Technical Library: smema and tester (Page 1 of 1)

Cable and Harness Manufacturing: Five Qs to ask when selecting a Cable and Harness Tester ...

Technical Library | 2016-03-25 09:38:15.0

Ready to purchase a new tester? Interested in improving productivity & quality? Ask these technical questions of your potential supplier.

CAMI Research Inc.

Cable and Harness Manufacturing: Productivity through Flexibility

Technical Library | 2016-06-06 11:33:17.0

Learn how to choose a cable & harness tester that remains relevant as product design changes in addition to providing fast, reliable, accurate results. See how it can improve productivity even beyond the production floor.

CAMI Research Inc.

Issues and Challenges of Testing Modern Low Voltage Devices with Conventional In-Circuit Testers

Technical Library | 2012-12-14 14:25:37.0

The popularity of low voltage technologies has grown significantly over the last decade as semiconductor device manufacturers have moved to satisfy market demands for more powerful products, smaller packaging, and longer battery life. By shrinking the size of the features they etch into semiconductor dice, IC manufacturers achieve lower costs, while improving speed and building in more functionality. However, this move toward smaller features has lead to lower breakdown voltages and increased opportunities for component overstress and false failures during in-circuit test.

Teradyne

What is an analog signature analyzer and how does it work?

Technical Library | 2020-11-19 20:35:26.0

Simultaneously with the first complex electronic circuits, the task of creating effective means of diagnosing and repairing them appeared. In previous decades, specialized programmable stands were used for diagnostics of serial electronic products, as well as various testers and probes for troubleshooting during their operation. But the dramatic increase in the density / cost factor, in parallel with the very rapid modification of electronic products, made programmable stands economically ineffective even in mass production. The use of traditional laboratory equipment (oscilloscopes, multimeters, etc.) requires power supply to the defective modules, which is often impossible and unsafe, since it can lead to failure of the working modules of the module. In addition, the use of this equipment requires documentation and highly qualified personnel. More automated and sophisticated signature analysis systems came to the rescue in solving this problem. A feature of these devices is that they allow you to test digital and analog assemblies without dismantling components and without supplying voltage.

Engineering Physics Center of MSU

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