Plates & Fixators
Locking compression plates, DHS/DCS, anatomical plates.
Dynamic Hip Screw (DHS) Plate
Stainless Steel 316L â The gold-standard sliding hip screw for stable intertrochanteric and femoral neck fractures, allowing controlled fracture impaction under load.
Dynamic Condylar Screw (DCS) Plate
Stainless Steel 316L â A fixed 95° condylar screw-and-plate construct for distal femoral and subtrochanteric fractures requiring rigid angular stability.
Proximal Humerus Locking Plate (PHILOS)
Titanium Ti-6Al-4V â An anatomically contoured proximal humerus plate with a divergent locking-screw array and suture holes for two-, three- and four-part fractures.
Distal Femur Locking Plate (LISS)
Titanium Ti-6Al-4V â A lateral distal femur plate designed for minimally invasive submuscular insertion (MIPO), acting as an internal fixator for comminuted supracondylar fractures.
Proximal Tibia Locking Plate
Titanium Ti-6Al-4V â An anatomic lateral tibial plateau plate supporting the articular surface with a raft of subchondral locking screws for split-depression fractures.
Distal Radius Volar Locking Plate
Titanium Ti-6Al-4V â A low-profile volar plate for distal radius fractures with a variable-angle distal row that lets the surgeon aim subchondral pegs beneath the articular surface.
Reconstruction Plate
Stainless Steel 316L â A notched plate that can be bent and twisted in three planes for pelvic, acetabular, clavicle and periarticular fractures with complex geometry.
One-Third Tubular Plate
Stainless Steel 316L â A thin, low-profile plate for lateral malleolus, olecranon and other subcutaneous locations where soft-tissue coverage is limited.
Clavicle Locking Plate
Titanium Ti-6Al-4V â A superior, anatomically pre-contoured clavicle plate for displaced midshaft and lateral clavicle fractures, reducing the need for intra-operative bending.
Calcaneal Locking Plate
Titanium Ti-6Al-4V â A perimeter calcaneal plate that supports the posterior facet and tuberosity in displaced intra-articular calcaneal fractures via a lateral extensile or sinus-tarsi approach.