DocumentCode :
2822900
Title :
TMF ultra-high rate discharge performance
Author :
Nelson, Bob
Author_Institution :
Boulder Technol Corp., Wheat Ridge, CO, USA
fYear :
1997
fDate :
14-17 Jan 1997
Firstpage :
139
Lastpage :
143
Abstract :
BOLDER Technologies Corporation has developed a valve-regulated lead-acid product line termed Thin Metal Film (TMFTM) technology. It is characterized by extremely thin plates and close plate spacing that facilitate high rates of charge and discharge with minimal temperature increases, at levels unachievable with other commercially-available battery technologies. This ultra-high rate performance makes TMF technology ideal for such applications as various types of engine start, high drain rate portable devices and high-current pulsing. Data are presented on very high current continuous and pulse discharges. Power and energy relationships at various discharge rates are explored and the fast-response characteristics of the BOLDERR cell are qualitatively defined. Short-duration recharge experiments will show that devices powered by BOLDER batteries can be in operation for more than 90% of an extended usage period with multiple fast recharges
Keywords :
lead; secondary cells; BOLDER Technologies Corporation; Pb; Pb-acid valve regulated battery; Thin Metal Film technology; close plate spacing; cycle life data; energy relationships; engine start; extended usage period; fast-response characteristics; high drain rate portable devices; high-current pulsing; minimal temperature; multiple fast recharges; power relationships; thin plates; ultra-high rate discharge performance; ultra-high rate performance; valve-regulated lead-acid product line; very high current continuous discharge; very high current pulse discharge; Assembly; Batteries; Engines; Heating; Load flow; Low voltage; Surface discharges; Surface impedance; Temperature; Wounds;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Battery Conference on Applications and Advances, 1997., Twelfth Annual
Conference_Location :
Long Beach, CA
ISSN :
1089-8182
Print_ISBN :
0-7803-3631-3
Type :
conf
DOI :
10.1109/BCAA.1997.574094
Filename :
574094
Link To Document :
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