Calvin Klein Jeans Vulc flatform canvas sneakers in pink and white
Calvin Klein
$95.00
Product Insights & Style Tips
The Calvin Klein Jeans Vulc flatform canvas sneakers in pink and white bring a clean, city-smart energy to off-duty outfits. The canvas upper feels light and easy, while a low-profile silhouette channels modern minimalism. A lace-up front locks in the fit, and the signature Calvin Klein Jeans branding punctuates the look. The flatform sole adds subtle lift with a touch of retro attitude, and the textured grip tread promises confident footing from street to studio.
Adjustable lace-up closure lets you tailor the fit as you move through the day. The pink and white colorway keeps things light and playful, pairing with denim shorts, cropped trousers, or a sundress without missing a beat. The flatform adds just enough lift to stay comfortable, while the grippy tread offers traction on slick sidewalks and busy city surfaces, making them easy to slip into for quick transitions between different settings.
Calvin Klein Jeans continues to blend pared-back athleticism with a hint of logo-driven polish. These vulc flatforms nod to that understated cool, delivering a bright color pop that still reads versatile with nearly any wardrobe. Wear them with straight-leg denim for a sport-luxe moment, or pair with a midi dress to temper daywear with city-ready edge.
Materials / Fabrication
- Brand: Calvin Klein
- Low-profile design
- Lace-up fastening
- Signature Calvin Klein Jeans branding
- Flatform sole
- Textured grip tread
Recommended Care
- Wipe clean with a damp cloth after wear; avoid harsh chemicals
- Air dry away from direct heat
- Use a soft brush for textured surfaces to remove debris
- Store in a cool, dry place away from sunlight
Fit Notes
- Lace-up fastening provides an adjustable, secure fit through the instep.
- Low-profile design with a flatform sole creates a streamlined silhouette.
- Flatform sole adds height and a contemporary sneaker profile.
- Textured grip tread on the outsole offers traction across surfaces.
