DocumentCode :
3216876
Title :
High frequency solid state devices [microwave and mm-wave devices]
Author :
Trew, R.J.
Author_Institution :
Dept. of Electr. & Comput. Eng., North Carolina State Univ., Raleigh, NC, USA
fYear :
2004
fDate :
27-29 April 2004
Firstpage :
10
Lastpage :
11
Abstract :
In this paper are described solid state devices which have wide applications as RF sources and amplifiers in microwave and millimeter-wave systems. Active devices can be fabricated using a variety of diode and transistor structures, and these devices are widely used in a variety of commercial and military applications. Device development has been closely linked to advances in semiconductor materials growth and processing technology and many devices for mm-wave application are only possible due to the precise nanoscale dimension control afforded by advanced materials growth technology, such as molecular-beam epitaxy (MBE) and organo-metallic chemical vapor deposition (OMCVD). Fine line lithography techniques, such as electron-beam lithography, permit the definition of nanoscale device dimensions. Advanced materials technology has also provided the ability to fabricate heterostructures that permit the advantages of multiple material layers to be optimized for device applications. High performance diodes and transistors are now available for use from UHF into the mm-wave spectrum, approaching THz frequencies.
Keywords :
microwave diodes; microwave generation; microwave transistors; millimetre wave diodes; millimetre wave generation; millimetre wave transistors; MBE; OMCVD; RF amplifiers; RF sources; diode structures; electron-beam lithography; fine line lithography; high frequency solid state devices; microwave systems; millimeter-wave systems; molecular-beam epitaxy; multiple material layer heterostructures; nanoscale dimension control; organo-metallic chemical vapor deposition; semiconductor materials growth technology; semiconductor processing technology; transistor structures; Chemical technology; Frequency; Lithography; Microwave devices; Molecular beam epitaxial growth; Nanoscale devices; Semiconductor diodes; Semiconductor materials; Solid state circuits; Transistors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vacuum Electronics Conference, 2004. IVEC 2004. Fifth IEEE International
Print_ISBN :
0-7803-8261-7
Type :
conf
DOI :
10.1109/IVELEC.2004.1316172
Filename :
1316172
Link To Document :
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