Title
A network security processor design based on an integrated SOC design and test platform
Abstract
In this paper we present a generic Network Security Processor (NSP) design suitable for a wide range of security related protocols in wired or wireless network applications.Following the platform-based design methodology, we develop four specific platforms, i.e., architecture platform, EDA platform, Design-for-Testability (DFT) platform, and prototyping platform, for our NSP design.With these platforms, design of the NSP chip becomes more efficient and systematic.A prototype chip of the NSP has been implemented and fabricated with a 0.18μm CMOS technology.The chip area is 5mmx5mm (with 1M gates approximately), including I/O pads.The operating clock rate is 80MHz.The best performance of the crypto-engines is 1.025Gbps for AES, 1.652Mbps for RSA, 125.9/157.65Mbps for HMAC-SHA1/MD5, and 2.56Gbps for random number generator.Comparison result shows that our NSP is efficient in terms of performance, flexibility and scalability.
Year
DOI
Venue
2006
10.1145/1146909.1147039
DAC
Keywords
Field
DocType
chip area,integrated soc design,prototype chip,specific platform,nsp chip,network security processor design,nsp design,test platform,platform-based design methodology,best performance,prototyping platform,architecture platform,eda platform,design for testability,hmac sha1,wireless network,system on chip,chip,random number generation,cmos technology,aes,security,integrated circuit design,design,rng,network security,electronic design automation,md5
Design for testing,System on a chip,Computer science,Real-time computing,Electronic engineering,Chip,Integrated circuit design,Processor design,Electronic design automation,Clock rate,Embedded system,Scalability
Conference
ISSN
ISBN
Citations 
0738-100X
1-59593-381-6
7
PageRank 
References 
Authors
0.86
9
7
Name
Order
Citations
PageRank
Chen-Hsing Wang1233.07
chihyen lo2578.68
Min-Sheng Lee370.86
Jen-Chieh Yeh422321.72
Chih-Tsun Huang567354.07
Wu, Cheng-Wen61843170.44
Shi-Yu Huang776670.53