Kyosho UM569 Heavy-Duty Steel Axle Set for ULTIMA RB5  [KY-UM569]

Kyosho UM569 - Steel Axle Shaft (RB5/2-Set)
Price:
CAD$14.02
Brand:
Kyosho
Model:
KY-UM569
Condition:
Brand New
Quantity Discount
Unit Price You Save
2 $11.98 each $4.08 or 15%
3+ $11.39 each $7.89 or 19%
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Stiffen Your ULTIMA RB5 with Kyosho UM569 Axles

RC hobbyists seeking a stronger drivetrain for ULTIMA RB5 models will find the Kyosho UM569 Steel Axle Shaft set a practical upgrade. These steel axles increase component life and help maintain consistent power delivery in both club races and weekend bashing. The precision steel build reduces wear compared with standard parts.

Built to Handle Rough Tracks

The Kyosho UM569 axle shafts are manufactured from durable steel to resist bending and surface wear. They keep drivetrain loads stable under impact and high torque, which helps preserve handling when tackling jumps and rutted surfaces.

Direct Fit for ULTIMA RB5 Models

Made to match RB5 geometry, these shafts fit without complex modifications, allowing straightforward installation and alignment. The correct fit helps keep suspension geometry intact for improved steering predictability and stability during competitive runs.

Remark :
Due to limited stock availability, please notice that some Kyosho items may have to order from the factory and the ready time is around 4-6 weeks. Customer purchases the item is assumed to accept the waiting time which allows us to order directly from the manufacturer if the item is out of our warehouse.
Installation is generally straightforward for anyone comfortable with basic RC servicing. Remove the old shafts, transfer any pins or clips, and refit the new axles, checking alignment and fasteners as you go.
Regular inspection for nicks or bending is recommended. Keep surrounding bearings and joints clean and lubricated to get the best service life from the steel axles.
Stiffer axles can alter feedback slightly, often making the car feel more direct under power. Check gear mesh and drivetrain condition, as the added stiffness can transfer more load to gears.

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