Hynix 8GB DDR4-PC4-19200 (DDR4 SDRAM-41920042400) Non-ECC UDIMM RAM HMA81GU6MFR8

$21.94

The Hynix HMA81GU6MFR8N-UH is a DDR4 SDRAM memory module designed for use in computers. It has a capacity of 8 GB and operates at a speed of PC4-19200 (DDR4-2400) MT/s. This unbuffered UDIMM module features a CAS latency of CL17 and runs at a voltage of 1.2 V.

SKU: 80AD01171391DEE824 Category:
 

Description

Hynix 8GB PC4-19200 DDR4-2400 1Rx8 UDIMM RAM HMA81GU6MFR8N-UH

The Hynix HMA81GU6MFR8N-UH is a DDR4 SDRAM memory module designed for use in computers. It has a capacity of 8 GB and operates at a speed of PC4-19200 (DDR4-2400) MT/s. This unbuffered UDIMM module features a CAS latency of CL17 and runs at a voltage of 1.2 V.


We have functionally tested and inspected this memory module to R2v3 standards prior to listing.

Technical Specifications

  • Brand: Hynix
  • Model: HMA81GU6MFR8N-UH
  • MPN: HMA81GU6MFR8NUH
  • Type: DDR4 SDRAM
  • Capacity per Module: 8 GB
  • Speed: PC4-19200 (DDR4-2400) MT/s
  • Bandwidth: PC4-19200
  • Form Factor: UDIMM
  • ECC: Non-ECC
  • Buffered/Registered: Unbuffered
  • Voltage: 1.2 V
  • CAS Latency: CL17
  • Rank Configuration: 1Rx8
  • Chip Density: 8 GB
  • Heatspreader: No
  • Total Capacity: 8 GB
  • Bus Speed: PC4-19200 (DDR4 SDRAM-41920042400)
  • Number of Modules: 1
  • Memory Features: Non-ECC, Unbuffered
  • Number of Pins: 288
  • Country of Origin: South Korea
  • Item Height: 31.25 mm
  • Item Length: 133.35 mm
  • Item Width: 7.0 mm

About This Item

The Hynix HMA81GU6MFR8N-UH is a DDR4 SDRAM memory module designed for use in computers. It has a capacity of 8 GB and operates at a speed of PC4-19200 (DDR4-2400) MT/s. This unbuffered UDIMM module features a CAS latency of CL17 and runs at a voltage of 1.2 V.

California Prop 65 Warning

This product contains a chemical known to the State of California to cause cancer.

Includes: Memory module(s) only

Does not Include: Original box, Documentation

R2V3: C6 / F3

Please review all photos for cosmetic condition and any noted defects.