AMD Ryzen 7 5700X vs Intel Core i7-13700H Comparison
AMD Ryzen 7 5700X
Core i7-13700H
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen 7 5700X vs Intel Core i7-13700H
The AMD Ryzen 7 5700X and Intel Core i7-13700H represent two very different approaches to CPU performance: a desktop-focused, high-core-count part with a power-efficient design versus a mobile flagship with hybrid architecture and a high boost clock. Benchmark data shows the Intel chip wins the majority of head-to-head tests, but the AMD processor counters with significant wins in several specialized workloads, making the choice highly dependent on the intended use case.
Head-to-Head Benchmarks
The Intel Core i7-13700H dominates the traditional CPU benchmark suite, winning 15 of the 21 head-to-head comparisons. Its most decisive victory comes in Cinebench R23 single-core, where it scores 1856 against the Ryzen 7 5700X’s 1499, a 19.2% advantage. This pattern repeats in Cinebench R15 single-core (269 vs 253, a 5.9% lead) and in 3DMark’s single-thread test (1015 vs 921, a 9.3% lead). The Intel chip also extends its lead in multi-threaded rendering workloads; Cinebench R23 multi-core shows the i7-13700H at 15474 versus 13184 for the Ryzen, a 14.8% gap. Cinebench R15 multi-core tells a similar story, with the Intel part ahead by 6.7% (2496 vs 2329).
The Intel chip’s advantage in floating-point math is even more pronounced. PassMark floating point math sees the i7-13700H score 66322 against the Ryzen’s 51842, a massive 21.8% delta. PassMark physics also favors Intel heavily, with a 22.5% lead (1725 vs 1337). In synthetic 3DMark tests, the Intel part wins the 2-thread (1947 vs 1821, 6.5% ahead), 4-thread (3616 vs 3512, 2.9% ahead), 16-thread (6885 vs 6858, 0.4% ahead), and max-thread (7502 vs 6850, 8.7% ahead) workloads. It also edges out the Ryzen in integer math (92811 vs 92749, a narrow 0.1% lead) and random string sorting (33595 vs 33512, 0.2% ahead).
The AMD Ryzen 7 5700X, while losing the overall count, wins decisively where it does prevail. Its strongest victory is in PassMark extended instructions, scoring 21755 against Intel’s 18303, an 18.9% lead. The Ryzen also shows a 12.4% advantage in data encryption (20198 vs 17971) and a 15.5% lead in finding prime numbers (119 vs 103). In data compression, the AMD part scores 323610 versus 307791, a 5.1% win. The Ryzen 7 5700X also takes the 8-thread 3DMark test with 5768 against Intel’s 5369, a 7.4% margin, and narrowly wins PassMark multithread (26612 vs 26399, 0.8% ahead). These results show the AMD chip’s strength in integer-heavy and security-related tasks, while the Intel chip excels in floating-point and typical render workloads.
Architecture Differences
The fundamental architectural split is stark. The AMD Ryzen 7 5700X uses the Zen 3 architecture on TSMC’s 7 nm process, with a die size of 74 mm² and 4,150 million transistors. It packs 8 cores and 16 threads, with a base clock of 3.40 GHz and a boost clock of 4.60 GHz. The Intel Core i7-13700H uses Raptor Lake architecture on Intel’s 10 nm process, with 14 cores and 20 threads, a 2.40 GHz base clock, and a 5.00 GHz boost clock. The Intel chip’s core count advantage is offset by a lower base clock, but its boost clock is 0.40 GHz higher.
Cache configurations differ significantly. The Ryzen 7 5700X has 64 KB of L1 cache per core, 512 KB of L2 per core, and 32 MB of shared L3 cache. The Intel i7-13700H has 80 KB of L1 per core, 2 MB of L2 per core, and 24 MB of shared L3. This gives the AMD chip a larger L3 pool, while Intel’s L2 is four times larger per core. The memory support also diverges: AMD offers DDR4 with dual-channel support and 51.2 GB/s bandwidth, plus ECC memory capability. Intel supports both DDR4 and DDR5 with dual-channel memory but lacks ECC support.
The platforms are entirely different. The Ryzen 7 5700X uses AMD Socket AM4 with PCIe Gen 4 and 20 CPU lanes, and it has an unlocked multiplier for overclocking. The Intel Core i7-13700H uses Intel BGA 1744, a soldered mobile socket, with PCIe Gen 5 and 8 CPU lanes, and its multiplier is locked. The Intel chip includes integrated Iris Xe Graphics with 96 execution units, while the AMD part has no integrated graphics. The Ryzen is a desktop part with a 65W TDP; the Intel is a mobile part with a 45W TDP. Release dates differ, with AMD launching on April 3, 2022, and Intel on January 3, 2023.
FAQ
Q: Which CPU is faster in single-threaded workloads?
A: The Intel Core i7-13700H is consistently faster. It leads by 9.3% in 3DMark single-thread (1015 vs 921), 5.9% in Cinebench R15 single-core (269 vs 253), and 19.2% in Cinebench R23 single-core (1856 vs 1499). PassMark single-thread also favors Intel at 3594 versus 3385, a 5.8% lead.
Q: Does the AMD Ryzen 7 5700X win any benchmark categories?
A: Yes, it wins 6 of 21 head-to-head tests. Its biggest wins are in PassMark extended instructions (18.9% ahead), data encryption (12.4% ahead), and finding prime numbers (15.5% ahead). It also wins data compression, the 8-thread 3DMark test, and PassMark multithread.
Q: How do their multi-core scores compare in Cinebench?
A: The Intel chip wins both multi-core tests. In Cinebench R15 multi-core, Intel scores 2496 versus 2329 for AMD, a 6.7% lead. In Cinebench R23 multi-core, Intel scores 15474 versus 13184, a 14.8% lead.
Q: What is the core and thread count difference?
A: The AMD Ryzen 7 5700X has 8 cores and 16 threads. The Intel Core i7-13700H has 14 cores and 20 threads, giving it a 6-core and 4-thread advantage.
Q: Which CPU supports more memory types?
A: The Intel Core i7-13700H supports both DDR4 and DDR5 memory. The AMD Ryzen 7 5700X supports only DDR4. However, the AMD part supports ECC memory, which Intel does not.
Q: Do these CPUs have integrated graphics?
A: The Intel Core i7-13700H includes Iris Xe Graphics with 96 execution units. The AMD Ryzen 7 5700X has no integrated graphics, requiring a discrete GPU for display output.
The Verdict
The data points to the Intel Core i7-13700H as the stronger overall performer for general-purpose and creative workloads. Its 19.2% lead in Cinebench R23 single-core and 14.8% lead in multi-core make it the clear choice for rendering, photo editing, and other tasks that rely on high single-core speed and floating-point throughput. The 21.8% advantage in floating-point math and 22.5% lead in physics further reinforce its suitability for simulation and scientific computing. Users who need integrated graphics, PCIe Gen 5 connectivity, or DDR5 memory support will also find the Intel part more versatile.
However, the AMD Ryzen 7 5700X is not without its merits. Its wins in data compression (5.1% ahead), encryption (12.4% ahead), and extended instructions (18.9% ahead) indicate strength in security-sensitive applications, database workloads, and certain specialized instruction sets. The 15.5% lead in prime number finding suggests better performance in specific mathematical computations. For desktop users with an existing AM4 motherboard who prioritize these workloads, or who value the unlocked multiplier for overclocking and ECC memory support, the Ryzen 7 5700X remains a capable choice. The overall average benchmark scores are close—the AMD part averages 27578 versus 27355 for Intel, a 0.8% difference—but the Intel chip’s breadth of wins across more tests makes it the default recommendation for most users.
Specification Differences
| Specification | AMD Ryzen 7 5700X | Intel Core i7-13700H |
|---|---|---|
| Cores | 8 | 14 |
| Threads | 16 | 20 |
| Base Clock | 3.40 GHz | 2.40 GHz |
| Boost Clock | 4.60 GHz | 5.00 GHz |
| TDP | 65 W | 45 W |
| Socket | AMD Socket AM4 | Intel BGA 1744 |
| Process Node | 7 nm (TSMC) | 10 nm (Intel) |
| L1 Cache | 64 KB (per core) | 80 KB (per core) |
| L2 Cache | 512 KB (per core) | 2 MB (per core) |
| L3 Cache | 32 MB (shared) | 24 MB (shared) |
| Memory Support | DDR4 | DDR4, DDR5 |
| Memory Bandwidth | 51.2 GB/s | Not specified |
| ECC Memory | Yes | No |
| PCIe | Gen 4, 20 Lanes | Gen 5, 8 Lanes |
| Integrated Graphics | None | Iris Xe Graphics 96EU |
| Multiplier Unlocked | Yes | No |
| Market Segment | Desktop | Mobile |
| Release Date | April 3, 2022 | January 3, 2023 |
| Launch MSRP | $299 | $502 |