Long Wavelength 1470nm 310µm Medical Diode Laser Module Ke70h10m-10.00w
Long Wavelength 1470nm 310µm Medical Diode Laser Module Ke70h10m-10.00w
Long Wavelength 1470nm 310µm Medical Diode Laser Module Ke70h10m-10.00w
Long Wavelength 1470nm 310µm Medical Diode Laser Module Ke70h10m-10.00w
Long Wavelength 1470nm 310µm Medical Diode Laser Module Ke70h10m-10.00w

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Long Wavelength 1470nm 310µm Medical Diode Laser Module Ke70h10m-10.00w

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10yrs

Beijing, Beijing, China

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Product description

1470nm 310µm Long Wavelength Medical Diode Laser Module KE70H10MA-10.00W 

 

Features:

  • output power 10W
  • 1470nm wavelength
  • 310µm fiber bundle diameter(Fiber bundled diode laser)
  • 0.22N.A.
  • 650nm aiming beam (optional)

Applications:

  • Medical use
  1. Specifications(25℃)

    Symbol

    Unit

    KE70H10MA-10.00W

    Optical data

    CW-output power

    Po

    W

    10

    Center wavelength

     λc

    nm

    1470

    Tolerance of  λ 

    -

    nm

    ±20

    Temperature drift of  λ 

    -

    nm/℃

    ~0.5

    Fiber data(1)

    Fiber core diameter

    Wc

    µm

    310

    Numerical aperture

    N.A

    -

    0.22

    Fiber connector

    -

    -

    SMA-905

    Electrical data

    Operation current

    Iop

    A

    12.5

    Threshold current

    Ith

    A

    0.8

    Conversion efficiency

    η

    %

    20

    Slope efficiency

    ηD

    W/A

    0.82

    Operation voltage

    Vop

    V

    4

    TEC data

    Max. current

    It

    A

    8.5

    Max. voltage

    Vt

    V

    39.2

    Thermistor Data (2)

    Thermistor

    Rt

    (KΩ)/β(25℃)

    10±5%/3477

    Aiming beam data

    Output power

    Pa

    mW

    2

    Wavelength

    λa

    nm

    650±10

    Others

    Operation temperature

    Top

    10~30

    Storage temperature

    Tst

    -20~+80

    Lifetime

    MTTF

    h

    >10, 000

  2.  All LDs inside are connected in serial.
  3. Other fibers available upon request.
  4. Each LD has a PD inside. All PDs are connected in parallel.
  5. Rt=R0·exp ( β(1/T—1/T0)), (T0=25℃=298K)
     
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