MAX78000

PRODUCTION

Artificial Intelligence Microcontroller with Ultra-Low-Power Convolutional Neural Network Accelerator

A New Breed of AI Micro Built to Enable Neural Networks to Execute at Ultra-Low Power

Part Models
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Part Details

  • Dual-Core Ultra-Low-Power Microcontroller
    • Arm Cortex-M4 Processor with FPU up to 100MHz
    • 512KB Flash and 128KB SRAM
    • Optimized Performance with 16KB Instruction Cache
    • Optional Error Correction Code (ECC-SEC-DED) for SRAM
    • 32-Bit RISC-V Coprocessor up to 60MHz
    • Up to 52 General-Purpose I/O Pins
    • 12-Bit Parallel Camera Interface
    • One I2S Master/Slave for Digital Audio Interface
  • Neural Network Accelerator
    • Highly Optimized for Deep Convolutional Neural Networks
    • 442k 8-Bit Weight Capacity with 1,2,4,8-Bit Weights
    • Programmable Input Image Size up to 1024 x 1024 pixels
    • Programmable Network Depth up to 64 Layers
    • Programmable per Layer Network Channel Widths up to 1024 Channels
    • 1 and 2 Dimensional Convolution Processing
    • Streaming Mode
    • Flexibility to Support Other Network Types, Including MLP and Recurrent Neural Networks
  • Power Management Maximizes Operating Time for Battery Applications
    • Integrated Single-Inductor Multiple-Output (SIMO) Switch-Mode Power Supply (SMPS)
    • 2.0V to 3.6V SIMO Supply Voltage Range
    • Dynamic Voltage Scaling Minimizes Active Core Power Consumption
    • 22.2µA/MHz While Loop Execution at 3.0V from Cache (CM4 Only)
    • Selectable SRAM Retention in Low-Power Modes with Real-Time Clock (RTC) Enabled
  • Security and Integrity
    • Available Secure Boot
    • AES 128/192/256 Hardware Acceleration Engine
    • True Random Number Generator (TRNG) Seed Generator
MAX78000
Artificial Intelligence Microcontroller with Ultra-Low-Power Convolutional Neural Network Accelerator
MAX78000 Block Diagram
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Software Resources


Tools & Simulations


Evaluation Kits

eval board
MAX78000EVKIT

Evaluation Kit for the MAX78000

Features and Benefits

  • Power Accumulator with Dedicated Display to Track Device Power over Time
  • Onboard Digital Microphone
  • Onboard Accelerometer/Gyroscope
  • SWD JTAG 10-Pin Header
  • RISC-V Coprocessor JTAG 10-Pin Header
  • 16M-Byte QSPI Flash
  • Select GPIOs Accessible through 0.1in Headers
  • Four ADC Inputs with Optional AA Filter
  • Touch-Enabled, 3.5in, 320 x 240 Color TFT Display
  • UART Access through USB Bridge
  • QSPI Memory Access through USB Bridge
  • All IC Power Rails May Be Isolated by Jumpers for Individual Current Measurements
  • Two General-Purpose LEDs and Two General- Purpose Pushbutton Switches

Product Details

The MAX78000 evaluation kit (EV kit) provides a platform for leveraging the capabilities of the MAX78000 to build new generations of artificial intelligence (AI) devices.

Onboard hardware includes a digital microphone, a gyroscope/ accelerometer, parallel camera module support and a 3.5in touch-enabled color TFT display. A secondary dis- play is driven by a power accumulator for tracking device power consumption over time. Uncommitted GPIO as well as analog inputs are readily accessible through 0.1in pin headers. Primary system power as well as UART access is provided by a USB Micro-B connector. A USB to SPI bridge provides rapid access to onboard memory, allow- ing large networks or images to load quickly.

Applications

  • Audio Processing: Multi-Keyword Recognition, Sound Classification, Noise Cancellation
  • Facial Recognition
  • Object Detection and Classification
  • Time-Series Data Processing: Heart Rate/Health Signal Analysis, Multi-Sensor Analysis, Predictive Maintenance

eval board
MAX78000FTHR

Evaluation Kit for the MAX78000

Features and Benefits

  • MAX78000 Microcontroller
    • Dual Core: Arm Cortex-M4 Processor with FPU, 100MHz, RISC-V Coprocessor, 60MHz
    • 512KB Flash Memory
    • 128KB SRAM
    • 16KB Cache
    • Convolutional Neural Network Accelerator
    • 12-Bit Parallel Camera Interface
    • MAX20303 Wearable PMIC with Fuel Gauge
    • Charge from USB
    • On-Board DAPLink Debug and Programming Interface for Arm Cortex-M4 processor with FPU
    • Breadboard Compatible Headers
    • Micro USB Connector
    • Micro SD Card Connector
  • Integrated Peripherals
    • RGB Indicator LED
    • User Pushbutton
    • CMOS VGA Image Sensor
    • Low-Power Stereo Audio CODEC
    • Digital Microphone
    • SWD Debugger
    • Virtual UART Console
    • 10-Pin Cortex Debug Header for RISC-V Coprocessor

Product Details

The MAX78000FTHR is a rapid development platform to help engineers quickly implement ultra low-power, artificial intelligence (AI) solutions using the MAX78000 Arm® Cortex® M4F processor with an integrated Convolutional Neural Network accelerator. The board also includes the MAX20303 PMIC for battery and power management. The form factor is 0.9in x 2.6in dual-row header footprint that is compatible with Adafruit Feather Wing peripheral expansion boards. The board includes a variety of peripherals, such as a CMOS VGA image sensor, digital microphone, low-power stereo audio CODEC, 1MB QSPI SRAM, micro SD card connector, RGB indicator LED, and pushbutton. The MAX78000FTHR provides a power-optimized flexible platform for quick proof-of-concepts and early software development to enhance time to market.

Go to https://www.maximintegrated.com/en/products/MAX78000FTHR to get started developing with this board.

Applications

  • Audio Processing: Multi-Keyword Recognition, Sound Classification, Noise Cancellation
  • Facial Recognition
  • Object Detection and Classification
  • Time-Series Data Processing: Heart Rate/Health Signal Analysis, Multi-Sensor Analysis, Predictive Maintenance

eval board
Voyager 4

Wireless Asset Health Monitoring with Edge AI

Features and Benefits

The MEMS-based Wireless Vibration Monitoring Platform is a complete evaluation solution that includes:

  • Intelligent, smarter, and secure decisions at the EDGE
  • Decision making at the edge reduces network overhead and improves battery life
  • Mechanical mounting and measurement capability up to 8 kHz bandwidth
  • 3-axis ultra-low power, ultra-low noise MEMS accelerometer technology
  • Ultra-low power microcontroller and robust low power Bluetooth Low Energy (BLE) technology

It enables users to:

  • Develop and deploy artificial intelligence at the EDGE
  • Rapidly deploy a wireless solution to a machine or test setup
  • Evaluate ADI MEMS sensor technology for vibration monitoring
  • Evaluate ADI BLE technology for industrial wireless sensing
  • Accelerate asset monitoring and solution development
  • Evaluate and develop EDGE AI solutions for industrial condition-based monitoring

Product Details

Voyager 4 uses triaxial digital out MEMS sensors including the ADXL382 and ADXL367. The design also includes the MAX32666 BLE and MAX78000 AI microcontrollers. Flexible and PCB area efficient PMIC power devices have been added as load switches for enhanced wireless sensor power savings. A BLE 5.3 Adapter with Antenna is included in every Voyager4 kit. Voyager4 uses BLE which makes it compatible with any PC with a Bluetooth Radio, but to ensure optimal performance and range, using the adapter when communicating with Voyager4 is recommended.

The solution operates in two modes:

Data Collection/Streaming mode – In this mode, the data is sent to the Host PC for AI model development.

Normal Operation/AI mode – In this mode, the anomaly alert is sent to the Host PC and user can decide to gather more ADXL382 data.

eval board
MAX78000CAM02

Evaluation Kit for MAX78000

Features and Benefits

  • MAX78000 Microcontroller
    • Dual Core: Arm Cortex-M4 Processor with FPU andRISC-V Coprocessor
    • 512KB Flash Memory
    • 128KB SRAM
    • 16KB Cache
    • CNN Accelerator
  • CMOS VGA (640×480) Image Sensor Module
  • Single 3.3V Power Supply Input
  • Additional On-Board CNN Power Supply
  • SWD 10-Pin Header for Programming and Debug
  • JST SH 4-Pin Connector
  • I2C Controller/Target Operation
  • Full-Duplex UART
  • Two Indicator LEDs

Product Details

The MAX78000CAM02 is a miniature artificial intelligence (AI) at the edge development platform designed for image processing applications. Measuring just 0.4in by 0.9in, it is ideal for developing and prototyping edge AI applications. The platform is built around the MAX78000 microcontroller, which features an Arm® Cortex®-M4F core with a convolutional neural network (CNN) accelerator.

Additionally, the board includes a VGA resolution CMOS image sensor. This configuration allows for capturing images and processing them with AI models directly on the board without the need for external hardware or communication links.

The platform operates with a single 3.3V DC power source with all necessary power circuits integrated on the board, and it uses a JST SH 4-pin connector for the power supply connection.

To get started developing with this board, go to Analog Devices MSDK Documentation.

MAX78000EVKIT
Evaluation Kit for the MAX78000
MAX78000EVKIT: Board Photo
MAX78000FTHR
Evaluation Kit for the MAX78000
MAX78000FTHR Photo
Voyager 4
Wireless Asset Health Monitoring with Edge AI
VOYAGER 4 Board Photo Front 1 View VOYAGER 4 Board Photo Angle View Voyager 4 Block Diagram
MAX78000CAM02
Evaluation Kit for MAX78000
MAX78000CAM02 Board Photo Angle View MAX78000CAM02 Board Photo Top View MAX78000CAM02 Board Photo Bottom View

Reference Designs

MAXREFDES178: Artificial Intelligence Applications
MAXREFDES178 Circuits from the lab

Artificial Intelligence Applications

Features and Benefits

  • Two MAX78000 ARM Cortex M4F Microcontrollers with CNN Accelerator
  • BLE5 Wireless Connectivity
  • Li-Ion Battery Powered
  • Color Image Sensor
  • Digital Microphone
  • Multiple audio codecs with stereo audio input and output
  • Color TFT Capacitive Touch LCD
  • Micro SD Connector
  • On-Board QSPI FLASH and QSPI SRAM
MAXREFDES178
Artificial Intelligence Applications
MAXREFDES178: Artificial Intelligence Applications

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