Soft Cushioning and Smooth Everyday Movement
The New Balance Fresh Foam 680 v9 Women’s running shoe is designed for runners and walkers who want soft cushioning and dependable comfort for daily miles. It’s an excellent choice for road running, fitness walking, or long days spent on your feet. With its lightweight feel and balanced support, this shoe delivers a smooth, easy ride from start to finish.
The Fresh Foam midsole provides plush, responsive cushioning that absorbs impact without feeling heavy. Its supportive geometry encourages natural movement, helping each stride feel fluid and efficient. A breathable engineered mesh upper enhances airflow while offering a secure, adaptable fit that keeps you comfortable throughout the day.
This shoe is ideal for anyone who enjoys a cushioned, steady experience during workouts or everyday routines. Whether you’re heading out for relaxed runs or staying active at work, the Fresh Foam 680 v9 blends comfort, durability, and performance. Its thoughtful construction reflects New Balance’s commitment to quality and long‑lasting wear.
The durable rubber outsole offers reliable traction on a variety of surfaces, supporting confident movement mile after mile. A molded heel design adds structure and stability, helping maintain alignment and reduce strain on the foot. With its combination of soft cushioning and supportive design, the 680 v9 provides a comfortable, balanced ride for everyday training.
At Brown’s Shoe Fit, we’re dedicated to helping you find footwear that supports your goals and keeps you moving comfortably. Our team is here to guide you toward the perfect fit so you can enjoy every mile with confidence. Visit us in‑store or explore our online selection to experience personalized service and high‑performance options.
- Fresh Foam cushioning for soft, responsive comfort
- Supportive midsole geometry for smooth, natural transitions
- Breathable engineered mesh upper for a secure, adaptable fit
- Molded heel design for added stability
- Durable rubber outsole for confident traction


