• DocumentCode
    1485713
  • Title

    Unified Frequency-Domain Analysis of Switched-Series- RC Passive Mixers and Samplers

  • Author

    Soer, Michiel C M ; Klumperink, Eric A M ; De Boer, Pieter-Tjerk ; Van Vliet, Frank E. ; Nauta, Bram

  • Author_Institution
    Integrated Circuit Design Group, Univ. of Twente (UT), Enschede, Netherlands
  • Volume
    57
  • Issue
    10
  • fYear
    2010
  • Firstpage
    2618
  • Lastpage
    2631
  • Abstract
    A wide variety of voltage mixers and samplers are implemented with similar circuits employing switches, resistors, and capacitors. Restrictions on duty cycle, bandwidth, or output frequency are commonly used to obtain an analytical expression for the response of these circuits. This paper derives unified expressions without these restrictions. To this end, the circuits are decomposed into a polyphase multipath combination of single-ended or differential switched-series-RC kernels. Linear periodically time-variant network theory is used to find the harmonic transfer functions of the kernels and the effect of polyphase multipath combining. From the resulting transfer functions, the conversion gain, output noise, and noise figure can be calculated for arbitrary duty cycle, bandwidth, and output frequency. Applied to a circuit, the equations provide a mathematical basis for a clear distinction between a “mixing” and a “sampling” operating region while also covering the design space “in between.” Circuit simulations and a comparison with mixers published in literature are performed to support the analysis.
  • Keywords
    frequency-domain analysis; mixers (circuits); transfer functions; arbitrary duty cycle; conversion gain; frequency-domain analysis; harmonic transfer functions; noise figure; polyphase multipath combination; switched-series-RC passive mixers; time-variant network theory; voltage sampling; Bandwidth; Frequency domain analysis; Kernel; Noise figure; Resistors; Switched capacitor circuits; Switches; Switching circuits; Transfer functions; Voltage; Frequency conversion; linear periodically time variant (LPTV); low noise; noise folding; passive mixing; voltage sampling;
  • fLanguage
    English
  • Journal_Title
    Circuits and Systems I: Regular Papers, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1549-8328
  • Type

    jour

  • DOI
    10.1109/TCSI.2010.2046968
  • Filename
    5460957