Customization:
With FR-4 reinforced epoxy substrate, ensure robust durability and thermal stability in harsh industrial environments*.
With quad-core ARM Cortex-A53 (1.8GHz) and Cortex-M4 (400MHz), handle complex multitasking and real-time control simultaneously*.
With up to 1.8GHz processing speed, achieve 50% faster data processing than entry-level industrial boards*.
With a low-cost design, deploy industrial-grade embedded systems at 30% lower investment than premium alternatives while maintaining commercial-grade reliability*.
With CE/FCC/EMC certifications, ensure safety and regulatory compliance for global deployments*.
The SOM-iMX8M Quad ARM Cortex-A53 industrial motherboard is a low-cost, high-performance embedded computing solution designed for versatile applications. Featuring a dual-core architecture with up to 1.8GHz ARM Cortex-A53 and 400MHz Cortex-M4 processors, this single-board computer (SBC) supports Linux and Android, offering robust processing power and real-time control. Built with FR-4 material for durability and certified for global standards (CE/FCC/EMC), it is ideal for industrial automation, IoT devices, and embedded systems requiring reliability and scalability.
Feature | Specification | Benefit |
---|---|---|
Processor | NXP i.MX8M Quad Cortex-A53 (1.8GHz) + Cortex-M4 (400MHz) | Dual-core architecture for multitasking and real-time control |
Memory | NAND Flash + SRAM | Flexible storage for programs and temporary data |
Certifications | CE, FCC, EMC | Compliance with global electromagnetic and safety standards |
Operating Systems | Linux, Android | Versatile OS support for diverse application needs |
Connectivity | 20-pin + 24-pin headers | Modular expansion for sensors, peripherals, or systems |
Material | FR-4 PCB | Durable, high-temperature-resistant construction |
Adjustable parameters include:
With the SOM-iMX8M’s dual-core processing power and modular design, you can build industrial control systems, smart IoT devices, or ruggedized embedded solutions. Its certifications ensure seamless deployment in regulated environments, while its Linux/Android flexibility supports rapid prototyping and customization.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Processing Power | Cortex-A53 @ 1.2GHz | Cortex-A53 @ 1.5GHz | Cortex-A53 @ 1.8GHz |
Memory | 512MB NAND + 64MB SRAM | 1GB NAND + 128MB SRAM | 2GB NAND + 256MB SRAM |
Certifications | CE, FCC | CE, FCC, EMC | CE, FCC, EMC, RoHS |
OS Support | Linux | Linux, Android | Linux, Android, RTOS |
Technical Breakthroughs:
Version Selection Guide:
With the Pro version’s 1.8GHz Cortex-A53 and 2GB NAND, you can run complex AI algorithms while maintaining real-time responsiveness—critical for applications like automated factory robotics. Pair this with its RoHS compliance to meet global environmental regulations, ensuring seamless global deployment.
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Processing Power | Industrial automation, embedded systems | Base: Quad-core ARM Cortex-A53 @ 1.8GHz ▲▲ Advanced: 2.0GHz (Industry: 1.2GHz) | ▲▲ 33% faster than industry standard; handles complex tasks efficiently | ▲▲ Higher power consumption vs low-power MCUs (e.g., STM32) |
OS Support | Flexible IoT projects | Base: Linux (Ubuntu/Debian) ▲▲ Advanced: Linux + Android 10+ (Industry: Single OS) | Dual OS versatility for mixed-use applications (e.g., Linux for control, Android for UI) | ▲▲ Requires dual-boot setup, increasing configuration time |
Compliance Certifications | Global deployments | Base: CE, FCC ▲▲ Advanced: +EMC (Industry: CE only) | Ensures safety and compatibility across regions (e.g., EU/US) | ▲▲ Advanced adds cost for EMC testing |
Connectivity Options | IoT devices with multiple interfaces | Base: 20-pin header ▲▲ Advanced: 20-pin + 24-pin headers (Industry: 10-pin) | ▲▲ Double connectivity for peripherals and sensors | ▲▲ Complexity increases with more connectors |
Memory Configuration | Data-intensive applications | Base: 1GB RAM + NAND Flash ▲▲ Advanced: 2GB RAM + SRAM (Industry: 512MB RAM) | ▲▲ Double RAM for multitasking; SRAM boosts real-time performance | ▲▲ Higher cost due to dual-memory architecture |
Dual-core Architecture | Real-time + general processing | Base: ARM Cortex-A53 (quad) + M4 (single core) ▲▲ Advanced: M4 (dual core) (Industry: Single-core) | ▲▲ Advanced handles parallel tasks (e.g., control + data logging) | ▲▲ Requires advanced software expertise for dual-core coordination |
⭐⭐⭐⭐⭐ James Carter - Automation Systems Developer
"This SOM-iMX8M Pro model has been a game-changer for our factory control systems. The dual-core architecture allows us to run Linux for HMI interfaces while the Cortex-M4 handles real-time motor control without latency. We’ve had it deployed in two production lines since June 2024, and uptime has been flawless. The EMC certification gave us a smooth regulatory approval process in Europe."Purchase Date: May 2024 | Usage Period: 8 months
⭐⭐⭐⭐☆ Aisha Patel - Electronics Enthusiast & Educator
"I bought the Base Model for a smart home automation project with my students. For under $100, it runs Debian smoothly and interfaces perfectly with sensors via the 20-pin header. It took some time to configure the OS (about a weekend), but the open-source community support is excellent. Great for learning embedded Linux!"Purchase Date: February 2025 | Usage Period: 3 months
⭐⭐⭐⭐⭐ Marcus Lee - CTO, RoboNex Industries
"We evaluated five different SBCs before choosing the Advanced Model for our delivery robot prototype. The 1.5GHz A53 + Android 10 support lets us run navigation AI and a customer-facing UI simultaneously. Added a camera module and GPS through the 24-pin expansion—plug-and-play experience. After 5 months of field testing, no thermal throttling or crashes. Highly reliable for edge robotics."Purchase Date: October 2024 | Usage Period: 6 months
⭐⭐⭐⭐☆ Elena Rodriguez - Senior Embedded Systems Engineer
"Deployed 30 units across smart kiosk installations in shopping malls. The modular design made integration with touchscreens and payment terminals straightforward. Only reason I’m not giving 5 stars is the lack of Wi-Fi/BT onboard—we had to add external modules. But the dual OS capability (Linux backend + Android frontend) saved months in development time."Purchase Date: January 2025 | Usage Period: 5 months
⭐⭐⭐⭐⭐ Thomas Wu - R&D Manager, FlexiControl Inc.
"As someone who’s worked with industrial motherboards for over 15 years, I can say this is one of the most cost-effective yet robust solutions I’ve seen. We chose the Pro Model for its RoHS and EMC compliance, which was mandatory for our EU clients. Running real-time PLC logic on the M4 core while the A53 processes data logs has improved system responsiveness by at least 40%. After 7 months in high-vibration environments, not a single failure."Purchase Date: April 2024 | Usage Period: 9 months
Average Rating: 4.7/5 ⭐ (89 Reviews)
Dr. Linda Park - Senior Embedded Architect, IEEE Fellow
"The SOM-iMX8M series stands out due to its balanced dual-core design—a rare find in this price range. The separation of high-performance and real-time processing cores enables true concurrency, making it ideal for modern industrial IoT and edge AI applications. I recommend the Pro model for any developer serious about scalable, certified embedded deployments."
Daniel Kim - Founder, OpenHw Labs
"For hobbyists and educators, the Base Model’s Linux compatibility and low entry cost make it one of the best gateways into embedded development. Combined with active community forums and detailed documentation, it lowers the barrier to building real-world projects—from home automation to robotics."
Posted: 2 days ago
"Using the Pro model to run lightweight TensorFlow models at the edge. The 2GB NAND and SRAM combo handles inference tasks smoothly. Real-time core keeps sensor polling stable. Exactly what we needed."
Posted: 10 days ago
"Integrated it into a custom industrial display. FR-4 board feels sturdy, and pinouts are well-labeled. Only wish there was more onboard connectivity, but expansion headers help."
Posted: 3 weeks ago
"Passed EU CE and FCC audits on first submission. Certification support from the supplier was a huge time-saver. Will be reordering for next production batch."
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