Intel Data Center GPU Max 1350 vs NVIDIA GeForce RTX 5070 Mobile 12 GB Comparison

Intel
GPU

Intel Data Center GPU Max 1350

CORE STATE Ponte Vecchio
VRAM 96 GB
CLOCK SPEED 1550 MHz
TDP 450 W
BUS WIDTH 8192 bit
ARCHITECTURE Generation 12.5
nm
PROCESS 10 nm
LAUNCH DATE 2023
VS
NVIDIA
GEFORCE

GeForce RTX 5070 Mobile 12 GB

CORE STATE GB206
VRAM 12 GB
CLOCK SPEED 1425 MHz
TDP 50 W
BUS WIDTH 192 bit
ARCHITECTURE Blackwell 2.0
nm
PROCESS 5 nm
LAUNCH DATE 2026

Analysis: Intel Data Center GPU Max 1350 vs NVIDIA GeForce RTX 5070 Mobile 12 GB

Head-to-Head Benchmarks

The database contains no recorded benchmark scores for either the Intel Data Center GPU Max 1350 or the NVIDIA GeForce RTX 5070 Mobile 12 GB. Both entries show zero benchmark results, zero average benchmark scores, and zero head-to-head comparisons. Consequently, there are no wins recorded for either product in the head-to-head benchmark section. The percentile ranking for both GPUs against all other GPUs in the database is identical at 50, indicating that without performance data, each sits at the midpoint of the distribution by default rather than by measured achievement.

The absence of benchmark data means that any quantitative comparison of raw performance, such as frames per second, compute throughput, or render times, cannot be derived from the recorded information. The FP32 and FP16 figures listed in the specifications are raw theoretical peak values from the manufacturer datasheets, not measured results. The Intel part lists FP32 at 44.44 TFLOPS and FP16 at 44.44 TFLOPS (1:1), while the NVIDIA part lists FP32 at 13.13 TFLOPS and FP16 at 13.13 TFLOPS (1:1). These numbers indicate a theoretical compute advantage for the Intel accelerator, but they do not constitute benchmark outcomes and cannot be used to declare a winner in any tested workload.

FAQ

Q: Which GPU has the higher FP32 compute rating?

A: The Intel Data Center GPU Max 1350 lists FP32 at 44.44 TFLOPS, while the NVIDIA GeForce RTX 5070 Mobile 12 GB lists FP32 at 13.13 TFLOPS. The Intel part shows a higher theoretical FP32 figure.

Q: What are the memory capacities of the two GPUs?

A: The Intel Data Center GPU Max 1350 has 96 GB of HBM2e memory with a 8192 bit bus width and 2.46 TB/s bandwidth. The NVIDIA GeForce RTX 5070 Mobile 12 GB has 12 GB of GDDR7 memory with a 192 bit bus width and 576.0 GB/s bandwidth.

Q: How do the thermal design power ratings compare?

A: The Intel Data Center GPU Max 1350 has a TDP of 450 W, while the NVIDIA GeForce RTX 5070 Mobile 12 GB has a TDP of 50 W. The Intel part draws substantially more power according to the recorded specifications.

Q: Which GPU uses a larger process node?

A: The Intel Data Center GPU Max 1350 uses a 10 nm process node fabricated by Intel, while the NVIDIA GeForce RTX 5070 Mobile 12 GB uses a 5 nm process node fabricated by TSMC. The NVIDIA part uses the smaller process node.

Q: What are the transistor counts and die sizes?

A: The Intel Data Center GPU Max 1350 has 100,000 million transistors on a 1280 mm² die, while the NVIDIA GeForce RTX 5070 Mobile 12 GB has 21,900 million transistors on a 181 mm² die. The Intel part has more transistors and a larger die.

Q: Do both GPUs support DirectX 12?

A: Yes, both support DirectX 12. The Intel Data Center GPU Max 1350 supports DirectX 12 (12_1), while the NVIDIA GeForce RTX 5070 Mobile 12 GB supports DirectX 12 Ultimate (12_2). Both also support OpenGL 4.6.

Architecture Differences

The Intel Data Center GPU Max 1350 is built on the Ponte Vecchio chip, which uses Intel's Generation 12.5 architecture. The NVIDIA GeForce RTX 5070 Mobile 12 GB is built on the GB206 chip, which uses NVIDIA's Blackwell 2.0 architecture. These are fundamentally different design philosophies. The Intel chip is a data center accelerator with no display outputs, while the NVIDIA chip is a mobile graphics processor with portable device dependent display outputs.

The process nodes differ. Intel uses a 10 nm process at its own foundry, while NVIDIA uses a 5 nm process at TSMC. The transistor counts reflect the design scale: Intel packs 100,000 million transistors onto a 1280 mm² die, while NVIDIA fits 21,900 million transistors onto a 181 mm² die. The transistor density is higher on the NVIDIA chip at 121.0M / mm², compared to 78.1M / mm² on the Intel chip, indicating a more compact arrangement per square millimeter despite the lower total count.

The shading unit counts diverge sharply. Intel lists 14336 shading units, 896 texture mapping units, and 0 raster operations units. NVIDIA lists 4608 shading units, 144 texture mapping units, and 48 raster operations units. The Intel part also includes 112 ray tracing cores, while the NVIDIA part includes 36 ray tracing cores and 144 tensor cores. The Intel part does not list a tensor core count in the database, while the NVIDIA part lists 144 tensor cores for AI workloads.

Memory architecture differs completely. Intel uses HBM2e memory with a 8192 bit bus and 2.46 TB/s bandwidth, typical for a high-bandwidth accelerator. NVIDIA uses GDDR7 memory with a 192 bit bus and 576.0 GB/s bandwidth, typical for a mobile consumer GPU. The Intel part has no display outputs, while the NVIDIA part has portable device dependent outputs, confirming the Intel part is not intended for direct display connection.

The API support shows differences in DirectX versions. Intel supports DirectX 12 (12_1) and OpenGL 4.6, with no Vulkan version listed. NVIDIA supports DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4. The NVIDIA part therefore lists a newer DirectX feature level and Vulkan support, while the Intel part lacks a listed Vulkan API.

Specification Differences

The two GPUs differ across nearly every recorded specification field. The Intel Data Center GPU Max 1350 has a base clock of 750 MHz and a boost clock of 1550 MHz, while the NVIDIA GeForce RTX 5070 Mobile 12 GB has a base clock of 907 MHz and a boost clock of 1425 MHz. The NVIDIA part has a higher base clock, but the Intel part has a higher boost clock. Memory clocks also differ: Intel runs at 1200 MHz with 2.4 Gbps effective, while NVIDIA runs at 1500 MHz with 24 Gbps effective.

Memory size, type, bus width, and bandwidth all differ. Intel has 96 GB of HBM2e with 8192 bit bus and 2.46 TB/s bandwidth. NVIDIA has 12 GB of GDDR7 with 192 bit bus and 576.0 GB/s bandwidth. The Intel part has 14336 shading units versus 4608 for NVIDIA, 896 TMUs versus 144, 0 ROPs versus 48, 112 RT cores versus 36, and no listed tensor cores versus 144 for NVIDIA.

Pixel rate and texture rate differ. Intel has a pixel rate of 0 MPixel/s and a texture rate of 1,388.8 GTexel/s. NVIDIA has a pixel rate of 68.40 GPixel/s and a texture rate of 205.2 GTexel/s. FP32 and FP16 figures differ as noted, with Intel at 44.44 TFLOPS for both and NVIDIA at 13.13 TFLOPS for both.

Power and physical specifications differ. Intel has a TDP of 450 W and a suggested PSU of 850 W, while NVIDIA has a TDP of 50 W and no suggested PSU listed. Intel uses an OAM Module slot width, while NVIDIA uses an IGP slot width. Intel lists no power connectors, and NVIDIA lists none as well. Both use PCIe 5.0 x16 as the bus interface.

Release dates differ. Intel was released on January 9, 2023, while NVIDIA is dated May 31, 2026. Intel lists its successor as H3C Graphics, while NVIDIA lists its predecessor as GeForce 40 Mobile. Intel has no listed predecessor, and NVIDIA has no listed successor. Intel's production status is Active, and NVIDIA's production status is also Active.

The Verdict

The data shows two products aimed at entirely different use cases, with no benchmark results to compare actual performance. The Intel Data Center GPU Max 1350 is a high-power accelerator with 96 GB of HBM2e memory, 14336 shading units, and a 450 W TDP, designed for data center compute workloads with no display outputs. The NVIDIA GeForce RTX 5070 Mobile 12 GB is a low-power mobile GPU with 12 GB of GDDR7 memory, 4608 shading units, and a 50 W TDP, designed for laptop graphics with portable device dependent display outputs.

For users selecting a GPU strictly from the recorded data, the choice depends on the workload context. The Intel part offers a larger memory pool, higher theoretical FP32 and FP16 throughput, more shading units, and a higher boost clock. The NVIDIA part offers a smaller process node, higher transistor density, higher base clock, faster memory clock, ray tracing cores with tensor cores, Vulkan 1.4 support, and a far lower TDP. Neither part has a measured benchmark advantage in the database, so neither can be declared faster based on test results.

The Intel part is appropriate for data center deployments requiring high memory capacity and compute throughput, given its OAM Module form factor and 450 W power envelope. The NVIDIA part is appropriate for mobile devices requiring low power consumption and integrated graphics, given its IGP form factor and 50 W power envelope. The absence of benchmark scores means that any performance claims must rely on the listed specifications, which clearly favor the Intel part in raw compute and memory bandwidth but favor the NVIDIA part in efficiency and feature set.

Where Each One Wins

The Intel Data Center GPU Max 1350 wins in categories related to raw compute scale. It has 14336 shading units versus 4608, 896 TMUs versus 144, 112 RT cores versus 36, and 96 GB of memory versus 12 GB. Its memory bandwidth of 2.46 TB/s is far higher than the 576.0 GB/s of the NVIDIA part. Its FP32 and FP16 figures of 44.44 TFLOPS exceed the 13.13 TFLOPS of the NVIDIA part. Its texture rate of 1,388.8 GTexel/s exceeds the 205.2 GTexel/s of the NVIDIA part. Its boost clock of 1550 MHz exceeds the 1425 MHz of the NVIDIA part. Its transistor count of 100,000 million exceeds the 21,900 million of the NVIDIA part, and its die size of 1280 mm² exceeds the 181 mm² of the NVIDIA part.

The NVIDIA GeForce RTX 5070 Mobile 12 GB wins in categories related to efficiency and modern features. It has a TDP of 50 W versus 450 W, making it much lower power. It uses a 5 nm process node versus 10 nm, and has a higher transistor density of 121.0M / mm² versus 78.1M / mm². Its base clock of 907 MHz exceeds the 750 MHz of the Intel part. Its memory clock of 1500 MHz with 24 Gbps effective exceeds the 1200 MHz with 2.4 Gbps effective of the Intel part. It has 48 ROPs versus 0, and 144 tensor cores versus no listed count. Its pixel rate of 68.40 GPixel/s exceeds the 0 MPixel/s of the Intel part. It supports DirectX 12 Ultimate (12_2) versus DirectX 12 (12_1), and Vulkan 1.4 versus no listed Vulkan support. It has display outputs, while the Intel part has none. Its release date of May 31, 2026 is later than the January 9, 2023 release date of the Intel part, indicating a newer generation in the GeForce 50 Mobile series.

DETAILED SPECIFICATIONS

SPECIFICATION
Data Center GPU Max 1350
RTX 5070 Mobile 12 GB
Core Specs
Shading Units
14,336
4,608 -67.9%
Shaders
14,336
4,608 -67.9%
TMUs
896
144 -83.9%
ROPs
0
48 +∞%
SM Count
—
36
Execution Units
896
—
Clocks
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
Memory Size
96 GB
12 GB
VRAM (MB)
98,304
12,288 -87.5%
Memory Type
HBM2e
GDDR7
Memory Bus
8192 bit
192 bit
Bandwidth
2.46 TB/s
576.0 GB/s
Cache
L1 Cache
64 KB (per EU)
128 KB (per SM)
L2 Cache
408 MB
32 MB
Performance
Pixel Rate
0 MPixel/s
68.40 GPixel/s
Texture Rate
1,388.8 GTexel/s
205.2 GTexel/s
FP32 (TFLOPS)
44.44 TFLOPS
13.13 TFLOPS
FP64 (TFLOPS)
44.44 TFLOPS (1:1)
205.2 GFLOPS (1:64)
FP16 (TFLOPS)
44.44 TFLOPS (1:1)
13.13 TFLOPS (1:1)
AI/RT
RT Cores
112
36 -67.9%
Tensor Cores
—
144
XMX Cores
896
—
Power
TDP
450 W
50 W
TDP (W)
450
50 -88.9%
Suggested PSU
850 W
—
Power Connectors
—
None
Architecture
Architecture
Generation 12.5
Blackwell 2.0
GPU Name
Ponte Vecchio
GB206
Generation
Data Center GPU (Ponte Vecchio)
GeForce 50 Mobile
Process Size
10 nm
5 nm
Transistors
100,000 million
21,900 million
Die Size
1280 mm²
181 mm²
Foundry
Intel
TSMC
Density
78.1M / mm²
121.0M / mm²
API Support
DirectX
12 (12_1)
12 Ultimate (12_2)
OpenGL
4.6
4.6
Vulkan
—
1.4
OpenCL
3.0
3.0
CUDA
—
12.0
Shader Model
6.6
6.9
Physical
Slot Width
OAM Module
IGP
Outputs
No outputs
Portable Device Dependent
Bus Interface
PCIe 5.0 x16
PCIe 5.0 x16
Other
Production
Active
Active
Predecessor
—
GeForce 40 Mobile
Successor
H3C Graphics
—
View Data Center GPU Max 1350 Details View GeForce RTX 5070 Mobile 12 GB Details