Puma Trinity Lite Ac+ Trainers - White/Grey - 2.5 UK

Currently unavailable

Currently unavailable
The Puma Trinity Lite Ac+ Trainers are designed for active kids who need reliable, lightweight footwear for daily leisure and play. Featuring the Ac+ system, these shoes provide excellent support for flexible movement while maintaining a clean, low-top aesthetic that fits any casual outfit. While they are built for durability and regular use, their lightweight, compact construction is optimized specifically for casual activity rather than high-intensity competitive sports.
| Age Group | kids |
|---|---|
| Colour | White |
| Gender | Unisex |
| Child Shoe Size UK | 2.5 |
| Accent Colour | Grey |
| Shoe Type | Trainers |
| Series | Trinity Lite Ac+ |
| Model Part Number | 4065452677749 |
| Brand | Puma |
They are designed for leisure and daily play. While they support flexible movement, they are not intended for high-intensity competitive sports.
Use a standard foot measuring tool and compare against UK sizing charts. These trainers generally fit true to size for a low-top profile.
It is not recommended. Machine washing can damage the adhesive and structural reinforcements of the shoe.
The trainers are made for breathable, casual wear and are not waterproof.
Yes, the design and colorways of the Trinity Lite Ac+ are crafted to be suitable for all children.
Spot clean with a soft brush and mild soap solution; avoid soaking the materials.
Ensure the laces are tensioned correctly for a secure fit or check if an insole needs adjustment.
These trainers are ready for immediate use out of the box. To ensure a proper fit, verify the UK size corresponds to your child's current foot measurements, as the low-top fit is designed to be secure. For maintenance, keep the shoes clean by wiping them with a damp cloth to remove surface dirt. Because these trainers feature a white color scheme, avoiding mud and heavy spills will help preserve their appearance. Avoid machine washing or drying, as high heat can compromise the bonded materials and the integrity of the Ac+ support system.