IR21094STRPBF

IR21094STRPBF


Specifications
SKU
12534696
Details

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Parameter Symbol Min Typ Max Unit Notes
Supply Voltage VDD 10 - 20 V Supply voltage for high-side and low-side drivers
High-Side Driver Supply VDDH 10 - 20 V Supply voltage for high-side driver
Low-Side Driver Supply VDDL 4.5 - 20 V Supply voltage for low-side driver
Under-Voltage Lockout (UVLO) UVLO - - 8.0 V UVLO threshold for VDDH
Input High Level VIH 2.0 - - V Input voltage for logic high
Input Low Level VIL - - 0.8 V Input voltage for logic low
Output High Level VOH - 13 - V Output voltage for logic high (VDD = 15V)
Output Low Level VOL - 0.5 - V Output voltage for logic low (VDD = 15V)
Propagation Delay Time tpd - 40 - ns Propagation delay time from input to output
Maximum Operating Frequency fMAX - - 500 kHz Maximum operating frequency
Shutdown Current ISD - 0.1 - μA Current consumption in shutdown mode
Quiescent Current IQ - 1.5 - mA Quiescent current at VDD = 15V
Short-Circuit Current IOUT(SC) - 1.5 - A Maximum output current in short-circuit condition
Operating Temperature Range Toperating -40 - 125 °C Operating temperature range
Storage Temperature Range Tstorage -65 - 150 °C Storage temperature range

Instructions for Use:

  1. Power Supply:

    • Ensure that VDDH and VDDL are within their specified ranges.
    • Use appropriate decoupling capacitors close to the power supply pins to minimize noise.
  2. Input Signals:

    • Apply logic levels within the specified VIH and VIL ranges.
    • Ensure clean and stable input signals to avoid false triggering.
  3. Output Configuration:

    • Connect the output to the gate of the MOSFET or other load.
    • Ensure the load can handle the maximum output current specified.
  4. Under-Voltage Lockout (UVLO):

    • The device will shut down if VDDH falls below the UVLO threshold to protect the high-side driver.
    • Ensure the power supply is stable and above the UVLO threshold during operation.
  5. Propagation Delay:

    • Account for the propagation delay when designing timing circuits to ensure proper synchronization.
  6. Thermal Management:

    • Ensure adequate heat dissipation if operating at high temperatures or high frequencies.
    • Consider using a heatsink if necessary.
  7. Storage and Handling:

    • Store the device in a dry environment within the specified storage temperature range.
    • Handle with care to avoid static discharge and physical damage.
(For reference only)

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