
Femtosecond lasers
INDYLIT 10
Industrial Femtosecond Laser for Industrial and Medical Applications
The Indylit 10 is a compact, robust, passively air-cooled femtosecond laser designed for industrial and medical applications. The laser emits high-energy (up to 100 μJ) femtosecond pulses with very high temporal contrast. The beam has a Gaussian shape with excellent beam quality and roundness. The laser is dust and water protected (class IP51) and is designed for 24/7 operation in any environment. These properties make the Indylit 10 a perfect choice for demanding applications where exquisite optical quality and reliable long-term operation are required.
- Wavelength
- 1030 nm
- Pulse duration
- 400 fs – 4 ps
- Average power
- 10 W
- Repetition rate
- 80 kHz – 1.6 MHz
Key features
Adjustable repetition rate, pulse duration, power
High pulse energy and clean pulse shape
Passively air cooled
Maintenance-free & turn-key
Dust and water protection (IP51)
Technical Specifications
Full specification from the INDYLIT 10 datasheet. Measurement conditions and patents are in the Notes tab.
- Central wavelength
- 1030 ± 2 nm
- Average power 1)
-
> 8 W @ 80 kHz
> 10 W @ 1 MHz - Max. pulse energy 1)
-
> 100 μJ @ 80 kHz
> 10 μJ @ 1 MHz - Pulse duration
- 380 ± 20 fs
- Pulse duration tunability
- 400 fs – 4 ps
- Internal pulse repetition rate
-
80 kHz – 1.6 MHz,
down to 25 kHz in Burst Mode - Pulse picker
- Integrated
- Triggering mode
- Pulse picker control via TTL gate
- Burst length
- 1...12 pulses
- Max. energy in burst
- > 300 μJ at 25 kHz
- Power attenuation 2)
- 100 – 1%
- Beam quality
- M² < 1.2
- Beam circularity 3)
- > 0.90
- Beam diameter (at 1/e² level)
-
2.6 ± 0.3 mm
5.0 ± 0.5 mm (optional)
7.5 ± 0.7 mm (optional) - Polarization
- Linear horizontal, >1000:1 extinction
- Prepulse contrast
- > 1:1000
- Post pulse contrast
- > 1:100
- Beam divergence (full angle)
- < 1 mrad (for 2.5mm beam)
- Beam pointing (RMS) 4)
- < 20 μrad
- Beam pointing vs temp.
- < 20 μrad/°C
- Power Stability (RMS) 5)
- < 1%
- Pulse Energy Stability (RMS) 6)
- < 1%
- Warm-up time (cold start)
- < 30 min
- Warm-up time (warm start)
- < 5 min
- Laser control interface
- CAN, USB
- Operating voltage
- 24V, 25A (100...240 V AC, 47...63 Hz to 24V AC/DC converter included)
- Average power consumption (after warm-up)
- 200 W
- Maximal power rating
- 700 W
- Operating temperature
- 18 – 33 °C 7)
- Humidity
- Non-condensing
- Transportation/storage temperature
- -20 – +70 °C
- Dimensions – Laser head (L x W x H)
- 482 x 230 x 163 mm
- Dimensions – Control unit (L x W x H)
- 449 x 385 x 140 mm
- Dimensions – AC/DC converter (L x W x H)
- 250 x 125 x 60 mm
- Umbilical length
- 3 ± 0.1 m
- Cooling – Laser head
- air (passive)
- Cooling – Control unit
- forced air (fans)
1) Please refer to the power and energy vs. pulse repetition rate curves for typical values.
2) Attenuation can be controlled by a few different methods: a) by PC user interface, b) by CAN register, c) by analog input (0 – 1 V, rise time < 1μs). Beam quality specifications are maintained down to 10% power level.
3) Defined as the worst case ellipticity along the z-scan (± 5 × LRayleigh) of the beam.
4) Measured during 8 h operation starting 30 minutes after warm-up. Environmental temperature stability within ± 1 °C.
5) Measured with integration time of 1s at the same conditions as (4).
6) Measured within 10 s time interval for at least 1000 pulses.
7) Higher operational temperature is available on request. Please contact LITILIT for details.
8) Technology is protected by international patents: LT6261 (B); JP6276471 (B2); US10038297 (B2); EP3178137; DK3178137 (T3); CN106575849 (B); PL3178137 (T3); LT6639 (B); LT2020 563. For details please contact Litilit.
Applications
Materials microprocessing
Ophthalmology
Semiconductor and electronics
Fabrication of medical devices
Metal Black marking
Where INDYLIT 10 is used
Each application page walks through the problem, the process and the results.
All applications
Materials microprocessing
Micro-drilling, cutting and texturing of metals, ceramics and polymers, including medical devices.

Metal black marking
Corrosion-resistant black marking and codes that survive cleaning.

Semiconductor and electronics
Dicing, grooving and drilling of thin wafers and brittle materials.
Integration resources
INDYLIT 10 datasheet
Full PDF datasheet with performance curves, beam profiles, drawings and electrical specifications.
Dimensions and drawings
Laser head 482 x 230 x 163 mm, control unit 449 x 385 x 140 mm. Dimensional drawings are in the datasheet.
Support and dealers
Integration questions, service and your regional contact.
Full lineup
Which system is right for you?
Every Litilit laser is built on the same robust fiber platform. Choose the model that best matches your pulse duration, power, and repetition rate requirements.
| Specification | INDYLIT 10 Industrial Femtosecond Laser for Industrial and Medical Applications Selected | INDYLIT 3 Ultracompact Femtosecond Laser for Ophthalmology | BIOLIT 2 Femtosecond Fiber Laser for Biophotonics |
|---|---|---|---|
| Wavelength | 1030 nm | 1030 nm | 1050 nm |
| Pulse Duration | 400 fs – 4 ps | 290 fs | 70 fs |
| Average Power | 10 W | 2.5 W | 2 W |
| Repetition Rate | 80 kHz – 1.6 MHz | 1–3 MHz | 20 MHz |
| Primary Applications | Materials microprocessing, Ophthalmology, Semiconductor and electronics | Ophthalmology, Photopolymerization, Semiconductor and electronics | Multiphoton microscopy, Photopolymerization, Ophthalmology |
| Request Quote | View INDYLIT 3 | View BIOLIT 2 |
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