SEM3110A

SEM3110A


Specifications
SKU
12598093
Details

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Parameter Description Value
Device Type High Voltage MOSFET Driver
Supply Voltage (VDD) Operating Supply Voltage 4.5V to 28V
Output Current Peak Output Current 卤1.5A
Operating Temperature Junction Temperature Range -40掳C to 150掳C
Input Voltage Range Input Logic Voltage Range 1.8V to 5.5V
Propagation Delay Maximum Propagation Delay Time 100ns
Under-Voltage Lockout (UVLO) UVLO Threshold Voltage 4.5V
Short-Circuit Protection Output Short-Circuit Protection Yes
Package Type Package Style SOIC-8
Pin Configuration Pin 1: IN, Pin 2: GND, Pin 3: OUT, Pin 4: VDD, Pin 5: NC, Pin 6: NC, Pin 7: NC, Pin 8: NC
Quiescent Current Supply Current at No Load 100渭A
Shutdown Mode Shutdown Current < 1渭A

Instructions for Use:

  1. Power Supply Connection:

    • Connect the supply voltage (VDD) to Pin 4.
    • Connect the ground (GND) to Pin 2.
  2. Input Signal:

    • Apply the input signal to Pin 1 (IN). The input logic level should be within the specified range (1.8V to 5.5V).
  3. Output Signal:

    • The output signal will be available on Pin 3 (OUT). This pin can source or sink up to 卤1.5A of current.
  4. Under-Voltage Lockout (UVLO):

    • The device will automatically shut down if the supply voltage drops below the UVLO threshold (4.5V).
  5. Short-Circuit Protection:

    • The device includes short-circuit protection to prevent damage in case of an output short circuit.
  6. Quiescent Current:

    • The device draws a very low quiescent current (100渭A) when no load is connected.
  7. Shutdown Mode:

    • To place the device in shutdown mode, disconnect the input signal or set it to a low state. The shutdown current is less than 1渭A.
  8. Temperature Considerations:

    • Ensure that the junction temperature remains within the operating range (-40掳C to 150掳C) to avoid thermal damage.
  9. Package Handling:

    • Handle the SOIC-8 package with care to avoid damaging the pins. Ensure proper soldering techniques are used during assembly.
  10. Propagating Delay:

    • Be aware of the maximum propagation delay time (100ns) when designing your circuit to ensure timing requirements are met.
(For reference only)

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