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6mm Low Profile Hex-Shaft Clamping Hub-V2

The Studica Robotics 6 mm Low Profile Hex-Shaft Clamping Hub V2 is a precision shaft adapter hub designed for robotics applications and motor shaft mounting. Ideal for connecting wheels, sprockets, or other mechanical components with a 6 mm hex shaft system without adding height, making it perfect for compact builds.

MFR Part #: 76296H
$9.99
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This hub is designed to offer a reliable, low-profile solution when coupling mechanical components to a 6 mm hex shaft. With its compact design and secure clamping, you can avoid issues of misalignment or excessive height, which can cause mechanical binding or interfere with other parts. It’s an essential component in well-engineered robotic systems where precision and compactness matter.

Features & Benefits

  • Low profile design — reduces the overall height of your assembly, helping make tighter, more compact robotics mechanisms.

  • Secure clamping — uses a reliable clamping mechanism to grip a 6 mm hex shaft, minimizing slippage under torque.

  • Quality materials — built for durability with precise machining and robust finish.

  • Motor accessories integration — fits with many motors and drivetrain components, making it a versatile part in robotics kits.

  • Affordable & dependable — priced for value, consistent in performance, easy to integrate into custom builds or replacement needs.

 

Compatibility & Applications

  • Compatible with motors that have 6 mm hex shafts or adapters.

  • Useful for robotics chassis, drivetrain assemblies, gearboxes, sprocket attachments.

  • Great for STEM classrooms, robotics competition teams, hobbyist robotics, and prototyping.

  • Works wherever you need a low-profile coupling between motor shaft and mechanical drive component without sacrificing strength.

Q: What does “low profile” mean for this hub?
A: It means the hub is designed to add minimal height to your setup—good for tight spaces and when clearance is limited.

Q: Will this hub work with non-Studica Robotics shafts?
A: Yes, as long as the shaft is a standard 6 mm hex size, it should fit securely; always check shaft tolerances.

Q: How secure is the clamping mechanism under heavy torque?
A: It uses a clamping design to grip the hex shaft; while it holds well under standard robotics loads, torque limits depend on the motor and load. For very high loads, consider reinforcing or using a hub designed for heavy-duty torque.

Q: Do I get hardware (set screws / fasteners) with it?
A: Yes, the package includes the hardware needed to mount and clamp the hub in place. (Refer to the product's included items list or resources for exact contents.)

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This hub is designed to offer a reliable, low-profile solution when coupling mechanical components to a 6 mm hex shaft. With its compact design and secure clamping, you can avoid issues of misalignment or excessive height, which can cause mechanical binding or interfere with other parts. It’s an essential component in well-engineered robotic systems where precision and compactness matter.

Features & Benefits

  • Low profile design — reduces the overall height of your assembly, helping make tighter, more compact robotics mechanisms.

  • Secure clamping — uses a reliable clamping mechanism to grip a 6 mm hex shaft, minimizing slippage under torque.

  • Quality materials — built for durability with precise machining and robust finish.

  • Motor accessories integration — fits with many motors and drivetrain components, making it a versatile part in robotics kits.

  • Affordable & dependable — priced for value, consistent in performance, easy to integrate into custom builds or replacement needs.

 

Compatibility & Applications

  • Compatible with motors that have 6 mm hex shafts or adapters.

  • Useful for robotics chassis, drivetrain assemblies, gearboxes, sprocket attachments.

  • Great for STEM classrooms, robotics competition teams, hobbyist robotics, and prototyping.

  • Works wherever you need a low-profile coupling between motor shaft and mechanical drive component without sacrificing strength.

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