
The Wilson Intrigue Tour in White and Cameo Rose is a tour-level performance shoe specifically engineered for the female foot. It is designed to offer a blend of speed, responsive cushioning, and stability for competitive all-court play.
This model is recognized for its female-specific fit, which optimizes the width, arch support, and heel shape to match the contours of a woman's foot.
Performance & Cushioning Technology
- SwiftStep Midsole: Features a drop-in Pebax foam design that provides a highly responsive and energized feel, similar to high-performance running shoes.
- Supercritical Pebax Sockliner: Enhances step-in comfort and provides additional energy return during explosive movements.
- FootFrame Support: A dynamic support system that molds to the foot's unique contours, ensuring a locked-in fit and superior lateral stability during quick directional changes.
- UltraShield Mesh: A single-layer engineered mesh upper that keeps the shoe lightweight and breathable while maintaining high durability for aggressive play.
Traction & Durability
- Duralast Outsole: Utilizes a high-density, durable rubber compound that offers maximum abrasion resistance and traction on all court surfaces.
- All-Court Performance: The outsole pattern is designed to provide the ideal balance between grip and slide, making it suitable for both hard and clay court surfaces.
- Gum Rubber Accents: The White/Cameo Rose colorway features a gum rubber outsole, which is often favored for its excellent natural grip.
Feature
- Colorway: White / Cameo Rose.
- Fit: Built to female-specific specifications with advanced arch and heel containment.
- Upper: UltraShield single-layer engineered mesh upper. FootFrame dynamic support system.
- Weight: Approximately 11.0 oz (Size 7) to 11.9 oz (Size 8.5), making it a competitive mid-weight performance option.
- Midsole: Swiftstep: TPU torsion shank and high-durability CMP foam. Supercritical Pebax foam performance sockliner
- Outsole: Duralast: High-density, consummately durable rubber compound provides abrasion resistance and maximum surface traction.
