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DLAP-IGX is a high-performance edge AI platform specifically designed for demanding applications such as humanoid robots, autonomous mobile robots (AMR), and advanced vision sensing systems. It features the NVIDIA IGX Thor architecture, achieving an astonishing 4,293 TFLOPS of AI performance. This industry-grade system is equipped with a 14-core Arm CPU and NVIDIA Blackwell GPU architecture, along with 128 GB of LPDDR5X memory. With dual 200GbE networking and integrated safety support, it provides the overwhelming throughput and reliability required for complex multi-model generative AI workloads.
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The core of the DLAP-701 is equipped with the cutting-edge NVIDIA Blackwell architecture. With the NVIDIA Jetson T5000/Jets T4000 modules, it achieves an astonishing maximum of 2070 FP4 TFLOPS of extreme AI performance. By combining a powerful ARM Neoverse-V3AE CPU (up to 14 cores) with 128GB of LPDDR5X memory, it processes complex AI workloads at unprecedented speed and low latency. Connectivity is extremely important in modern autonomous systems, and the DLAP-701 excels with its rich high-speed I/O. In addition to large data throughput supported by QSFP ports with 4x 25GbE, it features dual Gigabit Ethernet, multiple USB 3.2 Gen 2 ports, and comprehensive M.2 expansion slots for Wi-Fi 6 and 5G connectivity. The inclusion of an isolated CAN-FD interface further enhances reliability in vehicle and robot control.
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●Flexible Configuration through Advanced Modularity Manufacturers can easily customize the industrial panel PC STC series to match application-specific I/O and functions, allowing changes to computing performance levels, touch panel types, display sizes, and I/O interfaces. This customization accelerates development, validation, and verification, leading to savings in time, cost, and resources for all manufacturers. ●Long-term Durability and Reliability ADLINK's standalone panel PCs (STC series) achieve high ROI with long-life support and exceptional reliability. Even in harsh environments with extreme temperature and power input ranges, the STC series operates thanks to built-in over-voltage and under-voltage protection and an IP65-rated front panel. ●Infinite Possibilities through Customization ADLINK's smart touch computers can address the unique needs of individual vertical applications through custom functions and custom interfaces.
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● Flexible Configuration through Advanced Modularity Manufacturers can easily customize the industrial panel PC STC series to match application-specific I/O and functions, allowing changes to computing performance levels, touch panel types, display sizes, and I/O interfaces. This customization accelerates development, validation, and verification, leading to savings in time, cost, and resources for all manufacturers. ● Long-term Durability and Reliability ADLINK's standalone panel PCs (STC series) achieve high ROI with long-life support and exceptional reliability. Even in harsh environments with extreme temperature and power input ranges, the STC series operates with built-in over-voltage and under-voltage protection and an IP65-rated front panel. ● Infinite Possibilities through Customization ADLINK's smart touch computers can meet the unique needs of individual vertical applications through custom features and custom interfaces.
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●Flexible Configuration through Advanced Modularity Manufacturers can easily customize the industrial panel PC STC series to match application-specific I/O and functions, allowing changes to computing performance levels, touch panel types, display sizes, and I/O interfaces. This customization accelerates development, validation, and verification, leading to savings in time, cost, and resources for all manufacturers. ●Long-term Durability and Reliability ADLINK's standalone panel PCs (STC series) achieve high ROI with long-life support and exceptional reliability. Even in harsh environments with extreme temperature and power input ranges, the STC series operates with built-in overvoltage and undervoltage protection and an IP65-rated front panel. ●Infinite Possibilities through Customization ADLINK's smart touch computers can meet the unique needs of individual vertical applications through custom features and custom interfaces.
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The ADLINK PXES-2596 is a 9-slot PXI Express all-hybrid chassis. It features 1 system slot and 8 hybrid slots, supporting CompactPCI, PXI, and PXI Express modules for maximum flexibility. Based on a 2-link PXI Express architecture with a system bandwidth of 16GB/s, all peripheral slots support PCIe Gen3 x4, achieving a transfer speed of up to 4GB/s per slot. For expanded configurations, a 12-slot version of the PXES-2596E is also available, which includes 1 system slot, 8 hybrid slots, and 3 PXI Express peripheral slots, enhancing slot density and price-performance ratio. Additionally, both versions support single-board sales and utilize an ATX power supply design that eliminates the need for a power board, simplifying system integration and making it more user-friendly for single-board users. The chassis is equipped with a smart monitoring system that reports fan speed, system voltage, and internal temperature in real-time.
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The ADLINK PXIe-9908 is a PXI Express Source Measure Unit (SMU) designed for accurate measurements such as probing tests for Mini LEDs and Micro LEDs. This advanced SMU supports four-quadrant current/voltage source and measurement operations. With a current source and measurement range of 100nA to 100mA, it provides high precision. The voltage source and measurement options can be set to ±30V for 4 channels and -10V/+20V for 8 channels. Additionally, it can boost voltage measurements up to ±100V at a current of 10μA for specific tests, ensuring accurate and reliable data acquisition in research, development, and production testing.
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The ADLINK EMP-100-IMX8 is a palm-sized, fanless embedded platform designed for reliable edge computing in industrial environments. Equipped with the NXP i.MX 8 application processor, it achieves an optimal balance of performance and power efficiency, making it ideal for HMI, industrial automation, transportation, and smart infrastructure applications. Its robust solid-state design ensures reliable operation even in space-constrained environments and harsh installation conditions. Designed with flexibility in mind, the EMP-100-IMX8 features rich I/O connectivity, allowing for seamless integration with a variety of peripherals and sensors. With support for high-resolution display output, industrial communication interfaces, and multiple USB and serial options, developers can easily build scalable systems. Additionally, it supports Linux and Windows operating systems, accelerating application development and simplifying system integration.
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The ADLINK AXE-7220GW is a compact 2U short-depth AI GPU server equipped with Intel Xeon 600 processors for workstations, supporting a maximum TDP of 350W. The ultra-short-depth chassis, specially designed for space-constrained edge environments, maximizes rack efficiency without sacrificing performance, enabling high-bandwidth vision workloads and real-time AI inference in tight spaces and remote deployment sites. - Compact Edge Optimization: Featuring a 2U chassis with a depth of 438mm, it maximizes space efficiency in small racks and limited edge spaces. - Dual GPU Performance: Supports up to 2 FHFLDW PCIe Gen5 x16 GPU cards, providing overwhelming processing power necessary for high-load AI processing and fast visual analysis. - High-Density Thermal Management: Equipped with 4 built-in fan modules and high-speed DDR5-6400 memory, it achieves stable high-performance operation despite its small form factor.
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The ADLINK AXE-7420GWA is a 4U short-depth industrial server equipped with Intel Xeon 600 processors for workstations, supporting a maximum TDP of 350W. Designed for industrial backends with limited space, its compact 550mm chassis maximizes rack efficiency while providing a 12-slot expansion design that integrates complex automation workloads and server-class AI intelligence into existing infrastructure. - Compact rack efficiency: The short-depth 4U chassis with a depth of 550mm is ideal for deployment in standard industrial cabinets or factory environments with limited space. - Abundant I/O flexibility: It offers a 12-slot expansion layout, including three PCIe x16 slots and two x8/x4 slots via MCIO, catering to diverse automation and GPU acceleration needs. - Industrial storage and power: It supports up to eight 2.5-inch/3.5-inch SATA HDD bays and an industrial-grade ATX power supply, ensuring reliable data processing and power stability for mission-critical tasks.
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The ADLINK AXE-7440GW is a high-performance 4U AI GPU server equipped with Intel Xeon 600 processors for workstations, supporting a maximum TDP of 350W. Designed for large-scale parallel processing, it features an 11-slot expansion design that supports up to four double-width PCIe Gen5 x16 GPU cards via expansion boards. It provides the advanced computational power necessary for deploying large language models (LLMs) and complex multimodal AI at the edge. - Exceptional GPU scalability: Supports up to four dual-slot Gen5 x16 GPU cards, accelerating high-load generative AI training and real-time inference. - Flexible high-density storage: Equipped with eight 2.5-inch/3.5-inch SATA HDD bays and dual M.2 NVMe slots, enabling fast data access and large-capacity local storage. - Advanced thermal resistance: Features three hot-swappable built-in fan modules and an optional rear exhaust fan to ensure stable performance of high TDP workstation processors.
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The ADLINK ISB-W890 is a high-performance CEB board equipped with Intel Xeon 600 processors for workstations. It features a robust architecture that supports up to 1TB of DDR5-6400 ECC memory and seven PCIe slots (including three Gen5 x16 slots), providing a powerful foundation for multi-GPU AI inference and professional visualization tasks. Key Value Propositions Elite Expandability: With seven PCIe slots and four MCIO x8 connectors, it maximizes I/O flexibility. Versatile Storage: Equipped with two M.2 NVMe, two SlimSAS, and eight SATA III slots for high-speed data processing. Optimized Form Factor: The standard 12-inch x 10.5-inch CEB size allows for easy integration into space-saving workstation chassis. *The PCIe lane configuration varies depending on the Intel Xeon CPU SKU installed.
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Compact, powerful, industrial-grade specifications The EVP-1000-E4 is a space-saving 1U edge AIoT system designed for intelligent industrial applications. Equipped with 12th/13th generation Intel Core processors and supporting CPUs up to 65W, this platform delivers exceptional computing performance in a compact form factor. Designed for automation, vision, and IoT edge environments, it integrates robust I/O, advanced networking capabilities, and expansion through a PCIe x4 slot, enabling flexible peripheral integration.
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The IAP-E47-4U is a power-efficient 4U industrial PC designed for control, machine vision, and embedded AI applications that require reliable performance and diverse scalability. This platform, equipped with Intel Core processors (up to 8 cores, 65W), provides balanced computing power for industrial automation workloads while maintaining energy efficiency. Built on ADLINK's industrial-grade architecture, the IAP-E47-4U supports scalable PCIe expansion for motion control, vision, DAQ, and GPU cards, and is fully compatible with ADLINK's validated I/O modules. With certifications for international safety standards and EMC standards (CB, UL, LVD, CE, FCC), it simplifies international deployment and reduces the effort required for equipment manufacturers to obtain certification.
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The IAP-M47-4U is a high-performance 4U industrial automation platform designed for AI inference, machine vision, and GPU-accelerated computing. It supports dual high-end GPUs with up to 125W Intel Core processors and up to 2,000W power supply, providing high stability and scalability to handle compute-intensive industrial workloads. Equipped with up to 12 expansion slots, the IAP-M47-4U can flexibly integrate GPUs, frame grabbers, motion controllers, DAQ cards, and TSN networks through ADLINK's fully validated I/O ecosystem. Its optimized thermal design and industrial-grade power supply ensure reliable full-load operation even in continuous high-load environments.
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The MLC-M is a slim and lightweight medical panel PC that is ideal for hospital information management in nursing stations and medical carts. The MLC-M supports the 11th generation Intel Core processor (Tiger Lake) and provides the processing power necessary to run high-performance imaging software, as well as hospital applications such as HIS, RIS, PDMS, and document creation software. The MLC-M has obtained an IP54 rating due to its screwless and fanless design, making it easy to clean and protecting clinicians, nurses, and patients from potential infections. For an excellent user experience, the MLC-M features a highly flexible IO function module that can be customized for dedicated applications, four control keys for easy operation, a touch panel, and a selection of optional accessories.
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This panel PC reduces risks associated with standard IT certifications by complying with the strict requirements of the EU Medical Device Regulation (MDR), ensuring higher safety. Furthermore, as it complies with EU MDR Class I for medical devices, it becomes a valuable asset for healthcare facilities aiming for seamless, safe, and efficient operations, facilitating integration into large medical systems. Additionally, to maximize patient safety, it features 4kV isolation (2xMOPP) on one of the Ethernet ports, with optional 2x USB 2.0 Type-A and up to 6x RS232/422/485 D-Sub DB9 UART ports. The stringent patient protection design ensures that both patients and medical staff are safely protected from potential electrical hazards.
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The AVA-7200 is an EN 50155:2021 certified edge AI platform designed to meet the connectivity and processing needs of modern railway vehicles. It is available in the architecture of both NVIDIA Ampere GPGPU (A2000/A4500) and the 13th generation Intel Raptor Lake mobile processors, featuring a fanless robust design and excellent durability, allowing for flexible adaptation to various integration requirements.
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The AVA-1000 is a compact, EN50155-compliant onboard gateway designed to meet the connectivity and processing needs of modern railway vehicles. Available in both ARM and x86 architectures, it is small yet flexible enough to accommodate various integration requirements. With built-in 5G, Wi-Fi, and GNSS, the AVA-1000 enables reliable high-speed communication between onboard systems. It maintains real-time consistency in data updates between passenger information displays in each compartment and the central railway server, allowing passengers to receive accurate and synchronized information throughout their journey.
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The ADM-AL30 is dedicated to autonomous driving applications. This AI computing platform, equipped with Intel's 12th generation Core i9/i7 CPU and NVIDIA RTX 4000 SFF Ada GPU, can process vast amounts of data and make critical decisions for autonomous vehicles. It features two 10G Base-T and eight 1G Base-T1 automotive Ethernet ports, as well as eight CAN FD and four CAN 2.0 interfaces, allowing for seamless integration into any automotive ecosystem. Additionally, it complies with ISO 16750-2 and ISO 7637-2, ensuring reliability and safety even under the most demanding conditions.
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**[Case Study Introduction]** ADLINK's computer-on-module portfolio supports drone startups with a scalable and simple design that accelerates AI performance, reducing time to market for cutting-edge drone platforms. For companies facing challenges in drone design and manufacturing that are not yet prepared to respond, the approach using computer-on-modules can alleviate design complexity while providing the potential for shortened time to market and cost reduction, all while meeting the technical requirements of advanced drones. By downloading this case study, you will gain insights into "Streamlining Drone Design with COM" and "Enhancing AI Workload Performance in Next-Generation Drones with ADLINK's COM," among other topics. We encourage you to download it and read through it.
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In the drone industry, flight control systems require real-time performance, high processing power, and safety and reliability. In particular, to achieve functions such as stability during flight, accurate positioning, and obstacle avoidance, high-performance processors and robust systems that support them are essential. The OSM-MTK510 is an OSM R1.1 Size L module equipped with the advanced MediaTek Genio 510 series processor. It features a dual-core Arm Cortex-A78 and a quad-core Cortex-A55, boasting an excellent MediaTek DLA+VPU AI engine capable of up to 3.2 TOPS, making it ideal for edge AI applications. It excels in providing edge AI processing with ultra-low power consumption. The OSM-MTK510 supports a variety of graphic outputs, including HDMI/DP, eDP, and DSI, and comes with comprehensive connectivity options such as GbE x1, I2S audio codec interface, USB 3.0 x1, and USB 2.0 x2. It is versatile and robust, equipped with 17x GPIO, and guarantees long-term availability with a 10-year supply.
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In the drone industry, flight control systems require real-time performance, high processing capability, as well as safety and reliability. In particular, to achieve functions such as stability during flight, accurate positioning, and obstacle avoidance, high-performance processors and robust systems that support them are essential. The ADLINK LEC-MKT-I1200 is a SMARC module equipped with the MediaTek MT8395 SoC, which features four Arm Cortex-A78 cores, four Cortex-A55 cores, and up to 5 TOPS APU. This module incorporates IoT technologies, including on-device artificial intelligence (AI) capabilities and support for up to three cameras, while achieving a low power consumption envelope.
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In the drone industry, flight control systems require real-time capabilities, high processing power, and safety and reliability. In particular, to achieve functions such as stability during flight, accurate positioning, and obstacle avoidance, high-performance processors and robust systems that support them are essential. The ADLINK SMARC LEC-RB5N module is a Linux microprocessor-based COM. This solution is based on Qualcomm's QRB5165 octa-core CPU, equipped with an integrated NPU, providing up to 15 TOPS of performance to handle demanding AI tasks. It also features a powerful GPU compatible with OpenGL and Vulkan for processing visual data. Additionally, it comes with a wide range of video and display interfaces.
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In the drone industry, flight control systems require real-time performance, high processing power, and safety and reliability. In particular, to achieve functions such as stability during flight, accurate positioning, and obstacle avoidance, high-performance processors and robust supporting systems are essential. By combining the power-efficient Intel Core Ultra processor with up to 64GB of LPDDR5 memory and fitting it into a size of 95x70mm, it is ideal for drone applications. The COM-HPC-mMTL leverages a powerful GPU, hardware-accelerated AV1 encoding/decoding capabilities, and an integrated NPU dedicated to AI acceleration, enhancing flexibility with 16 PCIe lanes and USB4 support, thus streamlining solution designs that previously required the addition of external processing units.
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ADLINK's LEC-IMX8MM is the first SMARC revision 2.1 compliant module that offers excellent power efficiency, based on the low-power NXP i.MX 8M Mini processor (dual or quad-core Arm Cortex-A53) and integrates Vivante GC NanoUltra graphics to enhance processing capabilities. The LEC-IMX8MM is a cost-effective solution ideal for various general-purpose edge applications and IoT applications.
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The ADLINK SMARC LEC-RB5N module is a Linux microprocessor-based COM. This solution is based on Qualcomm's QRB5165 octa-core CPU, equipped with an integrated NPU that offers up to 15 TOPS of performance, catering to demanding AI tasks. For visual data processing, it features a powerful GPU that supports OpenGL and Vulkan. Additionally, it is equipped with a wide range of video and display interfaces.
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ADLINK's Express-PTL is a next-generation COM Express Type 6 computer-on-module equipped with the Intel Core Ultra Series 3 (Panther Lake-H) processor, achieving a significant leap in performance for edge AI and advanced embedded systems. It features a powerful hybrid CPU architecture with P, E, and low-power LPE cores, supporting up to 128GB of DDR5 memory and IBECC, ensuring high reliability and efficiency. The Express-PTL integrates the next-generation Intel Arc Xe3 GPU, which delivers up to 1.5 times the graphics performance, and an NPU with up to 180 TOPS, enabling fast and efficient AI inference, computer vision, and graphics-intensive workloads within a compact, standard-based COM Express form factor. The Express-PTL supports a rich array of high-speed I/O, including industrial features such as PCIe Gen4, multiple display options, USB4/Thunderbolt capabilities (build options), TSN Ethernet, TPM 2.0, and advanced power management.
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The MXA-312M series is an ultra-compact fanless platform designed to deliver high-performance visuals in space-constrained environments. Equipped with the efficient MediaTek Genio 520/720 processor, it provides an exceptional balance of low power consumption and robust computing capabilities, making it an ideal engine for digital signage, smart retail kiosks, and industrial displays. With a compact size of just 120x90x40mm, the MXA-312M can be easily installed on the back of displays or within narrow control cabinets. Despite its palm-sized compact design, it does not compromise on video performance at all.
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In the drone industry, flight control systems require real-time capabilities, high processing power, and safety and reliability. In particular, to achieve functions such as stability during flight, accurate positioning, and obstacle avoidance, high-performance processors and robust systems that support them are essential. The LEC-IMX95 SMARC module, equipped with the NXP i.MX95 processor, meets these demands. 【Use Cases】 - Flight control systems for autonomous flying drones - Image processing and control for aerial photography drones - Route optimization and flight control for logistics drones - Real-time data processing for inspection and monitoring drones 【Benefits of Implementation】 - Smoother flight control due to high-performance processors - More advanced autonomous flight through real-time image processing - Extended flight time due to low power consumption - Stable operation due to high reliability and safety
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ADLINK Smart Panels assist system integrators, integrated solution providers, and brand vendors in delivering cutting-edge features specific to individual applications through flexible configurations and advanced modularization. Additionally, ADLINK's unique FM (Function Module) design accelerates prototyping according to application requirements, resulting in savings in time, cost, and effort.
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The VPX3020 series is a 3U VPX processor blade equipped with the Intel Xeon Processor E-2254ML (formerly "Coffee Lake-H Refresh") and supports up to 16GB of soldered DDR4-2666 ECC memory. For storage, the VPX3020 offers up to 32GB of high-endurance SLC soldered SSD. The VPX3020 complies with VITA 48 and VITA 65 specifications. The VPX3020 series, featuring server-grade Intel processors, delivers extremely high computational power with low power consumption. It supports PCIe x16 Gen3 lanes, and PCIe x8 supports a non-transparent bridge for DMA and peer-to-peer communication. Graphics are supported by the integrated Intel GPU and DisplayPort to P2.
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Our 3D-TOF (Time of Flight) sensor measures the amount of reflected near-infrared light using a pulse method and outputs the distance. It can capture distance images (3D) and near-infrared images (2D) without parallax or time delay, and in a state free from ambient light, which is expected to improve recognition accuracy and robustness. For more details, please download the flyer.
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The ADLINK cPCI-3640 series is a 3U CompactPCI 2.0 processor blade equipped with Intel Atom processor X series SoC (formerly code-named Elkhart Lake) and up to 32GB of DDR4-2400-3200MT/s ECC soldered memory. Available in a single-slot (4HP) or dual-slot (8HP) width form factor, the cPCI-3640 series offers a wide range of I/O capabilities using various daughter boards. The faceplate I/O for the single-slot (4HP) version includes USB 3.0 x1, GbE x2, and VGA port x1 (common to all versions).
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This case study reveals the requirements for an Airborne Early Warning and Control (AEW&C) mission in real-world environments—high-performance processing capabilities, ultra-low latency, and robust communication performance across all domains. It also introduces the key challenges faced when deploying these systems and how ADLINK's robust VPX computing solutions address them. Please download the case study for more details.
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ADLINK's DLAP series offers a robust and compact industrial fanless platform specialized for AI-based applications in harsh environments. These systems are equipped with powerful Intel processors and provide advanced AI capabilities, making them suitable for a wide range of applications such as retail, parking, agriculture, and manufacturing. Focused on optimizing SWaP (Size, Weight, Power), these platforms ensure exceptional durability under extreme temperatures, shocks, and humidity, designed to deliver outstanding performance in industrial and embedded environments. The DLAP-8100 is a high-performance edge AI platform that features a 12th/13th/14th/15th generation Intel Core 35W/65W LGA1700 CPU and supports up to 128GB DDR5 4800MHz memory via four SODIMM slots. Designed for compute-intensive AI workloads, this system includes a full-speed NVIDIA RTX A6000E 350W GPU with a PCIe Gen4 x16 interface, enabling unparalleled AI inference and training capabilities at the edge.
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The DLAP-5200 is a robust and high-performance AI computer designed to meet the demands of challenging applications. It is equipped with 12th/13th/14th/15th generation Intel Core i processors and supports up to 128GB of DDR5 memory at 4800MHz for fast and efficient processing. This system is compatible with MXM 3.1 Type A/B GPU modules, catering to graphics-intensive tasks. This computer boasts a rugged fanless design, enabling continuous operation in harsh environments. It is equipped with front-accessible I/O ports, enhancing the user experience by simplifying connections with various display ports, USB interfaces, Ethernet ports, and supporting a wide range of peripherals and networks.
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ADLINK's DLAP series offers a robust and compact industrial fanless platform specialized for AI-based applications in harsh environments. These systems are equipped with powerful Intel processors, providing advanced AI capabilities, making them suitable for a wide range of applications such as retail, parking, agriculture, and manufacturing. Focused on optimizing SWaP (Size, Weight, Power), these platforms are designed to ensure exceptional durability under extreme temperatures, shocks, and humidity, delivering outstanding performance in industrial and embedded environments. The DLAP-4100, equipped with 12th/13th/14th/15th generation Intel Core i9/i7/i5/i3 processors and a Q670 chipset with a maximum TDP of 65W, provides exceptional performance for compute-intensive Edge AI workloads. It supports up to 64GB of dual-channel DDR5 4800MHz memory and offers flexible connectivity with three independent display outputs (HDMI 2.0b, HDMI 1.4b, DP 1.4a) and dual GbE ports (1GbE x1, 2.5GbE x1).
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The ADLINK SP2-IMX8 SBC is equipped with the NXP i.MX8M Plus high-performance processor, and its modular architecture allows for rapid development, validation, and verification, significantly saving time, costs, and resources. The ARM architecture enables the design of smaller and more compact devices due to reduced power consumption and simplified circuitry. ARM-based processors are known for their lower power consumption and higher energy efficiency compared to x86 processors. As a result, energy costs are reduced, and the battery life of portable and battery-powered devices is extended.
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**Case Study Introduction** NXP's factory is working on transforming smart manufacturing with the ultimate goal of achieving predictive maintenance through AI-enabled edge computing and advanced cloud-based data analytics. Initially, the factory faced issues with unstable system performance, leading to unexpected downtime and requiring manual recovery on-site. This directly interrupted the production process and resulted in material losses. To address these challenges, the factory replaced the HMI with an Automated Optical Inspection (AOI) system, enabling real-time remote monitoring to improve overall efficiency and yield. Through strategic partnerships, appropriate edge computing and industrial display solutions were quickly identified. This collaboration was supported by high expertise in the industrial sector, significantly reducing the burden of research and development, lowering implementation costs, and shortening time to market. For more details, please download the case study.
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The AmITX-RL-WV is an industrial-grade Mini-ITX motherboard designed for edge computing applications that require performance, flexibility, and power versatility. Supporting Intel Core i9/i7/i5/i3 processors of the 14th/13th/12th generation with a maximum TDP of 65W, this board integrates the Intel H610 chipset and provides essential I/O and expansion features in a compact footprint. With a wide range of 12-28V DC input and optional ATX power supply support, the AmITX-RL-WV enables stable deployment in field environments such as kiosk terminals, smart automation systems, and mobile medical carts. Key features include PCIe 4.0 x16 for GPU cards, dual 2.5GbE LAN, and multiple M.2 slots for wireless and storage expansion.
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The SBC35-ASL is a versatile and high-performance 3.5-inch single-board computer designed to meet the demands of industrial and outdoor applications. Equipped with Intel x7835RE/x7433RE/x7211RE processors and supporting up to 16GB of DDR5 4800MHz memory, it delivers robust performance to meet real-time processing needs. Additionally, its triple display outputs, including eDP/LVDS, HDMI, and DP, make it ideal for graphics-intensive tasks, while dual gigabit Ethernet ports ensure reliable connectivity. Designed for harsh environments, the SBC35-ASL operates within a temperature range of -40°C to 85°C, guaranteeing durability under extreme conditions. A key feature is its expandability through SBC-FM Adaptive Function Modules. With connectors such as PCIe, USB, and LPC, flexible I/O expansion is possible. These modules enable easy customization and seamless integration, enhancing the board's adaptability for various applications.
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The ADLINK SBC35-MTL is a compact 3.5-inch single board computer equipped with an Intel Core Ultra processor. It features an integrated NPU that enhances AI processing capabilities and a reserved MIPI-CSI signal path that facilitates camera integration, making it ideal for real-time and vision-based applications. The SBC35-MTL is designed to meet the needs of modern embedded systems, delivering cutting-edge performance in a compact form factor. Additionally, ADLINK's SBC35 series enhances system functionality through SBC-FM Adaptive Function Modules, which offer flexible I/O expansion and customer-driven customization. These modules are specifically designed for the SBC35 series and include reserved connectors such as PCIe, USB, and LPC/eSPI. They seamlessly integrate with the mainboard through FPC cables, either vertically or in parallel. This not only ensures a rational design but also provides high thermal resistance even under harsh conditions.
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GPUs can enhance the performance of a wide range of workloads, including image processing and analysis, computational acceleration, and artificial intelligence (AI). As the requirements for responsiveness and accuracy in edge systems become more stringent, a combination of CPUs and GPUs is becoming mainstream to achieve optimal efficiency in terms of performance per watt and performance per dollar.
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GPUs can enhance the performance of a wide range of workloads, including image processing and analysis, computational acceleration, and artificial intelligence (AI). As the requirements for responsiveness and accuracy in edge systems become more stringent, the combination of CPUs and GPUs is becoming mainstream to achieve optimal efficiency in terms of performance per watt and performance per dollar.
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