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Femtosecond Fiber Laser

Femtosecond Fiber Laser
Model: EFOA-SH
      Second harmonic of Er-doped fiber laser operates at wavelength of 780nm and in a number of applications can replace the powerful yet less reliable solid-state Ti:S lasers. Easy to use design, turn-key operation, small footprint greatly facilitate any research in which the laser is involved. Lack of laser experience is not a problem with the fiber lasers, only general electronics and light physics knowledge is required to work with the unit.  
      EFOA-SH is also a perfect source for amplifier system seeding due to one-box compact design and lack of expensive pump laser as in case of Ti:S solid-state seed. 
  • 780 nm wavelength
  • nJ pulse energy
  • Small footprint
  • Turn-key operation
  • Highly stable
  • Application
    - Amplifier systems seeding 
    - Terahertz generation and detection
    - Multi-photon microscopy 
    - Ultrafast spectroscopy
    - Semiconductor device characterization
    - Supercontinuum generation
    - Optical coherence tomography
    - Telecommunications
  • EFOA-SH

    Pulse Width (FWHM), fs

    <120*

    Wavelength, nm

    780±10

    Average output power, mW

    >80

    Repetition rate, MHz

    70**

    Spectral width, nm

    ~7.5

    Outputs:

    Power output (switchable apertures***): 
    >80 mW, 780 nm, TEM00, linearly polarized
    >160 mW, 1560 nm, TEM00, linearly polarized
    Service optical output: 
    1560 nm, FC/APC (~1 mW) 
    RF SYNC Out: SMA connector
    Mode Lock Status: SMA connector (3.5/0V) and Led

    Operating temperature, °C

    22±5

    Warm up time for rated accuracy,min

    20

    Electrical data

    110...220 VAC, 50/60Hz

    Dimensions

     

    Laser head, mm

    270x270x122.5

    Control unit, mm

    230x200x130

    Crystal oven control unit, mm

    160x200x75

         

    * - <100fs pulse durations available upon request
    ** - please indicate the necessary value when placing an order (from 25 to 80MHz).
    *** - simultaneous dual output is also possible upon request with >80 mW@1560 nm and >80 mW@780 nm.

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