The NVIDIA RTX™ 2000E Ada Generation brings the power of NVIDIA RTX to more professionals with a powerful low-profile, single-slot graphics processing unit (GPU) design. It delivers hardware-accelerated real-time ray tracing, AI-accelerated compute, and high-performance graphics to creative professionals in a half-height, half-length, single-slot form factor workstations.
Based on the NVIDIA Ada Lovelace architecture, the VR-ready NVIDIA RTX 2000E Ada Generation combines 22 third-generation RT™ cores, 88 fourth-generation Tensor cores, and 2,816 next-generation NVIDIA CUDA® cores, as well as 16GB GDDR6 graphics memory with error correction code (ECC) support. With the adoption of NVIDIA RTX technology, professionals are empowered to design better, render faster, and work better with NVIDIA RTX™ 2000E Ada Generation. The RTX 2000E is also part of the PNY Long Life Program*.
* Must be enrolled in the long-life program.
| PNY Part Number | VCNRTX2000ADAS-LLP |
| CUDA Cores | 2816 |
| Tensor Cores | 88 Gen 4 |
| RT Cores | 22 Gen 3 |
| Single Precision Performance1 | 8.9 TFLOPS2 |
| RT Core Performance1 | 20.5 TFLOPS2 |
| Tensor (AI) Performance1 | 71 AI TOPS | 71 TFLOPS3 |
| GPU Memory | 16 GB GDDR6 with ECC |
| Memory Interface | 128-bit |
| Memory Bandwidth | 224 GB/sec |
| System Interface | PCI Express 4.0 x84 |
| Display Connectors | 4x mDisplayPort 1.4a |
| Display Adapter | (1x) NVIDIA® Certified Latching mDP to DP adapter included |
| Maximum Power Consumption | 50 W |
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Dedicated NVIDIA professional products Field Application Engineers
The NVIDIA RTX 2000E Ada generation is a powerful, single-slot, low-profile, professional solution, based on the Ada Lovelace architecture. It gives professionals the power of the latest RTX technology for accelerated ray tracing and AI to drive advanced visualization, creative, and design workflows for mainstream applications.
The NVIDIA Ada Lovelace architecture-based CUDA Cores deliver up to 1.5X the single-precision floating-point (FP32) throughput compared to the previous generation, providing significant performance improvements for graphics workflows such as 3D model development and single-precision compute for workloads like desktop simulation for CAE.
Third-generation RT cores in the RTX 2000 single-slot GPU significantly boost rendering speeds for content creation, design reviews, and virtual manufacturing prototyping. Enhanced RT cores and Shader Execution Reordering (SER) technology optimize shader performance, further accelerating ray-traced image rendering.
Fourth-generation Tensor Cores provide support for the new FP8 data format for inference providing up to 1.8X higher throughput for tensor matrix operations than the previous generation and reducing data memory usage by half compared to the FP16 data format for more efficient execution of workloads using a mix of computation and addressing calculations.
NVIDIA RTX 2000E Ada Generation supports PCI Express Gen 4x8, which provides double the bandwidth of PCIe Gen 3, improving data-transfer speeds from CPU memory for data-intensive tasks like AI and data analysis.
Equipped with 16GB GDDR6 memory with (ECC) and a faster memory clock, the RTX 2000E Ada Generation provides an ideal memory footprint to address datasets and models in latency-sensitive professional applications and at volume.
NVDEC is well suited for transcoding and video playback applications for real-time decoding. The following video codecs are supported for hardware-accelerated decoding: MPEG-2, VC-1, H.264 (AVCHD), H.265 (HEVC), VP8, VP9, and AV1.
NVENC can take on 4K or 8K video encoding tasks to free up the graphics engine and the CPU for other operations. The RTX 2000E Ada Generation provides better encoding quality than software-based x264 encoders.
Pixel-level preemption provides more granular control to better support time-sensitive tasks such as VR motion tracking.
Preemption at the instruction level provides finer-grain control over compute tasks to prevent long-running applications from either monopolizing system resources or timing out.
Accelerate GPU-based lossless decompression performance by up to 100x and 20x lower CPU utilization compared to traditional storage APIs using Microsoft's DirectStorage for Windows API. RTX IO moves data from the storage to the GPU in a more efficient, compressed form, improving I/O performance.
Transparently scale the desktop and applications across up to 4 GPUs and 16 displays from a single workstation while delivering full performance and image quality.
Support up to four 5K monitors at 60Hz, or dual 8K displays at 60Hz per card. The NVIDIA RTX 2000E Ada Generation supports HDR color for 4K at 60Hz for 10/12b HEVC decode and up to 4K at 60Hz for 10b HEVC encode. Each DisplayPort connector can drive ultra-high-resolutions of 4096 x 2160 at 120 Hz with 30-bit color.
Gain unprecedented end-user control of the desktop experience for increased productivity in single large display or multi-display environments, especially in the current age of large, widescreen displays.
Provide a smooth and immersive 3D Stereo experience for professional applications.
Get more Mosaic topology choices with high resolution display devices with a 32K Max desktop size.
NVIDIA RTX Experience delivers a suite of productivity tools to your desktop workstation, including desktop recording in up to 8K, automatic alerts for the latest NVIDIA RTX Enterprise driver updates, and access to gaming features. The application is available for download here.
Deep learning frameworks such as Caffe2, MXNet, CNTK, TensorFlow, and others deliver dramatically faster training times and higher multi-node training performance. GPU-accelerated libraries such as cuDNN, cuBLAS, and TensorRT deliver higher performance for both deep learning inference and High- Performance Computing (HPC) applications.
Natively execute standard programming languages like C/C++ and Fortran, and APIs such as OpenCL, OpenACC and Direct Compute to accelerate techniques such as ray tracing, video and image processing, and computation fluid dynamics.
A single, seamless 49-bit virtual address space allows for the transparent migration of data between the full allocation of CPU and GPU memory.
Maximize system uptime, seamlessly manage wide-scale deployments, and remotely control graphics and display settings for efficient operations.
| Product | NVIDIA RTX™ 2000E Ada Generation |
| PNY Part Number | VCNRTX2000ADAS-LLP |
| Architecture | NVIDIA Ada Lovelace Architecture |
| CUDA® Cores | 2816 |
| Tensor Cores | 88 |
| RT Cores | 22 |
| Single Precision Performance1 | 8.9 TFLOPS2 |
| RT Core Performance1 | 20.5 TFLOPS2 |
| Tensor Performance1 | 71 AI TOPS | 71 TFLOPS3 |
| GPU Memory | 16 GB GDDR6 with ECC |
| Memory Interface | 128 -bit |
| Memory Bandwidth | 224 GB/sec |
| Display Connectors | 4x mDisplayPort 1.4a |
| Display Adapter | (1x) NVIDIA® Certified Latching mDP to DP adapter included |
| NVENC | NVDEC | 1x | 1x (+AV1 Encode and decode) |
| System Interface | PCI Express 4.0 x84 |
| NVLink | Not Supported |
| Form Factor | 2.7” Hx6.6” L, Single Slot |
| Thermal Solution | Active Fan |
| Maximum Power Consumption | 50 W |
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