Description
Indylit 10 is high energy air-cooled laser suitable for a variety of ultrafast applications.
The laser head features an entirely passively-cooled design (patent pending), ensuring high stability of the optical parameters such as pulse duration, beam pointing and power.
Its mechanical construction can withstand almost everything you can throw at it, making Indylit a new kind of industrial femtosecond technology.
Build-in second harmonics (SH) module provides wavelength extension enabling even more different material processing applications.
INDYLIT 10 Industrial femtosecond laser
Specifications
Center Wavelength: | 1030 nm |
---|---|
Repetition Rate: | 100 – 1600 kHz |
Pulse Energy: | 0.1 mJ |
Energy Stability (RMS): | 1 % |
Pulse Duration: | 400 fs |
Pointing Stability (RMS): | 20 urad |
Polarization: | Horizontal |
Spatial Mode (M^2): | <1.2 |
Amplification Scheme: | Not Specified |
Average Power: | > 10 W @ 100 kHz; > 12 W @ 1000 kHz |
Internal Pulse Repetition Rate: | 100 kHz - 1.6 MHz |
Triggering Mode: | Pulse picker control via TTL gate |
Pulse Picker: | Integrated |
Burst Length: | 1...12 pulses |
Max. Pulse Energy: | > 100 µJ |
Max. Energy In Burst: | > 400 µJ |
Power Attenuation: | 100 - 1 % |
Beam Circularity: | > 0.90 |
Beam Diameter (1/e² Level): | 2.6 mm ± 0.2 mm |
Beam Divergence: | < 1 mrad |
Laser Control Interface: | CAN, USB |
Cooling: | air, (passive); forced air (fans) |
Operating Voltage: | 100 ... 240 V AC, 47 ... 63 Hz |
Average Power Consumption (after Warm-up): | 300 W |
Operating Temperature: | 18 – 30 °C |
Humidity: | non condensing |
Transportation/storage Temperature: | -20 – +70 °C |
Dimensions Laser Head (L X W X H): | 498 x 248 x 194 mm |
Dimensions Control Unit (L X W X H): | 449 x 370 x 140 mm |
Laser Head Cooling: | Air (passive) |
Control Unit Cooling: | Forced air (fans) |
Features
- High pulse energy and clean pulse shape
- Adjustable repetition rate, pulse duration, power
- Passively air cooled
- Maintenance-free & turn-key
- Extremely robust and stable
Applications
- Ophthalmology
- Semiconductor and electronics
- Materials microprocessing
- Display manufacturing
- Battery manufacturing
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