Yokomo YOKSD1093W 1093 Wing Set for On-Road Bodies  [YOKSD1093W]

Yokomo SD1093W - Wing Set for 1093
Price:
CAD$10.77
Brand:
Yokomo
Model:
YOKSD1093W
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YOKSD1093W Wing Overview

This RC-scale wing set is intended for the 1093 series and is sold under the Yokomo model code YOKSD1093W. It is an aftermarket body detail that focuses on aerodynamic balance for on-road RC cars where rear downforce and tuning sensitivity matter.

Fitment is specific to the 1093 compatibility scope listed in the product name, so confirm alignment with your 1093 body and its wing-mount points before installation. The item is described as a replacement wing set for 1093; check the retailer listing for included fasteners and finish details.

For tuning, this wing alters rear grip and handling balance. Small changes to angle or fore/aft position will affect traction and turn-in on paved circuits. Make incremental adjustments and record settings to find the compromise between stability and responsiveness for your setup.

For routine fit checks, mount the wing to the existing 1093 wing points and verify clearance with the body and drivetrain through full suspension travel to ensure no interference with other components.

Remark :
Due to limited stock availability, please notice that some Yokomo 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.
The product listing and the model code YOKSD1093W indicate 1093 compatibility. Do a dry fit against your body and check that the wing-mount spacing matches your 1093 mounting points before final installation.
The original listing does not explicitly state included hardware. Plan to reuse the existing wing screws from your 1093 or contact the seller to confirm what is supplied.
Begin with small angle changes and test on the same surface. Note how each change impacts rear traction and turn-in, then refine until you reach the desired balance between stability and responsiveness.

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