Analysis of electrostatic discharges events in TMR and HGA levels

Wannita Photiwara, R. Silapunt
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引用次数: 1

Abstract

Electrostatic discharges (ESD) in the tunneling magnetoresistive (TMR) head and head gimbal assembly (HGA) levels are investigated. The quasi static testing (QST) on 40 HGA samples suggests the machine as a more aggressive ESD source than human. The average failure ESD voltage measured by the machine model (MM) is 0.78 V, lower than 1.94 V obtained by the human body model (HBM). This may well be understood by the higher failure current and higher energy drop in the TMR observed from the MM. The ESD equivalent circuits are then adjusted and modeled to generate the overdamped current profiles with similar peak currents to those obtained from the QST. The ESD simulation is further extended to the HGA level. It is found that the peak ESD currents are smaller than those in the TMR level. By a linear curve extrapolation, the predicted maximum ESD failure voltages are 0.95 V and 4.15 V for MM and HBM, respectively.
静电放电事件在TMR和HGA水平的分析
研究了隧道磁阻(TMR)磁头和磁头云台组件(HGA)水平的静电放电(ESD)。对40个HGA样品的准静态测试(QST)表明,机器是比人类更具侵略性的ESD源。机器模型(MM)测得的平均故障ESD电压为0.78 V,低于人体模型(HBM)测得的1.94 V。从MM观察到的更高的失效电流和更高的能量下降可以很好地理解这一点。然后对ESD等效电路进行调整和建模,以产生与从QST获得的峰值电流相似的过阻尼电流分布图。ESD仿真进一步扩展到HGA级。结果表明,静电放电的峰值电流小于TMR水平的峰值电流。通过线性曲线外推,预测MM和HBM的最大ESD失效电压分别为0.95 V和4.15 V。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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