DocumentCode :
628671
Title :
Pre-emphasis parameter optimization for high speed channels using de-convolution approach
Author :
Jifeng Mao ; Chandra, U.
Author_Institution :
Dell Force 10, San Jose, CA, USA
fYear :
2013
fDate :
28-31 May 2013
Firstpage :
2069
Lastpage :
2074
Abstract :
This paper covers a novel technique for quickly determining optimum settings for pre-emphasis parameters used in high speed SerDes links. Time domain de-convolution is used for determining the optimum pre-emphasis settings for the high speed differential channel. The optimization is done in the frequency domain through FFT and method of exhaustion. The results from the analysis are applied on 10Gbps SerDes links of a top-of-rack Ethernet switch. Measurement results from a vector network analyzer and oscilloscope are shown as part of the verification. This paper is especially useful for optimizing the SerDes channels and it helps the engineers tune the transmitter pre-emphasis without heavily depending on AMI models, and can be treated as a complementary method to the conventional simulation techniques using IBIS models. The proposed method can be applied at the early and troubleshooting stage of the high speed link design.
Keywords :
deconvolution; equalisers; fast Fourier transforms; frequency-domain analysis; local area networks; optimisation; time-domain analysis; AMI models; FFT; IBIS models; SerDes channels; bit rate 10 Gbit/s; frequency domain; high speed SerDes links; high speed differential channel; method of exhaustion; optimum preemphasis settings; preemphasis parameters; time domain deconvolution; top-of-rack Ethernet switch; transmitter preemphasis; Frequency-domain analysis; Receivers; Scattering parameters; Time-domain analysis; Transfer functions; Transmission line measurements; Transmitters;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronic Components and Technology Conference (ECTC), 2013 IEEE 63rd
Conference_Location :
Las Vegas, NV
ISSN :
0569-5503
Print_ISBN :
978-1-4799-0233-0
Type :
conf
DOI :
10.1109/ECTC.2013.6575864
Filename :
6575864
Link To Document :
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