1.0μm High-Power Single-Frequency Laser (0.2–2W)

A highly stable 1.0μm single-frequency laser delivering 0.2–2W CW power with narrow linewidth, low drift, excellent long-term coherence, and robust fiber-based architecture.

Key Features

  • Narrow linewidth with single-frequency stability
  • 0.2–2W continuous-wave output power
  • Low phase noise and high signal-to-noise ratio
  • All-fiber structure ensuring mechanical stability
  • Excellent beam quality and long-term wavelength stability

Application Areas

  • Precision spectroscopy
  • Optical sensing and metrology
  • Scientific research laboratories
  • Coherent detection and communication
1.0μm high-power laser front view
1.0μm single-frequency laser module

Product Information

Performance graph
Specification table

1.0μm High-Power Single-Frequency Laser (0.2–2W)

A highly stable 1.0μm single-frequency laser delivering 0.2–2W CW power with narrow linewidth, low drift, excellent long-term coherence, and robust fiber-based architecture.

Bandwidth:Wide-spectrum (multi-λ)Coherence:Low coherence (OCT-ready)Stability:Long-term stable outputForm:Compact, integration-ready

Key features

Highlights
  • Extremely narrow linewidth for high coherence applications
  • Stable single-frequency output with reduced phase noise
  • Fiber-based structure for vibration and alignment immunity
  • Optimized thermal dissipation for continuous operation
  • Compact design suitable for OEM and laboratory setups
  • Atomic physics, optical trapping, and cold atom studies
  • Biomedical imaging and coherence-based diagnostics
  • Material metrology and optical inspection

Product Deep Dive

Discover the innovative engineering and superior performance that define our laser systems.

1.0μm High-Power Single-Frequency Laser (0.2–2W)

The 1.0μm high-power single-frequency laser (0.2–2W) is designed for precision scientific research, industrial environments, and advanced optical laboratories requiring stable and narrow-linewidth optical sources. Its architecture supports long-duration experiments, minimizes frequency drift, and provides consistent output power for demanding applications.

Key Features

  • Extremely narrow linewidth for high coherence applications
  • Stable single-frequency output with reduced phase noise
  • Fiber-based structure for vibration and alignment immunity
  • Optimized thermal dissipation for continuous operation
  • Compact design suitable for OEM and laboratory setups

Typical Applications

  • Atomic physics, optical trapping, and cold atom studies
  • Biomedical imaging and coherence-based diagnostics
  • Material metrology and optical inspection
  • Lidar, distributed sensing, and interferometric measurements

Performance Characteristics

  • Low drift optical power over extended usage
  • Reliable wavelength stability under thermal variation
  • Low relative intensity noise for accurate measurements
  • High spatial coherence and beam uniformity
  • Engineered for long-term reliability in industrial setups

Why Choose This Laser

The 1.0μm single-frequency platform provides dependable wavelength control, consistent beam purity, and scalable CW output. It is manufactured under strict quality processes using optimized fiber components, ensuring long-term performance and minimal maintenance in challenging environments.

Available Model Variants

  • Power Options: 0.2W, 0.5W, 1W, 1.5W, 2W
  • Laboratory benchtop or OEM module formats
  • Integrated temperature control modules
  • Optional wavelength locking and accessories

Installation & Operation

For long-term stability, ensure adequate cooling, stable input power, and proper fiber management. Avoid sharp bends in fiber, maintain grounding, and follow standard warm-up procedures for optimal wavelength and noise performance.

About the Manufacturer

Manufactured in Hangzhou City, Techwin develops high-stability fiber-laser platforms engineered for industrial, laboratory, and OEM applications. Each unit is built under controlled processes to ensure optimal long-term reliability and spectral purity.

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A highly stable 1.0μm single-frequency laser delivering 0.2–2W CW power with narrow linewidth, low drift, excellent long-term coherence, and robust fiber-based architecture.

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