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Kingston KF556C40BBK2-64 FURY Beast DDR5 kit 64 GB 2 x 32 GB DIMM
- DDR5 Memory Technology
- Capacity: 64 GB (2 x 32 GB modules)
- Form Factor: DIMM
- Speed: 5600 MT/s
- Latency: CL40
- Voltage: 1.25V
- Unbuffered, Non-ECC
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Product Overview
The Kingston FURY Beast DDR5 kit provides a significant performance upgrade for gaming and demanding applications. This 64 GB kit, consisting of two 32 GB DIMMs, leverages the latest DDR5 technology for higher speeds and improved efficiency.
Technical Information
| Memory Type | DDR5 SDRAM |
| Module Configuration | 2 x 32 GB |
| Total Capacity | 64 GB |
| Speed Rating | PC5-44800 |
Additional Specifications
| Data Rate | 5600 MT/s |
| CAS Latency | CL40 |
| Voltage | 1.25 V |
| Features | Unbuffered, Non-ECC, Intel XMP 3.0 Ready |
Product Description
Kingston FURY Beast DDR5 memory is engineered to elevate your system's performance, offering substantial gains in speed and responsiveness over previous generations. With a total capacity of 64 GB, distributed across two high-density 32 GB modules, this kit is ideal for power users, content creators, and hardcore gamers who require ample memory for multitasking, complex simulations, and high-fidelity gaming environments. The DDR5 architecture introduces advanced features such as on-die ECC for improved data integrity and power management IC (PMIC) on the module itself for more stable voltage regulation. This translates to enhanced reliability and the potential for higher clock speeds. The KF556C40BBK2-64 specifically targets users seeking a balance of capacity, speed, and stability, with a rated speed of 5600 MT/s and a CAS latency of CL40, supported by a voltage of 1.25V. Installation is straightforward for compatible motherboards supporting DDR5 DIMMs. The kit is designed to be plug-and-play with Intel XMP 3.0 profiles, allowing for easy overclocking and performance tuning through the BIOS. This memory solution is a cornerstone for building or upgrading a high-performance PC, ensuring smooth operation even under the most demanding workloads and providing a future-proof foundation for next-generation computing.
