NVIDIA GeForce RTX 4080
vs
AMD Radeon RX 9070 XT

vs

GPU Comparison Result

Below are the results of a comparison of NVIDIA GeForce RTX 4080 and AMD Radeon RX 9070 XT video cards based on key performance characteristics, as well as power consumption and much more.

Advantages

  • Higher Boost Clock: 2505MHz (2505MHz vs 2430 MHz)
  • Higher Bandwidth: 716.8 GB/s (716.8 GB/s vs 624.1GB/s)
  • More Shading Units: 9728 (9728 vs 4096)

Basic

NVIDIA
Label Name
AMD
September 2022
Launch Date
-
Desktop
Platform
Desktop
GeForce RTX 4080
Model Name
Radeon RX 9070 XT
GeForce 40
Generation
Navi IV(RX 9000)
2205MHz
Base Clock
1295 MHz
2505MHz
Boost Clock
2430 MHz
PCIe 4.0 x16
Bus Interface
PCIe 4.0 x16
45,900 million
Transistors
Unknown
76
RT Cores
64
-
Compute Units
64
304
Tensor Cores
?
Tensor Cores are specialized processing units designed specifically for deep learning, providing higher training and inference performance compared to FP32 training. They enable rapid computations in areas such as computer vision, natural language processing, speech recognition, text-to-speech conversion, and personalized recommendations. The two most notable applications of Tensor Cores are DLSS (Deep Learning Super Sampling) and AI Denoiser for noise reduction.
-
304
TMUs
?
Texture Mapping Units (TMUs) serve as components of the GPU, which are capable of rotating, scaling, and distorting binary images, and then placing them as textures onto any plane of a given 3D model. This process is called texture mapping.
256
TSMC
Foundry
TSMC
5 nm
Process Size
4 nm
Ada Lovelace
Architecture
RDNA 4.0

Memory Specifications

16GB
Memory Size
16GB
GDDR6X
Memory Type
GDDR6
256bit
Memory Bus
?
The memory bus width refers to the number of bits of data that the video memory can transfer within a single clock cycle. The larger the bus width, the greater the amount of data that can be transmitted instantaneously, making it one of the crucial parameters of video memory. The memory bandwidth is calculated as: Memory Bandwidth = Memory Frequency x Memory Bus Width / 8. Therefore, when the memory frequencies are similar, the memory bus width will determine the size of the memory bandwidth.
256bit
1400MHz
Memory Clock
2438 MHz
716.8 GB/s
Bandwidth
?
Memory bandwidth refers to the data transfer rate between the graphics chip and the video memory. It is measured in bytes per second, and the formula to calculate it is: memory bandwidth = working frequency × memory bus width / 8 bits.
624.1GB/s

Theoretical Performance

280.6 GPixel/s
Pixel Rate
?
Pixel fill rate refers to the number of pixels a graphics processing unit (GPU) can render per second, measured in MPixels/s (million pixels per second) or GPixels/s (billion pixels per second). It is the most commonly used metric to evaluate the pixel processing performance of a graphics card.
233.3 GPixel/s
761.5 GTexel/s
Texture Rate
?
Texture fill rate refers to the number of texture map elements (texels) that a GPU can map to pixels in a single second.
622.1 GTexel/s
48.74 TFLOPS
FP16 (half)
?
An important metric for measuring GPU performance is floating-point computing capability. Half-precision floating-point numbers (16-bit) are used for applications like machine learning, where lower precision is acceptable. Single-precision floating-point numbers (32-bit) are used for common multimedia and graphics processing tasks, while double-precision floating-point numbers (64-bit) are required for scientific computing that demands a wide numeric range and high accuracy.
39.81 TFLOPS
761.5 GFLOPS
FP64 (double)
?
An important metric for measuring GPU performance is floating-point computing capability. Double-precision floating-point numbers (64-bit) are required for scientific computing that demands a wide numeric range and high accuracy, while single-precision floating-point numbers (32-bit) are used for common multimedia and graphics processing tasks. Half-precision floating-point numbers (16-bit) are used for applications like machine learning, where lower precision is acceptable.
622.1 GFLOPS
47.765 TFLOPS
FP32 (float)
?
An important metric for measuring GPU performance is floating-point computing capability. Single-precision floating-point numbers (32-bit) are used for common multimedia and graphics processing tasks, while double-precision floating-point numbers (64-bit) are required for scientific computing that demands a wide numeric range and high accuracy. Half-precision floating-point numbers (16-bit) are used for applications like machine learning, where lower precision is acceptable.
19.512 TFLOPS

Miscellaneous

76
SM Count
?
Multiple Streaming Processors (SPs), along with other resources, form a Streaming Multiprocessor (SM), which is also referred to as a GPU's major core. These additional resources include components such as warp schedulers, registers, and shared memory. The SM can be considered the heart of the GPU, similar to a CPU core, with registers and shared memory being scarce resources within the SM.
-
9728
Shading Units
?
The most fundamental processing unit is the Streaming Processor (SP), where specific instructions and tasks are executed. GPUs perform parallel computing, which means multiple SPs work simultaneously to process tasks.
4096
128 KB (per SM)
L1 Cache
128 KB per Array
64MB
L2 Cache
4 MB
320W
TDP
220W
1.3
Vulkan Version
?
Vulkan is a cross-platform graphics and compute API by Khronos Group, offering high performance and low CPU overhead. It lets developers control the GPU directly, reduces rendering overhead, and supports multi-threading and multi-core processors.
1.3
3.0
OpenCL Version
2.2
4.6
OpenGL
4.6
8.9
CUDA
-
12 Ultimate (12_2)
DirectX
12 Ultimate (12_2)
1x 16-pin
Power Connectors
2x 8-pin
112
ROPs
?
The Raster Operations Pipeline (ROPs) is primarily responsible for handling lighting and reflection calculations in games, as well as managing effects like anti-aliasing (AA), high resolution, smoke, and fire. The more demanding the anti-aliasing and lighting effects in a game, the higher the performance requirements for the ROPs; otherwise, it may result in a sharp drop in frame rate.
96
6.7
Shader Model
6.8
700W
Suggested PSU
550 W

Benchmarks

FP32 (float) / TFLOPS
GeForce RTX 4080
47.765 +145%
Radeon RX 9070 XT
19.512
3DMark Steel Nomad
GeForce RTX 4080
6595
Radeon RX 9070 XT
7238 +10%
Blender
GeForce RTX 4080
8341.45 +148%
Radeon RX 9070 XT
3356.78
Vulkan
GeForce RTX 4080
207930 +16%
Radeon RX 9070 XT
179584
OpenCL
GeForce RTX 4080
239769 +40%
Radeon RX 9070 XT
171744