• DocumentCode
    8580
  • Title

    Wide-Locking-Range Multi-Phase-Outputs Regenerative Frequency Dividers Using Even-Harmonic Mixers and CML Loop Dividers

  • Author

    Yu-Sheng Lin ; Wei-Hsiang Huang ; Chun-Lin Lu ; Yeong-Her Wang

  • Author_Institution
    Dept. of Electr. Eng., Nat. Cheng-Kung Univ., Tainan, Taiwan
  • Volume
    62
  • Issue
    12
  • fYear
    2014
  • fDate
    Dec. 2014
  • Firstpage
    3065
  • Lastpage
    3075
  • Abstract
    This paper presents a divide-by-4 (D4) and divide-by-8 (D8) regenerative frequency dividers (RFDs) with the quadrature and the octet outputs. The topologies of the D4 and D8 RFDs use the even-harmonic mixers and the current-mode-logic (CML) loop dividers to achieve high division ratio and wide locking ranges. The modified Gilbert cells with quadrature- and octet-phases local-oscillator switching transistors are adopted to perform 2 × and 4 × subharmonic mixing with good conversion efficiency. The divide-by-2 and D4 CML loop dividers are used to obtain wide frequency range and the quadrature and the octet outputs. The D4 and D8 RFDs were fabricated by using a 90-nm CMOS process. With consuming 10.8 and 17.8 mW of dc power, the measured locking ranges of the D4 and D8 dividers are 13.2-18.4 and 16.8-26 GHz, respectively. Over the whole locking range, the two dividers with the phase deviation between the quadrature and the octet signals to be less than 2.2° and 4.4°, respectively. The proposed circuits achieve wide locking ranges and accurate output phases, making them very attractive for application into a multi-phase generator.
  • Keywords
    MMIC frequency convertors; MMIC mixers; current-mode logic; field effect MMIC; frequency dividers; CML loop dividers; CMOS process; D4 RFDs; D8 RFDs; current-mode-logic; divide-by-2 regenerative frequency dividers; divide-by-4 regenerative frequency dividers; divide-by-8 regenerative frequency dividers; even-harmonic mixers; frequency 13.2 GHz to 26 GHz; high division ratio; modified Gilbert cells; multiphase generator; octet signals; octet-phase local-oscillator switching transistors; phase deviation; power 10.8 mW; power 17.8 mW; quadrature-phases local-oscillator switching transistors; size 90 nm; subharmonic mixing; wide-locking-range multiphase-output regenerative frequency dividers; Harmonic analysis; Mixers; Resonant frequency; Switching circuits; Topology; Transistors; CMOS; current-mode-logic (CML); even-harmonic mixer; locking range; multi-phase generator; quadrature and octet outputs; regenerative frequency divider (RFD);
  • fLanguage
    English
  • Journal_Title
    Microwave Theory and Techniques, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9480
  • Type

    jour

  • DOI
    10.1109/TMTT.2014.2361521
  • Filename
    6933957