Title :
An Ultra-Low Power Fully Integrated Energy Harvester Based on Self-Oscillating Switched-Capacitor Voltage Doubler
Author :
Wanyeong Jung ; Sechang Oh ; Suyoung Bang ; Yoonmyung Lee ; Zhiyoong Foo ; Gyouho Kim ; Yiqun Zhang ; Sylvester, Dennis ; Blaauw, D.
Author_Institution :
Univ. of Michigan, Ann Arbor, MI, USA
Abstract :
This paper presents a fully integrated energy harvester that maintains >35% end-to-end efficiency when harvesting from a 0.84 mm 2 solar cell in low light condition of 260 lux, converting 7 nW input power from 250 mV to 4 V. Newly proposed self-oscillating switched-capacitor (SC) DC-DC voltage doublers are cascaded to form a complete harvester, with configurable overall conversion ratio from 9× to 23×. In each voltage doubler, the oscillator is completely internalized within the SC network, eliminating clock generation and level shifting power overheads. A single doubler has >70% measured efficiency across 1 nA to 0.35 mA output current ( >10 5 range) with low idle power consumption of 170 pW. In the harvester, each doubler has independent frequency modulation to maintain its optimum conversion efficiency, enabling optimization of harvester overall conversion efficiency. A leakage-based delay element provides energy-efficient frequency control over a wide range, enabling low idle power consumption and a wide load range with optimum conversion efficiency. The harvester delivers 5 nW-5 μW output power with >40% efficiency and has an idle power consumption 3 nW, in test chip fabricated in 0.18 μm CMOS technology.
Keywords :
CMOS integrated circuits; DC-DC power convertors; energy harvesting; power consumption; solar cells; CMOS technology; DC-DC voltage doublers; current 1 nA to 0.35 mA; end-to-end efficiency; energy harvester; energy-efficient frequency control; frequency modulation; leakage-based delay element; power 170 pW; power 3 nW; power 5 nW to 5 muW; power 7 nW; power consumption; self-oscillating switched-capacitor voltage doubler; size 0.18 mum; solar cell; voltage 250 mV; voltage 4 V; Clocks; Delays; Frequency modulation; Oscillators; Power demand; Power generation; Transistors; DC-DC converter; energy harvester; self-oscillating; switched capacitor; ultra low-power; voltage doubler;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2014.2346788