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Low propagation delay load-balanced 4 ×4 switch fabric IC in 0.13-μ m CMOS technology
Journal article   Peer reviewed

Low propagation delay load-balanced 4 ×4 switch fabric IC in 0.13-μ m CMOS technology

Ching-Te Chiu, Yu-Hao Hsu, Wei-Chih Lai, Jen-Ming Wu, Shawn S. H. Hsu, Yang-Syu Lin, Fan-Ta Chen, Min-Sheng Kao and Yar-Sun Hsu
IEEE Transactions on Very Large Scale Integration (VLSI) Systems, Vol.21(8), pp.1481-1495
2013

Abstract

Current-mode logic (CML) load-balanced Birkhoff-von Neumann switch low propagation delay scalability serializer-deserializer (SerDes) switch fabric IC
A load-balanced Birkhoff-von Neumann (LB-BvN) 4 ×4 switch fabric IC is proposed for feedback-based switch systems. This is fabricated in 0.13-μ m CMOS technology and the chip area is 1.380 ×1.080 mm 2 . The overall data rate of the LB-BvN 4 ×4 switch fabric IC is up to 32 Gb/s (8 Gb/s/channel) with only 0.8 ns propagation delay. The LB-BvN switch is highly recommended for constructing the next-generation terabit switch. In a feedback-based switch system, the long propagation delay of the switch module reduces the system throughput significantly. In this paper, we present a scalable LB-BvN 4 ×4 switch fabric IC directly in the high-speed domain. By observing the deterministic switching pattern of the N × N LB-BvN switch, we present a low-complexity pattern generator that reduces the PG complexity from O(N 3 ) to O(1). This technique reduces the propagation delay of the switch module from 30 to 0.8 ns, and also provides 80% area saving and 85% power saving compared to serializer-deserializer interfaces. The proposed LB-BvN 4 × 4 switch fabric IC is suitable for feedback-based switch systems to solve the throughput degradation problem. © 1993-2012 IEEE.

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