DocumentCode :
2376242
Title :
Capacitance monitoring while flex testing
Author :
Bergenthal, Jim ; Prymak, John D.
Author_Institution :
KEMET Electron. Corp., Greenville, SC, USA
fYear :
1994
fDate :
1-4 May 1994
Firstpage :
854
Lastpage :
860
Abstract :
As most other modes of failure have been dramatically reduced over the years, cracking due to stresses from boards bending have gained prominence. The common printed circuit board (PCB) built of G10 or FR-4 glass epoxy materials will easily bend under moderate forces. Almost all processes involved in populating these boards can involve bending the board - many times unknowingly. The bending of the board causes forces to be transmitted through the solder attach fillets to the surface mount chip. These forces are concentrated at the bottom of the chip, where the termination bands end. The mass of solder is important as this material is malleable, and slight amounts will move more freely. Forces applied very slowly will also allow the solder to stretch and absorb some ofthe force. The ceramic material is hard, non-elastic, and brittle. The shear force pulling at the ceramic along the termination edge will lead to a crack if the forces are sufficient. At what force the chip cracks is thought to be dependent upon the ceramic material, the amount of solder, the termination material and amounts, and possible defects or anomalies within the ceramic structure. In this context, the authors describe flex, bend, or warp testing which was instituted to detect a susceptibility to these forces
Keywords :
acoustic emission testing; bending; capacitance measurement; ceramics; circuit reliability; crack detection; monitoring; printed circuit testing; production testing; surface mount technology; FR-4; G10; PCB mounted components; SMT; bend testing; bending stresses; capacitance monitoring; ceramic SMD; ceramic material; chip cracks; failure mode; flex testing; glass epoxy materials; printed circuit board; shear force; solder attach fillets; surface mount chip; warp testing; Capacitance; Ceramics; Circuit testing; Communication cables; Condition monitoring; Electrodes; Flexible printed circuits; Glass; Lead; Stress;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronic Components and Technology Conference, 1994. Proceedings., 44th
Conference_Location :
Washington, DC
Print_ISBN :
0-7803-0914-6
Type :
conf
DOI :
10.1109/ECTC.1994.367528
Filename :
367528
Link To Document :
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