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The MOSM-MR30E-M is equipped with the Renesas RZ/V2H processor, integrating a 4-core Cortex-A55 (1.8GHz) and Cortex-M33. Additionally, it achieves up to 15 TOPS (Sparse) inference performance with the DRP-AI3 accelerator. This module supports LPDDR4X memory interface and PCIe Gen3 x1, and complies with the OSM v1.2 Size-M (476-pin) standard.
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The MOSM-MR40E is equipped with the Renesas RZ/V2H processor, integrating a 4-core Cortex-A55 (1.8GHz), a 2-core Cortex-R8, and a 1-core Cortex-M33. Additionally, it achieves a maximum inference performance of 80 TOPS (Sparse) through the DRP-AI3 accelerator. This module features an LPDDR4X interface, two PCIe Gen3 x1 lanes, and four MIPI CSI-2 (4-lane) camera interfaces, providing abundant I/O access within a 662-pin OSM v1.2 Size-L footprint.
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The SGET (Standardization Group for Embedded Technologies), a standardization organization, established the OSM 1.0 standard in 2020. This standard is designed as a highly promising general-purpose standard for small, low-cost embedded computer modules across multiple processor architectures. This kit is provided as a carrier board for OSM-L evaluation/development, offering a wide range of interfaces from legacy to high-speed. Notably, it achieves high compatibility with various OSM modules. Additionally, an optional socket using Pogo pins is available, allowing for the implementation of OSM modules without soldering, making it easy to swap modules and enabling development across multiple architectures on a single board.
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In the field of medical image diagnosis, there is a demand for the rapid and accurate processing of high-resolution image data to enhance diagnostic accuracy. Particularly, when utilizing AI for image analysis or displaying and comparing multiple images simultaneously, high computational power and flexible scalability are essential. Insufficient processing capability can lead to delays in diagnosis and the risk of oversight. The AIPC-3000 series supports Intel's 12th to 14th generation CPUs and is designed to enable GPU acceleration, meeting the demanding needs of medical image diagnosis. 【Usage Scenarios】 - AI-based lesion detection and analysis - Integrated display of multiple modality images - Real-time image processing - Telemedicine systems - Research and development applications 【Benefits of Implementation】 - Improved diagnostic accuracy - Reduced diagnostic time - Streamlined workflows - Realization of advanced image analysis - Flexibility in system construction
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In the transportation industry, real-time data collection and analysis, as well as stable system operation, are essential for operation management. Particularly, to efficiently process information from numerous vehicles and sensors and issue instructions without delay, a reliable computing environment is indispensable. Insufficient processing power or system downtime can increase the risk of delays and accidents. Our tower/wall-mounted industrial PCs address these challenges and support smooth operation management. 【Usage Scenarios】 - Real-time monitoring of vehicle location and operational status - Analysis of traffic volume data and weather information - Optimization of operation schedules and instructions - Rapid information transmission in emergencies 【Benefits of Implementation】 - Improved operational efficiency - Reduced risk of delays - Enhanced safety - Support for data-driven decision-making
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AIPC-3000 Series | Tower/Wall-Mounted Industrial PC Features 【Designed for High-Performance AI Edge Processing and Industrial Automation】 The AIPC-3000 series is a high-performance tower/wall-mounted industrial PC platform designed for AI edge computing, GPU acceleration, and industrial automation control. It supports Intel's 12th/13th/14th generation Celeron/Pentium/Core processors (with a maximum TDP of 65W), providing scalable processing performance for demanding industrial applications. 【Expansion Slot Configuration of AIPC-3000-AH6-3S (Compact Chassis)】 1 × PCIe x16 + 1 × PCIe x4 Supports GPU cards up to 230mm Designed for a more space-efficient control panel environment.
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In the field of transportation monitoring, real-time data collection and analysis, as well as reliable system operation, are essential. In particular, efficiently processing diverse data from vehicles and infrastructure and understanding the situation without delay is crucial for safe and smooth operations. Insufficient processing capacity and unstable systems can lead to delays in monitoring and misjudgments. The Panther Lake-equipped 3.5-inch + SBC provides high-performance processing capabilities and robust design to address these challenges. ## Use Cases * Real-time collection of video and sensor data from vehicles * Monitoring the condition of traffic infrastructure * Anomaly detection and early alert issuance * Integrated operation management across multiple locations ## Benefits of Implementation * Rapid processing and analysis of monitoring data * Improved reliability through stable system operation * Enhanced operational efficiency and cost reduction * Realization of a safer and more efficient transportation system
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In manufacturing production management, real-time data collection, analysis, and rapid decision-making are essential. In particular, high processing power and reliable computing resources are indispensable for understanding the complex interconnections of equipment within the factory and the constantly changing production conditions. Inadequate systems can lead to delays in production lines, decreased quality, and even unexpected downtime. Our product, the "Panther Lake-equipped 3.5-inch + SBC," addresses these challenges and supports the optimization of production management. 【Use Cases】 - Monitoring and controlling production lines within the factory - Data collection and analysis from IoT devices - Data processing for predictive maintenance - Real-time quality management 【Benefits of Implementation】 - Improved production efficiency - Reduced downtime - Enhanced quality management - Rapid decision-making based on data
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The 3.5" Plus (146 × 150mm) size SBC equipped with the Intel Core Ultra Series 3 (Panther Lake) features enhanced graphics performance with a powerful iGPU and a dedicated NPU to accelerate edge AI processing. Designed for high-performance computing, the 3I160DW supports up to 64GB of DDR5 memory through two SO-DIMM slots. It offers a variety of display outputs including dual HDMI, LVDS/eDP, and USB Type-C (DP Alt Mode). Additionally, it is equipped with Intel 2.5G LAN ×2, four serial ports, and three MIPI-CSI interfaces, making it suitable for advanced imaging applications. The expansion options are also very flexible, featuring PCIe x2/x4, a Nano SIM slot, and multiple M.2 interfaces (for storage, wireless, and 5G support). With a wide DC input range and robust design, the 3I160DW is an ideal solution for use in harsh environments such as industrial automation, smart factories, transportation, and healthcare.
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In the automotive industry, particularly in autonomous driving systems, there is a demand for real-time processing of vast amounts of data and high reliability. To instantly analyze information from sensors and make accurate decisions, a high-performance and robust computing platform is essential. Our BRAV-7823 is an edge computing platform designed to meet these requirements. 【Use Cases】 - Processing sensor data from autonomous vehicles - AI-based environmental recognition - Real-time driving control - In-vehicle infotainment systems 【Benefits of Implementation】 - Realization of advanced autonomous driving features - Improved safety - Smooth vehicle control
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In quality inspection of the manufacturing industry, it is essential to accurately capture and quickly assess minute defects in products. Particularly in inspections of fast-moving production lines or complex shapes, high-precision image processing and real-time data analysis are indispensable. Insufficient processing power can lead to missed detections or misjudgments, potentially resulting in decreased product quality and delays in the production line. The BRAV-7823 addresses these challenges with a high-performance CPU and a wealth of interfaces, achieving a compact design suitable for integration into robots. 【Usage Scenarios】 - Mounted on a robotic arm for appearance inspection of products - Defect detection of products flowing on the line - Dimensional measurement of complex-shaped components 【Benefits of Implementation】 - Improved inspection accuracy and reduction of missed detections and misjudgments - Increased productivity through automation of the inspection process - Strengthened quality control through real-time data collection and analysis
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The 【BRAV‑7823】 is a high-performance edge computing platform equipped with an Intel Core Ultra Series 3 Panther Lake-H CPU, supporting up to 64GB of onboard memory. It accommodates multi-network, multi-I/O, and multi-expansion, features a wide-range power input of 9-36V (with OVP/OCP/SCP protection), has an aluminum-magnesium alloy chassis, fan cooling, and a compact design. It is ideally configured for embedded robots and humanoid robots.
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In transportation signage, accurate and easy-to-understand information transmission is essential. In places where many people use, such as train stations, bus stops, and airports, it is necessary to display operational information, advertisements, and emergency information in real-time. The frequency of content updates is high, and stable operation for long hours is indispensable. The MPD3588 supports 4-screen output and 8K video decoding, allowing for clear display of diverse information. It achieves stable operation 24 hours a day, 365 days a year, strongly supporting transportation signage. 【Usage Scenarios】 - Station electronic bulletin boards - Bus stop timetables - Airport flight information - Commercial facility signage 【Benefits of Implementation】 - Improved visibility through clear information display - Simultaneous display of multiple contents - Remote content updates - Stable operation 24 hours a day, 365 days a year
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In the amusement industry, it is important to capture customers' interest and provide memorable experiences. In particular, the quality and diversity of visual expressions influence the appeal and customer attraction of the facility. By displaying high-resolution, impactful visuals simultaneously on multiple screens, it is necessary to enhance immersion and improve customer engagement. The MPD3588 supports simultaneous output to up to four screens and playback of 8K video, strongly supporting the productions of amusement facilities. 【Usage Scenarios】 - Theme park attractions - Large screens in game centers - Digital signage in casinos 【Benefits of Implementation】 - Creation of a sense of presence through high-quality visuals - Optimization of information delivery through multiple screens - Increased customer dwell time and satisfaction
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In disaster prevention applications within public facilities, rapid and accurate information transmission is essential. During emergencies such as earthquakes, tsunamis, and fires, it is important to display accurate information clearly to facilitate smooth evacuation guidance and ensure people's safety. Traditional systems have faced challenges such as delays in information updates and difficulty in readability of displayed content. The MPD3588 enables clear display of diverse information and rapid information transmission through its simultaneous output of four screens and 8K video decoding capability. 【Usage Scenarios】 * Display of evacuation route maps, hazard maps, and evacuation instructions * Display of real-time weather information, traffic information, and emergency alerts * Provision of information to foreigners through multilingual support 【Benefits of Implementation】 * Increased efficiency in evacuation guidance through rapid information transmission * Improved understanding of information due to clear displays * Enhanced information accessibility through multilingual support
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In the event industry, high-quality video display and stable operation are essential for streaming. Especially at events with large audiences, clear visuals and uninterrupted streaming can determine the success of the event. Video disruptions or interruptions in streaming can diminish the value of the event. The MPD3588 strongly supports event streaming by achieving 4K/8K high-resolution video output and stable operation 24/7. 【Usage Scenarios】 - Information display at exhibitions - Video display during live streaming - Guidance display at event venues - Digital signage advertising 【Benefits of Implementation】 - Improved appeal through high-quality visuals - Enhanced information transmission with multi-screen setups - Increased reliability of event management through stable operation - Flexible system construction with diverse I/O options
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In the hotel industry, providing information to customers and creating attractive spaces is essential. In particular, it is important to clearly display diverse information such as room guides, event announcements, and advertisements to capture customers' interest. Traditional signage systems have faced challenges with the complexity of updating display content and managing multiple displays centrally. The MPD3588 addresses these issues with high-quality 4K/8K display and flexible multi-screen configurations. 【Usage Scenarios】 - Information display in lobbies, front desks, and restaurants - Guidance displays in guest rooms and elevators - Event and campaign announcements 【Benefits of Implementation】 - Information transmission through clear visuals - Centralized management of multiple displays - Increased customer satisfaction
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In the retail industry, effective communication of information to customers is crucial for promotional activities. It is necessary to smoothly display attractive visuals and information to stimulate purchasing intent. Traditional signage systems have faced challenges such as the difficulty of updating display content and synchronizing multiple screens. The MPD3588 achieves simultaneous output to up to four screens and supports 8K video playback, capturing customers' attention with sharp visuals. 【Usage Scenarios】 - Store displays - Information display at event venues - Digital menu boards - Broadcasting promotional videos 【Benefits of Implementation】 - Enhanced appeal through information dissemination on multiple screens - High-quality display with 8K support - Increased efficiency in content updates - Reduction of missed opportunities due to stable operation 24/7, 365 days a year
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Equipped with an octa-core CPU, Mali-G610 MP4 GPU, and 6TOPS AI NPU, it supports 4× HDMI outputs and 1× HDMI input. It enables 8K video decoding/encoding and flexible multi-screen configurations. With abundant I/O, multiple network options, and high reliability for 24/7 operation, it is ideal for digital signage, multimedia advertising, and industrial applications.
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XPI-3576 supports industrial applications (operating temperature range: -40°C to 85°C), equipped with RK3576 + Hailo-8 M.2 AI module, NPU performance of 6 to 26 TOPS, compatibility with the Raspberry Pi ecosystem, a product lifecycle of over 10 years, and advanced BSP and custom I/O support.
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The 【DB3576】 is a compact 3.5-inch single-board computer for IoT applications, equipped with the Rockchip RK3576. It features a high-performance octa-core CPU (Cortex-A72 ×4 + Cortex-A53 ×4), an ARM Mali-G52 GPU, and a 6 TOPS NPU, supporting AI processing. It is compatible with Android and Linux Debian, offering flexible LPDDR4 memory configurations and eMMC storage options. With a rich set of connectivity interfaces and display/industrial I/O, it is ideal for AIoT and edge computing applications.
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The FOX 2I130DW is a high-performance embedded computer that adopts a fanless design in a compact chassis measuring just 132.5 (width) × 112.45 (depth) × 48 (height) mm. It is equipped with 13th and 12th generation Intel Core Raptor Lake-U / Alder Lake-U (i7 / i5 / i3) processors, delivering excellent computational performance for edge AI applications. It offers a rich array of I/O interfaces suitable for industrial applications: HDMI ×1 2.5GbE LAN ports ×4 (supporting high-speed networks) USB 3.2 ports ×3 COM ports ×2 (for industrial communication and control) Additionally, by utilizing the M.2 slot, it supports Wi-Fi 6 and 4G / 5G communication modules, enabling wide coverage and real-time data transmission. It is ideal for AIoT and edge gateway applications. The FOX 2I130DW, which condenses high performance into a robust and ultra-compact chassis, is an ideal solution for applications that require advanced computational processing in harsh environments.
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The 【FOX 2NOR03+GM04】 is a compact and robust edge AI system designed to deliver powerful AI performance even in limited installation spaces. Its dimensions are just 112.5 (W) × 112.5 (D) × 74 (H) mm. Equipped with the NVIDIA Jetson Orin NX / Nano (Super) module, it provides AI inference performance ranging from 40 to 100 TOPS. Optimized for computationally intensive applications such as AI vision and video analysis, it features a variety of connectivity options, including: • GMSL camera interface (4 ports ×2) • Gigabit Ethernet (GbE) ×1, 2.5 Gigabit Ethernet (2.5GbE) ×1 • HDMI ×1 • USB 3.1 ×2, USB Type-C (supports USB 3.1 / 2.0 OTG) ×1 • M.2 slots ×2 (for flexible expansion) With a wide range DC input power supply and a durable chassis design, the FOX 2NOR03+GM04 achieves an ideal balance of performance, efficiency, and reliability. It is the perfect solution for the deployment of high-performance edge AI where space and power efficiency are required.
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The 【FOX-2NOR02】 is an ultra-compact edge AI system with dimensions of 112.5W × 112.5D × 74H mm and a weight of 1225g. It is equipped with the NVIDIA Jetson Orin NX / Nano (Super) module, delivering exceptional AI performance of 40 to 100 TOPS at the edge. Designed specifically for high-load AI video applications, the FOX-2NOR02 features a rich set of I/O interfaces. The main configuration includes GbE ×1, HDMI, USB 3.1 ×8, USB Type-C (USB 3.1/2.0 OTG) ×1, M.2 slots ×2, and a Nano SIM (OEM) connector. It supports a wide range of DC-IN power inputs, making the FOX-2NOR02 ideal for deploying high-performance AI video solutions.
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The ultra-compact Mini-NXPHAI03, equipped with the NXP i.MX8M Plus and Hailo-8 AI processor, redefines embedded computing. It offers up to 26 TOPS of AI computing power, making it ideal for edge AI applications. It features Mini HDMI, 8GB LPDDR4 memory, 32–256GB eMMC, Micro SD, and optional ODM functionality for MIPI-CSI camera input. The Mini-NXPHAI03 includes industrial-grade I/O interfaces such as 2 x GbE LAN, 1 x USB 3.0 Type A, 1 x USB 3.0 Type C, and 1 x RS485 with DI/DO, as well as a wide power input range of 9–24V, ensuring compatibility with demanding environments. ODM-compatible systems with integrated camera modules are also available.
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The 【NET-II 2I740DW】 is an ultra-compact fanless DIN rail computer, measuring just 120mm (width) × 90mm (depth) × 35mm (height). It is equipped with an Intel Atom x7000RE series (Amston Lake) processor and is designed for deployment in space-constrained environments such as data collection in factories, AIoT, edge computing, and gateway applications. With a design that offers rich connectivity, it integrates HDMI, 2.5GbE LAN×3, USB 3.2×3, and COM ports×2, enabling reliable industrial communication and control. An M.2 expansion slot further allows for WiFi 6, 4G, and 5G wireless connections, providing wide coverage and real-time data transmission for AIoT and edge gateway solutions. This low-power and lightweight device offers an ideal platform for deployment in space-constrained edge environments, such as intelligent robotics, smart transportation, medical systems, and visual inspection/analysis applications.
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The 【2I740DW】 is equipped with the Intel Atom x7000 series processor (formerly known as Amston Lake). This device integrates three 2.5GbE LAN ports, five USB ports, two COM ports, HDMI, and two M.2 expansion slots, providing an optimal platform for graphics performance with integrated IoT capabilities, real-time performance, manageability, and security. In addition to excellent processor performance, it features a wide range of 9-24V DC input support, making it an ideal solution for OpenVINO-based AI accelerator platforms, advanced edge AI, intelligent control, factory automation (Industry 4.0), the Internet of Things (IoT), and edge computing applications.
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The Geniatech APC880 Mini is a compact and cost-effective edge AI mini PC that integrates NXP's i.MX8M Plus SoC and the onboard Kinara Ara-2 AI accelerator. It delivers a total of 42.3 TOPS of AI performance. Designed for environments with limited space, it features 4K video decoding, multi-protocol industrial I/O, and robust connectivity. It is ideal for AI vision, embedded systems, and smart edge devices.
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The Geniatech AI accelerator module, adopting the M.2 form factor, can be seamlessly integrated into PCs and edge devices, enabling real-time deep neural network inference with low power consumption across various applications.
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The Geniatech DB3588V2 AI development board is equipped with the RockChip RK3588 chip and a 6Tops NPU, designed to comply with commercial and industrial standards, offering a supply period of over 10 years and comprehensive technical information. It supports multiple operating systems, provides powerful performance, stable and reliable product support, and offers high scalability to accommodate various AI application scenarios.
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The i.MX 8M Plus SMARC board DB820P SMARC development board features NXP's i.MX 8M Plus SoC and a 2.3 TOPS NPU, enabling AI edge computing with expandable AI acceleration via M.2 PCIe or Board-to-Board connectors. This versatile platform integrates 4K video processing, multi-display support, and industrial-grade I/O in a compact SMARC form factor, making it ideal for vision AI and industrial automation applications.
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The Geniatech XPI-iMX8MM is a credit card-sized single-board computer that offers an industrial-grade alternative to the Raspberry Pi. It is equipped with an NXP i.MX8M Mini processor, 2 to 4GB of RAM, and 8 to 128GB of eMMC storage. The XPI-iMX8MM features stable video encoding capabilities and a rich set of expansion interfaces, including Gigabit Ethernet, WiFi/BT functionality, four USB ports, and a standard 40-pin GPIO header. It also supports dual-lane MIPI LCD and MIPI camera functions. It is ideal for programming education, software education, multimedia terminals, and a wide range of industrial and IoT applications.
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Raspberry Pi Zero Compatible Ultra-Compact Computer The Geniatech XPI-3566-ZERO is an ultra-compact single-board computer (SBC) equipped with the Rockchip RK3566 platform. It features a design similar to the Raspberry Pi Zero 2W, with up to 8GB of LPDDR memory, optional onboard eMMC flash memory, a 40-pin GPIO header, MIPI-CSI, and a Mini HDMI that supports 4K display. Additionally, it includes a Type-C for USB OTG, Bluetooth 5.0, and dual-band 2.4/5GHz Wi-Fi. This high-performance, low-power SBC expands the possibilities for embedded systems, edge computing, and IoT nodes.
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The XPI-3568 is an SBC board in Raspberry Pi form factor, featuring a Rockchip RK3568 processor, 4K HDMI, MIPI-DSI/CSI, 40-pin GPIO, onboard RAM, eMMC storage, and four USB ports. It includes 1000Mbps Ethernet, Wi-Fi, and Bluetooth, and supports Debian, Android, and Raspberry Pi OS.
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The Geniatech AI accelerator module, adopting the M.2 form factor, can be seamlessly integrated into PCs and edge devices, enabling real-time deep neural network inference with low power consumption across various applications.
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It is an SBC equipped with an Amston Lake processor, while being a pure picoITX size.
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The JCO-1000 series, equipped with NVIDIA Jetson Orin NX (16GB/8GB) and Nano (8GB/4GB) Orin System on Module (SOM), offers entry-level AI performance of up to 100 TOPS across the entire JCO series. The JCO-1000-ORN, featuring configurable power modes (7W to 25W), a robust design, NVMe data storage, and abundant I/O, is ready for deployment in harsh environments.
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The ultra-compact Mini-NXPHAI03, equipped with the NXP i.MX8M Plus and Hailo-8 AI processor, redefines embedded computing. It delivers up to 26 TOPS of AI computing power, making it ideal for edge AI applications. It features Mini HDMI, 8GB LPDDR4 memory, 32–256GB eMMC, Micro SD, and optional ODM capabilities for MIPI-CSI camera input. The Mini-NXPHAI03 includes industrial-grade I/O interfaces such as 2 x GbE LAN, 1 x USB 3.0 Type A, 1 x USB 3.0 Type C, and 1 x RS485 with DI/DO, along with a wide power input range of 9–24V, ensuring compatibility with demanding environments. ODM-compatible systems with integrated camera modules are also available.
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The ultra-compact carrier board [NXP-HAI03], equipped with the NXP i.MX 8M Plus and Hailo-8 AI processors, redefines the concept of embedded computing by providing up to 26 TOPS of AI performance for edge applications. It features Mini HDMI, 4/8GB LPDDR4 memory, 32–256GB eMMC, Micro SD, and MIPI-CSI for camera input. It is equipped with I/O interfaces including 2 GbE LAN, USB 3.0, and one internal COM port, and supports a wide range power input of 9–24V to accommodate demanding applications. The modular architecture of this board streamlines development, achieving reduced time to market and cost optimization.
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The 【3I140DW】 is a 3.5-inch (155 x 150mm) single board computer (SBC) equipped with Intel Core Ultra 7/5 100 series processors (14th generation Meteor Lake U/H, 15th generation Arrow Lake). It features two DDR5 SO-DIMM slots, supporting up to 64GB of memory. Additionally, it provides multiple display interfaces including HDMI, DP, LVDS (eDP), and Type C DP ALT. It also includes five Intel 2.5G LAN ports and a wide range of I/O options such as serial ports, CANBus, USB 3.2, USB 2.0, and SATA III, offering robust networking capabilities. Furthermore, it is equipped with PCIe golden fingers, a Nano SIM slot, and M.2 slots (M-Key, 2 x B-Key) for additional storage, wireless modules, and 5G connectivity. This SBC supports a wide DC input range from 9V to 36V, making it adaptable to various power sources and environments.
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The BCO-500 is a fanless, compact embedded computer that delivers robust performance and connectivity for space-constrained applications. The BCO-500-ADL, equipped with the 12th generation Intel Alder Lake-N, provides an industrial solution as an alternative to consumer-grade Intel NUCs. Its mini form factor allows for seamless integration into space-constrained applications and enables integration with IoT devices and sensors.
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The BCO-500 is a fanless, compact embedded computer that delivers robust performance and connectivity for space-constrained applications. The BCO-500-ADL, equipped with the 12th generation Intel Alder Lake-N, offers an industrial solution as an alternative to consumer-level Intel NUCs. Its mini form factor allows for seamless integration into space-constrained applications and enables integration with IoT devices and sensors.
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The 【KMDA-7921】 is a fanless high-performance box computer equipped with the H610 chipset. It features an Intel 12th generation Alder Lake-S CPU, multi-IO interfaces, dual PCIe, and dual PCI quad expansion ports, achieving a compact size. It is suitable for various industries and fields such as industrial automation, highway toll collection, AI edge computing, security monitoring, and environmental sensing.
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The 【KMDA-3306-S002】 is a high-performance, small, and compact embedded box computer. It features an SGCC box structure and an aluminum extruded heat dissipation shell. Equipped with an Intel Meteor Lake series processor, it offers rich IO capabilities and shock-absorbing design, making it ideal for application scenarios such as AGV/AMR, machine vision, and embedded intelligent robots.
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The 【KMDA-3306-T002】 is a high-performance, small, and compact embedded box computer. It features an SGCC box structure and an aluminum extruded heat dissipation shell. Equipped with an Intel Arrow Lake series processor, it offers rich IO capabilities and shock-absorbing design, making it ideal for application scenarios such as AGV/AMR, machine vision, and embedded intelligent robots.
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