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Tripathi, V. , Transmission Lines and Wave Propagation, 4th edition, CRC Press, 2001. Mangan, A. , Voinigescu, S. , and Tazlauanu, M. (2006). De-embedding transmission line measurements for accurate modeling of IC designs, IEEE Transactions on Electron Devices, vol. 53, no. 2, pp. 235–241. Mavaddat, R. (1996). Network Scattering Parameters, World Scientific. , Rustagi, S. -L. (2007) Experimental characterization of the effect of metal dummy fills on spiral inductors, Radio Frequency Integrated Circuits Symposium, pp.

Shaeffer and T. H. Lee, (1997). 5GHz CMOS Low Noise Amplifier”, IEEE Journal of Solid State Circuits, vol 32, pp. 745-759, May 1997. [10]D. Im, S. Song, H. Kim, K. Lee, (2007). “A wideband CMOS variable-gain Low Noise Amplifier for multistandard terrestrial and cable TV tuner”, IEEE Radio Frequency Integrated Circuit, RFIC2007, pp. 621-624, Hawai, USA [11]B. Razavi, T. Aytur, C. Lam, Fei-Ran Yang, Kuang-Yu Li, Ran-Hong Yan, Han-Chang Kang, Cheng-Chung Hsu, Chao-Cheng Lee, (2005). “A UWB CMOS transceiver”, IEEE Journal of Solid-States Circuits, Vol.

7, pp. 1530–1539. Daniel, E. , Harff, N. , Schreiber, S. , and Gilbert, B. K. (2004). Network analyzer measurement de-embedding utilizing a distributed transmission matrix bisection of a single THRU structure, 63rd ARFTG Conference, pp. 61–68. Faria, J. A. B. (2004). A new generalized modal analysis theory for nonuniform multiconductor transmission lines, IEEE Transactions on Power Systems, vol. 19, no. 2, pp. 926–933. , Natsukari, Y. , and Fujishima, M. (2008). New on-chip de-embedding for accurate evaluation of symmetric devices, Japanese Journal of Applied Physics, vol.

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