Memonex Quick'n Series DDR Product List

Single Channel Memory Modules
Dual Channel Memory Kits
KHX image
MQ:DDR - Memonex Quick'n memory is designed based on the latest DDR specifications available, and is 100% tested at Memonex's flagship factories. Plus, these Memonex modules come with the standard Memonex lifetime warranty. Built with the best-quality components, Memonex Quick'n is competitively priced and is the choice for the serious gamer. Quick'n is available in single and dual channel memory kits.



SINGLE CHANNEL MEMORY MODULES
DDR 333MHz (PC2700)
Memonex
Part Number
Description †Latency
Timings
Voltage
MQ2700/256 256MB 333MHz DDR Non-ECC CL2 2-2-2-5-1 2.5V
MQ2700/512 256MB 333MHz DDR Non-ECC CL2 2-2-2-5-1 2.5V
DDR 400MHz (PC3200)
Memonex
Part Number
Description †Latency
Timings
Voltage
MQ3200A/256 256MB 400MHz DDR Non-ECC CL2 2-3-2-6-1 2.6V
MQ3200A/512 512MB 400MHz DDR Non-ECC CL2 2-3-2-6-1 2.6V
MQ3200UL/256 256MB 400MHz DDR Non-ECC CL2 2-2-2-5-1 2.6V
MQ3200UL/512 512MB 400MHz DDR Non-ECC CL2 2-2-2-5-1 2.6V
MQ3200/1G 1GB 400MHz DDR Non-ECC CL2.5 2.5-3-3-7-1 2.6V
DDR 434MHz (PC3500)
Memonex
Part Number
Description †Latency
Timings
Voltage
MQ3500A/256 256MB 434MHz DDR Non-ECC CL2.5 2.5-3-3-7-1 2.6V
MQ3500A/512 512MB 434MHz DDR Non-ECC CL2.5 2.5-3-3-7-1 2.6V
DDR 500MHz (PC4000)
Memonex
Part Number
Description †Latency
Timings
Voltage
MQ4000/256 256MB 500MHz DDR Non-ECC CL3 3-4-4-8-1 2.6V
MQ4000/512 512MB 500MHz DDR Non-ECC CL3 3-4-4-8-1 2.6V
DDR 533MHz (PC4300)
Memonex
Part Number
Description †Latency
Timings
Voltage
MQ4300/256 256MB 533MHz DDR Non-ECC CL3 3-4-4-8-1 2.7V
MQ4300/512 512MB 533MHz DDR Non-ECC CL3 3-4-4-8-1 2.7V

DUAL CHANNEL MEMORY KITS
DDR 333MHz (PC2700)
Memonex
Part Number
Description †Latency
Timings
Voltage
MQ2700K2/512 512MB 333MHz DDR Non-ECC CL2
(Kit of 2 - 256MB)
2-2-2-5-1 2.5V
MQ2700K2/1G 1GB 333MHz DDR Non-ECC CL2
(Kit of 2 - 512MB)
2-2-2-5-1 2.5V
DDR 400MHz (PC3200)
Memonex
Part Number
Description †Latency
Timings
Voltage
MQ3200AK2/512 512MB 400MHz DDR Non-ECC CL2
(Kit of 2 - 256MB)
2-3-2-6-1 2.6V
MQ3200AK2/1G 1GB 400MHz DDR Non-ECC CL2
(Kit of 2 - 512MB)
2-3-2-6-1 2.6V
MQ3200ULK2/512 512MB 400MHz DDR Non-ECC CL2
(Kit of 2 - 256MB)
2-2-2-5-1 2.6V
MQ3200ULK2/1G 1GB 400MHz DDR Non-ECC CL2
(Kit of 2 - 512MB)
2-2-2-5-1 2.6V
MQ3200K2/2G 2GB 400MHz DDR Non-ECC CL2.5
(Kit of 2 - 1GB)
2.5-3-3-7-1 2.6V
DDR 434MHz (PC3500)
Memonex
Part Number
Description †Latency
Timings
Voltage
MQ3500AK2/512 512MB 434MHz DDR Non-ECC CL2.5
(Kit of 2 - 256MB)
2.5-3-3-7-1 2.6V
MQ3500AK2/1G 1GB 434MHz DDR Non-ECC CL2.5
(Kit of 2 - 512MB)
2.5-3-3-7-1 2.6V
DDR 500MHz (PC4000)
Memonex
Part Number
Description †Latency
Timings
Voltage
MQ4000K2/512 512MB 500MHz DDR Non-ECC CL3
(Kit of 2 - 256MB)
3-4-4-8-1 2.6V
MQ4000K2/1G 1GB 500MHz DDR Non-ECC CL3
(Kit of 2 - 512MB)
3-4-4-8-1 2.6V
DDR 533MHz (PC4300)
Memonex
Part Number
Description †Latency
Timings
Voltage
MQ4300K2/512 512MB 533MHz DDR Non-ECC CL3
(Kit of 2 - 256MB)
3-4-4-8-1 2.7V
MQ4300K2/1G 1GB 533MHz DDR Non-ECC CL3
(Kit of 2 - 512MB)
3-4-4-8-1 2.7V

† The information below will help illustrate the appropriate settings when adjusting the memory timings in the motherboard BIOS for optimum performance. Please note that these settings may vary depending on motherboard make/model or BIOS update.

Sample:
Part Number Timings
MQ3200A/512 2-3-2-6-1


Timing Definition Abbreviations What it does
2 CAS Latency CL Delay between activation of row and reading of row
3 RAS to CAS
(or Row to Column Delay)
tRCD Activates row
2 Row Precharge Delay
(or RAS Precharge Delay)
tRP/tRCP Deactivates row
6 Row Active Delay
(or RAS Active Delay,
or time to ready)
tRA/tRD/tRAS Number of clock cycles between activation and deactivation of row
1 Command Rate CMD Rate Delay between chip select and command
Notice: All Memonex products are tested to meet our published specifications. Some system or motherboard configurations may not operate at the published Quick'n memory speeds and timing settings. Memonex does not recommend that any user attempt to run their computers faster than the published speed. Overclocking or modifying your system timing may result in damage to computer components.
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