DocumentCode
2628706
Title
Study, design and fabrication of a L-band, high-power transmitter system using a combination method
Author
Dang Thi Thanh Thuy ; Vu Tuan Anh ; Bach Gia Duong
Author_Institution
Fac. of Phys., Vietnam Nat. Univ. Hanoi, Thanh Xuan, Vietnam
fYear
2009
fDate
12-14 Oct. 2009
Firstpage
175
Lastpage
178
Abstract
This paper deals with the results of the study, design and fabrication of a L-band, high power transmitter system for a purpose of application in the national sovereignty identification coding system. As known, it is usually difficult to build a high power transmitter system from the low power components by combination technique. Here we present a design and fabrication of such a system by combination of components which amplify signals from 1 W to 45 W, and then to 200 W. The 200 W power amplifier is a module which combines power to the theoretical value. We utilized the Hybrid and Wilkinson bridges as the combination logics. The studies were carried out along with the simulink-study by Ansolf and ADS software for design and fabrication of logic circuits. The obtained results showed that the method is suitable for application in the national sovereignty identification coding system in Vietnam.
Keywords
air traffic control; logic circuits; logic design; low-power electronics; microwave power amplifiers; radio transmitters; ADS software; Ansolf simulink-study; combination method; high-power transmitter system; hybrid Wilkinson bridge; logic circuit design; logic circuit fabrication; low power components; national sovereignty identification coding system; power 1 W; power 200 W; power 45 W; power amplifier; Bridge circuits; Control systems; Educational institutions; Fabrication; High power amplifiers; L-band; Microwave circuits; Power amplifiers; Space technology; Transmitters; Hybrid; Wilkinson; power combination…;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Technologies for Communications, 2009. ATC '09. International Conference on
Conference_Location
Hai Phong
Print_ISBN
978-1-4244-5139-5
Type
conf
DOI
10.1109/ATC.2009.5349580
Filename
5349580
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