DocumentCode
3040855
Title
Application-specific economic analysis of integral passives in printed circuit boards
Author
Etienne, Bevin ; Sandborn, Peter
Author_Institution
CALCE Electron. Products & Syst. Center, Maryland Univ., College Park, MD, USA
fYear
2001
fDate
2001
Firstpage
399
Lastpage
404
Abstract
This paper summarizes an application-specific economic analysis of the conversion of discrete passive resistors and capacitors to integral passives that are embedded within a printed circuit board. In this study, we assume that integral resistors are printed or plated directly on to wiring layers (as opposed to requiring a dedicated layer), that bypass capacitors are embedded by dielectric substitution into existing reference plane layers, and that singulated nonbypass capacitors are embedded using dedicated layer pair addition. The model presented performs three basic analyses: (1) board size analysis is used to determine board sizes, layer counts, and the number of boards that can be fabricated on a panel; (2) panel fabrication cost modeling including a cost of ownership model is used to determine the impact of throughput changes associated with fabricating integral passive panels; and (3) assembly modeling is used to determine the cost of assembling all discrete components, and their associated inspection and rework. The combination of these three analyses is used to evaluate size/cost trade-offs for an example board
Keywords
assembling; cost-benefit analysis; dielectric thin films; inspection; packaging; printed circuit manufacture; thin film capacitors; thin film resistors; application-specific economic analysis; assembling cost; assembly modeling; board fabrication; board size; board size analysis; bypass capacitors; cost of ownership model; dedicated layer pair addition; dielectric substitution; direct plating; direct printing; discrete component assembly; discrete passive capacitors; discrete passive resistors; embedded passives; inspection; integral passive panels; integral passives; integral resistors; layer count; model; panel fabrication cost modeling; printed circuit boards; reference plane layers; rework; singulated nonbypass capacitors; size/cost trade-offs; throughput; wiring layers; Assembly; Capacitors; Costs; Dielectrics; Fabrication; Performance analysis; Printed circuits; Resistors; Throughput; Wiring;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Packaging Materials: Processes, Properties and Interfaces, 2001. Proceedings. International Symposium on
Conference_Location
Braselton, GA
Print_ISBN
0-930815-64-5
Type
conf
DOI
10.1109/ISAOM.2001.916609
Filename
916609
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