Intel Core Ultra 7 270K Plus leads a new 2-part refresh of the company's Core Ultra Series 2 Arrow Lake family
of desktop processors. These aren't just speed-bumps over existing SKUs, but come with increased CPU core
counts, more L3 cache, minor increases in clock speeds, faster uncore frequencies, and a brand new
software-side update that makes games more aware of Intel's contemporary x86 architecture, extracting more
performance. The other SKU from today's release is the Core Ultra 5 250K Plus, which we've reviewed here.
Intel's Core Ultra Series 2 Arrow Lake generation received mixed reviews despite the company significantly
increasing the IPC of its E-cores over the previous generation, and massively gaining on the energy efficiency
front, thanks to the new TSMC 3 nm node for the Compute tile, a node more advanced than even the TSMC 4 nm
that AMD uses for its Ryzen 9000 Zen 5 series. On its own, the new Lion Cove P-core is touted to offer an IPC
increase over the previous Raptor Lake core, but it lacks support for Hyper-Threading, and since the CPU core
counts haven't increased over the previous generation Raptor Lake, the overall thread count of the processor
has reduced. With its 2026 refresh of Arrow Lake, Intel attempts to address this shortfall in thread counts by
increasing core counts for the two new SKUs over the chips they are intended to replace.
The Core Ultra 7 270K Plus replaces the current Core Ultra 7 265K, it launches at an aggressive price of $300,
which is a whole $100 cheaper than what the 265K launched at. While the 265K is carved out of the Arrow Lake-S
silicon with a core-configuration of 8 performance cores and 12 efficiency cores (8P+12E) with 30 MB of L3
cache, the new 270K Plus maxes out the silicon, enabling the entire 8P+16E cores present, along with the
entire 36 MB slab of L3 cache. All that sets the 270K Plus apart from the flagship Core Ultra 9 285K, on
paper, is a slightly lower maximum P-core boost frequency of 5.50 GHz vs. 5.70 GHz, resulting from a lack of
Thermal Velocity Boost algorithm. But wait, there's more. The 270K Plus and 250K Plus come with new Intel
Binary Optimization technology that all previous Arrow Lake chips, including the 285K, lack support for, at
least currently.
Intel Binary Optimization Technology is a new software feature-addition by Intel for the 270K Plus and 250K
Plus, which builds on top of Intel Application Performance Optimization (APO). It provides a user front-end
for APO, letting software change the way machine code from a game's binaries is executed by the processor, to
better utilize the various innovations Intel made for its microarchitecture. This feature is an opt-in by
users, and Intel releases game-specific optimization through regular software updates under its new Intel
Platform Performance Package (IPPP) releases. Much like monthly graphics driver updates by GPU manufacturers,
IPPP will keep the drivers of the various processor- and chipset-integrated devices up-to-date, and bring in
new or updated profiles for Binary Optimization.
The underlying Intel Arrow Lake microarchitecture remains unchanged from Intel's 2024 debut. Intel's first
desktop processor to implement a disaggregated tile-based chip design realizing the IDM 2.0 vision of former
CEO Pat Gelsinger, Arrow Lake combines a Compute tile based on TSMC 3 nm foundry node. This contains the CPU
complex consisting of up to 8 Lion Cove P-cores, and up to 16 Skymont E-cores, sharing 36 MB of L3 cache. The
SoC tile, built on the TSMC 6 nm node, contains the processor's integrated memory controllers, a 13 TOPS NPU,
and a PCI-Express Gen 5 root complex, which it wires out with a little assistance from a breakout I/O tile
built on the same node. The Graphics tile, built on TSMC 5 nm, contains the processor's Xe-LPG iGPU with up to
4 Xe cores.
As stated earlier, the Core Ultra 7 270K Plus maxes out the Arrow Lake-S silicon, enabling all 8 P-cores, and
all 16 E-cores, along with the entire 36 MB L3 cache. The P-cores boost up to 5.50 GHz, while the E-cores go
up to 4.70 GHz. The chip lacks the Thermal Velocity Boost feature that the flagship 285K offers, but gives you
classic Turbo Boost 2.0, and Turbo Boost Max 3.0, for maximum boost frequency bins across a set number of UEFI
CPPC preferred cores. The chip comes with 125 W processor base power, and 250 W maximum turbo power. Intel has
increased the die-to-die frequencies of the fabric connecting the Compute and SoC tiles, by 900 MHz over what
the 265K comes with. Intel already offers a die-to-die frequency increase that's covered by warranty, under
the "Core 200S Boost mode" feature that it released as a UEFI BIOS setting through motherboard vendors and
OEMs last year.
Perhaps the biggest "feature" of the new 270K Plus is its price, with Intel pricing it at just $300. The 265K
launched at $400, before price-cuts brought it down to roughly $340, less for the KF variant. The aggressive
launch price is Intel doing its bit to offset brutal memory and SSD prices that are putting gamers off from
building or upgrading their rigs. With this price, Intel also places AMD on notice, the 270K Plus squares off
against a plethora of Ryzen 9000-series SKUs, including the Ryzen 7 9800X3D, Ryzen 9 9900X, and Ryzen 7 9700X,
which it hopes to comprehensively outclass.