References
[1]. Behbahani, F., Kishigami, Y., Leete, J., & Abidi A.A.
(2001). “CMOS mixers and poly-phase filters for large
image rejection,” IEEE J. Solid-State Circuits, Vol. 36, No. 6,
pp. 873–887.
[2]. Gierkink S. L.J., Levantino, S., Frye, R.C., Samori, C., &
Boccuzzi, V. (2003). “A low-phase-noise 5-GHz CMOS
quadrature VCO using superharmonic coupling,” IEEE J.
Solid-State Circuits, Vol. 38, No. 7, pp. 1148–1154.
[3]. Ham, D., & Hajimiri, A. (2001). “Concepts and
methods in Optimization of Integrated LC VCOs,” IEEE J.
Solid-State Circuits, Vol. 36, pp. 896–909.
[4]. Tiebout, M. (2001). “Low-power low-phase-noise
differentially tuned quadrature VCO design in standard
CMOS,” IEEE J. Solid-State Circuits, Vol. 36, pp.
1018–1024.
[5]. Kim H. R, Cha C. Y., Oh S. M, Yang M. S., & Lee S.G.
(2004). “A very low-power quadrature VCO with back-gate
coupling,” IEEE J. Solid-State Circuits, Vol. 39, No. 6, pp.
952–955.
[6]. Maligeorgos, J.P., & Long, J.R. (2000). “A low-voltage
5.1–5.8-GHz image reject receiver with wide dynamic
range,” IEEE J. Solid-State Circuits, Vol. 35, pp.
1917–1926.
[7]. Nam-Jin Oh & Sang-Gug Lee (2005). “Current Reused
LC VCOs,” IEEE Microwave And Wireless Components
Letters, Vol. 15, No. 11, November 2005, pp.736-738.
[8]. Ravi, A., Soumyanath, K., Carley, L.R., & Bishop, R.
(2002). “An integrated 10/5 GHz injection-locked
quadrature LC VCO in a 0.18 ?m digital CMOS process,” in
Proc. IEEE Eur. Solid-State Circuits Conf., pp. 543–546.
[9]. Ravi. A., Soumyanath, K., Bishop, R.E., Bloechel, B.A.,
& Carley, L.R. (2003). “An optimally transformer coupled, 5
GHz quadrature VCO in a 0.18 ?m digital CMOS process,”
in Symp. VLSI Circuits Dig. Technical Papers, pp. 141–144.
[10]. Rofougaran, A., Rael, J., Rofougaran, M., & Abidi, A.
(1996). “A 900 MHz CMOS LC-oscillator with quadrature
outputs,” In Proc. ISSCC 1996, pp. 392–393.
[11]. Van der Ven P, Van der Tang J, Kasperkovitz D, & Van
Roermund, A. (2001). “An optimally coupled 5 GHz
quadrature LC oscillator,” in Proc. 2001 Symp. VLSI
Circuits, pp. 115–118.
[12]. Sreeja B.S, Radha S (2011). “Simulation Analysis of
2.4 GHz Voltage Controlled Oscillator”, International
Journal of Physical Sciences (In press).
[13]. Sreeja B.S, Radha S. “A Low-Power Low-Voltage
Voltage Controlled Oscillator Using MWCNT Based Nano-
Inductor” IEEE Microwave And Wireless Components
Letters, (Under Review).
[14]. Steyaert M. S. J, Janssens J, De Muer B, Borremans
M,& Itoh, N. (2000). “A 2-V CMOS cellular transceiver frontend,”
IEEE J. Solid-State Circuits, Vol. 35, No. 12, pp.
1895–1907.
[15]. Troedsson, N. & Sjolamd, H. (2002). “An ultra low
voltage 2.4 GHz CMOS VCO,” In IEEE Radio Wireless Conf.,
pp. 205–208.
[16]. Wang, H. (2001). “Oscillator circuit having
maximized signal power and reduced phase noise,” U.S.
Patent 6 229 406.