1. Safarian, Z. and H. Hashemi, "Wideband multi-mode CMOS VCO design using coupled inductors," IEEE Transactions on Circuits and Systems --- I: Regular Papers, Vol. 56, No. 8, 1830-1843, 2009.
doi:10.1109/tcsi.2009.2028414 Google Scholar
2. Lu, J., N.-Y. Wang, and M.-C. F. Chang, "14.6-22.2 GHz LC-VCO in 65 nm CMOS technology for wideband applications," Electronics Letters, Vol. 47, No. 6, 385-386, 2011. Google Scholar
3. Wang, Y.-J., X.-N. Fan, and B. Li, "A 0.18 µm 1 V 5 GHz LC VCO designed for WSN applications," IEEE 11th International Conference on Solid-State and Integrated Circuit Technology (ICSICT), 1-3, Xi'an, China, 2012. Google Scholar
4. Qi, X. and Z. Li, "A low power consumption, low phase noise, and wide tuning range LC VCO with ACC," IEEE 13th International Conference on Communication Technology (ICCT), 1070-1073, 2011.
doi:10.1109/icct.2011.6158045 Google Scholar
5. Tang, X., F. Huang, M. Shao, and Y. Zhang, "A wideband 0.13 µm CMOS LC-VCO for IMT advanced and UWB applications," IEEE MTT-S International Microwave Workshop Series on Millimeter Wave Wireless Technology and Applications (IMWS), 1-4, Nanjing, China, 2012.
doi:10.1088/1674-4926/34/1/015004 Google Scholar
6. Chun, C. H., H. S. Choi, Q. D. Bui, S. Y. Kang, J. Y. Jang, U. B. Lee, I. Y. Oh, and C. S. Park, "Compact wideband LC VCO with active inductor harmonic filtering technique," Electronics Letters, Vol. 47, No. 3, 190-191, 2011.
doi:10.1049/el.2010.3171 Google Scholar
7. Ponton, D., G. Knoblinger, A. Roithmeier, F. Cernoia, M. Tiebout, M. Fulde, and P. Palestri, "LC-VCO in the 3.3- to 4-GHz band implemented in 32-nm low-power CMOS technology," IEEE Transactions on Circuits and Systems --- II: Express Briefs, Vol. 58, No. 8, 467-471, 2011. Google Scholar
8. Lei, X., Z. Wang, and K. Wang, "A wideband low phase noise LC VCO for DRMDAB frequency synthesizer," Journal of Southeast University, Vol. 26, No. 4, 528-531, 2010. Google Scholar
9. Liu, S.-L., K.-H. Chen, and A. Chin, "A dual-resonant mode 10/22-GHz VCO with a novel inductive switching approach," IEEE Transactions on Microwave Theory and Techniques, Vol. 60, No. 7, 2165-2177, 2012. Google Scholar
10. Italia, A., C. M. Ippolito, and G. Palmisano, "A 1-mW 1.13-1.9 GHz CMOS LC VCO using shunt-connected switched-coupled inductors," IEEE Transactions on Circuits and Systems --- I: Regular Papers, Vol. 59, No. 6, 1145-1155, 2012. Google Scholar
11. Craninckx, J. and M. Steyaert, "Low-noise voltage controlled oscillators using enhanced LC tanks," IEEE Transactions on Circuits and Systems --- II: Analog and Digital Signal Processing, Vol. 42, No. 12, 794-804, 1995.
doi:10.1109/82.476177 Google Scholar
12. Hajimiri, A. and T. H. Lee, "Phase noise in CMOS differential LC oscillators," Symposium on VLSI Circuits, 48-51, Honolulu, HI, 1998.
doi:10.1109/vlsic.1998.687999 Google Scholar
13. Rael, J. J. and A. A. Abidi, "Physical processes of phase noise in differential LC oscillators," IEEE Custom Integrated Circuits Conference, 569-572, Orlando, FL, USA, 2000.
doi:10.1109/cicc.2000.852732 Google Scholar