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VO617A-3X017T - Vishay

Description: Optocoupler, Phototransistor Output, High Reliability, 5300 VRMS

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PCB Footprints
VO617A-3X017T - Vishay PCB footprint - Other - Other - SMD-4, option 7
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VO617A-3X017T Details

  • Manufacturer Part Number:

    VO617A-3X017T

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Active

  • Package Description:

    GREEN, SMD, 4 PIN

  • Country Of Origin:

    Mainland China

  • ECCN Code:

    EAR99

  • HTS Code:

    8541.40.80.00

  • Factory Lead Time:

    10 Weeks

  • Manufacturer:

    Vishay Intertechnologies

  • YTEOL:

    8

  • Additional Feature:

    UL RECOGNIZED, VDE APPROVED

  • Coll-Emtr Bkdn Voltage-Min:

    80 V

  • Configuration:

    SINGLE

  • Current Transfer Ratio-Nom:

    100%

  • Dark Current-Max:

    100 nA

  • Forward Current-Max:

    0.06 A

  • Isolation Voltage-Max:

    5300 V

  • JESD-609 Code:

    e3

  • Number of Elements:

    1

  • Operating Temperature-Max:

    110 °C

  • Operating Temperature-Min:

    -55 °C

  • Optoelectronic Device Type:

    TRANSISTOR OUTPUT OPTOCOUPLER

  • Terminal Finish:

    Matte Tin (Sn)

VO617A-3X017T Frequently Asked Questions (FAQs)

  • The recommended storage temperature for VO617A-3X017T is -40°C to 125°C, as per Vishay's storage and handling guidelines.
  • Yes, VO617A-3X017T is suitable for high-reliability applications due to its high-quality construction and rigorous testing. However, it's essential to follow Vishay's recommended usage guidelines and ensure proper design and implementation.
  • To prevent electrostatic discharge (ESD) damage, handle VO617A-3X017T components in an ESD-protected environment, use ESD-protective packaging, and follow proper handling and storage procedures.
  • The maximum allowable voltage for VO617A-3X017T is 1700 V, as specified in the datasheet. Exceeding this voltage may result in component damage or failure.
  • VO617A-3X017T is rated for operation up to 125°C. However, it's essential to consider the component's power dissipation and thermal management when designing for high-temperature applications.

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