Supports NVIDIA® RTX 6000 for high-performance AI inference
8th/9th Gen Intel® Core™ i7/i5/i3 processors (LGA1151 socket)
Dual SODIMM slots, up to 32GB DDR4 non-ECC memory
Multiple display outputs: DVI, HDMI, DisplayPort, plus GPU outputs
Mini PCIe slot for Wi-Fi, Bluetooth, or LTE module
Industrial-grade Flex ATX PSU (300W/500W options)
Ideal for edge AI, machine vision, robotics, and smart surveillance
Compact and rugged design for harsh industrial environments
ADLink DLAP-4000 NVIDIA RTX 6000 – A Rugged, High-Performance AI Edge Computing Platform
The ADLink DLAP-4000 is an advanced embedded computing platform specifically engineered to meet the growing demand for AI-driven workloads at the edge.
It combines the processing power of Intel® 8th/9th Gen Core™ processors with the exceptional parallel computing capabilities of the NVIDIA RTX 6000 GPU, delivering an efficient, reliable, and scalable solution for applications requiring real-time data processing, deep learning inference, and high-resolution graphics rendering.
Built with industrial-grade durability and designed for 24/7 operation in demanding environments, the DLAP-4000 empowers industries to deploy intelligent systems outside of traditional data centers enabling faster decision-making, reduced latency, and increased operational efficiency.
Despite its compact form factor, the DLAP-4000 is a powerhouse. It supports a full-height, full-length (FHFL), dual-width PCI Express graphics card, such as the NVIDIA RTX 6000, providing immense AI processing capability in a small footprint.
This is particularly beneficial for space-constrained edge deployments like control rooms, robotic units, mobile machines, or embedded vision systems.
The integration of the NVIDIA RTX 6000 means the DLAP-4000 is equipped for highly parallel tasks, such as:
With Tensor Cores, RT Cores, and ample VRAM, the RTX 6000 allows the DLAP-4000 to tackle AI workloads previously only manageable in cloud data centers now at the edge, closer to the source of data.
The system supports Intel 8th and 9th Gen Core™ i7/i5/i3 CPUs via the LGA1151 socket, allowing developers and integrators to tailor the performance based on the specific computational needs and power constraints of their application.
Whether you need higher clock speeds or lower thermal design power (TDP), the DLAP-4000 offers flexibility to match.
The DLAP-4000 is built with practical I/O and expansion options:
From smart cities to industrial inspection, medical imaging to intelligent transportation systems, the DLAP-4000 is ideal for edge computing environments where:
By combining CPU, GPU, memory, and I/O in a robust, compact enclosure, the DLAP-4000 bridges the gap between centralized computing and distributed intelligence helping organizations bring AI capabilities directly to the edge, where the data lives.
The ADLink DLAP-4000, when paired with the NVIDIA RTX 6000, delivers the performance and flexibility required for the next generation of industrial AI and edge computing systems.
Its rugged design, high computational power, and expandability make it particularly suitable for deployment in mission-critical environments where real-time data processing and AI-driven decision-making are essential.
With support for the NVIDIA RTX 6000, the DLAP-4000 provides exceptional GPU acceleration that enables powerful deep learning inference directly at the edge.
This is critical for applications that require low-latency responses without relying on cloud infrastructure such as in real-time defect detection on manufacturing lines or smart city traffic monitoring.
In smart factories and automated production lines, the DLAP-4000 can serve as a central AI controller, managing machine vision systems, robotic arms, and industrial sensors.
Its ability to process multiple camera feeds, perform object detection/classification, and issue control signals in real time makes it a robust solution for Industry 4.0 applications.
The powerful GPU capabilities and flexible I/O support also make this system ideal for medical AI workloads, such as high-resolution image processing for diagnostics (e.g., X-ray, MRI, CT scans) and assisting radiologists with anomaly detection using AI models all while ensuring data privacy by processing on-premises.
In sectors like autonomous vehicles and mobile robotics, the DLAP-4000 offers the required GPU and CPU performance for real-time sensor fusion, navigation algorithms, and object recognition.
The optional LTE, Wi-Fi, and Bluetooth modules provide seamless connectivity for remote monitoring and control.
For surveillance applications that demand real-time facial recognition, behavior analysis, or crowd detection, this platform can analyze high-resolution video feeds on-site using AI reducing bandwidth requirements and enhancing data security by avoiding transmission to cloud servers.
In field deployments like offshore rigs, pipelines, or wind farms, edge computing devices need to be rugged, compact, and high-performance.
The DLAP-4000 fits perfectly into such environments, offering on-device analytics, condition monitoring, and anomaly detection even in remote or harsh locations.
The DLAP-4000 is not just another embedded system it’s a versatile AI-ready platform built to tackle today’s most demanding industrial challenges while remaining future-proof for evolving edge AI workloads.
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The NVIDIA Quantum-X800 platform is the next generation of NVIDIA Quantum InfiniBand, purpose-built for trillion-parameter-scale AI models and comprised of the NVIDIA Quantum-X800 InfiniBand switch, NVIDIA ConnectX®-8 SuperNIC, and LinkX cables and transceivers.
The new platform supports advanced hardware-based, In-Network Computing with Scalable Hierarchical Aggregate Reduction Protocol (SHARP)™ v4, adaptive routing, and telemetry-based congestion control, enabling a new frontier of AI innovation.
The NVIDIA Quantum-X800 InfiniBand switch provides 144 ports of 800Gb/s connectivity per port. It includes hardware-based In-Network Computing with SHARP v4, adaptive routing, telemetry-based congestion control, performance isolation capabilities, and a dedicated port supporting the Unified Fabric Manager (UFM). NVIDIA Quantum-X800 switches also add advanced power-efficiency features, including low-power link state and power profiling.
The NVIDIA Quantum-X800 switch provides increased performance and power efficiency to significantly reduce scientific computing, AI workload completion time, and energy costs.
Quantum-X silicon photonics switches further reduce total power consumption and latency by minimizing the distance and number of connections between optics and electronics.
The NVIDIA ConnectX-8 SuperNIC delivers 800Gb/s connectivity with ultra-low latency and supports the latest in advanced In-Network Computing. Based on the ConnectX architecture, it continues to provide accelerated MPI hardware engines, quality of service, adaptive routing, congestion control, and more.
The NVIDIA Quantum-X800 platform connectivity options with the NVIDIA LinkX® interconnect portfolio provide the maximum flexibility for building a preferred network topology, using connectorized transceivers with passive fiber cables and linear active copper cables (LACCs).
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