Core i7-13800H vs Core i7-14701E

Intel

Core i7-13800H

14 Cores20 Thrd45 WWMax: 5.2 GHz2023
Core family
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VS
Intel

Core i7-14701E

8 Cores16 Thrd65 WWMax: 5.4 GHz2024
Core family
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Core i7-13800H vs Core i7-14701E Performance Spectrum

About PassMark

PassMark CPU Mark evaluates processor speed through complex mathematical computations. It provides a reliable metric to compare multi-core performance, where higher scores indicate faster processing for multitasking, gaming, and heavy workloads.

Core i7-13800H vs Core i7-14701E FPS Benchmarks

Predicted gaming performance across popular games. Tested paired with GeForce RTX 5090 to isolate CPU performance.

Search any supported game below to compare 1080p FPS for both components.

Core i7-13800H vs Core i7-14701E: Pros, Cons & Final Verdict

See where each CPU makes more sense in practice: gaming, heavier work, platform cost, power draw, and upgrade path.

Core i7-13800H

2023

Why buy it

  • +0.8% higher PassMark.
  • Draws 45W instead of 65W, a 20W reduction.

Trade-offs

  • Smaller total L3 cache (24 MB vs 33 MB).
  • No integrated graphics, while Core i7-14701E can still boot and troubleshoot without a discrete GPU.

Core i7-14701E

2024

Why buy it

  • +37.5% larger total L3 cache (33 MB vs 24 MB).
  • 100+% more PCIe lanes (20 vs 0) for storage and expansion-heavy builds.
  • Integrated graphics onboard with UHD Graphics 770, while Core i7-13800H needs a discrete GPU.

Trade-offs

  • Lower PassMark (26,146 vs 26,349).
  • Launch MSRP is still $392 MSRP, while Core i7-13800H mostly shows up through inconsistent older-market listings.
  • 44.4% higher power demand at 65W vs 45W.

Quick Answers

So, is Core i7-14701E better than Core i7-13800H?
It depends on what you want from the system. For gaming, Core i7-14701E is ahead with a 2.2% average FPS lead across 50 shared CPU game tests in our data. For rendering, compiling, streaming, and heavier multitasking, Core i7-13800H pulls ahead with 0.8% better PassMark. Core i7-14701E also has the bigger cache pool with 37.5% larger total L3 cache (33 MB vs 24 MB).
Which one is better for streaming, content creation, and heavy multitasking?
For streaming, content creation, and heavier multitasking, Core i7-13800H is the stronger fit. You are getting 0.8% better PassMark, backed by 14 cores and 20 threads.
Which one is the smarter buy today, not just the cheaper CPU?
Core i7-14701E is the better buy right now. Core i7-14701E comes in at an unclear MSRP at $392 MSRP versus unclear MSRP, and it still gives you a 2.2% average FPS lead across 50 shared CPU game tests in our data. The compromise is that Core i7-13800H is still stronger for heavier multi-core work with 0.8% better PassMark. It is also 100.0% better value on MSRP (66.7 vs 0.0 PassMark/$), so you are getting the faster CPU without taking a value hit on paper.
Which one is more future-proof for 2026 and beyond?
Core i7-14701E makes more sense long term for 2026 and beyond. You are getting a newer CPU generation (2024 vs 2023) and 37.5% larger total L3 cache (33 MB vs 24 MB). That makes it the safer long-term bet.

Core i7-13800H vs Core i7-14701E Technical Specifications

Side-by-side specs, architecture details, clocks, memory, power, and platform differences.

Intel

Core i7-13800H

The Core i7-13800H is manufactured by Intel. It was released in 4 January 2023 (2 years ago). It is based on the Raptor Lake-H (2023−2024) architecture. It features 14 cores and 20 threads. Base frequency is 2.5 GHz, with boost up to 5.2 GHz. L3 cache: 24 MB (total). L2 cache: 2 MB (per core). Built on Intel 7 nm process technology. Socket: FCBGA1744. Thermal design power (TDP): 45 Watt. Memory support: DDR5-5200, DDR4-3200, LPDDR4x-4267. Passmark benchmark score: 26,349 points. Launch price was $457.

Intel

Core i7-14701E

The Core i7-14701E is manufactured by Intel. It was released in Julho 2024 (1 year ago). It is based on the Raptor Lake-R (2023−2025) architecture. It features 8 cores and 16 threads. Base frequency is 2.6 GHz, with boost up to 5.4 GHz. L3 cache: 33 MB (total). L2 cache: 2 MB (per core). Built on 10 nm process technology. Socket: LGA1700. Thermal design power (TDP): 65 Watt. Memory support: DDR4, DDR5. Passmark benchmark score: 26,146 points. Launch price was $299.

Processing Power

The Core i7-13800H packs 14 cores / 20 threads, while the Core i7-14701E offers 8 cores / 16 threads — the Core i7-13800H has 6 more cores. Boost clocks reach 5.2 GHz on the Core i7-13800H versus 5.4 GHz on the Core i7-14701E — a 3.8% clock advantage for the Core i7-14701E (base: 2.5 GHz vs 2.6 GHz). The Core i7-13800H uses the Raptor Lake-H (2023−2024) architecture (Intel 7 nm), while the Core i7-14701E uses Raptor Lake-R (2023−2025) (10 nm). In PassMark, the Core i7-13800H scores 26,349 against the Core i7-14701E's 26,146 — a 0.8% lead for the Core i7-13800H. L3 cache: 24 MB (total) on the Core i7-13800H vs 33 MB (total) on the Core i7-14701E.

FeatureCore i7-13800HCore i7-14701E
Cores / Threads
14 / 20+75%
8 / 16
Boost Clock
5.2 GHz
5.4 GHz+4%
Base Clock
2.5 GHz
2.6 GHz+4%
L3 Cache
24 MB (total)
33 MB (total)+38%
L2 Cache
2 MB (per core)
2 MB (per core)
Process
Intel 7 nm-30%
10 nm
Architecture
Raptor Lake-H (2023−2024)
Raptor Lake-R (2023−2025)
PassMark
26,349
26,146
Geekbench 6 Single
2,781
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Memory & Platform

The Core i7-13800H uses the FCBGA1744 socket (PCIe 5.0), while the Core i7-14701E uses LGA1700 (PCIe 5.0) — making them incompatible on the same motherboard.

FeatureCore i7-13800HCore i7-14701E
Socket
FCBGA1744
LGA1700
PCIe Generation
PCIe 5.0
PCIe 5.0
Max RAM Speed
DDR5-5600
Max RAM Capacity
192 GB
RAM Channels
2
ECC Support
Yes
PCIe Lanes
20
🔧

Advanced Features

Virtualization: not specified (Core i7-13800H) / VT-x, VT-d, EPT (Core i7-14701E). The Core i7-14701E includes integrated graphics (UHD Graphics 770), while the Core i7-13800H requires a dedicated GPU. Primary use case: Core i7-14701E targets Embedded/Industrial. Direct competitor: Core i7-14701E rivals Ryzen Embedded 8000.

FeatureCore i7-13800HCore i7-14701E
Integrated GPU
Yes
IGPU Model
UHD Graphics 770
Unlocked
No
AVX-512
No
Virtualization
VT-x, VT-d, EPT
Target Use
Embedded/Industrial