Author name: Jessica Liu

Jessica Liu, an engineer at MOKOEnergy with 6 years of work experience, majored in automation at Hubei University of Technology. She has been involved in leading and monitoring comprehensive projects when worked for a top new energy company before. She is certified in PMP, IPD, IATF16949, and ACP. She excels in IoT devices, new energy MCU, VCU, solar inverter, and BMS.

What causes my BMS to shut down the battery system?

I live on a bus, and BMS has triggered the system to shut down in the middle of the night four times in the last three nights. Last night at shutdown, my two separate batteries measured 12.9 volts and 11.8 volts, respectively. I have connected two 12-volt lithium batteries in series, creating a 24-volt setup. My BMS SOC is around 65%. Is the BMS not working due to high voltage?

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Cell Monitoring Unit: A Pivotal Ingredient in Tomorrow’s BMS

How Does Cell Monitoring Unit Work in BMS?

Modern rechargeable battery-powered devices require battery management systems to help ensure that the battery is operating within the operating range specified by the manufacturer. Otherwise may lead to cell damage or equipment damage. The battery module consists of a smaller energy battery, in order to achieve the specified energy capacity and power output. The core

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BMS Overvoltage Protection: The Guardian of Electrical Safety

How BMS Overvoltage Protection Guard the Electrical Safety?

Electricity is the backbone of modern life, and our daily life and industrial production cannot be separated from electricity supply. However, enjoying convenient power at the same time, we also face the potential harm brought by the abnormal voltage rise. At this point, the BMS overvoltage protection has become a powerful patron saint of the

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BMS Overcurrent Protection: Indispensable for Battery Safety

BMS Overcurrent Protection: Indispensable for Battery Safety

In today’s digital age, we are currently witnessing a proliferation of new battery-enabled applications on the market as battery technology continues to evolve. However, the widespread use of batteries has also brought about current problems, where the presence of overcurrents can lead to catastrophic accidents such as equipment failures, fires, and even explosions. Therefore, overcurrent

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