| Weight | 0.35 kg |
|---|---|
| Dimensions | 12 × 10 × 5 cm |
PLA+ 3D Printer Filament, 1.75mm, Dimensional Accuracy +/- 0.03 mm, 1 kg Spool (2.2 lbs), Compatible with Most FDM Printers (Black) AB0174
SKU: AB017410 in stock
₹750.00 ₹1,400.00
10 in stock
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0 out of 5(0)Key Features
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Heavy-Duty 3D Printed Structure – Durable and lightweight construction for reliable operation.
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Strong Mechanical Grip – Precisely designed jaws provide secure object handling.
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Servo Motor Compatible – Works with common servo motors for smooth control.
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Compact & Efficient Design – Ideal for small robotic arms and automation prototypes.
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Easy Assembly – Simple installation with screws and standard hardware.
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Modular Design – Easily replace or modify parts for custom robotics projects.
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High Precision Movement – Enables accurate pick-and-place operations.
Technical Specifications
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Product Type: Robotic Arm Gripper / Robot Claw
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Manufacturing Method: 3D Printed Components
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Control Method: Servo Motor Control
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Compatible Servo: SG90 / MG90S / similar micro servos
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Operating Voltage (Servo): 4.2V – 6V
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Material: High-strength PLA / ABS plastic
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Control Interface: PWM signal from microcontroller
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Mounting: Robotic arm or mechanical platform
Applications
The AUTOBOTIX 3D Duty Robot Gripper is suitable for many robotics and engineering applications, including:
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Robotic arm projects
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Pick and place robots
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Arduino robotics experiments
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STEM education kits
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Industrial automation prototypes
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Object sorting systems
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DIY robotics competitions
Why Choose AUTOBOTIX Robot Gripper?
AUTOBOTIX designs robotics components specifically for students, hobbyists, and professional developers who want reliable and affordable robotics hardware. The 3D Duty Robot Gripper offers a perfect balance between durability, precision, and ease of integration, making it an essential component for robotic arm systems.
Whether you are building a gesture-controlled robotic arm, automated pick-and-place machine, or educational robotics project, the AUTOBOTIX 3D Duty Robot Gripper provides strong gripping performance and flexible integration.
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