DocumentCode :
3490911
Title :
A low-jitter 1.5-GHz and 350-ppm spread-spectrum serial ATA PHY using reference clock with 400-ppm production-frequency tolerance
Author :
Kawamoto, Takashi ; Kokubo, Masaru
Author_Institution :
Hitachi Central Res. Lab., Kokubunji
fYear :
2008
fDate :
15-19 Sept. 2008
Firstpage :
174
Lastpage :
177
Abstract :
A serial ATA PHY was fabricated in a 0.15-mum CMOS process with a technique of calibrating a spread spectrum clock generator (SSCG). This technique involves calibrating the SSCG output signal frequency, which does not meet the serial-ATA specifications due to large variations in the reference oscillator, by utilizing the received signal during a power-on sequence. This is achieved by shifting the SSCG divide ratio, which is the input signal of the SigmaDelta modulator. A feed-forward delay cell and voltage to the current converter with a high current limiter are applied to a VCO to achieve low jitter and prevent the SSCG from malfunctioning. This technique enables a serial ATA PHY to use reference oscillators with a production-frequency tolerance of less than 400 ppm, i.e., higher than the permissible TX frequency variations (i.e., 350 ppm). The calibrated SSCG achieved a total jitter of 3.9 ps.
Keywords :
CMOS integrated circuits; UHF circuits; clocks; jitter; reference circuits; sigma-delta modulation; voltage-controlled oscillators; CMOS process; SigmaDelta modulator; feed-forward delay cell; frequency 1.5 GHz; frequency tolerance; low-jitter; reference clock; reference oscillator; size 0.15 mum; spread spectrum clock generator; spread-spectrum serial ATA PHY; voltage controlled oscillators; CMOS process; Clocks; Delay; Feedforward systems; Frequency; Jitter; Oscillators; Physical layer; Spread spectrum communication; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Solid-State Circuits Conference, 2008. ESSCIRC 2008. 34th European
Conference_Location :
Edinburgh
ISSN :
1930-8833
Print_ISBN :
978-1-4244-2361-3
Electronic_ISBN :
1930-8833
Type :
conf
DOI :
10.1109/ESSCIRC.2008.4681820
Filename :
4681820
Link To Document :
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