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| Unit Price: | £ |
| Part No: | FECMK32X5M2E60C36 |
| Manufacturer No: | CMK32GX5M2E6000C36 |
| Delivery: | Out Of Stock |
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The Corsair CMK32X5M2E60C36 Vengeance DDR5 memory kit provides 32GB of total capacity across two 16GB modules, giving compatible desktop systems a balanced dual-module configuration for gaming, content creation and demanding multitasking. With a tested speed of up to 6000 MT/s and 36-44-44-96 timings at 1.35V, it combines high-frequency DDR5 operation with CL36 latency. Intel XMP support provides predefined memory settings for compatible platforms, while the 288-pin UDIMM format, aluminium heat spreader, compact form factor and hand-sorted memory chips make it a suitable addition to modern DDR5 desktop systems.
The kit combines two 16GB DDR5 modules to provide 32GB of total memory, giving compatible desktop systems a matched dual-module configuration.
The modules are tested for speeds of up to 6000 MT/s, providing a high data rate for compatible DDR5 desktop platforms. Reaching the tested speed requires requires overclocking/PC BIOS adjustments. Maximum speed and performance depend on system components, including motherboard and CPU..
The memory uses a tested timing profile of 36-44-44-96, providing CL36 CAS latency alongside the rated 6000 MT/s data rate.
Intel XMP support provides predefined memory settings for compatible systems, allowing supported motherboard firmware to apply the specified performance profile.
The solid aluminium heat spreader helps conduct heat away from the memory components while giving the modules their black Vengeance appearance.
The high-performance PCB supports signal quality and stability during high-frequency memory operation and provides a suitable foundation for overclocking.
The 288-pin UDIMM format provides the standard physical interface for compatible DDR5 desktop motherboards.
CORSAIR lists compatibility with Intel 700 Series and Intel 800 Series motherboards, subject to the capabilities of the complete system.
Built-in voltage regulation provides control over memory power delivery, while the overclock PMIC forms part of the module power management hardware.
The Corsair CMK32X5M2E60C36 Vengeance DDR5 memory kit provides 32GB of total capacity across two 16GB modules, giving compatible desktop systems a balanced dual-module configuration for gaming, content creation and demanding multitasking. With a tested speed of up to 6000 MT/s and 36-44-44-96 timings at 1.35V, it combines high-frequency DDR5 operation with CL36 latency. Intel XMP support provides predefined memory settings for compatible platforms, while the 288-pin UDIMM format, aluminium heat spreader, compact form factor and hand-sorted memory chips make it a suitable addition to modern DDR5 desktop systems.
The kit combines two 16GB DDR5 modules to provide 32GB of total memory, giving compatible desktop systems a matched dual-module configuration.
The modules are tested for speeds of up to 6000 MT/s, providing a high data rate for compatible DDR5 desktop platforms. Reaching the tested speed requires requires overclocking/PC BIOS adjustments. Maximum speed and performance depend on system components, including motherboard and CPU..
The memory uses a tested timing profile of 36-44-44-96, providing CL36 CAS latency alongside the rated 6000 MT/s data rate.
Intel XMP support provides predefined memory settings for compatible systems, allowing supported motherboard firmware to apply the specified performance profile.
The solid aluminium heat spreader helps conduct heat away from the memory components while giving the modules their black Vengeance appearance.
The high-performance PCB supports signal quality and stability during high-frequency memory operation and provides a suitable foundation for overclocking.
The 288-pin UDIMM format provides the standard physical interface for compatible DDR5 desktop motherboards.
CORSAIR lists compatibility with Intel 700 Series and Intel 800 Series motherboards, subject to the capabilities of the complete system.
Built-in voltage regulation provides control over memory power delivery, while the overclock PMIC forms part of the module power management hardware.
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