AddOn - Upgrades 2GB DDR2 667

AddOn 2GB 240-Pin DDR2 667 (PC2 5300) A1371192-AA

AddOn 2GB 240-Pin DDR2 667 (PC2 5300) A1371192-AA

Seller Price Buy
Out of Stock
$13.99
+ $3.99 Shipping
Buy

* Pangoly may earn a commission when you use one of the links to make a purchase. (Disclosure)

Price Alert

$

Price alerts are not available for Amazon.

  • AddOn - Memory Upgrades 2GB 240-Pin DDR2 SDRAM DDR2 667 (PC2 5300) Desktop Memory Model A1371192-AA CAS Latency: 5 Voltage: 1.80V Buffered/Registered: Unbuffered Features: This Dell A1371192 compatible 2GB DDR2-667MHz Dual Rank Unbuffered 1.8V 240-pin CL5 UDIMM is 100% guaranteed to be compatible with your system and to work right the first time. Adding additional memory is the best way to increase the performance of your system. All our memory is built to strict JEDEC standards to meet or exceed the Tier 1 OEM's factory requirements. Our products are also guaranteed by federal law to not affect or void OEM warranties. For Dell Dimension XPS 420; XPS 420

Specifications Overview

Model A1371192-AA
Type 240-pin DDR2 DIMM
Speed DDR2-667 MHz
Size 2GB (1 x 2GB)
CAS Latency 5
First Word Latency 14.99 ns
Voltage 1.8 V
Heat Spreader No
ECC Support No

RAM First Word Latency Table (nanoseconds)

Latency is measured in nanoseconds, which is a combination of frequency and CAS. Both frequency increases and latency decreases result in better system performance (when latency is the same, always prefer higher frequency if possible).

Frequency (MT/s)

667 800
5 14.99 12.50
6 17.99 15.00
CAS (clock cycles) Lower latency means faster memory.

Distribution of First Word Latencies for Similar RAM Modules

The histogram below shows the distribution of first word latencies (in nanoseconds) for all RAM modules of the same DDR type and frequency in our database. Each bar represents the number of modules that fall within a specific latency range. The highlighted bar indicates the latency of the currently selected RAM module.

Compare AddOn - Upgrades 2GB DDR2 667 with similar Memory

View more comparisons ►

x