, the charge shuttling switches and control logic for active cell balancing of Lithium-ion battery cells in 0.35um high voltage (HV) CMOS technology. PWM drive circuit generates programmable frequency and programmable duty cycle to drive external low-side FET in the primary of the fly-back dc-dc converter. Secondary of the fly-back converter is connected to on-chip charge shuttling switches. Based on the differential comparators decision for the set target cell balance voltage, the digital finite state machine (FSM) generates control signal to charge individual cells in the battery sequentially. These circuits are part of lithium-ion battery cell balancer IC. The IC is designed to support cell voltage monitoring and cell balancing of a lithium-ion battery of seven cells.
机译:本文介绍了用于锂离子电池管理系统的模拟前端(AFE)。它包括差分时钟比较器的设计,该比较器将电池电压与电池电压域中的外部参考电压进行比较,以确定电池电压是否在安全工作范围内。它还包括用于外部反激式DC-DC转换器的PWM驱动器,电荷穿梭开关以及用于采用0.35um高压(HV)CMOS技术的锂离子电池电芯的有源电芯平衡的控制逻辑。 PWM驱动电路生成可编程频率和可编程占空比,以驱动反激式DC-DC转换器初级中的外部低侧FET。反激转换器的次级连接到片上电荷穿梭开关。基于针对设置的目标电池单元平衡电压的差分比较器决策,数字有限状态机(FSM)生成控制信号以对电池中的各个电池单元依次充电。这些电路是锂离子电池单元平衡器IC的一部分。该IC设计用于支持七个电池的锂离子电池的电池电压监控和电池平衡。

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