Featherlight Weight
Ultra-lightweight construction reduces foot fatigue, offering strength without the bulk.
Ultra-Thin Profile
Minimal thickness allows for a seamless fit in tight-fitting sports shoes or dress shoes.
Rigid Arch Support
High-modulus carbon fiber provides unwavering stability, preventing arch collapse under heavy load.
High Energy Return
The material’s natural elasticity stores and releases energy, propelling every step forward.

Journey of Carbon Fiber

1

Seamless Raw Fabric

High-strength carbon fiber utilizes seamless weaving technology to enhance overall stability and support without weak points.

2

Precision CNC Cutting

Automated CNC cutting ensures exact mechanical specifications, minimizing material waste while maximizing production efficiency.

3

Reinforced Bonding

A 5-layer structure (3 base + 2 reinforced) is heat-bonded with varied orientations to ensure exceptional tensile strength and arch support.

4

Vacuum Forming

Fabrics undergo vacuum compression and multi-point temperature control to remove air voids and ensure precise, stable shaping.

5

3D CNC Trimming

Dual-blade 3D engraving precisely trims excess material, creating smooth, burr-free edges for a perfect finish.

6

Final Product

Strict visual and dimensional checks ensure every insole is defect-free and meets rigorous quality standards before shipping.

Designed for daily comfort and support,featuring ultra-sot breathable fabric for sweat absorption. Blue PU foam ensures cushioning comfort.while the thermoplastic base and carbon shank enhance arch stability and pressure distribution. finished with a printed TPU surface for arefined and durable finish.

A minimalist carbon-fiber insole offering ightweight rigidity and precise arch contro. PU foam delivers soft rebound and comfort, while the carbon shank enhances stability for daily wear or mild sports activities.

Engineered with duallayer toam combining PU and EvA for enhanced comfort and rebound. The carbon fiber shank reinforces arch and heel stability, promoting proper alignment and reducing fatigue during prolonged wear.