Product Description
Kaiwin KIVIX MAGIC — Breakthrough FOAM EDGELOCK™ Technology. 360° Stability. Maximum Sweet Spot.
KIVIX MAGIC is built around the exclusive core technology FOAM EDGELOCK™ — a multi-material full foam architecture, combined with a 3-layer T700 Super Rough surface and a completely redesigned mold — providing superior stability, power, and control on every shot.
HIGHLIGHTED TECHNOLOGIES
FOAM EDGELOCK™ — 360° Foam Stabilization System
Multi-material full foam core architecture with 4 specific functional zones:
- EPP Foam Core (Full) — provides strong bounce, consistent response, and structural stability. The internal dual-rib design helps to transmit power more concentrically, with less energy loss.
- TPE Ring (Closed-Loop) — acts as a vibration filter and structural isolator, absorbing high-frequency vibrations, softening the EPP feel, and delivering a smoother and crisper ball contact.
- 2 Reinforced EVA Blocks (Throat) — creates a solid, rigid foundation at the paddle throat, preventing deformation and twisting of the paddle face, while also smoothly transferring energy from the core to the handle.
- High-Density Foam Edge (Polyurethane) — expands the sweet spot, improves stability on off-center hits, protects the core during the thermal bonding process, and reduces impact force transmitted to the hand.
T700 Super Rough Surface — Spin, Grip, Precise Response
3 layers of super-rough T700 Carbon increase superior ball grip, maximum spin potential, and precise ball response at every contact point.
New Mold Form
The completely redesigned mold optimizes overall performance, helping players achieve more consistent and effective shots in all situations.
5 CORE BENEFITS
- Explosive Power — high-response EPP core generates powerful ball speed for attacking shots.
- Absolute Stability — TPE ring, EVA throat, and foam edge work together to reduce unwanted twisting, compression, and vibration.
- Expanded Sweet Spot — foam edge maintains consistent performance even on off-center hits.
- Refined Feel — TPE ring softens the EPP, providing precise control for dinks, drops, and resets.
- Efficient Power Transfer — EVA creates a seamless connection between the core and handle, allowing energy to flow smoothly and continuously.
| SPECIFICATION | |
| Paddle Face Material: | Super Rough T700 Carbon Fiber |
| Core Structure Material: | FOAM EDGELOCK™ |
| Edge Material: | TPU |
| Paddle Body Construction: | High-Quality Full-Body Hot Compression Molding |
| Weight: | 230 g ± 5 g / 7.94–8.29 oz |
| Grip Circumference: | 105 mm / 4.13 in |
| Grip Length: | 142 mm / 5.59 in |
| Paddle Length: | 418 mm / 16.46 in |
| Paddle Face Length: | 276 mm / 10.87 in |
| Paddle Face Width: | 191.5 mm / 7.54 in |
| Paddle Thickness: | 16 mm / 0.64 in |
FOAM EDGELOCK™ Technology
FOAM EDGELOCK™ is a multi-layer, multi-material full-foam core system engineered to deliver an optimized balance of power, stability, and control.
At the center of the paddle is a high-rebound EPP core featuring a dual-rib reinforcement architecture. This structure is designed to generate strong rebound energy while maintaining a linear, predictable response. It helps direct more energy toward the ball rather than allowing impact force to disperse throughout the paddle.
Surrounding the EPP core is a closed-loop TPE ring, which acts as both a vibration filter and structural isolation layer. The TPE ring absorbs high-frequency vibrations generated at ball impact, softening the response of the EPP core and creating a smoother, clearer, and more stable feel at contact.
At the throat of the paddle, two high-density EVA reinforcement blocks create a rigid support base. This structure helps resist compression and deformation while reducing paddle-face twisting. The EVA assembly also functions as an energy bridge, transferring power from the core into the handle in a smooth and continuous manner.
Around the outer perimeter, a layer of high-density polyurethane foam reinforces the frame, improves stability on off-center hits, and expands the effective sweet spot. This foam layer also protects the core during the heat-compression molding process, helping reduce the risk of core collapse or delamination. At the same time, it provides an additional level of impact damping to reduce stress transmitted to the player’s arm.


