SLA
Stereolithography — Precision & Fine Detail
SLA uses light to cure liquid resin into solid parts, enabling highly detailed components with smooth surface finishes and fine features.
At AddiTechLab, we use additive manufacturing technologies to transform digital designs into physical products. From prototypes and custom components to modern home and lifestyle products, our technology enables flexible, efficient, and on-demand manufacturing.
Additive manufacturing, commonly known as 3D printing, is a digital manufacturing process that creates physical objects layer by layer from a three-dimensional (3D) model.
Unlike traditional subtractive manufacturing processes that remove material to create a part, additive manufacturing builds an object by adding material only where it is needed.
This approach enables greater design flexibility, customization, rapid prototyping, complex geometries, and on-demand production, making it suitable for applications ranging from everyday products to functional and industrial components.
At AddiTechLab, additive manufacturing is more than simply turning a digital file into a physical object. We consider the design, material, application, manufacturing process, and production requirements to determine the right approach for each project.
Whether creating a prototype, custom component, or finished product, our focus is on combining thoughtful design with the appropriate manufacturing process to deliver practical and functional solutions.
Develop or prepare the digital model.
Select material based on the product’s intended use.
Choose the appropriate additive manufacturing process.
Transform the digital design into a physical product.
Review the completed part for its intended application.
Fused Deposition Modeling (FDM) is an additive manufacturing process that creates physical objects by depositing thermoplastic material layer by layer from a digital 3D model.
At AddiTechLab, FDM is at the core of our current manufacturing capabilities, allowing us to create prototypes, custom components, functional products, and modern everyday products with flexibility and efficiency.
Create physical models for testing, evaluation, and product development.
Produce customized parts designed for specific needs and applications.
Manufacture one-off products and small production runs without traditional tooling.
Create functional and decorative products for modern everyday living.
Produce physical models and learning aids for education and demonstrations.
Move designs from digital concepts to tangible products for evaluation and refinement.
Our current FDM production primarily uses PLA, a versatile thermoplastic commonly used for prototypes, models, decorative products, organizers, and a wide range of everyday applications.
As AddiTechLab continues to grow, we are exploring additional additive manufacturing technologies to expand the range of materials, applications, precision, and production capabilities we can support.
SLA uses light to cure liquid resin into solid parts, enabling highly detailed components with smooth surface finishes and fine features.
SLS uses laser energy to fuse powdered material into durable parts and can produce complex geometries without traditional support structures.
Multi Jet Fusion is designed for producing detailed and functional parts with consistency, making it suitable for applications moving beyond prototyping toward production.
| Technology | Best Suited For | Key Strength | Status |
|---|---|---|---|
| FDM | Prototypes, custom parts, everyday products & low-volume production | Versatility & cost efficiency | Available Now |
| SLA | Detailed prototypes, models & intricate parts | High detail & smooth finish | Planned Capability |
| SLS | Functional parts & complex geometries | Durability & design freedom | Planned Capability |
| MJF | Functional end-use parts & production applications | Consistency & scalability | Planned Capability |
Tell us what you’re looking to create, how the product will be used, and your project requirements. We’ll help identify the most suitable manufacturing approach based on your needs and our available capabilities.
Additive manufacturing connects digital design directly with physical production. At AddiTechLab, we consider each stage of the process, from the initial idea and digital model to material selection, manufacturing, and the finished product.
Every product starts with an idea, requirement, or problem to solve.
The concept is developed or prepared as a digital 3D model.
Dimensions, functionality, printability and manufacturing requirements are reviewed.
The appropriate material and process are selected for the application.
The digital model is transformed into a physical product.
The completed product is inspected before use or delivery.
Have an idea but no design yet? Our product design service can help you develop it.
Additive manufacturing opens new possibilities for creating customized solutions across a wide range of applications.
Turn digital designs into physical prototypes for testing, evaluation, and product development.
Create purpose-built components tailored to specific dimensions, functions, and applications.
Evaluate form, fit, appearance, and functionality before moving a concept forward.
Develop customized organizers, fixtures, holders, enclosures, and practical workplace solutions.
Create physical models, teaching aids, and demonstration pieces for learning environments.
Produce functional and decorative products for organization, everyday living, and modern spaces.
Tell us about your idea or project and let’s explore how additive manufacturing can help bring it to life.
Start Your Project →Additive manufacturing provides opportunities to produce differently—building products layer by layer, supporting on-demand production, and reducing the need for traditional tooling in many applications.
Products can be manufactured when needed, helping reduce excess inventory and unnecessary overproduction.
Material is placed where it is required to build the product, which can reduce waste compared with certain subtractive processes.
Suitable customized and low-volume parts can be produced without expensive molds or dedicated production tooling.
Digital designs can move directly into production, making customization, modification and reproduction easier.
At AddiTechLab, we are continuously exploring new technologies, materials, and manufacturing capabilities that can expand what we are able to create.
Our long-term vision is to grow beyond our current FDM capabilities into a broader additive manufacturing platform that can support increasingly diverse product development, prototyping, and production needs.
Whether you’re developing a prototype, custom component, new product, or exploring what’s possible with additive manufacturing, AddiTechLab is ready to help turn your idea into a physical product.
