Allow Motion
Allow Motion is a deep-tech medtech startup revolutionizing prosthetics with AI-powered, myoelectric devices that restore intuitive, natural hand function. By combining advanced robotics, machine learning, and human-centered design, we create solutions that empower amputees to regain independence and improve quality of life. Our mission bridges cutting-edge technology with social impact, delivering affordable, high-performance bionic hands tailored to real human needs. With a focus on innovation, reliability, and accessibility, Allow Motion is transforming the future of assistive robotics.
Contact details
Delporte Joachim
CEO
+32485186510
delportejoachim@gmail.com
Materials
High-performance thermoplastic filaments reinforced with carbon fiber, glass fiber, or other additives for increased strength, stiffness, and durability.
Specialty filaments optimized for medical-grade applications, biocompatibility, and lightweight prosthetic components
Machinery and tooling
Industrial FDM 3D printers capable of printing continuous fiber-reinforced thermoplastics for functional, highstrength parts.
Custom-designed print heads, nozzles, and build plates to optimize adhesion, precision, and layer quality. Post-processing tools for support removal, surface finishing, and part consolidation.
Production
Additive manufacturing of complex, lightweight prosthetic and robotic components directly from CAD models.
On-demand production for prototypes, small series, and customized devices, reducing lead times and material waste.
Integration of multi-material prints for functional parts with variable stiffness, flexibility, or surface finish
Process optimization and consulting
Expertise in material selection, printing parameters, and part orientation to maximize mechanical performance and reliability.
Guidance on designing for additive manufacturing (DfAM) to reduce weight, enhance strength, and simplify assembly.
Workflow and production optimization for scalable, repeatable, and cost-effective FDM manufacturing.
Training and support for internal teams on advanced FDM printing techniques and composite handling.
Our use cases
3D-printed carbon-fiber-reinforced thermoplastic frame for a fully functional bionic hand.
- Advantages: Significant weight reduction, high strength, customizable geometry, rapid prototyping.
- Materials: Carbon-fiber reinforced Nylon (CF-Nylon) filament; medical-grade, biocompatible.
- System and process: FDM 3D printing with continuous fiber reinforcement; post-processing includes surface finishing and assembly.
- Further details (weight, surface quality, costs): Weight: 150 g per frame Surface quality: Smooth with minimal post-processing Cost: 30–50 € per frame in small series
- Development status: Prototype validated, small-batch production ongoing.
- Development partners: Internal R&D at Allow Motion; collaboration with KU Leuven
Further information
We welcome direct discussions to explore joint projects, technical exchanges, or partnership agreements. Please contact us for detailed technical dossiers, prototyping capabilities, and collaboration opportunities.
Dates and News
Q1 2026: Launch of next-generation myoelectric hand prototype.
Q2 2026: Participation in international medtech and additive manufacturing conferences.
Q3 2026: Start of pilot production series for new lightweight prosthetic components.
Q4 2026: Release of updated product specifications and clinical testing results.
Looking for cooperation for
We are seeking collaborations with partners in advanced materials, FDM 3D printing, lightweight composite design, and robotics integration. Opportunities include sharing competencies, co-developing prosthetic and exoskeleton components, exchanging technical know-how, and exploring joint product development with research institutions and industrial partners.