Title :
TRAM: a design methodology for high-performance, easily testable, multimegabit RAMs
Author :
Jarwala, Najmi T. ; Pradhan, Dhiraj K.
Author_Institution :
Dept. of Electr. & Comput. Eng., Massachusetts Univ., Amherst, MA, USA
fDate :
10/1/1988 12:00:00 AM
Abstract :
An architecture is proposed for multimegabit dynamic RAMs (random-access memories) that achieves higher testability and performance than the conventional four-quadrant RAMs. Applying the principle of divide and conquer, the RAM is partitioned into modules, each appearing as the leaf node of a binary interconnect network. Such a network carries the address/data/control bus, permitting the nodes to communicate among themselves as well as with the outside world. This architecture is shown to be easily testable. Parallelism in testing and partial self-test result in a large savings of testing time; the savings is independent of the test algorithm used. Unlike other testability schemes, this approach promises improved performance with only a small increase in chip area. It is also shown that the architecture is easily partionable and restructurable, with potential for yield and reliability improvement
Keywords :
integrated memory circuits; random-access storage; TRAM; design methodology; high-performance; multimegabit dynamic RAMs; performance; reliability; testability; yield; Automatic testing; Charge transfer; Degradation; Design for testability; Design methodology; Failure analysis; Partitioning algorithms; Random access memory; Read-write memory; Very large scale integration;
Journal_Title :
Computers, IEEE Transactions on