ANDROID Vivo V70 Lite 4G Adds 8,100mAh Battery, Drops 5G for Unisoc Chip STEAM Phantom Blade Zero Pre-Orders Hit 300K, Chasing Black Myth: Wukong INTEL Asus CX9406 Googlebook Leak: Panther Lake CPU, 16GB RAM, $1,383 Price GAMES GTA 6 Leaked Footage Shows Driving and Strip Club Scenes CONSOLES The Duskbloods Switch 2 Input Lag Hits 200ms in Network Test PC HARDWARE Philips Evnia 27-inch 260Hz Monitor Launches for $190 GAMES GTA 6 Leaks Hit Rockstar Morale, Netflix Unfazed by Early Footage AMD AMD Desktop CPU Share Hits 34.9% in Q2 2026 as Intel Loses Ground GAMES WWE 2K26 Patch 1.15 Adds Finn Balor Theme and Fixes Match Bugs NVIDIA Modern Warfare 4 Beta Nerfs Frangible Rounds and Footsteps GAMES Modern Warfare 4 Beta Patch Tweaks TTK and Footstep Audio SOFTWARE AND UPDATES Twitch Faces Class Action Lawsuit Over Unlicensed AI Training INTEL Lenovo ThinkPad L14 Gen 7 Launches with Wi-Fi 7 and Core Ultra 3 for $1,109 STEAM Settler’s Domain Launches on Steam With Native ARM Support

Intel Razor Lake leak: Mobile CPUs may finally get big Last Level Cache

Daniel Cross 0 comments 3 min read

Intel Razor Lake mobile processors may feature big Last Level Cache and Griffin Cove cores, according to new leaks. See what this means for performance.

Intel Razor Lake leak: Mobile CPUs may finally get big Last Level Cache
PC HARDWARE

's upcoming Razor Lake mobile processors are poised to change how gamers and creators handle heavy workloads. Leaks suggest the chips will finally include big Last Level Cache, or bLLC, a technology designed to compete directly with 's 3D V-Cache. This shift matters because larger caches reduce latency for data-intensive tasks, potentially boosting performance in gaming and creative applications without increasing power consumption. Buyers looking for high-end mobile CPUs should watch this architecture closely, as it addresses a long-standing weakness in Intel's mobile lineup.

Leaked specs suggest architectural shifts and cache upgrades for upcoming mobile processors

The core of this update lies in a completely new processor design. Leaker Jaykihn describes the Griffin Cove P-cores as a full architectural shift rather than a minor refinement of the previous Nova Lake generation. He notes that these new cores are completely different from the Coyote Cove cores found in earlier models. This separation allows Intel to implement specific optimizations for mobile efficiency that were not possible in the prior generation.

  • Cache Technology: bLLC (big Last Level Cache)
  • P-Core Architecture: Griffin Cove
  • Manufacturing Node: TSMC N2X or N2P
  • GPU Configuration (Razor Lake-S/HX): Two Xe3 GPU cores

Technical details point to significant changes in cache and manufacturing. Razor Lake mobile chips will reportedly use bLLC to expand their last-level cache capacity. The processors are also being developed for TSMC's N2X or N2P manufacturing nodes, which offer improved transistor density. These nodes are critical for managing the thermal output of the new Griffin Cove cores while maintaining high clock speeds.

Configuration details vary across different Razor Lake variants. The high-end Razor Lake-S and Razor Lake-HX models will retain two Xe3 GPU cores, similar to Nova Lake. However, the lower-end Razor Lake-AX models will likely reuse older Coyote Cove cores and skip the bLLC technology entirely. This segmentation ensures that flagship models lead the performance charge while budget options remain cost-effective.

We've been tracking Razor Lake closely — see our earlier coverage on Intel Nova Lake-S LGA1954 socket may support CPUs beyond Razor Lake. Intel has not officially confirmed any of these details, and the manufacturing node remains disputed between leakers. The information relies entirely on reports from industry analysts and unverified leaks.

Razor Lake represents a strategic move by Intel to close the gap with AMD in the mobile market. The introduction of bLLC and Griffin Cove cores aims to deliver tangible performance gains for users. Until Intel provides official confirmation, these details remain unverified but highly anticipated by the hardware community.

Source: NotebookCheck

Discussion

0 comments

Leave a comment