DocumentCode :
627733
Title :
Nested hysteretic current-mode single-inductor multiple-output (SIMO) boosting buck converter
Author :
Solis, Carlos J. ; Rincon-Mora, Gabriel A.
Author_Institution :
Georgia Inst. of Technol., Atlanta, GA, USA
fYear :
2013
fDate :
16-19 June 2013
Firstpage :
1
Lastpage :
4
Abstract :
Portable microsystems, which typically incorporate transceivers, analog/digital converters, microprocessors, and others, require several fast on-chip supplies to both function and save energy. Linear regulators are fast and compact, but also lossy, and although switched inductors are efficient, power inductors are bulky, which is why supplying several functions with one inductor is often an optimal compromise. Responding quickly to individual disruptions, however, is challenging when sharing one inductor with other loads, and bucking and boosting the battery voltage normally require more power switches. The 1.25-MHz single-inductor multiple-output (SIMO) converter presented here employs a buck stage to buck and boost 3.6 V to 0.8, 1.2, and 4.5 V and uses nested hysteretic current-mode control to respond within 1 μs to 20-mA load dumps across 0.8 and 1.2 V and 2 μs to 5-mA load dumps across 4.5 V. Simulations show that efficiency peaks at 91% 0/0 with a combined load of 45 mA.
Keywords :
current-mode circuits; hysteresis motors; losses; power convertors; power inductors; SIMO boosting buck converter; analog/digital converter; battery voltage boosting; battery voltage bucking; current 20 mA; current 5 mA; efficiency 91 percent; energy saving; frequency 1.25 MHz; linear regulator; load dumps; lossy; microprocessor; nested hysteretic current-mode control; nested hysteretic current-mode single-inductor multiple-output boosting buck converter; on-chip supplies; portable microsystem; power inductor; power switches; switched inductor; time 1 mus; time 2 mus; transceiver; voltage 0.8 V; voltage 1.2 V; voltage 3.6 V; voltage 4.5 V; Boosting; Inductors; Regulators; Solid state circuits; Switches; Switching converters; Voltage control; Single inductor; cross regulation; current mode; dc-dc switching converter; hysteretic; multiple output;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
New Circuits and Systems Conference (NEWCAS), 2013 IEEE 11th International
Conference_Location :
Paris
Print_ISBN :
978-1-4799-0618-5
Type :
conf
DOI :
10.1109/NEWCAS.2013.6573566
Filename :
6573566
Link To Document :
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