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EBD52UC8AMFA Datasheet, PDF (1/18 Pages) Elpida Memory – 512MB Unbuffered DDR SDRAM DIMM
PRELIMINARY DATA SHEET
512MB Unbuffered DDR SDRAM DIMM
EBD52UC8AMFA (64M words × 64 bits, 2 Ranks)
Description
The EBD52UC8AMFA is 64M words × 64 bits, 2 ranks
Double Data Rate (DDR) SDRAM unbuffered module,
mounting 16 pieces of 256M bits DDR SDRAM sealed
in TSOP package. Read and write operations are
performed at the cross points of the CK and the /CK.
This high-speed data transfer is realized by the 2 bits
prefetch-pipelined architecture. Data strobe (DQS)
both for read and write are available for high speed and
reliable data bus design. By setting extended mode
register, the on-chip Delay Locked Loop (DLL) can be
set enable or disable. This module provides high
density mounting without utilizing surface mount
technology. Decoupling capacitors are mounted
beside each TSOP on the module board.
Features
• 184-pin socket type dual in line memory module
(DIMM)
 PCB height: 31.75mm
 Lead pitch: 1.27mm
• 2.5V power supply
• Data rate: 333Mbps (max.)
• 2.5 V (SSTL_2 compatible) I/O
• Double Data Rate architecture; two data transfers per
clock cycle
• Bi-directional, data strobe (DQS) is transmitted
/received with data, to be used in capturing data at
the receiver
• Data inputs and outputs are synchronized with DQS
• 4 internal banks for concurrent operation
(Component)
• DQS is edge aligned with data for READs; center
aligned with data for WRITEs
• Differential clock inputs (CK and /CK)
• DLL aligns DQ and DQS transitions with CK
transitions
• Commands entered on each positive CK edge; data
referenced to both edges of DQS
• Data mask (DM) for write data
• Auto precharge option for each burst access
• Programmable burst length: 2, 4, 8
• Programmable /CAS latency (CL): 2, 2.5
• Refresh cycles: (8192 refresh cycles /64ms)
 7.8µs maximum average periodic refresh interval
• 2 variations of refresh
 Auto refresh
 Self refresh
Document No. E0454E10 (Ver. 1.0)
Date Published January 2004 (K) Japan
URL: http://www.elpida.com
Elpida Memory, Inc. 2004