엔비디아의 루빈 아키텍처와 AMD의 RDNA 5 GPU가 2028년까지 지연될 것이라는 보도가 나왔다.
According to well-known hardware leaker Kepler_L2, both AMD and NVIDIA are not planning to ship their next-generation gaming GPUs in 2027. Posting on the Anandtech forums, Kepler_L2 stated that only one AMD chip, codenamed AT2, is scheduled for release next year, while the remainder of the lineup from both companies is planned for 2028.
AT2 is widely believed to be AMD’s RDNA 5-based successor to the Radeon RX 9070 XT, reportedly built around 64 compute units. While AMD’s broader RDNA 5 architecture is rumored to span multiple dies ranging from flagship to budget tiers, this leak suggests most of those products will not arrive until 2028.
NVIDIA’s roadmap appears similarly constrained. Kepler_L2 directly dismissed a recent claim from Moore's Law Is Dead suggesting the GeForce RTX 6090 could still launch in 2027, labeling the assertion incorrect. Additionally, prospects for the rumored RTX 50 Super refresh remain dim. When asked directly about its likelihood, leaker MEGAsizeGPU stated, “I am not optimistic about it now. It may not be released at all.”
These reported delays align with ongoing industry-wide supply chain pressures. GDDR7 and general memory production have been heavily strained, with manufacturers increasingly redirecting manufacturing capacity toward HBM for AI accelerators rather than consumer graphics cards. This same memory bottleneck was previously cited as the cause for the RTX 50 Super’s delay earlier this year, and conditions have not significantly improved since.
If accurate, this timeline would mark one of the longest gaps between GPU generations in recent memory. AMD will at least deliver a single RDNA 5 chip to market in 2027, providing Radeon users with an update before the full next-generation lineup arrives. Meanwhile, NVIDIA enthusiasts awaiting a substantial RTX 60-series upgrade appear headed for a longer wait extending into 2028.
This report was compiled by Hassam Nasir Speed, a veteran tech journalist and editor with over eight years of experience in the consumer electronics industry. His technical background stems from early semiconductor experimentation, evolving into a career focused on deconstructing complex silicon architectures. Specializing in PC internal benchmarking and stress-testing flagship CPUs and GPUs, he translates high-level engineering developments into detailed, unbiased analysis for hardware enthusiasts.