Intel Arc B370 vs NVIDIA RTX 5000 Embedded Ada Generation Comparison
Intel Arc B370
RTX 5000 Embedded Ada Generation
PERFORMANCE BENCHMARKS
Analysis: Intel Arc B370 vs NVIDIA RTX 5000 Embedded Ada Generation
Head-to-Head Benchmarks
The recorded data contains only one direct benchmark result for the Intel Arc B370, while the NVIDIA RTX 5000 Embedded Ada Generation has no benchmark scores listed in the database. This makes a conventional head-to-head comparison impossible based on measured performance alone. The Intel Arc B370 posts a 3DMark Steel Nomad DX12 score of 1184, which places it at the 5th percentile among all GPUs in the database. Its average benchmark score is likewise 1184, reflecting that single recorded result.
The nearest rivals to the Intel Arc B370 provide context for its performance tier. The ATI Mobility Radeon HD 5570 averages 1186, which is 0.2% higher than the Arc B370. The ATI Radeon HD 5770 averages 1190, a 0.5% lead. The AMD Radeon HD 7650M averages 1192, sitting 0.7% ahead. On the other side, the AMD FirePro M2000 averages 1168, which is 1.4% behind the Arc B370. These deltas place the Arc B370 in a narrow performance band among older discrete and mobile graphics solutions, with no rival exceeding a 1.4% margin in either direction.
The NVIDIA RTX 5000 Embedded Ada Generation carries no benchmark entries in the database, so its percentile ranking of 50th among all GPUs comes from other recorded data not shown in the head-to-head section. The absence of a 3DMark Steel Nomad DX12 score for the RTX 5000 means the database cannot directly compare these two parts on that workload. The wins counters reflect this: winsA equals 0 and winsB equals 0, indicating no recorded benchmark victories for either product in head-to-head testing.
Architecture Differences
The Intel Arc B370 uses the Panther Lake chip built on Intel's Xe3-LPG architecture, part of the Arc Graphics-M (Panther Lake) generation. It is fabricated on a 3 nm process at Intel's foundry. The NVIDIA RTX 5000 Embedded Ada Generation uses the AD103 chip based on Ada Lovelace architecture, belonging to the GeForce 50-series and the Ada-MW generation. It is fabricated on a 5 nm process at TSMC. The process node difference is substantial, with Intel at 3 nm versus TSMC at 5 nm, though the database does not provide transistor counts for the Intel part.
The RTX 5000 Embedded Ada Generation reports 45,900 million transistors on a 379 mm² die, yielding a transistor density of 121.1M per mm². The Arc B370's transistor count and die size are listed as unknown, so no density figure can be calculated for it. The RTX 5000 predecessor is Ampere-MW and its successor is Blackwell-MW, while the Arc B370 lists no predecessor or successor in the database.
Both GPUs support DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4, so API-level features are identical. The RTX 5000 includes 304 tensor cores, while the Arc B370 lists tensor cores as null, meaning the database records none. RT core counts differ: the Arc B370 has 10 RT cores, while the RTX 5000 has 76. Both are integrated graphics packages with no power connectors and portable-device-dependent display outputs.
The memory architecture is fundamentally different. The Arc B370 uses system shared memory, with system shared type, bus width, and system-dependent bandwidth. The RTX 5000 has 16 GB of dedicated GDDR6 memory on a 256-bit bus with 576.0 GB/s bandwidth. The memory clock for the RTX 5000 is 2250 MHz with 18 Gbps effective speed, while the Arc B370's memory clock is listed as "System Shared" with no effective speed.
Where Each One Wins
Based on the recorded data, the Intel Arc B370 wins in raw clock speed. Its boost clock reaches 2400 MHz, compared to the RTX 5000's 1680 MHz boost. The base clocks also differ, with the Arc B370 at 300 MHz versus 930 MHz for the RTX 5000. The Arc B370 also has a higher FP16 to FP32 ratio at 2:1, delivering 12.29 TFLOPS FP16 versus 6.144 TFLOPS FP32, whereas the RTX 5000 delivers equal FP16 and FP32 at 32.69 TFLOPS each.
The NVIDIA RTX 5000 Embedded Ada Generation wins decisively in raw compute throughput. Its FP32 performance of 32.69 TFLOPS is roughly 5.3 times the Arc B370's 6.144 TFLOPS. The pixel rate favors the RTX 5000 at 188.2 GPixel/s versus 48.00 GPixel/s for the Arc B370, a factor of about 3.9. The texture rate is 510.7 GTexel/s versus 96.00 GTexel/s, a 5.3 times advantage. The RTX 5000 has 9728 shading units, 304 TMUs, 112 ROPs, 76 RT cores, and 304 tensor cores, compared to the Arc B370's 1280 shading units, 40 TMUs, 20 ROPs, and 10 RT cores.
The power envelope also differs sharply. The Arc B370 has a TDP of 25 W, while the RTX 5000 has a TDP of 120 W. The RTX 5000 uses a PCIe 4.0 x16 bus interface, whereas the Arc B370 uses an IGP bus interface. The RTX 5000's 16 GB dedicated GDDR6 memory with 576.0 GB/s bandwidth provides a memory advantage that the Arc B370 cannot match through system shared memory, whose bandwidth is system dependent.
The RTX 5000 sits at the 50th percentile among all GPUs, while the Arc B370 sits at the 5th percentile. This percentile gap indicates that the RTX 5000 occupies a mid-range position in the database distribution, while the Arc B370 sits near the bottom. The Arc B370's release date is 2026-01-26, while the RTX 5000's release date is 2023-03-20, making the Intel part newer by roughly three years.
Specification Differences
The two GPUs differ across nearly every specification field recorded in the database. The Arc B370 uses a 3 nm process at Intel, while the RTX 5000 uses a 5 nm process at TSMC. The RTX 5000 has 45,900 million transistors and a 379 mm² die size, while the Arc B370 lists unknown values for both. The RTX 5000's transistor density is 121.1M per mm², with no comparable figure for the Arc B370.
Clock specifications show a split: the Arc B370 has a 300 MHz base clock and 2400 MHz boost, while the RTX 5000 has a 930 MHz base and 1680 MHz boost. The memory clock for the RTX 5000 is 2250 MHz with 18 Gbps effective, while the Arc B370 lists "System Shared" for its memory clock. Memory size, type, bus width, and bandwidth all differ: the Arc B370 uses system shared memory with system-dependent bandwidth, while the RTX 5000 uses 16 GB GDDR6 on a 256-bit bus with 576.0 GB/s bandwidth.
Compute unit counts differ substantially: 1280 shading units, 40 TMUs, 20 ROPs, and 10 RT cores for the Arc B370 versus 9728 shading units, 304 TMUs, 112 ROPs, 76 RT cores, and 304 tensor cores for the RTX 5000. The Arc B370 lists tensor cores as null. Pixel rate is 48.00 GPixel/s versus 188.2 GPixel/s, and texture rate is 96.00 GTexel/s versus 510.7 GTexel/s. FP32 is 6.144 TFLOPS versus 32.69 TFLOPS, and FP16 is 12.29 TFLOPS (2:1) versus 32.69 TFLOPS (1:1).
TDP is 25 W for the Arc B370 and 120 W for the RTX 5000. The bus interface differs: IGP for the Arc B370 versus PCIe 4.0 x16 for the RTX 5000. Both use IGP slot width and have no power connectors. Display outputs are portable device dependent for both. Release dates differ: 2026-01-26 for the Arc B370 versus 2023-03-20 for the RTX 5000. The RTX 5000 has a predecessor (Ampere-MW) and successor (Blackwell-MW), while the Arc B370 lists none. Production status is Active for both. Neither part has a launch MSRP recorded in the database.
FAQ
Q: Which GPU has the higher boost clock?
A: The Intel Arc B370 has a boost clock of 2400 MHz, while the NVIDIA RTX 5000 Embedded Ada Generation has a boost clock of 1680 MHz.
Q: What is the memory configuration of each GPU?
A: The Arc B370 uses system shared memory with system-dependent bandwidth. The RTX 5000 has 16 GB of GDDR6 memory on a 256-bit bus with 576.0 GB/s bandwidth and a memory clock of 2250 MHz with 18 Gbps effective speed.
Q: How do the two GPUs compare in FP32 performance?
A: The RTX 5000 delivers 32.69 TFLOPS FP32, while the Arc B370 delivers 6.144 TFLOPS FP32, making the RTX 5000 roughly 5.3 times faster in this metric.
Q: Do both GPUs support the same graphics APIs?
A: Yes, both support DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4.
Q: What is the TDP difference between the two?
A: The Arc B370 has a TDP of 25 W, while the RTX 5000 has a TDP of 120 W.
Q: Which GPU has a higher percentile ranking in the database?
A: The RTX 5000 sits at the 50th percentile among all GPUs, while the Arc B370 sits at the 5th percentile. The Arc B370 has one recorded benchmark score of 1184 in 3DMark Steel Nomad DX12, while the RTX 5000 has no recorded benchmark scores.