AMD Ryzen 7 5700U vs Intel Core i7-1365U Comparison
AMD Ryzen 7 5700U
Core i7-1365U
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen 7 5700U vs Intel Core i7-1365U
The Intel Core i7-1365U and AMD Ryzen 7 5700U land in a statistical dead heat in aggregate, with average benchmark scores of 18177 and 18176 respectively — a 0% delta. Both sit at the 72nd percentile of all CPUs, and the nearest rival list shows them trading blows with the Intel Core i7-9700 at 18180 and the AMD Ryzen 3 8300G at 18169. Despite this overall parity, the head-to-head data reveals a sharp split: the Intel chip wins 8 of 15 direct comparisons, while the AMD chip takes 7. The decisive factor is workload type, not raw capability.
Head-to-Head Benchmarks
The most dramatic separation occurs in single-threaded performance. In Cinebench R23 single-core, the Intel Core i7-1365U scores 1887 against the Ryzen 7 5700U’s 1258, a 50% advantage. Cinebench R15 single-core tells the same story: 265.5 versus 188, a 41.2% lead for Intel. PassMark single-thread results echo this with 3411 versus 2560, a 33.2% margin. The Intel part’s 5.20 GHz boost clock versus 4.30 GHz on the AMD chip explains much of this gap.
Multi-core results are far closer. The Intel chip wins Cinebench R23 multi-core with 8946 versus 8650, a modest 3.4% lead. Cinebench R15 multi-core actually goes to AMD, with 1480 versus 1466.5, a 0.9% margin. PassMark multi-thread favors AMD more clearly: 15623 versus 14045, a 10.1% advantage. The Ryzen’s 16 threads against Intel’s 12 threads help it in sustained parallel work, but the Intel chip’s higher per-core efficiency keeps it competitive in shorter multi-core bursts.
AMD dominates in several specialized PassMark workloads. Data compression shows a 218853 score versus 149585, a 31.7% win for AMD. Extended instructions favor AMD at 13519 versus 8321, a 38.4% gap. Random string sorting goes to AMD at 23608 versus 16977, a 28.1% margin. Data encryption also favors AMD: 12549 versus 9531, a 24% lead. Integer math is AMD’s as well, with 60037 versus 50881, a 15.3% advantage.
Intel fights back in other specialized tests. Find prime numbers shows a 100% win for Intel: 58 versus 29, meaning Intel doubles AMD’s score. Physics simulation heavily favors Intel at 966 versus 622, a 55.3% lead. Floating point math is nearly tied, with Intel at 33689 versus 33151, a 1.6% margin. The Intel chip also has a notable single-thread PassMark win at 3411 versus 2560, reinforcing its dominance in latency-sensitive tasks.
Architecture Differences
The two processors come from fundamentally different design philosophies. The Intel Core i7-1365U uses Raptor Lake architecture on a 10 nm process, built by Intel itself. It packs 10 cores and 12 threads, with a base clock of 1800 MHz and boost up to 5.20 GHz. Cache layout is generous per core: 80 KB L1, 1.25 MB L2, and 12 MB shared L3. The chip supports both DDR4 and DDR5 memory over a dual-channel bus, and provides PCIe Gen 4 with 8 CPU lanes. Integrated graphics are Iris Xe with 96 execution units.
The AMD Ryzen 7 5700U uses Zen 2 architecture on a 7 nm process, fabricated by TSMC. It offers 8 cores and 16 threads, with the same 1800 MHz base clock but a lower 4300 MHz boost. Cache is smaller per core: 64 KB L1 and 512 KB L2, with 8 MB shared L3. Memory support is limited to DDR4 on a dual-channel bus, with a stated bandwidth of 51.2 GB/s. PCIe is Gen 3 with 12 CPU lanes. The integrated graphics are Radeon with 512 shader processors.
The transistor counts tell a story of process advantage. AMD’s chip uses 9,800 million transistors on a 156 mm² die. The Intel chip’s transistor count and die size are not listed, but the 10 nm versus 7 nm process difference suggests AMD has density on its side. The AMD part’s release date is earlier at 2021-01-11, while Intel’s is 2023-01-03. Both are mobile segments, active production, and dual-channel memory designs. Neither supports ECC memory, and both have locked multipliers.
Where Each One Wins
Intel Core i7-1365U wins on: Any workload that depends on single-thread latency. The 50% lead in Cinebench R23 single-core and 41.2% lead in R15 single-core make it the pick for responsive everyday use, legacy software, and lightly-threaded applications. The 100% advantage in find prime numbers suggests strong integer division and branch prediction. Physics simulation at 55.3% ahead indicates better handling of sequential physics calculations. The 33.2% single-thread PassMark win confirms this across the board. For users who prioritize snappy UI response, spreadsheet recalculation, or web browsing with many tabs, the Intel chip delivers visibly better performance.
AMD Ryzen 7 5700U wins on: Parallel throughput and data-heavy workloads. The 31.7% lead in data compression and 38.4% in extended instructions point to strong SIMD and vector processing. Data encryption at 24% ahead is meaningful for security-conscious users or those handling encrypted volumes. Random string sorting at 28.1% higher indicates better memory access patterns for irregular data. Integer math at 15.3% ahead helps in code compilation and scientific computing. The 10.1% multi-thread advantage in PassMark, combined with 16 threads versus 12, makes it the better choice for video encoding, batch photo processing, or running multiple virtual machines concurrently.
The Verdict
Choose the Intel Core i7-1365U if your daily driver is single-threaded. The data is unambiguous: 50% faster in Cinebench R23 single-core and 33.2% faster in PassMark single-thread means office productivity, browser-heavy workflows, and legacy applications will feel more responsive. The physics and prime number wins suggest it handles real-time simulation and calculation tasks better. Its 12 MB L3 cache versus 8 MB helps with repeated data access. The newer release date (2023 versus 2021) means it has newer platform features like DDR5 support and PCIe Gen 4, which future-proofs memory and storage bandwidth.
Choose the AMD Ryzen 7 5700U if your workload scales with threads. The 16 threads versus 12 give it a structural advantage in heavily parallel tasks. Data compression, encryption, and string sorting wins make it superior for file archiving, database operations, and data processing pipelines. The 38.4% lead in extended instructions means scientific and engineering software that uses AVX2 will run faster. Its 7 nm process from TSMC suggests better power efficiency under sustained load, though both chips have a 15 W TDP. The earlier release date also means it may be available in more mature, tested laptop designs.
The aggregate scores are near-identical, so the decision rests entirely on workload profile. For mixed usage, either chip will serve well. For single-thread dominance, Intel wins. For parallel throughput, AMD wins.
FAQ
Q: Which CPU has a higher single-core score in Cinebench R23?
A: The Intel Core i7-1365U scores 1887 versus 1258 for the AMD Ryzen 7 5700U, a 50% advantage.
Q: How much faster is the AMD chip in data compression?
A: AMD scores 218853 versus Intel’s 149585, a 31.7% lead in PassMark data compression.
Q: Does the Intel chip support DDR5 memory?
A: Yes, the Intel Core i7-1365U supports both DDR4 and DDR5, while the AMD Ryzen 7 5700U supports only DDR4.
Q: What are the thread counts for each processor?
A: The Intel Core i7-1365U has 12 threads (10 cores), and the AMD Ryzen 7 5700U has 16 threads (8 cores).
Q: Which CPU wins in PassMark physics simulation?
A: The Intel chip wins with 966 versus 622, a 55.3% advantage for the Intel Core i7-1365U.
Q: Are their average benchmark scores similar?
A: Yes, the Intel chip averages 18177 and the AMD chip averages 18176, a 0% delta, and both rank at the 72nd percentile.
Specification Differences
| Specification | Intel Core i7-1365U | AMD Ryzen 7 5700U |
|---|---|---|
| Cores | 10 | 8 |
| Threads | 12 | 16 |
| Boost Clock | 5.20 GHz | 4.30 GHz |
| Socket | Intel BGA 1744 | AMD Socket FP6 |
| Architecture | Raptor Lake | Zen 2 |
| Process Node | 10 nm | 7 nm |
| Foundry | Intel | TSMC |
| Transistors | Not listed | 9,800 million |
| Die Size | Not listed | 156 mm² |
| L1 Cache | 80 KB (per core) | 64 KB (per core) |
| L2 Cache | 1.25 MB (per core) | 512 KB (per core) |
| L3 Cache | 12 MB (shared) | 8 MB (shared) |
| Memory Support | DDR4, DDR5 | DDR4 |
| Memory Bandwidth | Not listed | 51.2 GB/s |
| PCIe | Gen 4, 8 Lanes | Gen 3, 12 Lanes |
| Integrated Graphics | Iris Xe Graphics 96EU | Radeon Graphics 512SP |
| Release Date | 2023-01-03 | 2021-01-11 |
| Launch MSRP | $426 | Not listed |