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Energy-Harvesting Circuits With a High-Efficiency Rectifier and a Low Temperature Coefficient Bandgap Voltage Reference

机译:具有高效整流器和低温系数带隙基准电压的能量收集电路

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In this paper, a high-efficiency rectifier and a low temperature coefficient (TC) bandgap voltage reference (BGR) in energy-harvesting circuits are presented. The audio signal generated from smartphone is used to verify the energy-harvesting circuits that are composed of a full-wave low-voltage active rectifier, a low-dropout (LDO) regulator, and a current-mode BGR circuit. An active diode and a proposed AVC are presented to enhance the rectifier efficiency. The rectifier output voltage is regulated by an LDO close to a stable 1.2-V supply voltage in a 0.18-mu m 1P6M Taiwan Semiconductor Manufacturing Company standard complementary metal-oxide-semiconductor (CMOS) process. A curvature-compensation technique is proposed to improve the TC of the BGR, and the best TC of 15.33 ppm/degrees C between the temperature range of -10 degrees C and 120 degrees C is measured. The measured rectifier achieves the maximum power conversion efficiency (PCE) of 87.2% under 1.77 V-pp ac input signal with 2-k Omega output load resistance. The measured results demonstrate the better characteristic of the rectifier and BGR than that of previous works using the low-power structure.
机译:本文提出了一种能量收集电路中的高效整流器和低温系数(TC)带隙基准电压源(BGR)。从智能手机生成的音频信号用于验证能量收集电路,该电路由全波低压有源整流器,低压差(LDO)调节器和电流模式BGR电路组成。提出了有源二极管和提出的AVC,以提高整流器效率。整流器输出电压由LDO调节,以0.18微米1P6M台积电标准互补金属氧化物半导体(CMOS)工艺的LDO调节至接近1.2V稳定电源电压。提出了一种曲率补偿技术来提高BGR的TC,并测量了-10摄氏度和120摄氏度之间的最佳TC,即15.33 ppm /摄氏度。测得的整流器在1.77 V-pp交流输入信号下具有2k Omega输出负载电阻,可实现87.2%的最大功率转换效率(PCE)。测量结果表明,整流器和BGR的特性比以前使用低功耗结构的作品更好。

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