DocumentCode
2570349
Title
Practical considerations using distributed power modules in decentralized power systems
Author
Lindman, Per ; Thorsell, Lars
Author_Institution
Energy Syst. Div., Ericsson Components AB, Stockholm, Sweden
Volume
2
fYear
1993
fDate
27-30 Sep 1993
Firstpage
39
Abstract
The design of modern decentralized power systems in telecommunication applications are normally realized by using distributed DC/DC power modules. Power modules are usually characterized by high switching frequencies which enables the use of small ferrite magnetics and ceramic capacitors to enhance the reliability, the power density and the possibility of live insertion, all desired features in new power system designs. However, to utilize the advantages of power modules there are a number of considerations to be made in the design. This paper addresses these considerations by focusing on systems with an average power dissipation of <10 W/board, in free convection cooled cabinets, and <80 W/board, in forced convection cooled cabinets of commonly used mechanical sizes and designs for telecommunication equipment
Keywords
DC-DC power convertors; ceramic capacitors; cooling; ferrite devices; forced convection; natural convection; packaging; telecommunication power supplies; ceramic capacitors; decentralized power systems; distributed DC/DC power modules; distributed power modules; forced convection cooled cabinets; free convection cooled cabinets; high switching frequencies; live insertion; power density; power dissipation; reliability; small ferrite magnetics; telecommunication equipment; Capacitors; Carbon capture and storage; Ceramics; Decision support systems; Distributed control; Frequency conversion; Multichip modules; Power system dynamics; Power systems; Switching converters;
fLanguage
English
Publisher
ieee
Conference_Titel
Telecommunications Energy Conference, INTELEC '93. 15th International
Conference_Location
Paris
Print_ISBN
0-7803-1842-0
Type
conf
DOI
10.1109/INTLEC.1993.388599
Filename
388599
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