M5Stack K138

M5Stamp Fly Drone Development Kit User Manual

Model: M5Stamp Fly (K138)

Introduction

The M5Stamp Fly is an advanced, open-source quadcopter development kit designed for education, research, and various drone development projects. It features the powerful M5StampS3 as its main controller, integrating a comprehensive suite of sensors for precise flight control and environmental interaction. This manual provides essential information for setting up, operating, maintaining, and troubleshooting your M5Stamp Fly kit.

It is recommended to use the M5Stamp Fly with an M5Atom Joystick Bluetooth Controller (sold separately) for optimal control and functionality.

Produit terminéview

The M5Stamp Fly kit is engineered with a focus on programmability and sensor integration, making it a versatile platform for drone enthusiasts and developers.

M5Stamp Fly Drone Development Kit with M5StampS3 controller and propellers.

Un surcoût view of the M5Stamp Fly drone, showcasing its compact design, four propellers with protective guards, and the central M5StampS3 controller board. The board features various components and connectors, including a USB port.

Caractéristiques principales :

  • Contrôleur principal: M5StampS3 with ESP32-S3 microcontroller, offering advanced features such as WiFi and OTG/CDC support.
  • Capteurs intégrés :
    • BMI270 6-axis gyroscope and BMM150 3-axis magnetometer for attitude and direction detection.
    • BMP280 barometric pressure sensor for precise altitude hold.
    • Two VL53L3 distance sensors for obstacle avoidance.
    • PMW3901MB-TXQT optical flow sensor for hovering and displacement detection.
    • INA3221AIRGVR for real-time current/voltage surveillance.
  • Système du pouvoir: 300mAh high-voltage lithium battery and four high-speed coreless motors.
  • Éléments interactifs : Built-in passive buzzer for audio feedback, WS2812 RGB LEDs for status indication, and a reset button.
  • Expansion: Two Grove connectors for additional sensors and peripherals, enabling extensive customization.
  • Contrôle: Preloaded with debugging firmware, controllable via ESP-NOW protocol (e.g., with M5Atom Joystick). Supports automatic and manual flight modes.
  • Open-Source: Firmware source code is open-source, facilitating learning and development.

Guide d'installation

1. Déballage et inspection

Carefully remove all components from the packaging. Verify that all items listed in the product description are present and undamaged. The kit includes the M5Stamp Fly drone and a 300mAh lithium battery.

2. Installation et chargement de la batterie

  • Locate the battery connector on the M5Stamp Voler.
  • Connect the provided 300mAh lithium battery to the drone's battery port. Ensure the polarity is correct.
  • Before first use, fully charge the battery using a compatible USB charger connected to the drone's USB-C port. The charging indicator (if present, typically an LED) will change status upon full charge.

3. Initial Power On and Firmware Check

  • Once the battery is connected, the drone should power on. Observe the WS2812 RGB LEDs for initial status indications.
  • The M5Stamp Fly comes preloaded with debugging firmware. For advanced development or custom firmware, refer to the official M5Stack documentation and GitHub repositories for flashing instructions.

4. Connecting to a Controller (e.g., M5Atom Joystick)

  • If using an M5Atom Joystick (sold separately), ensure it is also powered on and configured for ESP-NOW communication.
  • Follow the pairing instructions provided with your M5Atom Joystick to establish a connection with the M5Stamp Fly. This typically involves a specific button sequence or software configuration.

Mode d'emploi

1. Liste de contrôle avant le vol

  • Assurez-vous que la batterie est complètement chargée.
  • Vérifiez que toutes les hélices sont bien fixées et exemptes de dommages.
  • Vérifiez que la zone de vol est dégagée de tout obstacle et de toute personne.
  • Ensure the M5Stamp Fly and your controller are properly paired and communicating.

2. Modes de vol

The M5Stamp Fly supports both automatic and manual flight modes, depending on the loaded firmware and controller capabilities.

  • Mode automatique : Utilizes integrated sensors (VL53L3 for distance, BMP280 for altitude, PMW3901MB-TXQT for optical flow) to assist with stable hovering, altitude hold, and obstacle avoidance. This mode is ideal for beginners or for precise maneuvers like flips.
  • Mode manuel : Provides direct control over the drone's movements, relying more on user input. This mode is suitable for experienced users or for custom flight patterns.

3. Basic Flight Controls (with M5Atom Joystick example)

While specific controls may vary based on firmware and controller, typical drone controls include:

  • Throttle (Vertical Movement): Typically controlled by the left joystick (up/down).
  • Lacet (Rotation) : Typically controlled by the left joystick (left/right).
  • Pitch (Forward/Backward): Typically controlled by the right joystick (up/down).
  • Roll (Left/Right Sideways Movement): Typically controlled by the right joystick (left/right).
  • Décollage/Atterrissage : Often a dedicated button or a specific joystick combination.
  • Flips/Special Maneuvers: Activated via specific button presses or joystick movements in automatic mode.

Always refer to the specific documentation for the firmware loaded on your M5Stamp Fly and your chosen controller for detailed control mapping.

4. Sensor Utilization

  • VL53L3 Distance Sensors: Used for obstacle detection and avoidance. The drone can be programmed to automatically adjust its flight path when an obstacle is detected within a certain range.
  • BMP280 Barometric Pressure Sensor: Provides accurate altitude readings, enabling stable altitude hold functionality.
  • PMW3901MB-TXQT Optical Flow Sensor: Essential for precise hovering and displacement detection, especially in indoor environments where GPS signals are unavailable.

Entretien

1. Entretien de la batterie

  • Always use the recommended charging method.
  • Ne surchargez pas et ne déchargez pas excessivement la batterie.
  • Conservez les batteries dans un endroit frais et sec, à l'abri de la lumière directe du soleil et des températures extrêmes.
  • Si la batterie gonfle ou présente des signes de dommages, cessez immédiatement de l'utiliser et jetez-la correctement.

2. Inspection et remplacement de l'hélice

  • Regularly inspect propellers for cracks, bends, or chips. Damaged propellers can affect flight stability and efficiency.
  • To replace a propeller, gently pull the old one off the motor shaft and push a new one firmly into place. Ensure the correct propeller type (clockwise/counter-clockwise) is installed on the correct motor.

3. Nettoyage

  • Use a soft, dry cloth to clean the drone's body and components.
  • Avoid using liquid cleaners or solvents, as they may damage electronic components.
  • Gently remove any dust or debris from sensors and motor areas using a soft brush or compressed air.

4. Mises à jour du micrologiciel

Periodically check the official M5Stack website or GitHub repository for firmware updates. Updates can improve performance, add new features, or fix bugs. Follow the provided instructions carefully when performing firmware updates.

Dépannage

ProblèmeCause possibleSolution
Le drone ne s'allume pas.Batterie non connectée ou déchargée.Ensure battery is securely connected and fully charged.
Le drone ne répond pas à la télécommande.Not paired, out of range, or controller battery low.Re-pair the drone and controller. Ensure they are within range. Charge controller battery.
Vol instable ou dérive.Damaged propellers, uncalibrated sensors, or uneven motor thrust.Inspect and replace damaged propellers. Perform sensor calibration (if supported by firmware). Check for debris in motors.
L'évitement d'obstacles ne fonctionne pas.VL53L3 sensors obstructed or firmware issue.Clean sensor lenses. Verify obstacle avoidance is enabled in firmware settings.
Temps de vol court.Battery degradation or inefficient flight.Ensure battery is fully charged. Consider replacing old batteries. Optimize flight patterns.

Caractéristiques

FonctionnalitéDétail
MarqueM5Stack
Nom du modèleM5Stamp Voler
Numéro de modèleK138
Contrôleur principalM5StampS3 (ESP32-S3)
ConnectivitéBluetooth, USB, Wi-Fi (ESP-NOW protocol for control)
Batterie300mAh High-Voltage Lithium Battery (Included)
MoteursFour High-Speed Coreless Motors
CapteursBMI270 (6-axis Gyroscope), BMM150 (3-axis Magnetometer), BMP280 (Barometric Pressure), 2x VL53L3 (Distance), PMW3901MB-TXQT (Optical Flow), INA3221AIRGVR (Current/Voltage Surveillance)
Dimensions3.2 po L x 3.2 po l x 1.22 po H (environ)
Poids de l'article36.8 grammes (environ 1.3 onces)
MatérielFibre de carbone, plastique
Tranche d'âge (description)10+ ans
Niveau de compétenceIntermédiaire
Portée maximale3 Meters (Control range, may vary with environment)
Température de fonctionnementJusqu'à 40 degrés Celsius

Garantie et assistance

Pour obtenir des informations détaillées sur la garantie, veuillez consulter le site officiel de M5Stack. website or the documentation included with your purchase. M5Stack provides resources and support for their open-source products.

For technical support, firmware updates, and community forums, please visit the M5Stack Officiel Website ou leur Dépôt GitHub.

Additional protection plans may be available for purchase from your retailer. Please check with your point of purchase for details on extended warranties or service plans.

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