Intel Graphics 32EU (Twin Lake)

Intel Graphics 32EU (Twin Lake)
Intel Graphics 32EU (Twin Lake) is a Integrated video accelerator from Intel. It began to be released in January 2025. The GPU has a boost frequency of 1250-1350 MHz. It also has a memory frequency of System Dependent. Its characteristics, as well as benchmark results, are presented in more detail below.

Basic

Label Name
Intel
Platform
Integrated
Launch Date
January 2025
Former Codename
Twin Lake
GPU Lithography
Intel 7
Model Name
Intel Graphics
Generation
Twin Lake / Gen 12.2
Boost Clock
1250-1350 MHz
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.
256
Compute Units
32
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.
16
Foundry
Intel
Process Size
10 nm
Architecture
Xe-LP

Memory Specifications

Memory Size
System Shared
Memory Type
DDR4-3200 / DDR5-4800 / LPDDR5-4800 (System Shared)
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.
System Shared
Memory Clock
System Dependent
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.
System Dependent

Display and Media

AV1 Encode/Decode
Decode Only
DisplayPort Extensions
DisplayPort 1.4, HBR3, MST, DSC 1.1, Adaptive Sync
H.264 Hardware Encode/Decode
Yes
H.265 HEVC Hardware Encode/Decode
Yes
H.266 VVC Hardware Encode/Decode
No
HDCP Version
HDCP 2.2 / 1.4
HDMI Version
HDMI 2.1 TMDS Compatible
Intel Quick Sync Video
Yes
Max Resolution DP
4096 x 2160 @ 60Hz
Max Resolution HDMI
4096 x 2160 @ 60Hz
Number of Displays Supported
3
Outputs
eDP 1.4b, DisplayPort 1.4, HDMI 2.1, MIPI-DSI 1.3

Theoretical Performance

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.
0.6912 TFlops

Miscellaneous

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
OpenCL Version
3.0
OpenGL
4.6
CUDA
No
DirectX
12.1
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.
8

Cyberpunk 2077 1080p

6 Fps

GTA 5 1080p

9.86 Fps

FP32 (float)

0.6912 TFlops

3DMark Time Spy

625

Vulkan

7851

OpenCL

6889

Compared to Other GPU

SiliconCat Rating

1157
Ranks 1157 among all GPU on our website
Cyberpunk 2077 1080p
Radeon RX 6800
AMD, October 2020
87 Fps
GeForce RTX 2080
NVIDIA, September 2018
66 Fps
GeForce RTX 2060 SUPER
NVIDIA, July 2019
54 Fps
GeForce RTX 3050 4 GB
NVIDIA, January 2022
41 Fps
Graphics 32EU (Twin Lake)
Intel, January 2025
6 Fps
GTA 5 1080p
Radeon RX 7600
AMD, May 2023
190 Fps
Radeon RX 5600 XT
AMD, January 2020
173 Fps
GeForce GTX 1660 Ti
NVIDIA, February 2019
155 Fps
GeForce RTX 3050 8 GB
NVIDIA, January 2022
116 Fps
Graphics 32EU (Twin Lake)
Intel, January 2025
9.86 Fps
FP32 (float)
FirePro S4000X
AMD, August 2014
1.012 TFlops
Radeon HD 8870M
AMD, April 2013
0.992 TFlops
0.94 TFlops
Graphics 32EU (Twin Lake)
Intel, January 2025
0.6912 TFlops
Radeon Vega 2
Intel, January 2020
0.28 TFlops
3DMark Time Spy
Radeon RX 580 2048SP
AMD, October 2018
3906
GeForce GTX 980M
NVIDIA, October 2014
2888
GeForce GTX 680
NVIDIA, March 2012
1922
Radeon RX Vega 11 Mobile
AMD, October 2019
1246
Graphics 32EU (Twin Lake)
Intel, January 2025
625
Vulkan
Radeon Pro W5700
AMD, November 2019
62536
Radeon Pro 5500 XT
AMD, August 2020
39646
GeForce GTX 1630
NVIDIA, June 2022
23688
FirePro M5100
AMD, October 2013
10692
Graphics 32EU (Twin Lake)
Intel, January 2025
7851
OpenCL
GeForce GTX TITAN X
NVIDIA, March 2015
37596
GeForce GTX 980M
NVIDIA, October 2014
23366
FirePro M6100
AMD, October 2013
13395
GeForce GTX 950M
NVIDIA, March 2015
9440
Graphics 32EU (Twin Lake)
Intel, January 2025
6889