KLEVV CRAS X RGB 16GB (2 x 8GB) DDR4 3200MHz

KLEVV CRAS X RGB 16GB (2 x 8GB) DDR4 3200MHz CL16 SK Hynix Chips 288 Pin (KD48GU880-32A160X)

KLEVV CRAS X RGB 16GB (2 x 8GB) DDR4 3200MHz CL16 SK Hynix Chips 288 Pin (KD48GU880-32A160X)

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  • [Technical Specifications] Type: 288 Pin DDR4 RGB Unbuffered DIMM for Desktop, Capacity: 16GB Kit (2 x 8GB), Speed: 3200MHz, CL Value: 16-18-18-38, Operating Voltage: 1.35V
  • [Gemlike Light Diffuser to Show Vivid Lighting Flows] CRAS X RGB is featured with special-designed crystalline light diffuser, letting RGB lights spread out through different angles with more artistic look!
  • [Powerful & Sophisticated Aluminum Heat Spreader] CRAS X RGB applied metal heatsink made with pure aluminum to maximize the heat conductivity. Its linear engraving pattern further addresses our persuasion of elegance & modernism.
  • [Perfect RGB Gadget to Sync with Everything] You can freely use AURA SYNC, GIGABYTE RGB FUSION 2.0, MSI MYSTIC LIGHT SYNC and ASROCK POLYCHROME RGB software to control CRAS X RGB memory to sync with all supporting peripherals.
  • [Warranty] : Limited Lifetime Warranty

Specifications Overview

Model KD48GU880-32A160X
Type 288-pin DDR4 DIMM
Speed DDR4-3200 MHz
Size 16GB (2 x 8GB)
CAS Latency 16
Timing 16-18-18-38
First Word Latency 10 ns
Voltage 1.35 V
Heat Spreader Yes
ECC Support No
LED Color RGB

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)

2133 2400 2666 2800 2933 3000 3200 3300 3333 3400 3466 3600 3666 3733
13 12.19 10.83 9.75 9.29 8.86 8.67 8.13 7.88 7.80 7.65 7.50 7.22 7.09 6.96
14 13.13 11.67 10.50 10.00 9.55 9.33 8.75 8.48 8.40 8.24 8.08 7.78 7.64 7.50
15 14.06 12.50 11.25 10.71 10.23 10.00 9.38 9.09 9.00 8.82 8.66 8.33 8.18 8.04
16 15.00 13.33 12.00 11.43 10.91 10.67 10.00 9.70 9.60 9.41 9.23 8.89 8.73 8.57
17 15.94 14.17 12.75 12.14 11.59 11.33 10.63 10.30 10.20 10.00 9.81 9.44 9.27 9.11
18 16.88 15.00 13.50 12.86 12.27 12.00 11.25 10.91 10.80 10.59 10.39 10.00 9.82 9.64
19 17.82 15.83 14.25 13.57 12.96 12.67 11.88 11.52 11.40 11.18 10.96 10.56 10.37 10.18
20 18.75 16.67 15.00 14.29 13.64 13.33 12.50 12.12 12.00 11.76 11.54 11.11 10.91 10.72
21 19.69 17.50 15.75 15.00 14.32 14.00 13.13 12.73 12.60 12.35 12.12 11.67 11.46 11.25
22 20.63 18.33 16.50 15.71 15.00 14.67 13.75 13.33 13.20 12.94 12.69 12.22 12.00 11.79
23 21.57 19.17 17.25 16.43 15.68 15.33 14.38 13.94 13.80 13.53 13.27 12.78 12.55 12.32
24 22.50 20.00 18.00 17.14 16.37 16.00 15.00 14.55 14.40 14.12 13.85 13.33 13.09 12.86
25 23.44 20.83 18.75 17.86 17.05 16.67 15.63 15.15 15.00 14.71 14.43 13.89 13.64 13.39
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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