AMD Ryzen 3 110 vs Intel Arc G3 Comparison
AMD Ryzen 3 110
Arc G3
Analysis: AMD Ryzen 3 110 vs Intel Arc G3
AMD Ryzen 3 110 and Intel Arc G3 are both active mobile processors, but they occupy very different positions in the database. The recorded data shows no direct head-to-head benchmark results for this pair, and neither processor has an average benchmark score or a percentile ranking above the median. Both sit at the 50th percentile against all CPUs, which indicates that, based on the available measurements, they are statistically indistinguishable in overall standing. Without direct comparison scores, the analysis must rely on the architectural and specification data recorded for each part.
Head-to-Head Benchmarks
The database contains no direct benchmark matchups between the AMD Ryzen 3 110 and the Intel Arc G3. Neither processor has recorded wins or losses in head-to-head testing, and the winsA and winsB fields show zero for both. The average benchmark score for each is also zero, meaning there are no raw performance figures to compare. This absence of data does not imply parity; it simply means the two chips have not been tested against each other in the same workload suite.
What can be stated from the recorded information is the theoretical capability implied by their specifications. The Ryzen 3 110 uses 4 cores and 8 threads, while the Arc G3 uses 14 cores and 14 threads. In multi-threaded workloads, the Arc G3 has a structural advantage in core count, but the Ryzen 3 110 has simultaneous multithreading, which allows each of its 4 cores to process two threads. The Arc G3 does not have that capability, so its 14 threads equal its 14 cores. The Ryzen part’s 8 threads versus the Arc’s 14 threads still leaves the Intel chip with more concurrent threads, but the per-thread efficiency cannot be determined without benchmark scores.
Clock speeds differ as well. The Ryzen 3 110 has a base clock of 3.00 GHz and a boost clock of 4.30 GHz. The Arc G3 has a lower base clock of 1.90 GHz but a higher boost clock of 4.60 GHz. This suggests that the Arc G3 can reach a higher peak frequency under light single-thread loads, while the Ryzen part has a higher sustained minimum frequency. The boost advantage for the Arc G3 is 0.30 GHz, or about 7% higher than the Ryzen’s boost. The base clock advantage for the Ryzen is 1.10 GHz, or about 58% higher than the Arc’s base. These numbers indicate that the Ryzen 3 110 is likely to feel more responsive in idle-to-light tasks, while the Arc G3 may have a higher ceiling for short bursts of single-thread activity.
Thermal design power is close but not identical. The Ryzen 3 110 has a TDP of 28 watts, while the Arc G3 has a TDP of 25 watts. The difference is 3 watts, which places the Ryzen part slightly higher in power envelope. This does not directly translate to performance, but it does suggest that the AMD chip has a marginally larger power budget for sustained operation.
Architecture Differences
The two processors come from different design lineages. The AMD Ryzen 3 110 uses the Zen 3+ architecture, with the codename Rembrandt-R, and belongs to the Ryzen 3 generation based on Zen 3+. The Intel Arc G3 uses the Panther Lake codename and is listed under the Arc G3 generation, but its architecture field is null in the database. That absence means no specific microarchitecture name is recorded for the Intel part.
The manufacturing process differs significantly. The Ryzen 3 110 is built on a 6 nm process at TSMC, while the Arc G3 is built on a 3 nm process at Intel. The smaller node gives the Intel chip a potential density and power efficiency advantage, though the recorded TDP does not show a large gap. The Ryzen part has a die size of 210 mm², while no die size is recorded for the Arc G3.
Cache hierarchies are structured differently. The Ryzen 3 110 has 64 KB of L1 cache per core, 512 KB of L2 cache per core, and 8 MB of shared L3 cache. The Arc G3 has 192 KB of L1 cache per core, 2.5 MB of L2 cache per core, and 18 MB of shared L3 cache. Per core, the Arc G3 has three times the L1 capacity and nearly five times the L2 capacity. The L3 cache is more than double on the Intel part. This points to a substantial memory-side advantage for the Arc G3 in workloads that repeatedly access a working set larger than the Ryzen’s L3.
Memory support also differs. The Ryzen 3 110 supports DDR5 memory over a dual-channel bus, with a recorded bandwidth of 76.8 GB/s. The Arc G3 supports LPDDR5X memory, also dual-channel, but with a bandwidth of 136.5 GB/s. That is a 59.7 GB/s difference, or about 78% higher bandwidth for the Intel chip. The Arc G3 also lacks ECC memory support, while the Ryzen 3 110 has ECC support enabled.
The PCIe interface differs in both generation and lane count. The Ryzen 3 110 uses PCIe Gen 4 with 20 lanes from the CPU. The Arc G3 uses PCIe Gen 5 with 4 lanes from the CPU. The Intel part has a newer interface standard but far fewer lanes. This means the Ryzen chip can connect more devices at Gen 4 speeds, while the Arc G3 has a narrower but faster link. For a mobile processor, the lane count matters for connecting storage and discrete GPUs.
Integrated graphics are present on both. The Ryzen 3 110 includes a Radeon 660M, while the Arc G3 includes an Arc B370. The database does not record performance scores for these iGPUs, so no comparative statement can be made beyond their existence and naming.
Where Each One Wins
Without benchmark scores, wins must be inferred from specification advantages. The Ryzen 3 110 wins in base clock, ECC support, PCIe lane count, and memory type flexibility. Its 3.00 GHz base clock is substantially higher than the Arc G3’s 1.90 GHz, which suggests better responsiveness in lightly threaded or latency-sensitive tasks that do not boost heavily. ECC memory support makes it suitable for error-sensitive computing, a feature the Arc G3 lacks. The 20 PCIe Gen 4 lanes allow for more simultaneous high-speed device connections, which matters in a system with multiple NVMe drives or external peripherals.
The Arc G3 wins in core count, boost clock, L1 and L2 cache per core, L3 cache size, memory bandwidth, process node, and PCIe generation. Its 14 cores provide more parallel execution units for multi-threaded workloads such as rendering, compilation, or heavy multitasking. The 4.60 GHz boost clock gives it a higher peak single-thread frequency. The cache hierarchy is larger at every level, which reduces the penalty of main memory access. The 136.5 GB/s memory bandwidth is nearly double the Ryzen’s, which benefits memory-bound applications. The 3 nm process node indicates a more advanced manufacturing technology, which typically correlates with better transistor density and power efficiency under load.
The Arc G3 also has a lower TDP at 25 watts versus 28 watts, meaning it can achieve higher core count and cache capacity within a slightly lower power envelope. The Ryzen 3 110’s higher TDP does not correspond to a performance advantage in the database, but it does indicate a larger power allowance.
FAQ
Q: Which processor has more cores and threads?
A: The Intel Arc G3 has 14 cores and 14 threads. The AMD Ryzen 3 110 has 4 cores and 8 threads.
Q: What is the memory bandwidth difference?
A: The AMD Ryzen 3 110 has a memory bandwidth of 76.8 GB/s. The Intel Arc G3 has a memory bandwidth of 136.5 GB/s, which is 59.7 GB/s higher.
Q: Does either processor support ECC memory?
A: Yes, the AMD Ryzen 3 110 supports ECC memory. The Intel Arc G3 does not support ECC memory.
Q: Which processor has a higher boost clock?
A: The Intel Arc G3 has a boost clock of 4.60 GHz. The AMD Ryzen 3 110 has a boost clock of 4.30 GHz. The Arc G3 is higher by 0.30 GHz.
Q: What are the PCIe specifications for each?
A: The AMD Ryzen 3 110 uses PCIe Gen 4 with 20 lanes from the CPU. The Intel Arc G3 uses PCIe Gen 5 with 4 lanes from the CPU.
Q: Which processor has a smaller manufacturing process node?
A: The Intel Arc G3 is built on a 3 nm process. The AMD Ryzen 3 110 is built on a 6 nm process.
Specification Differences
The following fields differ between the two processors:
- Cores: AMD Ryzen 3 110 has 4 cores. Intel Arc G3 has 14 cores.
- Threads: AMD Ryzen 3 110 has 8 threads. Intel Arc G3 has 14 threads.
- Base Clock: AMD Ryzen 3 110 has 3.00 GHz. Intel Arc G3 has 1.90 GHz.
- Boost Clock: AMD Ryzen 3 110 has 4.30 GHz. Intel Arc G3 has 4.60 GHz.
- TDP: AMD Ryzen 3 110 has 28 watts. Intel Arc G3 has 25 watts.
- Socket: AMD Ryzen 3 110 uses AMD Socket FP7. Intel Arc G3 uses Intel BGA 2540.
- Architecture: AMD Ryzen 3 110 is Zen 3+. Intel Arc G3 has no recorded architecture.
- Codename: AMD Ryzen 3 110 is Rembrandt-R. Intel Arc G3 is Panther Lake.
- Process Node: AMD Ryzen 3 110 is 6 nm. Intel Arc G3 is 3 nm.
- Foundry: AMD Ryzen 3 110 uses TSMC. Intel Arc G3 uses Intel.
- Die Size: AMD Ryzen 3 110 is 210 mm². Intel Arc G3 has no recorded die size.
- L1 Cache: AMD Ryzen 3 110 has 64 KB per core. Intel Arc G3 has 192 KB per core.
- L2 Cache: AMD Ryzen 3 110 has 512 KB per core. Intel Arc G3 has 2.5 MB per core.
- L3 Cache: AMD Ryzen 3 110 has 8 MB shared. Intel Arc G3 has 18 MB shared.
- Memory Support: AMD Ryzen 3 110 supports DDR5. Intel Arc G3 supports LPDDR5X.
- Memory Bandwidth: AMD Ryzen 3 110 has 76.8 GB/s. Intel Arc G3 has 136.5 GB/s.
- ECC Memory: AMD Ryzen 3 110 supports ECC. Intel Arc G3 does not.
- PCIe: AMD Ryzen 3 110 is Gen 4 with 20 lanes. Intel Arc G3 is Gen 5 with 4 lanes.
- Integrated Graphics: AMD Ryzen 3 110 has Radeon 660M. Intel Arc G3 has Arc B370.
- Release Date: AMD Ryzen 3 110 was released on 2025-09-30. Intel Arc G3 was released on 2026-05-27.
- Part Number: AMD Ryzen 3 110 is 100-000000549 (FP7r2). Intel Arc G3 is SA4QZ.
The Verdict
The database shows two processors with no direct benchmark comparison, so the verdict must be drawn from the specification records alone. The AMD Ryzen 3 110 is the choice for workloads that favor higher base frequency, ECC memory, and a wide PCIe Gen 4 lane count. Its 3.00 GHz base clock is a strong indicator for latency-sensitive tasks that do not rely on boost behavior. The ECC support and 20 lanes make it suited for error-tolerant computing environments and systems with multiple high-speed add-in devices.
The Intel Arc G3 is the choice for multi-threaded and memory-bandwidth-intensive workloads. Its 14 cores and 14 threads provide more parallel execution capacity than the Ryzen’s 4 cores and 8 threads. The 18 MB L3 cache and 136.5 GB/s memory bandwidth give it a clear edge for data-heavy applications that repeatedly access large datasets. The 4.60 GHz boost clock also gives it a higher peak single-thread performance, while the 3 nm process node suggests a more advanced manufacturing base.
The Ryzen 3 110 has a higher TDP by 3 watts, but the Arc G3 offsets that with more cores and more cache per core. Neither processor has a recorded benchmark score, so real-world performance cannot be ranked. The data confirms that the Arc G3 is designed for throughput and memory speed, while the Ryzen 3 110 is designed for responsive frequency and system flexibility. Buyers seeking ECC support or a larger PCIe lane allocation should look to the AMD part. Buyers seeking core count, cache capacity, and memory bandwidth should look to the Intel part.