
MECCANIXITY RC Shock Dyno Anti Vibration Rubber Balls Pack of 20 for Enhanced Flight Controller Stability in Drones
About this item
Brand:MECCANIXITY | Are Batteries Included:No | Included Components:remote_control | Color:Red | Manufacturer:MECCANIXITY | Age Range (Description):Adult | Product Dimensions:0.24"L x 0.24"W x 0.18"H
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Product Description
Elevate your drone's performance with the MECCANIXITY RC Shock Dyno Anti Vibration Rubber Balls, designed to significantly reduce vibration and enhance flight controller stability. Perfect for FPV racing and aerial photography, these rubber damper balls are a must-have for any drone enthusiast looking to improve their aircraft's sensitivity and reduce unwanted vibrations.
Technical Specifications:
- Material: High-quality rubber for durability and flexibility
- Color: Vibrant red for easy identification
- Dimensions: Height - 4.6mm/0.18 inch, Inside Mounting Hole Diameter - 3mm/0.12 inch, Maximum outside diameter - 6mm/0.24 inch, Slot outside diameter - 4mm/0.16 inch, Slot Width - 1.5mm/0.06 inch
- Package Contents: 20pcs x RC Damping Ball
Usage Scenarios and Features:
The MECCANIXITY RC Shock Dyno Anti Vibration Rubber Balls are specifically designed for RC models and DIY drone accessories. Their primary function is to mount between the flight controller and the gimbal, effectively dampening vibrations that can interfere with the controller's sensitivity. This results in smoother flights and more stable aerial footage, making them ideal for FPV racing drones and photography drones alike.
Crafted from soft, flexible rubber, these damper balls absorb shocks and vibrations, protecting your flight controller from potential damage caused by high-speed maneuvers or rough landings. Their compact size and easy installation make them a convenient upgrade for any drone setup. Whether you're a competitive racer or a hobbyist looking to enhance your drone's performance, the MECCANIXITY RC Shock Dyno Anti Vibration Rubber Balls are an essential accessory for achieving optimal flight stability and precision.