References [1] Agilent Technologies Inc. (2000). Surface mount RF schottky barrier diodes: HSMS-282x series. Technical Data,

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1 References [1] Agilent Technologies Inc. (2000). Surface mount RF schottky barrier diodes: HSMS-282x series. Technical Data, [2] Allen M. B., Isaacson E. L. (1998). Numerical analysis for applied science. John Wiley & Sons. [3] Arfken G. B., Weber H. J. (1995). Mathematical methods for physicists, 4 th edition. Academic Press. [4] Balanis C. A. (1989), Advance engineering electromagnetics, John-Wiley & Sons. [5] Berenger A. P. (1994). A perfectly matched layer for the absorption of electromagnetic waves. Journal of Computational Physics (114), [6] Blood W. J. (1980). MECL system design handbook. Printed by Motorola Inc. [7] Ciampolini P., Mezzanotte P., Roselli L., Sorrentino R. (1996). Accurate and efficient circuit simulation with lumped-element FDTD technique. IEEE Trans. Microwave Theory and Techniques, Vol. 44(No.12), [8] Collins R. E. (1993). Foundations for microwave engineering. McGraw-Hill. [9] Elaydi S. N. (2000). Discrete chaos. Chapman & Hall/CRC. [10] Emili G., Alimenti F., Mezzanotte P., Roselli L., Sorrentino R. (2000). Rigorous modeling of packaged schottky diodes by the nonlinear lumped network (NL 2 N)-FDTD approach. IEEE Trans. Microwave Theory and Techniques, Vol. 48(No. 12), [11] Gandhi O. P., Gao B. Q., Chen Y. Y. (1993). A frequency-dependent finitedifference time-domain formulation for general dispersive media. IEEE Trans. Microwave Theory and Techniques, Vol. 41, [12] Gray P. R., Meyer R. G. (1993) Analysis and design of analog integrated circuits (3 rd edition). John-Wiley & Sons. [13] Harrington R. F. (1968). Field computation by moment methods. MacMillan Company. 214

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