AMD Ryzen 5 7533HS vs Intel Core i7-14700F Comparison
AMD Ryzen 5 7533HS
Core i7-14700F
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen 5 7533HS vs Intel Core i7-14700F
Head-to-Head Benchmarks
The recorded data shows a decisive sweep for the Intel Core i7-14700F across all 17 shared benchmark tests. The AMD Ryzen 5 7533HS does not record a single win in any measured workload. The Intel part leads by a consistent margin of 64.9% in every Cinebench iteration, both single-core and multi-core. In Cinebench R23 multi-core, the Intel processor scores 35122 against 12342 for the AMD chip, and in single-core it scores 4958 against 1742. The same 64.9% delta appears in Cinebench R15 and R20, indicating a uniform performance gap across rendering generations rather than a workload-specific anomaly.
The largest single-test advantage for Intel appears in PassMark floating point math, where the i7-14700F scores 107005 versus 27800, a 74% lead. Integer math shows a 67.4% delta with scores of 155808 and 50800. Prime number finding delivers the second-largest gap at 72.7%, with Intel at 176 and AMD at 48. Data compression favors Intel by 66.7% (505885 versus 168692), while data encryption shows a 64.4% delta (30144 versus 10718). Extended instructions land at a 60.7% gap, the narrowest multi-threaded difference in the PassMark suite, yet still a clear Intel victory.
The closest contest in the entire dataset is PassMark single-thread performance, where Intel leads by 35.6% (4257 versus 2740). This is a smaller gap than the multi-threaded results, but it still leaves no ambiguity about which processor has the higher per-core capability. The Ryzen 5 7533HS trails in every category, and the magnitude of the deficit varies from roughly a third to nearly three-quarters depending on the test.
Where Each One Wins
The AMD Ryzen 5 7533HS has no benchmark wins in this comparison. The data does not provide a single workload category where it outperforms the Intel Core i7-14700F. Its nearest rivals in the database include the Intel Core Ultra 5 226V with an average score of 19368 and a delta of 0%, the Intel Core i5-1345U at 19411 with a delta of -0.2%, and the Intel Core i7-10700F at 19499 with a delta of -0.7%. The Ryzen chip's average benchmark score of 19364 places it in the 73rd percentile of all CPUs, which indicates it sits comfortably above the median processor but far from the top tier.
The Intel Core i7-14700F, by contrast, records an average benchmark score of 53620 and sits in the 91st percentile of all CPUs. Its nearest rivals are server-class processors: the Intel Xeon 6505P at 53701 (delta -0.2%), the Intel Xeon Phi 7290 at 53469 (delta 0.3%), the AMD Ryzen 9 7900X at 53288 (delta 0.6%), and the AMD EPYC 7313P at 53206 (delta 0.8%). The i7-14700F is effectively trading blows with workstation and server silicon, which frames the comparison with a mobile Ryzen chip as a mismatch in class rather than a close contest.
For use-case analysis, the Intel processor wins every scenario the benchmarks represent: rendering, compression, encryption, physics simulation, sorting, and arithmetic workloads. The AMD part is a 35W mobile processor with a 73rd percentile standing, suitable for mainstream laptops, while the Intel part is a 65W desktop processor with a 91st percentile standing. The data does not support any workload where the mobile chip takes the lead.
FAQ
Q: Which processor has the higher Cinebench R23 multi-core score?
A: The Intel Core i7-14700F scores 35122, while the AMD Ryzen 5 7533HS scores 12342. Intel leads by 64.9%.
Q: How large is the single-thread performance gap?
A: In PassMark single-thread, Intel scores 4257 and AMD scores 2740, a 35.6% lead for Intel. This is the smallest delta in the entire comparison.
Q: Does the AMD Ryzen 5 7533HS win any benchmark?
A: No. Across all 17 shared tests, the Intel Core i7-14700F wins every one. The AMD part records zero wins.
Q: What is the average benchmark score for each processor?
A: The AMD Ryzen 5 7533HS has an average benchmark score of 19364, and the Intel Core i7-14700F has an average benchmark score of 53620.
Q: How do the two processors rank against all CPUs?
A: The AMD part is in the 73rd percentile of all CPUs, while the Intel part is in the 91st percentile.
Q: Which benchmark shows the biggest performance gap?
A: PassMark floating point math shows the largest delta at 74%, with Intel scoring 107005 and AMD scoring 27800.
Specification Differences
The two processors differ in nearly every fundamental specification. The AMD Ryzen 5 7533HS uses 6 cores and 12 threads, while the Intel Core i7-14700F uses 20 cores and 28 threads. Base clocks are 3.30 GHz for AMD and 2.10 GHz for Intel, but boost clocks reverse the order: 4.40 GHz for AMD and 5.40 GHz for Intel. Thermal design power differs substantially, with the AMD chip rated at 35W and the Intel chip at 65W, reflecting their mobile and desktop market segments respectively.
The AMD processor uses AMD Socket FP7, while Intel uses Socket 1700. The AMD part is a mobile processor, and the Intel part is a desktop processor. Memory support differs as well: AMD supports only DDR5, while Intel supports both DDR4 and DDR5. Memory bandwidth is listed at 76.8 GB/s for AMD, while no figure is recorded for Intel. ECC memory support is absent on the AMD chip but present on the Intel chip. PCIe generations differ, with AMD using Gen 4 with 20 lanes (CPU only) and Intel using Gen 5 with 16 lanes (CPU only). The AMD part includes integrated graphics in the form of Radeon 660M, while the Intel part has no integrated graphics. The Intel processor has a launch MSRP of $359. Neither processor has an unlocked multiplier. Release dates differ, with AMD released on 2024-08-31 and Intel on 2024-01-07.
Architecture Differences
The AMD Ryzen 5 7533HS is built on the Zen 3+ architecture with the codename Rembrandt-R. It belongs to the 7000 series and the Ryzen 5 generation. The process node is 6 nm, fabricated by TSMC, with a die size of 208 mm². Cache configuration includes 64 KB of L1 per core, 512 KB of L2 per core, and 16 MB of shared L3.
The Intel Core i7-14700F uses the Raptor Lake architecture with the codename Raptor Lake-R. It belongs to Core 14th Gen and the Core i7 generation, described as Raptor Lake Refresh. The process node is 10 nm, fabricated by Intel, with a die size of 257 mm². Cache configuration includes 80 KB of L1 per core, 2 MB of L2 per core, and 33 MB of shared L3.
The architectural differences extend to the manufacturing side as well. AMD uses a smaller 6 nm node from TSMC, while Intel uses a larger 10 nm node from its own fabs. The Intel die is larger at 257 mm² versus 208 mm² for AMD. The cache hierarchy favors Intel in both L2 and L3 capacity, while the AMD chip has slightly smaller L1 per core. The Intel processor also supports both DDR4 and DDR5 memory, whereas the AMD chip is limited to DDR5. The Intel part includes ECC memory support, which the AMD part lacks. The AMD chip carries integrated Radeon 660M graphics, while the Intel part has no integrated graphics at all.
The Verdict
The benchmark data points to a straightforward conclusion: the Intel Core i7-14700F outperforms the AMD Ryzen 5 7533HS in every recorded measurement. The Intel processor's 91st percentile standing and average benchmark score of 53620 place it in a different competitive bracket from the AMD chip's 73rd percentile and 19364 average score. The Intel part's nearest rivals include the AMD Ryzen 9 7900X and server processors, while the AMD mobile chip's nearest rivals are mid-range mobile and older desktop parts.
The Intel processor is the choice for any workload represented in the data. Its 20 cores and 28 threads, 33 MB of shared L3 cache, and 5.40 GHz boost clock support the measured advantages across rendering, encryption, compression, and math workloads. The AMD Ryzen 5 7533HS, with 6 cores and 12 threads, a 35W TDP, and 16 MB of shared L3, is a mobile processor with a 73rd percentile standing. The data does not identify any scenario where the AMD chip wins.
The selection between these two processors depends entirely on market segment. The AMD part is a mobile processor, and the Intel part is a desktop processor. The desktop part dominates the benchmark suite, but the mobile part operates at a 35W TDP versus 65W for the desktop chip. The data shows the desktop processor is faster in every test, with the narrowest gap at 35.6% in single-thread performance and the widest at 74% in floating point math. The Intel Core i7-14700F is the clear performance leader in this comparison.