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CPU Comparison

Core i5-13500HX vs Intel Core i7-13850HX

A side-by-side comparison of specs, performance and value. The Intel Core i5-13500HX is a desktop-class mobile processor designed for high-performance gaming laptops. Built on Raptor Lake-HX architecture, it features 14 cores (6 Performance + 8 Efficient) and 20 threads. With a 55W base TDP and 157W PL2, it delivers extreme burst performance for demanding workloads. The chip boosts up to 4.7 GHz and includes 24MB of L3 cache. Like other HX chips, it uses a 257mm² desktop die, offering 20 PCIe 5.0 lanes for extensive expansion. It is fully unlocked for overclocking. The integrated UHD Graphics 710 provides basic display output. Released in early 2023, the 13500HX sits between the 13450HX and 13600HX, offering a balanced mix of multi-threaded power and tuning capabilities for enthusiast gamers and creators.

Intel · Core i5
Core i5-13500HX
14C / 20T4.7 GHz55 W
8.7
Full review
Top pick
Intel · Core i7
Intel Core i7-13850HX
20C / 28T5.3 GHz55 W
9.1
Full review

The Bottom Line

Overview & Launch

Brand
Intel
Intel
Market
Mobile
Mobile
Segment
Mobile
Mobile
Generation
13th Gen
13th Generation
Launched
2023
2023
Status
Active
Active
Codename
Raptor Lake-HX
Raptor Lake-HX
Series
Core i5
Core i7
Family
Raptor Lake
Raptor Lake
Predecessor
Intel Core i5-12500H
Core i7-12850HX
Successor
Intel Core i5-14450HX
Core i7-14650HX

Specifications Compared

Cores & Clocks
Cores
14
20
Threads
20
28
Base Clock
2.5 GHz
2.1 GHz
Boost Clock
4.7 GHz
5.3 GHz
Cache & Power
L3 Cache
24 MB
30 MB
TDP
55 W
55 W
Architecture
Architecture
Raptor Lake-HX
Raptor Lake-HX
Process Node
10nm
10 nm
Memory
Memory Type
DDR4, DDR5
DDR4, DDR5
Memory Speed
DDR5-4800
DDR5-5600
Memory Channels
Dual (2)
Dual (2)
Max Memory
128 GB
192 GB
Platform & I/O
Socket
Intel BGA 1964
Intel BGA 1964
PCIe Version
PCIe 5.0
PCIe 5.0
PCIe Lanes
20
20
Integrated GPU
Yes
Yes
Unlocked
Yes
Yes

Performance Compared

Productivity

Core i5-13500HX91

14 cores and 24MB cache make it a workstation powerhouse.

Intel Core i7-13850HXBest95

Near workstation-class performance for heavy rendering.

Gaming

Core i5-13500HX90

Can handle high-end GPUs like the RTX 4070 mobile without bottlenecking.

Intel Core i7-13850HXBest92

Will not bottleneck any current mobile GPU.

Virtualization

Core i5-13500HX87

20 threads and 20 PCIe lanes allow for complex local setups.

Intel Core i7-13850HXBest94

Easily handles multiple heavy VMs.

Efficiency

Core i5-13500HXBest55

Very high power draw; designed for plugged-in use.

Intel Core i7-13850HX50

Very high power draw and heat output.

Specialized Performance

AI / ML

Core i5-13500HXLimited
  • No NPU; relies on discrete GPU for AI acceleration.
Intel Core i7-13850HXVery Good
  • DLBoost accelerates AI tasks
  • High core count great for local inference
  • Ample PCIe lanes for AI accelerators

Content Creation

Core i5-13500HXExcellent
BlenderCinema 4DPremiere Pro
Intel Core i7-13850HXExcellent
BlenderCinema 4DAdobe Premiere ProAutoCAD

Gaming

Core i5-13500HXExcellent
  • Unlocked for tuning.
  • High boost clocks and large cache benefit high-FPS gaming.
Intel Core i7-13850HXExcellent
  • Exceptional single-thread performance
  • High cache size benefits gaming
  • Requires top-tier cooling

Industry Impact

Gaming
High
High
Workstations
Moderate
High
Content Creation
High
High
Virtualization
Moderate
High

Best CPU by Use Case

1440p Gaming
Excellent
3D Rendering
Excellent
Excellent
Live Streaming
Excellent
4K Video Editing
Excellent
AAA Gaming
Excellent
Software Compilation
Excellent
Portability
Poor

Target Audience

Gamers
Targeted
Targeted
Content Creators
Targeted
Targeted
Developers
Targeted
Targeted
Workstation Users
Targeted
Targeted
Streamers
Targeted
Targeted
Office / Productivity
Students

Strengths & Weaknesses

Core i5-13500HX

Pros

  • Massive 14-core, 20-thread count
  • Unlocked multiplier for overclocking
  • 20 PCIe 5.0 lanes
  • Large 24MB L3 cache

Cons

  • Very high power consumption (157W PL2)
  • Weak integrated graphics (UHD 710)
  • Requires thick, heavy laptop chassis for cooling
  • Lower boost clock than 13600HX
Intel Core i7-13850HX

Pros

  • Massive 20-core / 28-thread count
  • Excellent 5.3 GHz boost clock
  • 30MB L3 cache improves gaming and rendering
  • PCIe 5.0 and DDR5-5600 support
  • Unlocked for overclocking

Cons

  • Very high power consumption (157W turbo)
  • Requires heavy cooling systems
  • Expensive compared to lower-tier i7s
  • Poor battery life

Competitors & Alternatives

Core i5-13500HX

Intel Core i7-13850HX

Our Verdict on Each

Core i5-13500HXRecommended

A highly capable 14-core mobile CPU offering excellent value and overclocking potential, though the basic iGPU is a drawback.

Best for: Mid-to-high-end gaming laptops with RTX 4060 or 4070.

Read the full review

An absolute powerhouse that blurs the line between desktop and mobile, offering i9-level core counts at a slightly lower price point.

Best for: High-end mobile workstations and enthusiast gaming laptops

Read the full review

Frequently Asked Questions

Which is better, Core i5-13500HX or Intel Core i7-13850HX?

Based on our editorial ratings, the Intel Core i7-13850HX comes out ahead with a score of 9.1/10. That said, the best choice depends on your workload — check the spec and performance breakdown above for gaming, productivity and efficiency differences.

Which is faster for gaming, Core i5-13500HX or Intel Core i7-13850HX?

For gaming, the Intel Core i7-13850HX leads with a gaming performance score of 92/100 among Core i5-13500HX and Intel Core i7-13850HX.

Do Core i5-13500HX and Intel Core i7-13850HX use the same socket?

Yes — all of these CPUs use the Intel BGA 1964 socket, so they share compatible motherboards.

Which has more cores?

The Intel Core i7-13850HX has the most cores. Core counts: Core i5-13500HX (14 cores), Intel Core i7-13850HX (20 cores).

Which is faster in multi-core benchmarks?

The Core i5-13500HX posts the highest multi-core benchmark score. Multi-core results: Core i5-13500HX (18,200), Intel Core i7-13850HX (0). Benchmark figures are approximate and workload-dependent.