XRAY 303710-O T4 Chassis Aluminium Lower Suspension Mount  [XR-303710-O]

XRAY 303710-O Aluminum Lower 2-Piece Suspension Holder (1)
Price:
AUD$27.24
Brand:
XRAY
Model:
XR-303710-O
Condition:
Brand New
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Durable CNC Mounting Solution for XRAY T4

Designed for use on the XRAY T4 chassis, the 303710-O lower suspension holder is precision CNC-machined from Swiss 7075 T6 aluminium. The component delivers a favourable strength-to-weight balance and is positioned at the rear of the front bulkhead to pair with the T4 suspension architecture.

Improved Traction Through Stable Mounts

The XRAY 303710-O helps keep suspension geometry steady under stress, giving more consistent traction and cleaner corner entries. The holder secures the suspension arms while still permitting the necessary movement for responsive steering and dependable balance.

Integrated Settings for Rapid Setup Changes

This part carries XRAYs Integrated Suspension Settings, a concept that originated on the XB8 and has been scaled for 1/10 on-road cars. It enables quick geometry changes so competitors can refine handling between heats.

Remark :
Due to limited stock availability, please notice that some XRAY 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.
Yes, it is intended as a direct replacement for the T4 lower suspension holder, fitting in the designated rear front bulkhead location on compatible T4 versions.
The design maintains normal arm articulation while stiffening the mounting point; suspension travel remains within original T4 parameters unless combined with other modifications.
After installation check alignment, shock position and arm movement. Minor toe or camber tweaks may help restore the exact handling feel you prefer.
Aluminium offers a firmer mounting point than standard plastics, which generally reduces unwanted flex and helps preserve suspension geometry under load.

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