Our technology

With our expertise in micro laser sintering, we realize components that are not feasible by conventional means - precisely, reliably and exactly tailored to your requirements.

Driven by precision, inspired by the passion for technology.

Micro laser sintering combines the advantages of additive manufacturing with those of micromachining to produce metallic micro parts with outstanding precision, detail resolution and surface quality. Our innovative process makes it possible to produce even complex components with microscopic precision, opening up completely new possibilities for your product development and production.

Process principle

1

CAD model
of the component

2

Application of the
powder layer

3

Laser melts
the powder

4

Lowering the
construction platform

5

Repeat the process
layer by layer until completion

6

Remove the
excess powder

7

Finished
component

The advantages of micro laser sintering technology

1. High precision

Finest structures on the smallest surface - with consistent accuracy down to the micrometer range

2. Maximum design freedom

With minimal restrictions - with the correct application of the design rules, complexity becomes feasible precision

3. Print-as-One

Complex assemblies without assembly with function integration

4. Variety of materials

Processing a wide variety of metal materials for a wide range of applications

5. Rapid market launch

Shortening development and production times

6. without tools,
without detours

Directly from design to component

The 3DMP Print-as-One solution

What previously had to be assembled from several individual parts,
is now produced in a single printing process.
With our "Print-as-One" solution, you save on assembly work, reduce sources of error and
gain in efficiency and component quality.

Before:
Assembly of several individual parts

After:
One component, one print - with 3DMP

Before After Arthroscopic Shaver disassembled into several componentsArthroscopic shaver made from 3D metal printing, manufactured using the laser sintering process for medical technology

Our materials

STAINLESS STEEL

Versatile, resilient and corrosion-resistant - stainless steel is ideal for robust applications with high demands on stability and durability.

Automobile

Aerospace

Jewelry

3D-printed grabber made of stainless steel, manufactured using the laser sintering process for medical technology applications

Titanium

Lightweight, extremely strong and biocompatible - titanium is perfect for demanding applications where weight, stability and compatibility are crucial.

Chemistry

Aerospace

Medicine

Jewelry

3D-printed earring made of titanium, manufactured using the laser sintering process

COPPER

Excellent conductivity combined with high dimensional accuracy - copper is predestined for applications where electrical or thermal properties are paramount.

Electrical engineering

Welding and soldering technology

Heating technology

3D-printed component made of copper, manufactured using the laser sintering process

INCONEL 718*

Heat-resistant, strong and corrosion-resistant - Inconel 718* is the first choice for extreme conditions and high mechanical loads.

Chemistry

Nuclear industry

Aerospace

3D-printed component made from Inconel, manufactured using the laser sintering process

Other materials in use

In addition to our main materials, we also process other materials on request. Together we will check the feasibility and advise you on the optimum choice of material for your application.

Platinum

Gold

Cobalt

Chrome

Tungsten

3D-printed skull made of gold, manufactured using the laser sintering process.

Technical key figures

BAURAUM

60 x 60 x 45 mm (LxWxH)

LAYER THICKNESS

< 10 μm

PARTIALLY SEALED

> 99.5%

RAUHEIT

Ra: 1 μm
Rz: 5 μm

MINIMUM WALL THICKNESS

30 μm

RESOLUTION
ACCURACY

5 μm

FOCUS-
DIAMETER

< 30 μm

Thank you for your inquiry.
We will get back to you shortly.