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ASRock Radeon AI PRO R9700 Creator vs GIGABYTE GeForce RTX 5060 Ti Eagle MAX OC 8G Graphics Card,

Updated August 2026 — ASRock Radeon AI PRO R9700 Creator wins on memory and performance, GIGABYTE GeForce RTX 5060 Ti Eagle MAX OC 8G Graphics Card, wins on price.

The ASRock Radeon AI PRO R9700 Creator excels in professional applications, while the GIGABYTE GeForce RTX 5060 Ti offers great value for gamers.

Why ASRock Radeon AI PRO R9700 Creator is better

Memory Capacity

32GB GDDR6 vs 8GB GDDR7

Cooling Solution

Professional blower cooling vs WINDFORCE cooling

Target Audience

Designed for professionals vs gamers

Why GIGABYTE GeForce RTX 5060 Ti Eagle MAX OC 8G Graphics Card, is better

Price

$399.99 vs $1349.99

Gaming Performance

Optimized for gaming vs professional workloads

Weight

Lighter design for easier installation

Overall score

ASRock Radeon AI PRO R9700 Creator
90
GIGABYTE GeForce RTX 5060 Ti Eagle MAX OC 8G Graphics Card,
70

Specifications

SpecASRock Radeon AI PRO R9700 CreatorGIGABYTE GeForce RTX 5060 Ti Eagle MAX OC 8G Graphics Card,
Boost Clock2920 MHzN/A
Memory32GB GDDR68GB GDDR7
ArchitectureAMD RDNA 4NVIDIA Blackwell
PCIe Version5.05.0
Cooling TypeBlowerWINDFORCE

Dimension comparison

ASRock Radeon AI PRO R9700 CreatorGIGABYTE GeForce RTX 5060 Ti Eagle MAX OC 8G Graphics Card,

Overview

In this comparison, we will examine the ASRock Radeon AI PRO R9700 Creator and the GIGABYTE GeForce RTX 5060 Ti Eagle MAX OC. The ASRock Radeon is priced at $1,349.99, while the GIGABYTE model comes in at $399.99, making it about 70% cheaper. Each graphics card is tailored for different user bases, with the ASRock focusing on professional workloads and the GIGABYTE catering to gamers and creative enthusiasts.

Performance

The ASRock Radeon AI PRO R9700 Creator boasts a boost clock of 2920 MHz and is engineered for demanding applications, such as AI development and 8K video editing, thanks to its 32GB GDDR6 memory. In contrast, the GIGABYTE GeForce RTX 5060 Ti features a robust performance powered by NVIDIA's Blackwell architecture, although it is equipped with only 8GB of GDDR7 memory. The significant memory capacity difference indicates that the ASRock is better suited for compute-intensive tasks, while the GIGABYTE excels in gaming scenarios, providing fast frame rates and stunning visuals.

Cooling Solutions

Cooling efficiency differs markedly between the two graphics cards. The ASRock Radeon utilizes a professional blower cooling system designed to exhaust heat directly from the chassis, which is essential for multi-GPU setups and sustained professional workloads. On the other hand, the GIGABYTE GeForce RTX 5060 Ti features the WINDFORCE cooling system, which includes a Hawk fan and server-grade thermal conductive gel. While both coolers are effective, the ASRock's design is specifically tailored for high-performance workstations, making it more reliable under heavy loads.

Memory Capacity

When it comes to memory capacity, the ASRock Radeon AI PRO R9700 Creator leads with a significant 32GB of GDDR6, compared to the GIGABYTE's 8GB of GDDR7. This 24GB difference is crucial for professionals engaged in tasks like 3D rendering or machine learning, where larger datasets can be handled more efficiently. The GIGABYTE's 8GB is still capable for gaming and general use, but for those who require extensive memory for their applications, the ASRock is undoubtedly the superior choice.

Target Audience

The target audience for these two graphics cards diverges significantly. The ASRock Radeon is designed primarily for professional content creators and AI developers who need robust performance for complex workloads. Its enterprise-grade features and high memory capacity cater to users who require stability and efficiency in demanding environments. Conversely, the GIGABYTE GeForce RTX 5060 Ti appeals to gamers and casual creators wanting high-quality graphics and fast performance at a more accessible price point. The price difference further emphasizes the distinct market segments each product serves.

Build Quality

In terms of build quality, the ASRock Radeon features a die-cast metal shroud and a metal backplate, enhancing its durability for 24/7 operation. This robust construction is ideal for professional environments where reliability is crucial. The GIGABYTE GeForce RTX 5060 Ti, while reinforced, focuses more on providing a lightweight design that balances performance and thermal management. Users should consider their operational environment when choosing between these two cards, as the ASRock is built for more intensive and prolonged usage.

Connectivity

Both graphics cards feature modern connectivity options. The ASRock Radeon supports PCIe 5.0 and includes four DisplayPort 2.1a outputs, allowing for high-bandwidth data transfer and multiple high-resolution displays. The GIGABYTE GeForce RTX 5060 Ti also supports PCIe 5.0, but offers fewer options in display outputs. This difference may impact users who require multiple monitor setups for productivity or immersive gaming experiences, making the ASRock a more versatile option in this regard.

Price Consideration

The ASRock Radeon AI PRO R9700 Creator is priced at $1,349.99, while the GIGABYTE GeForce RTX 5060 Ti is significantly more economical at $399.99, making it about 70% cheaper. This substantial price difference may be a deciding factor for buyers. Professionals may justify the ASRock's higher cost due to its performance capabilities, but casual users or gamers might find the GIGABYTE's price point more appealing, especially if their needs do not require the extensive features of the ASRock.

Which should you buy?

Choosing between the ASRock Radeon AI PRO R9700 Creator and the GIGABYTE GeForce RTX 5060 Ti ultimately depends on your specific needs. If you are a professional content creator or AI developer needing high memory capacity and advanced performance, the ASRock is the clear winner despite its steep price. However, if you are a gamer or a casual user looking for excellent performance at a lower price, the GIGABYTE is a compelling option. Each card excels in its respective domain, making the choice highly dependent on your intended use case.