• DocumentCode
    1184888
  • Title

    Synthesis of lossy-lumped-distributed cascaded networks

  • Author

    Riederer, Alois J. ; Weinberg, Louis

  • Volume
    28
  • Issue
    12
  • fYear
    1981
  • fDate
    12/1/1981 12:00:00 AM
  • Firstpage
    1137
  • Lastpage
    1152
  • Abstract
    The synthesis of lossy lumped-distributed networks is important for many applications; for example, in the analysis of large systems such as the interconnections of the circuits on an LSI or VLSI silicon chip, such networks have been used as models, and a solution of the synthesis problem will thus aid in the design of these chips. In this paper singlevariable realizability conditions and synthesis procedures are established for the class of lossy and/or lossless lumped-distributed cascade networks described by an input-impedance expression of the form Z_0 = frac{\\sum _{i=0}^{6n}a_i(s)e^{sT(2i-n)}}{\\sum _{i=0}^{n}b_i(s)e^{sT(2i-n)}} with a_i(s), b_i(s) real polynomials in s . The cascade networks consist of commensurate, uniform, lossless transmission lines interconnected by passive, lumped (lossless and/or lossy) two-ports and terminated in a passive load which can be prescribed as part of the specifications. Moreover, the results of this paper are also applicable to lumpeddistributed cascade networks which contain noncommensurate, tapered and/or lossy transmission lines (e.g., RC lines, distortionless lines) and to nonelectrical systems which can be modeled as distributed or lumpeddistributed cascades of types similar to the ones described above (e.g., acoustic filters).
  • Keywords
    Cascade networks; Distributed-parameter networks; General analysis and synthesis methods; Lossy networks; Acoustic distortion; Circuit synthesis; Integrated circuit interconnections; Large scale integration; Network synthesis; Polynomials; Propagation losses; Silicon; Transmission lines; Very large scale integration;
  • fLanguage
    English
  • Journal_Title
    Circuits and Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0098-4094
  • Type

    jour

  • DOI
    10.1109/TCS.1981.1084945
  • Filename
    1084945