Intel Arc A380E vs NVIDIA GeForce RTX 5070 Ti Comparison
Intel Arc A380E
GeForce RTX 5070 Ti
PERFORMANCE BENCHMARKS
Analysis: Intel Arc A380E vs NVIDIA GeForce RTX 5070 Ti
Head-to-Head Benchmarks
The benchmark database contains no direct head-to-head test results between the Intel Arc A380E and the NVIDIA GeForce RTX 5070 Ti. The recorded data instead places these two products at opposite ends of the performance spectrum. The RTX 5070 Ti holds an average benchmark score of 49,957 across ten tests, while the Arc A380E has no recorded benchmark scores and an average score of zero. This places the RTX 5070 Ti in the 86th percentile among all GPUs in the database, whereas the Arc A380E sits at the 50th percentile.
The RTX 5070 Ti's individual benchmark results show a wide range of performance across different workloads. Its strongest showing comes from the Geekbench Vulkan test with a score of 225,122, followed closely by the Geekbench OpenCL result of 212,363. The PassMark G3D test delivers 32,974, and the PassMark GPU compute test produces 20,203. The lower PassMark DirectX scores of 351 for DirectX 9, 300 for DirectX 11, 192 for DirectX 10, and 127 for DirectX 12 suggest these tests do not scale in the same manner as the compute-oriented workloads. The PassMark G2D score of 1,332 reflects a separate 2D graphics metric that is not directly comparable to the 3D results.
The RTX 5070 Ti compares closely with several AMD Radeon cards in the database. The AMD Radeon RX Vega 64 scores 50,001, which is only 0.1 percent higher than the RTX 5070 Ti's average. The Intel Arc A550M scores 49,737, sitting 0.4 percent below. The AMD Radeon RX 6900 XT reaches 50,951, a 2 percent advantage over the RTX 5070 Ti. The AMD Radeon RX 6800 XT scores 48,477, which places it 3.1 percent behind the RTX 5070 Ti. These four rivals bracket the RTX 5070 Ti within a narrow performance band of roughly 5 percent total spread, indicating that the 50-series card sits in a well-populated performance tier.
The Arc A380E lacks any benchmark entries in the database, so direct numeric comparisons between the two cards cannot be made from recorded test data. What can be stated is that the RTX 5070 Ti's average score of 49,957 is substantially higher than the Arc A380E's zero, but that comparison is not meaningful without actual Arc A380E test results. The database shows no head-to-head wins for either product, and the wins counter for both is zero.
Architecture Differences
The Intel Arc A380E uses the DG2-128 chip built on the Xe-HPG architecture, which belongs to the Alchemist generation under the Arc 3 product line. It is fabricated on a 6 nm process at TSMC with 7,200 million transistors on a 157 mm² die, producing a transistor density of 45.9 million per square millimeter. The NVIDIA GeForce RTX 5070 Ti uses the GB203 chip based on Blackwell 2.0 architecture from the GeForce 50 generation. It is built on a 5 nm TSMC process with 45,600 million transistors on a 378 mm² die, yielding a density of 120.6 million per square millimeter. The RTX 5070 Ti packs more than six times the transistor count into a die that is roughly 2.4 times larger, and its transistor density is approximately 2.6 times higher.
The compute resources differ dramatically. The Arc A380E has 1,024 shading units, 64 texture mapping units, 32 raster output units, and 8 ray tracing cores. The RTX 5070 Ti has 8,960 shading units, 280 TMUs, 96 ROPs, 70 RT cores, and 280 tensor cores. The RTX 5070 Ti's shading unit count is 8.75 times higher, its TMU count is 4.375 times higher, and its ROP count is 3 times higher. The RTX 5070 Ti also includes tensor cores, while the Arc A380E has none listed.
Clock speeds favor the RTX 5070 Ti as well. The Arc A380E runs at a base and boost clock of 2,000 MHz, while the RTX 5070 Ti has a base clock of 2,295 MHz and a boost clock of 2,452 MHz. The RTX 5070 Ti's boost clock is 22.6 percent higher than the Arc A380E's boost clock. Memory clocks also differ: the Arc A380E uses 1,937 MHz with 15.5 Gbps effective, while the RTX 5070 Ti runs at 1,750 MHz with 28 Gbps effective.
The memory subsystem shows a stark contrast. The Arc A380E has 6 GB of GDDR6 on a 96-bit bus with 186.0 GB/s bandwidth. The RTX 5070 Ti has 16 GB of GDDR7 on a 256-bit bus with 896.0 GB/s bandwidth. The RTX 5070 Ti provides 4.8 times the bandwidth, which directly supports its much higher fill rates. The pixel rate for the Arc A380E is 64.00 GPixel/s versus 235.4 GPixel/s for the RTX 5070 Ti, a 3.68 times difference. Texture rate is 128.0 GTexel/s versus 686.6 GTexel/s, a 5.36 times difference. The FP32 throughput is 4.096 TFLOPS for the Arc A380E versus 43.94 TFLOPS for the RTX 5070 Ti, a 10.7 times difference. The FP16 performance is 8.192 TFLOPS for the Arc A380E using a 2:1 ratio, while the RTX 5070 Ti delivers 43.94 TFLOPS at a 1:1 ratio.
Power and physical specifications also diverge. The Arc A380E has a TDP of 75 W, while the RTX 5070 Ti consumes 300 W, a fourfold difference. The Arc A380E requires no power connectors and a 250 W suggested PSU, while the RTX 5070 Ti uses a single 16-pin connector with a 700 W suggested PSU. The Arc A380E is a single-slot card measuring 254 mm by 127 mm by 20 mm, while the RTX 5070 Ti is dual-slot at 304 mm by 137 mm by 48 mm. The bus interface is PCIe 4.0 x8 for the Arc A380E and PCIe 5.0 x16 for the RTX 5070 Ti.
Both cards support DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4. Display outputs differ: the Arc A380E has four DisplayPort 2.0 outputs, while the RTX 5070 Ti has one HDMI 2.1b and three DisplayPort 2.1b outputs. The Arc A380E is marked as end-of-life production status, while the RTX 5070 Ti is active.
FAQ
Q: What is the average benchmark score difference between the two cards?
A: The RTX 5070 Ti has an average benchmark score of 49,957 across ten tests. The Arc A380E has no recorded benchmark scores, so its average is zero.
Q: How does the RTX 5070 Ti compare to its nearest rivals in the database?
A: The RTX 5070 Ti sits within a narrow band of comparable cards. It is 0.1 percent behind the AMD Radeon RX Vega 64, 0.4 percent ahead of the Intel Arc A550M, 2 percent behind the AMD Radeon RX 6900 XT, and 3.1 percent ahead of the AMD Radeon RX 6800 XT.
Q: What are the memory specifications for each card?
A: The Arc A380E uses 6 GB of GDDR6 on a 96-bit bus with 186.0 GB/s bandwidth. The RTX 5070 Ti uses 16 GB of GDDR7 on a 256-bit bus with 896.0 GB/s bandwidth.
Q: Which card has a higher transistor density?
A: The RTX 5070 Ti has a transistor density of 120.6 million per square millimeter, while the Arc A380E has 45.9 million per square millimeter.
Q: What is the production status of each card?
A: The Arc A380E is listed as end-of-life, while the RTX 5070 Ti is marked as active.
Q: What is the TDP difference?
A: The Arc A380E has a TDP of 75 W, while the RTX 5070 Ti has a TDP of 300 W.
The Verdict
The database presents a clear performance hierarchy. The RTX 5070 Ti is a high-end GPU with an average score of 49,957, placing it in the 86th percentile among all GPUs. Its nearest rivals all cluster within roughly 5 percent of its average score, confirming that it performs at a competitive level within its segment. The Arc A380E, by contrast, has no benchmark scores recorded and sits in the 50th percentile, which means the database cannot confirm any performance capability for it.
The RTX 5070 Ti's individual test results show consistent strength across compute workloads. Its Geekbench Vulkan score of 225,122 and OpenCL score of 212,363 indicate robust compute performance. The PassMark G3D score of 32,974 and GPU compute score of 20,203 reinforce this pattern. The PassMark DirectX scores are lower in magnitude, but these tests appear to measure different aspects of the rendering pipeline.
The Arc A380E's architecture is substantially smaller in every measurable dimension. Its shading unit count, TMU count, ROP count, memory bandwidth, and FP32 throughput are all far below the RTX 5070 Ti's figures. The 75 W TDP and absence of power connectors suggest a low-power design, but the database provides no benchmark data to assess what that power budget delivers in practice.
The RTX 5070 Ti launched with an MSRP of 749 USD, and its production status is active. The Arc A380E is end-of-life with no launch MSRP recorded.
Specification Differences
The two cards differ on nearly every specification field. The process node is 6 nm for the Arc A380E versus 5 nm for the RTX 5070 Ti. Transistor count is 7,200 million versus 45,600 million. Die size is 157 mm² versus 378 mm². Transistor density is 45.9 million per square millimeter versus 120.6 million.
Clocks differ: the Arc A380E has a base and boost of 2,000 MHz, memory clock of 1,937 MHz at 15.5 Gbps effective. The RTX 5070 Ti has a base of 2,295 MHz, boost of 2,452 MHz, and memory clock of 1,750 MHz at 28 Gbps effective.
Memory size is 6 GB versus 16 GB, type is GDDR6 versus GDDR7, bus width is 96 bit versus 256 bit, and bandwidth is 186.0 GB/s versus 896.0 GB/s.
Shading units are 1,024 versus 8,960. TMUs are 64 versus 280. ROPs are 32 versus 96. RT cores are 8 versus 70. Tensor cores are not listed for the Arc A380E, while the RTX 5070 Ti has 280.
Pixel rate is 64.00 GPixel/s versus 235.4 GPixel/s. Texture rate is 128.0 GTexel/s versus 686.6 GTexel/s. FP32 is 4.096 TFLOPS versus 43.94 TFLOPS. FP16 is 8.192 TFLOPS (2:1) versus 43.94 TFLOPS (1:1).
TDP is 75 W versus 300 W. Slot width is single-slot versus dual-slot. Power connectors are none versus one 16-pin. Suggested PSU is 250 W versus 700 W. Bus interface is PCIe 4.0 x8 versus PCIe 5.0 x16.
Display outputs are four DisplayPort 2.0 versus one HDMI 2.1b and three DisplayPort 2.1b. Dimensions are 254 mm by 127 mm by 20 mm versus 304 mm by 137 mm by 48 mm. Production status is end-of-life versus active. Release dates are 2024-03-31 versus 2025-02-19. The Arc A380E has a predecessor of Xe Graphics and successor of Battlemage. The RTX 5070 Ti has a predecessor of GeForce 40 and successor of GeForce 60.
Where Each One Wins
The RTX 5070 Ti wins in every category where the database provides measurable data. Its average benchmark score of 49,957 versus zero for the Arc A380E is the most direct comparison, though the Arc A380E's lack of recorded benchmarks limits the interpretation. The RTX 5070 Ti also wins on raw compute throughput, with FP32 performance of 43.94 TFLOPS versus 4.096 TFLOPS, and on memory bandwidth, at 896.0 GB/s versus 186.0 GB/s.
The RTX 5070 Ti's benchmark results show particular strength in compute-oriented workloads. The Geekbench Vulkan and OpenCL scores are the two highest recorded results, suggesting that the card handles general-purpose GPU compute tasks effectively. The PassMark G3D score of 32,974 indicates strong 3D rendering performance as well.
The Arc A380E's advantages are limited to physical characteristics rather than performance. It has a lower TDP of 75 W, requires no power connectors, and is a single-slot card. It is also shorter at 254 mm compared to 304 mm, and narrower at 20 mm versus 48 mm. These attributes could suit constrained installation scenarios, but the database contains no benchmark evidence of what performance the card delivers in such a configuration.
The RTX 5070 Ti's nearest rival data confirms it performs in a specific tier. Being within 3.1 percent of the AMD Radeon RX 6800 XT and 2 percent of the RX 6900 XT places it in the high-end segment. The Arc A380E has no rival data recorded, so its competitive position cannot be established from the database.
For use-case selection, the data supports the RTX 5070 Ti for any workload requiring compute performance, high memory bandwidth, or large memory capacity. The Arc A380E's role is less clear from the recorded data alone, as its specification sheet describes a low-power, compact card but no benchmark results confirm its real-world capability. The RTX 5070 Ti is the only one of the two with measurable performance in the database.