SFH617A-2

SFH617A-2


Specifications
SKU
12398874
Details

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Parameter Symbol Min Typ Max Unit Notes
Forward Current IF - 50 100 mA Continuous
Peak Forward Current IFp - - 150 mA Pulse (10 ms)
Reverse Voltage VR - 5 5.5 V Continuous
Forward Voltage VF 1.8 2.2 2.6 V IF = 20 mA
Reverse Current IR - 100 - nA VR = 5 V
Emission Wavelength λD 850 870 890 nm Typical at IF = 20 mA
Spectral Width Δλ - 40 60 nm FWHM, typical at IF = 20 mA
Radiant Intensity Iv 0.3 0.5 0.7 mW/sr IF = 20 mA
Viewing Angle θ1/2 10 15 20 ° Half-intensity angle
Operating Temperature Toper -40 - 100 °C -
Storage Temperature Tstg -40 - 125 °C -
Lead Soldering Temp. Tsld - - 260 °C 10 s max

Instructions for Use:

  1. Mounting:

    • Ensure that the leads are not bent at an angle less than 90° to the body.
    • Solder the leads within 10 seconds at a temperature not exceeding 260°C.
    • Avoid applying excessive force to the leads during mounting.
  2. Electrical Connections:

    • Connect the anode to the positive terminal and the cathode to the negative terminal.
    • Do not exceed the maximum forward current (IF) of 100 mA continuously or 150 mA in pulse mode (10 ms).
  3. Environmental Conditions:

    • Operate the device within the specified temperature range (-40°C to 100°C).
    • Store the device in a dry environment with temperatures ranging from -40°C to 125°C.
  4. Handling:

    • Handle the device with care to avoid mechanical damage.
    • Use appropriate ESD (Electrostatic Discharge) protection when handling the device.
  5. Optical Performance:

    • The emission wavelength is typically around 870 nm, but can vary between 850 nm and 890 nm.
    • The viewing angle is typically 15°, with a half-intensity angle ranging from 10° to 20°.
  6. Testing:

    • Test the device using the specified test conditions to ensure reliable performance.
    • Measure the forward voltage (VF) at a forward current (IF) of 20 mA.
  7. Storage:

    • Store the device in a cool, dry place to prevent moisture damage.
    • Avoid exposure to corrosive environments.

By following these guidelines, you can ensure optimal performance and longevity of the SFH617A-2 photodiode.

(For reference only)

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