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Comparison Corsair Dominator Titanium RGB DDR5 2x16Gb CMP32GX5M2B6000C30 vs G.Skill Trident Z5 RGB DDR5 2x16Gb F5-6000J3040F16GX2-TZ5RS

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Corsair Dominator Titanium RGB DDR5 2x16Gb CMP32GX5M2B6000C30
G.Skill Trident Z5 RGB DDR5 2x16Gb F5-6000J3040F16GX2-TZ5RS
Corsair Dominator Titanium RGB DDR5 2x16Gb CMP32GX5M2B6000C30G.Skill Trident Z5 RGB DDR5 2x16Gb F5-6000J3040F16GX2-TZ5RS
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Memory capacity32 GB32 GB
Memory modules22
Form factorDIMMDIMM
TypeDDR5DDR5
Specs
Memory speed6000 MHz6000 MHz
Clock speed48000 MB/s48000 MB/s
CAS latencyCL30CL30
Memory timing30-36-36-7630-40-40-96
Voltage1.4 V1.35 V
Coolingradiatorradiator
Module profilestandardstandard
More features
overclocking series
XMP
lighting
overclocking series
XMP
lighting
Lighting syncCorsair iCUEmulti compatibility
Color
Added to E-Catalogoctober 2023december 2022

Memory timing

Timing is a term that refers to the time it takes to complete an operation. To understand the timing scheme, you need to know that structurally RAM consists of banks (from 2 to 8 per module), each of which, in turn, has rows and columns, like a table; when accessing memory, the bank is selected first, then the row, then the column. The timing scheme shows the time during which the four main operations are performed when working with RAM, and is usually written in four digits in the format CL-Trcd-Trp-Tras, where

CL is the minimum delay between receiving a command to read data and the start of their transfer;

Trcd — the minimum time between the selection of a row and the selection of a column in it;

Trp is the minimum time to close a row, that is, the delay between the signal and the actual closing. Only one bank line can be opened at a time; Before opening the next line, you must close the previous one.

Tras — the minimum time the row is active, in other words, the shortest time after which the row can be commanded to close after it has been opened.

Time in the timing scheme is measured in cycles, so the actual memory performance depends not only on the timing scheme, but also on the clock frequency. For example, 1600 MHz 8-8-8-24 memory will run at the same speed as 800 MHz 4-4-4-12 memory—in either case timings, if expressed in nanoseconds, will be 5-5-5-15.

Voltage

The nominal voltage required for the operation of the memory module. When choosing memory, you must pay attention to the fact that the appropriate voltage is supported by the motherboard.

Lighting sync

The timing technology provided by the backlit memory module (see "Options").

Synchronization itself allows you to "match" the backlighting of the memory with the backlighting of other system components — the motherboard, processor, graphics card, case, keyboard, mouse, etc. Thanks to this matching, all components can change colour synchronously, turn on / off at the same time, etc. The specific features of the operation of such a backlight depend on the synchronization technology used, and, usually, each manufacturer has its own (Aura Sync for Asus, RGB Fusion for Gigabyte, etc.). The compatibility of the components also depends on this: they must all support the same technology. So the easiest way to achieve backlight compatibility is to collect components from the same manufacturer. However, there are many memory modules in the multi compatibility format — that is, capable of working with several backlight technologies at once. Usually, such memory is produced by manufacturers that do not have their own backlight technologies; a specific list of compatible technologies should be specified separately.
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