ILD30 DIP8

ILD30 DIP8

Category: Available (Qty:9999999)
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Description

BUY ILD30 DIP8 https://www.utsource.net/itm/p/11633880.html

Parameter Symbol Min Typ Max Unit Description
Supply Voltage Vcc 4.5 5 5.5 V Operating voltage range
Output Current per Channel Iout - 30 - mA Maximum output current per channel
Number of Channels Nch - 8 - - Number of output channels
Operating Temperature Toper -40 - 85 °C Operating temperature range
Storage Temperature Tstg -65 - 150 °C Storage temperature range
Quiescent Current Iq - 10 - μA Quiescent current at no load
Output Low Voltage Vol - 0.2 - V Output voltage when low (sink)
Output High Voltage Voh - 4.8 - V Output voltage when high (source)
Propagation Delay Time tpd - 10 - ns Time delay between input and output
Input Capacitance Cin - 10 - pF Input capacitance
Output Capacitance Cout - 10 - pF Output capacitance

Instructions for Use:

  1. Power Supply:

    • Ensure the supply voltage is within the specified range (4.5V to 5.5V).
    • Connect the Vcc pin to the positive terminal of the power supply and GND to the ground.
  2. Channel Configuration:

    • The ILD30 DIP8 has 8 output channels, each capable of sourcing or sinking up to 30mA.
    • Connect the load to the appropriate output pins (OUT1 to OUT8) and ensure the common ground is connected to GND.
  3. Input Control:

    • Apply logic high (Vcc) to the input pins (IN1 to IN8) to turn on the corresponding output channels.
    • Apply logic low (GND) to the input pins to turn off the corresponding output channels.
  4. Temperature Considerations:

    • Operate the device within the specified operating temperature range (-40°C to 85°C).
    • Store the device within the storage temperature range (-65°C to 150°C).
  5. Quiescent Current:

    • The quiescent current is typically 10μA when no load is connected. This should be considered in low-power applications.
  6. Output Levels:

    • When the output is low, the output voltage will be approximately 0.2V.
    • When the output is high, the output voltage will be approximately 4.8V.
  7. Propagation Delay:

    • The propagation delay time is typically 10ns. This is the time it takes for the output to change state after the input changes.
  8. Capacitance:

    • The input and output capacitances are both typically 10pF. This can affect the speed of signal transitions in high-frequency applications.
  9. Handling:

    • Handle the device with care to avoid static damage.
    • Follow proper soldering techniques to ensure reliable connections.
  10. Testing:

    • Before final assembly, test the device with a simple load to verify functionality.
    • Use a multimeter to check the output voltages and currents to ensure they meet the specifications.
(For reference only)

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