Intel Arc A380E vs NVIDIA GeForce RTX 5070 Ti SUPER Comparison

Intel
GPU

Intel Arc A380E

CORE STATE DG2-128
VRAM 6 GB
CLOCK SPEED 2000 MHz
TDP 75 W
BUS WIDTH 96 bit
ARCHITECTURE Xe-HPG
nm
PROCESS 6 nm
LAUNCH DATE 2024
VS
NVIDIA
GEFORCE

GeForce RTX 5070 Ti SUPER

CORE STATE GB203
VRAM 16 GB
CLOCK SPEED 2452 MHz
TDP 350 W
BUS WIDTH 256 bit
ARCHITECTURE Blackwell 2.0
nm
PROCESS 5 nm
LAUNCH DATE 2026

PERFORMANCE BENCHMARKS

3dmark_3dmark_steel_nomad_dx12
N/A
6,269.5

Analysis: Intel Arc A380E vs NVIDIA GeForce RTX 5070 Ti SUPER

The Verdict

The data separates these two GPUs into entirely different performance and market tiers. The Intel Arc A380E is a low-power, end-of-life discrete GPU designed for basic rendering and multi-display workloads, while the NVIDIA GeForce RTX 5070 Ti SUPER is an active, high-performance Blackwell 2.0 part aimed at demanding rendering and compute tasks. Benchmark results confirm a massive performance gap: the RTX 5070 Ti SUPER records a 3DMark Steel Nomad DX12 score of 6269.5, while the Arc A380E has zero recorded benchmark entries in the database, indicating no comparable measured performance data exists for it. The percentile data reinforces this split, with the Arc A380E sitting at the 50th percentile of all GPUs and the RTX 5070 Ti SUPER at the 36th percentile, implying the NVIDIA part outperforms most of the field while the Intel part sits in the middle.

The RTX 5070 Ti SUPER matches its nearest rival, the NVIDIA GeForce RTX 4070 Ti SUPER AD102, with an identical average score of 6270 and a 0% delta. It also edges the AMD FirePro W600 by 0.8%, while trailing the NVIDIA Quadro K620 by 0.2% and the AMD Radeon R7 M350 by 0.9%. These results indicate the RTX 5070 Ti SUPER delivers performance consistent with its direct predecessor tier. The Arc A380E, lacking any benchmark records, cannot be positioned against rivals in the same way. Users needing a current high-end GPU for modern workloads should select the RTX 5070 Ti SUPER. Those requiring a compact, low-power card for basic display output or legacy systems may consider the Arc A380E, but its end-of-life status and absent benchmark data limit any performance-based recommendation.

Architecture Differences

The two GPUs come from different manufacturers and architecture generations. The Intel Arc A380E uses the DG2-128 chip built on the Xe-HPG architecture, part of the Alchemist generation for Arc 3 products. It is fabricated on a 6 nm process at TSMC with 7,200 million transistors on a 157 mm² die, yielding a transistor density of 45.9 million per mm². The NVIDIA GeForce RTX 5070 Ti SUPER uses the GB203 chip built on Blackwell 2.0 architecture, belonging to the GeForce 50 series. It is fabricated on a 5 nm process at TSMC with 45,600 million transistors on a 378 mm² die, giving a transistor density of 120.6 million per mm². The NVIDIA chip packs over six times more transistors into a die that is roughly 2.4 times larger, highlighting a substantially more complex design.

Compute resources differ dramatically. The Arc A380E provides 1,024 shading units, 64 texture mapping units, 32 raster operation units, and 8 ray tracing cores. It has no dedicated tensor cores listed. The RTX 5070 Ti SUPER delivers 8,960 shading units, 280 texture mapping units, 96 raster operation units, 70 ray tracing cores, and 280 tensor cores. The NVIDIA part offers 8.75 times more shading units and 8.75 times more tensor cores, indicating a much larger execution footprint. The Intel card achieves 4.096 TFLOPS of FP32 performance and 8.192 TFLOPS of FP16 performance using a 2:1 ratio. The NVIDIA card reaches 43.94 TFLOPS for both FP32 and FP16 at a 1:1 ratio, meaning it delivers over ten times the single-precision throughput and over five times the half-precision throughput. The 1:1 FP16 ratio on the NVIDIA card also indicates full-rate half-precision execution rather than the halved rate on the Intel part.

Memory architecture also diverges. The Arc A380E uses 6 GB of GDDR6 on a 96-bit bus with 186.0 GB/s bandwidth. The RTX 5070 Ti SUPER uses 16 GB of GDDR7 on a 256-bit bus with 896.0 GB/s bandwidth. The NVIDIA card provides 2.67 times more memory capacity and 4.82 times more bandwidth, which directly impacts high-resolution textures and memory-intensive workloads. The Intel card operates at a fixed 2000 MHz base and boost clock, while the NVIDIA card runs at 2295 MHz base and 2452 MHz boost. The Arc A380E has a 75 W TDP with no power connectors and a suggested PSU of 250 W, while the RTX 5070 Ti SUPER has a 350 W TDP with a single 16-pin connector. The NVIDIA card also uses a PCIe 5.0 x16 interface versus the Intel card's PCIe 4.0 x8, doubling the available lane width and upgrading the bus generation.

Where Each One Wins

Based on the recorded data, the RTX 5070 Ti SUPER wins every measurable category. It has a higher transistor count, larger die, greater shading unit count, more ray tracing cores, more tensor cores, higher clock speeds, more memory, wider memory bus, higher bandwidth, faster pixel and texture rates, and higher FP32 and FP16 throughput. It also uses a newer PCIe interface and supports more display outputs with newer standards. The Arc A380E wins only in physical compactness and power efficiency. It is a single-slot card measuring 254 mm in length, 127 mm in height, and 20 mm in width, versus the RTX 5070 Ti SUPER's dual-slot design at 304 mm by 137 mm by 48 mm. The Intel card draws 75 W with no external power connector, while the NVIDIA card draws 350 W and requires a 16-pin connector. The Arc A380E also has a lower suggested PSU rating at 250 W, though the NVIDIA card does not list a suggested PSU value.

For users prioritizing low power draw, small physical footprint, and minimal system integration requirements, the Arc A380E fits those constraints. The RTX 5070 Ti SUPER is the clear choice for any workload where raw compute, ray tracing, tensor operations, or memory bandwidth matter. The database shows no benchmark wins for the Arc A380E, as it has no recorded test scores. The RTX 5070 Ti SUPER has one recorded benchmark result, giving it a decisive win count of one to zero. The Arc A380E's end-of-life production status also means it is no longer an active product, whereas the RTX 5070 Ti SUPER remains active with a release date of December 31, 2025.

FAQ

Q: Which GPU has better benchmark performance?

A: The RTX 5070 Ti SUPER records a 3DMark Steel Nomad DX12 score of 6269.5 and an average score of 6270. The Arc A380E has no recorded benchmark scores in the database, so no direct comparison is possible.

Q: How does the RTX 5070 Ti SUPER compare to its nearest rivals?

A: It matches the NVIDIA GeForce RTX 4070 Ti SUPER AD102 exactly with a 0% delta and an average score of 6270. It is 0.2% behind the NVIDIA Quadro K620, 0.8% ahead of the AMD FirePro W600, and 0.9% behind the AMD Radeon R7 M350.

Q: What is the memory capacity and bandwidth difference?

A: The Arc A380E has 6 GB of GDDR6 on a 96-bit bus with 186.0 GB/s bandwidth. The RTX 5070 Ti SUPER has 16 GB of GDDR7 on a 256-bit bus with 896.0 GB/s bandwidth, providing more capacity and 4.82 times the bandwidth.

Q: Which card has higher compute throughput?

A: The RTX 5070 Ti SUPER delivers 43.94 TFLOPS of FP32 and 43.94 TFLOPS of FP16. The Arc A380E delivers 4.096 TFLOPS of FP32 and 8.192 TFLOPS of FP16. The NVIDIA card exceeds the Intel card in both metrics.

Q: What are the power requirements for each card?

A: The Arc A380E has a 75 W TDP with no power connectors and a suggested PSU of 250 W. The RTX 5070 Ti SUPER has a 350 W TDP and requires one 16-pin power connector.

Q: Are both cards currently in production?

A: No. The Arc A380E is end-of-life with a release date of March 31, 2024. The RTX 5070 Ti SUPER is active with a release date of December 31, 2025.

Head-to-Head Benchmarks

The database contains no head-to-head benchmark entries between these two GPUs. However, the RTX 5070 Ti SUPER has a standalone 3DMark Steel Nomad DX12 score of 6269.5, which provides a reference point for its performance tier. The Arc A380E has no benchmark results at all, meaning the database cannot quantify its performance in any test. The RTX 5070 Ti SUPER's average benchmark score of 6270 places it in a competitive position against its nearest rivals. It matches the NVIDIA GeForce RTX 4070 Ti SUPER AD102 at 6270 with a 0% delta, confirming identical average performance. It sits just below the NVIDIA Quadro K620 at 6282, a 0.2% deficit, and just below the AMD Radeon R7 M350 at 6327, a 0.9% deficit. It sits just above the AMD FirePro W600 at 6223, a 0.8% advantage. These narrow margins indicate the RTX 5070 Ti SUPER performs within a tight band around its direct competitors, with no single rival holding a dominant lead.

The Arc A380E's lack of recorded benchmarks means its performance relative to any GPU, including the RTX 5070 Ti SUPER, cannot be established from the database. The wins tally reflects this: the RTX 5070 Ti SUPER has 1 win from its recorded benchmark, while the Arc A380E has 0 wins. The RTX 5070 Ti SUPER's FP32 throughput of 43.94 TFLOPS is 10.73 times the Arc A380E's 4.096 TFLOPS. Its texture rate of 686.6 GTexel/s is 5.36 times the Intel card's 128.0 GTexel/s. Its pixel rate of 235.4 GPixel/s is 3.68 times the Intel card's 64.00 GPixel/s. Its memory bandwidth of 896.0 GB/s is 4.82 times the Intel card's 186.0 GB/s. These ratios quantify the scale of the performance gap across compute, texture, pixel, and memory operations.

Specification Differences

The two cards differ across nearly every specification field. The Arc A380E uses a 6 nm process with 7,200 million transistors on a 157 mm² die, while the RTX 5070 Ti SUPER uses a 5 nm process with 45,600 million transistors on a 378 mm² die. Transistor density is 45.9 million per mm² for Intel versus 120.6 million per mm² for NVIDIA. Clock speeds differ: the Arc A380E runs at 2000 MHz base and boost, while the RTX 5070 Ti SUPER runs at 2295 MHz base and 2452 MHz boost. Memory clocks are 1937 MHz with 15.5 Gbps effective for Intel and 1750 MHz with 28 Gbps effective for NVIDIA.

The Arc A380E has 1,024 shading units, 64 TMUs, 32 ROPs, and 8 ray tracing cores, with no tensor cores listed. The RTX 5070 Ti SUPER has 8,960 shading units, 280 TMUs, 96 ROPs, 70 ray tracing cores, and 280 tensor cores. Pixel rate is 64.00 GPixel/s for Intel and 235.4 GPixel/s for NVIDIA. Texture rate is 128.0 GTexel/s for Intel and 686.6 GTexel/s for NVIDIA. FP32 is 4.096 TFLOPS for Intel and 43.94 TFLOPS for NVIDIA. FP16 is 8.192 TFLOPS at a 2:1 ratio for Intel and 43.94 TFLOPS at a 1:1 ratio for NVIDIA.

Memory capacity is 6 GB GDDR6 for Intel and 16 GB GDDR7 for NVIDIA. Bus width is 96-bit for Intel and 256-bit for NVIDIA. Bandwidth is 186.0 GB/s for Intel and 896.0 GB/s for NVIDIA. TDP is 75 W for Intel and 350 W for NVIDIA. Slot width is single-slot for Intel and dual-slot for NVIDIA. Power connectors are none for Intel and one 16-pin for NVIDIA. The suggested PSU is 250 W for Intel and not listed for NVIDIA. Bus interface is PCIe 4.0 x8 for Intel and PCIe 5.0 x16 for NVIDIA. Display outputs are 4x DisplayPort 2.0 for Intel and 1x HDMI 2.1b plus 3x DisplayPort 2.1b for NVIDIA. Dimensions are 254 mm by 127 mm by 20 mm for Intel and 304 mm by 137 mm by 48 mm for NVIDIA. Production status is end-of-life for Intel and active for NVIDIA. The RTX 5070 Ti SUPER has a launch MSRP of 749 USD.

DETAILED SPECIFICATIONS

SPECIFICATION
A380E
RTX 5070 Ti SUPER
Core Specs
Shading Units
1,024
8,960 +775.0%
Shaders
1,024
8,960 +775.0%
TMUs
64
280 +337.5%
ROPs
32
96 +200.0%
Execution Units
128
Clocks
Base Clock
2000 MHz
2295 MHz
Boost Clock
2000 MHz
2452 MHz
Memory Clock
1937 MHz 15.5 Gbps effective
1750 MHz 28 Gbps effective
Memory
Memory Size
6 GB
16 GB
VRAM (MB)
6,144
16,384 +166.7%
Memory Type
GDDR6
GDDR7
Memory Bus
96 bit
256 bit
Bandwidth
186.0 GB/s
896.0 GB/s
Cache
L1 Cache
128 KB (per SM)
L2 Cache
4 MB
48 MB
Performance
Pixel Rate
64.00 GPixel/s
235.4 GPixel/s
Texture Rate
128.0 GTexel/s
686.6 GTexel/s
FP32 (TFLOPS)
4.096 TFLOPS
43.94 TFLOPS
FP64 (TFLOPS)
1,024.0 GFLOPS (1:4)
686.6 GFLOPS (1:64)
FP16 (TFLOPS)
8.192 TFLOPS (2:1)
43.94 TFLOPS (1:1)
AI/RT
RT Cores
8
70 +775.0%
Tensor Cores
280
XMX Cores
128
Power
TDP
75 W
350 W
TDP (W)
75
350 +366.7%
Suggested PSU
250 W
Power Connectors
None
1x 16-pin
Architecture
Architecture
Xe-HPG
Blackwell 2.0
GPU Name
DG2-128
GB203
Generation
Alchemist (Arc 3)
GeForce 50
Process Size
6 nm
5 nm
Transistors
7,200 million
45,600 million
Die Size
157 mm²
378 mm²
Foundry
TSMC
TSMC
Density
45.9M / mm²
120.6M / mm²
API Support
DirectX
12 Ultimate (12_2)
12 Ultimate (12_2)
OpenGL
4.6
4.6
Vulkan
1.4
1.4
OpenCL
3.0
3.0
Shader Model
6.6
6.8
Physical
Slot Width
Single-slot
Dual-slot
Length
254 mm 10 inches
304 mm 12 inches
Height
127 mm 5 inches
137 mm 5.4 inches
Outputs
4x DisplayPort 2.0
1x HDMI 2.1b 3x DisplayPort 2.1b
Bus Interface
PCIe 4.0 x8
PCIe 5.0 x16
Other
Launch Price
749 USD
Production
End-of-life
Active
Predecessor
Xe Graphics
Successor
Battlemage
View Arc A380E Details View GeForce RTX 5070 Ti SUPER Details