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Intel Core Ultra 7 255H vs Intel Core Ultra 7 356H

Side-by-side comparison of features, pricing, ratings, and alternatives.

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Intel Core Ultra 7 255H
Intel Core Ultra 7 255HHigh-performance hybrid processor for laptops
Intel Core Ultra 7 356H
Intel Core Ultra 7 356HHigh-performance mobile processor with 16 cores
Overview
Description

The Intel Core Ultra 7 255H is a high-performance hybrid processor designed for laptops, featuring a combination of Performance-cores (P-cores) and Efficiency-cores (E-cores) for efficient processing. With its advanced architecture and integrated graphics, this processor delivers fast performance and long battery life.

The Intel Core Ultra 7 356H is a high-performance mobile processor designed for demanding applications. With 16 cores, it offers exceptional processing power and efficiency.

Pricing
Category
Processors (CPUs)
Processors (CPUs)
Best for
Gamers, content creators, and professionals
Gamers, Video Editors, Developers, Business Users
Specifications
Spec source
Verified
Cache & Power
tdp
28W (base), 115W (max turbo)
28W (up to 64W)
cache
24MB
24MB L3
process node
TSMC N3B (3nm)
TSMC N3B (3nm)
Core & Clock
cores
16 (6P + 8E + 2LP)
threads
16
32+100%
base clock
2.0 GHz (P-core)
3.6 GHz+80%
boost clock
5.1 GHz+2%
5.0 GHz
General
socket
FCBGA2049
BGA2833 (mobile), LGA1851 (desktop)
release date
2025-Q1
benchmark score
Cinebench R23 Multi: 18,500
Graphics & Memory
integrated graphics
Intel Arc 140T (8 Xe-cores, up to 2.25 GHz)
Intel Arc 140T
Specifications
TDP
15-25 W (max. boost up to 80 W)
Cores
16
L3 Cache
18MB (shared)
Transistor Size
2 nm
npu performance
45 TOPS (NPU)
Pros & Cons
Pros
  • High-performance processing
  • Efficient processing with low power consumption
  • Advanced security features
  • Integrated graphics with AI-enhanced capabilities
  • High-performance processing power
  • Efficient power management
  • Secure architecture
  • Portable design
Cons
  • Limited availability
  • High cost
  • Thermal management challenges
  • Limited software optimization
  • High power consumption
  • Expensive
  • Limited availability
Community & Metrics
Upvotes
0
0
User rating
Not enough data
Not enough data

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Intel Core Ultra 7 356H
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High-performance mobile processor with 16 cores

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Intel Core Ultra 7 255H
Intel Core Ultra 7 255H

High-performance hybrid processor for laptops

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Intel Core Ultra 9 285H
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The Verdict

AI-generated from listing data

The Intel Core Ultra 7 356H (A) delivers top-tier raw performance but consumes more power, while the Ultra 7 255H (B) offers a hybrid design with lower base power and similar graphics, making A the default for maximum compute and B for balanced laptop efficiency.

Key differences

  • A provides 32 threads vs B's 16 threads, yielding higher multi‑core performance (Cinebench 18,500).
  • A’s base TDP is 15‑25 W (boost up to 80 W) whereas B’s base is 28 W with a 115 W turbo ceiling.
  • B uses a hybrid core mix (6P+8E+2LP) targeting efficiency; A uses uniform 16 cores.
  • A supports both mobile (BGA2833) and desktop (LGA1851) sockets; B is limited to laptop FCBGA2049.
  • Both have identical Intel Arc 140T graphics, but B lists a 2.25 GHz GPU clock versus A’s unspecified GPU frequency.
DimensionWinner

Performance

A scores 18,500 Cinebench R23 Multi with 32 threads, far exceeding B's hybrid core design.

Intel Core Ultra 7 356H

Power & efficiency

A's base TDP 15‑25 W is lower than B's 28 W base, despite higher boost capability.

Intel Core Ultra 7 356H

Compatibility

A offers both mobile (BGA2833) and desktop (LGA1851) sockets; B only supports laptop FCBGA2049.

Intel Core Ultra 7 356H

Pricing & value

Pricing not specified for either product.

Tie

Build quality

Build quality details not specified.

Tie

Connectivity

Connectivity features not specified.

Tie

Warranty & support

Warranty information not specified.

Tie

Choose Intel Core Ultra 7 255H if…

Laptop‑focused professionals who prioritize lower base power and hybrid efficiency.

Choose Intel Core Ultra 7 356H if…

Power users needing maximum multi‑core performance and desktop‑compatible options.

Common questions

Which processor is faster for multi‑threaded workloads?

A, with 32 threads and a Cinebench R23 Multi score of 18,500, outperforms B's hybrid 16‑thread design.

How do the power requirements compare?

A operates at 15‑25 W base (up to 80 W boost); B runs at 28 W base with a 115 W turbo limit.

Are there differences in graphics performance?

Both use Intel Arc 140T; B specifies a 2.25 GHz GPU clock, while A does not list a GPU frequency.