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FAST, LOW AREA SELF-TEST FOR READ-ONLY MEMORY

发明专利审中
20权利要求 · 3 独立
§ Ⅰ

卷宗概要

发明人

Rupesh SINGH; Ankur BAL; Tejas Kumar HOIZAL

IPC 分类

G11C 29/12G11C 29/38G11C 29/46

CPC 分类

G11C29/1201G11C29/38G11C29/46

Methods for performing a fast read-only memory (ROM) test are disclosed. In the first method, a signature is generated by performing a first set of N read operations utilizing an extended read-cycle, followed by a second set of N read operations utilizing an at-speed read-cycle, where N is an integer greater than or equal to 2. The retrieved data is combined using modulo addition and subtraction operations and stored in a signature register. In the second, a signature is generated by performing two read operations utilizing an extended read-cycle, followed by two read operations utilizing an at-speed read-cycle. The retrieved data is combined using exclusive OR (XOR) operations and stored in a signature register. The final signature is compared to a predetermined value to determine if any errors were detected. Both methods provide a robust test capable of detecting various ROM errors while minimizing test time and complexity.

原文(中文)

Methods for performing a fast read-only memory (ROM) test are disclosed. In the first method, a signature is generated by performing a first set of N read operations utilizing an extended read-cycle, followed by a second set of N read operations utilizing an at-speed read-cycle, where N is an integer greater than or equal to 2. The retrieved data is combined using modulo addition and subtraction operations and stored in a signature register. In the second, a signature is generated by performing two read operations utilizing an extended read-cycle, followed by two read operations utilizing an at-speed read-cycle. The retrieved data is combined using exclusive OR (XOR) operations and stored in a signature register. The final signature is compared to a predetermined value to determine if any errors were detected. Both methods provide a robust test capable of detecting various ROM errors while minimizing test time and complexity.