Skip to main content

Technology

Femtosecond technology engineered for industrial scale

Small, air-cooled and simple inside. The architecture of a LITILIT laser changes how it integrates, what it costs to run and how far a system can scale.

[value] L

Volume of the laser head, ready to mount on the motion system.

0

Chillers, water lines or coolant to install and maintain.

1 → [value]

Lasers running side by side in one system.

No chiller. No water loop. Just the laser.

[Photo: LITILIT head and controller, to scale]
LITILIT head + controller. That is the whole system.
[Photo: typical water-cooled laser with chiller, same scale]
Typical water-cooled laser. Head, chiller and water loop.

Architecture

Simpler inside, easier to integrate

Four design choices that make the difference on a machine and on a production line.

Compact format

The laser head is small enough to mount on the motion system, close to the process optics.

Passive air cooling

Heat leaves through the housing. No chiller, no water, no coolant to service.

All-fiber design

No free-space optics to align, so the laser tolerates shock, vibration and temperature changes.

Built for volume

Fewer parts and a repeatable build make the laser practical to produce in thousands.

Size and environment

What a machine builder needs to plan the installation. Full drawings are in the integration resources.

Laser head dimensions
[value] × [value] × [value] mm
Laser head weight
[value] kg
Cooling
Passive air cooling
Operating temperature
[value] – [value] °C
Shock and vibration
Tested to [standard]
Warm-up time from cold start
< 10 minutes
Control interfaces
CAN, USB (TTL pulse picker, analog power input)

One laser. Then a matrix.

[Animation: one laser, four lasers, matrix, production line]

Because each laser is small and cools itself, several can be joined into one system that processes a larger area in a single pass. Throughput grows by adding lasers, not by building a bigger one.

For machine builders

OEM integration

For machine builders who put LITILIT lasers into their own systems: engineering support during integration and a supplier that can follow your volumes.

  1. 01 · Evaluate

    Demo unit and lab tests

    Test a laser in your setup and run your parts in our application lab before you commit.

  2. 02 · Integrate

    Engineering support

    Drawings, STEP models, control commands and an engineer who works with your team on the first machines.

  3. 03 · Scale

    Volume supply

    Agreed lead times, volume pricing, long-term availability and service for the machines you ship.

Integration resources

Integration guide

Mounting, cooling clearances, power supply, interlocks and safety for machine builders.

Download PDF

STEP models and drawings

3D models and dimensional drawings of the laser head and controller.

Request CAD files

Control command reference

Commands and protocols for CAN and USB control.

Download PDF

Building a machine around a femtosecond laser?

Tell us about the system, the volumes and the timeline. An engineer will walk through the integration with your team.

Discuss your application with an engineer.

Tell us the material and the result you need. A laser engineer replies within [response time].

Buying for production?

Ask about lead times, volume pricing, supply capacity and long-term availability.

Request a quote
Built in Breakdance