AMD Ryzen 5 7533HS vs Intel Arc G3 Comparison
AMD Ryzen 5 7533HS
Arc G3
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen 5 7533HS vs Intel Arc G3
Head-to-Head Benchmarks
The database contains no direct head-to-head benchmark results between the AMD Ryzen 5 7533HS and the Intel Arc G3. The recorded data shows a complete set of 17 benchmark scores for the AMD processor, while the Intel Arc G3 has no recorded benchmark scores in the database at all. This absence of comparative measurements means the head-to-head analysis relies entirely on the AMD side's performance profile and the architectural specifications of both parts.
The AMD Ryzen 5 7533HS delivers a Cinebench R23 multi-core score of 12342 and a single-core score of 1742. In Cinebench R20, it scores 5183 multi-core and 731 single-core, while in Cinebench R15 it records 1243 multi-core and 175 single-core. PassMark results show a multi-thread score of 14520, a single-thread score of 2740, integer math at 50800, floating point math at 27800, and extended instructions at 11219. Data compression reaches 168692, data encryption hits 10718, random string sorting scores 17669, and prime number finding records 48. Physics testing yields 821. The average benchmark score for the AMD processor is 19364, placing it at the 73rd percentile of all CPUs in the database.
With no benchmark data recorded for the Intel Arc G3, the database shows an average benchmark score of 0 and a 50th percentile ranking, which reflects the absence of measurements rather than performance characteristics. The nearest rivals listed for the AMD processor provide context for its standing: the Intel Core Ultra 5 226V scores 19368, a 0 percent delta; the Intel Core i5-1345U scores 19411, a -0.2 percent delta; the Intel Core i7-8700K scores 19238, a 0.7 percent delta; and the Intel Core i7-10700F scores 19499, a -0.7 percent delta. These figures indicate the AMD Ryzen 5 7533HS sits within a tight performance band around the 19300 to 19500 average score range, with the largest measured gap being 0.7 percent ahead of the Intel Core i7-8700K and 0.7 percent behind the Intel Core i7-10700F.
The Verdict
The data supports a clear division of roles. The AMD Ryzen 5 7533HS is the only one of the two with verified performance measurements, and its 73rd percentile standing among all CPUs indicates solid mid-to-upper tier placement for mobile computing. Its 6 cores and 12 threads provide simultaneous multi-threading capability, which the Intel Arc G3 lacks entirely, as the Intel part offers 14 cores and 14 threads with no hyper-threading. For workloads that benefit from thread oversubscription, the AMD processor has the structural advantage.
The Intel Arc G3, by contrast, presents a different architectural proposition. Its 14 physical cores operate without additional threads, its base clock sits at 1.90 GHz versus 3.30 GHz for the AMD, and its boost clock reaches 4.60 GHz versus 4.40 GHz. The Intel part draws 25 watts against 35 watts for the AMD part. The database records no benchmark results for the Intel Arc G3, so any performance judgment must remain provisional. However, the specification sheet indicates a design aimed at higher boost frequencies and lower power consumption, paired with faster memory bandwidth.
The recorded data shows the AMD Ryzen 5 7533HS as the verified performer with a full benchmark suite, while the Intel Arc G3 remains an unmeasured entry. Users requiring confirmed multi-threaded performance from the database should look to the AMD processor. The Intel Arc G3's lack of recorded scores means it cannot be recommended on the basis of measured output.
Architecture Differences
The two processors diverge on nearly every architectural axis. The AMD Ryzen 5 7533HS uses the Zen 3+ architecture under the Rembrandt-R codename, built on a 6 nm process at TSMC with a die size of 208 mm². The Intel Arc G3 uses the Panther Lake codename with a 3 nm process fabricated by Intel itself. The AMD processor belongs to the 7000 series and is described as Ryzen 5 generation, while the Intel part is described as Arc G3 generation.
Core configurations differ substantially. The AMD chip provides 6 cores and 12 threads, indicating simultaneous multi-threading is enabled. The Intel chip provides 14 cores and 14 threads, meaning each core maps to exactly one thread. Cache hierarchies also differ. The AMD part allocates 64 KB of L1 cache per core, 512 KB of L2 per core, and 16 MB of shared L3 cache. The Intel part allocates 192 KB of L1 per core, 2.5 MB of L2 per core, and 18 MB of shared L3 cache. The larger per-core L2 allocation on the Intel side suggests a design prioritizing local data access.
Memory support separates the two clearly. The AMD Ryzen 5 7533HS supports DDR5 memory over a dual-channel bus with 76.8 GB/s of bandwidth. The Intel Arc G3 supports LPDDR5X memory over a dual-channel bus with 136.5 GB/s of bandwidth, a 59.7 GB/s advantage. PCI Express connectivity also differs: the AMD part uses Gen 4 with 20 lanes from the CPU, while the Intel part uses Gen 5 with 4 lanes from the CPU. Neither supports ECC memory, and neither has an unlocked multiplier.
Integrated graphics differ as well. The AMD processor includes a Radeon 660M, while the Intel processor includes an Arc B370. Both parts are mobile segments with active production status. The AMD part uses AMD Socket FP7, while the Intel part uses Intel BGA 2540. Part numbers are listed as 100-000001632(FP7) and 100-000001634(FP7r2) for AMD, and SA4QZ for Intel.
FAQ
Q: Which processor has more cores?
A: The Intel Arc G3 has 14 cores versus 6 cores for the AMD Ryzen 5 7533HS.
Q: Which processor has more threads?
A: The AMD Ryzen 5 7533HS has 12 threads from 6 cores, while the Intel Arc G3 has 14 threads from 14 cores. The AMD processor enables simultaneous multi-threading, giving it 2 threads per core, while the Intel processor runs 1 thread per core.
Q: What is the memory bandwidth difference?
A: The Intel Arc G3 supports LPDDR5X memory with 136.5 GB/s bandwidth, while the AMD Ryzen 5 7533HS supports DDR5 memory with 76.8 GB/s bandwidth. The Intel part has 59.7 GB/s more memory bandwidth.
Q: How do the boost clocks compare?
A: The Intel Arc G3 boosts to 4.60 GHz, while the AMD Ryzen 5 7533HS boosts to 4.40 GHz. The Intel part has a 0.20 GHz higher boost clock.
Q: What is the thermal design power difference?
A: The AMD Ryzen 5 7533HS has a TDP of 35 watts, while the Intel Arc G3 has a TDP of 25 watts. The Intel part draws 10 watts less.
Q: Which processor has a higher percentile ranking in the database?
A: The AMD Ryzen 5 7533HS ranks at the 73rd percentile of all CPUs, while the Intel Arc G3 ranks at the 50th percentile. The Intel ranking reflects the absence of recorded benchmark scores, as its average benchmark score is 0.
Where Each One Wins
The AMD Ryzen 5 7533HS wins in the areas where the database has actual measurements. Its Cinebench R23 multi-core score of 12342 and PassMark multi-thread score of 14520 establish verified multi-threaded capability. The 12 threads from 6 cores allow the operating system to schedule two threads per core, which benefits workloads that can use thread-level parallelism. The 73rd percentile ranking places it above the median CPU in the database. Its nearest rivals all sit within a 0.7 percent delta of its 19364 average score, so the AMD processor delivers performance consistent with that cluster. The 6 nm TSMC process and 35 watt TDP define its power envelope.
The Intel Arc G3 wins on raw specification counts. Its 14 cores exceed the AMD part's 6 cores by 8 cores. Its 4.60 GHz boost clock exceeds the AMD part's 4.40 GHz by 0.20 GHz. Its 136.5 GB/s memory bandwidth exceeds the AMD part's 76.8 GB/s by 59.7 GB/s. Its 18 MB of shared L3 cache exceeds the AMD part's 16 MB by 2 MB. Its per-core L2 cache of 2.5 MB exceeds the AMD part's 512 KB per core. Its 3 nm Intel process node is smaller than the 6 nm TSMC node used by AMD. Its 25 watt TDP is 10 watts lower than the AMD part's 35 watts. Its PCIe Gen 5 interface provides a newer generation than the AMD part's Gen 4.
The Intel Arc G3 also wins on integrated graphics branding, featuring an Arc B370 iGPU versus the Radeon 660M in the AMD part, though no graphics benchmarks are recorded for either. The Intel part's LPDDR5X memory support pairs with its higher bandwidth figure, suggesting a platform tuned for memory-intensive operations. The AMD part's dual-channel DDR5 support with 76.8 GB/s remains a capable configuration, but the data shows the Intel part holds the memory bandwidth advantage.
For users who prioritize verified benchmark output, the AMD Ryzen 5 7533HS is the only option with recorded scores. For users who prioritize core count, memory bandwidth, boost frequency, and process node, the Intel Arc G3 offers the stronger specification sheet. The absence of Intel benchmark data means its specification advantages have no measured performance confirmation in the database.
Specification Differences
The two processors differ in every major specification field recorded. The AMD Ryzen 5 7533HS uses 6 cores and 12 threads, while the Intel Arc G3 uses 14 cores and 14 threads. Base clocks are 3.30 GHz for AMD and 1.90 GHz for Intel. Boost clocks are 4.40 GHz for AMD and 4.60 GHz for Intel. TDP is 35 watts for AMD and 25 watts for Intel. Sockets differ: AMD Socket FP7 versus Intel BGA 2540. The AMD architecture is Zen 3+, while the Intel architecture field is not recorded. Codenames are Rembrandt-R for AMD and Panther Lake for Intel. Process nodes are 6 nm at TSMC for AMD and 3 nm at Intel for the Intel part. Die size is 208 mm² for AMD, with no die size recorded for Intel.
Cache configurations differ across all levels. L1 cache is 64 KB per core for AMD and 192 KB per core for Intel. L2 cache is 512 KB per core for AMD and 2.5 MB per core for Intel. L3 cache is 16 MB shared for AMD and 18 MB shared for Intel. Memory support is DDR5 for AMD and LPDDR5X for Intel, both dual-channel, with bandwidth of 76.8 GB/s for AMD and 136.5 GB/s for Intel. PCIe is Gen 4 with 20 lanes for AMD and Gen 5 with 4 lanes for Intel. Integrated graphics are Radeon 660M for AMD and Arc B370 for Intel. Both are mobile segments, both active in production, both without ECC memory support, and both with locked multipliers. The AMD release date is recorded as 2024-08-31, while the Intel release date is recorded as 2026-05-27. Neither part has a launch MSRP recorded.