JOOLA Hyperion Swift lightweight pickleball paddles | Ben Johns or Simone Jardim | 16mm or 14mm | Gen 1 with foam injected edge

JOOLA Hyperion Swift lightweight pickleball paddles | Ben Johns or Simone Jardim | 16mm or 14mm | Gen 1 with foam injected edge

Vendor
Joola
Regular price
$269.00
Sale price
$269.00
Regular price
$338.00
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Unit price
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Signature paddle of pickleball legend Simone Jardim, the Simone Jardim Hyperion Swift 14mm pickleball paddle delivers championship performance in a fast-swinging profile. This racket features JOOLA’s new Swift technology which gives the paddle supreme speed through the air allowing for sharp hands at net and plenty of acceleration through drives. Like the other pickle ball raquettes in the Hyperion line, this signature paddle features a Carbon Friction Surface, Hyperfoam Edgewall, and a Reactive Polymer Core for a superior blend of spin, power and feel, with consistent edge-to-edge performance. USAPA-approved pickleball paddle for competition.

TECHNICAL SPECS

FEATURES

  • AERO-CURVE
    Pro-proven, unique head curvature creates less drag and increases swing speed.
  • SWIFT TECHNOLOGY
    Utilizes upgraded materials to create a lighter, faster swinging paddle, making your hand speed even faster and your shots stronger than ever.
  • HYPER-FOAM EDGE WALL
    Specialized foam injected into the perimeter of the paddle adding weight and stability, increasing the sweet spot for consistent edge to edge performance.
  • CARBON FRICTION SURFACE
    Utilises a more advanced, durable, longer lasting Carbon-Flex5 textured surface, harnessing raw power while providing maximum spin.
  • REACTIVE HONEYCOMB POLYMER CORE
    Specially tuned for the high-level player to maximize the consistency of the bounce and feel necessary for every shot.
  • CX-FORGED HANDLE
    Carbon-forged handle provides maximum flex for additional power and comfort.
  • SURE-GRIP ELONGATED HANDLE
    Offers a perforated anti-slip ridge grip, reduces moisture from the surface of the handle for an enhanced grip and increased shock absorption.