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Kingston Launches Race Car-Inspired FURY Renegade DDR5 RGB Limited Edition Memory

Kingston Launches Race Car-Inspired FURY Renegade DDR5 RGB Limited Edition Memory

The new Kingston FURY Renegade DDR5 RGB Limited Edition features a physical design inspired by racing cars. As racing cars are all about speed, these kits are designed for high performance and overclocking. Available in 48 GB kits (2 x 24 GB), the Kingston FURY Renegade DDR5 RGB Limited Edition is Intel XMP 3.0 certified with 8000 MT/s speed and low latency CL36 timing.

Kingston FURY Renegade DDR5 RGB Limited Edition memory, image credit: Kingston.

Kingston FURY Renegade DDR5 RGB Limited Edition memory, image credit: Kingston.

SEE THE GALLERY – 2 IMAGES

The heat sink’s red and black design mimics that of a fast car on a race track, or, as Kingston puts it, “the aerodynamic look and feel of a race car ready to take on the curves of the circuit the hardest “. Additionally, the RGB strip is similar to what you’ll find on other Fury RGB kits. On a personal note, the RGB strip (at least with the colors we see in images) conflicts with red and black. It does feature a race car curve though, which is cool.

Kingston notes that the high-end components of this limited edition DDR5 memory have been factory tested to ensure they can support the speed of 8,000 MT/s. Additionally, Kingston FURY Renegade DDR5 RGB Limited Edition memory is qualified by leading motherboard manufacturers: MSI, ASUS, ASRock and GIGABYTE.

Here’s a look at the specs.

Kingston FURY Renegade DDR5 RGB limited edition memory

  • Capacity: 48 GB (2 x 24 GB)
  • Speed: 8000 MT/s
  • Latency/timing: CL36-48-48
  • Voltage: 1.45 V
  • Operating temperature: 0°C to 85°C
  • Dimensions: 133.35mm x 45.8mm x 8.26mm

“We are excited to offer our customers another memory option that seamlessly combines style and performance,” said Kristy Ernt, DRAM business manager at Kingston. “The Kingston FURY Renegade DDR5 RGB Limited Edition features a striking new design and leverages the latest technologies to achieve an aggressive 8,000 MT/s, and fuels extreme overclocking potential while minimizing performance bottlenecks. performance.”