AMD Ryzen AI 5 435GE vs Intel Core 7 150HL Comparison
AMD Ryzen AI 5 435GE
Core 7 150HL
Analysis: AMD Ryzen AI 5 435GE vs Intel Core 7 150HL
FAQ
Q: What are the core and thread counts of the AMD Ryzen AI 5 435GE and Intel Core 7 150HL?
A: The AMD Ryzen AI 5 435GE has 6 cores and 12 threads, while the Intel Core 7 150HL has 14 cores and 20 threads.
Q: What is the thermal design power (TDP) for each processor?
A: The AMD Ryzen AI 5 435GE has a TDP of 35 watts, whereas the Intel Core 7 150HL has a TDP of 45 watts.
Q: Which processor supports ECC memory?
A: The AMD Ryzen AI 5 435GE supports ECC memory. The Intel Core 7 150HL does not support ECC memory.
Q: What process nodes are used for each chip?
A: The AMD Ryzen AI 5 435GE is built on a 4 nm process by TSMC, while the Intel Core 7 150HL uses a 10 nm process by Intel.
Q: What is the maximum boost clock speed for each processor?
A: The AMD Ryzen AI 5 435GE boosts up to 4.50 GHz, and the Intel Core 7 150HL boosts up to 5.00 GHz.
Q: Do both processors use the same memory type?
A: No. The AMD Ryzen AI 5 435GE supports DDR5 only, while the Intel Core 7 150HL supports both DDR4 and DDR5.
Architecture Differences
The AMD Ryzen AI 5 435GE belongs to the Ryzen AI 400 generation, codenamed Gorgon Point, and uses a hybrid architecture based on Zen 5 and Zen 5c cores. The chip is manufactured on a 4 nm process at TSMC. It has 6 cores and 12 threads. The cache hierarchy includes 80 KB of L1 per core, 1 MB of L2 per core, and a total of 4 MB of L3 cache. The processor is designed for the AMD Socket AM5 and has an unlocked multiplier, indicating overclocking capability. It integrates a Radeon 840M graphics unit and supports dual-channel DDR5 memory with a bandwidth of 89.6 GB/s. The CPU provides 10 PCIe Gen 4 lanes. The production status is active, and the release date is recorded as 2026-02-28.
The Intel Core 7 150HL is part of the Core 7 generation, codenamed Raptor Lake-PS, and uses the Raptor Lake architecture. It is built on a 10 nm process at Intel's foundry. The processor has 14 cores and 20 threads, which is a larger core count than the AMD part. Its cache configuration includes 80 KB of L1 per core, 2 MB of L2 per core, and a shared 24 MB of L3 cache. The chip uses the Intel Socket 1700 and has a locked multiplier. It includes Iris Xe Graphics with 96 execution units. Memory support covers both DDR4 and DDR5 in a dual-channel configuration. The CPU provides 8 PCIe Gen 4 lanes. The release date is recorded as 2024-04-07, and the production status is active.
The architectural split shows a fundamental difference in design philosophy. The AMD chip uses a smaller process node with a hybrid core layout, while the Intel chip relies on a larger process node with a higher physical core count. The cache configurations also differ notably: Intel provides significantly more L3 cache (24 MB shared versus 4 MB), while AMD's L2 cache is 1 MB per core versus Intel's 2 MB per core. The AMD chip has an unlocked multiplier, whereas the Intel part is locked. The Intel chip supports both DDR4 and DDR5, giving it memory flexibility, while the AMD chip is limited to DDR5 but adds ECC support.
Head-to-Head Benchmarks
The recorded database contains no head-to-head benchmark entries for these two processors. The fields for head-to-head comparisons are empty, and the win counts for both sides are zero. As a result, there are no measured scores, no delta percentages, and no percentile comparisons to report from direct testing. The average benchmark score for each processor is also zero, and neither has any nearest rivals listed in the database.
Without direct benchmark measurements, the analysis must rely on the specification data available. The core count difference is substantial: the Intel Core 7 150HL has 14 cores versus 6 cores for the AMD Ryzen AI 5 435GE, and 20 threads versus 12 threads. This indicates a large advantage in heavily threaded workloads for the Intel part, assuming all cores scale properly. The Intel chip also has a higher boost clock, 5.00 GHz versus 4.50 GHz, which could benefit single-threaded performance. The base clock is higher as well, 2.40 GHz versus 2.00 GHz.
The AMD chip counters with a smaller process node, 4 nm versus 10 nm, which typically translates into better power efficiency per operation. The TDP difference is 35 watts versus 45 watts, suggesting the AMD part is designed for lower sustained power draw. The AMD chip also has a higher memory bandwidth figure at 89.6 GB/s, whereas the Intel chip does not have a memory bandwidth value recorded in the database. The AMD chip provides more PCIe lanes, 10 versus 8, though both are Gen 4.
Because the benchmark data is absent, the database cannot confirm which processor delivers better actual performance in any specific test. The win counts remain at zero for both sides. The percentile versus all CPUs is identical at 50 for both, indicating they sit at the median of the database population, but this does not reflect a head-to-head result. The data only supports a specification-based comparison, not a measured performance verdict.
Specification Differences
The two processors differ across several recorded specification fields. The AMD Ryzen AI 5 435GE has 6 cores and 12 threads, while the Intel Core 7 150HL has 14 cores and 20 threads. The base clock for the AMD chip is 2.00 GHz, and the Intel chip runs at 2.40 GHz. The boost clock is 4.50 GHz for AMD and 5.00 GHz for Intel. The TDP is 35 watts for AMD and 45 watts for Intel. The socket types differ, with AMD using Socket AM5 and Intel using Socket 1700.
The process node is 4 nm for AMD and 10 nm for Intel. The foundry is TSMC for AMD and Intel for the Intel part. The codenames are Gorgon Point versus Raptor Lake-PS. The generation identifiers are Ryzen AI 400 versus Core 7. The L2 cache per core is 1 MB for AMD and 2 MB for Intel. The L3 cache is 4 MB for AMD and 24 MB shared for Intel. The memory support is DDR5 only for AMD and DDR4 plus DDR5 for Intel. The memory bandwidth is 89.6 GB/s for AMD and not recorded for Intel. ECC memory is supported by AMD but not by Intel. The PCIe lane count is 10 for AMD and 8 for Intel, both Gen 4. The integrated graphics are Radeon 840M for AMD and Iris Xe Graphics 96EU for Intel. The multiplier is unlocked for AMD and locked for Intel. The release dates differ, with AMD at 2026-02-28 and Intel at 2024-04-07. The part number is listed for AMD as 100-000001785, while Intel's part number is unknown.
Where Each One Wins
Based on the specification data, the Intel Core 7 150HL holds advantages in core count, thread count, base clock, boost clock, L2 cache per core, L3 cache size, and memory type flexibility. The higher core and thread counts suggest stronger performance in multi-threaded applications such as video rendering, compilation, and server-style workloads. The higher boost clock could provide an edge in lightly threaded tasks that rely on a single core's maximum speed. The larger L3 cache of 24 MB shared versus 4 MB may improve data reuse in workloads with large working sets. The dual memory support for DDR4 and DDR5 gives the Intel platform more options for system builders.
The AMD Ryzen AI 5 435GE wins on process node, TDP, memory bandwidth, PCIe lane count, ECC support, and unlocked multiplier. The 4 nm process versus 10 nm indicates a more modern manufacturing technology, which typically reduces power draw per computation. The lower TDP of 35 watts versus 45 watts suggests the AMD chip can operate in more power-constrained environments or with simpler cooling solutions. The higher memory bandwidth of 89.6 GB/s, when compared to the Intel chip's unrecorded value, indicates a design focus on memory throughput. The additional PCIe lanes, 10 versus 8, allow for more expansion devices. ECC support is a meaningful feature for workstation and data integrity use cases. The unlocked multiplier allows overclocking, which the Intel part cannot do due to its locked multiplier.
The release timeline also differs, with the AMD chip being newer in the database, dated 2026-02-28, versus the Intel chip at 2024-04-07. This could imply the AMD part benefits from later design revisions, though the database does not provide performance data to confirm this.
The Verdict
The database shows two processors with complementary strengths, but no measured benchmark results to rank them definitively. The Intel Core 7 150HL presents a higher core count, higher clock speeds, and a larger L3 cache, which positions it for throughput-oriented tasks that scale with parallel execution. The AMD Ryzen AI 5 435GE offers a lower TDP, a smaller process node, ECC support, an unlocked multiplier, and higher memory bandwidth, which positions it for power-sensitive, overclockable, or data-integrity-focused builds.
For users prioritizing raw core count and maximum clock speed, the Intel part is the specification-based choice. For users prioritizing power efficiency, ECC memory, or overclocking flexibility, the AMD part is the specification-based choice. The absence of head-to-head benchmark data means no performance winner can be declared from the database. The percentile ranking for both is identical at 50, and the average benchmark score is zero for both, leaving the comparison entirely on the specification sheet. The final selection depends on which of these recorded features matter most for the intended use case.