2003Unpublished venueRequires access

A universal testability strategy for multi-chip modules based on BIST and boundary-scan

Y. Zorian

Open publisher page 33 citations

Abstract

A testability strategy that can be implemented mainly by incorporating built-in self-test (BIST) and boundary scan during the chip design cycle is presented. On the basis of these, the testing and diagnosis procedures needed to meet the quality requirements of multichip module (MCM) manufacturing, and hence reaching acceptable MCM assembly yields is demonstrated. The proposed testability strategy can be considered universal, since it is independent of silicon, substrate, or attachment technologies adopted to build the MCM.>

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What this paper is about

A testability strategy that can be implemented mainly by incorporating built-in self-test (BIST) and boundary scan during the chip design cycle is presented. On the basis of these, the testing and diagnosis procedures needed to meet the quality requirements of multichip module (MCM) manufacturing, and hence reaching acceptable MCM assembly yields is demonstrated. The proposed testability strategy can be considered universal, since it is independent of silicon, substrate, or attachment technologies adopted to build the MCM.>

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OpenAlex reports 33 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A testability strategy that can be implemented mainly by incorporating built-in self-test (BIST) and boundary scan during the chip design cycle is presented. On the basis of these, the testing and diagnosis procedures needed to meet the quality requirements of multichip module (MCM) manufacturing, and hence reaching acceptable MCM assembly yields is demonstrated. The proposed testability strategy can be considered universal, since it is independent of silicon, substrate, or attachment technologies adopted to build the MCM.>

Key concepts: Testability, Boundary scan, Design for testing, Computer science, Chip, Computer architecture, Embedded system, Reliability engineering

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