Title :
Power Combining Tunnel Diode Oscillators using Metamaterial Transmission Line at Infinite Wavelength Frequency
Author :
Dupuy, Alexandre ; Leong, Kevin M K H ; Itoh, Tatsuo
Author_Institution :
Dept. of Electr. Eng., California Univ., Los Angeles, CA
Abstract :
This paper presents power combining methods for tunnel diode oscillators using the infinite wavelength phenomenon observed in composite right/left-handed (CRLH) metamaterial lines. At this frequency, the electrical length of the transmission line is zero degrees corresponding to an infinitely long wavelength. The first combining scheme uses a series combiner composed of zero degree lines. Each oscillator output port is connected directly to the line and combined in-phase. This circuit is able to equally combine the power in phase regardless of the position and the number of ports along the CRLH transmission line (TL). It is also possible to mode lock the different oscillating modes together through nonlinear interactions among the mode fields (York and Compton, 1991). In the second approach a section of zero degree transmission line was used to implement a stationary wave resonator where the wave amplitude and phase are constant along the line. In this case the oscillators are loosely coupled to the resonator. The resonant characteristics are used to reduce the combine oscillator phase noise. A maximum power combining efficiency of 131% is obtained with the zeroth order resonator with 2 tunnel diodes oscillators at 2 GHz
Keywords :
UHF oscillators; metamaterials; power combiners; transmission lines; tunnel diode oscillators; 2 GHz; CRLH; combine oscillator phase noise; composite right/left-handed metamaterial lines; infinite wavelength frequency; metamaterial transmission line; mode locking; power combiner; series combiner; stationary wave resonator; tunnel diode oscillators; zero degree transmission line; Couplings; Diodes; Distributed parameter circuits; Filtering theory; Frequency; Laser mode locking; Metamaterials; Oscillators; Power transmission lines; Resonance; Power combiner; metamaterial; oscillator; resonator;
Conference_Titel :
Microwave Symposium Digest, 2006. IEEE MTT-S International
Conference_Location :
San Francisco, CA
Print_ISBN :
0-7803-9541-7
Electronic_ISBN :
0149-645X
DOI :
10.1109/MWSYM.2006.249761