XRAY 323123-H - Rear Lower Left Suspension Arm - Hard Composite  [XR-323123-H]

XRAY 323123-H - Composite Disengaged Suspension Arm Rear Lower Left - Hard
Price:
USD$12.22
Brand:
XRAY
Model:
XR-323123-H
Condition:
Brand New
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Enhance Your RC Car's Performance with XRAY's Hard Composite Suspension Arm

The XRAY 323123-H Rear Lower Left Suspension Arm is a meticulously engineered component designed to elevate the performance of your RC car. Specifically crafted for the XB2 series, this suspension arm integrates a unique geometry that shifts weight distribution towards the rear, enhancing stability and control. The repositioned rear upright within the arm allows for an extensive range of wheelbase adjustments, making it adaptable to various track conditions.

Durable and Reliable for Competitive Racing

Constructed from a hard composite material, this suspension arm strikes the perfect balance between rigidity and durability. It provides a responsive feel essential for competitive racing, yet remains robust enough to withstand the rigors of intense use. This makes it ideal for low to medium traction environments, ensuring consistent performance across different surfaces.

Perfect for Tuning and Customization

The innovative design of the XRAY 323123-H allows hobbyists to fine-tune their vehicle's wheelbase, offering greater flexibility in setup and customization. Whether you're preparing for a race or just looking to optimize your car's handling, this suspension arm is a valuable addition to your toolkit.

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, the XRAY 323123-H is designed specifically for the XB2 series, ensuring compatibility across all models within this range.
This suspension arm is best suited for low to medium traction conditions, providing optimal performance and handling.

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