Solas

Solas low-energy femtosecond fiber laser
SOLAS-Series: OEM-Ready Femtosecond Fiber Lasers for Precision Applications

The SOLAS-Series is a cutting-edge family of OEM-ready femtosecond fiber lasers designed for seamless integration into multiphoton microscopy and high-fidelity micromachining. Built on a novel oscillator architecture, these compact lasers deliver exceptional performance with minimal user supervision, making them ideal for automated systems.

Key Features:

  • Compact & OEM-Friendly Design – Perfect for setups requiring effortless integration and minimal user interaction.
  • Intelligent Software Control – User-adjustable laser parameters ensure smooth compatibility with both microscopes and micromachining workstations.
  • Modular & Distributed Architecture – Engineered for user-friendly, service-free operation, simplifying experimental and industrial workflows.
  • Reliable High-Quality Output – Delivers consistent, ultra-clean femtosecond pulses 24/7 for the most demanding applications.

 

Whether you’re advancing scientific research, enhancing precision manufacturing, or pushing the boundaries of ultrafast laser technology, the SOLAS is built to support unmatched accuracy and reliability in every pulse.

Key Features of Solas 
  • Yb-Doped Fiber Gain Medium – Ensures efficient energy transfer and high-performance pulse generation.
  • Single-Emitter Diode Pump – Delivers stable and reliable optical pumping for optimal laser operation.
  • Compact, All-in-One Design – OEM-ready and engineered for seamless integration into commercial and experimental setups.
  • Customizable Wavelength Range – Operates from 1.025 – 1.035 μm, providing flexibility for diverse applications.
  • Wide Repetition Rate Range – Adjustable from 100 kHz to 25 MHz, supporting high-speed processes and precision control.
  • High-Pulse Energy OutputµJ-level pulses enable access to nonlinear optical effects for advanced material interactions.
  • Ultra-Low Noise Performance – Ensures clean, stable pulses with minimal background interference.
  • Optional Frequency Conversion – SHG, THG, and FHG modules extend accessibility to visible and UV wavelengths, enhancing versatility.

Whether you’re working on precision micromachining, spectroscopy, or biomedical imaging, this system delivers industry-leading performance with exceptional reliability.

Performance Parameters
Center Wavelength: Fixed between 1.025 and 1.035 μm
Repetition rate: From 100 kHz to 25 MHz
Pulse energy: >1 μJ
Average power output: >2 Watts
Pulse width: < 150 fs
Transverse mode: TEM00
Beam Diameter: 1.8mm ± 0.2 mm
Beam Divergence < 2 mrad
Dimensions 27 x 26 x 7.5 in3
Ideal for:

  • Precision Micromachining – Enables ultra-fine material processing for advanced manufacturing.
  • Microsurgery & Nano Ablation – Supports high-precision tissue and cell-level surgical procedures.
  • Multiphoton Microscopy – Enhances high-resolution imaging for biomedical and material sciences.
  • Terahertz (THz) Generation – Facilitates research in spectroscopy, imaging, and wireless technologies.
  • Photopolymerization – Enables controlled 3D microfabrication for biomedical and industrial applications.
  • Amplifier Seed Oscillator – Provides stable femtosecond pulses for laser amplification systems.
  • Streak Camera Synchronization – Ensures precise timing for ultrafast optical diagnostics.

Designed for cutting-edge research, medical applications, and industrial innovation, this system delivers unmatched precision for the most demanding fields

Datasheet

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