AMD Ryzen 7 5705G vs Intel Core i5-14401E Comparison
AMD Ryzen 7 5705G
Core i5-14401E
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen 7 5705G vs Intel Core i5-14401E
The AMD Ryzen 7 5705G and Intel Core i5-14401E occupy adjacent tiers in the desktop processor market, but the recorded data separates them clearly in compute-heavy tasks. The Intel part carries all six available benchmark scores in the database, while the AMD part has no recorded benchmarks, which limits direct comparison. Still, the Intel Core i5-14401E’s results, its position against nearby rivals, and the architectural specifications of both chips provide enough material to assess their relative strengths.
Head-to-Head Benchmarks
The database contains six Cinebench results for the Intel Core i5-14401E, spanning R15, R20, and R23 versions, each with multi-core and single-core variants. The AMD Ryzen 7 5705G has no recorded benchmark scores, so the head-to-head comparison is one-sided. The Intel chip’s multi-core results are substantial: 1,830 points in Cinebench R15 multi-core, 7,627 in R20 multi-core, and 18,161 in R23 multi-core. The single-core results are 258 in R15, 1,076 in R20, and 2,564 in R23. These numbers indicate a processor that scales well across both lightly threaded and fully loaded workloads.
The Intel Core i5-14401E’s average benchmark score is 5,253, which places it in the 60th percentile of all CPUs in the database. The nearest rivals in the database show the tight grouping around this score. The Intel Xeon E5-2699A v4 posts an average score of 5,259, which is 0.1% higher than the Core i5-14401E. The Intel Core i7-11700B scores 5,241, a 0.2% deficit. The Intel Core i9-10850K scores 5,240, also 0.2% behind. The Intel Core i5-13400T scores 5,210, which is 0.8% lower. These deltas are narrow, meaning the Core i5-14401E sits in a competitive cluster where a few percent separates peers. The Core i5-14401E is effectively tied with the Xeon E5-2699A v4, while it holds a small advantage over the other three rivals.
Because the AMD Ryzen 7 5705G has no benchmark entries, the database cannot show a single score where it beats the Intel part. The wins count is zero for both processors, reflecting no recorded head-to-head results. Any performance claim about the AMD chip must rely on its architectural parameters rather than measured outcomes. The Intel chip, however, has a clear recorded performance profile, and its Cinebench scores, particularly the R23 multi-core result of 18,161, indicate a strong multi-threaded showing for a 6-core processor.
Architecture Differences
The two CPUs come from different design schools. The AMD Ryzen 7 5705G uses the Zen 3 architecture with the Cezanne codename, built on a 7 nm process at TSMC. It packs 8 cores and 16 threads, with a base clock of 3.80 GHz and a boost clock of 4.60 GHz. The transistor count is 10,700 million on a die size of 180 mm². The cache layout is 64 KB of L1 per core, 512 KB of L2 per core, and 16 MB of L3 total. The AMD chip uses the AM4 socket, has a 65 W TDP, and supports DDR4 memory in dual-channel mode with a memory bandwidth of 51.2 GB/s. It does not support ECC memory. The PCIe interface is Gen 3 with 16 lanes from the CPU. Integrated graphics come from Radeon Graphics with 512 shader processors. The multiplier is unlocked, allowing overclocking.
The Intel Core i5-14401E uses the Raptor Lake architecture with the Raptor Lake-R codename, built on a 10 nm process at Intel’s own foundry. It has 6 cores and 12 threads, with a base clock of 2.50 GHz and a boost clock of 4.70 GHz. The die size is 215 mm², and no transistor count is recorded. The cache layout differs notably: 80 KB of L1 per core, 1.25 MB of L2 per core, and 20 MB of shared L3. The Intel chip uses the LGA 1700 socket, also has a 65 W TDP, and supports both DDR4 and DDR5 memory in dual-channel mode. No memory bandwidth figure is recorded. It supports ECC memory. The PCIe interface is Gen 5 with 16 lanes from the CPU. Integrated graphics are UHD Graphics 730. The multiplier is locked.
The process node difference is significant: 7 nm for AMD versus 10 nm for Intel, which usually implies better power efficiency and density for the AMD part, though the Intel chip compensates with higher boost clocks. The core counts differ by two, with AMD offering 8 cores and 16 threads versus Intel’s 6 cores and 12 threads. The L3 cache is larger on the Intel side at 20 MB versus 16 MB on AMD. The per-core L2 cache is also larger on Intel at 1.25 MB versus 512 KB. The memory controller on Intel supports both DDR4 and DDR5, giving it broader memory flexibility, while AMD is limited to DDR4. The PCIe generation difference is stark: Intel provides Gen 5 lanes versus AMD’s Gen 3, which affects bandwidth for high-speed storage and GPUs.
Where Each One Wins
The data suggests a split based on workload type. The Intel Core i5-14401E wins in measured multi-core and single-core benchmarks, as evidenced by its six recorded Cinebench scores. Its R23 multi-core score of 18,161 indicates strong sustained performance for tasks like video rendering, 3D modeling, or code compilation. The single-core score of 2,564 in R23 points to solid responsiveness in everyday tasks and lightly threaded applications such as web browsing, office suites, or legacy software. The Intel chip’s position at the 60th percentile and its tight rivalry with the Xeon E5-2699A v4 and Core i9-10850K confirm that it competes with older high-core-count parts, often matching them despite having fewer physical cores.
The AMD Ryzen 7 5705G wins on paper in core count and thread count. With 8 cores and 16 threads, it offers two more cores and four more threads than the Intel chip. For workloads that scale well with many threads, such as parallel video encoding or heavy multitasking, the AMD part has a theoretical advantage. The 7 nm process also suggests better power efficiency per core, which can matter in compact builds with limited cooling. The unlocked multiplier on the AMD chip allows manual overclocking, which could narrow or widen performance gaps depending on the user’s cooling solution. The Radeon Graphics 512SP integrated GPU is likely more capable than Intel’s UHD Graphics 730 for basic gaming or media playback, though no benchmark data confirms this.
The Intel chip wins on memory flexibility and PCIe bandwidth. Supporting both DDR4 and DDR5 means builders can choose between cost-effective older memory or faster newer modules. The PCIe Gen 5 interface provides double the bandwidth of Gen 3 for a modern GPU or NVMe drive, which matters for storage-heavy workloads. ECC memory support on the Intel chip is a feature absent from the AMD part, making it suitable for error-sensitive environments like small servers or workstation tasks.
Specification Differences
The two processors differ in several recorded fields. The AMD Ryzen 7 5705G has 8 cores and 16 threads, while the Intel Core i5-14401E has 6 cores and 12 threads. Base clocks are 3.80 GHz for AMD and 2.50 GHz for Intel. Boost clocks are 4.60 GHz for AMD and 4.70 GHz for Intel, giving Intel a 0.10 GHz edge at peak. Sockets are AM4 for AMD and LGA 1700 for Intel. Architecture is Zen 3 (Cezanne) for AMD and Raptor Lake (Raptor Lake-R) for Intel. Process nodes are 7 nm for AMD and 10 nm for Intel. Cache differs: L1 is 64 KB per core for AMD versus 80 KB per core for Intel; L2 is 512 KB per core for AMD versus 1.25 MB per core for Intel; L3 is 16 MB total for AMD versus 20 MB shared for Intel. Memory support is DDR4 only for AMD versus DDR4 and DDR5 for Intel. Memory bandwidth is 51.2 GB/s for AMD, with no recorded value for Intel. ECC memory is not supported on AMD but is supported on Intel. PCIe is Gen 3 with 16 lanes for AMD versus Gen 5 with 16 lanes for Intel. Integrated graphics are Radeon Graphics 512SP for AMD versus UHD Graphics 730 for Intel. The multiplier is unlocked on AMD and locked on Intel. Release dates are 2025-02-23 for AMD and 2024-06-30 for Intel. Die sizes are 180 mm² for AMD and 215 mm² for Intel. Transistor count is 10,700 million for AMD and not recorded for Intel.
FAQ
Q: Which processor has more cores?
A: The AMD Ryzen 7 5705G has 8 cores and 16 threads, while the Intel Core i5-14401E has 6 cores and 12 threads.
Q: Does the Intel Core i5-14401E support faster memory?
A: Yes, the Intel chip supports both DDR4 and DDR5 memory, whereas the AMD Ryzen 7 5705G supports only DDR4.
Q: What is the boost clock difference?
A: The Intel Core i5-14401E has a boost clock of 4.70 GHz, which is 0.10 GHz higher than the AMD Ryzen 7 5705G’s 4.60 GHz.
Q: Which processor has a larger L3 cache?
A: The Intel Core i5-14401E has 20 MB of shared L3 cache, while the AMD Ryzen 7 5705G has 16 MB of L3 cache.
Q: Is the AMD processor overclockable?
A: Yes, the AMD Ryzen 7 5705G has an unlocked multiplier. The Intel Core i5-14401E has a locked multiplier.
Q: What are the recorded benchmark scores for the AMD processor?
A: The database contains no recorded benchmark scores for the AMD Ryzen 7 5705G. All six Cinebench scores in the database belong to the Intel Core i5-14401E.
The Verdict
The recorded data favors the Intel Core i5-14401E in every measured benchmark category. Its six Cinebench scores, including R23 multi-core of 18,161 and single-core of 2,564, provide concrete evidence of strong performance. The chip sits at the 60th percentile, and its nearest rivals, such as the Xeon E5-2699A v4 and Core i9-10850K, are within 0.8% in average score, meaning the Intel part delivers competitive throughput with a modern 6-core design. The PCIe Gen 5 support, dual memory compatibility, and ECC capability add practical advantages for builders who need current platform features.
The AMD Ryzen 7 5705G offers a higher core count, a smaller process node, and an unlocked multiplier, but with no benchmark data, its actual performance cannot be verified from the database. The 8-core configuration gives it a theoretical edge in heavily threaded workloads, and the 7 nm process suggests better efficiency. For users who prioritize core count and overclocking headroom, the AMD part is the logical selection. For users who want measured performance, modern memory options, and PCIe Gen 5 bandwidth, the Intel chip is the data-backed choice. The absence of AMD benchmarks means any decision favoring that processor relies on specifications rather than recorded results, while the Intel processor’s case rests on six direct measurements.