Title :
100W GaN PA in low cost 3×6mm plastic DFN package providing the smallest “true SMT” footprint for pulse RADAR applications
Author :
YuanFei Cen ; McCann, D.
Author_Institution :
M/A-COM Technol. Solutions, Long Beach, CA, USA
Abstract :
In this paper we report on the first reported use of high power GaN PA´s in low cost plastic 3×6mm DFN packages for true SMT insertion in pulse RADAR applications. The individual plastic packaged GaN PA´s are intended for broadband use in pulsed mode of operation and powers levels of 100W through S-Band, representing the smallest size true SMT GaN packages at this power level ever reported. The paper will describe in detail the obstacles to be overcome before GaN devices can be used in traditional high volume COTS manufacturing environments and the advantages over traditional packaging approaches currently available in the marketplace. Transient and average thermal measurements under power will be provided. The authors believe this to be a first for GaN devices packaged to this power level that makes use of existing plastic packaging techniques available in subcontract manufacturing facilities without compromising performance or reliability while reducing cost and size of the final application solution.
Keywords :
III-V semiconductors; UHF power amplifiers; gallium compounds; plastic packaging; radar; surface mount technology; wide band gap semiconductors; GaN; S-band; average thermal measurements; cost reduction; frequency 2.7 GHz to 2.9 GHz; high power PA; high volume COTS manufacturing environments; low cost plastic DFN packages; plastic packaging techniques; power 100 W; pulse radar applications; subcontract manufacturing facility; transient thermal measurements; true SMT footprint; Fingers; Gallium nitride; Logic gates; Performance evaluation; Plastics; Temperature measurement; Transient analysis; COTS; DFN; GaN; Plastic; Power Amplifiers; RADAR; SATCOM; SiC; TDMA;
Conference_Titel :
Microwave Integrated Circuits Conference (EuMIC), 2012 7th European
Conference_Location :
Amsterdam
Print_ISBN :
978-1-4673-2302-4
Electronic_ISBN :
978-2-87487-026-2