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DJI RoboMaster S1 Educational Robot

  • 46 Programmable Components
  • 6 Programmable AI Modules
  • Low-latency HD FPV
  • Scratch & Python Coding
  • 4WD Omnidirectional Movement
  • Intelligent Sensing Armor
  • Multiple Exciting Battle Modes
  • Innovative Hands-On Learning
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DJI RoboMaster S1 Educational Robot

DJI RoboMaster S1 Educational Robot. The RoboMaster S1 is a game-changing educational robot built to unlock the potential in every learner. Inspired by DJI’s annual RoboMaster robotics competition, the S1 provides users with an in-depth understanding of science, math, physics, programming, and more through captivating gameplay modes and intelligent features.

DJI-RoboMaster-S1-Educational-Robot

Designed to Win

The S1ā€˜s design is a striking example of machine efficiency. With powerful configurations, the S1 lets you create, conquer, and push your limits as far as youā€™re ready to go.

Intelligent Controller

Using a powerful CPU, the Intelligent Controller can simultaneously support functions such as low-latency high-definition image transmission, AI computing, and programming development. It also coordinates transmission seamlessly to execute command signals.

Blaster

The S1 Blaster uses LED lights to outline launch trajectories for its gel beads and infrared beams. Vivid sound effects and recoil action add to the experience for an immersive battle simulation. For added safety, the Blaster uses non-toxic gel bead projectiles and even features limitations on launching rate and angle.

2-Axis Motorized Gimbal

The gimbalā€™s yaw/pitch rotation range is 540Ā° Ɨ 65Ā°, offering an expansive field of view for the FPV camera. The built-in direct drive brushless motor works together with the IMU and advanced algorithms to allow gimbal movements with a vibration control accuracy within Ā±0.02Ā°, delivering smooth image transmission and a precision control experience.

Mecanum Wheels

The S1 comes with four Mecanum wheels, each with 12 rollers that allow omnidirectional movement and precision control. Front axes suspension allows for added versatility during operation.

High-Performance Motor

The S1 comes with a customized M3508I motor that features an integrated FOC ESC with an output torque of up to 250 mNā€¢m. Linear Hall-effect sensors with advanced algorithms allow closed-loop control for added precision. Additional safety mechanisms deliver outstanding stability.

Intelligent Sensing Armor

Six intelligent armor panels cover the S1 to detect gel bead or infrared beam strikes. The referee system can analyze and communicate hit data, incorporating it into gameplay in real time.

Learn by Doing

The RoboMaster S1 bridges the digital world with the real one, bringing abstract theories to life through practical operations. The S1 supports Scratch and Python programming languages, allowing users to experience math, physics, and AI technology in a cutting-edge and inspiring way.

Scratch & Python Programming

The S1 supports the Scratch and Python programming languages. This allows you to take your abilities to the next level, whether you are new to coding or are already on your way to becoming an expert.

Scratch 3.0: Classic visual programming language used in primary and secondary schools worldwide.

Python: Widely used in the field of artificial intelligence.

Powerful programming blocks enable you to explore a series of new functions with your S1. For example, new Scratch blocks for line follow allow the S1 to make turns at T-junctions and intersecting roads. Additionally, with new Scratch and Python interfaces for the speaker module, you can add musical notes to the action or even write a song for your S1 to play.

Endless Possibilities

Up to 46 customizable components give you unlimited space for innovation, enabling you to grow and learn in an exciting way that expands the capabilities of your S1, and yourself. Six PWM ports and one SBus port support customized accessories, granting further options.

DJI-RoboMaster-S1-Educational-Robot

Experience AI Technology

AI technology lets the S1 recognize gestures, sounds, and even other S1 robots. Playing with the RoboMaster S1 opens the doorway to AI learning, giving you a practical introduction to the technologies of tomorrow.

Get Started with Automatic Driving

By utilizing Vision Markers to create “traffic lights” and other obstacles, users can write their own programs that allow the S1 to drive automatically and execute complex tasks. Explore mathematical principles involving robotic control and motion mechanics through the S1’s six programmable artificial intelligence modules. Get an in-depth understanding of AI as you develop these skills and many more.

RoboMaster Robotics Competition

The S1 was inspired by DJIā€™s annual RoboMaster robotics competition. Since being founded in 2015, over 20,000 students from more than 400 schools have participated in this thrilling competition that tests wit, engineering, and problem-solving skills.

The World is Your Arena

Build your own competition arena anywhere, anytime and enjoy a variety of gameplay modes with an immersive FPV experience unlike any other. You can even record and share all the action with the touch of a button.

Develop Custom Skills

In any competition, wisdom is equally as important as power. The S1 enables users to apply their classroom knowledge to compile custom coding, unlocking unique functions that will surprise onlookers and defeat competitors. With its new education concept, the S1 helps users embrace the joy of learning in new and exciting ways.

Intercom

The new Intercom feature lets you enjoy voice interactions with friends nearby. You can also pre-record audio files in the RoboMaster app on your mobile device and play them on the S1, unlocking an array of exciting new possibilities.

RoboMaster App

With the dedicated RoboMaster app, multi-platform interactions and various operation methods for the S1 are supported, along with rich educational resources and several competition modes.

Download

DJI RoboMaster S1 Specification

Camera

  • FOV: 120Ā°
  • Max Still Photo Resolution: 2560Ɨ1440
  • Max Video Resolution: FHD: 1080/30fps
    HD: 720/30fps
  • Max Video Bitrate: 16 Mbps
  • Photo Format: JPEG
  • Video Format: MP4
  • Sensor: CMOS 1/4ā€³; Effective pixels: 5 MP
  • Operating Temperature Range: -10 to 40 Ā°C (14 to 104 Ā°F)

Narrow Infrared Units

  • Effective RangeĀ [1]: 6 m (in indoor lighting conditions)
  • Effective Area: Varies from 10Ā° to 40Ā°
    Effective area decreases as distance from the target increases.

Wide Infrared Units

  • Effective RangeĀ [1]: 3 m (in indoor lighting conditions)
  • Effective Width: 360Ā° (in indoor lighting conditions)

Hit Detector

  • Detection Requirements: For the Hit Detector to be activated, the following conditions must be met: Gel bead diameter ā‰„ 6mm, launching speed ā‰„20m/s, and the angle between the hit direction and hit detector plane is no less than 45Ā°.
  • Maximum Detection Frequency: 15 Hz

S1

  • Weight: Approx. 3.3 kg
  • Dimensions: 320Ɨ240Ɨ270 mm (length Ɨ width Ɨ height)
  • Chassis Speed Range: 0-3.5 m/s (forward)
    0-2.5 m/s (backward)
    0-2.8 m/s (sideways)
  • Max Chassis Rotational Speed: 600Ā°/s

M3508I Brushless Motor

  • Max Rotational Speed: 1000 rpm
  • Max Torque: 0.25NĀ·m
  • Max Output Power: 19 W
  • Operating Temperature Range: -10 to 40 Ā°C (14 to 104 Ā°F)
  • Driver: FOC
  • Control Method: Closed-loop speed control
  • Protection: Overvoltage protection
    Overtemperature protection
    Soft-start
    Short-circuit protection
    Chip and sensor anomaly detection

Blaster

  • Controllable Launching Frequency: 1-8/s
  • Max Launching Frequency: 10/s
  • Initial Launching Speed: Approx. 26 m/s
  • Average Load: Approx. 430

Gimbal

  • Controllable Range: Pitch: -20Ā° to +35Ā°
    Yaw: Ā±250Ā°
  • Mechanical Range: Pitch: -24Ā° to +41Ā°
    Yaw: Ā±270Ā°
  • Max Rotational Speed: 540Ā°/s
  • Vibration Control Precision (on the flat surface and with the Blaster idle): Ā±0.02Ā°

Intelligent Controller

  • LatencyĀ [2]: Connection via Wi-Fi: 80-100ms
    Connection via Router: 100-120ms
    (unobstructed, free of interference)
  • Live View Quality: 720p/30fps
  • Max Live View Bitrate: 6 Mbps
  • Operating FrequencyĀ [3]: 2.4 GHz, 5.1 GHz, 5.8 GHz
  • Operating Mode: Connection via Wi-Fi, Connection via Router
  • Max Transmission DistanceĀ [4]: Connection via Wi-Fi:
    FCC, 2.4 GHz 140 mļ¼Œ8 GHz 90 m
    CE, 2.4 GHz 130 mļ¼Œ5.8 GHz 70 m
    SRRC, 2.4 GHz 130 mļ¼Œ5.8 GHz 90 m
    MIC, 2.4 GHz 130 mConnection via Router:
    FCC, 2.4 GHz 190 mļ¼Œ5.8 GHz 300 m
    CE, 2.4 GHz 180 mļ¼Œ5.8 GHz 70 m
    SRRC, 2.4 GHz 180 mļ¼Œ5.8 GHz 300 m
    MIC,2.4 GHz 180 m
  • Transmission Power (EIRP): 2.400-2.4835 GHz
    FCC: ā‰¤30 dBm
    SRRC: ā‰¤20 dBm
    CE: ā‰¤19 dBm
    MIC: ā‰¤20 dBm150-5.250 GHz
    FCC: ā‰¤30 dBm
    SRRC: ā‰¤23 dBm
    CE: ā‰¤20 dBm
    MIC: ā‰¤23 dBm5.725-5.850 GHz
    FCC: ā‰¤30dBm
    SRRC: ā‰¤30dBm
    CE: ā‰¤14 dBm
  • Transmission Standard: IEEE802.11a/b/g/n

Intelligent Battery

  • Capacity: 2400mAh
  • Nominal Charging Voltage: 10.8 V
  • Maximum Charging Voltage: 12.6 V
  • Battery Type: LiPo 3S
  • Energy: 25.92Wh
  • Weight: 169 g
  • Operating Temperature Range: -10 to 40 Ā°C (14 to 104 Ā°F)
  • Charging Temperature Range: 5 to 40 Ā°C (41 to 104 Ā°F)
  • Maximum Charging Power: 29 W
  • Battery Life in Use: 35 minutes (measured at a constant speed of 2 m/s on a flat surface)
  • Battery Life on Standby: Approx. 100 minutes

Charger

  • Input: 100-240 V, 50-60Hz, 1A
  • Output: Port: 12.6 V=0.8A or 12.6 V=2.2A
  • Voltage: 12.6 V
  • Rated Voltage: 28 W

Gel Bead

  • Diameter: 5.9-6.8 mmĀ [2]
  • Weight: 0.12-0.17 gĀ [2]

App

  • App: RoboMaster
  • iOS: iOS 10.0.2 or later
  • Android: Android 5.0 or later

Router

  • Recommended Routers: TP-Link TL-WDR8600; TP-Link TL-WDR5640 (China)
    TP-Link Archer C7; NETGEAR X6S (International)
  • Recommended outdoor power supply solution for routers: Laptop Power Bank (match the input power of the router)

microSD card

Supported SD Cards: Supports microSD cards with a capacity up to 64GB

Others

Notes

  1. Use of the infrared units will be affected in outdoor or infrared-intensive environment.
  2. Measured in an interference-free and unobstructed environment with a distance of approximately one meter between the mobile device, the router, and the S1. The iOS device used was an iPhone X. The results of testing with different Android device may be different.
  3. Outdoor use of the 5.1 GHz and 5.8 GHz frequency bands is prohibited in some areas. Always follow all local laws and regulations in your country or region.
  4. Measured in an interference-free and unobstructed environment. For Connection via Wi-Fi, the mobile device used for testing was a sixth-generation iPad (released in 2018). For Connection via Router, several router models were used for testing. FCC: TP-Link Archer C9; SRRC: TP-Link WDR8600; CE: TP-Link Archer C7; MIC: WSR-1160DHP3.
  5. The gel beads will swell to a usable size after being soaked in water for four hours.

See moreĀ Robot Drones

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