GEFORCE

NVIDIA RTX 5880 Ada Generation

NVIDIA graphics card specifications and benchmark scores

48 GB
VRAM
2460
MHz Boost
285W
TDP
384
Bus Width
Ray Tracing Tensor Cores

At a Glance

NVIDIA
VRAM 48 GB
Boost Clock 2,460 MHz
Shaders 14,080
Bus Width 384-bit
TDP 285W
Memory Type GDDR6
RT Cores 110
Architecture Ada Lovelace
nm
Process 5 nm
Released Jan 2024

NVIDIA RTX 5880 Ada Generation Specifications

GPU Core

Shader units and compute resources

The NVIDIA RTX 5880 Ada Generation 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
14,080
Shaders
14,080
TMUs
440
ROPs
176
SM Count
110

RTX 5880 Ada Generation Clock Speeds

GPU and memory frequencies

Clock speeds directly impact the RTX 5880 Ada Generation'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 RTX 5880 Ada Generation by NVIDIA dynamically adjusts frequencies based on workload, temperature, and power limits to maximize performance while maintaining stability.

Base Clock
975 MHz
Base Clock
975 MHz
Boost Clock
2460 MHz
Boost Clock
2,460 MHz
Memory Clock
2250 MHz 18 Gbps effective
GDDR GDDR 6X 6X

NVIDIA's RTX 5880 Ada Generation Memory

VRAM capacity and bandwidth

VRAM (Video RAM) is dedicated memory for storing textures, frame buffers, and shader data. The RTX 5880 Ada Generation'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
48 GB
VRAM
49,152 MB
Memory Type
GDDR6
VRAM Type
GDDR6
Memory Bus
384 bit
Bus Width
384-bit
Bandwidth
864.0 GB/s

RTX 5880 Ada Generation by NVIDIA Cache

On-chip cache hierarchy

On-chip cache provides ultra-fast data access for the RTX 5880 Ada Generation, 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 SM)
L2 Cache
72 MB

RTX 5880 Ada Generation Theoretical Performance

Compute and fill rates

Theoretical performance metrics provide a baseline for comparing the NVIDIA RTX 5880 Ada Generation 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)
69.27 TFLOPS
FP64 (Double)
1,082.4 GFLOPS (1:64)
FP16 (Half)
69.27 TFLOPS (1:1)
Pixel Rate
433.0 GPixel/s
Texture Rate
1,082.4 GTexel/s

RTX 5880 Ada Generation Ray Tracing & AI

Hardware acceleration features

The NVIDIA RTX 5880 Ada Generation 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 RTX 5880 Ada Generation capable of delivering both stunning graphics and smooth frame rates in modern titles.

RT Cores
110
Tensor Cores
440

Ada Lovelace Architecture & Process

Manufacturing and design details

The NVIDIA RTX 5880 Ada Generation is built on NVIDIA's Ada Lovelace 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 RTX 5880 Ada Generation will perform in GPU benchmarks compared to previous generations.

Architecture
Ada Lovelace
GPU Name
AD102
Process Node
5 nm
Foundry
TSMC
Transistors
76,300 million
Die Size
609 mm²
Density
125.3M / mm²

Power & Thermal

TDP and power requirements

Power specifications for the NVIDIA RTX 5880 Ada Generation 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 RTX 5880 Ada Generation to maintain boost clocks without throttling.

TDP
285 W
TDP
285W
Power Connectors
1x 16-pin
Suggested PSU
600 W

RTX 5880 Ada Generation by NVIDIA Physical & Connectivity

Dimensions and outputs

Physical dimensions of the NVIDIA RTX 5880 Ada Generation 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
112 mm 4.4 inches
Bus Interface
PCIe 4.0 x16
Display Outputs
4x DisplayPort 1.4a
Display Outputs
4x DisplayPort 1.4a

NVIDIA API Support

Graphics and compute APIs

API support determines which games and applications can fully utilize the NVIDIA RTX 5880 Ada Generation. 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
3.0
CUDA
8.9
Shader Model
6.9

RTX 5880 Ada Generation Product Information

Release and pricing details

The NVIDIA RTX 5880 Ada Generation is manufactured by NVIDIA 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 RTX 5880 Ada Generation by NVIDIA represents good value at current market prices. Predecessor and successor information aids in tracking generational improvements and planning future upgrades.

Manufacturer
NVIDIA
Release Date
Jan 2024
Production
Active
Predecessor
Workstation Ampere
Successor
Blackwell PRO W

About NVIDIA RTX 5880 Ada Generation

The NVIDIA RTX 5880 Ada Generation is a dominant force in the workstation GPU landscape, posting a Geekbench OpenCL score of 327,829. This result places it in the 100th percentile of all GPUs in the database, meaning it outperforms every other tracked graphics card in this specific compute test. Its performance lead over its closest rivals is substantial, ranging from 7.3% to 16.4%, solidifying its position as a top-tier compute accelerator for professional workloads.

How It Compares

Against the NVIDIA H200 NVL, the RTX 5880 Ada Generation posts a score that is 7.3% higher. The H200 NVL, a data-center focused accelerator, is a formidable opponent, but the data indicates that the RTX 5880 Ada Generation holds a clear advantage in this OpenCL benchmark, delivering more raw compute throughput in this test.

The NVIDIA L40S trails the RTX 5880 Ada Generation by a full 12%. This is a significant gap that highlights the RTX 5880's superior compute density. For users considering the L40S for rendering or simulation tasks, the benchmark data suggests the RTX 5880 Ada Generation will complete these workloads noticeably faster.

Compared to the NVIDIA RTX 6000 Ada Generation, the RTX 5880 Ada Generation is 16.3% faster. This is a particularly interesting comparison, as both cards share the same AD102 chip and Ada Lovelace architecture. The performance delta suggests the RTX 5880 Ada Generation has been configured with a more aggressive feature set or clock profile that yields a tangible performance advantage in this test.

The NVIDIA L40 is the closest in name to the L40S but is the furthest behind in performance, scoring 16.4% lower than the RTX 5880 Ada Generation. This substantial margin separates the two clearly, positioning the RTX 5880 as the more potent option for compute-intensive applications where every bit of performance counts.

Ray Tracing and Feature Set

The RTX 5880 Ada Generation is built on the Ada Lovelace architecture, which brings a comprehensive set of features for professional visualization. It is equipped with 110 dedicated RT cores, providing hardware-accelerated ray tracing capabilities. This hardware foundation enables real-time rendering and photorealistic previews in supported applications, making it a strong choice for architectural visualization and product design.

Complementing the RT cores are 440 Tensor cores, which deliver AI-accelerated compute for tasks like denoising, deep learning super sampling, and other neural network-based workloads. The presence of these cores ensures the card is future-proofed for the increasing integration of AI features in professional software.

In terms of API support, the card is fully compliant with modern standards. It supports DirectX 12 Ultimate (12_2), ensuring compatibility with the latest gaming and real-time rendering engines. It also includes OpenGL 4.6 and Vulkan 1.4, covering a broad range of professional and scientific applications. Display output is handled by four DisplayPort 1.4a connections, allowing for multi-monitor setups with high resolutions.

Benchmark Performance

The benchmark results for the RTX 5880 Ada Generation are unambiguous. Its average benchmark score of 327,829 in Geekbench OpenCL is a leading indicator of its compute power. The data shows a clear hierarchy: the RTX 5880 Ada Generation is the top performer, followed by the H200 NVL, L40S, RTX 6000 Ada, and L40 in descending order of score.

  • The 7.3% advantage over the H200 NVL translates to a meaningful reduction in processing time for large-scale simulations or AI model inference.
  • The 12% lead over the L40S is a decisive factor for professionals who rely on GPU compute for daily tasks, representing a significant upgrade in throughput.
  • The 16.3% and 16.4% deltas over the RTX 6000 Ada Generation and L40, respectively, are the largest gaps in the comparison group. These margins clearly differentiate the card from its siblings and predecessors, establishing it as the definitive choice for maximum compute performance within this lineup.

These scores indicate that the RTX 5880 Ada Generation is not just a capable workstation card; it is a high-performance computing tool that can handle the most demanding computational challenges with a significant performance buffer over its nearest competitors.

FAQ

Q: How much faster is the NVIDIA RTX 5880 Ada Generation than the NVIDIA L40S?

A: The RTX 5880 Ada Generation scores 12% higher than the L40S in the Geekbench OpenCL benchmark, indicating a clear performance advantage in compute-heavy tasks.

Q: Is the RTX 5880 Ada Generation the highest-scoring GPU in the benchmark database?

A: Yes, its Geekbench OpenCL score of 327,829 places it in the 100th percentile of all GPUs, meaning it outperforms all other tracked graphics cards in this test.

Q: Does the RTX 5880 Ada Generation support the latest graphics APIs?

A: Yes, it supports DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4, ensuring broad compatibility with modern and legacy software.

Q: What kind of memory does the RTX 5880 Ada Generation use and how much is there?

A: It is equipped with 48 GB of GDDR6 memory on a 384-bit bus, providing a total memory bandwidth of 864.0 GB/s.

Q: What is the performance difference between the RTX 5880 Ada Generation and the NVIDIA H200 NVL?

A: The RTX 5880 Ada Generation leads the H200 NVL by 7.3% in the Geekbench OpenCL benchmark, showing it is the faster card in this compute test.

Q: How many Tensor cores does the RTX 5880 Ada Generation have?

A: The card is equipped with 440 Tensor cores, which are designed to accelerate AI and deep learning workloads.

Power and Cooling

The RTX 5880 Ada Generation has a total board power (TDP) of 285 W, a figure that is manageable for a card of this performance class. To power the card, a single 16-pin power connector is required. NVIDIA recommends a system power supply of at least 600 W, which ensures the rest of the system components have adequate power headroom under full load.

The card's dual-slot cooling design is a standard form factor for high-end workstation GPUs. While the physical dimensions are specified at 267 mm or 10.5 inches in length and 112 mm or 4.4 inches in height, the thermal solution is engineered to dissipate the 285 W of heat generated during sustained compute operations. This configuration allows the card to maintain consistent performance without excessive thermal throttling in a well-ventilated workstation chassis.

Who Should Consider It

The RTX 5880 Ada Generation is designed for professionals who require uncompromised compute performance. Its 100th percentile ranking and top-tier scores make it ideal for users working with complex 3D rendering, scientific simulations, and AI model training where processing time is critical. For those operating at the highest settings in 4K or beyond, the card's raw compute power ensures smooth viewport performance and rapid final-frame renders.

Professionals who currently use an NVIDIA L40S, RTX 6000 Ada Generation, or L40 and find themselves waiting on compute tasks will see a substantial improvement. The 12% to 16.4% performance increase offers a compelling reason to upgrade for time-sensitive workloads. Its 48 GB of VRAM also makes it suitable for handling massive datasets and scenes that exceed the memory capacity of lower-tier cards. In essence, this card is for the user who prioritizes absolute performance and needs the fastest possible results from their workstation.

Memory Subsystem

Memory is a critical component of any high-end GPU, and the RTX 5880 Ada Generation is exceptionally well-equipped. It features a massive 48 GB of GDDR6 memory, a capacity that allows it to handle large simulation grids, high-resolution textures, and complex AI models entirely within the GPU's memory. This prevents the performance penalties associated with spilling data to system memory or storage.

The memory interface is a wide 384-bit bus, which when paired with a memory clock of 2250 MHz (or 18 Gbps effective), yields a total bandwidth of 864.0 GB/s. This immense bandwidth is essential for feeding the card's 14,080 shading units. At high resolutions and with heavy anti-aliasing, the demand for memory bandwidth increases dramatically, and the RTX 5880 Ada Generation provides the throughput needed to avoid bottlenecks. The combination of high capacity and high bandwidth ensures that the card can maintain its leading performance in the most memory-intensive professional applications.

Detailed benchmark scores and charts for the NVIDIA RTX 5880 Ada Generation are below.

Benchmark Scores

geekbench_openclSource

Geekbench OpenCL tests GPU compute performance using the cross-platform OpenCL API. This shows how NVIDIA RTX 5880 Ada Generation handles parallel computing tasks like video encoding and scientific simulations.

geekbench_opencl #8 of 650
326,898
84%
Max: 388,405
Compare with other GPUs

passmark_directx_10Source

DirectX 10 tests NVIDIA RTX 5880 Ada Generation with the graphics API introduced with Windows Vista. This shows performance in games from the 2007-2009 era that targeted this feature level. DX10 introduced geometry shaders and other features still used today. Some games from this period remain popular and benefit from good DX10 performance.

passmark_directx_11Source

DirectX 11 tests NVIDIA RTX 5880 Ada Generation with the widely-used graphics API powering most current games. This shows mainstream gaming performance across the majority of today's titles.

passmark_directx_12Source

DirectX 12 tests NVIDIA RTX 5880 Ada Generation with the modern low-overhead graphics API. This shows performance in next-gen games that leverage DX12 features like ray tracing and mesh shaders. DX12 offers better CPU efficiency through reduced driver overhead.

passmark_directx_9Source

DirectX 9 tests NVIDIA RTX 5880 Ada Generation performance with the legacy graphics API still used by older games. This shows compatibility and performance with classic titles from the 2000s era. Many indie games and older titles still rely on DirectX 9.

passmark_g2dSource

PassMark G2D tests 2D graphics performance for desktop rendering, UI elements, and productivity applications. This shows how NVIDIA RTX 5880 Ada Generation handles everyday visual tasks. Higher scores mean smoother desktop experience and faster UI rendering.

passmark_g3dSource

PassMark G3D measures overall 3D graphics performance of NVIDIA RTX 5880 Ada Generation across DirectX 9 through 12 tests. This provides a comprehensive gaming capability score. The combined result predicts performance across various game engines and API versions. Results can be compared against millions of GPU submissions in the PassMark database.

passmark_gpu_computeSource

GPU compute tests parallel processing capability of NVIDIA RTX 5880 Ada Generation using OpenCL. This shows performance in video encoding, scientific computing, and AI workloads. Non-gaming applications increasingly leverage GPU compute for acceleration.

passmark_gpu_compute #26 of 184
14,208
50%
Max: 28,396

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