Title :
Advanced control circuit for intermediate bus converter
Author :
Miftakhutdinov, R. ; Sheng, L. ; Liang, J. ; Wiggenhorn, J. ; Huang, H.
Author_Institution :
Texas Instrum. Inc.., Cary, NC
Abstract :
Power systems employing intermediate bus architecture (IBA) are lower cost and superior power quality solution versus the centralized power supply or distributed isolated DC-DC converters. The advantage of IBA depends heavily on highly efficient and power dense unregulated intermediate bus converter (IBC). This isolated IBC generates intermediate bus voltage in the range from 8 V to 14 V to supply local point-of-load regulators. The paper describes advanced control approach for the intermediate bus converter specifically addressing its key requirements. The new controller includes load current dependent off time control for improved efficiency, special means to address potential oscillating of synchronous self-driven MOSFET rectifiers and frequency control circuit to minimize the size of output inductor. Efficiency and performance improvement of IBC using described controller is verified by test results of the module with nominal input voltage 48 V and output power up to 600 W.
Keywords :
DC-DC power convertors; MOSFET circuits; frequency control; power inductors; power supply quality; rectifying circuits; dense unregulated intermediate bus converter; distributed isolated DC-DC converter; frequency control circuit; inductor; power quality; power system; synchronous self-driven MOSFET rectifier; voltage 8 V to 14 V; Costs; DC-DC power converters; MOSFET circuits; Power quality; Power supplies; Power systems; Rectifiers; Regulators; Size control; Voltage;
Conference_Titel :
Applied Power Electronics Conference and Exposition, 2008. APEC 2008. Twenty-Third Annual IEEE
Conference_Location :
Austin, TX
Print_ISBN :
978-1-4244-1873-2
Electronic_ISBN :
1048-2334
DOI :
10.1109/APEC.2008.4522925