DocumentCode
2755145
Title
An Adaptive Test for Parametric Faults Based on Statistical Timing Information
Author
Shintani, Michihiro ; Uezono, Takumi ; Takahashi, Tomoyuki ; Ueyama, Hiroyuki ; Sato, Takashi ; Hatayama, Kazumi ; Aikyo, Takashi ; Masu, Kazuya
Author_Institution
Semicond. Technol. Acad. Res. Center, Yokohama, Japan
fYear
2009
fDate
23-26 Nov. 2009
Firstpage
151
Lastpage
156
Abstract
The continuing miniaturization of LSI dimension is causing the increase of process-related variations which significantly affects not only its design turn around time but also its manufacturing yield. Statistical static timing analysis (SSTA) is expected as a promising way to estimate the performance of circuits more accurately considering delay variations. However, LSIs designed using SSTA may have higher probability of parametric faults than the ones designed with deterministic timing analysis. In order to test these parametric faults, effective extraction techniques of critical paths are needed. In this paper, we discuss a general trend between the delay margin of LSIs designed by SSTA and their parametric fault ratio. Then we propose an adaptive test flow for parametric faults using statistical static timing information, and a concept of parametric fault coverage. Experimental results demonstrate the effectiveness of our approach.
Keywords
fault diagnosis; integrated circuit testing; large scale integration; statistical testing; timing circuits; LSI; SSTA; adaptive test; delay margin; parametric faults; statistical static timing information; Circuit faults; Circuit testing; Computer aided manufacturing; Delay effects; Delay estimation; Large scale integration; Probability; Propagation delay; Semiconductor device testing; Timing; SSTA; parametric fault; path-delay test;
fLanguage
English
Publisher
ieee
Conference_Titel
Asian Test Symposium, 2009. ATS '09.
Conference_Location
Taichung
ISSN
1081-7735
Print_ISBN
978-0-7695-3864-8
Type
conf
DOI
10.1109/ATS.2009.90
Filename
5359374
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