YIELD ESTIMATION THROUGH COMPONENT PLACEMENT ACCURACY EVALUATION IN SURFACE-MOUNT PWB ASSEMBLY

Citation
Wr. Shih et al., YIELD ESTIMATION THROUGH COMPONENT PLACEMENT ACCURACY EVALUATION IN SURFACE-MOUNT PWB ASSEMBLY, JOURNAL OF ELECTRONICS MANUFACTURING, 6(1), 1996, pp. 51-63
Citations number
11
Categorie Soggetti
Engineering, Eletrical & Electronic","Engineering, Manufacturing
ISSN journal
09603131
Volume
6
Issue
1
Year of publication
1996
Pages
51 - 63
Database
ISI
SICI code
0960-3131(1996)6:1<51:YETCPA>2.0.ZU;2-G
Abstract
The effectiveness of the placement process in ultrafine pitch surface mount PWB assembly is influenced primarily by the accuracy of the Prin ted Wiring Boards (PWBs) the dimensional stability of the Surface Moun t Components (SMCs), and the capability of the pick and place machine used. Engineers in a PWB assembly facility often need to evaluate the capability of their respective manufacturing processes (more specifica lly, their SMC placement process). Consequently, they need to understa nd the variations associated with the primary attributes of the PWBs, the SMCs and the placement equipment, and their impact on the yields o f the placement process. This knowledge will guide the manufacturer in determining alternative courses of action which might improve process yields. This research attempted to understand how variations in the f unctional parameters of the PWBs, peripheral leaded SMCs and pick and place machines affect the objective function that was considered, name ly the lead to pad coverage. ii global system model was formulated to quantitatively determine the impact of each set of inputs on this obje ctive function. Computer-based simulation was used to estimate the lea d to pad coverage. This solution methodology provided a reasonable est imate of tile distribution of the lead to pad coverage based on the sp ecific PWB, SMCs and placement machine characteristic data. The softwa re developed to simulate the placement process is user friendly. The o utput format used combines textual and graphical modes. The simulation software has been rigorously tested and verified, and found to provid e excellent results.