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Signal integrity research of high-speed interconnection systems based on scattering parameters
by
Li, Zhiqiang
, Guan, Wu
, Liang, Liping
, Hong, Cheng
in
639/166
/ 639/166/987
/ Characteristics of transmission lines
/ Eye diagram
/ Humanities and Social Sciences
/ Insertion loss
/ multidisciplinary
/ Scattering parameters
/ Science
/ Science (multidisciplinary)
/ Signal integrity
2025
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Signal integrity research of high-speed interconnection systems based on scattering parameters
by
Li, Zhiqiang
, Guan, Wu
, Liang, Liping
, Hong, Cheng
in
639/166
/ 639/166/987
/ Characteristics of transmission lines
/ Eye diagram
/ Humanities and Social Sciences
/ Insertion loss
/ multidisciplinary
/ Scattering parameters
/ Science
/ Science (multidisciplinary)
/ Signal integrity
2025
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Do you wish to request the book?
Signal integrity research of high-speed interconnection systems based on scattering parameters
by
Li, Zhiqiang
, Guan, Wu
, Liang, Liping
, Hong, Cheng
in
639/166
/ 639/166/987
/ Characteristics of transmission lines
/ Eye diagram
/ Humanities and Social Sciences
/ Insertion loss
/ multidisciplinary
/ Scattering parameters
/ Science
/ Science (multidisciplinary)
/ Signal integrity
2025
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Signal integrity research of high-speed interconnection systems based on scattering parameters
Journal Article
Signal integrity research of high-speed interconnection systems based on scattering parameters
2025
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Overview
As an important characteristic of a signal transmission network, scattering parameters can accurately reflect the signal transmission situation. By establishing a circuit model based on scattering parameters for the signal path unit, studying the signal attenuation and reflection curves of components including transmission lines, transmission media, vias, high-speed connectors, and transceiver termination devices, a circuit simulation model completely based on scattering parameters is proposed. This model can be parametrically adjusted according to the requirements of actual circuit implementation, and accurately reflect the high-speed signal transmission quality of the final circuit. This circuit simulation model is applied to the high-speed 5G small base station system. The transceiver performance of the modular circuit model completely based on scattering parameters and the scattering parameter model extracted based on board-level implementation is compared. The results show that the modular circuit completely based on scattering parameters can accurately match the channel communication indicators of board-level implementation.
Publisher
Nature Publishing Group UK,Nature Portfolio
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