Title :
Design of A Push-Push and Push-Pull Oscillator Based on SIW/SICL Technique
Author :
Zhe Chen ; Wei Hong ; Jixin Chen ; Linsheng Li
Author_Institution :
State Key Lab. of Millimeter Waves, Southeast Univ., Nanjing, China
Abstract :
In this letter, the design of a Push-Push and Push-Pull oscillator based on substrate integrated waveguide (SIW) and substrate integrated coaxial line (SICL) technique is presented. Differential-phase lock of the sub-oscillators is realized with the SIW cavity at fundamental TE110 mode, thus simplifying the oscillator design procedure. Based on the SIW and SICL technique, a broadband magic-T is utilized for combining the desired signal and cancelling the undesired signal for both Push-Push and Push-Pull output. The prototype of the Push-Push and Push-Pull oscillator is designed and fabricated. Measured results show that the proposed oscillator has f0 suppression of -13.1 dBc at the Push-Push port, and 2f0 suppression of -24.3 dBc at the Push-Pull port. Compared with the conventional single oscillator, the phase noise is improved by 2.5 ~ 3.2 dB at 100 kHz through 1 MHz offset for the desired f0 and 2f0 output signals.
Keywords :
oscillators; phase noise; substrate integrated waveguides; SIW cavity; SIW/SICL technique; broadband magic-T; differential-phase lock; phase noise; push-pull oscillator; push-push oscillator; substrate integrated coaxial line technique; substrate integrated waveguide; Broadband communication; Cavity resonators; Phase noise; Ports (Computers); Substrates; Wireless communication; Oscillator; push-pull; push-push; substrate integrated coaxial line (SICL); substrate integrated waveguide (SIW);
Journal_Title :
Microwave and Wireless Components Letters, IEEE
DOI :
10.1109/LMWC.2014.2310476