Intel Arc G3 vs Intel Core 5 213PE Comparison
Intel Arc G3
Core 5 213PE
PERFORMANCE BENCHMARKS
Analysis: Intel Arc G3 vs Intel Core 5 213PE
FAQ
Q: What is the Intel Arc G3?
A: The Intel Arc G3 is a mobile processor from Intel's Panther Lake generation, built on a 3 nm process. It has 14 cores and 14 threads, with a base clock of 1.90 GHz and a boost clock of 4.60 GHz. It uses the Intel BGA 2540 socket and features integrated Arc B370 graphics.
Q: What is the Intel Core 5 213PE?
A: The Intel Core 5 213PE is a desktop processor from the Bartlett Lake generation, built on a 10 nm process. It has 8 cores and 16 threads, with a base clock of 2.70 GHz and a boost clock of 5.20 GHz. It uses the Intel Socket 1700 and features UHD Graphics 730.
Q: Which processor has a higher boost clock?
A: The Intel Core 5 213PE has a significantly higher boost clock at 5.20 GHz, compared to the Intel Arc G3's 4.60 GHz. The Core 5 also has a higher base clock at 2.70 GHz versus 1.90 GHz.
Q: How do the cache configurations differ?
A: The Intel Arc G3 provides 192 KB of L1 cache per core and 2.5 MB of L2 cache per core, with 18 MB of shared L3 cache. The Intel Core 5 213PE offers 80 KB of L1 per core and 2 MB of L2 per core, but has a larger 24 MB shared L3 cache.
Q: What memory types do these processors support?
A: The Intel Arc G3 supports LPDDR5X memory with a dual-channel bus and a memory bandwidth of 136.5 GB/s. The Intel Core 5 213PE supports both DDR4 and DDR5 memory, also dual-channel, but with a lower memory bandwidth of 76.8 GB/s.
Q: Which processor has ECC memory support?
A: The Intel Core 5 213PE supports ECC memory, while the Intel Arc G3 does not. This makes the Core 5 more suitable for workloads requiring data integrity.
The Verdict
The database records show the Intel Arc G3 currently has no benchmark scores, giving it a percentile rank of 50 among all CPUs and an average benchmark score of 0. In contrast, the Intel Core 5 213PE has a substantial set of recorded benchmark scores, an average score of 35428, and a percentile rank of 85. This means the Core 5 outperforms approximately 85% of all CPUs in the database, while the Arc G3 has no recorded performance data yet.
For users seeking a verified performance baseline, the Intel Core 5 213PE is the only option with measurable results. Its nearest rivals include the Intel Core i7-13700T (average score 35403, delta 0.1%), Intel Core i7-12700KF (35365, delta 0.2%), Intel Core i5-13600T (35305, delta 0.3%), and Intel Core i7-12700K (35287, delta 0.4%). These deltas indicate the Core 5 213PE is statistically tied with those established processors, differing by less than half a percent.
The Intel Arc G3, by contrast, offers no verifiable performance data in the database. Its architectural specifications, including a 3 nm process and Panther Lake codename, suggest a modern design, but without benchmark scores, its real-world performance remains unquantified. The Core 5 213PE, with its active production status and recorded scores, is the only processor here with a demonstrated performance profile.
For desktop users requiring a processor with proven multi-threaded and single-threaded capabilities, the Intel Core 5 213PE is the clear choice. Its 16 threads and 5.20 GHz boost clock, combined with a 65 W TDP, indicate a capable desktop part. The Arc G3, with its mobile segment designation and 25 W TDP, targets different usage scenarios, but the database cannot confirm its performance level at this time.
Head-to-Head Benchmarks
The head-to-head benchmark comparison between these two processors is asymmetrical. The Intel Arc G3 has no recorded benchmark entries in the database, meaning there are zero wins for either side in direct comparison. The Intel Core 5 213PE, however, has a full suite of 17 recorded benchmark scores across Cinebench and Passmark tests.
In Cinebench R15, the Core 5 213PE scores 2264 in multicore and 319 in single-core. Moving to Cinebench R20, the scores jump to 9436 multicore and 1332 single-core. Cinebench R23 shows 22468 multicore and 3172 single-core. These results demonstrate a strong scaling pattern across newer rendering workloads, with the multicore score increasing by roughly 2.4 times from R15 to R23.
Passmark results for the Core 5 213PE show a diverse performance profile. Data compression scores 298804, while data encryption reaches 15916. Extended instructions score 19565, and finding prime numbers records 114. Floating point math delivers 68587, integer math reaches 92089, and multithread scores 26434. Physics processing records 1624, random string sorting hits 32027, and single-thread performance shows 4060.
The nearest rival data provides context for the Core 5's scores. With an average benchmark score of 35428, it sits within 0.4% of the Intel Core i7-12700K (35287). This proximity means the Core 5 213PE delivers performance nearly identical to a previous-generation enthusiast desktop processor, based on the recorded averages.
The absence of Arc G3 benchmark data means the head-to-head comparison cannot be completed. Users cannot infer relative performance between the two from direct measurements, as the database contains no scores for the Arc G3. The Core 5's scores stand alone as the only quantifiable performance evidence in this pairing.
Specification Differences
The Intel Arc G3 and Intel Core 5 213PE differ substantially across core specifications. The Arc G3 has 14 cores and 14 threads, while the Core 5 has 8 cores and 16 threads. This means the Arc G3 relies on more physical cores without hyper-threading, while the Core 5 uses fewer cores but enables simultaneous multithreading.
Clock speeds differ markedly. The Arc G3 operates at a 1.90 GHz base clock and boosts to 4.60 GHz. The Core 5 runs at a 2.70 GHz base and boosts to 5.20 GHz. The Core 5's base clock is 42% higher, and its boost clock is 13% higher, indicating a faster per-core execution capability.
Thermal design power varies significantly. The Arc G3 has a 25 W TDP, suitable for mobile platforms, while the Core 5 has a 65 W TDP, indicating a desktop-oriented power envelope. The socket types differ: the Arc G3 uses Intel BGA 2540 (soldered), while the Core 5 uses Intel Socket 1700 (LGA).
Memory support diverges. The Arc G3 supports only LPDDR5X, while the Core 5 supports both DDR4 and DDR5. Memory bandwidth favors the Arc G3 at 136.5 GB/s, compared to the Core 5's 76.8 GB/s. ECC memory is supported only on the Core 5.
PCIe connectivity differs in lane count. The Arc G3 provides Gen 5 with 4 lanes (CPU only), while the Core 5 provides Gen 5 with 16 lanes (CPU only). Integrated graphics differ as well: the Arc G3 features Arc B370, while the Core 5 uses UHD Graphics 730.
Release dates show the Core 5 launched earlier, on 2026-03-08, while the Arc G3 launched later, on 2026-05-27. The Core 5 has a launch MSRP of $221, while the Arc G3 has no listed launch MSRP. Both processors are currently in active production and have locked multipliers.
Architecture Differences
The two processors come from different Intel architectures. The Intel Arc G3 uses the Panther Lake codename, representing a 3 nm process node manufactured by Intel. The Intel Core 5 213PE uses the Bartlett Lake codename, built on a 10 nm process also manufactured by Intel. The 3 nm node on the Arc G3 indicates a more advanced manufacturing process, which typically enables higher transistor density and improved power efficiency.
Cache architecture differs in both size and allocation. The Arc G3 allocates 192 KB of L1 cache per core and 2.5 MB of L2 per core, with 18 MB of shared L3. The Core 5 allocates 80 KB of L1 per core and 2 MB of L2 per core, with 24 MB of shared L3. The Arc G3 provides larger per-core caches, while the Core 5 has a larger total L3 pool.
Threading architecture diverges. The Arc G3 has 14 cores and 14 threads, meaning each core handles a single thread. The Core 5 has 8 cores and 16 threads, meaning each core handles two threads via hyper-threading. This gives the Core 5 more logical threads despite fewer physical cores.
Integrated graphics differ. The Arc G3 includes Arc B370 graphics, which represents Intel's dedicated Arc graphics brand integrated into the processor. The Core 5 includes UHD Graphics 730, which is Intel's standard integrated graphics solution. The Arc B370 is positioned as a more capable graphics solution.
Memory architecture differs in supported types. The Arc G3 supports only LPDDR5X, which is a low-power memory standard typically used in mobile devices. The Core 5 supports both DDR4 and DDR5, giving desktop builders flexibility in memory selection. The Arc G3's higher memory bandwidth of 136.5 GB/s suggests the LPDDR5X configuration delivers faster data throughput.
ECC support is exclusive to the Core 5, which is notable for error-correcting memory in workstation or server-like workloads. The Arc G3 lacks this feature, which may limit its suitability for data-critical applications. The Core 5's socket 1700 is a standard desktop socket, while the Arc G3's BGA 2540 is a ball-grid array for soldered mobile installations.
Where Each One Wins
The Intel Core 5 213PE wins in every benchmark category where data exists, since the Intel Arc G3 has no recorded benchmark scores. The Core 5's single-thread performance, measured at 4060 in Passmark single-thread and 3172 in Cinebench R23 single-core, indicates strong per-core capability. Its 5.20 GHz boost clock directly supports this advantage.
In multi-threaded workloads, the Core 5's 16 threads deliver substantial throughput. Cinebench R23 multicore scores 22468, and Passmark multithread scores 26434. These results place the Core 5 in the top 15% of all CPUs in the database (85th percentile). The nearest rival comparisons show it matching the Intel Core i7-12700K within 0.4%, confirming its position as a high-performance desktop processor.
The Core 5 excels in specific Passmark workloads. Data compression scores 298804, indicating efficient handling of compression algorithms. Integer math scores 92089, and floating point math scores 68587, showing balanced arithmetic capability. Random string sorting reaches 32027, and extended instructions score 19565. These metrics collectively demonstrate a versatile desktop processor.
The Intel Arc G3 wins on architectural efficiency indicators. Its 3 nm process node represents a more advanced manufacturing technology than the Core 5's 10 nm node. Its memory bandwidth of 136.5 GB/s exceeds the Core 5's 76.8 GB/s by a wide margin, suggesting faster memory throughput in supported workloads. The 25 W TDP indicates lower power consumption, which is advantageous for mobile platforms.
The Arc G3 also wins on per-core cache allocation. With 192 KB L1 and 2.5 MB L2 per core, it provides larger per-core caches than the Core 5's 80 KB L1 and 2 MB L2. This could benefit workloads with high per-thread cache locality, though no benchmark data confirms this advantage.
The use-case split is clear from the recorded data. The Core 5 213PE is the only processor with measurable performance, making it the choice for desktop applications requiring verified multi-threaded and single-threaded capability. The Arc G3 targets mobile deployments with its low power draw, advanced process node, and high memory bandwidth, but its performance remains unverified in the database. Users requiring immediate, quantifiable processing power should rely on the Core 5's recorded scores, while those evaluating the Arc G3 must await benchmark data to assess its capabilities.