DocumentCode
3392429
Title
A novel memory bus driver/receiver architecture for higher throughput
Author
Beers, Gregory E. ; John, Lizy K.
Author_Institution
Dept. of Electr. & Comput. Eng., Texas Univ., Austin, TX, USA
fYear
1998
fDate
4-7 Jan 1998
Firstpage
259
Lastpage
264
Abstract
A high-speed memory bus interface which enables greater throughput for data reads and writes is described in this paper. Current mode CMOS logic synthesis methods are used to implement multi-valued logic (MVL) functions to create a high bandwidth bus. First, a fundamental bi-directional data bus for multiple logic levels is presented. Then a bi-directional data bus with impedance matching terminators is presented. Finally a novel Adaptive Multi-Level Simultaneous bi-directional Transceiver (AMLST) bus structure for cache or main memory is proposed. The proposed bus can balance the memory channel bandwidth with the instruction execution rate of modern processors. Despite the problems encountered in implementing complete systems with MVL circuits, among which are circuit speed and design automation support, there is great potential in the future for this approach
Keywords
CMOS logic circuits; driver circuits; impedance matching; integrated memory circuits; logic design; memory architecture; multivalued logic circuits; system buses; transceivers; adaptive multi-level simultaneous bi-directional transceiver; bandwidth; bi-directional data bus; cache memory; current mode CMOS logic synthesis; design automation; driver architecture; high-speed memory bus interface; impedance matching; multi-valued logic; receiver architecture; throughput; Bandwidth; Bidirectional control; CMOS logic circuits; Integrated circuit interconnections; Multivalued logic; Process design; Random access memory; Switches; Throughput; Transceivers;
fLanguage
English
Publisher
ieee
Conference_Titel
VLSI Design, 1998. Proceedings., 1998 Eleventh International Conference on
Conference_Location
Chennai
ISSN
1063-9667
Print_ISBN
0-8186-8224-8
Type
conf
DOI
10.1109/ICVD.1998.646614
Filename
646614
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