ILD620-X007

Vishay ILD620-X007

Part No:

ILD620-X007

Manufacturer:

Vishay

Datasheet:

-

Package:

-

AINNX NO:

70157279-ILD620-X007

Category:

Accessories

Description:

Optocoupler AC-IN 2-CH Transistor DC-OUT 8-Pin PDIP SMD Tube

Products specifications
  • Lifecycle Status
    Obsolete (Last Updated: 5 months ago)
  • Mount
    Surface Mount
  • Number of Pins
    8
  • Case/Package
    SMD/SMT
  • Collector-Emitter Breakdown Voltage
    70 V
  • Collector-Emitter Saturation Voltage
    400 mV
  • Number of Elements
    2
  • RoHS
    Compliant
  • Max Operating Temperature

    The Maximum Operating Temperature is the maximum body temperature at which the thermistor is designed to operate for extended periods of time with acceptable stability of its electrical characteristics.

    100 °C
  • Min Operating Temperature
    -55 °C
  • Max Power Dissipation

    The maximum power that the MOSFET can dissipate continuously under the specified thermal conditions.

    400 mW
  • Number of Channels
    2
  • Forward Current

    Current which flows upon application of forward voltage.

    60 mA
  • Max Output Voltage

    The maximum output voltage refers to the dynamic area beyond which the output is saturated in the positive or negative direction, and is limited according to the load resistance value.

    70 V
  • Output Current per Channel
    50 mA
  • Forward Voltage

    the amount of voltage needed to get current to flow across a diode.

    1.15 V
  • Collector Emitter Voltage (VCEO)
    70 V
  • Max Collector Current
    100 mA
  • Max Input Current
    60 mA
  • Isolation Voltage

    Isolation voltage refers to a test of the ability of an insulator to minimize the flow of electric current with a high applied voltage.

    5.3 kV
  • Current Transfer Ratio

    Current Transfer Ratio (CTR) is the gain of the optocoupler. It is the ratio of the phototransistor collector current to the IRED forward current. CTR = (IC / IF) * 100 It is expressed as a percentage (%).

    80 %
  • Dark Current

    the relatively small electric current that flows through photosensitive devices such as a photomultiplier tube, photodiode, or charge-coupled device even when no photons are entering the device.

    100 nA
  • Radiation Hardening

    Radiation hardening is the process of making electronic components and circuits resistant to damage or malfunction caused by high levels of ionizing radiation, especially for environments in outer space (especially beyond the low Earth orbit), around nuclear reactors and particle accelerators, or during nuclear accidents or nuclear warfare.

    No
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