XRAY aluminum shock absorber set designed for older T series models, offering enhanced durability and tuning flexibility for vintage RC enthusiasts.  [XR-308305]

XRAY 308305 Aluminium minium Shock Absorber-set 4-step (2)
Price:
USD$50.60
Brand:
XRAY
Model:
XR-308305
Condition:
Brand New
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Precision Engineering for Vintage XRAY Models

For those dedicated to maintaining and enhancing their vintage XRAY T series RC cars, the XRAY 308305 Aluminum 4-Step Shock Absorber Set offers a perfect blend of durability and performance. Crafted from high-quality aluminum, these shock absorbers are specifically designed to meet the demands of older version T series models, providing a reliable upgrade for improved handling and control.

Enhanced Performance with Aluminum Durability

These shock absorbers are constructed from premium aluminum, ensuring they can withstand the rigors of intense racing or casual driving. The four-step adjustability allows hobbyists to fine-tune their suspension setup, catering to various track conditions and driving styles. This adaptability is crucial for those looking to achieve optimal performance from their vintage XRAY models.

Ideal for Vintage Series Enthusiasts

Whether you're restoring an older XRAY model or seeking to improve its performance, this shock absorber set is an excellent choice. It provides the necessary support and flexibility to enhance your vehicle's suspension system, making it suitable for both competitive racing and everyday use.

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 308305 shock absorbers are designed for compatibility with older T series models, providing a perfect fit and enhanced performance.
The 4-step adjustability allows you to customize the suspension stiffness, improving handling and stability based on track conditions and personal driving preferences.

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