Reactor III Carbon Flex 420 Dragon Boat Paddle

Regular price $275.00 Save $-275.00
-3 in stock

HYBRID CARBON FIBER DRAGON BOAT PADDLE

Estimated Ship Time: 7-10 Business Days

The Reactor III Series is the third generation of Burnwater engineering and advanced materials to give you the best-performing family of paddles on the water. All models use the Reactor III Technology which consists of three main performance features: One Piece Construction, Halo Core Technology, and FluidForm Design and Engineering.

Note: Because each Burnwater paddle is individually handmade in our shop in California, there may be slight cosmetic variations such as paint imperfections that in no way affect the performance of the paddle.

Carbon Flex 420 Features:

  • 3-Layer Carbon Fiber Blade
  • Hybrid Carbon /7781 FG Flex Shaft
  • 410-430 grams
  • Neutral Balance, Increased Swing Weight for Solid Recovery
  • More Shaft Flex for a Smoother Stroke and Better Tracking
  • Premium aerospace-grade carbon fiber
  • Made in the USA

Custom Lengths:

Paddles can be special ordered for custom lengths for an additional $20. These include paddles less than 46" in length and 1/2" or 1/4" increments. Please select the Custom Length option and specify in the Notes section at check out the specific length you would like. 

Team Customization

Contact us today for custom colors, for team decals, or if you want to demo a paddle. Contact sales@burnwater.com

Burnwater Carbon Fiber Dragon Boat Paddle Reactor III
Burnwater Carbon Fiber Dragon Boat Paddle Reactor III
Burnwater Carbon Fiber Dragon Boat Paddle Reactor III Back
Burnwater Carbon Fiber Dragon Boat Paddle Reactor III Carbon T
Reactor III Carbon Flex 420 Dragon Boat Paddle
Reactor III Carbon Flex 420 Dragon Boat Paddle
Burnwater Carbon Fiber Dragon Boat Paddle Reactor III  Adjustable T Grip
Burnwater Carbon Fiber Dragon Boat Paddle Reactor III  Adjustable Ergo Grip
Burnwater Carbon Fiber Dragon Boat Paddle Reactor III Micro Grip
Burnwater Carbon Fiber Dragon Boat Paddle Reactor III  Adjustable Mechanism

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