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BER Measurement of a 5.8-Gb/s/pin Unidirectional Differential I/O for DRAM Application With DIMM Channel

Authors
Jang, Young-ChanChung, HoejuChoi, YoungdonPark, HwanwookKim, JaekwanLim, SooukSunwoo, JungPark, Moon-SookKim, Hyung-SeukKim, Sang-YunLee, Yun-SangKim, Woo-SeopLee, Jung-BaeYoo, JeihwanKim, Changhyun
Issue Date
Nov-2009
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Keywords
DRAM; unidirectional differential I/O; memory interface; bit error rate (BER); cyclic redundancy check (CRC); dual in-line memory module (DIMM); outer-data inner-command (ODIC)
Citation
IEEE JOURNAL OF SOLID-STATE CIRCUITS, v.44, no.11, pp.2987 - 2998
Journal Title
IEEE JOURNAL OF SOLID-STATE CIRCUITS
Volume
44
Number
11
Start Page
2987
End Page
2998
URI
https://scholarworks.bwise.kr/kumoh/handle/2020.sw.kumoh/2831
DOI
10.1109/JSSC.2009.2028948
ISSN
0018-9200
Abstract
A 1-Gbit DRAM with 5.8-Gb/s/pin unidirectional differential I/Os was implemented by 70 nm DRAM process and a main memory module with dual in-line memory module was assembled. The implemented DRAM chips have control methods for core noise injection and a cyclic redundancy check (CRC) generator for outer-data inner-command architecture. Measurements for bit error rate and jitter performance of the transmitter was performed on an electrical test board which emulates the real memory system's environment. Also, the effect on power noise was analyzed from the DRAM chips with three class values of power decoupling capacitance for the peripheral part. The results show that no additional coding for the differential I/O protection in DRAM, like CRC, is required up to 5.8-Gb/s/pin operation.
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