Full Site - : shear testing (Page 2 of 18)

Dage Series 4000 Bondtester

Dage Series 4000 Bondtester

Used SMT Equipment | Semiconductor & Solar

Bondtester by DAGE, in good condition. DAGE Series 4000 Bondtester product information. The 4000 bondtester is multipurpose, capable of performing all pull and shear applications. The 4000 bondtester can be configured as a simple bond wire pull

Fix Trade BV

Advances in Thin, 3D and MEMS Die Bond Strength Testing

Industry News | 2017-08-02 07:12:18.0

As market leader in bond testing, XYZTEC is pushing the technology forward. In this month's newsletter we highlight the recent advances in thin, 3D and MEMS die bond testing. As developments in thin die change the shape of our customers' products, three fundamental difficulties for the bond test have to be overcome:

XYZTEC bv

4000 Series Bond Testers

4000 Series Bond Testers

New Equipment | Test Equipment - Bond Testers

Nordson DAGE is the leading provider of award winning bond testing equipment. The second generation 4000Plus bondtester continues to be the most advanced bondtester on the market whilst the 4000 Optima is optimized for fast, accurate and reliable bon

Nordson DAGE

Circuit Technology Center Commissions New XRF X-ray System

Industry News | 2021-08-13 08:37:00.0

Circuit Technology Center announces that it has recently purchased and commissioned an Oxford 980 X-Strata series XRF (x-ray fluorescence) system to support the testing of electronic components for restricted substances such as lead or tin above specified limits. The system can also verify the coating thickness. Defense base customers often require XRF verification testing of components after components have been processed through lead-free to leaded solder alloy exchange for tin mitigation applications. XRF testing may also be required to verify RoHS compliance of components that have been re-balled or re-processed for lead-free applications. In addition to XRF testing, Circuit Technology Center also supports ionic cleanliness testing, X-ray, Acoustic Microscopy, Solderability, and BGA ball shear testing services.

Circuit Technology Center, Inc.

Winslow Automation (aka Six Sigma)

Industry Directory | Consultant / Service Provider

Winslow Automation has been advancing lead finish and soldering technology for the military and aeropace, telecommunications, medical, and consumer electronics industry since its inception in 1986.

XYZTEC launches Condor Sigma W12 with large heater stage

Industry News | 2016-09-02 03:22:09.0

We present the market leading Condor Sigma W12, equipped with a rotating 13500W 518x513mm heater stage that can uniformly warm up your sample to temperatures up to 175°C. The system is designed for die shear testing on large rectangular glass carriers and 12 inch round carriers, to test glued or solder interconnections on a coating.

XYZTEC bv

XYZTEC bv

Industry Directory | Manufacturer

XYZTEC is the market and technology leader in bond testing worldwide. The Condor Sigma is the most advanced bond tester, providing leading customers with fully automated shear, push and pull testing.

Pad Cratering Susceptibility Testing with Acoustic Emission

Technical Library | 2015-08-13 15:52:40.0

Pad cratering has become more prevalent with the switch to lead free solders and lead free compatible laminates. This mainly is due to the use of higher reflow temperature, stiffer Pb-free solder alloys, and the more brittle Pb-free compatible laminates. However, pad cratering is difficult to detect by monitoring electric resistance since pad cratering initiates before an electrical failure occurs. Several methods have been developed to evaluate laminate materials' resistance to pad cratering. Pad-solder level tests include ball shear, ball pull and pin pull. The detailed methods for ball shear, ball pull, and pin pull testing are documented in an industry standard IPC-9708. Bansal, et al. proposed to use acoustic emission (AE) sensors to detect pad cratering during four-point bend test. Currently there is an industry-working group working on test guidelines for acoustic emission measurement during mechanical testing.

Agilent Technologies, Inc.

Materials Engineer and Lab Supervisor

Career Center | Milpitas, California USA | Clerical,Production,Quality Control,Research and Development,Technical Support

Winslow Automation, Inc. (aka Six Sigma), an industry leader in electronic component interconnect technology & related test and failure analysis services, is seeking a ‘hands on’ Materials Engineer to join our Test services team. This individual wi

Winslow Automation (aka Six Sigma)

Fabrication Of Solderable Intense Pulsed Light Sintered Hybrid Copper For Flexible Conductive Electrodes

Technical Library | 2021-11-03 17:05:39.0

Additively printed circuits provide advantages in reduced waste, rapid prototyping, and versatile flexible substrate choices relative to conventional circuit printing. Copper (Cu) based inks along with intense pulsed light (IPL) sintering can be used in additive circuit printing. However, IPL sintered Cu typically suffer from poor solderability due to high roughness and porosity. To address this, hybrid Cu ink which consists of Cu precursor/nanoparticle was formulated to seed Cu species and fill voids in the sintered structure. Nickel (Ni) electroplating was utilized to further improve surface solderability. Simulations were performed at various electroplating conditions and Cu cathode surface roughness using the multi-physics finite element method. By utilizing a mask during IPL sintering, conductivity was induced in exposed regions; this was utilized to achieve selective Ni-electroplating. Surface morphology and cross section analysis of the electrodes were observed through scanning electron microscopy and a 3D optical profilometer. Energy dispersive X-ray spectroscopy analysis was conducted to investigate changes in surface compositions. ASTM D3359 adhesion testing was performed to examine the adhesion between the electrode and substrate. Solder-electrode shear tests were investigated with a tensile tester to observe the shear strength between solder and electrodes. By utilizing Cu precursors and novel multifaceted approach of IPL sintering, a robust and solderable Ni electroplated conductive Cu printed electrode was achieved.

Hanyang University


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