Apple M5 (10-Core) VS Intel Core Ultra 5 325
We are comparing the Apple M5 (10-Core) (Apple) with the Intel Core Ultra 5 325 (Intel). Scroll down to the pros and cons of each processor, in-depth specs, and benchmark comparisons.
Overall Comparison
KEY DIFFERENCES OF Apple M5 (10-Core) AND Intel Core Ultra 5 325
Here’s how Apple M5 (10-Core) and Intel Core Ultra 5 325 stack up against each other in their most impactful areas.
Reasons to consider the Apple M5 (10-Core)
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25% more CPU threads (10 vs 8)
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25% more CPU cores (10 vs 8)
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50% more efficient-core threads (6 vs 4)
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50% more efficient cores (6 vs 4)
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120% higher P-core base frequency (4610 MHz vs 2100 MHz)
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88% higher E-core base frequency (3000 MHz vs 1600 MHz)
Reasons to consider the Intel Core Ultra 5 325
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33% smaller manufacturing process (2 nm vs 3 nm)
SPECIFICATION TABLE COMPARISON OF Apple M5 (10-Core) AND Intel Core Ultra 5 325
Below is the detailed specification table comparing Apple M5 (10-Core) and Intel Core Ultra 5 325.
Note: Highlighted specs mean that CPU wins that spec row.
If neither side is highlighted, it is a tie or there is not enough data for both specs.
| Specification | Apple M5 (10-Core) | Intel Core Ultra 5 325 |
|---|---|---|
|
General Information
|
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| CPU Name: | Apple M5 (10-Core) | Intel Core Ultra 5 325 |
| Vendor: | Apple | Intel |
| Release Date: | October 15, 2025 | January 5, 2026 |
| Type: | Laptop | Laptop |
| Instruction Set: | ARMv9 | x86-64 |
| Codename: | Apple M5 | Panther Lake |
|
Package and Thermals
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| Manufacturing Process: | 3 nm | 2 nm |
| Transistor Count: | 28 billion | — |
| TDP (PL1): | 27 W | 12-25 W |
| Max Boost TDP (PL2): | — | 55 W |
| Socket: | Apple M-Socket | FCBGA2540 |
| Max Temp (TJMax): | 100 C | 100 C |
|
CPU Cores
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Total Cores
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| Total Cores | 10 | 8 |
| Total Threads | 10 | 8 |
|
P-Cores
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| P-Cores | 4 | 4 |
| P-Threads | 4 | 4 |
| P-Core Base Frequency | 4610 MHz | 2100 MHz |
| P-Core Turbo Frequency | — | 4500 MHz |
|
E-Cores
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| E-Cores | 6 | 4 |
| E-Threads | 6 | 4 |
| E-Core Base Frequency | 3000 MHz | 1600 MHz |
| E-Core Turbo Frequency | — | 3400 MHz |
|
NPU
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| NPU |
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Cache and Bus
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| Multiplier | Locked | Locked |
| Bus Frequency | — | 100 MHz |
| L1 Cache | 192 KB | — |
| L2 Cache | 16 MB | — |
| L3 Cache | — | 12 MB |
|
Memory Support
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| Memory Types: | LPDDR5X-9600 | LPDDR5X-7467, DDR5-6400 |
| Max Memory Size: | 32 GB | 128 GB |
| Memory Channels: | 8 | 2 |
| Max Memory Bandwidth: | 153 GB/s | — |
| ECC Support: |
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Benchmarks
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Geekbench V6
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| Multi-Core | 17862 | 10016 |
| Single-Core | 4276 | 2369 |
| File Compression | 1790 | 892 |
| Clang Compression | 138 | 65 |
| HTML5 Browser | 427 | 266 |
| PDF Renderer | 431 | 253 |
| Text Processing | 421 | 278 |
| Background Blur | 79 | 45 |
| Photo Processing | 156 | 95 |
| Ray Tracing | 22 | 13 |
|
PassMark CPU
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| Multi-Core | 27718 | — |
| Single-Core | 5803 | — |
| Integer Math | 57400 | — |
| Floating Point | 78200 | — |
| Prime Numbers | 335 | — |
| String Sorting | 36400 | — |
| Data Encryption | 17300 | — |
| Data Compression | 313000 | — |
| Physics | 3338 | — |
| Extended Instructions | 16100 | — |
|
Cinebench 2024
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| Multi-Core | 1183 | 484 |
| Single-Core | 208 | 95 |
|
Blender
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| Render Score | 276 | — |
Tip: ▲ indicates a higher-is-better spec advantage, while ▼ indicates a lower-is-better advantage.
PERFORMANCE CHART COMPARISON OF Apple M5 (10-Core) AND Intel Core Ultra 5 325
The charts below visualize how Apple M5 (10-Core) and Intel Core Ultra 5 325 stack up in key performance metrics.
Performance Radar Chart
Performance Benchmarks
Value For Money Calculator
Prices use available launch or current data. Enter your own prices to see which CPU gives better value.
Apple M5 (10-Core)
Intel Core Ultra 5 325
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Domain Score Summary
Scores are generated by Comparigon's scoring algorithm and are intended as a high-level guide. They may not map 1-to-1 with the individual spec-by-spec comparisons shown in the table.
Our Verdict
In conclusion, the Apple M5 (10-Core) dominates overall compared to the Intel Core Ultra 5 325. Its strongest advantages are in Single-Core Performance, Multi-Core Performance, CPU Architecture and Energy Efficiency. They are still fairly close in Memory Architecture.
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Disclaimer: Specs, pricing, and benchmarks are sourced from official manufacturer data and verified test results. While we strive for precision, product details and pricing may change. Comparigon may earn an affiliate commission on qualifying purchases.