Technical Library: bed of nails (Page 1 of 1)

Using JTAG Emulation for Board-Level Functional Test Demanding Test

Technical Library | 2010-09-02 13:13:03.0

As chip packaging and interconnectivity have become more dense and operate at higher clock frequencies, physical access for traditional bed-of-nails testing becomes limited. This results in loss of ICT (in-circuit test) fault coverage and higher test fi

Corelis Inc

Comparing Costs and ROI of AOI and AXI

Technical Library | 2013-08-07 21:52:15.0

PCB architectures have continued their steep trend toward greater complexities and higher component densities. For quality control managers and test technicians, the consequence is significant. Their ability to electrically test these products is compounded with each new generation. Probe access to high density boards loaded with micro BGAs using a conventional in-circuit (bed-of-nails) test system is greatly reduced. The challenges and complexity of creating a comprehensive functional test program have all but assured that functional test will not fill the widening gap. This explains why sales of automated-optical and automated X-ray inspection (AOI and AXI) equipment have dramatically risen...

Teradyne

How to choose the plug of anti static IC tube and its material

Technical Library | 2019-05-09 05:40:52.0

When the anti static ic tube is produced, it is empty at both ends. Therefore, before and after the electronic components are loaded into the plastic tube, the IC hoses need to be blocked at both ends. Generally, there are plastic nails and rubber stoppers.

Shenzhen Sewate Technology Co.,Ltd

Approaches for additive manufacturing of 3D electronic applications

Technical Library | 2020-09-16 21:24:56.0

Additive manufacturing processes typically used for mechanical parts can be combined with enhanced technologies for electronics production to enable a highly flexible manufacturing of personalized 3D electronic devices. To illustrate different approaches for implementing electrical and electronic functionality, conductive paths and electronic components were embedded in a powder bed printed substrate using an enhanced 3D printer. In addition, a modified Aerosol Jet printing process and assembly technologies adapted from the technology of Molded Interconnect Devices were applied to print circuit patterns and to electrically interconnect components on the surface of the 3D substrates.

Institute for Factory Automation and Production Systems (FAPS)

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