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Charge-sharing alleviation and detection for CMOS domino circuits

机译:CMOS多米诺骨牌电路的电荷共享缓解和检测

摘要

[[abstract]]Charge sharing, which occurs in any complementary metal-oxide-semiconductor (CMOS) domino gate, may degrade the output voltage level or may even cause an erroneous output value. In this paper, this problem is thoroughly investigated by considering circuit topology and circuit function. We describe a method to measure the sensitivity [called charge-sharing (CS) vulnerability] of the CS problem for each domino gate. A method to derive the CS vulnerability and the test vector for each domino gate is suggested. We also propose a transistor reordering method to dramatically reduce the CS vulnerabilities for all domino gates so that the CS problem can be alleviated. We also prove theoretically that a set of test vectors generated for single charge-sharing faults (SCSFs) can also detect all multiple charge-sharing faults (MCSFs). This good property significantly guarantees the test quality for the CS faults of domino circuits.
机译:[[摘要]]在任何互补金属氧化物半导体(CMOS)多米诺骨牌栅极中发生的电荷共享可能会降低输出电压水平,甚至可能导致错误的输出值。在本文中,通过考虑电路拓扑和电路功能来彻底研究此问题。我们描述了一种方法,用于测量每个多米诺骨牌门CS问题的敏感度(称为电荷共享(CS)漏洞)。建议了一种推导CS漏洞和每个多米诺骨牌测试矢量的方法。我们还提出了一种晶体管重新排序方法,以显着减少所有多米诺骨牌门的CS漏洞,从而可以缓解CS问题。我们还从理论上证明,为单个电荷共享故障(SCSF)生成的一组测试向量也可以检测所有多个电荷共享故障(MCSF)。这种良好的性能极大地保证了多米诺骨牌电路CS故障的测试质量。

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