BIST/DFT for performance testing of bare dies and MCMs

Chih-Ang Chen, Sandeep K. Gupta · 1994

High emphasis on performance and high cost of MCM repairs necessitates a frame work for performance testing of dies, substrates, and final MCMs. Application of performance tests to bare dies is very expensive due to the need for small and high speed probes and ATE, BIST, scan, and boundary scan can provide a framework to accomplish performance testing in a cost effective manner. It has been shown that traditional BIST, scan, and boundary scan techniques do not provide the framework for performance testing. Special BIST and scan design techniques that can be employed to guarantee high coverage of delay faults are described. Typically, these techniques produce BIST test pattern generators and scan chain designs that require slightly increased hardware overhead over conventional BIST/scan. However, they can drastically decrease the complexity of bare die performance testing. Furthermore, when used in combination with the proposed enhanced boundary scan design, they provide a framework for detection and diagnosis of dynamic failures.>

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