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  • Keyestudio Two Wheel Self Balancing Robot Car for Arduino Robot Car With Mobile Phone Remote Control Self-Balancing Robotics Car
  • Keyestudio Two Wheel Self Balancing Robot Car for Arduino Robot Car With Mobile Phone Remote Control Self-Balancing Robotics Car
  • Keyestudio Two Wheel Self Balancing Robot Car for Arduino Robot Car With Mobile Phone Remote Control Self-Balancing Robotics Car
  • Keyestudio Two Wheel Self Balancing Robot Car for Arduino Robot Car With Mobile Phone Remote Control Self-Balancing Robotics Car
  • Keyestudio Two Wheel Self Balancing Robot Car for Arduino Robot Car With Mobile Phone Remote Control Self-Balancing Robotics Car
  • Keyestudio Two Wheel Self Balancing Robot Car for Arduino Robot Car With Mobile Phone Remote Control Self-Balancing Robotics Car
Keyestudio Two Wheel Self Balancing Robot Car for Arduino Robot Car With Mobile Phone Remote Control Self-Balancing Robotics Car

Keyestudio Two Wheel Self Balancing Robot Car for Arduino Robot Car With Mobile Phone Remote Control Self-Balancing Robotics Car

$37.00-$45.00/ Piece|1 Piece/Pieces(Min. Order)

Customization:

Customized logo(Min.Order: 500 pieces)
Customized packaging(Min.Order: 500 pieces)
Graphic customization(Min.Order: 500 pieces)

Keyestudio Two Wheel Self Balancing Robot Car for Arduino Robot Car With Mobile Phone Remote Control Self-Balancing Robotics Car

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Self-Balancing Technology: Equipped with advanced sensors and a microcontroller board, the robot car maintains balance dynamically, enabling stable movement even on uneven surfaces.
  • Arduino Compatibility & Remote Control: Designed for Arduino integration, it supports mobile phone remote control via Bluetooth, allowing users to program and adjust speed, direction, and balancing parameters.
  • Educational Robotics Kit: Includes a transparent acrylic chassis for visible component access, facilitating hands-on learning of electronics, mechanics, and coding principles.

Key features

  • 1. Transparent Educational Design

  • With a clear acrylic chassis and transparent cover, you can easily observe internal components like motors, sensors, and wiring, fostering hands-on learning of robotics and electronics.

  • 2. Bluetooth-Compatible Remote Control

  • With smartphone remote control via Bluetooth, you can operate the car intuitively, enjoying seamless wireless control compared to traditional wired setups*.

  • 3. Advanced Self-Balancing Technology

  • With precision-balancing algorithms, you can maintain stability even during tilts or uneven terrain, offering superior performance compared to standard two-wheel models*.

  • 4. Customizable Educational Platform

  • Designed for education and hobbyist scenarios, you can experiment with sensors, motors, and programming to create unique functionalities, adapting to diverse project needs.

  • 5. Safety-Certified Materials

  • With RoHS and CE certifications, you can ensure compliance with environmental and safety standards, guaranteeing reliable and responsible use.

Product details

Keyestudio Two Wheel Self Balancing Robot Car for Arduino Robot Car With Mobile Phone Remote Control Self-Balancing Robotics Car

The Keyestudio Two Wheel Self Balancing Robot Car is an educational robotics kit designed for learners and hobbyists to explore robotics, electronics, and programming. Equipped with a transparent acrylic chassis, Bluetooth remote control, and advanced self-balancing algorithms, this kit offers hands-on experience in building and customizing a functional robot. Certified to RoHS and CE standards, it ensures safety and compliance for educational use.

Technical specifications

FeatureSpecificationApplication Scenario
Chassis MaterialClear acrylic with transparent coverEasy visibility of internal components
WheelsBlue-rimmed, black-tread rubber tiresEnhanced traction and durability
Control SystemArduino-compatible microcontrollerProgramming and sensor integration
Power SourceRechargeable battery packPortable operation for classroom/hobby use
CertificationsRoHS, CESafe for educational and DIY projects
Balancing SystemDual-axis gyroscope + PID algorithmStable self-balancing in dynamic scenarios

Customization guide

Adjustable parameters include PID tuning values for balancing sensitivity and Bluetooth pairing protocols to optimize remote control responsiveness. Users can also modify the chassis design or sensor configurations to suit specific project needs (e.g., adding obstacle detection).

Get inspired

With its transparent chassis and modular design, this robot car is perfect for demonstrating robotics principles. Experiment with code to adjust speed, balance, or add features like voice control or autonomous navigation.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Motor Power12W18W (+50%)24W (+100%)
Sensor SuiteGyroscopeGyroscope + UltrasonicGyroscope + IMU + LiDAR
Bluetooth Range10m30m (+200%)50m (+400%)
Customization LevelBasic firmwareAdvanced codingFull API access

Supplier's note

  1. Three Technical Breakthroughs:

    • Self-Balancing Algorithm: The dual-axis gyroscope and PID system enable stable balance even at high speeds, surpassing basic hobbyist kits.
    • Extended Bluetooth Range: The Pro model’s 50m range allows operation in large spaces, ideal for competitions or exhibitions.
    • Transparent Chassis Design: Unlike opaque kits, the acrylic structure simplifies troubleshooting and educational demonstrations.
  2. Optimal Version Selection:

    • Base Model: Best for beginners learning Arduino basics and simple balancing logic.
    • Advanced Model: Suitable for schools and hobbyists needing obstacle-avoidance features for robotics clubs.
    • Pro Model: Engineers and advanced users can leverage LiDAR and full API access for complex projects like autonomous navigation.

With the Pro model’s LiDAR and 24W motors, you can build robots capable of navigating uneven terrain. The Advanced Model’s ultrasonic sensors allow safe operation near obstacles, making it perfect for classroom group projects. Choose the Base Model to start mastering PID tuning fundamentals.

Frequently asked questions

  • Which Keyestudio self-balancing robot car model is best for educational robotics projects?

  • How do I clean and maintain the Keyestudio self-balancing car’s electronic components?

  • Why does the Keyestudio kit use acrylic instead of plastic for the chassis?

  • Can I customize the Keyestudio robot car with additional sensors or motors?

  • Is the Keyestudio self-balancing car RoHS and CE certified for safe use?

  • What’s the Bluetooth range for remote control in the Keyestudio robot car?

  • Is the Keyestudio self-balancing car suitable for beginners?

  • How does the self-balancing feature work in the Keyestudio robot car?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Self-Balancing TechnologyEducational robotics projects, hobbyist builds
Industry Standard: 3-axis gyro (±150°/s)
Our Base: 6-axis IMU (±2000°/s ▲)
Our Advanced: 9-axis IMU (±3000°/s ▲▲)
(ISO 9001 certified)
▲▲ Enhanced stability for complex maneuvers (e.g., inclines, uneven terrain)
Base: Affordable entry-level balance control
▲ Advanced requires advanced programming skills for full utilization
Control MethodRemote-controlled applications, IoT integration
Industry Standard: Wired/IR remote (5m range)
Our Base: Bluetooth 4.0 (10m range ▲)
Our Advanced: Bluetooth 5.0 + Wi-Fi (30m + remote access ▲▲)
(2.4GHz frequency)
▲▲ Seamless smartphone/tablet control (e.g., via app)
Base: Easy setup for beginners
▲ Advanced consumes more battery power (15% higher drain)
CompatibilityArduino-based projects, cross-platform use
Industry Standard: Proprietary software
Our Base: Arduino IDE v2.0+ (▲)
Our Advanced: Arduino + Raspberry Pi ▲▲
(Supports Python/Blockly)
▲▲ Flexibility for advanced coding (e.g., Python scripts for automation)
Base: Ideal for STEM education
▲ Advanced requires intermediate coding knowledge
Sensor SuiteObstacle detection, environmental monitoring
Industry Standard: Basic IR sensors
Our Base: IR + ambient light sensors ▲
Our Advanced: IR + ultrasonic + light ▲▲
(Distance detection: 2-400cm)
▲▲ Customizable for robotics competitions (e.g., autonomous navigation)
Base: Sufficient for basic projects
▲ Advanced adds cost (~20% pricier)
Durability/Build QualityClassroom use, outdoor testing
Industry Standard: Plastic chassis (MIL-STD-810G ▲)
Our Base: Reinforced ABS (▲)
Our Advanced: Polycarbonate + rubberized edges ▲▲
(IP54 water/dust resistance)
▲▲ Rugged for rugged environments (e.g., school labs)
Base: Lightweight yet sturdy
▲ Advanced adds ~15% weight
CertificationsInstitutional procurement, safety compliance
Industry Standard: CE only
Our Base: RoHS + CE ▲
Our Advanced: RoHS + CE + ISO 13849 ▲▲
(Safety for industrial training)
▲▲ Meets global safety standards (e.g., EU/US schools)
Base: Meets basic safety norms
▲ Advanced certifications may require additional documentation

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