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Realistic FDTD Modeling of Contact Discharge with ESD-Gun for Electrostatic Discharge Testing

机译:用于静电放电测试的带有ESD枪的接触放电的真实FDTD建模

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ESD (Electrostatic discharge) testing is becoming an indispensable item to test the immunity of electronic and information equipment. In taking effective ESD countermeasure in the early design stage of electronic products, a computer simulation technique for the ESD testing is being desired as a useful and powerful tool. From this perspective, we previously developed a finite-difference time-domain (FDTD) proto-type model for simulating the contact discharge of a commercially available ESD-gun with specification of the IEC61000-4-2 standard, and validated its effectiveness for the contact discharge to a 50-Ohm SMA connector, although only the simple skeleton structure of the ESD-gun was numerically modeled in the proto-type. In the present study, we improved the previous FDTD modeling to realize a more realistic ESD-gun for accurate simulation, and examined the effects of the structure modeling and the plastic covering used in the gun on ESD simulation. As a result, we found that the precise structure modeling of the ESD-gun gives good agreement of the contact discharge simulation with the measurement, while the covering does not almost affect the simulation. With the improved FDTD model, we then simulated an ESD testing for a printed circuit board (PCB) with the same sized metal surface on the back. A 50-Ohm micro-strip line fabricated on each of the PCB was modeled, and was excited in contact to the sending end with the ESD-gun. We found that there is good agreement between the simulation and the measurement for the induced voltages appearing in the receiving end of the micro-strip line.
机译:ESD(静电放电)测试已成为测试电子和信息设备抗扰性的必不可少的项目。为了在电子产品的早期设计阶段采取有效的ESD对策,人们希望将一种用于ESD测试的计算机仿真技术作为一种有用且功能强大的工具。从这个角度出发,我们先前开发了一种有限差分时域(FDTD)原型模型,用于模拟符合IEC61000-4-2标准的市售ESD喷枪的接触放电,并验证了其对测试的有效性。接触放电至50欧姆SMA连接器,尽管仅在原型中对ESD喷枪的简单骨架结构进行了数值建模。在本研究中,我们改进了先前的FDTD模型,以实现更逼真的ESD喷枪,以进行准确的仿真,并研究了结构建模和喷枪中使用的塑料覆盖物对ESD仿真的影响。结果,我们发现,ESD枪的精确结构建模使接触放电模拟与测量结果很好地吻合,而覆盖物几乎不会影响模拟。利用改进的FDTD模型,我们然后对背面具有相同尺寸金属表面的印刷电路板(PCB)进行了ESD测试仿真。对在每个PCB上制造的50欧姆微带线进行了建模,并用ESD喷枪激发了与发送端的接触。我们发现,在微带线接收端出现的感应电压的仿真与测量之间有很好的一致性。

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