SKU: CP2K16G60C36U5W

Crucial Pro DDR5 32GB RAM Kit (2×16GB) 6000MT/s CL36 1.35V Overclocking Gaming Memory Modules with Intel XMP 3.0 & AMD EXPO, Low-Latency DDR5 OC Memory | WHITE ~ CP2K16G60C36U5W

Description

🧠 Expert Features – Crucial Pro Overclocking DDR5 (32GB Kit 6000MT/s White)

  • DDR5-6000 Speed Boost – Unleash blistering 6000MT/s bandwidth for AAA games that chew RAM like popcorn.
  • Low-Latency Powerhouse (CL36) – Every nanosecond counts. Slice delay, boost FPS, and shave milliseconds off load times.
  • Intel XMP 3.0 + AMD EXPO Dual Support – One kit, two worlds. Whether you’re Team Blue or Team Red, this RAM bends the knee to your UEFI/BIOS settings.
  • Stable Overclocking Ready – Tuned for next-gen multi-core CPUs and built with onboard PMIC for tighter voltage regulation.
  • Pro-Grade Reliability – Micron silicon, premium screening, and strict component testing to ensure consistent high-frequency performance.
  • Perfect for Modern Builds – Ideal for 12th–14th Gen Intel® Core™ and AMD Ryzen™ 7000/8000/9000 series desktop setups.
  • On-Die ECC (ODECC) – Adds internal data correction for improved stability during hardcore gaming sessions and heavy workloads.
  • White Heatspreader Aesthetic – Clean, minimal, and perfect for bright, icy, or monochrome gaming rigs.
  • Plug-and-Play JEDEC Safety Net – Even if you don’t tune profiles, boot safely at JEDEC timings (36-38-38-80).

⚙️ Expert Specs 

Category Specification
Brand Crucial
Series Crucial Pro Overclocking DDR5
Model Number CP2K16G60C36U5W
Capacity 32GB Kit (2×16GB)
Technology DDR5
Module Type UDIMM
Color White
Speed DDR5-6000 MT/s
CAS Latency CL36
Timings 36-38-38-80
Voltage 1.35V (5V ext via PMIC)
Die Density 16Gb
XMP 3.0 Profile 1 6000MT/s 36-38-38-80
XMP 3.0 Profile 2 5600MT/s 36-38-38-80
EXPO Profile 1 6000MT/s 36-38-38-80
EXPO Profile 2 5600MT/s 36-38-38-80
Default JEDEC 36-38-38-80
ECC Type On-Die ECC (ODECC only, not system-level ECC)
Compatible Platforms Intel 12th–14th Gen, AMD Ryzen 7000/8000/9000 Series
Recommended Use Gaming, overclocked systems, multi-core workloads