FQSS 213-50 Diode-Pumped Q-Switched Solid-State Laser

Specifications

Avg. Power: 3 W
Wavelength: 213 nm
Repetition Rate: 11 – 0.06 kHz
Spatial Mode (M^2): 1
Pulse Duration: 1.3 ns
Pulse-to-Pulse Stability (RMS): 2 %
Cooling: Air
Energy / Pulse: 50 uJ
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Features


  • Ultra-Short Pulse Duration: Achieve precision with pulse widths of less than 1.3 ns, ideal for sensitive applications in biology, biomedicine, chemistry, and analytics.

  • High Peak Power: Delivers a peak power of 40 kW at frequencies ranging from 1 to 60 Hz, ensuring effective performance for demanding tasks.

  • Versatile Pulse Repetition Rate: Operates at a flexible pulse repetition rate of 1 to 60 Hz with external trigger capability, adapting to various application needs.

  • Exceptional Beam Quality: Features a beam divergence of less than 3.0 mrad and beam ellipticity of less than 2:1, providing high-quality, focused laser output.

  • Consistent Performance: Maintains long-term pulse energy stability within ±5% over 6 hours and pulse-to-pulse stability of less than 2% rms.

  • High Energy Output: Provides pulse energy greater than 50 µJ, ensuring sufficient power for diverse applications.

  • Advanced Polarization: Offers a polarization ratio greater than 100:1, horizontal, optimizing the laser for specific scientific and industrial uses.

  • Efficient Power Consumption: Consumes less than 90 W of electrical power, compatible with 90 - 265 V AC or 24 V DC power sources.

  • Quick Setup: Features a warm-up time of less than 10 minutes, minimizing downtime and enhancing productivity.

  • Compact Design: The laser head measures 298 x 65 x 46 mm, allowing for easy integration into various systems.

  • Comprehensive Interface Options: Equipped with RS 232 and USB interfaces for seamless connectivity and control.

  • Safety and Compliance: Classified as a class 4 laser according to IEC 60825-1:2007, with optional manual shutter or electrical beam blocker for enhanced safety.

  • Optional Enhancements: Includes options for an external telescope (e.g., M=5) and a standalone system that is CDRH compliant, featuring a key switch, heat sink, and manual beam shutter.

Applications


  • Biomedical Research: Precise UV laser pulses for fluorescence and microscopy

  • Biology: Cellular and molecular studies requiring UV excitation

  • Analytical Chemistry: Spectroscopy and trace analysis with UV excitation

  • Material Science: UV laser processing and micro-machining

  • OEM Integration: Suitable for incorporation into custom laser systems

  • Quality Control & Inspection: High-resolution UV imaging and diagnostics