IRS21864SPBF

IRS21864SPBF


Specifications
SKU
4575635
Details

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AND LOW SIDE DRIVER
Parameter Symbol Min Typ Max Unit Description
Supply Voltage VCC 10 - 25 V Operating supply voltage range
High-Side Floating Voltage VFLOAT - - 600 V Maximum high-side floating voltage
Logic Input High Level Voltage VILH 2.0 - - V Logic input high level voltage
Logic Input Low Level Voltage VILL - - 0.8 V Logic input low level voltage
High-Side Driver Output Current IHS - 1.5 - A Peak current drive capability (high-side)
Low-Side Driver Output Current ILS - 1.5 - A Peak current drive capability (low-side)
Propagation Delay Time tpd 35 - 70 ns Propagation delay time from input to output
Delay Skew tskew - 25 - ns Maximum delay skew between high-side and low-side drivers
Operating Temperature Range TOP -40 - 125 °C Operating temperature range
Storage Temperature Range TSTG -65 - 150 °C Storage temperature range

Instructions for Using IRS21864SPBF

  1. Supply Voltage (VCC):

    • Ensure the supply voltage is within the range of 10V to 25V to avoid damage to the device.
  2. High-Side Floating Voltage (VFLOAT):

    • The high-side driver can operate with a floating voltage up to 600V, making it suitable for high-voltage applications.
  3. Logic Input Levels:

    • The logic input high level (VILH) should be at least 2.0V, and the logic input low level (VILL) should not exceed 0.8V.
  4. Driver Output Current:

    • The high-side and low-side drivers can each provide a peak current of up to 1.5A. Ensure that the load does not exceed this limit.
  5. Propagation Delay and Delay Skew:

    • The propagation delay (tpd) from input to output is typically 35 to 70 nanoseconds.
    • The maximum delay skew (tskew) between the high-side and low-side drivers is 25 nanoseconds.
  6. Operating and Storage Temperature:

    • The device can operate within a temperature range of -40°C to 125°C.
    • For storage, the temperature range is -65°C to 150°C.
  7. Layout Considerations:

    • Use short, wide traces for power and ground connections to minimize inductance and improve performance.
    • Place decoupling capacitors close to the VCC and GND pins to ensure stable operation.
  8. Protection:

    • Implement appropriate protection circuits to handle overvoltage, undervoltage, and overcurrent conditions.
  9. Testing:

    • Before deploying the device in a final application, thoroughly test it under all expected operating conditions to ensure reliability and performance.

By following these guidelines, you can effectively use the IRS21864SPBF in your high-voltage switching applications.

(For reference only)

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