V-Color TE524G72S834SKK 48GB (2x24GB) DDR5 7200MHz

V-Color TE524G72S834SKK 48GB (2x24GB) DDR5 7200MHz CL34 1Rx8 OC ECC UNBUFFERED DIMM 1.4V

V-Color TE524G72S834SKK 48GB (2x24GB) DDR5 7200MHz CL34 1Rx8 OC ECC UNBUFFERED DIMM 1.4V

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  • Product Specification: DDR5 OC ECC U-DIMM ( Overclocking ECC Unbuffered DIMM) Pin: 288 Pin Memory Capacity: 48GB (24GBx2) Speed: 7200MHz (PC5-57600) Latency: CL34 IC Configuration: 3Gx8 Rank: 1Rx8 Equipped with premium Hynix ICs, each module is rigorously tested using advanced auto-sorting equipment designed by v-color to ensure stable and reliable performance.

Specifications Overview

Model TE524G72S834SKK
Type 288-pin DDR5 DIMM
Speed DDR5-7200 MHz
Size 48GB (2 x 24GB)
CAS Latency 34
Timing 34-45-45-112
First Word Latency 9.44 ns
Voltage 1.4 V
Heat Spreader Yes
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)

5600 6000 6200 6400 6600 6800 7000 7200 7400 7600 7800 8000 8200 8400
28 10.00 9.33 9.03 8.75 8.48 8.24 8.00 7.78 7.57 7.37 7.18 7.00 6.83 6.67
29 10.36 9.67 9.35 9.06 8.79 8.53 8.29 8.06 7.84 7.63 7.44 7.25 7.07 6.90
30 10.71 10.00 9.68 9.38 9.09 8.82 8.57 8.33 8.11 7.89 7.69 7.50 7.32 7.14
31 11.07 10.33 10.00 9.69 9.39 9.12 8.86 8.61 8.38 8.16 7.95 7.75 7.56 7.38
32 11.43 10.67 10.32 10.00 9.70 9.41 9.14 8.89 8.65 8.42 8.21 8.00 7.80 7.62
33 11.79 11.00 10.65 10.31 10.00 9.71 9.43 9.17 8.92 8.68 8.46 8.25 8.05 7.86
34 12.14 11.33 10.97 10.63 10.30 10.00 9.71 9.44 9.19 8.95 8.72 8.50 8.29 8.10
35 12.50 11.67 11.29 10.94 10.61 10.29 10.00 9.72 9.46 9.21 8.97 8.75 8.54 8.33
36 12.86 12.00 11.61 11.25 10.91 10.59 10.29 10.00 9.73 9.47 9.23 9.00 8.78 8.57
37 13.21 12.33 11.94 11.56 11.21 10.88 10.57 10.28 10.00 9.74 9.49 9.25 9.02 8.81
38 13.57 12.67 12.26 11.88 11.52 11.18 10.86 10.56 10.27 10.00 9.74 9.50 9.27 9.05
39 13.93 13.00 12.58 12.19 11.82 11.47 11.14 10.83 10.54 10.26 10.00 9.75 9.51 9.29
40 14.29 13.33 12.90 12.50 12.12 11.76 11.43 11.11 10.81 10.53 10.26 10.00 9.76 9.52
41 14.64 13.67 13.23 12.81 12.42 12.06 11.71 11.39 11.08 10.79 10.51 10.25 10.00 9.76
42 15.00 14.00 13.55 13.13 12.73 12.35 12.00 11.67 11.35 11.05 10.77 10.50 10.24 10.00
43 15.36 14.33 13.87 13.44 13.03 12.65 12.29 11.94 11.62 11.32 11.03 10.75 10.49 10.24
44 15.71 14.67 14.19 13.75 13.33 12.94 12.57 12.22 11.89 11.58 11.28 11.00 10.73 10.48
45 16.07 15.00 14.52 14.06 13.64 13.24 12.86 12.50 12.16 11.84 11.54 11.25 10.98 10.71
46 16.43 15.33 14.84 14.38 13.94 13.53 13.14 12.78 12.43 12.11 11.79 11.50 11.22 10.95
47 16.79 15.67 15.16 14.69 14.24 13.82 13.43 13.06 12.70 12.37 12.05 11.75 11.46 11.19
48 17.14 16.00 15.48 15.00 14.55 14.12 13.71 13.33 12.97 12.63 12.31 12.00 11.71 11.43
49 17.50 16.33 15.81 15.31 14.85 14.41 14.00 13.61 13.24 12.89 12.56 12.25 11.95 11.67
50 17.86 16.67 16.13 15.63 15.15 14.71 14.29 13.89 13.51 13.16 12.82 12.50 12.20 11.90
51 18.21 17.00 16.45 15.94 15.45 15.00 14.57 14.17 13.78 13.42 13.08 12.75 12.44 12.14
52 18.57 17.33 16.77 16.25 15.76 15.29 14.86 14.44 14.05 13.68 13.33 13.00 12.68 12.38
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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