GPU INTEL XE2-HPG
Intel Arc B570

Intel Arc B570

BMG-G21 Released: January 16, 2025
Memory
10
GB GDDR6
Boost Clock
2500
MHz
TGP
150
W

Technical Highlights

Architecture : Xe2-HPG
Generation : Battlemage (Arc 5)
Shading Units : 2304
RT Cores : 18

About this GPU Card

Intel Arc B570 is a discrete graphics card from Intel released on January 16, 2025 based on the Xe2-HPG architecture with 10 GB GDDR6 memory. It runs at 2500 MHz base clock, reaches up to 2500 MHz boost clock, and has a 150 W power rating. It supports DirectX 12.2, Vulkan 1.4, and OpenGL 4.6.

Last updated: March 28, 2026

Overall Score Of Intel Arc B570

This summarizes how Intel Arc B570 scores across key areas like gaming, rendering, AI, and Energy Efficiency.

69
Overall
Gaming Performance
53
AI & Machine Learning
53
Hardware Architecture
77
Workstation
54
Energy Efficiency
100

General Info of Intel Arc B570

Vendor

Intel

Release Date

January 16, 2025

Foundry

TSMC

Architecture

Xe2-HPG

Process Size

Excellent

5 nm

80% of the current best Process Size score

Transistors

19.6 billion

Launch Price

219

Graphics Processor of Intel Arc B570

Base Clock

Top tier

2500 MHz

94% of the current best Base Clock score

Boost Clock

Excellent

2500 MHz

80% of the current best Boost Clock score

Shading Units

2304

11% of the current best Shading Units score

Compute Units

18

11% of the current best Compute Units score

Ray Tracing Cores (RTCs)

18

11% of the current best Ray Tracing Cores (RTCs) score

Tensor Cores

144

21% of the current best Tensor Cores score

Textured Mapping Units (TMUs)

144

21% of the current best Textured Mapping Units (TMUs) score

Render Output Units (ROPs)

80

31% of the current best Render Output Units (ROPs) score

Die Size

272 mm²

Density

72.1 MTr/mm²

L1 Cache

Top tier

256 KB (per EU)

100% of the current best L1 Cache score

L2 Cache

18 MB

19% of the current best L2 Cache score

Raw Performance of Intel Arc B570

Pixel Fill Rate

200.0 GPixel/s

42% of the current best Pixel Fill Rate score

Texture Fill Rate

360.0 GTexel/s

22% of the current best Texture Fill Rate score

FP32 Performance

11.52 TFLOPs

11% of the current best FP32 Performance score

Memory of Intel Arc B570

Memory Size

Good

10 GB

31% of the current best Memory Size score

Memory Type

Good

GDDR6

70% of the current best Memory Type score

Bus Width

160-bit

Memory Clock

Top tier

2375 MHz

90% of the current best Memory Clock score

Effective Speed

Good

19000 Mbps

63% of the current best Effective Speed score

Bandwidth

380 GB/s

21% of the current best Bandwidth score

Board Design of Intel Arc B570

Bus Interface

Good

PCIe 4.0 x8

60% of the current best Bus Interface score

PCIe Version

Excellent

4.0

80% of the current best PCIe Version score

PCIe Lanes

8

TGP

150 W

Length

272 mm

Height

115 mm

APIs of Intel Arc B570

DirectX

Top tier

12.2

100% of the current best DirectX score

OpenGL

Top tier

4.6

100% of the current best OpenGL score

OpenCL

Top tier

3.0

100% of the current best OpenCL score

Vulkan

Top tier

1.4

100% of the current best Vulkan score

HDMI

Top tier

2.1a

100% of the current best HDMI score

DisplayPort

Top tier

2.1

100% of the current best DisplayPort score

Ray Tracing

1

DLSS

0

Benchmarks of Intel Arc B570

3D Mark

A standardized suite that approximates real-world gaming workloads to compare graphics performance.

Steel Nomad Lite:
9735
18% of max score
Time Spy:
12511 (44th)
27% of max score
Solar Bay:
48648
21% of max score
Port Royal:
6714
18% of max score
Fire Strike:
31369
36% of max score
Wild Life Extreme:
24548
23% of max score
Night Raid:
110785
53% of max score

GeekBench 6 OpenCL

GPU compute benchmark focused on workloads like image processing and parallel compute tasks.

Compute Score:
85640 (69th)
20% of max score
Background Blur:
223.7 img/sec
52% of max score
Face Detection:
115.2 img/sec
39% of max score
Horizon Detection:
2.14 Gpixels/sec
10% of max score
Edge Detection:
3.95 Gpixels/sec
12% of max score
Gaussian Blur:
4.81 Gpixels/sec
14% of max score
Feature Matching:
0.93 Gpixels/sec
37% of max score
Stereo Matching:
294.6 Gpixels/sec
10% of max score
Particle Physics:
11270.6 FPS
19% of max score

Passmark Graphics

A multi-test benchmark that evaluates raster, memory bandwidth, and compute performance.

G3D Mark Score:
14020 (78th)
36% of max score
G2D Mark Score:
624
44% of max score
DirectX 12:
70
40% of max score
GPU Compute:
7280 Ops/s
28% of max score

GFXBench 5

Graphics benchmark using modern GPU APIs and game-like scenes across multiple workloads.

Aztec Ruins High (4K):
130.30 FPS
11% of max score
Aztec Ruins Normal:
719.50 FPS
37% of max score
Car Chase:
674.50 FPS
39% of max score
Manhattan 3.1 (1440p):
532.30 FPS
13% of max score
T-Rex:
1989.90 FPS
30% of max score

Blender

Rendering performance benchmark using Blender Cycles throughput as a practical content-creation metric.

Render Score:
10% of max score

GeekBench 6 ML

AI benchmark measuring common ML workloads like classification, detection, and super resolution.

ML Single Precision:
20296 (41st)
38% of max score
ML Half Precision:
33136
41% of max score
ML Quantized:
12966
33% of max score
Image Classification:
9924
52% of max score
Object Detection:
13018
47% of max score
Image Segmentation:
20640
37% of max score
Face Detection:
39045
34% of max score
Image Super Resolution:
14215
26% of max score
Style Transfer:
176206
26% of max score
Text Classification:
3028
58% of max score
Machine Translation:
3740
43% of max score
Depth Estimation:
31035
36% of max score
Pose Estimation:
56787
16% of max score

FurMark

Stress test designed to push sustained load for thermal stability and cooling behavior.

1080p Vulkan:
7995
23% of max score
1440p Vulkan:
5952
23% of max score
1080p OpenGL:
6551
22% of max score
1440p OpenGL:
4925
21% of max score
2160p OpenGL:
2800
18% of max score

Performance Charts Of Intel Arc B570

These charts give a quick view of FPS scaling across resolutions and how this GPU compares against market top benchmark values.

Gaming FPS Analysis

Ultra settings performance of Intel Arc B570
1080p Ultra
1440p Ultra
4K Ultra

Performance Benchmarks

Grey is the market top value. Colored bar is Intel Arc B570.
Market Top
Intel Arc B570

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Frequently Asked Questions about Intel Arc B570

The Intel Arc B570 was officially released in January 16, 2025. It was launched as a graphics solution by Intel.

The Intel Arc B570 scores 12,511 on 3DMark Time Spy, indicating its solid capabilities in modern gaming scenarios. This benchmark is the industry standard for measuring DirectX 12 gaming performance.

The Intel Arc B570 is equipped with 10 GB of VRAM, which is currently the sweet spot for smooth 1440p gaming and modern texture quality.

The Intel Arc B570 has a Total Graphics Power (TGP) of 150 W. This value dictates your power supply (PSU) requirements, so ensure your system can handle this draw effectively.

The Intel Arc B570 operates at a base clock speed of 2500 MHz. This is the minimum clock frequency the graphics card runs at under standard workloads before boosting.

The Intel Arc B570 features a boost clock speed of 2500 MHz. This clock speed represents the maximum frequency the graphics card can dynamically reach during intense gaming or rendering workloads.

The Intel Arc B570 is built on the Xe2-HPG architecture. This foundational design determines the GPU's power efficiency and support for modern features like hardware Ray Tracing and AI upscaling (DLSS/FSR).

With a performance score of 69%, the Intel Arc B570 is ranked as a capable mid-range graphics card in our extensive GPU database.

The Intel Arc B570 uses the PCIe 4.0 x8 interface, ensuring high-speed data transfer and minimal bottlenecking between the graphics card and the motherboard.

The Intel Arc B570 features 2,304 shading units (cores), which are directly responsible for rendering complex visual effects and lighting in modern games.

The Intel Arc B570 contains approximately 19.6 billion transistors, packed into its silicon to deliver massive parallel processing capabilities.

The Intel Arc B570 is manufactured on a 5 nm node. A smaller process node generally translates to better energy efficiency and improved thermal management.