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    Fiber-Coupled Butterfly (Single-Mode)

    DATASHEET

    The single-mode wavelength-stabilized butterfly laser diode features a narrow spectral bandwidth, a diffraction-limited output beam, and superior wavelength stability over time, temperature, and vibration. Comes standard with an internal photodiode, TEC, thermistor, and ESD protection.

    This butterfly package can be integrated into the single-mode U-type module, which includes the laser driver and temperature-controlled electronics in a compact package.

    Choose a λ (nm)
    Choose a Min. Power (mW)
    Choose a Connector Type
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    Key Features

    • High-Power Single-Spatial-Mode, Single-Frequency Output
    • Ultra-Narrow Spectral Linewidth (< 100 kHz)
    • Stabilized Output Spectrum (< 0.007 nm/°C)
    • Excellent Beam Quality (M² < 1.1)
    • Integral ESD Protection & Thermistor
    • Integral Laser Line Filter
    • SMSR 70 dB w/ laser line filter (40 dB without)

    Custom Capabilities

    • Custom wavelengths available upon request
    • FC/PC, FC/APC, or unterminated output coupler
    • Single-mode or Polarization-maintaining fiber available with orientation in either fast or slow axis
    • Integral optical isolator available (Will utilize extended tub BF package.)
    • External TEC (e.g. No TEC inside of package optional)

    Specifications

    Wavelength Tolerance

    +/- 0.5 nm

    Spectral Linewidth (Dl)

    ~ 100 kHz Typical

    Wavelength Stability Range

    15 °C - 45 °C

    SMSR

    35 - 45 dB

    Fiber Options

    Single-Mode

    Polarization Maintaining, Panda Type

    PER

    >17dB, 20dB Typical

    Polarization Orientation

    Standard is PM slow.

    Output Power Stability

    1% Typical

    Applications

    This laser package is designed for OEM Integration and is ideal for:

    • High Resolution Raman Spectroscopy
      • Confocal Microscopy
      • Raman Imaging
      • Portable Raman
      • Process Raman
    • Direct-diode Frequency Doubling
    • Fiber Laser Seeding
    • Metrology & Interferometry
    • Remote Sensing