- Home
- Bone plate non locking
- 3.5 mm Calcaneal Plate
3.5 mm Calcaneal Plate
Holes : 60, 70
Type : SS / TT
The 3.5 mm Calcaneal Plate is a precision-engineered orthopedic implant designed for effective fixation of calcaneus (heel bone) fractures. Made from high-quality stainless steel or titanium, it ensures excellent strength, biocompatibility, and stability. Its anatomical design provides a perfect fit, reduces soft tissue irritation, and supports faster healing with reliable performance.
The 3.5 mm Calcaneal Plate is a specialized orthopedic implant developed for the treatment and stabilization of fractures in the calcaneus (heel bone). Designed with advanced medical-grade materials such as stainless steel or titanium, this plate offers superior durability, corrosion resistance, and excellent biocompatibility, ensuring safe and long-term use within the human body.
Its anatomically contoured shape is specifically engineered to match the complex structure of the calcaneus, allowing for a precise and secure fit. This reduces the need for excessive intraoperative adjustments and minimizes soft tissue irritation. The low-profile design further enhances patient comfort by decreasing implant prominence under the skin.
The plate features multiple screw hole configurations, enabling surgeons to achieve optimal fixation and stability depending on the fracture pattern. It supports both locking and non-locking screws, providing flexibility in surgical techniques and ensuring strong bone anchorage even in osteoporotic conditions.
Ideal for complex intra-articular and extra-articular calcaneal fractures, the 3.5 mm Calcaneal Plate promotes proper alignment and faster healing. Its robust construction helps restore the natural anatomy of the heel while maintaining stability throughout the recovery process.
This implant is widely used in orthopedic trauma surgeries and is trusted by surgeons for its reliability, precision, and performance. It plays a crucial role in improving patient outcomes by enabling early mobilization and reducing recovery time.












