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Highly accurate and power-efficient battery charger with charging current compensator for wearable devices

机译:具有可穿戴设备充电电流补偿器的高精度,高能效电池充电器

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摘要

Highly accurate and power-efficient hybrid battery charger is proposed which includes the switching and linear chargers as well as a charging current compensator. The proposed current compensator operates the switching charger in the constant current (CC) mode to achieve high power efficiency and to improve the charging current accuracy with a small-sized inductor. It also operates the linear charger to minimise the charging current variation in the trickle current (TC) mode and to reduce the battery charging voltage error in the constant voltage (CV) mode. The proposed battery charger was fabricated using a 0.18 μm CMOS process and occupies a chip area of 1.63 mm2. The measurement results show that the proposed battery charger achieves a charging current accuracy of 96.2% in the CC mode, which is improved by 15.8% at a target current of 500 mA, as well as a power dissipation of 0.26 W. In addition, the charging current variation and charging voltage error are measured to be <;2 mAP-P in the TC mode and 0.48% in the CV mode.
机译:提出了一种高精度,高能效的混合电池充电器,该充电器包括开关充电器和线性充电器以及充电电流补偿器。提出的电流补偿器以恒定电流(CC)模式操作开关充电器,以实现高功率效率并使用小尺寸电感器提高充电电流精度。它还使线性充电器工作,以使minimize流电流(TC)模式下的充电电流变化最小,并减少恒定电压(CV)模式下的电池充电电压误差。拟议的电池充电器采用0.18μmCMOS工艺制造,占用的芯片面积为1.63 mm2。测量结果表明,提出的电池充电器在CC模式下可实现96.2%的充电电流精度,在目标电流500 mA时提高了15.8%,功耗为0.26W。在TC模式下测得的充电电流变化和充电电压误差小于2 mAP-P,在CV模式下测得的为0.48%。

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