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  • 1000nm 300mW High Power Continuous-Wave Laser diode

    Offers a wide range of high-power, single-spatial-mode laser diode products with a wavelength range of 780-1340nm. These devices are available in 9mm TO-can packages with free-space beams, or in standard 14-pin butterfly packages with single-mode or polarization-maintaining (PM) fiber coupling. Laser modules with PM fiber typically provide a Polarization Extinction Ratio (PER) of >18dB. Fiber-coupled laser diodes can be configured to operate in CW (up to 600mW) or pulsed mode, and can optionally be equipped with Fiber Bragg Gratings (FBG) for spectral stabilization. Pulsed laser diodes are designed specifically for seeding applications, featuring low-noise peak optical power up to 1.2W, and a broadened spectrum to suppress Stimulated Brillouin Scattering (SBS) in high-power fiber lasers.

    Product features:High power output; Single-mode fiber coupling; Narrow linewidth; Wavelength stability; Low-noise performance

    Part Number:MP-FP-1000-300-TO9-SM

    Application area:Optical fiber communication | Fiber laser seed source | Precision measurement | Spectral analysis | Quantum technology

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    Main parameters
  • Core parameters
  • Center Wavelength Output Power

    1000nm 300mW

  • Dimension Drawing
  • General Parameters

    Model Parameters

    Recommended Operating Conditions (Equipment Mounted on Heat Sink)

    Parameter

    Min.

    Typ.

    Max.

    Unit

    Heat Sink Temperature

    20

    25

    30

    °C

    Forward Current

    -

    400

    420

    mA

    Output Power

    10

    -

    300

    mW

     

    Characteristics @ CW, 25°C, 400mA

    Parameter

    Min.

    Typ.

    Max.

    Unit

    Output Power @420mA

    300

    -

    -

    mW

    Forward Voltage

    -

    1.6

    1.8

    V

    Threshold Current

    -

    30

    60

    mA

    Mean Wavelength

    990

    1000

    1010

    nm

    Bandwidth (FWHM)

    -

    0.6

    3

    nm

    Wavelength Temperature Tunability

    -

    0.3

    -

    nm/°C

    Slow Axis Beam Divergence (FWHM)

    4

    6

    9

    deg

    Fast Axis Beam Divergence (FWHM)

    15

    17

    21

    deg

    Aperture Size

    -

    3×1

    -

    μm*μm

    Polarization

    -

    TE

    -

    -

     

    Absolute Maximum Ratings

    Parameter

    Min.

    Max.

    Unit

    Forward Current (CW)

    -

    500

    mA

    Reverse Voltage

    -

    2

    V

    Lead Soldering Temperature (Max. 5s)

    -

    250

    °C

    Operating Temperature (above dew point)

    5

    60

    °C

    Storage Temperature

    -40

    85

    °C

     

    Product Characteristics

    Test condition:500ns pulse width, 1% duty cycle

    L-I-V characteristic graph

    image.png 

    Optical Spectrum (Resolution 0.5nm)

    image.png 

    Slow Axis Far field

    image.png 

    Fast Axis Far Field

    image.png 

     

    Notes

    The laser emitted by this device is invisible and harmful to human eyes. When the device is operating, avoid direct viewing of the fiber output or looking along the optical axis of the collimated beam. Appropriate laser safety eyewear must be worn during operation.

     

    Absolute maximum ratings can only be applied to the device for short periods of time. Prolonged exposure to maximum ratings or exposure to one or more ratings above the maximum may cause device damage or affect device reliability.

     

    Operating the product outside of the maximum ratings may result in device failure or safety hazards. The power supply used for the device must ensure that the absolute maximum peak optical power cannot be exceeded. The device on the heatsink requires a proper heatsink, and it must be ensured that the heatsink has adequate heat dissipation and thermal conductivity. It is recommended to use indium metal foil (or similar material) as a thermal interface between the C-mount base and the heatsink surface.

     

    This device is an open-heatsink diode laser; it can only be operated in a cleanroom environment or within a dust-proof enclosure. Operating temperature and relative humidity must be controlled to avoid water condensation on the laser facet. Any contamination or contact with the laser facet must be avoided.

     

    ESD Protection - Electrostatic discharge is a primary cause of unexpected product failure. Take extreme precautions to prevent ESD. When handling the product, use wrist straps, grounded work surfaces, and strict anti-static techniques.


    Optional Configurations

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  • Product title: 1000nm 300mW High Power Continuous-Wave Laser diode
  • Product link: https://www.idealphotonics.com/product/detail/1212.html
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    • Other Requirements:

    • 10+ 10 Years of Experience
    • 50 50 + Countries Bussiness
    • 10000 10k + Diodes sold worldwide
    • 30 30+ Invention patent
    • 10 10+ Advanced Optical Solutions