Description
The DSS 1064-Q series from CryLas GmbH represents a pinnacle in diode-pumped, passively Q-switched solid-state laser technology. Designed with precision and efficiency in mind, these lasers operate at a wavelength of 1064 nm, delivering robust performance across various scientific and industrial applications. The meticulous engineering of these systems ensures that they provide consistent pulse energy and peak power, catering to the demanding requirements of fields such as biology, biomedicine, chemistry, and analytics.
Each model within the DSS 1064-Q series is crafted to offer unique specifications tailored to specific needs. With pulse energies exceeding 90 µJ and peak powers reaching up to 60 kW, these lasers are capable of delivering high-intensity beams with remarkable stability and precision. The pulse width is tightly controlled, ensuring a full width at half maximum (FWHM) of less than 1.5 ns, which is crucial for applications requiring high temporal resolution. Furthermore, the polarization ratio of greater than 100:1 ensures that the laser beams maintain a high degree of coherence and directionality.
In terms of usability, the DSS 1064-Q series offers flexibility with both external and internal triggering options, alongside the choice of free beam or fiber coupling. This adaptability is complemented by a robust interface featuring RS 232 and USB connectivity, allowing for seamless integration into existing systems. The laser systems are also equipped with features such as a manual shutter or electrical beam blocker, and the option for an external beam expander or attenuator, enhancing their versatility in various operational environments.
The design of the DSS 1064-Q series also emphasizes user safety and convenience. The compact dimensions of the laser head and controller units facilitate easy installation and integration into diverse setups. Additionally, the systems comply with stringent safety standards, being classified as class 4 / IV or 3B / IIIb according to IEC 60825-1:2007. This ensures that users can operate the lasers with confidence, knowing that safety protocols are rigorously upheld.
Overall, the DSS 1064-Q series from CryLas GmbH stands out as a reliable and high-performance solution for professionals seeking advanced laser systems. With their cutting-edge technology and user-centric design, these lasers are poised to meet the challenges of modern scientific and industrial applications.
DSS 1064-Q Diode Pumped Q-Switched Solid-State Laser
Specifications
Avg. Power: | 0.2 W |
---|---|
Wavelength: | 1064 nm |
Repetition Rate: | 1 – 20 kHz |
Spatial Mode (M^2): | 1 |
Pulse Duration: | 1.5 ns |
Pulse-to-Pulse Stability (RMS): | 2 % |
Cooling: | Air |
Energy / Pulse: | 90 uJ |
Features
- Stable 1064 nm Output: Diode-pumped passively Q-switched solid-state laser
- Ultra-Short Pulses: Delivers pulse widths ≤ 1.5 ns (FWHM)
- High Pulse Energy Options: From >10 µJ up to >90 µJ depending on model
- High Peak Power: Generates up to 60 kW peak power
- Flexible Repetition Rates: Operates up to 20 kHz with internal or external trigger
- Excellent Beam Quality: TEM00 spatial mode with low divergence (<4 mrad)
- Strong Polarization: Vertical polarization ratio >100:1 for stable output
- Reliable Stability: Pulse energy drift < ±5% over 6 hours; pulse-to-pulse variation <3% RMS
- Compact Design: Small laser head (87.5 x 35.4 x 33 mm) for OEM integration
- Versatile Output Options: Free beam or fiber-coupled configurations
- Multiple Interfaces: RS-232, USB, TTL control, and power monitor
- Quick Warm-Up: Ready for operation in under 5 minutes
- Laser Safety: Classified as Class 3B / IIIb or Class 4 / IV under IEC 60825-1:2007
Applications
- Biomedical Research: High precision UV laser pulses for imaging and diagnostics
- Biology: Fluorescence excitation and cell analysis requiring stable pulsed sources
- Chemical Analysis: Spectroscopy, Raman and other molecular characterization techniques
- Analytical Instruments: Integration into OEM systems for quality control and inspection
- Material Processing: Micro-machining and surface treatment requiring short high-power pulses
- Scientific Research: Pulsed laser experiments demanding consistent, high-quality UV light
Frequently Asked Questions
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