EP1149385A1

Ic test software system for mapping logical functional test data of logic integrated circuits to physical representation

Abstract

The present invention, generally speaking, takes advantage of the foregoing capability to determine and display the X,Y location corresponding to a net name, by translating functional test data of a digital logic chip passed through a simulation model which identifies one or more defective nets of the chip. The defective nets are processed against a database of the foregoing type to obtain X,Y coordinate data for these nets, allowing them to be data logged as physical traces on the chip layout. In accordance with an exemplary embodiment, this mapping is performed by taking the output from a functional tester and translating it from a list of failed scan chains into a list of suspected netlist nodes. The X,Y coordinates of suspected netlist nodes are then identified and stored in a database, providing failure analysis and yield enhancement engineers a starting point for performing failure analysis and for immediately understanding whether "in-line" inspection data can account for a given failure. These nodes may then be crossmapped from the circuit design onto the chip's layout for each of multiple photomask layers within the design. Detailed failure data is gathered and stored at the wafer stage as part of a comprehensive program rather than on an as-needed basis at the packaged part stage. A voluminous amount of high-quality data is therefore obtained in an entirely automated fashion, as opposed to obtaining a comparatively minuscule amount of lesser-quality data in an exceedingly laborious fashion.

Term

Term ended

Projected expiry passed 12 November 2019, 6.9 years ago.

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9 claims: 2 independent, 7 dependent

  1. 1
    Claims of equivalent WO 0030119 A1 Claims 1. A method of automated defect localization in the testing of semiconductor integrated circuits, comprising the steps of:testing the integrated circuits to obtain generalized failure data;inputting the generalized failure data to a circuit analysis tool;obtaining from the circuit analysis first localized probable defect data;performing in-line inspection of the integrated circuits to obtain second localized probable defect data;and correlating the first and second localized probable defect data.
  2. 9
    A system for testing semiconductor integrated circuits, comprising:a circuit analysis tool;and means for automatically: applying to the circuit analysis tool generalized failure data;obtaining from the circuit analysis tool localized probable defect data;representing the localized probable defect data in a standard format;and storing the localized probable defect data on a database server accessible to multiple client machines.