GIGABYTE AORUS RX 5700 XT

RX 5700

Last updated: September 15, 2025

Performance Overview

8.0
GB Memory
1905
MHz Boost
2.6K
Shader Cores
225
W TDP

Technical Specifications

Detailed technical specifications and performance characteristics

Basic Information

The GIGABYTE AORUS RX 5700 XT is a graphics processor manufactured by the manufacturer, designed as part of the RX 5700 series. Belonging to the aorus GPU category, it is optimized for aorus devices, offering reliable performance and efficiency for gaming and professional applications.

GIGABYTE AORUS RX 5700 XT
RX 5700
Aorus

Graphics Processor

The GIGABYTE AORUS RX 5700 XT features a sophisticated graphics processor built on the RDNA 1.0 architecture using a 7nm manufacturing process by TSMC with approximately 10300 million transistors. This advanced design enables efficient processing of complex graphics workloads and modern gaming features.

Navi 10
RDNA 1.0
7
10,300
41
251
TSMC

Memory

The GIGABYTE AORUS RX 5700 XT is equipped with 8GB GDDR6 video memory connected via a 256-bit memory interface providing 448GB/s of memory bandwidth. This memory configuration ensures smooth performance in high-resolution gaming and content creation tasks.

8,192
GDDR6
1,750
14
448
256

Render Configuration

The GIGABYTE AORUS RX 5700 XT features a powerful rendering engine with and 2560 shader cores, 64 render output units (ROPs), and 160 texture mapping units (TMUs). This comprehensive rendering configuration delivers excellent performance across a wide range of applications.

2,560
64
160

Clock Speeds

The GIGABYTE AORUS RX 5700 XT operates at a base clock speed of 1605MHz with the ability to boost up to 1905MHz under optimal conditions. This dynamic clock management ensures optimal performance while maintaining thermal efficiency.

1,605
1,905

Power Consumption

The GIGABYTE AORUS RX 5700 XT has a thermal design power (TDP) of 225 watts, indicating its power consumption characteristics and thermal requirements. This power profile makes it suitable for various system configurations and cooling solutions.

225