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Vehicle Trapper using Servo Motor | Arduino DIY Robot Car Project Kit with Obstacle Trap Mechanism

Vehicle Trapper using Servo Motor | Arduino DIY Robot Car Project Kit with Obstacle Trap Mechanism

Note : We will provide updated model (maybe design slightly change) with the same working.
Technical Specifications

  • Product Type: Arduino Robotics Project Kit
  • Project Name: Vehicle Trapper using Servo Motor
  • Controller: Arduino Compatible Board
  • Motor Type: DC Gear Motors + Servo Motor
  • Mechanism: Trap / Gripper using Servo
  • Control Type: Autonomous / Remote (varies)
  • Power Supply: Battery Operated
  • Application: Robotics learning, science exhibition, automation

Product Description

Trapper Vehicle using Servo Motor is an innovative Arduino-based robot car project designed to detect and trap objects using a servo-controlled mechanism. It combines motion, sensing, and automation—making it perfect for school/college projects and robotics learning.

This project demonstrates how servo motors can precisely control movement angles (typically 0–180°), enabling actions like gripping or trapping objects in real-world robotics applications.

$25.98
Vehicle Trapper using Servo Motor | Arduino DIY Robot Car Project Kit with Obstacle Trap Mechanism
$25.98

Product Information

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Description

Note : We will provide updated model (maybe design slightly change) with the same working.
Technical Specifications

  • Product Type: Arduino Robotics Project Kit
  • Project Name: Vehicle Trapper using Servo Motor
  • Controller: Arduino Compatible Board
  • Motor Type: DC Gear Motors + Servo Motor
  • Mechanism: Trap / Gripper using Servo
  • Control Type: Autonomous / Remote (varies)
  • Power Supply: Battery Operated
  • Application: Robotics learning, science exhibition, automation

Product Description

Trapper Vehicle using Servo Motor is an innovative Arduino-based robot car project designed to detect and trap objects using a servo-controlled mechanism. It combines motion, sensing, and automation—making it perfect for school/college projects and robotics learning.

This project demonstrates how servo motors can precisely control movement angles (typically 0–180°), enabling actions like gripping or trapping objects in real-world robotics applications.