Intel Arc Pro B65 vs NVIDIA GeForce RTX 4070 Ti SUPER Comparison

Intel
GPU

Intel Arc Pro B65

CORE STATE BMG-G21
VRAM 32 GB
CLOCK SPEED 2400 MHz
TDP 200 W
BUS WIDTH 256 bit
ARCHITECTURE Xe2-HPG
nm
PROCESS 5 nm
LAUNCH DATE 2026
VS
NVIDIA
GEFORCE

GeForce RTX 4070 Ti SUPER

CORE STATE AD103
VRAM 16 GB
CLOCK SPEED 2610 MHz
TDP 285 W
BUS WIDTH 256 bit
ARCHITECTURE Ada Lovelace
nm
PROCESS 5 nm
LAUNCH DATE 2024

PERFORMANCE BENCHMARKS

3dmark_3dmark_steel_nomad_dx12
N/A
5,569
geekbench_opencl
N/A
199,267
geekbench_vulkan
N/A
53,683
passmark_directx_10
N/A
181
passmark_directx_11
N/A
278
passmark_directx_12
N/A
119
passmark_directx_9
N/A
360
passmark_g2d
N/A
1,225
passmark_g3d
N/A
31,811
passmark_gpu_compute
N/A
18,372

Analysis: Intel Arc Pro B65 vs NVIDIA GeForce RTX 4070 Ti SUPER

The Verdict

The database positions these two cards in fundamentally different classes. The NVIDIA GeForce RTX 4070 Ti SUPER holds a 76th percentile ranking across all GPUs, while the Intel Arc Pro B65 sits at the 50th percentile. This 26-point percentile gap reflects a substantial performance chasm that appears in every measured category.

The RTX 4070 Ti SUPER is the clear choice for workloads that demand raw compute throughput. Its recorded average benchmark score of 31,087 places it within 2% of the NVIDIA TITAN RTX (31,676, -1.9% delta) and slightly ahead of the NVIDIA RTX PRO 4500 Blackwell (31,532, -1.4% delta). The Arc Pro B65 has no rival entries in the database, meaning no comparative benchmark scores exist to place it against other cards.

The Intel card targets a different buyer entirely. It offers 32 GB of memory versus 16 GB on the NVIDIA, and it uses the newer PCIe 5.0 interface. Its 200 W power draw is 85 W lower than the NVIDIA card's 285 W. The Arc Pro B65 is an active production card with a 2026 release date, while the RTX 4070 Ti SUPER is end-of-life with a 2024 release. For users who prioritize memory capacity, power efficiency, and current production status, the Intel card is the only option in this comparison. For users who prioritize performance scores, the NVIDIA card wins outright.

The recorded data shows no benchmark wins for either card in head-to-head testing; the head-to-head benchmark table is empty. This means the comparison rests entirely on the standalone benchmark suite for the NVIDIA card and the architectural specifications for both.

Where Each One Wins

The RTX 4070 Ti SUPER wins on every recorded performance metric. Its FP32 throughput of 44.10 TFLOPS is 3.6 times the Intel card's 12.29 TFLOPS. The NVIDIA card's texture rate of 689.0 GTexel/s nearly doubles the Intel card's 384.0 GTexel/s. Pixel rate also favors NVIDIA at 250.6 GPixel/s versus 192.0 GPixel/s.

The NVIDIA card's shading unit count of 8,448 is more than triple the Intel card's 2,560. It also carries 264 TMUs, 96 ROPs, 66 RT cores, and 264 tensor cores, all exceeding the Intel card's 160 TMUs, 80 ROPs, and 20 RT cores. The Intel card has no tensor core count listed in the database.

The Arc Pro B65 wins in memory capacity, offering exactly double the RAM: 32 GB versus 16 GB. It also uses GDDR6 memory, while the NVIDIA card uses GDDR6X. The Intel card's memory clock of 2375 MHz (19 Gbps effective) produces a bandwidth of 608.0 GB/s, which is 64.3 GB/s lower than the NVIDIA card's 672.3 GB/s. Despite the lower bandwidth, the larger capacity gives the Intel card an edge for workloads that need to hold large datasets locally.

The Intel card also wins on power efficiency. Its 200 W TDP requires a 550 W suggested PSU, while the NVIDIA card draws 285 W and demands a 600 W PSU. The Intel card uses a single 8-pin connector versus the NVIDIA card's 16-pin connector. The Intel card is dual-slot, the NVIDIA card is triple-slot.

Display output favors Intel as well. The Arc Pro B65 provides four DisplayPort 2.1 outputs, while the RTX 4070 Ti SUPER provides one HDMI 2.1 and three DisplayPort 1.4a outputs. The newer DisplayPort standard on the Intel card supports higher bandwidth for future monitors.

Architecture Differences

The two cards derive from different foundry processes and design philosophies. Both use TSMC's 5 nm node, but the similarities end there.

The Intel Arc Pro B65 uses the BMG-G21 chip built on the Xe2-HPG architecture, part of the Battlemage (Pro Series) generation. It packs 19,600 million transistors into a 272 mm² die, yielding a transistor density of 72.1M per mm². The NVIDIA GeForce RTX 4070 Ti SUPER uses the AD103 chip on the Ada Lovelace architecture, part of the GeForce 40 generation. Its die is substantially larger at 379 mm² and holds 45,900 million transistors, giving a density of 121.1M per mm². The NVIDIA die packs nearly 2.3 times more transistors per square millimeter.

Clock behavior differs meaningfully. The Intel card runs at a flat 2400 MHz base and boost, showing no boost headroom. The NVIDIA card starts at 2340 MHz base but boosts to 2610 MHz, a 270 MHz delta that contributes to its higher throughput. The memory clocks also differ: Intel runs at 2375 MHz (19 Gbps effective) for GDDR6, while NVIDIA runs at 1313 MHz (21 Gbps effective) for GDDR6X.

The bus interface separates the generations. Intel uses PCIe 5.0 x16, the current standard, while NVIDIA uses PCIe 4.0 x16. Both cards expose a 256-bit memory bus. The Intel card supports DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4, matching the NVIDIA card's API support exactly.

The NVIDIA card includes tensor cores (264) and a 1:1 FP16 ratio at 44.10 TFLOPS. The Intel card lists FP16 at 24.58 TFLOPS with a 2:1 ratio, meaning its FP16 throughput is half its FP32 rate. The Intel card has no tensor core field in the database, indicating a different approach to AI acceleration.

Physical dimensions differ substantially. The NVIDIA card measures 310 mm in length, 140 mm in height, and 61 mm in width. The Intel card has no recorded dimensions, but its dual-slot design contrasts with the NVIDIA triple-slot footprint. The Intel card uses one 8-pin power connector; the NVIDIA uses one 16-pin connector.

FAQ

Q: Which card has more memory?

A: The Intel Arc Pro B65 has 32 GB of GDDR6, exactly double the 16 GB of GDDR6X on the NVIDIA GeForce RTX 4070 Ti SUPER.

Q: How do their raw compute scores compare?

A: The NVIDIA card's average benchmark score is 31,087, placing it at the 76th percentile. The Intel card has no recorded benchmark scores, sits at the 50th percentile, and has no rival entries in the database.

Q: What is the power draw difference?

A: The Intel card draws 200 W and suggests a 550 W PSU. The NVIDIA card draws 285 W and suggests a 600 W PSU. The Intel card uses a single 8-pin connector; the NVIDIA uses a 16-pin connector.

Q: Are both cards still in production?

A: No. The Intel Arc Pro B65 has an active production status with a release date of 2026-03-31. The NVIDIA GeForce RTX 4070 Ti SUPER is end-of-life, released on 2024-01-23, with its predecessor listed as GeForce 30 and successor as GeForce 50.

Q: Which card has newer display outputs?

A: The Intel card provides four DisplayPort 2.1 outputs. The NVIDIA card provides one HDMI 2.1 and three DisplayPort 1.4a outputs.

Q: What is the memory bandwidth difference?

A: The NVIDIA card reaches 672.3 GB/s, which is 64.3 GB/s higher than the Intel card's 608.0 GB/s. Both use a 256-bit bus.

Head-to-Head Benchmarks

The database contains no head-to-head benchmark entries for these two cards, and the Intel card has zero standalone benchmark scores. The only comparable data comes from the NVIDIA card's benchmark suite, which includes ten tests spanning multiple APIs.

In 3DMark Steel Nomad DX12, the RTX 4070 Ti SUPER scores 5,569. This test targets modern DirectX 12 workloads. The Geekbench OpenCL score of 199,267 shows strong general compute performance, while the Geekbench Vulkan score of 53,683 reflects cross-platform graphics capability.

PassMark results for the NVIDIA card show a G3D score of 31,811 and a GPU compute score of 18,372. The legacy DirectX tests range from 119 (DirectX 12) to 360 (DirectX 9), with DirectX 10 at 181 and DirectX 11 at 278. The G2D score of 1,225 covers 2D rendering workloads.

The nearest rivals for the RTX 4070 Ti SUPER all sit within a narrow band. The NVIDIA Quadro M5000 averages 31,206 (-0.4% delta), the NVIDIA GRID M60-1Q averages 31,220 (-0.4% delta), the NVIDIA RTX PRO 4500 Blackwell averages 31,532 (-1.4% delta), and the NVIDIA TITAN RTX averages 31,676 (-1.9% delta). The RTX 4070 Ti SUPER trails the TITAN RTX by only 589 points, a margin of 1.9%, while sitting nearly equal to the Quadro M5000.

Since the Intel card has no benchmark records, its performance relative to the NVIDIA card cannot be quantified from the database. The specification differences alone define the comparison: the Intel card offers more memory and lower power, while the NVIDIA card offers roughly 3.6 times the FP32 throughput and nearly double the texture rate.

Specification Differences

The two cards differ in nearly every measurable specification. The Intel Arc Pro B65 uses the BMG-G21 chip with Xe2-HPG architecture, built on a 272 mm² die with 19,600 million transistors. The NVIDIA GeForce RTX 4070 Ti SUPER uses the AD103 chip with Ada Lovelace architecture, built on a 379 mm² die with 45,900 million transistors. Both use TSMC's 5 nm process.

Clock speeds favor NVIDIA. The Intel card runs at 2400 MHz base and boost. The NVIDIA card runs at 2340 MHz base and 2610 MHz boost. Memory clocks also differ: 2375 MHz (19 Gbps effective) for Intel GDDR6 versus 1313 MHz (21 Gbps effective) for NVIDIA GDDR6X.

Memory capacity favors Intel at 32 GB versus 16 GB. Bandwidth favors NVIDIA at 672.3 GB/s versus 608.0 GB/s. Both use a 256-bit bus.

Compute resources heavily favor NVIDIA. The Intel card has 2,560 shading units, 160 TMUs, 80 ROPs, and 20 RT cores. The NVIDIA card has 8,448 shading units, 264 TMUs, 96 ROPs, and 66 RT cores. The NVIDIA card also has 264 tensor cores; the Intel card has none listed. FP32 throughput is 12.29 TFLOPS for Intel versus 44.10 TFLOPS for NVIDIA. FP16 is 24.58 TFLOPS (2:1) for Intel versus 44.10 TFLOPS (1:1) for NVIDIA.

Pixel rate is 192.0 GPixel/s for Intel and 250.6 GPixel/s for NVIDIA. Texture rate is 384.0 GTexel/s for Intel and 689.0 GTexel/s for NVIDIA.

Power and physical specs differ. The Intel card draws 200 W with a 550 W suggested PSU and a single 8-pin connector. The NVIDIA card draws 285 W with a 600 W suggested PSU and a single 16-pin connector. The Intel card is dual-slot; the NVIDIA is triple-slot, measuring 310 mm by 140 mm by 61 mm.

Bus interfaces differ by generation. Intel uses PCIe 5.0 x16; NVIDIA uses PCIe 4.0 x16. Display outputs also differ: Intel provides four DisplayPort 2.1 ports; NVIDIA provides one HDMI 2.1 and three DisplayPort 1.4a ports.

API support is identical: both support DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4.

Production status separates the cards. The Intel card is active with a 2026-03-31 release date. The NVIDIA card is end-of-life with a 2024-01-23 release date, a predecessor in GeForce 30, and a successor in GeForce 50. The NVIDIA card had a launch MSRP of 799 USD. The Intel card has no recorded launch MSRP.

DETAILED SPECIFICATIONS

SPECIFICATION
Pro B65
RTX 4070 Ti SUPER
Core Specs
Shading Units
2,560
8,448 +230.0%
Shaders
2,560
8,448 +230.0%
TMUs
160
264 +65.0%
ROPs
80
96 +20.0%
SM Count
—
66
Execution Units
20
—
Clocks
Base Clock
2400 MHz
2340 MHz
Boost Clock
2400 MHz
2610 MHz
Memory Clock
2375 MHz 19 Gbps effective
1313 MHz 21 Gbps effective
Memory
Memory Size
32 GB
16 GB
VRAM (MB)
32,768
16,384 -50.0%
Memory Type
GDDR6
GDDR6X
Memory Bus
256 bit
256 bit
Bandwidth
608.0 GB/s
672.3 GB/s
Cache
L1 Cache
256 KB (per EU)
128 KB (per SM)
L2 Cache
10 MB
48 MB
Performance
Pixel Rate
192.0 GPixel/s
250.6 GPixel/s
Texture Rate
384.0 GTexel/s
689.0 GTexel/s
FP32 (TFLOPS)
12.29 TFLOPS
44.10 TFLOPS
FP64 (TFLOPS)
768.0 GFLOPS (1:16)
689.0 GFLOPS (1:64)
FP16 (TFLOPS)
24.58 TFLOPS (2:1)
44.10 TFLOPS (1:1)
AI/RT
RT Cores
20
66 +230.0%
Tensor Cores
—
264
XMX Cores
160
—
Power
TDP
200 W
285 W
TDP (W)
200
285 +42.5%
Suggested PSU
550 W
600 W
Power Connectors
1x 8-pin
1x 16-pin
Architecture
Architecture
Xe2-HPG
Ada Lovelace
GPU Name
BMG-G21
AD103
Generation
Battlemage (Pro Series)
GeForce 40
Process Size
5 nm
5 nm
Transistors
19,600 million
45,900 million
Die Size
272 mm²
379 mm²
Foundry
TSMC
TSMC
Density
72.1M / mm²
121.1M / 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
CUDA
—
8.9
Shader Model
6.6
6.9
Physical
Slot Width
Dual-slot
Triple-slot
Length
—
310 mm 12.2 inches
Height
—
140 mm 5.5 inches
Outputs
4x DisplayPort 2.1
1x HDMI 2.13x DisplayPort 1.4a
Bus Interface
PCIe 5.0 x16
PCIe 4.0 x16
Other
Launch Price
—
799 USD
Production
Active
End-of-life
Predecessor
—
GeForce 30
Successor
—
GeForce 50
View Arc Pro B65 Details View GeForce RTX 4070 Ti SUPER Details