- Home
- Technologies
Technologies
Choose the right additive manufacturing technology for your project. From rapid prototyping to production-grade components, we offer a wide range of industrial 3D printing technologies for every application.
Advanced Manufacturing Solutions
Selecting the right 3D printing technology is essential for achieving the best balance of quality, strength, accuracy, cost and production speed. Our engineering team helps you choose the most suitable manufacturing process based on your application, material requirements and production volume.
Additive Manufacturing

FDM Printing
Cost-effective 3D printing technology using thermoplastic filaments to produce durable prototypes, functional components, and end-use parts quickly.

SLA Printing
High-resolution resin printing technology delivering smooth surfaces, intricate details, and exceptional accuracy for prototypes, models, and precision components.

SLS (Selective Laser Sintering)
Powder-based 3D printing process producing strong, functional nylon parts without support structures for engineering and production applications.

MJF (Multi Jet Fusion)
Advanced powder-bed technology creating highly accurate, durable, and isotropic nylon components with excellent surface finish and production efficiency.

DMLS (Direct Metal Laser Sintering)
Metal additive manufacturing process producing complex, high-strength metal components with exceptional precision for aerospace, automotive, and industrial applications.
Manufacturing Technologies

Vacuum Casting
Low-volume manufacturing process producing high-quality polyurethane parts with excellent surface finish, ideal for functional prototypes and pre-production runs.

Proto Moulding
Rapid tooling solution enabling quick production of prototype parts, reducing development time before full-scale manufacturing begins.

Injection Moulding
High-volume manufacturing process delivering consistent, precise plastic components with excellent repeatability, durability, and cost efficiency for production.

Carbon Fibre Composite Manufacturing
Lightweight, high-strength composite manufacturing for demanding applications requiring exceptional stiffness, durability, and superior performance across industries.

CNC-supported Manufacturing
Precision machining process producing highly accurate metal and plastic components with tight tolerances, excellent finishes, and reliable repeatability.
Engineering Technologies

CAD Modelling
Professional 3D CAD design services transforming concepts into accurate digital models optimized for manufacturing, simulation, and product development.

Reverse Engineering
Capture existing components and recreate accurate digital CAD models for redesign, manufacturing, quality improvement, or replacement part development.

3D Scanning
High-precision scanning technology capturing accurate digital representations of physical objects for inspection, reverse engineering, and product development.

Product Development
End-to-end engineering support from concept through design, prototyping, testing, and manufacturing for successful product commercialization.

Prototype Validation
Verify product functionality, fit, form, and performance through comprehensive prototype testing before committing to final production.

Design Optimization
Improve product performance, manufacturability, weight, and cost through engineering analysis and optimized design strategies.
Materials We Work With

PLA (Polylactic Acid)

ABS (Acrylonitrile Butadiene Styrene)

PETG (Polyethylene Terephthalate Glycol)

TPU (Thermoplastic Polyurethane)

Nylon 12 (Polyamide 12)

Glass-Filled Nylon

Photopolymer Resin

Carbon Fibre Composites
Applications
Rapid Prototyping
Functional Testing
End-use Parts
Tooling
Manufacturing
Medical Models
Custom Components
Low-volume Production
Need help choosing the right technology?
A curated material library spanning plastics, composites and metals — selected for mechanical performance, certifications and finish.