V-Color 512GB (8x64GB) DDR5 6000MHz OC R-DIMM

V-Color 512GB (8x64GB) DDR5 6000MHz OC R-DIMM CL36 4Gx4 2Rx4 ECC Registered DIMM 1.25V (AMD Expo) (TRA564G60D436O)

V-Color 512GB (8x64GB) DDR5 6000MHz OC R-DIMM CL36 4Gx4 2Rx4 ECC Registered DIMM 1.25V (AMD Expo) (TRA564G60D436O)

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  • Compatible with AMD WRX90 Workstation Motherboards. Overclocking E.X.P.O Profile
  • Product Specification- Memory Type: DDR5 OC R-DIMM (ECC Registered DIMM) | Chip: Hynix IC | Pin: 288 Pin
  • Memory Capacity: 512GB (64GBx8) | Speed: 6000MHz (PC5-48000) | Latency: CL36 | IC Configuration: 4Gx4 | Rank: 2Rx4
  • Equipped with new exclusive RCD and PMIC Micro-Heatsink for improved cooling efficiency.
  • Manufactured in-house with high-quality Hynix ICs, each IC undergoes rigorous testing using auto-sorting equipment designed by V-COLOR
  • 🔺 FOR WORKSTATION MOTHERBOARDS. NOT COMPATIBLE WITH DESKTOP PC AND LAPTOP.
  • Supports ECC functionality to detect and correct data errors and features a built-in temperature-monitoring thermal sensor to prevent overheating, thereby enhancing memory reliability. Operating temperature range: 0 to 85 °C
  • Limited Lifetime Warranty

Specifications Overview

Model TRA564G60D436O
Type 288-pin DDR5 DIMM
Speed DDR5-6000 MHz
Size 512GB (8 x 64GB)
CAS Latency 36
Timing 36-38-38-96
First Word Latency 12 ns
Voltage 1.25 V
Heat Spreader No
ECC Support Yes

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)

4400 4800 5000 5200 5600 6000 6200 6400 6600 6800 7000 7200 7400 7600
36 16.36 15.00 14.40 13.85 12.86 12.00 11.61 11.25 10.91 10.59 10.29 10.00 9.73 9.47
37 16.82 15.42 14.80 14.23 13.21 12.33 11.94 11.56 11.21 10.88 10.57 10.28 10.00 9.74
38 17.27 15.83 15.20 14.62 13.57 12.67 12.26 11.88 11.52 11.18 10.86 10.56 10.27 10.00
39 17.73 16.25 15.60 15.00 13.93 13.00 12.58 12.19 11.82 11.47 11.14 10.83 10.54 10.26
40 18.18 16.67 16.00 15.38 14.29 13.33 12.90 12.50 12.12 11.76 11.43 11.11 10.81 10.53
41 18.64 17.08 16.40 15.77 14.64 13.67 13.23 12.81 12.42 12.06 11.71 11.39 11.08 10.79
42 19.09 17.50 16.80 16.15 15.00 14.00 13.55 13.13 12.73 12.35 12.00 11.67 11.35 11.05
43 19.55 17.92 17.20 16.54 15.36 14.33 13.87 13.44 13.03 12.65 12.29 11.94 11.62 11.32
44 20.00 18.33 17.60 16.92 15.71 14.67 14.19 13.75 13.33 12.94 12.57 12.22 11.89 11.58
45 20.45 18.75 18.00 17.31 16.07 15.00 14.52 14.06 13.64 13.24 12.86 12.50 12.16 11.84
46 20.91 19.17 18.40 17.69 16.43 15.33 14.84 14.38 13.94 13.53 13.14 12.78 12.43 12.11
47 21.36 19.58 18.80 18.08 16.79 15.67 15.16 14.69 14.24 13.82 13.43 13.06 12.70 12.37
48 21.82 20.00 19.20 18.46 17.14 16.00 15.48 15.00 14.55 14.12 13.71 13.33 12.97 12.63
49 22.27 20.42 19.60 18.85 17.50 16.33 15.81 15.31 14.85 14.41 14.00 13.61 13.24 12.89
50 22.73 20.83 20.00 19.23 17.86 16.67 16.13 15.63 15.15 14.71 14.29 13.89 13.51 13.16
51 23.18 21.25 20.40 19.62 18.21 17.00 16.45 15.94 15.45 15.00 14.57 14.17 13.78 13.42
52 23.64 21.67 20.80 20.00 18.57 17.33 16.77 16.25 15.76 15.29 14.86 14.44 14.05 13.68
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.

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