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4WD Drive Aluminum Mobile Car Robot

5.0(1 review)
SKU: ME-186
JD36.00JD50.00

The 4WD Aluminum Mobile Robot Platform is a versatile four-wheel drive chassis designed for building advanced robotic projects. Made from lightweight yet strong aluminum, it features four DC gear motors, elastic rubber tires for excellent grip, and multiple mounting holes for controllers, sensors, and RF modules. Fully compatible with Arduino UNO, MEGA2560, and Duemilanove, this platform supports pan-and-tilt camera mounts, collision switches, and additional sensors, making it ideal for robotics enthusiasts, students, and professional developers.

منصة الروبوت المتحرك رباعي الدفع 4WD هي هيكل قوي بأربع عجلات مصمم لبناء مشاريع الروبوتات المتقدمة. مصنوعة من الألمنيوم الخفيف والمتين، وتحتوي على أربعة محركات تروس DC وإطارات مطاطية مرنة توفر قبضة ممتازة، مع فتحات تثبيت متعددة للمتحكمات والمستشعرات ووحدات الراديو. تتوافق بالكامل مع Arduino UNO وMEGA2560 وDuemilanove، وتدعم تركيب كاميرا بحركة أفقية وعمودية وحساسات اصطدام، مما يجعلها مثالية لهواة الروبوتات والطلاب والمطورين.

Mobile Robots

The 4WD Aluminum Mobile Robot Platform is a premium robotics chassis designed to serve as the foundation for a wide range of autonomous and remote-controlled robotic projects. Constructed entirely from high-quality aluminum, this platform offers the perfect balance of light weight, high strength, and no deformation even under heavy loads. The four-wheel drive configuration, powered by four independent DC gear motors with a 1:48 reduction ratio, provides excellent torque, traction, and maneuverability on various terrains including smooth floors, carpet, and light outdoor surfaces. The 65mm elastic rubber tires offer exceptional grip, built-in damping, and wear resistance, ensuring smooth and stable movement. The platform features a well-designed support plate with pre-drilled mounting holes for controllers (such as Arduino UNO, MEGA2560, and Duemilanove), sensor modules, RF communication boards, battery packs, and even a 2-DOF pan and tilt mechanism for mounting cameras or ultrasonic sensors. Additional slots and grooves are provided for collision switches and external sensors, making it easy to build obstacle-avoiding, line-following, Bluetooth-controlled, or Wi-Fi-enabled robots. Its unique design and stylish color give it a professional and cool appearance, making it equally suitable for hobbyists, students, and advanced robotics developers.

 

Specifications

  • Platform Type: 4WD (Four-Wheel Drive) Mobile Robot Chassis
  • Chassis Material: High-strength aluminum alloy
  • Number of Motors: 4 DC gear motors
  • Gear Reduction Ratio: 1:48
  • No-Load Speed: 220 RPM
  • Wheel Diameter: 65 mm
  • Wheel Width: 26 mm
  • Tire Material: Elastic rubber with damping and wear resistance
  • Platform Length: 206 mm
  • Platform Width: 200 mm
  • Platform Height: 62 mm
  • Platform Weight: 620 grams
  • Controller Compatibility: Arduino UNO, MEGA2560, Duemilanove, Raspberry Pi, and more
  • Mounting Features: Pre-drilled holes for controllers, sensors, RF modules, pan-and-tilt, and collision switches
  • Suitable Terrain: Indoor floors, carpets, and light outdoor surfaces

 

Applications

  • Used as a base platform for autonomous robots in education and research.
  • Ideal for building obstacle-avoiding robots using ultrasonic or IR sensors.
  • Employed in line-following robots with TCRT5000 or IR array sensors.
  • Used in Bluetooth-controlled robots operated via smartphones.
  • Suitable for Wi-Fi and RF-controlled robotic vehicles.
  • Applied in surveillance robots with mounted cameras on the pan-and-tilt mechanism.
  • Used in maze-solving and navigation robots.
  • Common in robotics competitions and STEM education projects.
  • Ideal for Arduino and Raspberry Pi-based robotics learning kits.
  • Used in smart car prototypes for studying autonomous vehicle concepts.
  • Applied in environmental monitoring robots carrying gas or air quality sensors.
  • Employed in sumo robots and combat robot chassis designs.
  • Suitable for computer vision and AI-powered robots.
  • Used in research projects involving SLAM (Simultaneous Localization and Mapping).
  • Found in teaching labs for demonstrating motor control and robotics principles.
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