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StratEdge Offers Assembly Services for Die Attachment on CMC Tabs

By: StratEdge Corporation via Business Wire
September 08, 2022 at 08:05 AM EDT

Experts available at BCICTS 2022 and IMAPS 2022 to analyze your high-frequency packaging needs

StratEdge Corporation, leader in the design, production, and assembly of high-frequency and high-power semiconductor packages for RF, microwave, and millimeter-wave devices, announces its assembly services for attaching gallium nitride (GaN) and other high-frequency, high-power devices using gold-tin (AuSn) and gold-silicon (AuSi) onto copper-molybdenum-copper (CMC) tabs. StratEdge's proprietary eutectic die attach method maximizes the power output a chip can achieve, optimizing its performance and providing an efficient way to dissipate heat to avoid overheating and failures during normal operation.

StratEdge uses the latest high-volume automated system in a cleanroom environment to perform eutectic AuSn die attach of compound semiconductor devices that have a backside gold surface finish. The bonder has micron placement accuracy. Solder preforms are matched to the size of the die to reduce solder bond line thickness to less than 6µm, maximizing power output for GaN devices, lowering junction temperatures, and increasing device reliability. For silicon devices, an AuSi eutectic die attach method is used to create a reliable solder joint with excellent thermal dissipation.

“GaN on CMC is perfect for chip-on-board (COB) applications,” said Tim Going, president for StratEdge Corporation. “Of course, we prefer to assemble our customers’ chips into StratEdge packages but we understand why some of our customers want to use boards made from organic materials. The problem with this is organic boards don’t do well when exposed to eutectic die attach temperatures. Eutectic die attach is a highly controlled die attach process that provides void-free, high-reliability, high-accuracy chip attachment. The chip's performance benefits from the superior thermal characteristics of the CMC heat spreader. The chip is attached to the CMC tab before it’s installed onto the board. StratEdge provides the service along with the custom-built CMC tabs, which allows the chip to be placed directly on a copper layer or copper coin within the board.”

Read more in the paper "Eutectic Die Attach Optimizes High Power GaN Devices." Learn how StratEdge's post-fired ceramic package with a CMC base achieves a near void-free attachment that reduces junction temperatures.

StratEdge will be exhibiting at both the 2022 IMAPS Symposium being held in Boston, MA, Oct. 4-5, and IEEE BiCMOS and Compound Semiconductor Integrated Circuits and Technology Symposium (BCICTS) in Phoenix, AZ, Oct. 16-19.

For more information, contact StratEdge at info@stratedge.com, visit our website at www.stratedge.com, or take a Virtual Tour of StratEdge’s newly expanded production facilities at https://youtu.be/ewJuORN5vyQ.

Photo available at: www.stratedge.com/assembly-services-cmc-tabs.png

About StratEdge

StratEdge Corporation, founded in 1992, designs, manufactures and provides assembly services for a complete line of high-frequency and high-power semiconductor packages operating from DC to 63+ GHz. StratEdge offers post-fired ceramic, low-cost molded ceramic, and ceramic QFN packages, and specializes in packages for extremely demanding gallium arsenide (GaAs) and gallium nitride (GaN) devices. Markets served include telecom for 5G, VSAT, broadband wireless, satellite, military, test and measurement, automotive, clean energy, and down-hole. All packages are lead-free and most meet RoHS and WEEE standards. StratEdge is ITAR registered and an ISO 9001:2015 certified facility located in Santee, California, near San Diego.

View source version on businesswire.com: https://www.businesswire.com/news/home/20220908005461/en/

Contacts

Casey Krawiec

StratEdge Corporation

9424 Abraham Way, Santee, CA 92071

Email: c.krawiec@stratedge.com

Phone: +1.858.569.5000

Tricia McGough

TW Marketing (agency)

Email: tricia@twmarketing.net

Phone: +1.254.383.9700

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