AMD Ryzen 3 110 vs Intel Core 9 273PTE Comparison
AMD Ryzen 3 110
Core 9 273PTE
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen 3 110 vs Intel Core 9 273PTE
FAQ
Q: What are the core and thread counts for the AMD Ryzen 3 110 and the Intel Core 9 273PTE?
A: The AMD Ryzen 3 110 has 4 cores and 8 threads. The Intel Core 9 273PTE has 12 cores and 24 threads.
Q: Which processor has a higher boost clock speed?
A: The Intel Core 9 273PTE has a boost clock of 5.50 GHz, while the AMD Ryzen 3 110 has a boost clock of 4.30 GHz.
Q: What type of memory does each processor support?
A: The AMD Ryzen 3 110 supports DDR5 memory. The Intel Core 9 273PTE supports both DDR4 and DDR5 memory.
Q: What is the process node for each CPU?
A: The AMD Ryzen 3 110 is built on a 6 nm process node by TSMC. The Intel Core 9 273PTE is built on a 10 nm process node by Intel.
Q: What is the average benchmark score for the Intel Core 9 273PTE?
A: The Intel Core 9 273PTE has an average benchmark score of 31,143, placing it in the 82nd percentile of all CPUs.
Q: How does the Intel Core 9 273PTE compare to its nearest rival, the Intel Core i7-12700F?
A: The Intel Core 9 273PTE has an average score of 31,143, which is 0.2% higher than the Intel Core i7-12700F's average score of 31,081.
The Verdict
The data clearly separates these two processors by market segment and workload. The AMD Ryzen 3 110 is a mobile processor with 4 cores, 8 threads, a 28 W TDP, and a boost clock of 4.30 GHz. The Intel Core 9 273PTE is a desktop processor with 12 cores, 24 threads, a 45 W TDP, and a boost clock of 5.50 GHz.
The Intel Core 9 273PTE holds a dominant position in multi-threaded performance. Its 24 threads and 36 MB of shared L3 cache provide substantial parallel processing capability. The benchmark data confirms this with a Cinebench R23 multi-core score of 20,445 points. The AMD Ryzen 3 110, with only 8 threads, is not competitive in this arena.
For single-threaded workloads, the Intel Core 9 273PTE also leads. Its 5.50 GHz boost clock and PassMark single-thread score of 3,433 indicate strong per-core performance. The AMD Ryzen 3 110's 4.30 GHz boost clock is significantly lower. However, the AMD chip's 6 nm process node and lower 28 W TDP suggest it is designed for power-constrained mobile environments, not for raw performance.
The verdict is straightforward. The Intel Core 9 273PTE is the choice for desktop users who need maximum multi-threaded throughput and high single-thread speed. The AMD Ryzen 3 110 is suited for mobile systems where lower power consumption and a compact footprint are priorities. The benchmark results do not show a scenario where the AMD Ryzen 3 110 outperforms the Intel Core 9 273PTE in computational tasks.
Head-to-Head Benchmarks
The head-to-head benchmark table is empty, but the Intel Core 9 273PTE has its own benchmark suite recorded. The AMD Ryzen 3 110 has no benchmark scores in the database. This absence of data for the AMD chip means all comparative analysis must rely on the Intel part's recorded results.
The Intel Core 9 273PTE's Cinebench R23 multi-core score of 20,445 positions it well above average. Its Cinebench R20 multi-core score of 8,586 and Cinebench R15 multi-core score of 2,060 follow the same pattern. These scores indicate strong scaling across the 12 cores and 24 threads.
In single-threaded tests, the Intel Core 9 273PTE records a Cinebench R23 single-core score of 2,886, a Cinebench R20 single-core score of 1,212, and a Cinebench R15 single-core score of 290. The PassMark single-thread score of 3,433 confirms this level of per-core performance.
The PassMark suite shows varied results for the Intel Core 9 273PTE. The data compression score of 258,704 is exceptionally high. The integer math score of 82,411 and floating point math score of 60,673 are also strong. The multithread score of 24,054 aligns with the Cinebench multi-core results.
The Intel Core 9 273PTE's nearest rivals include the Intel Core i7-12700F, AMD Ryzen 9 8945HS, Intel Core i7-13700TE, and Intel Core i7-12650HX. The delta percentages are small: 0.2% ahead of the Core i7-12700F, 0.2% ahead of the Ryzen 9 8945HS, 0.4% ahead of the Core i7-13700TE, and 0.5% behind the Core i7-12650HX. This indicates the Intel Core 9 273PTE sits in a tightly competitive performance bracket.
Since the AMD Ryzen 3 110 has no recorded benchmarks, the database cannot show any wins for it. The Intel Core 9 273PTE is the sole processor with measurable performance data in this comparison.
Specification Differences
The AMD Ryzen 3 110 and Intel Core 9 273PTE differ across nearly every major specification.
| Specification | AMD Ryzen 3 110 | Intel Core 9 273PTE |
|---|---|---|
| Cores | 4 | 12 |
| Threads | 8 | 24 |
| Base Clock | 3.00 GHz | 1.40 GHz |
| Boost Clock | 4.30 GHz | 5.50 GHz |
| TDP | 28 W | 45 W |
| Socket | AMD Socket FP7 | Intel Socket 1700 |
| Process Node | 6 nm | 10 nm |
| L1 Cache | 64 KB (per core) | 80 KB (per core) |
| L2 Cache | 512 KB (per core) | 2 MB (per core) |
| L3 Cache | 8 MB (shared) | 36 MB (shared) |
| Memory Support | DDR5 | DDR4, DDR5 |
| Memory Bandwidth | 76.8 GB/s | 89.6 GB/s |
| PCIe | Gen 4, 20 Lanes | Gen 5, 16 Lanes |
| Integrated Graphics | Radeon 660M | UHD Graphics 730 |
| Market Segment | Mobile | Desktop |
| Launch MSRP | None | $549 |
The base clock difference is notable. The AMD Ryzen 3 110 starts at 3.00 GHz, while the Intel Core 9 273PTE starts at 1.40 GHz. However, the Intel chip's boost clock of 5.50 GHz far exceeds the AMD chip's 4.30 GHz.
Memory bandwidth favors the Intel part at 89.6 GB/s versus 76.8 GB/s. The Intel processor also supports the older DDR4 standard in addition to DDR5. Both support ECC memory.
PCIe lanes differ in generation and count. The AMD chip uses Gen 4 with 20 lanes, while the Intel chip uses Gen 5 with 16 lanes. The Intel part has fewer lanes but a newer generation.
The die size is recorded for the AMD Ryzen 3 110 at 210 mm², while the Intel Core 9 273PTE has no die size data. The AMD processor is manufactured by TSMC, and the Intel processor is manufactured by Intel.
Architecture Differences
The AMD Ryzen 3 110 uses the Zen 3+ architecture with the codename Rembrandt-R. Its generation is listed as "Ryzen 3 (Zen 3+ (Rembrandt))". This architecture is built on a 6 nm process node, which is smaller than the Intel chip's 10 nm node.
The Intel Core 9 273PTE uses the Bartlett Lake codename. Its generation is listed as "Core 9 (Bartlett Lake)". The architecture field is null, but the process node is 10 nm and the foundry is Intel.
Cache architecture differs significantly. The AMD Ryzen 3 110 has a 64 KB L1 cache per core, a 512 KB L2 cache per core, and an 8 MB shared L3 cache. The Intel Core 9 273PTE has an 80 KB L1 cache per core, a 2 MB L2 cache per core, and a 36 MB shared L3 cache. The Intel chip's L3 cache is 4.5 times larger than the AMD chip's.
The AMD Ryzen 3 110 integrates a Radeon 660M graphics unit. The Intel Core 9 273PTE integrates a UHD Graphics 730 unit. Both processors have integrated graphics, but the database records no benchmark scores for either GPU.
The AMD chip's socket is AMD Socket FP7, which is a mobile socket. The Intel chip's socket is Intel Socket 1700, which is a desktop socket. This aligns with their respective market segments.
The AMD Ryzen 3 110 has a part number of 100-000000549(FP7r2). The Intel Core 9 273PTE has a part number of SA4QJ. Neither processor has an unlocked multiplier.
Where Each One Wins
The Intel Core 9 273PTE wins in all measured performance categories because it is the only processor in this comparison with benchmark data. Its multi-threaded scores are substantial due to the 12 cores and 24 threads. The Cinebench R23 multi-core score of 20,445 and PassMark multithread score of 24,054 demonstrate this advantage.
The Intel Core 9 273PTE also wins in single-threaded performance. The 5.50 GHz boost clock and PassMark single-thread score of 3,433 show high per-core capability. The Cinebench R23 single-core score of 2,886 reinforces this.
The AMD Ryzen 3 110 has no recorded benchmark scores. The database shows zero wins for the AMD chip. Its strengths must be inferred from specifications rather than measured performance.
The AMD Ryzen 3 110's 28 W TDP is significantly lower than the Intel Core 9 273PTE's 45 W TDP. This suggests the AMD chip is better suited for thermally constrained mobile environments. Its 6 nm process node also implies higher power efficiency per transistor compared to the 10 nm Intel node.
The AMD Ryzen 3 110 supports DDR5 memory and has a memory bandwidth of 76.8 GB/s. While lower than the Intel chip's 89.6 GB/s, this is adequate for mobile workloads. The AMD chip's PCIe Gen 4 with 20 lanes offers more lanes than the Intel chip's Gen 5 with 16 lanes.
The Intel Core 9 273PTE wins in raw performance, cache capacity, memory bandwidth, and PCIe generation. The AMD Ryzen 3 110 wins in power consumption, process node size, and PCIe lane count. The database's benchmark results do not show any computational task where the AMD Ryzen 3 110 surpasses the Intel Core 9 273PTE.
The Intel Core 9 273PTE's position in the 82nd percentile of all CPUs, with an average benchmark score of 31,143, places it in a competitive high-performance bracket. The AMD Ryzen 3 110 sits in the 50th percentile with an average benchmark score of 0, reflecting the absence of recorded performance data. This percentile gap is the clearest indicator of their differing performance tiers.