AMD Ryzen AI 5 435GE vs Intel Core 7 253PTE Comparison
AMD Ryzen AI 5 435GE
Core 7 253PTE
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen AI 5 435GE vs Intel Core 7 253PTE
FAQ
Q: What are the core and thread counts for the AMD Ryzen AI 5 435GE and the Intel Core 7 253PTE?
A: The AMD Ryzen AI 5 435GE has 6 cores and 12 threads. The Intel Core 7 253PTE has 10 cores and 20 threads.
Q: Which processor has the higher boost clock speed?
A: The Intel Core 7 253PTE boosts to 5.40 GHz, while the AMD Ryzen AI 5 435GE boosts to 4.50 GHz.
Q: What is the process node for each chip?
A: The AMD Ryzen AI 5 435GE is built on a 4 nm process by TSMC. The Intel Core 7 253PTE uses a 10 nm process from Intel.
Q: Do both processors support ECC memory?
A: Yes, both the AMD Ryzen AI 5 435GE and the Intel Core 7 253PTE support ECC memory.
Q: What memory types does each processor support?
A: The AMD Ryzen AI 5 435GE supports DDR5 memory. The Intel Core 7 253PTE supports both DDR4 and DDR5 memory.
Q: What is the launch MSRP of the Intel Core 7 253PTE?
A: The Intel Core 7 253PTE has a launch MSRP of $384.
Where Each One Wins
The benchmark data shows a clear split in workload strengths. The Intel Core 7 253PTE wins all recorded benchmark tests, as it is the only processor in this comparison with benchmark entries in the database. The AMD Ryzen AI 5 435GE has no recorded benchmark scores, meaning all measured performance data belongs to the Intel part.
The Intel Core 7 253PTE delivers its largest advantages in multi-threaded and throughput-oriented tasks. Its Cinebench R23 multicore score of 21276 indicates strong parallel processing capability. The PassMark multithread score of 25031 reinforces this, along with PassMark integer math at 119552 and floating point math at 67209. These results point to a processor suited for rendering, compilation, and other heavily threaded workloads.
The single-thread results are equally decisive. The Cinebench R23 singlecore score of 3003 and the PassMark single thread score of 3794 show that the Intel chip also leads in lightly threaded applications. The high boost clock of 5.40 GHz likely contributes to this advantage, though the recorded data does not directly attribute the score to clock speed.
Specialized instruction workloads also favor the Intel processor. The PassMark extended instructions score of 17099 and the data encryption score of 15500 demonstrate capability in cryptography and vectorized code. The data compression score of 275828 is particularly strong, suggesting efficient handling of archival and storage workloads.
The AMD Ryzen AI 5 435GE cannot be assessed for wins because the database contains no benchmark results for it. Its specifications, such as 6 cores and a 4.50 GHz boost clock, are present, but no measured performance data exists to compare against the Intel part.
Architecture Differences
The two processors come from different design philosophies. The AMD Ryzen AI 5 435GE uses the Gorgon Point codename and belongs to the Ryzen AI 400 generation, which is based on a hybrid Zen 5 and Zen 5c architecture. The Intel Core 7 253PTE uses the Bartlett Lake codename and belongs to the Core 7 generation.
The process nodes differ substantially. AMD uses a 4 nm process from TSMC, while Intel uses a 10 nm process from its own foundry. This difference in manufacturing technology affects transistor density and power characteristics, though the database does not provide transistor counts or die sizes for either chip.
Cache layouts diverge significantly. Both processors have 80 KB of L1 cache per core. The AMD chip has 1 MB of L2 cache per core and 4 MB of L3 cache. The Intel chip has 2 MB of L2 cache per core and 33 MB of shared L3 cache. The larger L3 cache on the Intel part is a notable architectural advantage for workloads that benefit from shared data access.
Memory support also differs. The AMD processor supports only DDR5 memory, while the Intel processor supports both DDR4 and DDR5. Both run on dual-channel memory buses with identical memory bandwidth of 89.6 GB/s.
The integrated graphics differ. AMD uses the Radeon 840M, while Intel uses UHD Graphics 730. The database does not include graphics benchmark scores for either.
PCIe capabilities are not equal. The AMD Ryzen AI 5 435GE provides Gen 4 with 10 lanes from the CPU. The Intel Core 7 253PTE provides Gen 5 with 16 lanes from the CPU, which offers higher bandwidth for expansion devices.
The AMD chip has an unlocked multiplier, while the Intel chip does not. This means the AMD processor allows user-controlled overclocking, whereas the Intel processor is locked in this regard.
Specification Differences
The core counts differ: the AMD Ryzen AI 5 435GE has 6 cores and 12 threads, while the Intel Core 7 253PTE has 10 cores and 20 threads.
Base clocks are close but not identical. The AMD chip runs at 2.00 GHz, while the Intel chip runs at 1.80 GHz. Boost clocks show a larger gap, with the Intel chip reaching 5.40 GHz versus 4.50 GHz for the AMD chip.
Thermal design power differs. The AMD Ryzen AI 5 435GE has a TDP of 35 watts, while the Intel Core 7 253PTE has a TDP of 45 watts.
Sockets are incompatible. The AMD chip uses AMD Socket AM5, and the Intel chip uses Intel Socket 1700.
L2 cache per core is 1 MB on the AMD chip and 2 MB on the Intel chip. L3 cache is 4 MB on the AMD chip and 33 MB shared on the Intel chip.
Memory support is narrower on the AMD chip, which supports only DDR5, versus the Intel chip's DDR4 and DDR5 support. Both have the same 89.6 GB/s memory bandwidth.
PCIe generations and lane counts differ. The AMD chip offers Gen 4 with 10 lanes, while the Intel chip offers Gen 5 with 16 lanes.
The integrated graphics are different models: Radeon 840M on the AMD side and UHD Graphics 730 on the Intel side.
The multiplier is unlocked on the AMD chip and locked on the Intel chip.
The release dates differ slightly. The AMD Ryzen AI 5 435GE released on 2026-02-28, and the Intel Core 7 253PTE released on 2026-03-08.
The Intel part has a launch MSRP of $384. The AMD part has no recorded launch MSRP.
Head-to-Head Benchmarks
The database contains no head-to-head benchmark entries for these two processors. The only benchmark scores recorded belong to the Intel Core 7 253PTE. Therefore, direct comparison must rely on the Intel chip's absolute scores and its standing against its nearest rivals.
The Intel Core 7 253PTE scores 21276 in Cinebench R23 multicore. In Cinebench R20 multicore, it scores 8935, and in Cinebench R15 multicore, it scores 2144. These multicore results show consistent scaling across Cinebench versions.
Single-core results follow the same pattern. The Cinebench R23 singlecore score is 3003, the R20 singlecore score is 1261, and the R15 singlecore score is 302.
PassMark results provide a broader view. The multithread score is 25031, and the single thread score is 3794. The integer math score is 119552, while floating point math scores 67209. Data compression reaches 275828, and data encryption hits 15500. Extended instructions score 17099, and random string sorting scores 28227. Physics scores 1318, and find prime numbers scores 82.
The Intel chip ranks at the 84th percentile among all CPUs in the database. Its average benchmark score is 34962. Its nearest rival is the Intel Core i7-13800H with an average score of 34988, a delta of -0.1 percent, meaning the Core 7 253PTE sits essentially level with it. The Intel Core i9-12900HX also sits at 35003, a -0.1 percent delta. The Intel Xeon 6349P scores 34890, a 0.2 percent delta in favor of the Core 7 253PTE. The AMD Ryzen 5 150 scores 34881, also a 0.2 percent delta in favor of the Intel chip.
These delta values indicate that the Intel Core 7 253PTE performs within a very tight band around its closest competitors. The differences of 0.1 to 0.2 percent are negligible in practical terms. The chip's 84th percentile ranking places it comfortably above the median processor in the database.
Since the AMD Ryzen AI 5 435GE has no benchmark scores, no head-to-head performance delta can be calculated. The wins count is 0 for the AMD chip and 0 for the Intel chip in the direct comparison field, but the Intel chip holds all recorded individual benchmark scores.
The Verdict
The data supports a straightforward conclusion. The Intel Core 7 253PTE is the only processor in this comparison with measured benchmark results. Its 84th percentile ranking and average score of 34962 place it in the upper tier of the database. The AMD Ryzen AI 5 435GE has no recorded scores, so its performance cannot be verified against the Intel part.
For multi-threaded workloads such as rendering, video encoding, and software compilation, the Intel Core 7 253PTE shows strong results. Its 10 cores and 20 threads, combined with 33 MB of shared L3 cache, provide a solid foundation for parallel tasks. The Cinebench R23 multicore score of 21276 and PassMark multithread score of 25031 confirm this capability.
For single-threaded responsiveness, the Intel chip also leads based on available data. Its 5.40 GHz boost clock and single-core scores of 3003 in Cinebench R23 and 3794 in PassMark indicate strong performance in everyday applications and lightly threaded software.
The AMD Ryzen AI 5 435GE offers a lower TDP of 35 watts versus 45 watts, an unlocked multiplier, and a newer 4 nm process node. These are meaningful specification advantages for users who prioritize power efficiency or overclocking. The 6-core, 12-thread configuration and 4 MB L3 cache, however, suggest a lower ceiling for heavily threaded work compared to the Intel chip.
The Intel Core 7 253PTE also brings platform advantages. It supports both DDR4 and DDR5 memory, offers PCIe Gen 5 with 16 lanes, and includes a larger shared L3 cache. Its release date is slightly later, and it carries a launch MSRP of $384.
The recorded data indicates that buyers seeking maximum measured performance should select the Intel Core 7 253PTE. Buyers who require an unlocked multiplier, lower power draw, or the AM5 platform should consider the AMD Ryzen AI 5 435GE, but they must accept that no benchmark data exists to validate its performance level. The database currently shows a one-sided comparison, with all measurable performance advantages belonging to the Intel processor.