CPU Comparison

Core i5-13505H vs Core i5-1350P

A side-by-side comparison of specs, performance and value. The Intel Core i5-13505H is a specialized mobile processor in the Raptor Lake-H family, distinguished by its inclusion of vPro Enterprise technology. Designed for business and professional laptops, it features 4 Performance cores and 8 Efficient cores, totaling 12 cores and 16 threads. Operating with a 45W base TDP and boosting up to 4.7 GHz, it delivers robust computational power for demanding professional applications. The integrated Iris Xe 80EU graphics handle standard display outputs efficiently. This chip caters specifically to enterprise environments where remote management, hardware-level security, and stable platform images are required. Released in early 2023, it provides IT departments with a powerful, manageable solution for mobile workforces needing workstation-like performance in a portable form factor.

Top pick
Intel · Core i5
Core i5-13505H
12C / 16T4.7 GHz45 W
8.3
Full review
Intel · Core i5
Core i5-1350P
12C / 16T4.7 GHz28 W
8.2
Full review

The Bottom Line

Overview & Launch

Brand
Intel
Intel
Market
Mobile
Mobile
Segment
Mobile
Mobile
Generation
13th Gen
13th Gen
Launched
2023
2023
Status
Active
Active
Codename
Raptor Lake-H
Raptor Lake-P
Series
Core i5
Core i5
Family
Raptor Lake
Raptor Lake
Predecessor
Intel Core i5-12505H
Intel Core i5-1240P
Successor
Intel Core Ultra 5 135H
Intel Core Ultra 5 125U

Specifications Compared

Cores & Clocks
Cores
12
12
Threads
16
16
Base Clock
2.6 GHz
1.9 GHz
Boost Clock
4.7 GHz
4.7 GHz
Cache & Power
L3 Cache
18 MB
12 MB
TDP
45 W
28 W
Architecture
Architecture
Raptor Lake-H
Raptor Lake-P
Process Node
10nm
10nm
Memory
Memory Type
DDR4, DDR5
DDR4, DDR5
Memory Speed
DDR5-5200
DDR5-5200
Memory Channels
Dual (2)
Dual (2)
Max Memory
96 GB
96 GB
Platform & I/O
Socket
Intel BGA 1744
Intel BGA 1744
PCIe Version
PCIe 5.0
PCIe 4.0
PCIe Lanes
8
20
Integrated GPU
Yes
Yes
Unlocked
No
No

Performance Compared

Productivity

Core i5-13505HBest88

Excellent for heavy Excel, large databases, and corporate software.

Core i5-1350P85

Excellent for heavy Excel, large databases, and corporate software.

Gaming

Core i5-13505HBest70

Not targeted at gaming, but Iris Xe handles light titles adequately.

Core i5-1350P60

Iris Xe can handle older or e-sports titles at low settings.

Virtualization

Core i5-13505HBest85

vPro and 16 threads make it great for secure corporate VMs.

Core i5-1350P75

12 threads provide enough overhead for local Docker containers.

Efficiency

Core i5-13505H72

45W TDP is standard for H-series, requiring decent cooling.

Core i5-1350PBest85

28W TDP offers a great balance of performance and battery life.

Specialized Performance

AI / ML

Core i5-13505HLimited
  • Suitable for standard CPU-based AI inference.
  • No dedicated NPU for AI acceleration.
Core i5-1350PLimited
  • No NPU; relies on CPU/GPU for AI tasks.

Content Creation

Core i5-13505HGood
AutoCADPhotoshopLight 3D Modeling
Core i5-1350PGood
PhotoshopLightroomLight Video Editing

Gaming

Core i5-13505HFair
  • Iris Xe 80EU can run older or e-sports titles at low settings.
  • Not intended for AAA gaming without a discrete GPU.
Core i5-1350PFair
  • Not intended for AAA gaming without a discrete GPU.
  • Iris Xe 80EU is suitable for Minecraft or CS:GO at 1080p Low.

Industry Impact

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

Best CPU by Use Case

Corporate Productivity
Excellent
Data Analysis
Very Good
Virtual Meetings
Excellent
Heavy Office Work
Excellent
Web Development
Very Good
Photo Editing
Good

Target Audience

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

Strengths & Weaknesses

Core i5-13505H

Pros

  • Includes Intel vPro for enterprise management
  • Strong 12-core, 16-thread performance
  • Good single-threaded speed for office apps
  • Supports fast DDR5 memory

Cons

  • Lower clock speeds than the 13600H
  • 45W TDP limits use in ultra-thin laptops
  • Overkill for basic office tasks
  • Premium pricing due to vPro licensing
Core i5-1350P

Pros

  • Excellent balance of performance and battery life
  • 12 cores handle multitasking well
  • Iris Xe 80EU graphics are capable for an iGPU
  • Supports fast DDR5 and LPDDR5 memory

Cons

  • Only 12MB L3 cache
  • Lacks PCIe 5.0 support
  • Locked multiplier
  • Can get warm under sustained load in thin chassis

Competitors & Alternatives

Core i5-13505H

Core i5-1350P

Our Verdict on Each

Core i5-13505HRecommended

A solid 12-core mobile CPU offering excellent enterprise features via vPro, ideal for corporate fleets requiring remote management.

Best for: Business laptops for professionals needing remote IT management.

Read the full review
Core i5-1350PRecommended

An excellent 28W CPU that balances 12-core multitasking with thin-and-light portability, though it runs warm under sustained load.

Best for: Premium ultrabooks for professionals and students.

Read the full review

Frequently Asked Questions

Which is better, Core i5-13505H or Core i5-1350P?

Based on our editorial ratings, the Core i5-13505H comes out ahead with a score of 8.3/10. 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 i5-13505H or Core i5-1350P?

For gaming, the Core i5-13505H leads with a gaming performance score of 70/100 among Core i5-13505H and Core i5-1350P.

Which uses less power?

The Core i5-1350P has the lowest rated TDP. Power draw across these chips: Core i5-13505H (45 W), Core i5-1350P (28 W).

Do Core i5-13505H and Core i5-1350P use the same socket?

Yes — all of these CPUs use the Intel BGA 1744 socket, so they share compatible motherboards.

Which is faster in multi-core benchmarks?

The Core i5-13505H posts the highest multi-core benchmark score. Multi-core results: Core i5-13505H (16,000), Core i5-1350P (13,500). Benchmark figures are approximate and workload-dependent.