
The Wilson Revolve Spin 16G (1.30 mm) Green is a high-performance co-polyester string built specifically for aggressive, hard-hitting groundstrokers seeking heavy topspin, durability, and pinpoint directional control. Featuring a distinct pentagonal (5-sided) shape and a vibrant neon green cosmetic, this string bites into the ball on impact while using low-friction additives to maximize string snapback.
Performance Profile
- Sharp Pentagonal Edge: The 5-sided geometric shape increases friction with the ball felt upon contact, creating substantial mechanical bite to generate heavy topspin and slice rotation.
- Slick UHMW Snapback: Infused with an Ultra-High-Molecular-Weight (UHMW) low-friction polymer coating, enabling the main strings to snap back aggressively into position to boost spin generation (RPMs).
- Controlled Energy Return: Delivers a firm, predictable string bed that prevents shots from sailing long, allowing players with fast, full swing speeds to hit aggressively with precision.
- Durable Construction: The crosslinked ester polymer material, combined with a 1.30 mm thickness, makes this string highly resistant to premature notching and tension loss compared to standard polyester options.
Best Suited For
- Heavy Topspin Hitters: Ideal for intermediate to advanced players who rely on steep ball trajectories and sharp ball dip inside the baseline.
- Frequent String Breakers: Perfect for competitive players seeking high durability and longevity from a shaped co-polyester.
- Bold Racquet Styling: Great option for players who want high-spin performance matched with an eye-catching, high-visibility string bed color.
Specifications
- String Category: Shaped Co-Polyester Monofilament.
- Material Composition: Crosslink Ester Polymer with low-friction UHMW additive.
- Shape Profile: Pentagonal (5-sided edged profile).
- Gauge: 16G (1.30 mm) — High durability and firm control.
- Set Length: 40 ft / 12.2 m (also available in 660 ft / 200 m reels).
- Colorway: Neon Green / Electric Green.
- Primary Focus: Spin Generation, Low-Power Control, and Notching Resistance.
