← 返回 JSSC 论文列表JSSC 2021第10期Power Management0.18µmEnergy HarvestingNeural Network Accelerator
A Fully Energy-Autonomous Temperature-to-Time Converter Powered by a Triboelectric Energy Harvester for Biomedical Applications Joanne Si Ying Tan , Student Member , IEEE, Jeong
提出一种由摩擦纳米发电机供电的全能量自主温度-时间转换器,用于生物医学应用。
0.18µm CMOS, 0.6V, 0.14pJ/转换, 0.014ms转换时间
能量自主温度-时间转换器摩擦纳米发电机动态泄漏抑制生物医学应用
▸动态泄漏抑制全桥整流器(DLS-FBR)减少反向泄漏电流1000倍以上
▸利用摩擦纳米发电机(TENG)作为唯一电源,支持<1Hz人体运动能量采集
▸专为生物医学应用设计的低功耗温度-时间转换器(TTC)
Abstract
This article presents a fully energy-autonomous temperature-to-time converter ( TTC), entirely powered up by a triboelectric nanogenerator (TENG) for biomedical applications. Existing sensing systems either consume too much power to be sustained by energy harvesting or have poor accuracy. Also, the harvesting of low-frequency energy input has been challenging due to high reverse leakage of a rectifier. The proposed dynamic leakage suppression full-bridge rectifier (DLS- FBR) reduces the reverse leakage current by more than 1000 ×, enabling harvesting from sparse and sporadic energy sources; this enables the TTC to function with a TENG as the sole power source operating at <1-Hz human motion. Upon harvesting 0.6 V in the storage capacitor, the power management unit (PMU) activates the low-power TTC, which performs one-shot conversion of temperature to pulsewidth. Designed for biomedical applications, the TTC enables a temperature measurement range from 15 ◦Ct o4 5 ◦C. The energy-autonomous TTC is fabricated in 0.18-µm 1P6M CMOS technology, consuming 0.14 pJ/conversion with 0.014-ms conversion time.