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International Journal of Innovation and Scientific Research
ISSN: 2351-8014
 
 
Friday 26 April 2024

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Polypropylene Capacitors with High Crystalline Segmented Offer Increased Energy Density


Volume 11, Issue 1, October 2014, Pages 37–40

 Polypropylene Capacitors with High Crystalline Segmented  Offer Increased Energy Density

R. SHIVAKUMARA SWAMY1, Dr. V. VENKATESH2, and Dr. K. N. RAVI3

1 Asst. Professor, Dept. of EEE Acharya Institute of Technology, Soldevanahalli, Bangalore - 560107, India
2 Professor, ECE Dept. & Principal Channabasaveshwara Institute of Technology, Gubbi,Tumkur - 572216, India
3 Professor & HOD, Dept. of EEE Sapthagiri College of Engineering, Hesaraghatta, Bangalore - 560090, India

Original language: English

Copyright © 2014 ISSR Journals. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

Abstract


The component of choice for many more DC Filter, energy storage and similar applications for the 21st century is High crystalline segmented metallized polypropylene capacitors are. With the introduction of higher crystalline and higher temperature dielectric, the size of segmented metallized polypropylene capacitors were reduced at least 33 percent while increasing the life expectancy and reducing the costs over previous designs. Higher temperature operation of at least 110C is also accomplished with this material type. Capacitors are now manufactured using the combined segmented and high crystalline metallized polypropylene technology that allow denser power system packaging and lower manufacturing costs than other capacitor choices.

Author Keywords: Polypropylene Capacitors, Energy Density.


How to Cite this Article


R. SHIVAKUMARA SWAMY, Dr. V. VENKATESH, and Dr. K. N. RAVI, “Polypropylene Capacitors with High Crystalline Segmented Offer Increased Energy Density,” International Journal of Innovation and Scientific Research, vol. 11, no. 1, pp. 37–40, October 2014.