AMD Ryzen 7 7735HS vs Intel Core i7-1360P Comparison
AMD Ryzen 7 7735HS
Core i7-1360P
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen 7 7735HS vs Intel Core i7-1360P
Head-to-Head Benchmarks
The benchmark data shows a clear split between these two mobile processors. The AMD Ryzen 7 7735HS wins 9 of the 15 head-to-head comparisons, while the Intel Core i7-1360P takes 6. The margins tell the real story: AMD's wins are often large, while Intel's are mostly narrow but significant in specific workloads.
Starting with multi-core rendering, AMD dominates. In Cinebench R15 multi-core, the Ryzen 7 7735HS scores 2153.4 against Intel's 1858, a 13.7% advantage. The Cinebench R23 multi-core result is similar, 13106 versus 11266.5, a 14% lead for AMD. These are substantial gaps in sustained all-core workloads, which suggests the AMD chip's higher 35W TDP pays off under load.
The PassMark suite reinforces AMD's multi-threaded strength. The Ryzen 7 7735HS scores 23166 in PassMark multi-thread, which is 19.6% ahead of the Intel chip's 18632. Integer math shows a 20.3% lead (85309 versus 67963), and floating point math is closer but still AMD's win at 47865 versus 45997, a 3.9% margin. Data compression is heavily AMD-favored: 293278 versus 203746, a 30.5% gap. Data encryption shows the same trend, 18237 versus 12463, a 31.7% gap. Extended instruction workloads are AMD's biggest win at 42.2% (20050 versus 11581). Random string sorting also favors AMD, 30388 versus 22522, a 25.9% gap.
Intel fights back in single-core and specific math tests. In Cinebench R23 single-core, the Core i7-1360P scores 1829 versus 1546 for AMD, an 18.3% advantage. This is the largest single-core margin in the data. Cinebench R15 single-core is closer, 258 versus 248, a 4% lead for Intel. The PassMark single-thread test shows 3461 versus 3296, a 5% Intel win.
The prime number test is a surprising Intel sweep. The Core i7-1360P scores 78 versus 59, a 32.2% lead. This workload appears to favor Intel's architecture significantly. Similarly, the PassMark physics test shows Intel ahead, 1280 versus 1073, a 19.3% margin.
Overall, the average benchmark scores reflect the split. The Ryzen 7 7735HS has an average score of 25147, placing it at the 77th percentile of all CPUs. The Core i7-1360P averages 24344, at the 76th percentile. The delta is only 3.3% in AMD's favor, but the distribution matters: AMD wins where it counts for heavy multitasking and content creation, Intel wins where responsiveness and single-threaded legacy code matter.
FAQ
Q: Which CPU has the higher multi-core performance?
A: The AMD Ryzen 7 7735HS. It leads by 13.7% in Cinebench R15 multi-core and 14% in Cinebench R23 multi-core. PassMark multi-thread shows a 19.6% advantage.
Q: Which CPU is faster in single-threaded workloads?
A: The Intel Core i7-1360P. It leads by 18.3% in Cinebench R23 single-core, 4% in Cinebench R15 single-core, and 5% in PassMark single-thread.
Q: What is the largest performance gap between the two?
A: The biggest margin is in PassMark extended instructions, where the AMD Ryzen 7 7735HS leads by 42.2%. Intel's largest win is in PassMark find prime numbers, where it leads by 32.2%.
Q: How do their overall benchmark averages compare?
A: The Ryzen 7 7735HS has an average benchmark score of 25147 and sits at the 77th percentile. The Core i7-1360P averages 24393 at the 76th percentile. The difference is about 3.3%.
Q: Which CPU wins more head-to-head tests?
A: The AMD Ryzen 7 7735HS wins 9 out of 15 tests. The Intel Core i7-1360P wins the remaining 6.
Q: Are there any workloads where Intel is significantly better?
A: Yes. The Intel chip is much better at prime number finding and physics calculations, leading by 32.2% and 19.3% respectively. Its single-core advantage is also clear, especially in Cinebench R23.
Architecture Differences
The two processors come from different design philosophies. Intel's Core i7-1360P uses Raptor Lake-P architecture, built on Intel's 10 nm process. It has 12 cores and 16 threads, arranged in a hybrid design (performance and efficiency cores). The base clock is 2.20 GHz with a boost clock of 5.00 GHz. The L3 cache is 18 MB shared, with 2 MB L2 per core and 80 KB L1 per core. The TDP is 28W.
AMD's Ryzen 7 7735HS uses Zen 3+ architecture, built on TSMC's 6nm process. It has 8 cores and 16 threads, all performance cores. The base clock is 3.20 GHz, boost clock is 4.75 GHz. The L3 cache is 16 MB shared, with 512 KB L2 per core and 64 KB L1 per core. The TDP is 35W. The die size is 210 mm².
A key difference is memory support. Intel supports both DDR4 and DDR5 dual-channel, while AMD only supports DDR5 dual-channel. AMD has a listed memory bandwidth of 76.8 GB/s. The AMD chip also supports ECC memory, while Intel does not.
Both use PCIe Gen 4 with 20 CPU lanes. Intel's integrated graphics are Iris Xe with 96 execution units, while AMD uses the Radeon 680M.
The release dates differ: Intel launched on January 3, 2023, while AMD launched on March 31, 2023. Both are active production parts. Intel has a launch MSRP of $480, while AMD's is not listed. Both are socketed for mobile: Intel BGA 1744 versus AMD FP7.
The Verdict
The data tells a clear story for different use cases. If you run heavily threaded workloads, render with multiple cores, or handle data compression and encryption, the Ryzen 7 7735HS is the stronger choice. Its 30.5% lead in data compression, 31.7% lead in encryption, and 20.3% lead in integer math are decisive. The 14% advantage in Cinebench R23 multi-core means faster video rendering and 3D workloads.
If your work is more single-thread bound, or relies on legacy prime-number calculations or physics simulations, the Core i7-1360P has the edge. Its 18.3% lead in Cinebench R23 single-core is significant for older software that isn't well-parallelized. The 32.2% lead in prime finding is extreme, suggesting an architectural advantage for that specific workload.
The overall percentile rankings are nearly identical: 77th for AMD versus 76th for Intel. The average scores differ by only 3.3%. This means for a general user, the difference will not be dramatic. However, the workload-specific gaps are large enough to matter.
For a user who prioritizes multi-threaded productivity, the Ryzen 7 7735HS is the better buy, especially considering its higher TDP of 35W delivers sustained performance. For a user who values single-core speed and lighter power consumption (28W), the Core i7-1360P is the pick. The Intel chip also has the advantage of a lower launch MSRP when that was listed, though AMD's price is not provided.
The verdict is not a knockout. It is a split decision based on workload.
Specification Differences
The two CPUs differ in several key specifications.
Cores: Intel has 12 cores, AMD has 8.
Threads: Both have 16 threads.
Base clock: Intel 2.20 GHz, AMD 3.20 GHz.
Boost clock: Intel 5.00 GHz, AMD 4.75 GHz.
TDP: Intel 28W, AMD 35W.
Socket: Intel BGA 1744, AMD FP7.
Architecture: Intel Raptor Lake, AMD Zen 3+.
Process node: Intel 10nm, AMD 6nm (TSMC).
Cache: Intel has 18 MB L3 shared, with 2 MB L2 and 80 KB L1 per core. AMD has 16 MB L3 shared, 512 KB L2 and 64 KB L1 per core.
Memory support: Intel DDR4 and DDR5, AMD DDR5 only.
Memory bandwidth: AMD lists 76.8 GB/s, Intel does not list a figure.
ECC memory: Intel no, AMD yes.
Integrated graphics: Intel Iris Xe Graphics 96EU, AMD Radeon 680M.
Release date: Intel January 3, 2023, AMD March 31, 2023.
Launch MSRP: Intel $480, AMD not listed.
Die size: AMD 210 mm², Intel not listed.
Foundry: Intel for Intel, TSMC for AMD.
Part number: Intel SRMJ8, AMD 100-000000985(FP3)100-000000989(FP3r2).
Both share PCIe Gen 4 with 20 lanes (CPU only), dual-channel memory bus, and are both mobile segment processors that are active in production.