Design of Low Phase Noise Frequency Synthesizer for Digital MMDS Downconverter

디지털 MMDS 하향변환기용 저 위상잡음 주파수 합성기의 설계

  • 김영진 (동의대학교 전기전자정보통신공학부)
  • Published : 2002.04.01

Abstract

In this paper, Phase locked microwave oscillator having the low phase noise and high stability for digital MMDS down converter was designed. we have been analyzed the low phase noise properties by the active device nonlinear equivalent circuits and derived the necessary and sufficient conditions for high stable voltage control oscillator. And it is applied to phase locked loop, we design the phase locked microwave oscillator of frequency synthesizer. Experimental results of designed phase locked oscillator shows -85dBc/Hz @ 10KHz phase noise properties and simulation result is -90Bc/Hz @ 10kHz respectively we shows that proposed low phase noise and stable conditions of phase locked microwave oscillator can be applied to design the high stable digital MMDS frequency synthesizer.

본 논문에서는 저 위상잡음과 고안정 특성을 나타내는 디지털 MMDS용 위상고정 발진기를 설계하였으며 전압제어 발진기용 능동소자의 비선형 등가모델에 의하여 저 위상잡음 파라미터와 안정된 전압제어 발진기의 필요충분 조건을 분석하였다. 설계된 전압제어 발진기에 위상고정루프를 적용하여 위상고정 마이크로파 발진기를 구현하였으며 고안정 전압제어 발진기에 대하여 시뮬레이션한 결과 -90dBc/Hz @ 10KHz의 위상잡음을 보였으며 위상고정 마이크로파 발진기에 대한 실험 결과 -85dBc/Hz @ 10KHz의 위상잡음을 얻었다. 고안정도와 저 위상잡음특성을 나타내는 위상고정 마이크로파 발진기의 설계모델을 디지털 MMDS 단말기용 고안정 주파수 합성기로 응용할 수 있음을 보였다.

Keywords

References

  1. M.Nezami,' Guideline dictate the Performance of MMDS Downconverters.' Microwave & RF, Vol.36, No.3 March 1996, pp 58-72
  2. Frank Creede,' Datacasting with LMDS and MMDS Systems.' Applies Microwave & Wireless, Vol.13, No.8 Aug. 2001, pp 36-40
  3. E.Camargo, Design of FET Multipliers and Harmonic Oscillators, Artech House Inc., Boston, 1998, pp 3
  4. Ulrich L. Rohde, 'Feedback technique improves oscillator phase noise' Microwave & RF November 1998, pp 66-70
  5. Robert Nagy, 'Broadband VCO phase noise sensitivity to oscillator circuit parameters' IEEE Instrumentation and Measurement Technology Conference, May 2001, pp 1041-1044
  6. Leeson,' A Simple Mode of Feedback Oscillator Noise Spectrum.' Proc. IEEE, Vol.54, No.2, 1966, pp 329 https://doi.org/10.1109/PROC.1966.4682
  7. Julio C. Costa, Extracting 1/f noise coefficients for BJT's IEEE transactions on electron devices. Vol. 41, No.11, November 1994, pp 1992-1999 https://doi.org/10.1109/16.333816
  8. Aeroflex Comstron, 'A fast switching, low noise, indirect synthesizer' Microwave Journal, March 1999, pp 156-160
  9. Jwo-Shiuu Sun, 'Design and implementation of an L-band PLL frequency synthesizer' Microwave Journal, April 1999, pp 90-102
  10. Marc Zuta, 'A new PLL with fast settling time and low phase noise' Microwave Journal, June 1998, pp 94-108
  11. Jake Goldstein, 'DC, linear AC and nonlinear AC stability analysis using bifurcation and Nyquist theory' Microwave Journal, pp 282-300
  12. Jim Carlini, 'A 2.45GHz low cost, high performance VCO' Microwave Journal, April 2000, pp 22-36
  13. Koji Harada, An S-parameter transmission model approach to VCO analysis RF design, March 1999, pp 33-37
  14. California Eastern Laboratories AN1026 '1/f Noise characteristics influencing phase noise'
  15. Michal Odyniec, 'Oscillator stability analysis' Microwave Journal, June 1999, pp 66-76
  16. Edouard Ngoya, 'Steady stated analysis of free or forced oscillators by harmonic balanced and stability investigation of periodic and Quasi-periodic regimes' International Journal of Microwave and Millimeter Wave Computer Aided Engineering, Vol. 5, No.3, 1995, pp 210-223 https://doi.org/10.1002/mmce.4570050308
  17. ADS, Version 6.0 Agilent 2001