DocumentCode :
513599
Title :
The continuing challenge of spacecraft ESD
Author :
Hariharan, VK ; Rao, MN ; Shastry, SVK ; Ghatpande, ND ; Danabalan, TL ; Katti, V.R. ; Chakrabarty, Ajay
Author_Institution :
Syst. Integration Group, ISRO Satellite Centre, Bangalore, India
fYear :
2006
fDate :
23-24 Feb. 2006
Firstpage :
382
Lastpage :
388
Abstract :
The threat of spacecraft electrostatic discharge (ESD) arises primarily from the energetic charged particles (electrons and ions) present in the magnetospheric plasma of the earth, at the altitudes of geo-synchronous satellites. The charged particles in the energy range, less than 50 keV, give rise to surface charging and those in the higher energy range (>100 keV) penetrate into the interiors of the spacecraft and give rise to deep dielectric (internal) charging. Under certain circumstances, the charge accumulation continues until the dielectric breaks down electrically, producing effects such as material destruction, contamination of nearby surfaces, or electrostatic discharge. The discharge may induce transient electromagnetic interference (EMI) in the electronic circuitry and may give rise to switching anomalies or failure of the system under severe environmental condition. This paper describes the spacecraft charging, surface charging as well as internal charging studies that have been carried out. Techniques of hardening the spacecraft subsystems against on-board ESD are outlined. The point made is that spacecraft ESD threat has not gone away, and the relevant satellite specifications are becoming increasingly stringent, constituting a continuing major challenge for spacecraft designers and system integrators.
Keywords :
electromagnetic interference; electrostatic discharge; magnetosphere; space vehicles; charge accumulation; deep dielectric charging; electromagnetic interference; electronic circuitry; electrostatic discharge; energetic charged particles; environmental condition; geosynchronous satellites; magnetospheric plasma; material destruction; satellite specifications; spacecraft ESD; spacecraft charging; spacecraft subsystems; surface charging; Aircraft manufacture; Dielectrics; Electromagnetic interference; Electrostatic discharge; Electrostatic interference; Satellites; Space vehicles; Surface charging; Surface contamination; Surface discharges;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
ElectroMagnetic Interference and Compatibility (INCEMIC), 2006 Proceedings of the 9th International Conference on
Conference_Location :
Bangalore
Print_ISBN :
978-1-4244-5203-3
Type :
conf
Filename :
5419736
Link To Document :
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