RADEON

AMD Radeon RX 6750 GRE 12 GB

AMD graphics card specifications and benchmark scores

12 GB
VRAM
2581
MHz Boost
250W
TDP
192
Bus Width
Ray Tracing

At a Glance

AMD
VRAM 12 GB
Boost Clock 2,581 MHz
Shaders 2,560
Bus Width 192-bit
TDP 250W
Memory Type GDDR6
RT Cores 40
Architecture RDNA 2.0
nm
Process 7 nm
Released Oct 2023

AMD Radeon RX 6750 GRE 12 GB Specifications

GPU Core

Shader units and compute resources

The AMD Radeon RX 6750 GRE 12 GB GPU core specifications define its raw processing power for graphics and compute workloads. Shading units (also called CUDA cores, stream processors, or execution units depending on manufacturer) handle the parallel calculations required for rendering. TMUs (Texture Mapping Units) process texture data, while ROPs (Render Output Units) handle final pixel output. Higher shader counts generally translate to better GPU benchmark performance, especially in demanding games and 3D applications.

Shading Units
2,560
Shaders
2,560
TMUs
160
ROPs
64
Compute Units
40

RX 6750 GRE 12 GB Clock Speeds

GPU and memory frequencies

Clock speeds directly impact the Radeon RX 6750 GRE 12 GB's performance in GPU benchmarks and real-world gaming. The base clock represents the minimum guaranteed frequency, while the boost clock indicates peak performance under optimal thermal conditions. Memory clock speed affects texture loading and frame buffer operations. The Radeon RX 6750 GRE 12 GB by AMD dynamically adjusts frequencies based on workload, temperature, and power limits to maximize performance while maintaining stability.

Base Clock
2321 MHz
Base Clock
2,321 MHz
Boost Clock
2581 MHz
Boost Clock
2,581 MHz
Game Clock
2439 MHz
Memory Clock
2250 MHz 18 Gbps effective
GDDR GDDR 6X 6X

AMD's Radeon RX 6750 GRE 12 GB Memory

VRAM capacity and bandwidth

VRAM (Video RAM) is dedicated memory for storing textures, frame buffers, and shader data. The Radeon RX 6750 GRE 12 GB's memory capacity determines how well it handles high-resolution textures and multiple displays. Memory bandwidth, measured in GB/s, affects how quickly data moves between the GPU and VRAM. Higher bandwidth improves performance in memory-intensive scenarios like 4K gaming. The memory bus width and type (GDDR6, GDDR6X, HBM) significantly influence overall GPU benchmark scores.

Memory Size
12 GB
VRAM
12,288 MB
Memory Type
GDDR6
VRAM Type
GDDR6
Memory Bus
192 bit
Bus Width
192-bit
Bandwidth
432.0 GB/s

Radeon RX 6750 GRE 12 GB by AMD Cache

On-chip cache hierarchy

On-chip cache provides ultra-fast data access for the RX 6750 GRE 12 GB, reducing the need to fetch data from slower VRAM. L1 and L2 caches store frequently accessed data close to the compute units. AMD's Infinity Cache (L3) dramatically increases effective bandwidth, improving GPU benchmark performance without requiring wider memory buses. Larger cache sizes help maintain high frame rates in memory-bound scenarios and reduce power consumption by minimizing VRAM accesses.

L1 Cache
128 KB per Array
L2 Cache
3 MB
Infinity Cache
96 MB

RX 6750 GRE 12 GB Theoretical Performance

Compute and fill rates

Theoretical performance metrics provide a baseline for comparing the AMD Radeon RX 6750 GRE 12 GB against other graphics cards. FP32 (single-precision) performance, measured in TFLOPS, indicates compute capability for gaming and general GPU workloads. FP64 (double-precision) matters for scientific computing. Pixel and texture fill rates determine how quickly the GPU can render complex scenes. While real-world GPU benchmark results depend on many factors, these specifications help predict relative performance levels.

FP32 (Float)
13.21 TFLOPS
FP64 (Double)
825.9 GFLOPS (1:16)
FP16 (Half)
26.43 TFLOPS (2:1)
Pixel Rate
165.2 GPixel/s
Texture Rate
413.0 GTexel/s

Radeon RX 6750 GRE 12 GB Ray Tracing & AI

Hardware acceleration features

The AMD Radeon RX 6750 GRE 12 GB includes dedicated hardware for ray tracing and AI acceleration. RT cores handle real-time ray tracing calculations for realistic lighting, reflections, and shadows in supported games. Tensor cores (NVIDIA) or XMX cores (Intel) accelerate AI workloads including DLSS, FSR, and XeSS upscaling technologies. These features enable higher visual quality without proportional performance costs, making the RX 6750 GRE 12 GB capable of delivering both stunning graphics and smooth frame rates in modern titles.

RT Cores
40

RDNA 2.0 Architecture & Process

Manufacturing and design details

The AMD Radeon RX 6750 GRE 12 GB is built on AMD's RDNA 2.0 architecture, which defines how the GPU processes graphics and compute workloads. The manufacturing process node affects power efficiency, thermal characteristics, and maximum clock speeds. Smaller process nodes pack more transistors into the same die area, enabling higher performance per watt. Understanding the architecture helps predict how the RX 6750 GRE 12 GB will perform in GPU benchmarks compared to previous generations.

Architecture
RDNA 2.0
GPU Name
Navi 22
Process Node
7 nm
Foundry
TSMC
Transistors
17,200 million
Die Size
335 mm²
Density
51.3M / mm²

Power & Thermal

TDP and power requirements

Power specifications for the AMD Radeon RX 6750 GRE 12 GB determine PSU requirements and thermal management needs. TDP (Thermal Design Power) indicates the heat output under typical loads, guiding cooler selection. Power connector requirements ensure adequate power delivery for stable operation during demanding GPU benchmarks. The suggested PSU wattage accounts for the entire system, not just the graphics card. Efficient power delivery enables the Radeon RX 6750 GRE 12 GB to maintain boost clocks without throttling.

TDP
250 W
TDP
250W
Power Connectors
1x 6-pin + 1x 8-pin
Suggested PSU
600 W

Radeon RX 6750 GRE 12 GB by AMD Physical & Connectivity

Dimensions and outputs

Physical dimensions of the AMD Radeon RX 6750 GRE 12 GB are critical for case compatibility. Card length, height, and slot width determine whether it fits in your chassis. The PCIe interface version affects bandwidth for communication with the CPU. Display outputs define monitor connectivity options, with modern cards supporting multiple high-resolution displays simultaneously. Verify these specifications against your case and motherboard before purchasing to ensure a proper fit.

Slot Width
Dual-slot
Length
267 mm 10.5 inches
Height
110 mm 4.3 inches
Bus Interface
PCIe 4.0 x16
Display Outputs
1x HDMI 2.13x DisplayPort 1.4a
Display Outputs
1x HDMI 2.13x DisplayPort 1.4a

AMD API Support

Graphics and compute APIs

API support determines which games and applications can fully utilize the AMD Radeon RX 6750 GRE 12 GB. DirectX 12 Ultimate enables advanced features like ray tracing and variable rate shading. Vulkan provides cross-platform graphics capabilities with low-level hardware access. OpenGL remains important for professional applications and older games. CUDA (NVIDIA) and OpenCL enable GPU compute for video editing, 3D rendering, and scientific applications. Higher API versions unlock newer graphical features in GPU benchmarks and games.

DirectX
12 Ultimate (12_2)
DirectX
12 Ultimate (12_2)
OpenGL
4.6
OpenGL
4.6
Vulkan
1.4
Vulkan
1.4
OpenCL
2.1
Shader Model
6.8

Radeon RX 6750 GRE 12 GB Product Information

Release and pricing details

The AMD Radeon RX 6750 GRE 12 GB is manufactured by AMD as part of their graphics card lineup. Release date and launch pricing provide context for comparing GPU benchmark results with competing products from the same era. Understanding the product lifecycle helps evaluate whether the Radeon RX 6750 GRE 12 GB by AMD represents good value at current market prices. Predecessor and successor information aids in tracking generational improvements and planning future upgrades.

Manufacturer
AMD
Release Date
Oct 2023
Launch Price
334 USD
Production
Active
Predecessor
Navi
Successor
Navi III

About AMD Radeon RX 6750 GRE 12 GB

The AMD Radeon RX 6750 GRE 12 GB is a desktop graphics card from the Radeon RX 6000 series, built on the RDNA 2.0 architecture and the Navi 22 chip. It is manufactured on a 7 nm process at TSMC, with a transistor count of 17,200 million on a die size of 335 mm². The card features a base clock of 2321 MHz, a boost clock of 2581 MHz, and a game clock of 2439 MHz, with memory clocked at 2250 MHz (18 Gbps effective). Its production status is Active, and it serves as a successor to the Navi architecture, with Navi III following it.

Benchmark Performance

The sole benchmark result for this card is a 3DMark Steel Nomad DX12 score of 2402. This places the RX 6750 GRE 12 GB in the 14th percentile among all GPUs, meaning that 86% of tested graphics cards outperform it in this specific test. The average benchmark score is likewise 2402, confirming a single data point. This percentile ranking is notably low, indicating that the card’s performance in this particular workload is far from top-tier. The data does not suggest it competes with modern high-end parts; instead, it sits in a lower performance tier, despite its 12 GB VRAM and RDNA 2.0 pedigree.

Comparing the card to its nearest rivals, the delta percentages are extremely tight. The NVIDIA GeForce 710M posts an average score of 2419, which is 0.7% higher than the RX 6750 GRE, making the AMD card marginally slower. Similarly, the NVIDIA GeForce GT 710M scores 2422, a 0.8% advantage over the RX 6750 GRE. On the other side, the NVIDIA GeForce MX150 scores 2377, which is 1.1% lower, meaning the RX 6750 GRE outperforms it by that margin. The NVIDIA GeForce GT 630M scores 2367, putting the RX 6750 GRE 1.5% ahead. These deltas are within a few percentage points, suggesting that the RX 6750 GRE 12 GB performs nearly identically to these older, low-power mobile and entry-level desktop parts in this benchmark. The data implies that the card’s actual compute throughput, as measured by Steel Nomad, is not substantially different from these much older rivals, which is surprising given the architectural generation gap. The benchmark results indicate a narrow performance band where the RX 6750 GRE 12 GB lands, with no clear dominance over its closest competitors.

Power and Cooling

The RX 6750 GRE 12 GB has a TDP of 250 W, which is a moderate power draw for a desktop card. The manufacturer recommends a 600 W power supply unit, and the card requires two power connectors: one 6-pin and one 8-pin. This connector configuration is standard for cards in this power class, and the dual-slot cooler design suggests adequate thermal dissipation for the 250 W envelope. The card’s physical dimensions are 267 mm in length, 110 mm in height, and 40 mm in width, making it a compact dual-slot solution that should fit in most mid-tower cases. The power data indicates that users need a PSU with at least 600 W capacity and the appropriate PCIe power cables. No additional power efficiency figures are provided, so the analysis cannot go beyond the listed TDP and PSU recommendation. The cooling solution is described only as dual-slot, implying a capable air cooler without specifying heat pipe counts or fan sizes. The data suggests that power delivery and cooling requirements are straightforward for this performance tier, with no unusual demands on the system.

Memory Subsystem

The card is equipped with 12 GB of GDDR6 memory on a 192-bit bus, yielding a memory bandwidth of 432.0 GB/s. This bandwidth figure is derived from the 18 Gbps effective memory clock. For high-resolution gaming, 12 GB of VRAM is a substantial capacity, allowing for large textures and assets at 1440p or even 4K in many titles. However, the 192-bit bus width limits the theoretical bandwidth compared to wider-bus cards, which could impact performance in scenarios that heavily rely on memory throughput, such as high-resolution texture streaming or compute workloads. The 432.0 GB/s bandwidth is sufficient for the card’s compute capabilities, but it may become a bottleneck in memory-intensive applications. The memory clock of 2250 MHz base with 18 Gbps effective transfer rate is a standard configuration for GDDR6. The data shows a balanced memory subsystem for the card’s target performance, but the narrow bus relative to the VRAM capacity suggests that the card is designed for capacity over raw bandwidth. This could mean that at 4K resolutions with maxed-out settings, the card might not fully utilize its 12 GB due to bandwidth constraints, whereas at 1440p, the capacity is ample and the bandwidth is adequate for most games.

Who Should Consider It

Based on the benchmark scores, the RX 6750 GRE 12 GB is not positioned for high-refresh-rate or high-fidelity gaming at demanding resolutions. The 3DMark Steel Nomad score of 2402 and the 14th percentile ranking indicate that this card delivers performance comparable to much older, entry-level parts. Therefore, it is most suitable for users who play esports titles or older games at 1080p with medium to high settings, where the 12 GB VRAM ensures future-proofing for texture-heavy content. The card’s memory capacity suggests it can handle modern games at 1080p without running out of VRAM, but the compute performance may struggle with newer, more demanding engines. For 1440p gaming, the card would likely require reduced settings or upscaling, as the raw performance is not aligned with the high bandwidth needs of that resolution. The data does not support recommending this card for 4K gaming, as the performance percentile is too low to maintain playable frame rates in most AAA titles. Users with a 600 W PSU and a compact case would find the card’s dimensions and power requirements easy to accommodate. The benchmark results indicate that this is a card for budget-conscious gamers who prioritize VRAM capacity over raw speed, but the performance data suggests it is not a strong contender even in that segment, given its proximity to much older GPUs.

Ray Tracing and Feature Set

The RX 6750 GRE 12 GB includes 40 ray tracing cores, which are part of the RDNA 2.0 architecture. However, the card has no tensor cores, meaning that any AI-accelerated features like DLSS are not supported; the card relies on AMD’s FSR, which is not listed in the data. The API support includes DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4, indicating full compatibility with modern graphics APIs. DirectX 12 Ultimate ensures support for hardware ray tracing and variable rate shading, among other features. The presence of 40 RT cores suggests that the card can perform ray tracing, but the low overall benchmark score implies that ray tracing performance will be modest at best. In games with heavy ray tracing effects, the card would likely see significant frame rate drops, especially at higher resolutions. The pixel rate is 165.2 GPixel/s and the texture rate is 413.0 GTexel/s, with FP32 performance at 13.21 TFLOPS. These figures are modest for a card with RT capabilities. The data shows that while the feature set is modern on paper, the actual execution of ray tracing workloads is constrained by the card’s compute throughput. Users looking for a smooth ray tracing experience would need to lower resolutions and settings considerably. The card does not have any dedicated AI acceleration, so features like NVIDIA’s DLSS are absent, but the Vulkan 1.4 and DirectX 12 Ultimate support provide a solid foundation for current and near-future games.

FAQ

Q: What is the launch MSRP of the AMD Radeon RX 6750 GRE 12 GB?

A: The launch MSRP is 334 USD.

Q: How does the RX 6750 GRE 12 GB compare to the NVIDIA GeForce MX150 in 3DMark Steel Nomad?

A: The RX 6750 GRE scores 2402, which is 1.1% higher than the MX150’s score of 2377.

Q: What is the memory bandwidth of this card?

A: The card has a memory bandwidth of 432.0 GB/s, achieved with 12 GB of GDDR6 on a 192-bit bus.

Q: Does the card support DirectX 12 Ultimate?

A: Yes, it supports DirectX 12 Ultimate (12_2), along with OpenGL 4.6 and Vulkan 1.4.

Q: What power supply is recommended for this GPU?

A: A 600 W power supply is suggested, and the card requires one 6-pin and one 8-pin power connector.

Q: How many ray tracing cores does the RX 6750 GRE 12 GB have?

A: It has 40 ray tracing cores, but no tensor cores.

How It Compares

The NVIDIA GeForce 710M is a direct rival with an average score of 2419, which is 0.7% higher than the RX 6750 GRE’s 2402. This places the two cards virtually on par, with the NVIDIA part holding a negligible lead. The data suggests that the RX 6750 GRE offers no meaningful performance advantage over this older mobile GPU, which is a stark indicator of its low performance tier. Users expecting a generational leap would be disappointed, as the benchmark shows near-identical results.

The NVIDIA GeForce GT 710M scores 2422, a 0.8% advantage over the RX 6750 GRE. This rival is also a mobile part, and the performance delta is within the margin of error. The RX 6750 GRE’s 12 GB VRAM and newer architecture do not translate into a tangible performance lead in this test. The data implies that the card’s compute capabilities are so limited that they match a decade-old entry-level mobile GPU.

The NVIDIA GeForce MX150 scores 2377, which is 1.1% lower than the RX 6750 GRE. Here, the AMD card is ahead, but the margin is small. The MX150 is a low-power laptop GPU, so the RX 6750 GRE’s victory is expected, yet the small delta highlights how unimpressive the absolute performance is. The data shows that the RX 6750 GRE barely outperforms a typical thin-and-light laptop GPU, which is a poor showing for a desktop card with a 250 W TDP.

The NVIDIA GeForce GT 630M scores 2367, placing it 1.5% behind the RX 6750 GRE. This is the largest delta in the rival group, but still a narrow margin. The GT 630M is a very old entry-level part, and the RX 6750 GRE’s lead is minimal. The benchmark results indicate that the RX 6750 GRE 12 GB sits at the very bottom of the performance spectrum, with its nearest rivals being legacy GPUs rather than modern competitors. This positioning suggests that the card is not a viable choice for contemporary gaming beyond the lightest titles.

Detailed benchmark scores and charts for the AMD Radeon RX 6750 GRE 12 GB are below.

Benchmark Scores

3dmark_3dmark_steel_nomad_dx12Source

3DMark Steel Nomad is the latest GPU benchmark running at native 4K with DirectX 12. It's roughly 3x more demanding than Time Spy, testing AMD Radeon RX 6750 GRE 12 GB with cutting-edge rendering techniques.

geekbench_vulkanSource

Geekbench Vulkan tests GPU compute using the modern low-overhead Vulkan API. This shows how AMD Radeon RX 6750 GRE 12 GB performs with next-generation graphics and compute workloads. Vulkan offers better CPU efficiency than older APIs like OpenGL.

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