DocumentCode
2680873
Title
Field-based design of a new high pincount board connector for high data rate transmission
Author
Katzier, H.
Author_Institution
Public Commun. Networks Group, Siemens AG, Munich
fYear
1996
fDate
28-31 May 1996
Firstpage
456
Lastpage
459
Abstract
We present the results of a field-based 3D time domain simulation of a new board connector. The connector is a high pincount SpeedPac(R) connector with four rows providing 136 high frequency twinax chambers per 100 mm. The results of the field simulation are the near- and far-end crosstalk, the reflection and transmission characteristics in the time and frequency domain. For the field simulation we use the program package MAFIA(R), which is based on the Finite-Integration-Technique (FIT). We also present results obtained from a reliable SPICE model of the SpeedPac(R) connector. By means of typical measurements and simulation results the reliability of the SPICE(R)-Model is demonstrated. All important electrical characteristics of the connector can be simulated by the SPICE(R)-Model. The comparison between the field simulation, the SPICE(R)-simulation and measurement is very good up to a limit of f=4 GHz and risetimes of tr>50 ps
Keywords
SPICE; crosstalk; data communication; data communication equipment; electric connectors; integration; time-domain analysis; 3D time domain simulation; 4 GHz; 50 ps; MAFIA program; SPICE model; SpeedPac; crosstalk; electrical characteristics; field-based design; finite integration technique; high data rate transmission; high frequency twinax chamber; high pincount board connector; reflection characteristics; transmission characteristics; Application software; Backplanes; Conductors; Connectors; Crosstalk; Electromagnetic measurements; Frequency; Prototypes; Reflection; Switching systems;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronic Components and Technology Conference, 1996. Proceedings., 46th
Conference_Location
Orlando, FL
ISSN
0569-5503
Print_ISBN
0-7803-3286-5
Type
conf
DOI
10.1109/ECTC.1996.517427
Filename
517427
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