MGMT Orthopedic Implants
MGMT invests strategically in state-of-the-art manufacturing technologies to deliver unmatched precision machining capabilities for orthopedic medical instruments. Our commitment to innovation spans advanced CNC systems, five-axis machining centers, and automated inspection tools, enabling us to achieve micron-level tolerances critical for medical device accuracy.
Our vertically integrated approach—from design validation to rapid prototyping—accelerates time-to-market while adhering to ISO 13485 standards. Whether machining multi-faceted components or micro-machined features requiring high precision, we leverage automated quality control systems (e.g., CMM inspection) to ensure every part meets rigorous medical device requirements.
3000
FT2 Workshop Area
12
Years Experience
50
Engineer Team
30
Countries Covered
Modern orthopedics is moving away from "one size fits all." Using CT and MRI data, manufacturers can now produce patient-specific implants. 3D printing (Additive Manufacturing) allows for complex porous structures that promote osseointegration, significantly reducing the risk of implant rejection.
The introduction of Variable Angle (VA) Locking Compression Plates (LCP) allows surgeons to adjust the screw trajectory, accommodating different fracture patterns and anatomical variations. This flexibility is crucial in complex periarticular fractures.
Our R&D cycles are significantly faster, allowing clients to move from CAD designs to physical prototypes in weeks rather than months.
We utilize medical-grade Titanium alloys (Ti6Al4V ELI) and PEEK, sourced from audited, high-quality material suppliers.
China's robust infrastructure ensures that even during global disruptions, production and shipping of critical medical supplies remain steady.
We understand that every market has specific regulatory and anatomical requirements. Our team of 50+ engineers works closely with international partners to localize products. For instance, in regions with higher incidences of osteoporotic fractures, we provide augmented locking systems that provide superior stability in low-density bone.
Our products undergo rigorous fatigue testing and biocompatibility assessments to ensure they meet the life-saving standards required by surgeons worldwide.