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Kingston FURY Beast 32 GB (2 x 16GB) DDR5 SDRAM Memory (KF568C34BBEAK2-32)
$334.48
  • Up to 6800 MHz speed with unbuffered signal for playing the latest games and using heavy software
  • Whether you are playing games, using heavy loaded OS or video editing software, the 32 GB of memory will make them run in a flash
  • DDR5 SDRAM memory technology effectively enables data to be moved at various points in a CPU clock cycle to allow maximum productivity
New at Staples

Kingston FURY Beast 32 GB (2 x 16GB) DDR5 SDRAM Memory (KF568C34BBEAK2-32)

Item #: TS114032619Model #: KF568C34BBEAK2-32
Final price is $334.48

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  • About this product

    Kingston FURY KF568C34BBEAK2-32 is a kit of two 2G x 64-bit (16GB) DDR5-6800 CL34 SDRAM (Synchronous DRAM) 1Rx8, memory module, based on eight 2G x 8-bit FBGA components per module. Each module kit supports AMD® EXPO v1.1 and Intel® Extreme Memory Profiles (Intel® XMP) 3.0. Total kit capacity is 32GB. Each module has been tested to run at DDR5-6800 at a low latency timing of 34-45-45 at 1.4V. The SPDs are programmed to JEDEC standard latency DDR5-4800 timing of 40-39-39 at 1.1V. Each 288-pin DIMM uses gold contact fingers. The JEDEC standard electrical and mechanical specifications are as follows: FACTORY TIMING PARAMETERS Default (JEDEC): DDR5-4800 CL40-39-39 @1.1V EXPO Profile #0: DDR5-6800 CL34-45-45 @1.4V EXPO Profile #1: DDR5-6400 CL32-39-39 @1.4V XMP Profile #1: DDR5-6800 CL34-45-45 @1.4V XMP Profile #2: DDR5-6400 CL32-39-39 @1.4V FEATURES Power Supply: VDD = 1.1V Typical VDDQ = 1.1V Typical VPP = 1.8V Typical VDDSPD = 1.8V to 2.0V On-Die ECC Height 1.66" (42.23mm), w/heatsink

    • Up to 6800 MHz speed with unbuffered signal for playing the latest games and using heavy software
    • Whether you are playing games, using heavy loaded OS or video editing software, the 32 GB of memory will make them run in a flash
    • DDR5 SDRAM memory technology effectively enables data to be moved at various points in a CPU clock cycle to allow maximum productivity
    • 2 x 16GB modules for enhanced memory reliability and productivity