1101 performance of kapton stencils vs stainless steel stencils for prototype printing volumes processes results

Technical Library: performance of kapton stencils vs stainless steel stencils for prototype printing volumes processes (1)

Performance of Kapton Stencils vs Stainless Steel Stencils for Prototype Printing Volumes Processes

Technical Library | 2013-07-03 10:31:54.0

It has been demonstrated in numerous pieces of work that stencil printing, one of the most complex PCB assembly processes, is one of the largest contributors to defects (Revelino et el). This complexity extends to prototype builds where a small number of boards need to be assembled quickly and reliably. Stencil printing is becoming increasingly challenging as packages shrink in size, increase in lead count and require closer lead spacing (finer pitch). Prototype SMT assembly can be further divided between industrial and commercial work and the DIYer, hobbyist or researcher groups. This second group is highly price sensitive when it comes to the materials used for the board assembly as their funds are sourced from personal or research monies as opposed to company funds. This has led to development of a lower cost SMT printing stencil made from plastic film as opposed to the more traditional stainless steel stencil used by industrial and commercial users.This study compares the performance of these two traditional materials and their respective impact on solder paste printing including efficiency and print quality.

BEST Inc.

Express Newsletter: performance of kapton stencils vs stainless steel stencils for prototype printing volumes processes (1100)

SMTnet Express July 3 - 2013, Subscribers: 26124

SMTnet Express July 3, 2013, Subscribers: 26124, Members: Companies: 13413, Users: 34866 Performance of Kapton Stencils vs Stainless Steel Stencils for Prototype Printing Volumes Processes by Bob Wettermann, Hung Hoang; BEST Inc It has been

SMTnet Express - April 13, 2017

SMTnet Express, April 13, 2017, Subscribers: 30,391, Companies: 10,572, Users: 23,128 A Study to Determine the Impact of Solder Powder Mesh Size and Stencil Technology Advancement on Deposition Volume when Printing Solder Paste Karl Seelig, Tim O


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