AMD Ryzen Embedded R1305G vs Intel Core i3-10110Y Comparison
AMD Ryzen Embedded R1305G
Core i3-10110Y
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen Embedded R1305G vs Intel Core i3-10110Y
The Intel Core i3-10110Y and AMD Ryzen Embedded R1305G are both dual-core, four-thread processors aimed at low-power mobile and embedded systems, yet benchmark results show a clear, consistent, though narrow, advantage for the AMD part. Across every Cinebench workload recorded, the Ryzen Embedded R1305G posts higher scores, making it the default choice for compute-oriented tasks in this comparison, while the Intel chip remains competitive but trails by margins that rarely exceed 1.5%.
Where Each One Wins
The benchmark data offers no ambiguity: the AMD Ryzen Embedded R1305G wins all five head-to-head comparisons. This is a clean sweep for AMD. In multi-threaded workloads, the Ryzen chip leads in Cinebench R15 (269 vs. 265), R20 (1121 vs. 1108), and R23 (2670 vs. 2640). The pattern holds for single-threaded tests, where AMD also edges ahead in R20 (158 vs. 156) and R23 (377 vs. 372).
The Intel Core i3-10110Y does not win a single recorded benchmark in this dataset. Its closest margin is in Cinebench R15 multi-core, where it trails by just 1.5%. The Intel part’s higher boost clock of 4.00 GHz compared to AMD’s 2.80 GHz does not translate into any measured performance victory. For users running Cinebench-style rendering or CPU-bound tasks, the AMD Ryzen Embedded R1305G is the stronger performer, albeit by a slim margin. The Intel chip’s role is best described as a near-equal alternative that loses every race by a nose.
Architecture Differences
The two processors come from different architectural lineages. Intel’s Core i3-10110Y is built on Comet Lake, specifically the Comet Lake-Y variant, using a 14 nm process manufactured by Intel. AMD’s Ryzen Embedded R1305G uses the Zen architecture, codenamed “Banded Kestrel,” also on a 14 nm node but produced by GlobalFoundries. Both chips have two cores and four threads, but their cache hierarchies differ noticeably. Intel provides 64 KB of L1 cache per core and 256 KB of L2 per core, while AMD offers a larger 96 KB of L1 per core and 512 KB of L2 per core. Both share 4 MB of L3 cache.
Memory support diverges sharply. The Intel part supports DDR3 memory, while the AMD chip supports DDR4 and features a dual-channel memory bus with a theoretical bandwidth of 38.4 GB/s. The AMD processor also includes PCIe Gen 3 with 8 lanes from the CPU, a feature not listed for Intel. Integrated graphics differ as well: Intel pairs the CPU with UHD Graphics, while AMD uses Radeon Vega 3. The AMD chip has a published transistor count of 3,500 million and a die size of 148 mm², whereas those figures are not listed for Intel.
The AMD Ryzen Embedded R1305G carries a part number (YE1305C9T2OFG) and is listed with a production status of Active, same as Intel. The AMD chip has a slightly higher TDP of 10 watts versus Intel’s 9 watts, reflecting its higher base clock of 1.50 GHz compared to Intel’s 1.00 GHz. Neither processor supports ECC memory or has an unlocked multiplier.
Head-to-Head Benchmarks
The largest performance gap appears in Cinebench R15 multi-core, where the AMD Ryzen Embedded R1305G scores 269 against Intel’s 265, a delta of -1.5% from Intel’s perspective. That is the widest margin AMD achieves in any test. In Cinebench R20 multi-core, AMD leads 1121 to 1108, a 1.2% difference. The single-core tests are tighter: in R20 single-core, AMD’s 158 edges Intel’s 156 by 1.3%, and in R23 single-core, AMD’s 377 beats Intel’s 372 by the same 1.3% margin. The closest contest is Cinebench R23 multi-core, where AMD scores 2670 against Intel’s 2640, a 1.1% lead.
These results show remarkable consistency. AMD never wins by more than 1.5%, and Intel never gets closer than 1.1%. The average benchmark scores reflect this: AMD’s overall average is 919, while Intel’s is 908, a difference of 11 points or roughly 1.2%. Both chips land in the 24th percentile of all CPUs, meaning they are statistically equivalent in the broader market. The data suggests that the Ryzen Embedded R1305G is the better chip in every measured scenario, but the practical difference for a user would be marginal in most real-world tasks.
Specification Differences
The specification sheets reveal several distinct differences beyond the benchmark scores. The base clocks differ by 500 MHz: Intel runs at 1.00 GHz, while AMD runs at 1.50 GHz. Boost clocks favor Intel, however, with 4.00 GHz versus AMD’s 2.80 GHz. TDP is nearly identical, with AMD at 10 watts and Intel at 9 watts. The memory support is a major split — Intel uses DDR3, AMD uses DDR4 with dual-channel support and a listed bandwidth of 38.4 GB/s. The cache sizes are also different: Intel has 64 KB L1 and 256 KB L2 per core, while AMD has 96 KB L1 and 512 KB L2 per core; both have 4 MB shared L3.
The socket types are incompatible: Intel uses BGA 1440, AMD uses Socket FP5. The process nodes are both 14 nm but from different foundries — Intel for Intel, GlobalFoundries for AMD. AMD’s chip has a specified die size of 148 mm² and 3,500 million transistors, while Intel’s die size and transistor count are not provided. Integrated graphics differ (UHD Graphics vs. Radeon Vega 3), and AMD explicitly lists PCIe Gen 3 with 8 lanes, which is absent from Intel’s spec. The release dates also differ: Intel launched on 2019-08-20, AMD on 2020-02-24.
FAQ
Q: Which processor has a higher boost clock?
A: The Intel Core i3-10110Y has a boost clock of 4.00 GHz, significantly higher than the AMD Ryzen Embedded R1305G’s 2.80 GHz.
Q: Does the AMD chip have more L2 cache per core?
A: Yes. The AMD Ryzen Embedded R1305G has 512 KB of L2 cache per core, while the Intel Core i3-10110Y has 256 KB per core. Both have 4 MB of shared L3 cache.
Q: Which chip wins in single-core Cinebench R23?
A: The AMD Ryzen Embedded R1305G wins with a score of 377, compared to Intel’s 372, a margin of 1.3%.
Q: What memory types do these processors support?
A: The Intel Core i3-10110Y supports DDR3 memory. The AMD Ryzen Embedded R1305G supports DDR4 memory with a dual-channel bus and a theoretical bandwidth of 38.4 GB/s.
Q: Are their TDP ratings identical?
A: No. The Intel chip has a TDP of 9 watts, while the AMD chip has a TDP of 10 watts.
Q: What is the average benchmark score difference?
A: The AMD Ryzen Embedded R1305G has an average benchmark score of 919, while the Intel Core i3-10110Y scores 908, a difference of 11 points in AMD’s favor.