Basic Monitoring and Control Simple HMI, sensor gateways, data logging | Low-power 64-bit x86 or ARM processor with hardware virtualization optional | 2–4 cores / 2–4 threads | 6–15 W | 4–8 GB RAM | 64–128 GB industrial-grade solid-state storage; removable storage for maintenance | Embedded Linux, lightweight Linux distributions, or a supported real-time operating system | At least 2 Ethernet ports, USB, serial communication, and digital I/O | Fanless cooling is preferred; use a wide-temperature design for control cabinets | Low power and long-term reliability |
Industrial HMI and SCADA Operator panels, process visualization, protocol conversion | Low- to mid-range 64-bit x86 processor with strong single-thread performance | 4–8 cores / 4–8 threads | 10–35 W | 8–16 GB RAM | 128–512 GB SSD; use a separate system and data partition when practical | Windows IoT or embedded Linux, depending on HMI software and driver requirements | Multiple Ethernet ports, USB 3.x, serial ports, dual-display support, and optional fieldbus interfaces | Check vibration resistance, airflow restrictions, and operating temperature before installation | Software compatibility and display support |
Edge Data Processing Local analytics, protocol aggregation, containerized services | Mid-range multi-core 64-bit processor with hardware virtualization and encryption support | 4–8 cores / 8–16 threads | 15–45 W | 16–32 GB RAM | 256 GB–1 TB SSD; select power-loss protection for critical write workloads | Linux with container support, Windows IoT, or another OS with required hypervisor and driver support | Dual or quad Ethernet, USB 3.x, optional wireless connectivity, and expansion for industrial protocols | Thermal design must support continuous workloads without throttling | Memory capacity and sustained performance |
Machine Vision Inspection cameras, image classification, quality control | High-performance multi-core processor; add an integrated or discrete graphics accelerator when required | 6–16 cores / 12–24 threads | 25–100 W | 16–64 GB RAM | 512 GB–2 TB NVMe SSD; use separate high-endurance storage for image archives | Linux or Windows IoT with compatible camera, GPU, inference, and image-processing libraries | High-speed Ethernet, USB 3.x or industrial camera interfaces, multiple displays, and optional accelerator support | Active cooling may be necessary; verify dust protection, vibration tolerance, and thermal headroom | Compute throughput and I/O bandwidth |
Mobile or Vehicle Deployment Fleet systems, transportation monitoring, mobile automation | Low- to mid-range processor optimized for low power consumption and rapid startup | 4–8 cores / 4–8 threads | 8–30 W | 8–16 GB RAM | 128–512 GB SSD with strong shock resistance; optional removable backup storage | Embedded Linux or Windows IoT with validated wireless, GPS, display, and power-management drivers | Ethernet, USB, serial ports, cellular or Wi-Fi connectivity, GNSS, and isolated power input | Prioritize wide-input power protection, ignition control, shock resistance, and wide-temperature operation | Power stability and mechanical durability |
Secure Network Appliance Industrial firewall, secure gateway, remote access | 64-bit processor with hardware cryptographic acceleration and virtualization support | 4–8 cores / 4–16 threads | 10–35 W | 8–32 GB RAM | 128–512 GB SSD; mirrored storage may be appropriate for high-availability systems | Hardened Linux, a security-focused operating system, or Windows IoT when required by management software | Four or more Ethernet ports, trusted boot features, TPM support, serial console, and optional redundant networking | Use secure boot, signed updates, access control, and a predictable thermal environment | Security features and network throughput |
Compact Digital Signage Single- or multi-screen media playback | Low- to mid-range processor with integrated graphics and hardware video decoding | 4–8 cores / 4–8 threads | 10–35 W | 8–16 GB RAM | 128–512 GB SSD; capacity depends on local media storage requirements | Embedded Linux or Windows IoT with tested display, codec, and content-management support | HDMI or DisplayPort, USB, Ethernet, optional wireless connectivity, and audio output | Check display resolution, codec support, 24/7 operating capability, and enclosure ventilation | Graphics compatibility and uptime |
High-Reliability Remote System Unattended infrastructure, utility monitoring, remote diagnostics | Industrial-grade low- or mid-range 64-bit processor with long-term availability | 4–8 cores / 4–8 threads | 10–35 W | 8–32 GB ECC or non-ECC RAM, depending on processor and board support | 256 GB–1 TB high-endurance SSD; consider mirrored storage or scheduled external backups | Long-term-support Linux, Windows IoT, or a real-time operating system validated for remote management | Redundant Ethernet, serial interfaces, remote power control, watchdog timer, and hardware health monitoring | Prioritize extended temperature range, ECC memory where supported, surge protection, and remote recovery | Availability and serviceability |
Real-Time Motion Control Robotics, coordinated actuators, deterministic control | Processor with predictable interrupt behavior and support for real-time extensions or a dedicated controller | 2–8 cores / 2–8 threads | 10–35 W | 8–16 GB RAM | 128–256 GB industrial SSD; keep real-time control data separate from log storage | Real-time Linux, a certified real-time operating system, or a validated embedded Windows environment | Industrial Ethernet, fieldbus, serial interfaces, isolated I/O, and hardware watchdog support | Validate latency under maximum load; use stable power and minimize unnecessary background services | Deterministic latency and I/O timing |
AI-Enabled Edge Inference Local object detection, predictive maintenance, anomaly analysis | Multi-core processor paired with an AI accelerator or graphics processor suited to the target model | 8–16 CPU cores / 8–32 threads | 25–150 W | 16–64 GB RAM; additional accelerator memory may be required | 512 GB–2 TB NVMe SSD; use high-endurance storage for continuous data capture | Linux or Windows IoT with compatible accelerator drivers, inference runtime, and development tools | High-speed camera or network interfaces, multiple USB ports, high-bandwidth Ethernet, and expansion capability | Size the cooling system for sustained inference workloads and verify power supply capacity | Accelerator compatibility and thermal capacity |