Electrical Insulation Degradation & Conduction Reliability Evaluation
Do you evaluate products’ electrical insulation degradation and conduction reliability?
The COVID-19 pandemic that is caused by the coronavirus SARS-CoV-2 has accelerated digital transformation of technologies all over the world. For all those who develop, research, manufacture and related to Tech Products such as 5G phones, laptops, tablets, desktops, electric cars, smart home and medical appliances, audio, cameras, drones, earphones, headphones, speakers, monitors, printers, TVs, wearables, fitness and health trackers, AR, VR, SHINYEI suggests the ETAC automatic measurement systems of the Electrical Insulation Degradation Evaluation System SIR13 and the Conduction Reliability Evaluation System MLR23.
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Electrical Insulation Degradation Evaluation System SIR13
The "SIR series", automatic measurement system was first developed in Japan in 1994. The dedicated SMU measurement board enables simultaneous measurement of Electro-Chemical Ion Migration Evaluation, Electrical Insulation Characteristics Evaluation, Leakage Current Evaluation under high voltage with the highest level of accuracy.
✔ Simultaneous Measurement of Max. 128 Multi-Channels.
✔ Interval 20msec at All The Channels.
✔ Applied Voltage Up-to 1kV *to be discussed in case over 1kV.
✔ Different Applied Voltage is Selectable Per Channel.
Electrical Conduction Reliability Evaluation System MLR23
The MLR23 is the fastest measurement system in this industry, supporting high-speed temperature cycles, contributing to a significant reduction in test time. The best suited for Solder Joint Reliability Evaluation, Through-Hole Evaluation, and Mounted Device Conduction Reliability Evaluation.
✔ Max 288 Multi-Channels with the Scanner Circuit.
✔ High Speed Mode 10msec, High Accuracy Mode 200msec
✔ Both AC / DC Measurement are Available
✔ AC Resistance: 2mΩ / 20mΩ / 200mΩ / 2Ω / 20Ω / 200Ω / 2kΩ
✔ DC Resistance: 200mΩ / 2Ω / 20Ω / 200Ω / 2kΩ / 20kΩ / 200kΩ
✔ Both Temperature and Humidity Cycle are Available