• DocumentCode
    2731298
  • Title

    High speed IIR filter for XILINX FPGA

  • Author

    Landry, René Jr ; Calmettes, Vincent ; Robin, Eric

  • Author_Institution
    SUPAERO, Toulouse, France
  • fYear
    1998
  • fDate
    9-12 Aug 1998
  • Firstpage
    46
  • Lastpage
    49
  • Abstract
    This paper makes a connection between digital signal representation, all potential two´s complement multiplier for FPGA and one of the most original and powerful methods for multiplication: the Booth algorithm. The paper identifies the applications where constant coefficient multipliers cannot be used and states the advantages and drawbacks of all other techniques. At this point, the description of our anti-jamming IIR notch filter in XILINX FPGA becomes easier. This application note describes the functionality and integration of a real time IIR filter using 2 large multipliers at very high sampling rate in XC4020EPG223-2 device (up to 40 M samples/s). It also reveals the solution to an interesting design problem which emerges, and some additional enhancements since other papers, introducing a hybrid technique. Booth algorithm is shown to improve the CLB density and speed of FPGA circuit without any pipeline needed in IIR filtering
  • Keywords
    IIR filters; field programmable gate arrays; high-speed integrated circuits; multiplying circuits; notch filters; real-time systems; Booth algorithm; CLB density; XILINX FPGA; anti-jamming IIR notch filter; constant coefficient multipliers; digital signal representation; high speed IIR filter; real time IIR filter; sampling rate; two´s complement multiplier; Adders; Circuits; Clocks; Digital signal processing; Digital signal processing chips; Field programmable gate arrays; Filtering; IIR filters; Pipelines; Sampling methods;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Circuits and Systems, 1998. Proceedings. 1998 Midwest Symposium on
  • Conference_Location
    Notre Dame, IN
  • Print_ISBN
    0-8186-8914-5
  • Type

    conf

  • DOI
    10.1109/MWSCAS.1998.759432
  • Filename
    759432