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SwifTest-FOX™
Real-time data enables a variety of yield improvement applications

Statistical software methods can be used to improve quality and reliability of tested parts by rejecting outliers. Outliers are parts that test within the design limits but behave differently than the majority of parts in their lot. Quality experts have known for decades that such devices are most prone to field failure.

While the Automotive Electronics Council (AEC) recommends running dynamic parts average testing (DPAT) at probe for the high quality automotive market, DPAT can produce unnecessary yield losses. Many papers have been published in the industry describing more efficient outlier detection algorithms. See Hakeman diagram.

Following over one year of joint development work with Avago Technologies, Pintail is pleased to announce that SwifTest-FOX incorporates many of the most efficient algorithms for outlier detection and rejection. Furthermore, SwifTest-FOX can be easily programmed by user to incorporate their own proprietary or experimental algorithms.

SwifTest-FOX operates on-line at both probe and final test. It supports three scopes of outlier detection:

Benefits of SwifTest-FOX

  • Maximum effectiveness in finding true outliers
  • Maximum efficiency avoids unnecessary yield loss
  • Advanced Outlier Algorithms
    • DPAT, Robust PAT, Box-plot PAT
    • Adjacent Rank Delta
    • Inter-Percentile Range
    • Single Regression Residual
    • Principal Component Analysis
  • User may easily add personalized algorithms in Java
  • Effective at wafer probe and final test
  • On-line operation is more efficient for test floor operations

Defects Based Testing

Pete O’Neil of Avago describes Defects Based Testing (DBT) as follows:

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