首页> 外文会议>IEEE International Solid- State Circuits Conference >12.2 Micro Short-Circuit Detector Including S/H Circuit for 1hr Retention and 52dB Comparator Composed of C-Axis Aligned Crystalline IGZO FETs for Li-Ion Battery Protection IC
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12.2 Micro Short-Circuit Detector Including S/H Circuit for 1hr Retention and 52dB Comparator Composed of C-Axis Aligned Crystalline IGZO FETs for Li-Ion Battery Protection IC

机译:12.2微型短路检测器,包括S / H电路,用于1小时保留和52dB比较器,由C轴对准的锂离子电池保护IC组成的C轴对准晶体IGZO FET

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Li-ion batteries are primarily used as power sources in electronic devices and electric vehicles and offer substantial conveniences to consumers. However, fires have broken out likely due to micro short-circuit (also called internal or soft shortcircuit) in Li-ion batteries [1]. The micro short-circuit is a failure mode where Li metal first precipitates on a negative electrode and then reaches a positive electrode; eventually a short-circuit occurs between the negative and positive electrodes and the battery voltage slightly decreases. Repetitive occurrences of micro short-circuit will generate heat and lead to serious accidents with a fire or an explosion in the worst-case scenario. Micro short-circuit detection methods are still in the research phase, and applications of battery voltage monitoring systems with AI are expected [1], [2]. This situation demands urgent research and development of micro short-circuit detectors for battery protection ICs.
机译:锂离子电池主要用作电子设备和电动车辆的电源,并为消费者提供了大量的便利。然而,由于锂离子电池中的微短路(也称为内部或软短路),火灾可能会爆发[1]。微短路是失效模式,Li金属首先在负电极上沉淀,然后达到正电极;最终发生在负电极和正电极之间的短路,电池电压略微降低。微短路的重复出现将产生热量,并导致在最坏情况场景中具有火灾或爆炸的严重事故。微型短路检测方法仍在研究阶段,并预期使用AI的电池电压监测系统的应用[1],[2]。这种情况要求电池保护IC的微短路探测器的紧急研发。

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