REG NASA-LLIS-0788--2000 Lessons Learned Surface Charging Electrostatic Discharge Analysis.pdf
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1、Best Practices Entry: Best Practice Info:a71 Committee Approval Date: 2000-04-17a71 Center Point of Contact: JPLa71 Submitted by: Wilson HarkinsSubject: Surface Charging/Electrostatic Discharge Analysis Practice: Considering the natural environment, perform spacecraft charging analyses to determine
2、that the energy that can be stored by each nonconductive surface is less than 3 mJ. Determine the feasibility of occurrence of electrostatic discharges (ESD). ESD should not be allowed to occur on surfaces near receivers/antenna operating at less than 8 GHz or on surfaces near sensitive circuits. Fo
3、r this practice to be effective, a test program to demonstrate the spacecrafts immunity to a 3 mJ ESD is required.Abstract: Preferred Practice for Design & Test. Unpredictable operational anomalies and electronic parts failure could be caused by in-flight ESD events. The consequences could be catast
4、rophic. Considering the natural environment, perform spacecraft charging analyses to determine that the energy that can be stored by each nonconductive surface is less than 3 mJ. Determine the feasibility of occurrence of electrostatic discharges (ESD). ESD should not be allowed to occur on surfaces
5、 near receivers/antenna operating at less than 8 GHz or on surfaces near sensitive circuits. For this practice to be effective, a test program to demonstrate the spacecrafts immunity to a 3 mJ ESD is required.Programs that Certify Usage: This practice has been used on the Voyager and Galileo program
6、s.Center to Contact for Information: JPLImplementation Method: Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-This Lesson Learned is based on Reliability Practice number PD-AP-1301, from NASA Technical Memorandum 4322A, Reliability Preferred Practic
7、es for Design and Test.Surfaces that are conceivable electrostatic discharge (ESD) sources can be identified early in the program. Design changes such as application of a conductive coating and use of alternate materials can be implemented to eliminate or reduce the ESD risk. Preventive measures suc
8、h as the installation of RC filters on sensitive circuits also can be implemented to control the adverse ESD effects.Use a validated computer code (NASCAP or other appropriate computer code) to determine the maximum differential charging (V) of each nonconductive surface. When differential charging
9、occurs, an electric field is developed within the dielectric material. The magnitude of the electric field (E) is given by:E = V/d where d is the thickness of the dielectric material. Usually, when this electric field is greater than 2x105V/cm, ESD is likely to occur.To determine the charging level,
10、 electrical properties of the nonconductive material must be known. These properties include (but are not limited to) surface resistivity, bulk resistivity, secondary and backscatter electron emission coefficient, and photoelectron yield. For materials with unknown electrical properties, the chargin
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