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Design of silicon-controlled rectifier by considering electrostatic discharge robustness in human-body model and charged-device model devices
Design of silicon-controlled rectifier by considering electrostatic discharge robustness in human-body model and charged-device model devices
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机译:考虑人体模型和带电装置模型设备中的静电放电鲁棒性的可控硅设计
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摘要
A silicon-controlled rectifier apparatus, comprising a substrate upon which a low-voltage triggered silicon-controlled rectifier is configured. A plurality of triggering components (e.g., NMOS fingers) are formed upon the substrate and integrated with the low-voltage triggered silicon-controlled rectifier, wherein the plurality of triggering components are inserted into the low-voltage triggered silicon-controlled rectifier in order to permit the low-voltage triggered silicon-controlled rectifier to protect against electrostatic discharge during human-body model and charged-device model stress events.
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