G.SKILL CAMM2 DDR5 Achieve 10000MT/s CL52 Milestone on ASUS ROG MAXIMUS Z890 HERO

G.Skill has officially achieved a new overclocking milestone for DDR5 CAMM2 memory modules with the help of ASUS Republic of Gamers (ROG) team. The two companies successfully pushed a 64GB DDR5 CAMM2 module to 10000MT/s on the ASUS ROG MAXIMUS Z890 HERO CAMM2 motherboard, with an impressive tightened CAS latency of CL52. This incredible achievement has been validated through rigorous testing and has taken the world of overclocking by storm.

The announcement made by G.Skill and ASUS has sent shockwaves in the tech industry, especially among gamers and overclocking enthusiasts. The collaboration between the two companies has proven to be a game-changer in the world of memory modules. This achievement has set a new benchmark for DDR5 CAMM2 memory modules and has opened up a whole new realm of possibilities for the future.

The G.Skill and ASUS ROG teams have been working tirelessly to push the limits of DDR5 CAMM2 memory modules since the launch of the ASUS ROG MAXIMUS Z890 HERO motherboard, which is specifically designed for DDR5 CAMM2 memory. The exceptional performance of the motherboard, coupled with the expertise of both teams, has made this milestone possible.

The 64GB DDR5 CAMM2 module was tested on the ASUS ROG MAXIMUS Z890 HERO motherboard, which is based on the Intel Z590 chipset. The motherboard is equipped with an ROG DIMM.2 module, which provides dedicated thermal protection for the DDR5 CAMM2 memory. This feature makes it possible to push the memory to its limits without any concerns about overheating.

Moreover, the motherboard also has an advanced power delivery system, which ensures a stable and consistent power supply to the memory modules. This is crucial for achieving such high speeds and tight timings. The combination of these features and the expertise of the overclocking teams has made this milestone a reality.

G.Skill has always been at the forefront of developing cutting-edge memory modules, and this achievement is a testament to their dedication and commitment to providing the best possible performance to their customers. Their CAMM2 DDR5 memory modules are designed with high-quality components and undergo extensive testing to ensure unmatched stability and reliability.

On the other hand, ASUS ROG is a well-known brand among gamers and overclockers, and their MAXIMUS series motherboards have always been a top choice for high-performance systems. The collaboration with G.Skill has further solidified their position as a leader in the world of overclocking.

The achievement of 10000MT/s with a CAS latency of CL52 is an impressive feat in itself, but the teams were able to go even further. The same 64GB DDR5 CAMM2 module was also pushed to 8400MT/s with a much tighter CAS latency of CL46. This just goes to show the immense potential of DDR5 CAMM2 memory modules, and it is just the beginning.

The results have been verified by CPU-Z, a popular benchmarking tool, and have been officially recognized by G.Skill and ASUS. This adds even more credibility to this milestone and is a testament to the accuracy of the results.

The G.Skill and ASUS ROG teams have once again shown that with the right combination of expertise, technology, and determination, anything is possible. This achievement has not only raised the bar for DDR5 CAMM2 memory modules but has also set the stage for even more groundbreaking developments in the future.

In conclusion, the collaboration between G.Skill and ASUS ROG has achieved a remarkable milestone by pushing a 64GB DDR5 CAMM2 module to 10000MT/s with a CL52 CAS latency on the ASUS ROG MAXIMUS Z890 HERO motherboard. This has once again proven that these two companies are at the forefront of innovation and are constantly pushing the boundaries of technology. This milestone has opened up a new world of possibilities for DDR5 CAMM2 memory modules and has set a new standard for high-performance systems. The future looks even more promising, and we cannot wait to see what G.Skill and ASUS have in store for us.

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