Design of a 93% Energy-Efficient Buck-Type Capacitor Charger IC in 250-nm CMOS
Autor: | Minbok Lee, Jaeha Kim |
---|---|
Rok vydání: | 2016 |
Předmět: |
Engineering
business.industry Buck converter 020208 electrical & electronic engineering Electrical engineering Battery (vacuum tube) 02 engineering and technology Integrated circuit 01 natural sciences Capacitance Industrial and Manufacturing Engineering 010305 fluids & plasmas law.invention Capacitor CMOS Control and Systems Engineering law 0103 physical sciences 0202 electrical engineering electronic engineering information engineering Electrical and Electronic Engineering business Energy (signal processing) Efficient energy use |
Zdroj: | IEEE Transactions on Industry Applications. 52:3203-3211 |
ISSN: | 1939-9367 0093-9994 |
Popis: | This paper presents an energy-efficient buck-type capacitor charger integrated circuit (IC) that can deliver high instantaneous power from a low-capacity battery using a capacitor as an energy buffer. The prototype IC, which was designed and fabricated in 250-nm CMOS, reduces capacitor charging losses by driving the buck converter with gradually increasing pulsewidths and then recycles the remaining energy by operating the buck converter in the reverse direction. The presented digital pulsewidth modulator (DPWM) supports a wide range of duty cycles from 4% to 96% with a fine resolution of 0.36% and a high switching frequency of 1.5 MHz. The optimal switching frequency and transition time that can minimize the charging/discharging losses are analyzed. The prototype charger IC can charge a $10\text{-}\upmu{\rm F}$ capacitor to 4.2 V with a transition time of 1.25 ms with a peak charging efficiency of 93% while operating at a 1.5-MHz switching frequency. |
Databáze: | OpenAIRE |
Externí odkaz: |