DocumentCode :
2788450
Title :
High power modulator new design architectures enabled by new 200/spl deg/C-class high temperature insulation: a preliminary investigation
Author :
Sarjeant, W.J. ; Zirnheld, J. ; Gill, H. ; Burke, K. ; Meade, J. ; Ng, Li Voon ; Fick, H.
Author_Institution :
Inst. of Energy Syst., State Univ. of New York, Buffalo, NY, USA
fYear :
2000
fDate :
26-29 June 2000
Firstpage :
187
Lastpage :
190
Abstract :
An advanced insulating material developed for thermal management, with a 150/spl deg/C glass transition temperature (T/sub g/) in a laminate insulated metal substrate (IMS/sup TM/) construction, is characterized for its especially low partial discharge behavior. Rounding all sharp edges, and testing while immersed in dielectric fluid eliminates discharges in air above the test assembly. The insulation´s partial discharge inception voltage (PDIV) at room temperature, in a dielectric fluid environment, is above 4000 V, at 60 Hz AC. This material has shown to withstand aging in air at temperatures and DC voltages as high as 175/spl deg/C and 960 V, up to 2000 hours. This new material is available in square feet area sizes and represents the first new high voltage (i.e., for voltages >24 V/sub ac/dc/) large area laminate insulation for thermal management of next generation medium voltage high power modulators. Partial discharge (PD) testing, such as its inception and extinction voltages (PDIV and PDEV), may be used to assess the presence of microelectric discharges in insulating systems at design operating voltages. Through accelerated aging, PD activity can be utilized as a quality control to predict material life in design and qualification of a material for power applications.
Keywords :
ageing; glass transition; insulation testing; laminates; life testing; partial discharge measurement; polyethylene insulation; pulsed power supplies; 150 C; 175 C; 200 C; 2000 h; 60 Hz; 960 V; DC voltages; accelerated aging; design architectures; dielectric fluid; glass transition temperature; high power modulator; high temperature insulation; laminate insulated metal substrate; laminate insulation; low partial discharge behavior; material life prediction; microelectric discharges; partial discharge extinction voltage; partial discharge inception voltage; polyethylene; quality control; room temperature; sharp edges rounding; thermal management; Building materials; Dielectric materials; Dielectric substrates; Dielectrics and electrical insulation; Laminates; Partial discharges; Temperature; Testing; Thermal management; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Modulator Symposium, 2000. Conference Record of the 2000 Twenty-Fourth International
Conference_Location :
Norfolk, VA, USA
ISSN :
1076-8467
Print_ISBN :
0-7803-5826-0
Type :
conf
DOI :
10.1109/MODSYM.2000.896196
Filename :
896196
Link To Document :
بازگشت