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Page 15 - Pulsed DPSS Lasers

IDOL-T Q-switched solid-state laser
Xiton Photonics GmbH
The IDOL-series are high repetition rate solid-state diode pumped Q-switched lasers with the unique fundamental wavelength of 1342 nm. This allows the frequency conversion to powerful red and blue TEM00 - mode laser radiation. All lasers deliver < 13 ns short pulses with a superior beam quality. Due to ...

Specifications

Avg. Power: 2 W
Wavelength: 671 nm
Repetition Rate: 1-50kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 13 ns
IDOL-S Q-switched solid-state laser
Xiton Photonics GmbH
The IDOL-series are high repetition rate solid-state diode pumped Q-switched lasers with the unique fundamental wavelength of 1342 nm. This allows the frequency conversion to powerful red and blue TEM00 - mode laser radiation. All lasers deliver < 13 ns short pulses with a superior beam quality. Due to ...

Specifications

Avg. Power: 2 W
Wavelength: 671 nm
Repetition Rate: 1-50kHz
Spatial Mode (M^2): 1.2
Pulse Duration: 13 ns
IDOL-Q Q-switched solid-state laser
Xiton Photonics GmbH
The IDOL-series are high repetition rate solid-state diode pumped Q-switched lasers with the unique fundamental wavelength of 1342 nm. This allows the frequency conversion to powerful red and blue TEM00 - mode laser radiation. All lasers deliver < 13 ns short pulses with a superior beam quality. Due to ...

Specifications

Avg. Power: 4.5 W
Wavelength: 1342 nm
Repetition Rate: 1-100kHz
Spatial Mode (M^2): 1.2
Pulse Duration: 13 ns
IXITON-193-SLM Q-switched solid-state laser
Xiton Photonics GmbH
Single longitudinal and transversal mode emission is achieved by injection-seeding with the narrow-linewidth radiation of a cw micro-chip laser. The lasers provide short output pulses with a duration of ∆ t <12 ns in a diffraction limited beam with M² < 1.2 at a repetition rate of 8 to 15 kHz. The spectral bandwidth ...

Specifications

Avg. Power: 0.01 W
Wavelength: 193.368 nm
Repetition Rate: 6-6kHz
Spatial Mode (M^2): 1.6
Pulse Duration: 7 ns
SLM-5HG Q-switched solid-state laser
Xiton Photonics GmbH
Single longitudinal and transversal mode emission is achieved by injection-seeding with the narrow-linewidth radiation of a cw micro-chip laser. The lasers provide short output pulses with a duration of ∆ t <12 ns in a diffraction limited beam with M² < 1.2 at a repetition rate of 8 to 15 kHz. The spectral bandwidth ...

Specifications

Avg. Power: 0.1 W
Wavelength: 213 nm
Repetition Rate: 8-15kHz
Spatial Mode (M^2): 1.6
Pulse Duration: 8 ns
SLM-T Q-switched solid-state laser
Xiton Photonics GmbH
Single longitudinal and transversal mode emission is achieved by injection-seeding with the narrow-linewidth radiation of a cw micro-chip laser. The lasers provide short output pulses with a duration of ∆ t <12 ns in a diffraction limited beam with M² < 1.2 at a repetition rate of 8 to 15 kHz. The spectral bandwidth ...

Specifications

Avg. Power: 2 W
Wavelength: 355 nm
Repetition Rate: 8-15kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 10 ns
SLM-S Q-switched solid-state laser
Xiton Photonics GmbH
Single longitudinal and transversal mode emission is achieved by injection-seeding with the narrow-linewidth radiation of a cw micro-chip laser. The lasers provide short output pulses with a duration of ∆ t <12 ns in a diffraction limited beam with M² < 1.2 at a repetition rate of 8 to 15 kHz. The spectral bandwidth ...

Specifications

Avg. Power: 4 W
Wavelength: 532 nm
Repetition Rate: 8-15kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 12 ns
SLM-1.06 Q-switched solid-state laser
Xiton Photonics GmbH
Single longitudinal and transversal mode emission is achieved by injection-seeding with the narrow-linewidth radiation of a cw micro-chip laser. The lasers provide short output pulses with a duration of ∆ t <12 ns in a diffraction limited beam with M² < 1.2 at a repetition rate of 8 to 15 kHz. The spectral bandwidth ...

Specifications

Avg. Power: 8 W
Wavelength: 1064 nm
Repetition Rate: 8-15kHz
Spatial Mode (M^2): 1.2
Pulse Duration: 12 ns
SLM-213 Q-switched Solid-State Laser
Xiton Photonics GmbH
The SLM-266 is a single frequency all-solid-state laser system for applications in the UV such as optical metrology, calibration of spectrometers and holographic applications. The spectral bandwidth is less than 80MHz is near its theoretical Fourier limit.

Specifications

Avg. Power: 0.1 W
Wavelength: 213 nm
Repetition Rate: 1-20kHz
Spatial Mode (M^2): 1.6
Pulse Duration: 8 ns
SLM-213 Q-switched Solid-State Laser
Xiton Photonics GmbH
The SLM-266 is a single frequency all-solid-state laser system for applications in the UV such as optical metrology, calibration of spectrometers and holographic applications. The spectral bandwidth is less than 80MHz is near its theoretical Fourier limit.

Specifications

Avg. Power: 0.1 W
Wavelength: 213 nm
Repetition Rate: 1-20kHz
Spatial Mode (M^2): 1.6
Pulse Duration: 8 ns
SLM-266 Q-switched Solid-State Laser
Xiton Photonics GmbH
The SLM-266 is a single frequency all-solid-state laser system for applications in the UV such as optical metrology, calibration of spectrometers and holographic applications. The spectral bandwidth is less than 80MHz is near its theoretical Fourier limit.

Specifications

Avg. Power: 0.5 W
Wavelength: 266 nm
Repetition Rate: 1-20kHz
Spatial Mode (M^2): 1.7
Pulse Duration: 10 ns
SLM-355 Q-switched Solid-State Laser
Xiton Photonics GmbH
The SLM-355 is a single frequency all-solid-state laser system for applications in the UV such as optical metrology, calibration of spectrometers and holographic applications. The spectral bandwidth is less than 80MHz is near its theoretical Fourier limit.

Specifications

Avg. Power: 2 W
Wavelength: 355 nm
Repetition Rate: 1-20kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 10 ns
For generating high peak power IR pulses of a few hundred picoseconds, microchip lasers are economical, compact, and reliable. Sub-nanosecond 1064nm pulses are indeed directly generated from the diode pumped passively Q-switched Nd:YAG microchip engine. Microchips are also easy to operate and service ; controllers can be used with ...

Specifications

Avg. Power: 0.2 W
Wavelength: 1064 nm
Repetition Rate: 19-19kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 0.75 ns
For generating high peak power IR pulses of a few hundred picoseconds, microchip lasers are economical, compact, and reliable. Sub-nanosecond 1064nm pulses are indeed directly generated from the diode pumped passively Q-switched Nd:YAG microchip engine. Microchips are also easy to operate and service ; controllers can be used with ...

Specifications

Avg. Power: 0.2 W
Wavelength: 1064 nm
Repetition Rate: 130-130kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 1.4 ns
For generating high peak power IR pulses of a few hundred picoseconds, microchip lasers are economical, compact, and reliable. Sub-nanosecond 1064nm pulses are indeed directly generated from the diode pumped passively Q-switched Nd:YAG microchip engine. Microchips are also easy to operate and service ; controllers can be used with ...

Specifications

Avg. Power: 0.09 W
Wavelength: 1064 nm
Repetition Rate: 65-65kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 0.6 ns
For generating high peak power IR pulses of a few hundred picoseconds, microchip lasers are economical, compact, and reliable. Sub-nanosecond 1064nm pulses are indeed directly generated from the diode pumped passively Q-switched Nd:YAG microchip engine. Microchips are also easy to operate and service ; controllers can be used with ...

Specifications

Avg. Power: 0.19 W
Wavelength: 1064 nm
Repetition Rate: 45-45kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 0.7 ns
For generating high peak power IR pulses of a few hundred picoseconds, microchip lasers are economical, compact, and reliable. Sub-nanosecond 1064nm pulses are indeed directly generated from the diode pumped passively Q-switched Nd:YAG microchip engine. Microchips are also easy to operate and service ; controllers can be used with ...

Specifications

Avg. Power: 0.14 W
Wavelength: 1064 nm
Repetition Rate: 19-19kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 1 ns
For generating high peak power IR pulses of a few hundred picoseconds, microchip lasers are economical, compact, and reliable. Sub-nanosecond 1064nm pulses are indeed directly generated from the diode pumped passively Q-switched Nd:YAG microchip engine. Microchips are also easy to operate and service ; controllers can be used with ...

Specifications

Avg. Power: 0.3 W
Wavelength: 1064 nm
Repetition Rate: 13-13kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 3 ns
For generating high peak power IR pulses of a few hundred picoseconds, microchip lasers are economical, compact, and reliable. Sub-nanosecond 1064nm pulses are indeed directly generated from the diode pumped passively Q-switched Nd:YAG microchip engine. Microchips are also easy to operate and service ; controllers can be used with ...

Specifications

Avg. Power: 0.04 W
Wavelength: 1064 nm
Repetition Rate: 5-5kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 1 ns
For generating high peak power green pulses of a few hundred picoseconds, microchip lasers are economical, compact, and reliable. The 532nm pulses are produced by harmonic conversion from the IR systems, the same compact sealed package being used for either wavelength. Microchips are also easy to operate and service; controllers can ...

Specifications

Avg. Power: 0.1 W
Wavelength: 532 nm
Repetition Rate: 19-19kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 0.7 ns