Intel Data Center GPU Max 1350 vs NVIDIA GeForce RTX 5070 Mobile Comparison
Intel Data Center GPU Max 1350
GeForce RTX 5070 Mobile
PERFORMANCE BENCHMARKS
Analysis: Intel Data Center GPU Max 1350 vs NVIDIA GeForce RTX 5070 Mobile
Where Each One Wins
The data splits sharply across the two parts. The Intel Data Center GPU Max 1350 carries no recorded benchmarks in the database, so its wins are entirely structural: raw compute throughput, memory capacity, and bandwidth. The NVIDIA GeForce RTX 5070 Mobile is the only one of the two with recorded test scores, and it wins every measured workload by definition, since the Intel card has no entries.
For compute-heavy data center workloads, the Intel part wins on paper. It delivers 44.44 TFLOPS of FP32 and FP16, has 96 GB of HBM2e memory, and moves data at 2.46 TB/s. Those numbers dwarf the mobile NVIDIA chip. The RTX 5070 Mobile reaches 13.13 TFLOPS in both FP32 and FP16, holds 8 GB of GDDR7, and has 384.0 GB/s of bandwidth. Any task that fits in the Intel card's memory capacity or depends on memory bandwidth favors it strongly.
For portable gaming and general client workloads, the NVIDIA part wins in every recorded test. The GeForce RTX 5070 Mobile scores 122238 in Geekbench OpenCL and 116960 in Geekbench Vulkan. It also has a Passmark G3D score of 20355 and a GPU compute score of 8279. The Intel card has no display outputs and no measured performance, so it cannot participate in any of these workloads. The RTX 5070 Mobile also brings DirectX 12 Ultimate (12_2), Vulkan 1.4, and 48 ROPs, while the Intel card has 0 ROPs and a pixel rate of 0 MPixel/s.
The use-case split is clean. The Intel Data Center GPU Max 1350 is for server-side compute where memory size and raw FP32/FP16 throughput matter more than rasterization. The NVIDIA GeForce RTX 5070 Mobile is for laptops where power draw, display output, and real benchmark scores are the deciding factors.
Architecture Differences
The two GPUs come from opposite ends of the design spectrum. The Intel part uses the Ponte Vecchio chip, built on Generation 12.5 architecture and a 10 nm process from Intel's own foundry. It packs 100,000 million transistors onto a 1280 mm² die, giving a transistor density of 78.1M per mm². The NVIDIA part uses the GB206 chip, built on Blackwell 2.0 architecture and a 5 nm process from TSMC. It has 21,900 million transistors on an 181 mm² die, with a higher transistor density of 121.0M per mm².
Shading hardware differs massively. The Intel GPU has 14,336 shading units, 896 texture mapping units, and 112 ray tracing cores. The NVIDIA GPU has 4,608 shading units, 144 TMUs, 48 ROPs, 36 ray tracing cores, and 144 tensor cores. The Intel card lists no tensor cores, and its ROP count is zero, which explains why its pixel rate is 0 MPixel/s. The NVIDIA card has a pixel rate of 68.40 GPixel/s.
Memory architecture is also fundamentally different. Intel uses HBM2e with a 8192-bit bus, 96 GB capacity, and 2.46 TB/s bandwidth. NVIDIA uses GDDR7 with a 128-bit bus, 8 GB capacity, and 384.0 GB/s bandwidth. Clock speeds run lower on the Intel part: 750 MHz base and 1550 MHz boost, versus 907 MHz base and 1425 MHz boost on the NVIDIA chip. Memory clocks are 1200 MHz with 2.4 Gbps effective on Intel, and 1500 MHz with 24 Gbps effective on NVIDIA.
Power and physical format separate them further. The Intel card is an OAM Module with a 450 W TDP and a suggested PSU of 850 W. The NVIDIA chip is an IGP with a 50 W TDP and no power connectors. The Intel card has no display outputs; the NVIDIA card's outputs are portable device dependent. Both use PCIe 5.0 x16.
Head-to-Head Benchmarks
Direct comparison is limited because the Intel Data Center GPU Max 1350 has no benchmark entries in the database. The head-to-head table is empty, and the win count sits at 0 for both. All recorded scores belong to the NVIDIA GeForce RTX 5070 Mobile.
The RTX 5070 Mobile's Geekbench OpenCL score of 122238 and Vulkan score of 116960 show strong general compute performance. Its Passmark G3D score of 20355 places it in a competitive desktop-replacement range. The nearest rivals in the database are the NVIDIA GeForce RTX 3070 Ti at 29945 (0.1% below the RTX 5070 Mobile's average), the NVIDIA GeForce RTX 2080 Ti at 29783 (0.5% above), the AMD Radeon RX 6800 at 30095 (0.6% below), and the AMD Radeon RX 6700 at 30433 (1.7% below). The RTX 5070 Mobile's average benchmark score is 29928, and its percentile versus all GPUs is 75.
In Passmark subtests, the RTX 5070 Mobile scores 214 in DirectX 9, 192 in DirectX 11, 129 in DirectX 10, and 93 in DirectX 12. Its G2D score is 896, and its GPU compute score is 8279. These numbers give a complete picture of its client-side performance, but there is no Intel counterpart to compare against.
The Intel card's advantage is purely theoretical in this database. Its 44.44 TFLOPS FP32 figure is roughly 3.4 times the RTX 5070 Mobile's 13.13 TFLOPS. Its 2.46 TB/s bandwidth is about 6.4 times the NVIDIA part's 384.0 GB/s. Its 96 GB memory is 12 times the 8 GB on the NVIDIA chip. Those are the only head-to-head numbers available, and they all favor Intel for server workloads.
FAQ
Q: Which GPU has more memory?
A: The Intel Data Center GPU Max 1350 has 96 GB of HBM2e, while the NVIDIA GeForce RTX 5070 Mobile has 8 GB of GDDR7.
Q: What is the FP32 performance difference?
A: The Intel card delivers 44.44 TFLOPS, while the NVIDIA card delivers 13.13 TFLOPS. Intel is roughly 3.4 times higher.
Q: Does the Intel card support display output?
A: No. The Intel Data Center GPU Max 1350 has no display outputs. The NVIDIA GeForce RTX 5070 Mobile's display outputs are portable device dependent.
Q: How does the RTX 5070 Mobile compare to desktop GPUs?
A: Its average benchmark score of 29928 is 0.1% below the RTX 3070 Ti, 0.5% above the RTX 2080 Ti, 0.6% below the RX 6800, and 1.7% below the RX 6700.
Q: What is the power draw of each?
A: The Intel card has a TDP of 450 W and requires a suggested PSU of 850 W. The NVIDIA chip has a TDP of 50 W and uses no power connectors.
Q: Which architecture does each use?
A: Intel uses Generation 12.5 (Ponte Vecchio) on 10 nm. NVIDIA uses Blackwell 2.0 (GB206) on 5 nm from TSMC.
Specification Differences
| Specification | Intel Data Center GPU Max 1350 | NVIDIA GeForce RTX 5070 Mobile |
|---|---|---|
| Process node | 10 nm | 5 nm |
| Foundry | Intel | TSMC |
| Transistors | 100,000 million | 21,900 million |
| Die size | 1280 mm² | 181 mm² |
| Transistor density | 78.1M / mm² | 121.0M / mm² |
| Base clock | 750 MHz | 907 MHz |
| Boost clock | 1550 MHz | 1425 MHz |
| Memory clock | 1200 MHz, 2.4 Gbps effective | 1500 MHz, 24 Gbps effective |
| Memory size | 96 GB | 8 GB |
| Memory type | HBM2e | GDDR7 |
| Memory bus | 8192 bit | 128 bit |
| Memory bandwidth | 2.46 TB/s | 384.0 GB/s |
| Shading units | 14,336 | 4,608 |
| TMUs | 896 | 144 |
| ROPs | 0 | 48 |
| Ray tracing cores | 112 | 36 |
| Tensor cores | None | 144 |
| Pixel rate | 0 MPixel/s | 68.40 GPixel/s |
| Texture rate | 1,388.8 GTexel/s | 205.2 GTexel/s |
| FP32 | 44.44 TFLOPS | 13.13 TFLOPS |
| FP16 | 44.44 TFLOPS (1:1) | 13.13 TFLOPS (1:1) |
| TDP | 450 W | 50 W |
| Slot width | OAM Module | IGP |
| Power connectors | None | None |
| Suggested PSU | 850 W | None |
| Bus interface | PCIe 5.0 x16 | PCIe 5.0 x16 |
| Display outputs | No outputs | Portable Device Dependent |
| DirectX | 12 (12_1) | 12 Ultimate (12_2) |
| OpenGL | 4.6 | 4.6 |
| Vulkan | None | 1.4 |
| Release date | 2023-01-09 | 2025-04-14 |
| Predecessor | None | GeForce 40 Mobile |
| Successor | H3C Graphics | None |
The Verdict
The data points to two completely different buyers. The Intel Data Center GPU Max 1350 is for a server rack, not a desk. Its 96 GB memory capacity, 2.46 TB/s bandwidth, and 44.44 TFLOPS FP32 throughput make it a compute accelerator for workloads that fit entirely in its HBM2e pool. It has 112 ray tracing cores but zero ROPs and no display outputs, confirming it is not meant for rendering to a screen. Its 450 W TDP and 850 W suggested PSU require a chassis designed for high-power accelerators.
The NVIDIA GeForce RTX 5070 Mobile is for a laptop. Its 50 W TDP, IGP form factor, and portable device dependent display outputs fit mobile hardware constraints. Its recorded benchmarks show it performs at a level comparable to desktop GPUs like the RTX 3070 Ti and RTX 2080 Ti, with its average score of 29928 sitting within 1.7% of all four nearest rivals. Its 75th percentile ranking among all GPUs indicates solid mainstream positioning.
Anyone choosing between these two should look at the workload first. If the task is data center compute with massive memory requirements, the Intel card is the only option with the necessary capacity and bandwidth. If the task is client-side graphics, gaming, or general GPU compute in a portable device, the NVIDIA card is the only option with any recorded performance, display capability, and modern API support including DirectX 12 Ultimate and Vulkan 1.4. The Intel card has no benchmark scores, no pixel output, and no Vulkan support, making it unsuitable for any measured client workload. The RTX 5070 Mobile has too little memory and bandwidth for the large-scale data center tasks where the Intel card's specifications dominate.