DocumentCode
1913525
Title
Practical application of energy consumption ratio test
Author
Peterson, Eric ; Jiang, Wanli
Author_Institution
Test Eng., Guidant Corp., St. Paul, MN, USA
fYear
2001
fDate
2001
Firstpage
386
Lastpage
394
Abstract
Dynamic Idd test techniques are obtaining more attention from both academia and industry, because of their ability to further improve product quality beyond tests based primarily on Iddq test and other traditional test techniques. Normal process variations in wafer fabrication decrease the defect coverage and affect the application of dynamic Idd test techniques. Energy Consumption Ratio (ECR) test, a recent test metric based on dynamic currents, shows its tolerance to process variations, over other dynamic test techniques. We investigate this technique as a method of providing additional test coverage to production wafers that were fabricated using two different planarization technologies. One set was fabricated with a Spin-on-Glass (SOG) planarization technology, and the other set with Chemical Mechanical Polishing (CMP). The SOG wafers used in our experiments contain defects known as "poisoned vias." We show that the ECR is effective in detecting defects of this type where other traditional test methods are not
Keywords
chemical mechanical polishing; integrated circuit manufacture; integrated circuit testing; production testing; surface treatment; CMP; SOG technology; chemical mechanical polishing; defects detection; dynamic Idd test techniques; dynamic currents; energy consumption ratio test; planarization technologies; poisoned vias detection; process variations tolerance; production wafers; spin-on-glass technology; test coverage; test metric; Chemical technology; Circuit faults; Circuit testing; Current measurement; Energy consumption; Planarization; Power measurement; Production; Transient analysis; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Test Conference, 2001. Proceedings. International
Conference_Location
Baltimore, MD
ISSN
1089-3539
Print_ISBN
0-7803-7169-0
Type
conf
DOI
10.1109/TEST.2001.966655
Filename
966655
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