DocumentCode
1515188
Title
Test generation for iterative logic arrays based on an N -cube of cell states model
Author
Chatterjee, Abhijit ; Abraham, Jacob A.
Author_Institution
Gen. Electr. Res. & Dev. Center, Schenectady, NY, USA
Volume
40
Issue
10
fYear
1991
fDate
10/1/1991 12:00:00 AM
Firstpage
1133
Lastpage
1148
Abstract
The authors present a novel approach to the test generation problem for a more general class of two-dimensional iterative logic arrays (ILAs) than considered by previous researchers. For certain ILAs it is possible to find a test set whose size remains fixed irrespective of the size of the ILA, while for others it varies with array size. Given an arbitrary ILA cell truth table and a cell interconnection structure, the goal is to determine if a fixed-size test can be found. If not, then a test set whose size grows as slowly as possible with the size of the array should be found. The authors propose a new model, called the n -cube of cell states model, for representing the cell truth table and interconnection structure. The test generation problem is shown to be related to certain properties of cycles in a set of graphs obtained from this model. By careful analysis of these cycles, efficient testing schedules can be obtained. The proposed technique can be applied to unilateral as well as regular bilateral ILAs in which the bilateral direction of signal flow are restricted to lie along the horizontal axis
Keywords
automatic testing; integrated circuit testing; logic arrays; logic testing; ILA cell truth table; N-cube; bilateral direction; cell interconnection structure; cell states model; graphs; horizontal axis; signal flow; test generation; test set; two-dimensional iterative logic arrays; Circuit testing; Helium; Integrated circuit interconnections; Jacobian matrices; Logic arrays; Logic testing; Programmable logic arrays; Scheduling; Two dimensional displays; Very large scale integration;
fLanguage
English
Journal_Title
Computers, IEEE Transactions on
Publisher
ieee
ISSN
0018-9340
Type
jour
DOI
10.1109/12.93746
Filename
93746
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