DocumentCode :
2686338
Title :
QSFP28 connector footprint optimization of crosstalk and ILD_rms_dB for 25+ Gbps signaling
Author :
Il-Young Park ; Rowlands, Michael ; Minh Quach ; Ji Zhang ; Tooyserkani, Pirooz ; Lim, Jane
Author_Institution :
Cisco Syst., Inc., San Jose, CA, USA
fYear :
2015
fDate :
15-21 March 2015
Firstpage :
242
Lastpage :
247
Abstract :
This paper discusses optimization of the QSFP28 connector printed circuit board (PCB) footprint area. Crosstalk with baseline footprint was checked, and optimized to meet the CEI-28G-VSR mated HCB-MCB specification. Then the PCB via to trace transition area was modified to improve channel performance. Return loss, and ILD_rms_dB (root-mean-squared of ILD across the frequency range in dB) were used as metrics to find optimal channel. Lastly, channel simulation with AMI models was performed with varied ILD_rms_dB channels. The simulation showed that ILD_rms_dB is an effective metric to optimize the channel by choosing the best Tx/Rx equalization settings. This study also shows a significant improvement in crosstalk by increasing the diameter of ground vias in the circuit board. This simple change yields a reduction in crosstalk and should be considered while optimizing connector footprints.
Keywords :
crosstalk; printed circuit design; waveguide couplers; CEI-28G-VSR mated HCB-MCB specification; ILD root-mean-square; ILD-rms-dB channel; PCB footprint area; QSFP28 connector footprint optimization; QSFP28 connector printed circuit board; baseline footprint crosstalk; channel optimization; crosstalk reduction; optimal channel; return loss; trace transition area; transmit-receive equalization; Connectors; Crosstalk; Impedance; Measurement; Optimization; Printed circuits; Routing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Compatibility and Signal Integrity, 2015 IEEE Symposium on
Conference_Location :
Santa Clara, CA
Print_ISBN :
978-1-4799-1992-5
Type :
conf
DOI :
10.1109/EMCSI.2015.7107693
Filename :
7107693
Link To Document :
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