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Active ESD Protection Design for Interface Circuits Between Separated Power Domains Against Cross-Power-Domain ESD Stresses

机译:跨电源域ESD应力的独立电源域之间接口电路的有源ESD保护设计

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摘要

Several complex electrostatic discharge (ESD) failure mechanisms have been found in the interface circuits of an IC product with multiple separated power domains. In this case, the machine-model (MM) ESD robustness cannot achieve 150 V in this IC product with separated power domains, although it can pass the 2-kV human-body-model (HBM) ESD test. The negative-to-VDD (ND) mode MM ESD currents were discharged by circuitous current paths through interface circuits to cause the gate oxide damage, the junction filament, and the contact destruction of the internal transistors. The detailed discharging paths of ND-mode ESD failures were analyzed in this paper. In addition, some ESD protection designs have been illustrated and reviewed to further comprehend the protection strategies for cross-power-domain ESD events. Moreover, one new active ESD protection design for the interface circuits between separated power domains has been proposed and successfully verified in a 0.13-mum CMOS technology. The HBM and MM ESD robustness of the separated- power-domain interface circuits with the proposed active ESD protection design can achieve over 4 kV and 400 V, respectively.
机译:在具有多个分开的电源域的IC产品的接口电路中,发现了几种复杂的静电放电(ESD)故障机制。在这种情况下,尽管该模型产品可以通过2 kV人体模型(HBM)ESD测试,但其模型MM ESD鲁棒性在具有独立电源域的该IC产品中无法达到150V。负至VDD(ND)模式的MM ESD电流由通过接口电路的circuit回电流路径释放,从而导致栅极氧化物损坏,结细丝和内部晶体管的接触破坏。本文分析了ND模式ESD故障的详细放电路径。此外,已经说明和审查了一些ESD保护设计,以进一步理解跨电源域ESD事件的保护策略。此外,已经提出了一种针对分离的电源域之间的接口电路的新的有源ESD保护设计,并已通过0.13um CMOS技术成功进行了验证。带有建议的有源ESD保护设计的分离式电源域接口电路的HBM和MM ESD鲁棒性分别可以达到4 kV和400 V以上。

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