Browse > Article

Design of 60 ㎓ Millimeter-Wave Frequency Doubler using Distributed Structure  

Park, Won (Dept. of Electronics of Engineering, University of Incheon)
Lee, Kang-Ho (Dept. of Electronics of Engineering, University of Incheo)
Kim, Sam-Dong (Dept. of Electronics of Engineering, Dongguk University)
Park, Hyung-Moo (Dept. of Electronics of Engineering, Dongguk University)
Rhee, Jin-Koo (Dept. of Electronics of Engineering, Dongguk University)
Koo, Kyung-Heon (Dept. of Electronics of Engineering, University of Incheon)
Publication Information
Abstract
A millimeter-wave distributed frequency doubler has been designed with distributed block and frequency tunable output reflectors. The simulated conversion loss of 9.5 ㏈ to 7.7 ㏈ from 54.6 ㎓ to 62.4 ㎓ output frequencies is achieved with fundamental and third harmonic signal rejections of more than 10 ㏈c. The fabricated chip has the size of 1.2 mm${\times}$1.0 mm. Some measured results of frequency and bias dependent characteristics are presented for the fabricated PHEMT MMIC frequency doubler. The designed doubler has two transistors, and if one of the transistors fails the doubler unit still operates with reduced gain. The failure effect of the PHEMT has been simulated, and compared to the measured data of which one PHEMT is not operating properly.
Keywords
Frequency Multiplication; Monolithic Microwave Integrated Circuit; Distributed Doubler;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 /
[ E. Camargo ] / Design of FET Frequency Multipliers and Harmonic Oscillators
2 A miniature broadband pHEMT MMIC balanced distributed doubler /
[ Kuo-Kiang Deng;Huei Wang ] / IEEE Trans. Microwave and Theory and Tech.   DOI   ScienceOn
3 A high-performance 94-GHz MMIC doubler /
[ S. W. Chen;T. Ho;F. R. Phelleps;J. L. Singer;K. Pande;P. Rice;J. Adair;M. Ghahremani ] / IEEE Microwave Guided Wave Lett.   DOI   ScienceOn
4 RFIC and MMIC Design and Technology /
[ E. D. Robertson;S. Lucyszyn ] / IEE Circuits, Devices and System series 13
5 A 15/60 GHz one-stage MMIC frequency quadrupler /
[ K. Shirakawa;Y. Kawasaki;Y. Ohashi;N. Okubo ] / IEEE Microwave and Millimeter-wave Monolithic Circuit Symp.
6 A monolithic 23.5 to 94 GHz frequency quadrupler using 0.1 m pseudomorphic AlGaAs/InGaAs/GaAs HEMT technology /
[ H. Wang;K. W. Chang;D. C. W. Lo;K. L. Tan;D. Streit;G. S. Dow;B. R. Allen ] / IEEE Microwave Guided Wave Lett.   DOI   ScienceOn
7 A distributed broadband monolithic frequency multiplier /
[ A. M. Pavio;S. D. Bingham;R. H. Halladay;C. A. Sapashe ] / IEEE MTT-S Digest
8 A broadband and miniaturized V-band pHEMT frequency doubler /
[ B. Piernas;H. Hayashi;K. Nishikawa;K. Kamogawa;T. Nakagawa ] / IEEE Microwave Guided Wave Lett.   DOI   ScienceOn
9 Design and fabrication of low-noise amplifier for the V-band /
[ Tae-Sin Kang;Seong-Dae Lee;Bok-Hyoung Lee;Sam-Dong Kim;Hyun-Chang Park;Hyung-Moo Park;Jin-Koo Rhee ] / J. Korean Phys. Soc.
10 /
[ E. Camargo ] / Design of FET Frequency Multipliers and Harmonic Oscillators