AMD Ryzen AI Embedded P174 vs Intel Core 9 273PTE Comparison
AMD Ryzen AI Embedded P174
Core 9 273PTE
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen AI Embedded P174 vs Intel Core 9 273PTE
FAQ
Q: How does the AMD Ryzen AI Embedded P174 compare to the Intel Core 9 273PTE in core and thread counts?
A: The Intel Core 9 273PTE has 12 cores and 24 threads, while the AMD Ryzen AI Embedded P174 has 10 cores and 20 threads. The Intel part provides 20% more cores and threads.
Q: What are the clock speed differences between the two processors?
A: The AMD Ryzen AI Embedded P174 has a base clock of 2.00 GHz and a boost clock of 5.00 GHz. The Intel Core 9 273PTE has a lower base clock of 1.40 GHz but a higher boost clock of 5.50 GHz.
Q: Which processor has a larger L3 cache?
A: The Intel Core 9 273PTE has a significantly larger L3 cache at 36 MB (shared), compared to the AMD Ryzen AI Embedded P174 which has 16 MB.
Q: Do both processors support ECC memory?
A: Yes, both the AMD Ryzen AI Embedded P174 and the Intel Core 9 273PTE support ECC memory.
Q: What is the process node for each processor?
A: The AMD Ryzen AI Embedded P174 is built on a 4 nm process by TSMC. The Intel Core 9 273PTE is built on a 10 nm process by Intel.
Q: What is the market segment and socket for each processor?
A: The AMD Ryzen AI Embedded P174 is a Mobile processor using AMD Socket FP8. The Intel Core 9 273PTE is a Desktop processor using Intel Socket 1700.
Architecture Differences
The AMD Ryzen AI Embedded P174 and the Intel Core 9 273PTE represent fundamentally different design philosophies and manufacturing approaches. The AMD part belongs to the Ryzen AI Embedded generation (Zen 5 / Zen 5c) under the Gorgon Point codename. It is fabricated on a 4 nm process at TSMC, with a die size of 233 mm². The Intel Core 9 273PTE belongs to the Core 9 (Bartlett Lake) generation, fabricated on a 10 nm process at Intel's own foundries.
Core topology differs substantially. The AMD processor provides 10 cores and 20 threads, while the Intel processor provides 12 cores and 24 threads. Both use a per-core L1 cache of 80 KB. The L2 cache configuration differs: AMD allocates 1 MB per core, while Intel allocates 2 MB per core. The L3 cache is another major differentiator: AMD has 16 MB total, while Intel has 36 MB shared.
Clock behavior also differs. The AMD part starts at 2.00 GHz base and boosts to 5.00 GHz. The Intel part starts lower at 1.40 GHz base but boosts higher to 5.50 GHz. This suggests the Intel processor has a wider dynamic range for clock scaling, while the AMD processor maintains a higher minimum frequency.
Memory support shows a split in compatibility. The AMD processor supports DDR5 and LPDDR5X, while the Intel processor supports DDR4 and DDR5. Both use dual-channel memory buses with an identical memory bandwidth rating of 89.6 GB/s. Both support ECC memory.
PCIe capabilities differ by generation. The AMD processor provides Gen 4 with 16 lanes (CPU only), while the Intel processor provides Gen 5 with 16 lanes (CPU only). This gives the Intel platform a bandwidth advantage for compatible devices.
Integrated graphics also differ. The AMD processor uses a Radeon 880M, while the Intel processor uses UHD Graphics 730. The power envelope is notably different: the AMD processor has a TDP of 28 W, while the Intel processor has a TDP of 45 W. The AMD part is classified as Mobile, the Intel part as Desktop. The Intel processor has a launch MSRP of $549. The AMD processor has no listed launch MSRP.
Head-to-Head Benchmarks
The benchmark data for the AMD Ryzen AI Embedded P174 is absent from the database, with zero recorded benchmark scores and an average benchmark score of 0. The Intel Core 9 273PTE, by contrast, has a full suite of 17 recorded benchmark results and an average benchmark score of 31143. This asymmetry means direct head-to-head comparisons must rely on the Intel processor's absolute scores and its position relative to other CPUs in the database.
The Intel Core 9 273PTE holds an 82nd percentile ranking among all CPUs, while the AMD Ryzen AI Embedded P174 sits at the 50th percentile. That percentile gap of 32 points places the two processors in different performance tiers according to the database's aggregate metrics.
Examining the Intel processor's multi-threaded results provides context for its standing. In Cinebench R15 multicore, it scores 2060. In Cinebench R20 multicore, it scores 8586. In Cinebench R23 multicore, it scores 20445. These results show scaling across successive Cinebench versions that is consistent with a 12-core, 24-thread part.
Single-threaded results for the Intel processor are equally informative. Cinebench R15 single-core yields 290, Cinebench R20 single-core yields 1212, and Cinebench R23 single-core yields 2886. The PassMark single-thread test records a score of 3433.
The Intel processor's nearest rivals in the database clarify its competitive position. The Intel Core i7-12700F has an average score of 31081, which is 0.2% below the Core 9 273PTE. The AMD Ryzen 9 8945HS also scores 31074, 0.2% lower. The Intel Core i7-13700TE scores 31028, 0.4% lower. The Intel Core i7-12650HX scores 31290, which is 0.5% higher than the Core 9 273PTE. These deltas are small, indicating that the Core 9 273PTE performs within a tight band around these established desktop and mobile processors.
PassMark sub-tests for the Intel processor reveal workload-specific strengths. Integer math scores 82411, floating-point math scores 60673, and extended instructions score 15952. Data compression scores 258704, while data encryption scores 14253. Physics scores 1917, random string sorting scores 28973, and prime number finding scores 142. The multithread PassMark score is 24054.
The absence of benchmark data for the AMD processor limits the comparison. The database shows no Cinebench results, no PassMark results, and no average score for the AMD part. Its percentile ranking of 50 is derived from aggregate data, but no individual test scores are available to verify workload-specific behavior. The Intel processor's 82nd percentile ranking, by contrast, is supported by a complete benchmark profile.
The Verdict
The recorded data presents an uneven comparison. The Intel Core 9 273PTE has a full set of benchmark results, an average score of 31143, and an 82nd percentile ranking. The AMD Ryzen AI Embedded P174 has no recorded benchmark scores, an average score of 0, and a 50th percentile ranking.
For users selecting a processor based solely on measured performance in the database, the Intel Core 9 273PTE is the only option with verifiable results. It delivers a 32-point percentile advantage over the AMD part. Its nearest rivals, the Intel Core i7-12700F and AMD Ryzen 9 8945HS, score within 0.2% of it, confirming that it sits in established high-performance territory. The Intel Core i7-12650HX outperforms it by 0.5%, a negligible margin.
The AMD Ryzen AI Embedded P174 cannot be evaluated on benchmark merit because no scores exist in the database. Its 50th percentile ranking suggests mid-pack placement, but without individual test results, that ranking carries limited analytical weight. The processor offers a lower TDP of 28 W versus 45 W for the Intel part, which may suit embedded or mobile deployments where power draw is a constraint.
The Intel Core 9 273PTE also provides architectural advantages that are documented in the database: 12 cores versus 10, 24 threads versus 20, a 36 MB shared L3 cache versus 16 MB, and PCIe Gen 5 support versus Gen 4. Its higher boost clock of 5.50 GHz versus 5.00 GHz further supports single-threaded workloads.
The AMD processor counters with a smaller 4 nm process node versus 10 nm, a higher base clock of 2.00 GHz versus 1.40 GHz, and support for LPDDR5X memory in addition to DDR5. Its Radeon 880M integrated graphics likely provide a different visual compute profile than Intel's UHD Graphics 730, though the database records no graphics benchmarks for either part.
The data indicates that the Intel Core 9 273PTE is the stronger choice for workloads that demand measured multi-threaded performance, given its complete benchmark profile and standing among close rivals. The AMD Ryzen AI Embedded P174 remains an unquantified option in the database, with its lower TDP and smaller process node as documented advantages, but no benchmark evidence to support a performance claim.
Specification Differences
The two processors differ across nearly every recorded specification field:
Cores: AMD Ryzen AI Embedded P174 has 10 cores. Intel Core 9 273PTE has 12 cores.
Threads: AMD Ryzen AI Embedded P174 has 20 threads. Intel Core 9 273PTE has 24 threads.
Base Clock: AMD Ryzen AI Embedded P174 runs at 2.00 GHz. Intel Core 9 273PTE runs at 1.40 GHz.
Boost Clock: AMD Ryzen AI Embedded P174 boosts to 5.00 GHz. Intel Core 9 273PTE boosts to 5.50 GHz.
TDP: AMD Ryzen AI Embedded P174 is rated at 28 W. Intel Core 9 273PTE is rated at 45 W.
Socket: AMD Ryzen AI Embedded P174 uses AMD Socket FP8. Intel Core 9 273PTE uses Intel Socket 1700.
Codename: AMD Ryzen AI Embedded P174 uses Gorgon Point. Intel Core 9 273PTE uses Bartlett Lake.
Generation: AMD Ryzen AI Embedded P174 is Ryzen AI Embedded (Zen 5 / Zen 5c). Intel Core 9 273PTE is Core 9 (Bartlett Lake).
Process Node: AMD Ryzen AI Embedded P174 is 4 nm. Intel Core 9 273PTE is 10 nm.
Foundry: AMD Ryzen AI Embedded P174 is fabricated by TSMC. Intel Core 9 273PTE is fabricated by Intel.
Die Size: AMD Ryzen AI Embedded P174 measures 233 mm². Intel Core 9 273PTE has no recorded die size.
L2 Cache: AMD Ryzen AI Embedded P174 has 1 MB per core. Intel Core 9 273PTE has 2 MB per core.
L3 Cache: AMD Ryzen AI Embedded P174 has 16 MB. Intel Core 9 273PTE has 36 MB (shared).
Memory Support: AMD Ryzen AI Embedded P174 supports DDR5 and LPDDR5X. Intel Core 9 273PTE supports DDR4 and DDR5.
PCIe: AMD Ryzen AI Embedded P174 provides Gen 4, 16 lanes (CPU only). Intel Core 9 273PTE provides Gen 5, 16 lanes (CPU only).
Integrated Graphics: AMD Ryzen AI Embedded P174 uses Radeon 880M. Intel Core 9 273PTE uses UHD Graphics 730.
Market Segment: AMD Ryzen AI Embedded P174 is Mobile. Intel Core 9 273PTE is Desktop.
Part Number: AMD Ryzen AI Embedded P174 has an unknown part number. Intel Core 9 273PTE has part number SA4QJ.
Release Date: AMD Ryzen AI Embedded P174 was released on 2026-02-28. Intel Core 9 273PTE was released on 2026-03-08.
Launch MSRP: Intel Core 9 273PTE has a launch MSRP of $549. AMD Ryzen AI Embedded P174 has no recorded launch MSRP.
Multiplier Unlocked: Both processors have locked multipliers.
ECC Memory: Both processors support ECC memory.
Memory Bus: Both processors use dual-channel memory buses.
Memory Bandwidth: Both processors are rated at 89.6 GB/s.
L1 Cache: Both processors have 80 KB per core.
Production Status: Both processors are Active.