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Investigation of the trigger voltage walk-in effect in LDMOS for high-voltage ESD protection
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作者 梁海莲 董树荣 +3 位作者 顾晓峰 钟雷 吴健 于宗光 《Journal of Semiconductors》 EI CAS CSCD 2014年第9期56-59,共4页
The trigger voltage walkin effect has been investigated by designing two different laterally diffused metal-oxide-semiconductor (LDMOS) transistors with an embedded silicon controlled rectifier (SCR). By inserting... The trigger voltage walkin effect has been investigated by designing two different laterally diffused metal-oxide-semiconductor (LDMOS) transistors with an embedded silicon controlled rectifier (SCR). By inserting a P+ implant region along the outer and the inner boundary of the N+ region at the drain side of a conventional LDMOS transistor, we fabricate the LDMOS-SCR and the SCR-LDMOS devices with a different triggering order in a 0.5/zm bipolar-CMOS-DMOS process, respectively. First, we perform transmission line pulse (TLP) and DC-voltage degradation tests on the LDMOS-SCR. Results show that the trigger voltage walk-in effect can be attributed to the gate oxide trap generation and charge trapping. Then, we perform TLP tests on the SCR-LDMOS. Results indicate that the trigger voltage walk-in effect is remarkably reduced. In the SCR-LDMOS, the embedded SCR is triggered earlier than the LDMOS, and the ESD current is mainly discharged by the parasitic SCR structure. The electric potential between the drain and the gate decreases significantly after snapback, leading to decreased impact ionization rates and thus reduced trap generation and charge trapping. Finally, the above explanation of the different trigger voltage walk-in behavior in LDMOS-SCR and SCR-LDMOS devices is confirmed by TCAD simulation. 展开更多
关键词 electrostatic discharge laterally diffused metal-oxide-semiconductor silicon control rectifier triggervoltage walk-in effect
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汽车防盗器辐射抗扰度试验中误报警问题整改
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作者 李红升 刘琳 +3 位作者 韩井玉 吕杨 李井山 向江英 《安全与电磁兼容》 2013年第6期61-62,共2页
分析了汽车防盗报警器在射频电磁场辐射抗扰度试验中误报警的原因,并根据电磁兼容理论和产品的实际情况,介绍了滤波和提高触发电压两种整改方法,并论述了各自的技术实现方法及优缺点。
关键词 汽车防盗报警器 振动传感器 射频电磁场 滤波器 触发电压
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