AMD Ryzen 5 7533HS vs Intel Core 9 273PTE Comparison
AMD Ryzen 5 7533HS
Core 9 273PTE
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen 5 7533HS vs Intel Core 9 273PTE
FAQ
Q: Which processor has the higher multi-core benchmark score?
A: The Intel Core 9 273PTE dominates in multi-core workloads. In Cinebench R23 multi-core, it scores 20,445 versus 12,342 for the AMD Ryzen 5 7533HS, a 39.6% difference. The Intel part also leads in PassMark multithread, 24,054 versus 14,520.
Q: How do the two compare in single-core performance?
A: The Intel Core 9 273PTE leads in every single-core test recorded. In Cinebench R23 single-core, it scores 2,886 versus 1,742 for the AMD, a 39.6% delta. PassMark single-thread shows a smaller gap: 3,433 versus 2,740, a 20.2% difference.
Q: What are the core and thread counts for each processor?
A: The AMD Ryzen 5 7533HS has 6 cores and 12 threads. The Intel Core 9 273PTE has 12 cores and 24 threads, exactly double the core and thread count.
Q: Which processor supports ECC memory?
A: The Intel Core 9 273PTE supports ECC memory. The AMD Ryzen 5 7533HS does not support ECC memory.
Q: What is the process node for each chip?
A: The AMD Ryzen 5 7533HS uses a 6 nm process from TSMC. The Intel Core 9 273PTE uses a 10 nm process from Intel.
Q: What socket does each processor use?
A: The AMD Ryzen 5 7533HS uses AMD Socket FP7, while the Intel Core 9 273PTE uses Intel Socket 1700.
Architecture Differences
The AMD Ryzen 5 7533HS is built on the Zen 3+ architecture, codenamed Rembrandt-R, and belongs to the 7000 series. It uses a 6 nm process manufactured by TSMC, with a die size of 208 mm². The Intel Core 9 273PTE uses the Bartlett Lake codename and is built on a 10 nm process from Intel. The Intel part belongs to the Core 9 generation, while the AMD part is a Ryzen 5 in the Zen 3+ generation.
Cache configurations differ substantially. The AMD processor has 64 KB of L1 cache per core, 512 KB of L2 per core, and 16 MB of shared L3 cache. The Intel processor has 80 KB of L1 per core, 2 MB of L2 per core, and 36 MB of shared L3 cache. The Intel part thus carries more than double the L3 cache and four times the L2 cache per core.
Memory support also diverges. The AMD chip supports DDR5 only, in a dual-channel configuration, with a memory bandwidth of 76.8 GB/s. The Intel chip supports both DDR4 and DDR5, also dual-channel, with a higher memory bandwidth of 89.6 GB/s. The Intel part additionally supports ECC memory, which the AMD part does not.
PCIe capabilities differ as well. The AMD Ryzen 5 7533HS provides PCIe Gen 4 with 20 lanes from the CPU. The Intel Core 9 273PTE provides PCIe Gen 5 with 16 lanes, a newer generation but fewer lanes.
Integrated graphics differ in both name and positioning. The AMD chip includes Radeon 660M graphics, while the Intel chip includes UHD Graphics 730. The AMD part targets the mobile segment with a 35 W TDP, while the Intel part targets the desktop segment with a 45 W TDP.
The Verdict
The benchmark data is unambiguous: the Intel Core 9 273PTE wins every single recorded test. Across 17 head-to-head benchmarks, the Intel part takes all 17 wins, with no test going to the AMD Ryzen 5 7533HS.
The Intel processor sits in the 82nd percentile of all CPUs in the database, with an average benchmark score of 31,143. The AMD processor sits in the 73rd percentile, with an average score of 19,364. That places the Intel part roughly 60% higher in average score, a substantial gap.
The nearest rivals for the Intel part include the Intel Core i7-12700F (delta 0.2%), the AMD Ryzen 9 8945HS (delta 0.2%), and the Intel Core i7-13700TE (delta 0.4%). The AMD part's nearest rivals include the Intel Core Ultra 5 226V (delta 0%), the Intel Core i5-1345U (delta -0.2%), and the Intel Core i7-8700K (delta 0.7%). The Intel Core 9 273PTE performs at a level comparable to those desktop-class chips, while the AMD Ryzen 5 7533HS sits near mid-range mobile processors.
For users focused on maximum throughput in rendering, encryption, math workloads, or physics simulations, the Intel part is the clear choice from the data. The AMD part, with its lower TDP and mobile orientation, does not match the Intel part in any measured category. The only scenario where the AMD chip might be preferable is where the 35 W TDP and mobile socket matter, such as a thin-and-light laptop chassis, but the performance data shows no advantage for the AMD part.
The launch MSRP for the Intel Core 9 273PTE is $549. The AMD Ryzen 5 7533HS has no listed launch MSRP in the database.
Specification Differences
| Specification | AMD Ryzen 5 7533HS | Intel Core 9 273PTE |
|---|---|---|
| Cores | 6 | 12 |
| Threads | 12 | 24 |
| Base clock | 3.30 GHz | 1.40 GHz |
| Boost clock | 4.40 GHz | 5.50 GHz |
| TDP | 35 W | 45 W |
| Socket | AMD Socket FP7 | Intel Socket 1700 |
| Architecture | Zen 3+ | (not listed) |
| Codename | Rembrandt-R | Bartlett Lake |
| Process node | 6 nm | 10 nm |
| Foundry | TSMC | Intel |
| L1 cache | 64 KB per core | 80 KB per core |
| L2 cache | 512 KB per core | 2 MB per core |
| L3 cache | 16 MB shared | 36 MB shared |
| Memory support | DDR5 | DDR4, DDR5 |
| Memory bandwidth | 76.8 GB/s | 89.6 GB/s |
| ECC memory | No | Yes |
| PCIe | Gen 4, 20 lanes | Gen 5, 16 lanes |
| Integrated graphics | Radeon 660M | UHD Graphics 730 |
| Market segment | Mobile | Desktop |
| Release date | 2024-08-31 | 2026-03-08 |
| Launch MSRP | (not listed) | $549 |
Head-to-Head Benchmarks
The Intel Core 9 273PTE wins all 17 head-to-head tests, with margins ranging from roughly 20% to 66%. The smallest lead comes in PassMark single-thread and single-threaded tests, where the Intel scores 3,433 against 2,740, a 20.2% advantage. The largest lead comes in PassMark find prime numbers, where the Intel scores 142 against 48, a 66.2% advantage.
Cinebench results show consistent 39.6% to 39.7% leads for Intel across all four versions and both single-core and multi-core tests. In Cinebench R15 multi-core, Intel scores 2,060 versus 1,243. In R15 single-core, Intel scores 290 versus 175. R20 multi-core shows 8,586 versus 5,183, and R20 single-core shows 1,212 versus 731. R23 multi-core shows 20,445 versus 12,342, and R23 single-core shows 2,886 versus 1,742.
PassMark math workloads show some of the largest gaps. Floating point math gives Intel 60,673 versus 27,800, a 54.2% lead. Integer math gives Intel 82,411 versus 50,800, a 38.4% lead. Physics tests show Intel 1,917 versus 821, a 57.2% lead. Extended instructions give Intel 15,952 versus 11,219, a 29.7% lead.
Data-oriented workloads also favor Intel. Data compression scores 258,704 versus 168,692, a 34.8% lead. Data encryption scores 14,253 versus 10,718, a 24.8% lead. Random string sorting scores 28,973 versus 17,669, a 39% lead.
The multithread aggregate in PassMark shows Intel at 24,054 versus 14,520, a 39.6% margin. The Intel part's higher core count, larger caches, higher boost clock, and wider memory bandwidth all contribute to these results. The AMD part's lower TDP and smaller core count leave it trailing in every recorded workload. The database shows no test where the AMD Ryzen 5 7533HS outperforms the Intel Core 9 273PTE.