EK launches its water block for NVIDIA RTX A6000
EK, a leading provider of computer cooling solutions, has added an enterprise-level GPU water block to its product line for NVIDIA GeForce RTX A6000 graphics cards. This new water block features a CNC-machined, nickel-plated copper base and a laser-cut stainless steel top for a robust, all-metal cooling solution.
The EK-Pro GPU WB RTX A6000 Water Block – Nickel + Stainless Steel, is presented as a liquid cooling solution, specifically designed for RTX A6000 graphics cards, the professional evolution of the RTX 4000 series. This block directly cools the GPU, VRAM, and VRM by channeling the coolant directly onto these critical areas for GPU performance during demanding tasks.
EK Launches Water Block Solution for RTX A6000
The product utilizes an Open Split-Flow cooling motor design. This solution has proven superior to GPU water blocks in numerous tests. Its low hydraulic flow restriction allows it to be used with weaker water pumps or pumps operating at low speeds . Even in these cases, maximum performance is achieved. The jet plate geometry and fin structure have been optimized to provide uniform flow distribution with minimal losses and optimal performance, even in reverse water flow scenarios.

The base of the block is CNC machined from nickel-plated electrolytic copper. Its top is laser-cut from industrial-grade stainless steel. High-quality EPDM O-rings ensure a watertight seal. Brass standoffs come pre-installed, allowing for a safe and easy installation. The aesthetically pleasing backplate enhances the appearance and structural rigidity of your graphics card and provides passive cooling to the rear of the PCB's VRM area.
This version of the EK-Pro A6000 GPU water block features a 45º angled terminal block with two G1/4″ ports. This allows for easy integration with EK-Pro QDC kits and manifolds for high compute density applications. The water block comes equipped with a side standoff for GPU support applications, ensuring secure GPU mounting during shipping and chassis movement.