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Development of wide-band geometry dependent RF planar spiral inductor SPICE model

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EN
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EN
Parameterized wide-band geometry dependent SPICE models for oil-chip planar spiral inductors are developed in the paper. Model descriptions are presented in the form of PSpice model and in schematic view. The models are realized in the Cadence Capture and Cadence PSpice environment. The developed computer models can be used For adequate computer modeling and simulation of RF circuits. The geometry dependence of the model parameters allows geometry optimization and design automation of spiral inductors. The simulation results are compared to the measurement data for the model verification demonstrating the validity of the computer models.
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Bibliografia
  • [1] C. P. Yue, C. Ryu, J Lau, T. H. Lee and S. S. Wong, "A physical model for planar spiral inductors on silicon", Proc. IEEE Inl. Electron Devices Meeting Tech. Dig., San Francisco, pp. 155-158., CA, Dec. 1996.
  • [2] Y.C. Shih, C.K. Pao and T. Itoh, "A broadband parameter extraction technique for the equivalent circuit of planar inductors", IEEE MTT-S International Microwave Symposium Digest, pp. 1345-1348, 1992., vol.3, 1-5 Jun 1992.
  • [3] J E Post, "Optimizing the design of spiral inductors on silicon", IEEE Trans. on Circuits and Systems - II: Analog and Digital Signal Processing, pp. 15-17, vol. 47, No 1, Jan. 2000.
  • [4] Yu Weuhuan and J.W. Bandler, "Optimization of spiral inductor on silicon using space mapping", IEEE MTT-S, pp. 1085-1088, June 2006.
  • [5] V. Durev, E. Gadjeva and M. Hristov, "Parameter extraction of geometry dependent RF planar inductor model", 17-th International Conference Mixed Design of Integrated Circuits and Systems -MIXDES'2010, Wroclaw, June 2010, Poland.
  • [6] Y. Cao, R. A. Groves, X. Huang, N. Zamdmer, J. Flowchart, R. Wachnik, T.-J. King and C. Hu, "Frequency-independent equivalent-circuit model for on-chip spiral inductors", IEEEJ. Solid-Stats Circuits, vol. 38. no. 3, pp. 419-426, Mar. 2003.
  • [7] H. Zou, L. Sun, J. Wen and J. Liu, Scalable modeling and comparison for spiral inductors using enhanced 1-pi and 2-pi topologies, Journal of Semiconductors, vol. 31, No. 5, May 2010.
  • [8] J. Gil, H. Shin, "A simple wide-band on-chip inductor model for silicon-based RF Ics", IEEE Transactions on Microwave Theory and Techniques, vol. 51, n. 1, pp. 2023-2028, Sept., 2003.
  • [9] L. Sun, J. Wen, J. Van, and J. Hu, "Modcling and parameters extraction of spiral inductors for silicon-based RFICs", Proceedings 7th Internationa! Conference on Solid-State and Integrated Circuits Technology, pp. 224-227, vol. 1,18-21 Oct. 2004.
  • [10] J. Wen and L. Sun, "A wide-band equivalent circuit model for CMOS on-chip spiral inductor", Srh International Conference on Solid-Slate and integrated Circuit Technology ICSICT '06, pp. 1383-1385, Shanghai, China, 23-26 Oct. 2006.
  • [11] M. Kang, J. Gil and H. Shin, "A simple parameter extraction method of spiral on-chip inductors", IEEE Transactions on Electron Devices, pp. 1976-1981, vol. 52, n. 9, Sept. 2005.
  • [12] H. Chen, H. Zhang, S. Chung, J. Kuo and T. Wu, "Accurate systematic model-parameter extraction for on-chip spiral inductors", IEEE Transactions on Electron Devices, pp. 3267-3273, vol. 55, n. II, Lausanne, Switzerland, Nov. 2008.
  • [13] M. Fujishima and J. Kino, "Accurate subcircuit model of an on-chip inductor with a new substrate network", in Proc. Symp. VLSI Circuits, Jun. 17-19, 2004, pp. 376-379.
  • [14] I. Lai and M. Fujishima, "A new on-ehip substrate-coupled inductor model implemented with scalable expressions", IEEE Journal of Solid-State Circuits, vol. 41, n. 11, November 2006, pp 2491-2499.
  • [15] PSpice User's Guide, Cadence PCB Systems Division, USA, 2000.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-LOD7-0029-0054
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