DocumentCode :
262510
Title :
26.5 An 8-to-16Gb/s 0.65-to-1.05pJ/b 2-tap impedance-modulated voltage-mode transmitter with fast power-state transitioning in 65nm CMOS
Author :
Young-Hoon Song ; Hae-Woong Yang ; Hao Li ; Chiang, Patrick Yin ; Palermo, Samuel
Author_Institution :
Texas A&M Univ., College Station, TX, USA
fYear :
2014
fDate :
9-13 Feb. 2014
Firstpage :
446
Lastpage :
447
Abstract :
Future processor I/Os must aggressively improve per-channel data-rates and energy efficiency to meet projected system bandwidth demands. These constraints necessitate the design of ultra-low-power serial-link transmitters that can efficiently incorporate equalization to compensate for channel losses, while enabling fast power-state transitioning to leverage dynamic power scaling. In this work, a scalable-data-rate voltage-mode transmitter is presented that introduces two main innovations. First, an impedance-modulated 2-tap equalizer is adopted that employs analog control of the equalizer taps, thereby obviating output driver segmentation. Second, fast power-state transitioning is achieved using a replica-biased voltage regulator to power the output stages of multiple channels and per-channel injection-locked oscillators (ILO) that can be rapidly disabled. Furthermore, capacitively driven low-swing global clock distribution and automatic phase calibration of the local ILO-generated quarter-rate clocks enables improved energy efficiency with aggressive supply scaling.
Keywords :
CMOS integrated circuits; equalisers; injection locked oscillators; low-power electronics; radio transmitters; CMOS; analog control; automatic phase calibration; bit rate 8 Gbit/s to 16 Gbit/s; capacitively driven low-swing global clock distribution; channel losses; dynamic power scaling; energy efficiency; equalizer taps; impedance-modulated 2-tap equalizer; injection-locked oscillators; local ILO-generated quarter-rate clocks; per-channel data-rates; processor I/O; replica-biased voltage regulator; scalable-data-rate voltage-mode transmitter; size 65 nm; supply scaling; system bandwidth demands; ultra-low-power serial-link transmitters; Clocks; Energy efficiency; Impedance; Regulators; Transistors; Transmitters; Voltage control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Solid-State Circuits Conference Digest of Technical Papers (ISSCC), 2014 IEEE International
Conference_Location :
San Francisco, CA
ISSN :
0193-6530
Print_ISBN :
978-1-4799-0918-6
Type :
conf
DOI :
10.1109/ISSCC.2014.6757507
Filename :
6757507
Link To Document :
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