XRAY 305862 Composite Offset Spur Gear 92T/64 for RC Models  [XR-305862]

XRAY 305862 Composite Offset Spur Gear 92T / 64
Price:
USD$10.73
Brand:
XRAY
Model:
XR-305862
Condition:
Brand New
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alt="XRAY 305862 Composite Offset Spur Gear 92T / 64" title="XRAY 305862 Composite Offset Spur Gear 92T / 64"
alt="XRAY 305862 Composite Offset Spur Gear 92T / 64" title="XRAY 305862 Composite Offset Spur Gear 92T / 64"

Optimizing Your RC Setup with XRAY 92T Spur Gear

The XRAY 305862 Composite Offset Spur Gear 92T / 64 is a practical accessory for RC enthusiasts looking to fine-tune their models. Made from a durable composite material, this spur gear is designed to withstand the demands of racing while reducing unnecessary weight. Ideal for those seeking precision in their RC car's performance, this gear is a straightforward choice for enhancing your vehicle's drivetrain efficiency.

Key Features of the XRAY 92T Spur Gear

  • Lightweight composite material for reduced rotational mass
  • Durable construction ensures long-lasting performance
  • 64-pitch design compatible with various RC models

Why Choose the XRAY 92T Spur Gear?

For hobbyists aiming to achieve optimal gear ratios, the XRAY 92T spur gear offers a simple yet effective solution. Its lightweight design helps in reducing the rotational mass, thereby improving acceleration and responsiveness. Whether you're competing on the track or just enjoying a casual drive, this gear provides the reliability and performance needed for a seamless RC experience.

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 XRAY 92T spur gear is designed to fit most 1/10 scale RC models, but compatibility may vary depending on the specific drivetrain setup.
The composite material offers a balance of strength and lightness, reducing the gear's rotational mass for better acceleration without sacrificing durability.

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