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SFH757V

Specifications

SKU: 6489486

BUY SFH757V https://www.utsource.net/itm/p/6489486.html
TX Optical Fiber 100Mbps 4-Pin - Bulk (Alt: SFH757V)
Parameter Symbol Min Typ Max Unit
Forward Current IF - 100 300 mA
Peak Forward Current IF(P) - - 500 mA (10 μs)
Reverse Voltage VR - - 5 V
Forward Voltage VF 1.2 1.6 2.0 V @ IF = 20 mA
Reverse Current IR - 100 500 nA @ VR = 5 V
Emission Wavelength λp 850 870 890 nm
Spectral Width Δλ - 40 - nm
Radiant Intensity Iv 200 400 600 mW/sr @ IF = 100 mA
Rise Time tr - 10 - ns
Fall Time tf - 10 - ns
Operating Temperature Toper -40 - 100 °C
Storage Temperature Tstg -40 - 125 °C

Instructions for Use:

  1. Forward Current (IF):

    • Do not exceed the maximum forward current of 300 mA continuously.
    • For pulse applications, do not exceed 500 mA with a pulse width of 10 μs.
  2. Reverse Voltage (VR):

    • The maximum reverse voltage is 5 V. Exceeding this can cause damage to the device.
  3. Forward Voltage (VF):

    • The forward voltage at a typical forward current of 20 mA is between 1.2 V and 2.0 V.
  4. Reverse Current (IR):

    • At a reverse voltage of 5 V, the reverse current should be between 100 nA and 500 nA.
  5. Emission Wavelength (λp):

    • The peak emission wavelength is typically around 870 nm, with a range from 850 nm to 890 nm.
  6. Spectral Width (Δλ):

    • The spectral width is typically 40 nm.
  7. Radiant Intensity (Iv):

    • The radiant intensity at a forward current of 100 mA is between 200 mW/sr and 600 mW/sr.
  8. Rise and Fall Time (tr, tf):

    • Both rise and fall times are typically 10 ns.
  9. Operating Temperature (Toper):

    • The operating temperature range is from -40°C to 100°C.
  10. Storage Temperature (Tstg):

    • The storage temperature range is from -40°C to 125°C.
  11. Handling:

    • Handle with care to avoid mechanical stress.
    • Avoid exposure to static electricity and high humidity.
  12. Mounting:

    • Ensure proper heat dissipation if operating at high currents.
    • Follow recommended soldering profiles to avoid thermal damage.
(For reference only)

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