Advantech, a leading provider of embedded IoT computing solutions, is delighted to introduce the latest addition to its industrial motherboard lineup — the AIMB-523. This high-functionality Micro-ATX motherboard is ideal for 3D vision guided inspection and is powered by AMD Ryzen™ Embedded 7000 series processors with “Zen 4” architecture and 5nm technology. With 12 cores and support for up to 128GB of DDR5 memory, it delivers up to 49% more performance within the same power budget compared to the AMD Ryzen™ 5000 series.

Targeted toward demanding 3D/4D visual capturing applications, the AIMB-523 features 6 x 2.5GbE LAN ports and 8 x USB 3.2 ports for high-speed, high-resolution image capturing devices, ensuring exceptional data transmission with minimal latency. It also includes a steel-reinforced PCIe x16 Gen5 slot for dual-slot GPU cards, plus an internal USB Type-A port for a USB security dongle. These features make it an ideal solution for real-time visual inspection applications in industrial automation that require full functionality, precise graphics inference, and high-security data processing capability.

Enhanced Connectivity and Performance for Visual Inspection Applications
The AIMB-523 features 6 x 2.5GbE LAN ports and 8 x USB 3.2 ports, allowing for the direct connection of high-speed devices such as high-resolution digital cameras for processing large images in automated visual inspection. This eliminates the need for additional add-on cards, enabling users to connect digital devices directly to the motherboard for their application needs.

While the AIMB-523 already offers fast transmission, the PCIe x16 slot enables the utilization of GPU-accelerator cards, further enhancing visual computing efficiency and analytic capabilities. This sturdy connector helps prevent damage from unplugging heavy graphics cards. This design makes the AIMB-523 ideal for scenarios demanding flexible functionality and superior AI computing capabilities, particularly in automated visual inspection.

Harnessing AMD’s 1st Desktop Processors with 5nm Technology to Drive Data-Intensive Applications
The AIMB-523 harnesses the power of AMD Ryzen™ Embedded 7000 Series processors, offering up to 12 cores for outstanding computing performance even under heavy data workloads. With 4 DIMMs supporting up to 128GB of DDR5 memory and optional ECC support, it delivers exceptional responsiveness for data-intensive applications managing simultaneous high-speed workflows. Despite its multi-tasking prowess, this motherboard is also equipped with an onboard M.2 M-Key with PCIe x4 links, compatible with high-speed NVMe SSDs for massive data storage. Furthermore, it features an internal USB Type-A connector for dongle license keys. To sum up, the AIMB-523 delivers powerful computation, timely accessibility, and security to maximize the outcome of data-intensive applications.

Embedded Operating System Empowers Adaptability for Industrial Applications
This motherboard supports various OS, including Windows10/11 and Windows Server for operation in industrial markets. By offering real-time hardware and peripheral monitoring, we help users in preventing system failures, ultimately improving productivity. The AIMB-523 delivers stable operation and convenience for IoT devices. Advantech’s Micro-ATX motherboards provide OS compatibility that enables innovation and reliability in industrial settings. With top-notch product quality and ongoing technical support, we deliver cutting-edge solutions that enable customers to shorten their time-to-market.

Highlighted Features

  • AMD Ryzen™ Embedded 7000 Series processors with the B650 chipset
  • 6 x 2.5Gbe LAN ports for multiple IP-based devices
  • High-speed expansion: 8 x USB 3.2, 1 x M.2 M-Key (PCIe Gen4 x4)
  • Triple displays: 1 x DP and 2 x HDMI
  • 1 x internal USB 2.0 Type-A to support USB keylock functions
  • Windows Server and Windows 10/11, Linux Ubuntu, and DeviceOn

For more information about AIMB-523 or other Advantech products and/or services please visit our website or call a regional service provider.