KM416V1204BT-L5

KM416V1204BT-L5


Specifications
SKU
12615028
Details

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Parameter Symbol Min Typical Max Unit Description
Supply Voltage Vcc 2.7 - 3.6 V Operating supply voltage range
Standby Current Icc - 1.0 - 渭A Quiescent current in standby mode
Operating Temperature Toper -40 - 85 掳C Operating temperature range
Storage Temperature Tstg -55 - 125 掳C Storage temperature range
Output Current per Pin Iop - 10 - mA Maximum output current per pin
Input Voltage Range Vin 0 - Vcc V Valid input voltage range
Maximum Input Current Iin - 1 - mA Maximum input current
Propagation Delay Time tpd - 10 - ns Propagation delay time from input to output
Power Dissipation Pd - - 200 mW Maximum power dissipation
ESD Rating (HBM) ESD - - 2000 V Human Body Model (HBM) electrostatic discharge rating

Instructions for Use:

  1. Supply Voltage: Ensure the supply voltage is within the specified range of 2.7V to 3.6V to avoid damage or improper operation.
  2. Standby Mode: The device consumes approximately 1.0 渭A in standby mode. Use this information for power budgeting in low-power applications.
  3. Temperature Considerations: Operate the device within the temperature range of -40掳C to 85掳C. Store it in the extended range of -55掳C to 125掳C.
  4. Output Current: Each output pin can source up to 10 mA. Ensure that the load does not exceed this limit to prevent damage.
  5. Input Voltage: The valid input voltage range is from 0V to Vcc. Inputs outside this range may cause undefined behavior.
  6. Input Current: The maximum input current should not exceed 1 mA to avoid damaging the input protection diodes.
  7. Propagation Delay: The typical propagation delay is 10 ns. This is important for timing considerations in high-speed applications.
  8. Power Dissipation: The maximum power dissipation is 200 mW. Ensure adequate heat dissipation to prevent overheating.
  9. ESD Protection: The device has an ESD rating of 2000V (HBM). Handle the device with care to avoid electrostatic damage.

Additional Notes:

  • Mounting: Use proper mounting techniques to ensure good thermal and electrical connections.
  • Decoupling Capacitors: Place decoupling capacitors close to the power pins to reduce noise and improve stability.
  • Layout: Follow recommended PCB layout guidelines to minimize signal interference and ensure optimal performance.
(For reference only)

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