參考文獻 |
[1] H. Hashemi, “Integrated Concurrent multi-band radios and multiple-antenna systems,” Ph.D. dissertation, California Inst. Technol., Pasadena, 2003.
[2] Z. Safarian and H. Hashemi, “Wideband multi-mode CMOS VCO design using coupled inductors,” IEEE Trans. Circuits Syst. I, Reg. Papers, vol. 56, no. 8, pp. 1830–1843, Aug. 2009.
[3] C.-I. Chien, Y.-C. Wang, K.-H. Chien, and H.-K. Chiou, “A low power, wide bandwidth k-band transformer feedback low noise amplifier with current-reused topology, ” Microwave Conference (APMC), 2014 Asia-Pacific , vol., no., pp.417,419, 4-7 Nov. 2014
[4] K. Kwok and H. C. Luong, “Ultra-low-voltage high-performance CMOS VCOs using transformer feedback,” IEEE J. Solid-State Circuits, vol. 40, no. 3, pp. 652–660, Mar. 2005.
[5] H.-Y. Chang and Y.-T. Chiu, “K-band CMOS differential and quadrature voltage-controlled oscillators for low phase-noise and low-power applications,” IEEE Trans. Microw. Theory Tech., vol. 60, no. 1, pp. 46–59, Jan. 2012.
[6] J. R. Long, “Monolithic transformers for silicon RFIC design,” IEEE J. Solid-State Circuits, vol. 35, no. 9, pp. 1368–1382, Sep. 2000.
[7] X. Yu, A. El-Gouhary, N.M., Neihart “ A Transformer-Based Dual-Coupled Triple-Mode CMOS LC-VCO, ” IEEE Trans. Microw. Theory Tech., vol.62, no.9, pp.2059,2070, Sep. 2014
[8] J. Yin and H. C. Luong, “A 57.5-to-90.1 GHz magnetically-tuned multi-mode CMOS VCO,” in Proc. CICC, 2012, pp. 1–4.
[9] A.W.L. Ng and H.-C. Luong, “A 1-V 17-GHz 5-mW CMOS Quadrature VCO Based on Transformer Coupling, ” IEEE J. Solid-State Circuits, vol.42, no.9, pp.1933,1941, Sep. 2007
[10] S. J. Yun, H. D. Lee, K. D. Kim, S. G. Lee, and J. K. Kwon, “A wide-tuning dual-band transformer-based complementary VCO,” IEEE Microw. Wireless Compon. Lett., vol. 20, no. 6, pp. 340–342, Jun. 2010.
[11] C.-H. Ko, A. Tran and G. Rebeiz, "Tunable 500–1200-MHz Dual-Band and Wide Bandwidth Notch Filters Using RF Transformers," IEEE Trans. Microw. Theory Tech., vol.63, no.6, pp.1854,1862, June 2015
[12] H.-K. Chen, T. Wang and S.-S. Lu, “A Millimeter-Wave CMOS Triple-Band Phase-Locked Loop With A Multimode LC-Based ILFD, ” IEEE Trans. Microw. Theory Tech., vol.59, no.5, pp.1327,1338, May 2011
[13] C.-H. Li, C.-Y. Hsu and C.-N. Kuo, “Low power 2.4-GHz receiver front-end using resoantor coupling technique, ” Circuits and Systems (MWSCAS), 2011 IEEE 54th International Midwest Symposium on , vol., no., pp.1,4, 7-10 Aug. 2011
[14] J. Kim, J. Shin, S. Kim, and H. Shin, “A wide-band CMOS LC VCO with linearized coarse tuning characteristic,” IEEE Trans. Circuits Syst. II, Exp. Briefs, vol. 55, pp. 399–403, May 2008.
[15] A. Li, and H.-C. Luong, “A reconfigurable 4.7–6.6GHz and 8.5–10.7GHz concurrent and dual-band oscillator in 65nm CMOS, ” Proc. IEEE Radio Frequency Integrated Circuits Symp.,2012, vol., no., pp.523,526, 17-19 June 2012
[16] M. Demirkan, S. P. Bruss, and R. R. Spencer, “11.8 GHz CMOS VCO with 62% tuning range using switched coupled inductors,” in Proc. IEEE Radio Frequency Integrated Circuits Symp., 2007, pp. 401–404.
[17] S.-L. Jang, Y.-K. Wu, C.-C. Liu, and J.-F. Huang, “A dual-band CMOS voltage-controlled oscillator implemented with dual-resonance LC tank,” IEEE Microw. Wireless Compon. Lett., vol. 19, no. 12, pp. 816–818, Dec. 2009.
[18] G. Li, L. Liu, Y. Tang, and E. Afshari, “A low-phase-noise wide-tuningrange oscillator based on resonant mode switching,” IEEE J. Solid-State Circuits, vol. 47, no. 6, pp. 1295–1308, Jun. 2012.
[19] J. Borremans, A. Bevilacqua, S. Bronckers, M. Dehan, M. Kuijk, P. Wambacq, and J. Craninckx, “A compact wideband front-end using a single-inductor dual-band VCO in 90 nm digital CMOS,” IEEE J. Solid-State Circuits, vol. 43, no. 12, pp. 2693–2705, 2008.
[20] L.-H. Lu, H.-H. Hsieh, and Y.-T. Liao, “A wide tuning-range CMOS VCO with a differential tunable active inductor,” IEEE Trans. Microw. Theory Tech., vol. 54, no. 9, pp. 3462–3468, Sep. 2006.
[21] J. Borremans, S. Bronckers, M. Kuijk, P. Wambacq, and G. Craninckx, “A single-inductor, dual-band VCO in a 0.06 mm2 , 5.6 GHz multiband front-end in 90 nm digital CMOS,” in 2008 IEEE Int. Solid-State Circuits (ISSCC) Dig. Tech. Papers, Feb. 3–7, 2008, pp. 324–325.
[22] T. Nguyen and J.-W. Lee, “Ultralow-power ku-band dual-feedback armstrong VCO with a wide tuning range,” IEEE Trans. Circuits Syst. II, Exp. Briefs, vol. 59, no. 7, pp. 394–398, Jul. 2012.
[23] T.-P. Wang, “A K-band low-power Colpitts VCO with voltage-to-current positive-feedback network in 0.18 µm CMOS,” IEEE Microw. Wireless Compon. Lett., vol. 21, no. 4, pp. 218–220, Apr. 2011
[24] S. Yoo, J. Kim, and J. Choi, “A 2–8 GHz wideband dually frequency-tuned ring-VCO with a scalable Kvco,” IEEE Microw. Wireless Compon. Lett., vol. 23, no. 11, pp. 602–604, Nov. 2013.
[25] H. Yoon, Y. Lee, J. Kim and J. Choi, “A Wideband Dual-Mode LC -VCO With a Switchable Gate-Biased Active Core, ” IEEE Trans. Circuits Syst. II, Exp. Briefs., IEEE Transactions on , vol.61, no.5, pp.289,293, May 2014
[26] T. H. Lee, The Design of CMOS Radio-Frequency Integrated Circuits, Cambridge, U.K. : Cambridge Univ. Press.2004
[27] C. A. Lin, J. L. Kuo, K. Y. Lin, and H. Wang, “A 24 GHz low power VCO with transformer feedback,” in IEEE Radio Freq. Integr. Circuits Symp. Dig., Jun. 2009, pp. 75–78.
[28] S. J. Yun, S. B. Shin, H. C. Choi, and S. G. Lee, “A 1 mW current reuse CMOS differential LC-VCO with low phase noise,” in IEEE Int. Solid-State Circuits Conf. Dig., Feb. 2005, pp. 540–541.
[29] S.-L. Liu, K.-H. Chen, and A. Chin, “A dual-resonant mode 10/22-GHz VCO with a novel inductive switching approach,” IEEE Trans. Microw. Theory Tech., vol. 60, pp. 2165–2177, Jul. 2012.
[30] S. Rong and H. C. Luong, “Analysis and design of transformer-based dual-band VCO for software-defined radios,” IEEE Trans. Circuits Syst. I, Reg. Papers, vol. 59, no. 3, pp. 449–462, Mar. 2012.
[31] S.-L. Jang, S. Jain, “Dual C- and S-Band CMOS VCO Using the Shunt Varactor Switch, ” IEEE Trans. on Very Large Scale Integration (VLSI) Systems, pp.1,1
[32] L. Wu, A. W. L. Ng, L. L. K. Leung, and H. C. Luong, “A 24-GHz and 60-GHz dual-band standing-wave VCO in 0.13 m CMOS process,” in IEEE Radio Freq. Integr. Circuits Symp. Dig., May 2010, pp. 145–148.
[33] Y. S. Lin, C. H. Wu, C. L. Lu, and Y. H. Wang, “A divide-by-four transformer-coupled regenerative frequency divider with quadrature outputs,” IEEE Microw. Wireless Compon. Lett., vol. 24, no. 4, pp. 260–262, Apr. 2014.
[34] 簡偉仁, “Implementations of K band Low Power and Low Phase Noise Voltage
Controlled Oscillator and Ku band Dual-mode Injection Locking Frequency Divider
,"碩士論文,中央大學.2009
[35] 周梓妘, “Implementation on Low Power CMOS Voltage Controlled Oscillator Using Magnetically Coupled Transformer for K-band Application,”碩士論文,中央大學2014
[36] H.Hsieh and L. Lu, "A V-Band CMOS VCO With an Admittance-Transforming
Cross-Coupled Pair," IEEE J. Solid-State Circuits, vol.44, no.6, pp.1689–1696, Jun.
2009
|