top of page

Una tecnología para cada proyecto

FDM TECHNOLOGY

Builds parts by melting and extruding thermoplastic filament layer by layer. It's a versatile, cost-effective solution ideal for functional prototypes, jigs, and larger parts where strength and durability matter more than surface finish.

Mano con columna vertebral humana impresa en 3D en una impresora 3D.jpg

SLA TECHNOLOGY

Utiliza un láser UV para curar la resina líquida capa a capa, produciendo piezas con gran nivel de detalle y un acabado superficial liso. Es la opción ideal para proyectos que requieren gran precisión dimensional y resultados de alta calidad.

Complex multi-part models printed on 3D printer from black polyamide powder Detailed proto

INJECTION TECHNOLOGY

Injecting molten material into a custom mold to produce high volumes of identical parts with excellent consistency and surface finish. It's the preferred solution for large-scale production runs where cost-efficiency per unit is a priority.

The plastic parts mass production by injection mold The plastic blow parts from injection

CNC Laser Cutting Technology

CNC laser cutting uses a precisely controlled laser to cut flat materials—such as metal, wood, or acrylic—with high accuracy and clean edges. It's an efficient solution for producing flat components, templates, and detailed parts quickly and at scale.

Proceso de corte por láser

Tecnología de mecanizado/fresado CNC

Removes material from a solid block using precision cutting tools to create highly accurate parts and components. It's the go-to technology for functional prototypes, metal parts, and applications requiring tight tolerances and superior mechanical strength.

mecanizado CNC .png
bottom of page