DocumentCode
1300371
Title
A 250-Mb/s/pin, 1-Gb double-data-rate SDRAM with a bidirectional delay and an interbank shared redundancy scheme
Author
Takai, Yasuhiro ; Fujita, Mamoru ; Nagata, Kyoichi ; Isa, Satoshi ; Nakazawa, Shigeyuki ; Hirobe, Atsunori ; Ohkubo, Hiroaki ; Sakao, Masato ; Horiba, Shinichi ; Fukase, Tadashi ; Takaishi, Yoshihiro ; Matsuo, Makoto ; Komuro, Masahiro ; Uchida, Tetsuya ;
Author_Institution
NEC Corp., Kanagawa, Japan
Volume
35
Issue
2
fYear
2000
Firstpage
149
Lastpage
162
Abstract
This paper describes three circuit technologies indispensable for high-bandwidth multibank DRAM´s. (1) A clock generator based on a bidirectional delay (BDD) eliminates the output skew. The BDD measures the cycle time as the quantity charged or discharged of an analog quantity, and replicates it in the next cycle. This achieves a 0.18-mm/sup 2/, two-cycle-lock clock generator operating from 25 to 167 MHz with a 30-ps resolution. (2) A quad-coupled receiver eliminates the internal skew caused by the difference between a rise input and a fall input by 40%. (3) An interbank shared redundancy scheme (ISR) with a variable unit redundancy (VUR) efficiently increases yield in multibank DRAM´s. The ISR allows redundancy match circuits to be shared with two or more banks. The VUR allows the number of units replaced to be variable. These circuit technologies achieved a 250-Mb/s/pin, 8-bank, 1-Gb double-data-rate synchronous DRAM.
Keywords
DRAM chips; clocks; delays; redundancy; 1 Gbit; 25 to 167 MHz; 250 Mbit/s; 30 ps; bidirectional delay; circuit technology; clock generator; double-data-rate synchronous DRAM; interbank shared redundancy; multibank DRAM; quad-coupled receiver; skew; variable unit redundancy; Binary decision diagrams; Circuits; Clocks; Delay lines; Latches; National electric code; Propagation delay; Random access memory; SDRAM; Synchronous generators;
fLanguage
English
Journal_Title
Solid-State Circuits, IEEE Journal of
Publisher
ieee
ISSN
0018-9200
Type
jour
DOI
10.1109/4.823441
Filename
823441
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