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Laser light sources are essential in modern optical research, precision measurement, and industrial applications, offering high brightness, coherence, monochromaticity, and stability. LBTEK provides a comprehensive range of lasers, from continuous-wave (CW) to pulsed types, covering timescales from nanoseconds to femtoseconds and wavelengths from UV to near-infrared.

The series includes LD laser modules, fiber-coupled LD lasers, semiconductor lasers, single-longitudinal-mode lasers, and tunable lasers, ideal for spectroscopy, interferometry, and optical communication. Advanced models such as the Blitz nanosecond/picosecond lasers and dual-wavelength femtosecond lasers deliver high power and ultrashort pulses for ultrafast and nonlinear optics, while He-Ne lasers provide stable, high-quality beams for calibration and education. All products feature low noise, high power stability, and compact designs for easy integration and reliable long-term operation.

  • CW and Quasi-CW Lasers
  • Pulsed Laser
  • Helium- Neon Laser
  • Narrow Linewidth Laser
  • Tunable Laser

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Stable Continuous Output – Provides reliable CW and QCW emission for long-duration experiments and industrial operation.

Wide Wavelength Coverage – Available from 405 nm to 1550 nm, supporting diverse optical, scientific, and industrial applications.

High Power Stability – Ensures consistent laser performance with minimal fluctuation, ideal for precision measurements and analysis.

Low Noise Operation – Delivers clean and stable beam quality for sensitive imaging, spectroscopy, and research tasks.

Compact and Space-Saving Design – Small form factor allows easy integration into optical systems and laboratory setups.

TEM₀₀ Mode Beam Quality – High-quality Gaussian beam output suitable for precise focusing and optical alignment.

Collimated Beam Output – Built-in collimation heads provide circular or elliptical beams for direct use in optical systems.

Multiple Power Options – Modules available from ~5 mW to ~50 mW for flexible application requirements.

High Efficiency Laser Diode Technology – Offers better electrical-to-optical efficiency compared to traditional laser sources.

Long Service Life – Durable laser diode structure ensures extended operational lifespan and reduced maintenance.

Adjustable Output Power – Continuous power adjustment enables precise control for different experimental and system needs.

Integrated Thermal Management – Heat-sink versions improve heat dissipation, ensuring stable and safe long-term operation.

Strong Anti-Interference Performance – Reliable operation in complex laboratory and industrial environments.

Built-in Protection Circuits – Overheat protection, current limiting, and fuse safety enhance operational reliability.

Easy Installation and Integration – Compatible with optical benches, fiber systems, and custom R&D instruments.

Polarization Stability – Suitable for applications requiring controlled and stable polarization states.

Flexible System Integration – Available in semiconductor lasers, fiber-coupled modules, and free-space LD modules for versatile configurations.

Applications

  • Ideal for spectroscopy, Raman analysis, and analytical chemistry
  • Suitable for optical communication and fiber optic systems
  • Excellent for confocal microscopy and biomedical research
  • Useful in particle measurement and material analysis
  • Supports scientific education, laboratory R&D, and precision optical experiments

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