AMD Radeon PRO W7900D
AMD graphics card specifications and benchmark scores
At a Glance
AMDAMD Radeon PRO W7900D Specifications
Radeon PRO W7900D GPU Core
Shader units and compute resources
The AMD Radeon PRO W7900D 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.
PRO W7900D Clock Speeds
GPU and memory frequencies
Clock speeds directly impact the Radeon PRO W7900D'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 PRO W7900D by AMD dynamically adjusts frequencies based on workload, temperature, and power limits to maximize performance while maintaining stability.
AMD's Radeon PRO W7900D Memory
VRAM capacity and bandwidth
VRAM (Video RAM) is dedicated memory for storing textures, frame buffers, and shader data. The Radeon PRO W7900D'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.
Radeon PRO W7900D by AMD Cache
On-chip cache hierarchy
On-chip cache provides ultra-fast data access for the PRO W7900D, 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.
PRO W7900D Theoretical Performance
Compute and fill rates
Theoretical performance metrics provide a baseline for comparing the AMD Radeon PRO W7900D 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.
Radeon PRO W7900D Ray Tracing & AI
Hardware acceleration features
The AMD Radeon PRO W7900D 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 PRO W7900D capable of delivering both stunning graphics and smooth frame rates in modern titles.
RDNA 3.0 Architecture & Process
Manufacturing and design details
The AMD Radeon PRO W7900D is built on AMD's RDNA 3.0 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 PRO W7900D will perform in GPU benchmarks compared to previous generations.
AMD's Radeon PRO W7900D Power & Thermal
TDP and power requirements
Power specifications for the AMD Radeon PRO W7900D 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 PRO W7900D to maintain boost clocks without throttling.
Radeon PRO W7900D by AMD Physical & Connectivity
Dimensions and outputs
Physical dimensions of the AMD Radeon PRO W7900D 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.
AMD API Support
Graphics and compute APIs
API support determines which games and applications can fully utilize the AMD Radeon PRO W7900D. 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.
Radeon PRO W7900D Product Information
Release and pricing details
The AMD Radeon PRO W7900D 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 PRO W7900D by AMD represents good value at current market prices. Predecessor and successor information aids in tracking generational improvements and planning future upgrades.
Radeon PRO W7900D Benchmark Scores
No benchmark data available for this GPU.
About AMD Radeon PRO W7900D
The AMD Radeon PRO W7900D is a workstation GPU from the Radeon Pro Navi series, built on the RDNA 3.0 architecture. The database entry lists a Navi 31 chip codenamed Plum Bonito, a 5 nm TSMC process, 57,700 million transistors, and a die size of 529 mm². The card carries 48 GB of GDDR6 memory on a 384-bit bus, 96 ray tracing cores, and a triple-slot cooler, with a 295 W TDP and a 600 W suggested PSU. Critically, the database entry contains no benchmark scores and no nearestRivals records, so the analysis below separates theoretical specifications from measured results.
Benchmark Performance
Benchmark results are absent from the data. The benchmarks array is empty, the average benchmark score is 0, and the percentile versus all GPUs is 50. A 50th percentile would normally indicate the median GPU in the database, but with a zero average score and no benchmark entries, there is no measured evidence to support that placement. The nearestRivals array is also empty, which means no rival names, scores, or deltaPct values exist to quote. Therefore, exact statements such as “ahead of rival X by Y percent” cannot be made from this database entry.
The only quantified performance indicators are peak theoretical rates: 52.99 TFLOPS for FP32 compute, 106.0 TFLOPS for FP16 compute at a 2:1 ratio, 414.0 GPixel/s pixel fill rate, and 827.9 GTexel/s texture fill rate. Clock behavior is specified as a 1327 MHz base clock and a 2156 MHz boost clock. The memory clock is listed as 2250 MHz with an 18 Gbps effective data rate. These figures represent compute and throughput ceilings, not application benchmark results. The data also lists a transistor density of 109.1M / mm², derived from the transistor count and die size fields.
Because there are no measured scores, the percentile field is the sole positional metric in the entry. It should be treated cautiously: a 50th percentile with an average score of 0 and no benchmark records is not the same as a validated mid-pack result. In the absence of benchmark data, the theoretical throughput numbers give the clearest picture of the card’s peak capabilities, but they cannot be compared against rivals because no rival scores are provided.
Ray Tracing and Feature Set
The card has 96 ray tracing cores. There is no tensor core count in the database entry; the tensorCores field is null. RDNA 3.0 is the architecture, and the chip is Navi 31. The supported graphics APIs are DirectX 12 Ultimate at feature level 12_2, OpenGL 4.6, and Vulkan 1.4. These API entries indicate support for modern graphics feature sets, while the 96 ray tracing cores provide dedicated ray tracing hardware.
Display connectivity includes 3x DisplayPort 2.1 ports and 1x mini-DisplayPort 2.1 port, so the card can drive multiple current-generation displays. The bus interface is PCIe 4.0 x16. The data does not list a game clock, and it does not list any tensor core count, so AI accelerator throughput cannot be quantified from this entry. The feature set is defined by the listed APIs, the ray tracing core count, and the RDNA 3.0 architecture.
Memory Subsystem
The memory configuration is one of the most distinctive aspects of the data. The card is equipped with 48 GB of GDDR6 memory, a 384-bit bus, and 864.0 GB/s of memory bandwidth. The memory clock is 2250 MHz, with an effective data rate of 18 Gbps. For high-resolution workloads, the combination of large capacity and high bandwidth is central: 48 GB allows large scenes, textures, or models to reside on the GPU, while 864.0 GB/s reduces the time spent moving data across the memory bus.
The 384-bit bus width is the only bus width listed in the entry. Alongside the 48 GB capacity, it points toward a memory subsystem designed for bandwidth-heavy and capacity-heavy workloads. These figures describe the memory subsystem only; they do not by themselves predict application-level performance. However, they establish that the card is not memory-constrained in the same way as a smaller-frame GPU would be.
Power and Cooling
The board is rated at 295 W TDP. The suggested power supply is 600 W. Power is delivered through 2x 8-pin connectors. The cooling solution is a triple-slot design, which implies a substantial heatsink and significant chassis clearance requirements. Physical dimensions are 280 mm in length, 110 mm in height, and 51 mm in width.
The triple-slot width is an important compatibility factor, as is the 280 mm length. The data does not include cooler noise levels or operating temperatures. What the data does establish is the power envelope and physical footprint: a 295 W TDP, a 600 W PSU recommendation, 2x 8-pin connectors, and a triple-slot card that is 280 mm long, 110 mm high, and 51 mm wide.
How It Compares
The nearestRivals field in the database entry is empty. There are no rival names, scores, or deltaPct values to report. Consequently, the usual per-rival comparison cannot be written without inventing facts. The only positional information is percentileVsAllGpus: 50, which places the card at the median of the database’s GPU distribution if that field is taken at face value. However, since avgBenchmarkScore is 0 and the benchmarks array is empty, this percentile is not backed by measured results.
The predecessor field lists Radeon Pro Vega, but no specifications or benchmark scores for that product are present in the data. No further rival comparisons are possible. The database entry simply does not contain the material needed for a rival-by-rival analysis.
FAQ
Q: What architecture and chip does the Radeon PRO W7900D use?
A: It uses RDNA 3.0 with a Navi 31 chip codenamed Plum Bonito, manufactured on TSMC’s 5 nm process.
Q: How much memory and memory bandwidth are listed?
A: 48 GB of GDDR6 memory on a 384-bit bus, with 864.0 GB/s bandwidth and an 18 Gbps effective memory data rate.
Q: What power supply and connectors are required?
A: A 600 W PSU is suggested, and the card uses 2x 8-pin power connectors. The TDP is 295 W.
Q: Does the data list tensor cores?
A: No. It lists 96 ray tracing cores, but the tensor core field is null.
Q: Which display outputs are available?
A: 3x DisplayPort 2.1 ports and 1x mini-DisplayPort 2.1 port.
Q: What graphics APIs are supported?
A: DirectX 12 Ultimate at feature level 12_2, OpenGL 4.6, and Vulkan 1.4.
Who Should Consider It
The database entry lacks measured benchmark scores, so the recommendations below are drawn from the specification sheet. The 48 GB GDDR6 memory pool and 864.0 GB/s bandwidth point toward workloads that require large on-GPU memory and high data throughput. The 384-bit bus reinforces that profile.
For compute-focused tasks, the listed FP32 rate of 52.99 TFLOPS and FP16 rate of 106.0 TFLOPS provide a sense of peak mathematical throughput. The presence of 96 ray tracing cores and support for DirectX 12 Ultimate at feature level 12_2 positions the card for applications that use modern ray-traced rendering pipelines. OpenGL 4.6 and Vulkan 1.4 support cover additional graphics API workflows.
The power and physical requirements are clear: a 295 W TDP, a 600 W suggested PSU, 2x 8-pin connectors, and a triple-slot chassis footprint of 280 mm by 110 mm by 51 mm. Anyone selecting this card should plan for those constraints. Because no benchmark data is available in the database entry, a final decision should be made using these specifications and application-specific testing rather than comparative scores.
The NVIDIA Equivalent of Radeon PRO W7900D
Looking for a similar graphics card from NVIDIA? The NVIDIA GeForce RTX 5090 D V2 offers comparable performance and features in the NVIDIA lineup.
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