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Zortex Computer teams stand ready to help enterprises solve complex technology challenges.
The NVIDIA RTX 2000 E Ada Generation is a purpose-built, ultra-compact professional graphics card designed for the most space-constrained and power-sensitive deployments. Built on the NVIDIA Ada Lovelace architecture, it packs 2,816 CUDA Cores, 16GB of ECC GDDR6 memory, and full RTX capabilities — including hardware ray tracing, 4th-generation Tensor Cores, and AV1 encode support — into a half-height, half-length, single-slot form factor drawing just 50W with no external power connector required. It is the ideal professional GPU for edge computing servers, ruggedized workstations, industrial deployments, and ultra-compact SFF systems where every millimeter and every watt matters.
Unlike the standard RTX 2000 Ada which uses a dual-slot cooler, the RTX 2000 E Ada is engineered for single-slot, half-height, half-length (HHHL) deployment. This makes it compatible with 1U rack servers, edge computing nodes, ruggedized industrial systems, digital signage controllers, medical imaging platforms, and compact workstations where a dual-slot card physically cannot fit. With a 50W TDP — 20W lower than the standard RTX 2000 Ada — it runs cooler, draws less power, and places minimal load on system power supplies, making it the go-to choice for always-on, 24/7 enterprise edge deployments.
The RTX 2000 E Ada is powered by NVIDIA's Ada Lovelace architecture, built on NVIDIA's custom 4N process with 19.9 billion transistors. It delivers 8.9 TFLOPS of FP32 single-precision performance — significantly faster than its Ampere predecessor in the same form factor — enabling real-time 3D visualization, AI-accelerated workflows, and professional-grade content processing from the smallest possible footprint.
Equipped with 22 Third-Generation RT Cores delivering 20.5 RT TFLOPS, the RTX 2000 E Ada brings hardware-accelerated ray tracing to edge and compact environments for the first time. Render physically accurate shadows, reflections, global illumination, and refractions in real time using NVIDIA OptiX, Microsoft DXR, and Vulkan Ray Tracing — enabling interactive visualization and design feedback from edge-deployed workstations and servers without relying on cloud rendering pipelines.
The RTX 2000 E Ada features 88 Fourth-Generation Tensor Cores delivering 71 TFLOPS of tensor compute performance, enabling AI inferencing, generative AI workflows, DLSS upscaling, and deep learning tasks directly at the edge — without sending sensitive data to the cloud. Combined with Error Correcting Code (ECC) on all 16GB of GDDR6 memory, data integrity is guaranteed for mission-critical applications in healthcare, finance, manufacturing, and scientific computing where even a single bit error is unacceptable.
Despite its compact size, the RTX 2000 E Ada does not cut corners on memory. It delivers a full 16GB of ECC-protected GDDR6 across a 128-bit memory interface with 224 GB/s bandwidth — the same memory configuration as the larger dual-slot RTX 2000 Ada. This makes it capable of handling large 3D models, complex datasets, high-resolution textures, and AI model inference that would overwhelm lesser compact GPUs.
The RTX 2000 E Ada includes a dedicated 8th-Generation NVENC encoder with full AV1 encode support and a hardware NVDEC decoder — enabling 4K and 8K video transcoding, streaming, and recording from edge-deployed systems. AV1 is 40% more efficient than H.264, allowing edge devices to stream higher-quality video at lower bandwidth — critical for remote monitoring, video analytics, digital signage, and industrial machine vision applications.
Despite occupying just a single PCIe slot, the RTX 2000 E Ada drives up to 4 displays simultaneously via 4x Mini DisplayPort 1.4a at resolutions up to 7680 x 4320 (8K) @ 60Hz on 2 displays or 5120 x 2880 (5K) @ 60Hz on all 4 displays — ideal for multi-screen digital signage, video walls, monitoring dashboards, and trading floors powered from compact edge hardware.
The RTX 2000 E Ada's entire 50W power draw comes directly from the PCIe slot, requiring absolutely no auxiliary power connectors. Combined with its half-height, half-length, single-slot form factor, this means it can be deployed in virtually any system — from standard workstations to 1U rack-mount edge servers, embedded computing platforms, and ruggedized industrial PCs — without any power or space modifications.
The NVIDIA RTX 2000 E Ada Generation is tested and certified for leading professional applications including AutoCAD, SolidWorks, Siemens NX, CATIA, Adobe Creative Cloud, Blender, DaVinci Resolve, Autodesk Maya, and many more — delivering certified, stable performance for mission-critical professional workflows.
| GPU Architecture | NVIDIA Ada Lovelace |
| Manufacturing Process | 4N NVIDIA Custom Process |
| Transistors | 19.9 Billion |
| CUDA Cores | 2,816 |
| Tensor Cores | 88 (4th Generation) |
| RT Cores | 22 (3rd Generation) |
| Single-Precision Performance (FP32) | 8.9 TFLOPS |
| RT Core Performance | 20.5 TFLOPS |
| Tensor Performance | 71 TFLOPS |
| GPU Memory | 16GB GDDR6 |
| ECC Memory | Yes |
| Memory Interface | 128-bit |
| Memory Bandwidth | 224 GB/s |
| L2 Cache | 12 MB |
| PCIe Interface | PCIe Gen 4 x8 (Full-Length) |
| NVLink Support | Not Supported |
| Form Factor | Half Height, Half Length (HHHL), Single Slot |
| Display Outputs | 4x Mini DisplayPort 1.4a |
| Max Resolution | 7680 x 4320 (8K) @ 60Hz (2 displays) | 5120 x 2880 (5K) @ 60Hz (4 displays) | 4096 x 2160 @ 120Hz (4 displays) |
| Max Simultaneous Displays | 4 |
| Thermal Design Power (TDP) | 50W |
| Power Connector | None (Powered via PCIe slot) |
| Thermal Solution | Active Cooling (Blower Fan) |
| Video Encode Engine | 1x NVENC (8th Generation, AV1 Encode Support) |
| Video Decode Engine | 1x NVDEC (+ AV1 Decode Support) |
| Supported Video Codecs | AV1 (Encode + Decode), H.265 (HEVC), H.264 (AVCHD), VP9, VP8, VC-1, MPEG-2 |
| HDCP Support | HDCP 2.2 |
| DirectX Support | DirectX 12 |
| Shader Model | Shader Model 6.6 |
| OpenGL Support | OpenGL 4.6 |
| Vulkan Support | Vulkan 1.3 |
| Compute APIs | CUDA, OpenCL 3.0, DirectCompute |
| Ray Tracing APIs | NVIDIA OptiX, Microsoft DXR, Vulkan Ray Tracing |
| DLSS Support | DLSS 3 |
| NVIDIA Mosaic | Yes |
| VR Ready | No |
| Regulatory Certifications | FCC, CE, UL, cUL, BSMI, KCC, RCM, VCCI, ICES |
| Operating System Support | Windows 10 / 11, Linux (RHEL, SUSE, Ubuntu) |
| Warranty | 3 Years Limited Warranty |
Zortex Computer teams stand ready to help enterprises solve complex technology challenges.
All deployed systems follow our standard ISO 9001 procedure and go through rigorous quality testing to ensure high field rates.
Our team of engineers will take a structured planned approach specific to your business needs and design a solution based on your infrastructure requirements and goals.
Our team of engineers and project managers collaborate with our clients to deliver the results you need.
We deploy our solutions to over 30 countries worldwide.