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Intel Core Ultra 7 356H vs Intel Core Ultra 7 Processor 356H

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

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Intel Core Ultra 7 356H
Intel Core Ultra 7 356HHigh-performance mobile processor with 16 cores
Intel Core Ultra 7 Processor 356H
Intel Core Ultra 7 Processor 356HHigh-performance processor for desktop applications
Overview
Description

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.

The Intel Core Ultra 7 Processor 356H is a high-performance processor with 16 cores, 18M cache, and up to 4.70 GHz frequency.

Pricing

Contact for Pricing

Category
Processors (CPUs)
Processors (CPUs)
Best for
Gamers, Video Editors, Developers, Business Users
Developers, gamers, content creators, and video editors.
Specifications
Spec source
AI-estimated
AI-estimated
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)
50 TOPS (NPU)+11%
Cache & Power
tdp
28W (up to 64W)
25 W (base), 80 W (max turbo), 15 W (min assured)11%
cache
24MB L3+33%
18 MB Intel Smart Cache
process node
TSMC N3B (3nm)
Intel 18A
General
socket
BGA2833 (mobile), LGA1851 (desktop)
FCBGA2540
benchmark score
Cinebench R23 Multi: 18,500
release date
2026-01-01
Core & Clock
threads
32+100%
16
base clock
3.6 GHz+89%
1.9 GHz (Performance-core), 1.5 GHz (Efficient-core), 1.5 GHz (Low Power Efficient-core)
boost clock
5.0 GHz+6%
4.7 GHz (Performance-core), 3.5 GHz (Efficient-core), 3.3 GHz (Low Power Efficient-core)
cores
16 (4P + 8E + 4LP)
Graphics & Memory
integrated graphics
Intel Arc 140T
Intel Graphics
Pros & Cons
Pros
  • High-performance processing power
  • Efficient power management
  • Secure architecture
  • Portable design
  • High-performance processing
  • High cache memory
  • High frequency
  • Supports multiple threads
Cons
  • High power consumption
  • Expensive
  • Limited availability
  • High power consumption
  • Requires advanced cooling systems
  • May require additional hardware support
Community & Metrics
Upvotes
0
0
User rating
Not enough data
Not enough data

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Intel Core Ultra 7 356H
Intel Core Ultra 7 356H

High-performance mobile processor with 16 cores

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Intel Core Ultra 9 285H
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The Verdict

AI-generated from listing data

Product B offers higher core count, boost speed, and broader platform support, while Product A is a desktop‑focused chip with strong cache but higher power needs.

Key differences

  • Core/Thread count: B has 16 cores / 32 threads vs A’s 16 cores / 16 threads.
  • Boost frequency: B reaches 5.0 GHz, A tops out at 4.7 GHz on performance cores.
  • Cache size: B provides 24 MB L3 cache (18 MB shared) compared with A’s 18 MB Intel Smart Cache.
  • Process technology: B uses TSMC N3B 3 nm (2 nm transistor size) while A is built on Intel 18A node.
  • Platform versatility: B supports both mobile BGA2833 and desktop LGA1851 sockets; A is limited to desktop FCBGA2540.
DimensionWinner

Performance

B delivers higher boost (5.0 GHz), more threads (32) and larger cache, yielding higher Cinebench score.

Intel Core Ultra 7 356H

Power & Efficiency

B’s base TDP range (15‑25 W) is lower than A’s 25 W base, despite similar max turbo power.

Intel Core Ultra 7 356H

Compatibility

B supports both mobile and desktop sockets, offering broader device integration than A’s single desktop socket.

Intel Core Ultra 7 356H

Pricing & Value

Both have undisclosed pricing; no factual basis to declare a price advantage.

Tie

Build Quality

No specific information on build quality or warranty for either product.

Tie

Choose Intel Core Ultra 7 356H if…

Users needing maximum cores/threads, higher boost, and flexibility across mobile and desktop platforms.

Choose Intel Core Ultra 7 Processor 356H if…

Desktop‑only builders who need Intel Smart Cache and can accommodate higher power/thermal design.

Common questions

Which processor offers better multi‑threaded performance?

Product B, with 32 threads and higher boost clock, outperforms Product A’s 16 threads.

Can either chip be used in a laptop?

Product B supports a mobile BGA2833 socket; Product A is limited to a desktop FCBGA2540 socket.

Is there a clear price advantage for either model?

Pricing is not specified for either product, so no price advantage can be determined.