High Flexibility
+/- 10° Inv/Eversion
Multi-Axial
CE
ISO 22675
Lightweight
 Highlights
Symes Focused: Optimized for Syme level amputations.
Direct Connection: Stable M36 Thread & 4-Prong Adapter.
Dynamic Response: High energy return carbon body.
3D Rings Tech: Advanced screw-less architecture.
Engineered specifically for users with Symes amputations, the Symes Foot features a specialized integration system including a stable M36 Thread and a 4-Prong Socket Adapter for a secure, direct connection to the socket. Utilizing the same high-performance carbon architecture as the Short Foot, it provides excellent energy return and a fluid gait cycle within a minimal build height of 50 mm.
Technological Architecture
3D-Printed Rings Technology
The Symes Foot utilizes our advanced “screw-less” connection technology. By removing mechanical fasteners from the carbon plates, we ensure a more natural elastic response and significant reduction in structural stress points.
Direct-to-Socket Stability
The 4-Prong adapter is designed for maximum stability during the terminal stance. This direct integration eliminates the height of traditional adapters, providing the essential clearance required for Syme amputees.
Stiffness Selection Guide
| Patient Weight | Category |
|---|---|
| 65 – 75 kg | CAT-1 |
| 75 – 85 kg | CAT-2 |
| 85 – 95 kg | CAT-3 |
| 95 – 105 kg | CAT-4 |
| 105 – 120 kg | CAT-5 |
Technical Specifications
| Size Range | 23 to 29 cm |
| Activity Level | K2 – K3 |
| Max User Weight | 120 Kg |
| Build Height | ~50 mm |
| Product Weight | ~420 g |
| Connection | M36 Thread / 4-Prong |
| Foot Shell Color | Beige & Brown |























The Foot Shell - Low Height is a precision-molded prosthetic foot shell designed for specialized configurations where a reduced vertical profile is essential for optimal alignment. As a high-durability low profile foot shell, this component provides a natural cosmetic finish while offering a 15 mm height reduction compared to standard models, ensuring better clearance for specific prosthetic builds.

