XRAY 301061 T4'20 1.6mm Graphite Upper Deck  [XR-301061]

XRAY 301061 - T4\'20 Graphite Upper Deck 1.6mm
Price:
USD$53.60
Brand:
XRAY
Model:
XR-301061
Condition:
Brand New
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Optimizing Your XRAY T4'20 with the 1.6mm Graphite Upper Deck

The XRAY 301061 - T4'20 Graphite Upper Deck is a precision-engineered component crafted to enhance your RC car's performance under varying traction conditions. This 1.6mm graphite upper deck is an essential upgrade for hobbyists looking to fine-tune their setups for low to medium traction environments.

Understanding Flex Settings

The design of the upper deck focuses on achieving the perfect balance of flexibility and stability. It is symmetrical, ensuring consistent flex behavior across the chassis. Here’s how you can adjust it:

  • Soft Setting: For maximum steering response, leave the top deck unconnected to the stand. This setup offers the most flexibility but may require more precise handling.
  • Medium Setting: Connect the top deck to the stand using a ball-bearing. This allows side-to-side flex while maintaining rigidity front-to-rear, offering a balanced driving experience.
  • Stiff Setting: Use a fixed bushing to connect the top deck to the stand, providing complete stiffness and enhancing vehicle stability.

Ideal Conditions for Use

This upper deck is particularly suited for use with an aluminum chassis in low- to medium-traction scenarios. The graphite material provides a lightweight yet sturdy solution, improving overall handling and performance.

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.
The soft setting maximizes steering response, ideal for tracks requiring sharp turns. However, it may necessitate more precise control.
The medium setting offers a balance of flexibility and stability, allowing for responsive handling without sacrificing control.

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