
EKWB EK-Quantum Velocity² Direct Die D-RGB - 1700 Nickel + Plexi
EKWB

Description
• CPU Compatibility: Delidded Intel LGA 1700 • Coldplate: 99.99% pure nickel-plated copper • Ports: 2 x G1/4 inch • RGB: 3-pin 5V digital LED header • Mounting: Includes ILM replacement mechanism
FULL DESCRIPTION
For the elite builders in Riyadh and Dubai who refuse to let thermal throttling dictate their rank, the EK-Quantum Velocity² Direct Die D-RGB is the final frontier in chasing maximum clock stability.
When you strip the integrated heat spreader off your Intel processor, you aren't just saving degrees; you are unlocking the hidden potential of your silicon to sustain peak boost clocks during marathon sessions of Warzone or high-fidelity ray tracing in Cyberpunk 2077. By making direct contact with the silicon die using the included Thermal Grizzly Conductonaut, you eliminate the single greatest bottleneck in your loop, ensuring your CPU runs cool even when the external ambient temperatures in the region spike. This isn't just about lower temperatures—it's about removing the micro-stutters and frequency dips that occur when your processor hits its thermal ceiling during a clutch 1v4 situation.
The 99.99% pure electrolytic copper coldplate does more than look surgical; it acts as a high-speed thermal siphon that pulls heat away from the core instantly, allowing your custom loop to absorb massive wattage without breaking a sweat. By cutting out the middleman of the CPU’s metal cap, you achieve the thermal headroom required for aggressive overclocking, keeping your frame times consistent and your performance ceiling higher than any standard heat sink could ever dream of.
Engineered for the demanding environments of the Middle East, this block is built for longevity and reliability, backed by a robust support network that understands the specific cooling challenges of our desert climate.
Because this system requires a delidded processor and a precise mounting process, it represents the ultimate enthusiast milestone for those ready to move past standard builds and into the realm of professional-grade thermal engineering.