Overview The Kingston KF564C32RW-16 is a 16GB DDR5 memory module designed to deliver high-speed performance at 6400MT/s with a low CL32 latency. It is built to enhance responsiveness for demanding gaming, creative workloads, and multitasking on desktop systems that support DDR5 memory. The module features a 288-pin UDIMM form factor and comes with Intel XMP 3.0 profiles for easy overclocking without manual adjustments. Key features High-speed DDR5 memory running at 6400MT/s to improve data transfer rates and system responsiveness. Low CL32 latency that reduces delay in processing tasks, benefiting gaming and professional applications. Intel XMP 3.0 support allows users to activate optimized performance profiles directly from the BIOS. Aluminum heat spreader in silver and white efficiently dissipates heat to maintain stable operation during extended use. 288-pin UDIMM design ensures compatibility with modern desktop motherboards supporting DDR5 memory. Clean two-tone finish complements contemporary PC builds, especially those with white or silver themes. Key specs Memory capacity: 16 GB Memory type: DDR5 SDRAM Speed: 6400MT/s Latency: CL32 Form factor: 288-pin UDIMM Heat spreader: Aluminum, silver and white finish Compatibility: Desktop motherboards supporting DDR5 Intel XMP version: 3.0 Performance and reliability This memory module is engineered to maintain consistent performance even under heavy workloads such as gaming marathons or complex content creation tasks. The aluminum heat spreader helps prevent thermal throttling by efficiently managing heat, which contributes to system stability and longevity. Its factory-tuned XMP profiles simplify the process of achieving peak speeds, making it accessible for users who want high performance without manual tuning. Ideal uses and environments The Kingston KF564C32RW-16 is well suited for gamers seeking faster load times and smoother gameplay, content creators who require reliable memory for rendering and multitasking, and professionals running virtual machines or demanding applications. It fits naturally into high-performance desktop builds where speed, capacity, and thermal management are priorities.