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Beginners Guide to Electrostatic Discharge ESD

On-Demand Webinars, 2020
ABSTRACT Co-Hosted with SMTA Europe Free for SMTA Members! Overview When handling most of toda’s electronic components, printed circuit assemblies (PCAs) or equipment that contains electronics, special ...
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VEHICLE ELECTROMAGNETIC IMMUNITY—ELECTROSTATIC DISCHARGE (ESD)

2017
<div class="section abstract"> <div class="htmlview paragraph">This SAE Standard specifies the ESD test methods and procedures necessary to evaluate electronic modules intended for vehicle use. It describes test procedures for evaluating electronic modules on the bench as well as for evaluating complete vehicles.</div> <div class=
  +5 more sources

Electrostatic Discharge (ESD) Behavior of p-GaN HEMTs

2020 32nd International Symposium on Power Semiconductor Devices and ICs (ISPSD), 2020
This paper shows the electrostatic discharge (ESD) behavior of p-GaN HEMTs. Based on transmission line pulse (TLP) testing, the ESD characteristics (stressed: drain versus source, drain versus gate, gate versus source, drain to substrate) are comprehensively evaluated, and we found the following results: (1) the gate of p-GaN HEMTs is most prone to ...
Yajie Xin   +13 more
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Electrostatic Discharge (ESD) Damage of Nanoprobes and How to Prevent It

International Symposium for Testing and Failure Analysis, 2022
Abstract Electrostatic discharge (ESD) can easily damage the nanoprobes used in the failure analysis of semiconductor devices. Nanoprobes with tips that have radii of curvature of a few nanometers are especially sensitive to ESD damage, because applying even modest electrical potentials leads to high electrical fields at the tip of the ...
N. T. Anderson, S. P. Lockledge
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A review of electrostatic discharge (ESD) in advanced semiconductor technology

Microelectronics Reliability, 2004
Abstract Electrostatic discharge protection in semiconductors have undergone both revolutionary and evolutionary changes to maintain pace with the rapidly scaling and changing environment of advanced semiconductor technologies. As a result, it is an area of continuous discovery in both semiconductor development, and design.
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Electrostatic Discharge (ESD)

2014
This chapter discusses the effect of external electrostatic discharge (ESD), or induced field and secondary discharges to a product as a part of EMC compliance testing. It includes the following topics: ESD checklist; typical failure modes; trouble shooting at the test laboratory; low-cost testing tools; and typical fixes.
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Design for Electrostatic-Discharge (ESD) Protection in Telecommunications Products

AT&T Technical Journal, 1990
Electrostatic discharge (ESD) can seriously damage electronic devices and affect the operation of the systems that contain them. Today, design for ESD protection has become a critical — and more difficult — consideration because of shrinking device feature sizes, high system operating speeds, factory automation, and the growth of uncontrolled user ...
Terry L. Welsher   +3 more
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Electrostatic Discharge (ESD) and latchup in advanced semiconductors

2007 7th International Conference on ASIC, 2007
This paper focuses on semiconductor device layout and design, design integration, digital receiver design, off-chip drivers, and ESD power clamps. The paper discussed ESD test models (HBM, MM, and CDM), ESD testing techniques, failure mechanisms, and electro-thermal models (eg. Wunsch-Bell). In addition, the section discussed ESD in diodes, and MOSFETs.
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Vehicle Electromagnetic Immunity - Electrostatic Discharge (ESD)

2020
<div class="section abstract"> <div class="htmlview paragraph">This SAE Standard specifies the ESD test methods and procedures necessary to evaluate electronic modules intended for vehicle use. It describes test procedures for evaluating electronic modules in complete vehicles.</div> <div class="htmlview paragraph">A procedure
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Spark-less electrostatic discharge (ESD) on display screens

2015 IEEE International Symposium on Electromagnetic Compatibility (EMC), 2015
An electrostatic discharge (ESD) to a display screen may lead to sparking into the phone's structure, e.g., via the glue that connects the different glass layers of the touching panel/LCD, or it may just cause surface charging. The latter is the most likely case for a well-designed display, as the insulation design usually prevents any sparking to the ...
Atieh Talebzadeh   +4 more
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