• DocumentCode
    2893696
  • Title

    A highly digital 0.5-to-4Gb/s 1.9mW/Gb/s serial-link transceiver using current-recycling in 90nm CMOS

  • Author

    Inti, Rajesh ; Elshazly, Amr ; Young, Brian ; Yin, Wenjing ; Kossel, Marcel ; Toifl, Thomas ; Hanumolu, Pavan Kumar

  • Author_Institution
    Oregon State Univ., Corvallis, OR, USA
  • fYear
    2011
  • fDate
    20-24 Feb. 2011
  • Firstpage
    152
  • Lastpage
    154
  • Abstract
    Ever-growing demand for higher communication bandwidth in high performance compute systems is driving the need for energy-efficient multi-Gb/s I/O serial links. Improved power efficiency was demonstrated using adaptive supply regulation. However, power losses in the DC-DC converter needed to generate the optimal supply voltage and the difficulty in operating analog circuits at low voltages limit the power savings. Instead of scaling the supply with the data rate, we seek to operate with two fixed voltages and eliminate the need for a high-efficiency DC-DC converter. To this end, this paper presents a serial link using a highly efficient current recycling-based implicit DC-DC conversion to generate 0.6V from a 1.2V supply. Highly digital clocking circuits capable of operating at 0.6V maximize power savings. A 0.5-to-4Gb/s serial-link transceiver is designed in a 1.2V LP 90nm CMOS process to operate with a short channel and plesiochronous timing. The transceiver dissipates 1.9mW/Gb/s at 3.2Gb/s.
  • Keywords
    CMOS integrated circuits; DC-AC power convertors; clocks; energy conservation; low-power electronics; radio transceivers; timing circuits; CMOS process; DC-DC converter; adaptive supply regulation; analog circuit; bit rate 0.5 Gbit/s to 4 Gbit/s; communication bandwidth; current recycling; digital clocking circuit; energy efficiency; high performance compute system; optimal supply voltage; plesiochronous timing; power 1.9 mW; power efficiency; power loss; power saving; serial-link transceiver; short channel; size 90 nm; voltage 0.6 V; voltage 1.2 V; Clocks; Driver circuits; Jitter; Receivers; Transceivers; Transmitters; Voltage control;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Solid-State Circuits Conference Digest of Technical Papers (ISSCC), 2011 IEEE International
  • Conference_Location
    San Francisco, CA
  • ISSN
    0193-6530
  • Print_ISBN
    978-1-61284-303-2
  • Type

    conf

  • DOI
    10.1109/ISSCC.2011.5746260
  • Filename
    5746260