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  • IMX RT1061 M7 MCU System on Module
  • IMX RT1061 M7 MCU System on Module
IMX RT1061 M7 MCU System on Module
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IMX RT1061 M7 MCU System on Module

  • 1 - 1999 Pieces
    $11
  • >= 2000 Pieces
    $10.50

IMX RT1061 M7 MCU System on Module

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Microcontroller Unit (MCU) Integration: Equipped with an ARM-based M7 core microcontroller for high-performance processing, enabling complex electronic prototyping and real-time control.
  • Versatile Connectivity: Features USB, memory chips, and power management components, supporting 5V output voltage for stable power delivery and seamless integration with external devices.

Key features

  • 1. Advanced Material Technology

  • With a FR4 fiberglass-reinforced PCB material, ensure durability and reliability in high-stress environments. Comparative hint: Outperforms standard PCBs in thermal and mechanical stability.

  • 2. User-Friendly Interactive Design

  • With a USB interface and multi-connector design, streamline connectivity to computers and peripherals. Comparative hint: Offers 30% more connection options than basic development boards.

  • 3. High-Performance Processing

  • With a high-performance ARM-based microcontroller, achieve faster processing speeds compared to 8-bit microcontrollers. Comparative hint: Processes tasks up to 5x faster in embedded applications.

  • 4. Versatile Scenario Adaptability

  • Designed for prototyping and educational use, adapt to projects ranging from basic circuits to complex systems. Comparative hint: Supports 2x more project types than specialized boards.

  • 5. Industry-Standard Compliance

  • With components adhering to industry norms (e.g., power management and USB standards), ensure compatibility and safety across applications.

Product details

IMX RT1061 M7 MCU System on Module

The IMX RT1061 M7 MCU System on Module is a compact, high-performance development board designed for rapid prototyping and embedded system applications. Built with FR4 material for durability, it features a dense array of components including an ARM Cortex-M7 microcontroller, USB connectivity, and robust power management. With a standardized 5V output voltage, it ensures compatibility with a wide range of peripherals and modules.

Technical specifications

FeatureSpecificationApplication Scenario
MicrocontrollerARM Cortex-M7 CoreReal-time control systems, IoT devices
Output Voltage5VPowering standard peripherals and sensors
ConnectivityUSB InterfaceProgramming, data transfer, and debugging
MaterialFR4 (Fiberglass Reinforced Polyester)Rugged industrial or portable applications
SizeCompact rectangular designSpace-constrained embedded systems

Customization guide

Adjustable component configurations (e.g., memory modules, I/O ports) allow customization to meet specific embedded system requirements, such as enhanced processing power for industrial automation or lightweight setups for educational projects.

Get inspired

With its versatile design and modular architecture, this module is ideal for prototyping smart home devices, industrial sensors, or wearable tech. Its portability and durability make it a go-to tool for both beginners and professionals.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Processing Speed600 MHz600 MHz + 20% overclock600 MHz + 40% overclock*
Memory1MB Flash, 32KB RAM2MB Flash, 64KB RAM4MB Flash, 128KB RAM
ConnectivityUSB, SPIUSB, SPI, I2CUSB, SPI, I2C, CAN
Operating Temp0–70°C0–85°C-40–85°C*

Supplier's note

  1. Technical Breakthroughs:

    • The Pro Model’s industrial-grade operating temperature (-40–85°C) enables deployment in harsh environments like automotive systems.
    • The Advanced Model’s I2C connectivity expands compatibility with sensors and actuators for IoT networks.
    • The Base Model’s 5V output ensures seamless integration with off-the-shelf components, reducing prototyping complexity.
  2. Optimal Version Selection:

    • Beginners/Students: Base Model suffices for learning and simple projects.
    • IoT Developers: Advanced Model’s expanded memory and I2C support suit complex sensor networks.
    • Industrial Users: Pro Model’s enhanced processing and CAN bus connectivity enable robust automation solutions.

With the Pro Model’s overclocked performance, you can process data 40% faster than traditional MCU modules, ideal for real-time analytics. Its CAN bus capability ensures reliable communication in industrial control systems.

Frequently asked questions

  • Which MCU module suits IoT projects needing 5V output and compact design?

  • How to clean connectors on the IMX RT1061 M7 SOM to avoid corrosion?

  • FR4 vs other materials: Which is better for embedded systems?

  • Can I add sensors or expand memory on the IMX RT1061 M7 SOM?

  • Is the IMX RT1061 M7 compliant with RoHS and FCC standards?

  • What’s the power efficiency of the IMX RT1061 M7 at 5V?

  • Can this module handle both prototyping and production-scale projects?

  • Is the IMX RT1061 M7 suitable for teaching embedded systems?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Microcontroller PerformanceReal-time control systemsIndustry Standard: 200MHz ARM Cortex-M4 ▲ Base: 600MHz ARM Cortex-M7 ▲ Advanced: 800MHz ARM Cortex-M7Advanced: 4x faster than Industry Standard for complex algorithmsHigher power draw at advanced speeds (1.2W vs 0.5W Base)
Connectivity OptionsIoT gateways, sensor networksIndustry Standard: USB 2.0 ▲ Base: USB 2.0 + SPI ▲ Advanced: USB 3.0 + CAN + Wi-Fi 6 (IEEE 802.11ax)Advanced: 10x faster data transfer (480Mbps vs 12Mbps Base)Advanced requires external antenna for Wi-Fi (adds cost)
Power ManagementBattery-powered devicesIndustry Standard: 3.3V output ▲ Base: 5V/3.3V adjustable ▲ Advanced: 5V ±5% regulated (IEC 60950)Advanced: 98% efficiency vs 85% Industry StandardFixed 5V output limits compatibility with 3.3V peripherals (Base offers dual)
Memory CapacityIndustrial automationIndustry Standard: 256KB Flash ▲ Base: 512KB Flash ▲ Advanced: 2MB Flash (JEDEC JESD21-C)Advanced: Stores 10x more firmware code than BaseAdvanced version adds $20 to BOM cost
Environmental ResistanceHarsh manufacturing environmentsIndustry Standard: Operating Temp: 0–70°C ▲ Base: -20–85°C ▲ Advanced: -40–105°C (MIL-STD-810G)Advanced: Survives -40°C cold storage without thermal protectionAdvanced requires conformal coating (+$5/unit)
GPIO FlexibilityRobotics prototypingIndustry Standard: 8 GPIO ▲ Base: 20 GPIO ▲ Advanced: 32 GPIO + 8 analog inputs (IEC 60747-8)Advanced: Directly interfaces with 16 more sensors than BaseAdvanced pinout requires custom PCB design

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