Full Site - : matte tin mitigation (Page 5 of 21)

FPC--Flexible PCB

FPC--Flexible PCB

New Equipment | Assembly Services

TW-FPC--Flexible PCB 0187 Price: Get Latest Price Minimum Order Quantity: 10 Unit/Units other Port: HK Packaging Details: blister and package Delivery Time: 1 week Payment Terms: L/C,D/P,T/T,Western Union Supply Ability: 5000000 Unit/Units p

TW Technology Limited

Flex-Rigid PCB

Flex-Rigid PCB

New Equipment | Assembly Services

TW-Flex-Rigid PCB 0156 Price: Get Latest Price Minimum Order Quantity: 10 Unit/Units other Port: HK Packaging Details: blister and package Delivery Time: 1 week Payment Terms: L/C,D/P,T/T,Western Union Supply Ability: 5000000 Unit/Units per

TW Technology Limited

HDI PCB

HDI PCB

New Equipment | Assembly Services

TW-HDI PCB 0245 Price: Get Latest Price Minimum Order Quantity: 10 Unit/Units other Port: HK Packaging Details: blister and package Delivery Time: 1 week Payment Terms: L/C,D/P,T/T,Western Union Supply Ability: 5000000 Unit/Units per Year o

TW Technology Limited

Mitigation of Pure Tin Risk by Tin-Lead SMT Reflow- Results of an Industry Round-Robin

Technical Library | 2017-10-12 15:45:25.0

The risk associated with whisker growth from pure tin solderable terminations is fully mitigated when all of the pure tin is dissolved into tin-lead solder during SMT reflow. In order to take full advantage of this phenomenon, it is necessary to understand the conditions under which such coverage can be assured. A round robin study has been performed by IPC Task group 8-81f, during which identical sets of test vehicles were assembled at multiple locations, in accordance with IPC J-STD-001, Class 3. All of the test vehicles were analyzed to determine the extent of complete tin dissolution on a variety of component types. Results of this study are presented together with relevant conclusions and recommendations to guide high reliability end-users on the applicability and limitations of this mitigation strategy.

Raytheon

Effects of Tin and Copper Nanotexturization on Tin Whisker Formation

Technical Library | 2012-08-16 22:38:05.0

First published in the 2012 IPC APEX EXPO technical conference proceedings. The physical mechanisms behind tin whisker formation in pure tin (Sn) films continue to elude the microelectronics industry. Despite modest advances in whisker mitigation techniqu

Johns Hopkins Applied Physics Laboratory

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.

Strategies To Mitigate The Tin Whisker Phenomenon

Technical Library | 2023-02-13 19:04:25.0

The tin whisker phenomenon is a failure mode associated with all electronic devices that use a number of low melting point elements (e.g., Sn, Cd, In) in operations such as soldering. Recognized many years ago, the problem was minimized by adding lead, now identified as a hazardous substance and banned

Vicor Corporation

Tin Whisker Risk Management by Conformal Coating

Technical Library | 2015-10-22 17:37:28.0

The objective of this study is to evaluate conformal coatings for mitigation of tin whisker growth. The conformal coatings chosen for the experiment are acrylic, polyurethane and parylene. Also included in this paper are tin whisker inspection results of tin-plated braiding and wire that was exposed to an environment of 50°C with 50% relative humidity for over five years.

Lockheed Martin Corporation

Tin Whisker Risk Mitigation for High-Reliability Systems Integrators and Designers

Technical Library | 2015-06-04 19:10:47.0

Integrators and designers of high-reliability systems exert little or no control over component-level plating processes that affect the propensity for tin whiskering. Challenges of how to assure long-term reliability, while continuing to use COTS parts plated with pure tin, continue to arise. An integrated, quantitative, standardized methodology is proposed whereby mitigation levels can be selected that are appropriate for specific applications of pure tin for given end-uses. A system of hardware end-use classification is proposed, together with recommended appropriate risk mitigation approaches. An updated version of the application-specific risk assessment algorithm is presented together with recommended thresholds for acceptability within the context of the hardware classifications.

Raytheon

Tintronics Industries

Industry Directory |

We Offer: Robotic and semi-automatic hot solder dipping, Precision lead forming of critical devices, Tape-and-reel packaging, State-of-the-art Ball Grid Array (BGA) reflow process


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