你好,TI大神:
目前用BQ76952做了一个16串控正端的BMS,按照官网推荐的原理图设计。调试发现MCU发送均衡功能开启指令时模拟前端采集到的电压幅度跳动很大,请帮忙分析异常原因,均衡开启功能时需要注意些什么时序,谢谢解惑~~
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您好,请参考下面内容
Could you please clarify the exact problem you are seeing? Can you share a log file of this behavior so I can see the instability over time?
From the image captures you have included in your original post, it looks like the top of stack cell voltage is measuring lower than the other cell voltages. This can be caused when too many cells are balancing at the same time, which increases current flow into the top cell input. This leads to a greater IR drop across the cell input resistor, potentially causing voltage measurement errors. To address this, you could use a 20 Ω resistor on the VC16 pin to reduce the IR drop while using 100 Ω on the other pins. Although this may not be your main issue, it could make the voltage problems you are seeing worse.
Section 2.5 Voltage Measurement Accuracy During Balance in the Cell Balancing with BQ769x2 Battery Monitors application note has more information on the issue I explained above, as well as other cell balancing considerations. I will link it here: Cell Balancing With BQ769x2 Battery Monitors (Rev. A) (ti.com).
Some other notes worth considering:
您好,请参考下面寄存器设置建议
您好,目前没有出现过类似的问题。建议您试一下移除cell输入端的zerner,确认是不是这个导致的问题。
您的balance电路有点疑惑:
The connections BC0 to Q40 base, BC1 to Q39 base, BC2 to Q38 base make sense, but why are there connections from BAT0-R80 to Q40, BAT1-R79 to Q39, BAT2-R61 to Q38, etc.? Can they try removing R80, R79, R61, ...?
您好,
The voltage measurements will not be different after enabling cell balance. Cell balancing is paused each time a voltage measurement occurs - you can see waveforms in the cell balancing application report showing this duty cycle.
When you test cell balancing, you should use real cells. Cell balancing with the EVM resistor divider will not be stable and will cause the overvoltage alert to trigger which will disable balancing.
你好Star Xu 我应该遇到和他是同样的问题,我小电流放电测试是没问题的,电流加到50安培时,一定出现,我有关注你在英文论坛上发送的问题,非常感谢你帮忙支持解决。他所提到原理图上的R295是 NC. https://e2e.ti.com/support/power-management-group/power-management/f/power-management-forum/1173074/bq76952-vgs-fluctuating-after-short-circuit-event?tisearch=e2e-sitesearch&keymatch=BQ76952#
您好,建议您用示波器抓一下波形,更方便说明问题。
I did not see anything obvious on the schematic for the charge pump, but what is the circuit shown between the DSG pin and PACK+, is it a speed-up circuit?
I see that C51 is not connected anywhere. I also notice that there is no sense resistor in the schematic. The REGIN C46 should be 22-nF. The LD/PACK resistors also seem very large.
您好,
9 Power Supply Requirements
The BQ76952 device draws its supply current from the BAT pin, which is typically connected to the top of stack point through a series diode, to protect against any fault within the device resulting in unintended charging of the pack. A series resistor and capacitor is included to lowpass filter fast variations on the stack voltage. During a short circuit event, the stack voltage may be momentarily pulled to a very low voltage before the protection FETs are disabled. In this case, the charge on the BAT pin capacitor will temporarily support the BQ76952 device's supply current, to avoid the device losing power.
您好,请参考下面内容
D39 is important to keep the BAT pin voltage from being pulled low during a very heavy load like a short-circuit event. However, F10 should not be in parallel with D39 and R66 should be 100 ohms since this is part of the filter for the BAT pin.
RF1 should be at least 20 Ohms which is the minimum allowed cell input resistor by the datasheet specification.