info@idealphotonics.com
  • 1060nm Polarization-maintaining SLD laser diode 40mW

    Idealphotonics' 1060nm SLD superluminescent diode is an ideal light source for fiber optic transmission systems, fiber optic gyroscopes, fiber optic sensors, optical coherence tomography, and optical measurement. The diode is packaged in a 14-pin standard butterfly package with a photodiode and a thermoelectric cooler (TEC).

    Product features:Ultra-broadband ASE spectrum、 Low ripple、 Strong linear polarization、 Individual aging and thermal cycling screening、 Proprietary mirror coating technology for high reliability、 Polarization-maintaining PM980 fiber or HI1060 fiber、 900um fiber loose tube (optional)、 Built-in monitor photodiode (optional)

    Part Number:--

    Application area:Fiber Optic Sensors、 Spectroscopy、 Instrumentation

    Add to Cart Consult Favorite

    Main parameters
  • Core parameters
  • Dimension Drawing
  • General Parameters

    Parameter

    Recommended Operating Conditions* @CW, case mounted on heat sink at room temperature

    Chip temperature

    20

    25

    30

    °C

    Forward current


    700


    mA

    Output power


    40


    mW

    *-recommended based on Max. Spectral width and flatness


     

    characteristic @CW,25°C,700mA

    Parameter

    Min.

    Typ.

    Max.

    Unit

    Output power

    25



    mW

    Forward voltage


    1.7

    2.1

    V

    Average wavelength

    1045

    1055

    1065

    nm

    Bandwidth( FWHM)

    90

    120


    nm

    Ripple**( RMS)



    0.5

    dB

    Excitation state Max. position


    1000


    nm

    Ground state Max. position


    1085


    nm

    Spectral tilt


    5


    dB

    Polartization extinction ratio

    15

    20


    dB

    polarization


    TE



    **-RMS in the range of 1nm, near ASEMax. value, resolution of 10pm

     


    Absolute Max. ratings 

    Parameter

    Min

    Max

    Unit

    Output power


    150

    mW

    Forward current


    800

    mA

    Backward voltage


    2

    V

    TEC current


    3

    A

    TEC voltage


    4

    V

    Chip operating temperature

    5

    40

    °C

    Case operating temperature

    0

    70

    °C

    Storage temperature

    -40

    85

    °C

    Fiber  Band  Radius

    3


    cm




    Typical performance (for reference only)

    @CW, housing mounted on room temperature heat sink

    2.1.png



    Thermistor specifications Fiber optical specifications

    Parameters

    Value

    Unit

    Parameters

    Value

    Value

    Unit

    Type

    NTC


    Fiber type

    HI1060

    PM980


    Resistance @ 2 5°C

    10±0.1

    Numerical aperture (Typical)

    0.14

    0.12


    Beta 0-50°C

    3430±1%

    K

    Cut-off wavelength

    920±50

    900±70

    nm

    2.2.png

    Mode field diameter

    6.2±0.3   @1060nm

    6.6±0.3   @1060nm


    µm

    Cladding diameter

    125±1

    125±1

    um

    Coating diameter

    245±15

    245±15

    µm

    Loose tube diameter (optional)

    900

    900


    µm

    connector

    FC/APC

    FC/APC


    Key

    narrow

    narrow


    65a9efab60208.png



    Safety and Operating Instructions

    The light emitted by this device is invisible and can be harmful to the human eye. Avoid looking directly at the fiber connector while the device is operating. Appropriate laser safety glasses must be worn when operating with the connector open. The Max. ratings must only be applied to the device for short periods of time. Exposure to the Max. ratings for extended periods of time or exposure to more than one Max. rating may cause damage to the device or affect the reliability of the device. Operating the device outside the Max. ratings may cause device failure or safety hazards. The power supply used with the component must ensure that the Max. forward current cannot be exceeded.

    A suitable heat sink is required for the device on the heat sink. The device must be mounted on the heat sink using 4 screws (tightened in an X-shaped manner with an initial torque setting of 0.075Nm and a final X-bolt tightening of 0.15Nm) or a clamp. The heat sink surface must have a deviation from flatness of less than 0.05mm. It is recommended to use indium foil or thermally conductive soft material as a thermal interface between the bottom of the housing and the heat sink. It is undesirable to use thermal grease for this purpose.

    Avoid reflections from the back of the device. It may have an impact on the performance of the equipment in terms of spectrum and power stability. It may also cause fatal facet joint damage. It is highly recommended to use an optical isolator to block back reflections.

    Do not pull on the fiber. Do not bend the fiber with a radius less than 3 cm. During installation, the top of the fiber should always be protected from any contamination or damage. After removing the dust cap covering the top of the fiber, use optical lens cleaning paper or cotton swabs dipped in isopropyl alcohol or ethanol to carefully wipe the top of the fiber in one direction. Only operate the equipment with clean fiber connectors.

    Electrostatic discharge is the main cause of unexpected product failure. Take extreme precautions to prevent ESD. During equipment installation, ESD protection must be maintained - use a wrist strap, a grounded work surface, and strict anti-static techniques when handling products.


    Optional Configurations

    --

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