
Micro Freewheel - Precision Steel Freewheel for Enhanced Performance
The Micro Freewheel is a testament to our dedication to providing high-performance bicycle components. Crafted with precision using cold forging and CNC machining techniques, it ensures precise movement and reliable chain engagement. Designed to excel in challenging terrains, this freewheel features three floating clutches for enhanced torque.

Key Features:
Cold Forged and CNC Machined: The Micro Freewheel is meticulously crafted using cold forging and CNC machining, guaranteeing precise movement and chain engagement for optimal performance.
Three Floating Clutches: With three floating clutches, the Micro Freewheel delivers enhanced torque, allowing you to conquer challenging terrains with ease.
NF EN ISO 4210-2 Tested: Our freewheel undergoes rigorous testing to exceed the NF EN ISO 4210-2:2023 standards, ensuring superior safety and performance.
Full Rows of Precision Steel Balls: Equipped with full rows of precision steel balls, the Micro Freewheel offers smooth and reliable movement, maximizing power transfer.
Easy Mount and Dismount: The Micro Freewheel is designed for easy installation and removal, providing hassle-free maintenance and convenience.
Heavy-Duty Construction: Built with extra strength, this freewheel can withstand heavy-duty use and demanding riding conditions, ensuring long-lasting durability.
Highest Tolerance: The Micro Freewheel boasts the highest tolerance in play, runout, and deflection, making it one of the most precise and reliable options available in the market.
Technical Specifications
Material: Crafted from high-quality and durable steel for superior performance and longevity.
Compatibility: Designed to fit a variety of bicycles and deliver optimal performance in demanding conditions.
Weight: Lightweight design for enhanced agility and performance.
Finish: Features a sleek and corrosion-resistant finish, ensuring both functionality and aesthetic appeal.
VARIANTS AVAILABLE
13T M30
Variant 1
14 T M30
Variant 2
14 T x BSCy
Variant 3