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A transparent online memory test for simultaneous detection of functional faults and soft errors in memories

机译:透明的在线内存测试,用于同时检测内存中的功能故障和软错误

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摘要

The Transparent Online Memory Test (TOMT) introduced here has been specifically developed for online testing of word-oriented memories with parity or Hamming protection. Careful interleaving of a word-oriented and a bit-oriented test facilitates a fault coverage and a test duration comparable to the widely used March C- algorithm. Unlike similar methods TOMT actively exercises all bit cells in memory within one test period. Hence it not only detects soft errors but also functional faults and reliably prevents fault accumulation. Different variants of the basic TOMT algorithm are investigated in terms of fault coverage and test time. A prototype implementation for SRAM is introduced which-integrated into a standard processor/memory interface-autonomously performs the transparent online memory test. The trade-offs in terms of hardware overhead and memory access delay caused by this system integration are explored.
机译:这里介绍的透明在线内存测试(TOMT)是专门为具有奇偶校验或汉明保护的面向单词的内存的在线测试而开发的。与广泛使用的March C算法相比,仔细地对面向单词的测试和面向比特的测试进行交织,有助于提高故障覆盖率和测试持续时间。与类似方法不同,TOMT在一个测试周期内主动行使内存中的所有位单元。因此,它不仅可以检测软错误,还可以检测功能故障,并可靠地防止故障累积。在故障覆盖率和测试时间方面研究了基本TOMT算法的不同变体。引入了用于SRAM的原型实现,该实现已集成到标准处理器/内存接口中,并自动执行透明的在线内存测试。探讨了由该系统集成导致的硬件开销和内存访问延迟之间的权衡。

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