SC-305 is a two-component silicone system for LED lighting power-supply encapsulation. It can be room temperature or heat cured for maximum adhesion, and offers low stress, high thermal conductivity, and environmental resistance. The addition-curing polymer will not depolymerize when heated in confined spaces and meets UL 94 V-O requirements for flame retardancy.
Lord Corp.
Cary, NC
www.lord.com
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PRESS RELEASE
LORD CORPORATION DEVELOPS THERMALLY CONDUCTIVE SILICONE ENCAPSULANT
(Cary, NC – Dec. 9, 2010) LORD Corporation ¾ a leading supplier of thermal management materials, adhesives, coatings and encapsulants to the electronics, LED and solar industries ¾ has announced the availability of a new thermally conductive silicone encapsulant.
Designed for encapsulation applications where high heat dissipation is required, LORD SC-305 is a two-component silicone system. Ideally suited for LED lighting power supply encapsulation, LORD SC-305 can be room temperature or heat cured for maximum adhesion. Benefits of the encapsulant include low stress, high thermal conductivity and superior environmental resistance.
Composed of an addition-curing polymer that will not depolymerize when heated in confined spaces, the silicone encapsulant is a durable solution. LORD SC-305 also meets the requirements of UL 94 V-O, providing excellent flame retardancy. Further, the three-step application process involving mixing, applying and curing is user-friendly, making LORD SC-305 an ideal solution for encapsulation.
According to Adam Conklin, Global Market Manager at LORD Corporation, LORD SC-305 was developed to meet the needs of customers requiring a high performance thermally conductive encapsulant at a cost that allows them to be competitive in their respective industries. It allows manufacturers of electronic components to address the continued pressure to reduce costs commonly encountered in the industry, he said, without sacrificing performance.
“LORD SC-305 builds on a long history of innovation and technical leadership in silicone, urethane and epoxy encapsulant formulation at LORD,” said Conklin. “We have expanded our encapsulant solution portfolio by developing a cost-effective, thermally conductive encapsulant suitable for demanding applications including power supplies and control modules. In addition,
LORD SC-305 represents the first product developed and manufactured by our Technology, Operations and Sales and Marketing teams based in Shanghai, China. LORD China and the broader Asia-Pacific team will continue to be a source of innovation in electronic materials in the coming years.”
More information on LORD SC-305 can be found at http://www.lord.com/electronicmaterials. Additional information can be obtained by contacting LORD Corporation by e-mail at [email protected] or by phone at +1 877 ASK LORD (275 5673).
About LORD Corporation
With global reach and extensive technical capabilities, LORD has the ability to work on complex formulations, balancing contradictory property and process requirements to deliver the solutions that meet customer and market demands. For the electronics industry, LORD serves as a diversified technology company providing high value-added materials to niche markets. LORD builds on its more than 80 year history with a track record of successful long-term partnerships with technology leaders in industries ranging from aerospace to automotive, electronics to industrial heavy equipment.
Founded in 1924, LORD Corporation is a privately-held company that designs, manufactures and markets mechanical devices and electromechanical systems to control vibration, motion and noise; formulates, produces and sells general purpose and specialty adhesives, coatings and electronic materials; and develops products and systems utilizing magnetically responsive technologies. With headquarters in Cary, N.C., and sales in excess of $610MM, LORD has manufacturing in nine countries and offices in more than 15 major business centers. LORD Corporation employs more than 2,400 worldwide. Visit www.lord.com for more information.
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Posted by Lee Mather
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