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AM26C32C

Specifications

SKU: 12608226

BUY AM26C32C https://www.utsource.net/itm/p/12608226.html

Parameter Symbol Min Typ Max Unit
Supply Voltage VCC 4.5 5.0 5.5 V
Operating Temperature TOP -40 85 °C
Storage Temperature TSTG -65 150 °C
Input Voltage (High) VIH 2.0 3.5 5.5 V
Input Voltage (Low) VIL 0 1.5 3.0 V
Output Voltage (High) VOH 2.4 3.5 5.0 V
Output Voltage (Low) VOL 0 0.4 0.7 V
Propagation Delay Time tpd 12 20 ns
Skew tskew 2 5 ns
Power Dissipation PD 100 mW
Input Capacitance CIN 10 pF
Output Capacitance COUT 10 pF

Instructions for Use:

  1. Supply Voltage:

    • Ensure the supply voltage is within the range of 4.5V to 5.5V to avoid damage to the device.
  2. Operating Temperature:

    • The device operates reliably between -40°C and 85°C. Avoid exposing the device to temperatures outside this range during operation.
  3. Storage Temperature:

    • Store the device in an environment with temperatures ranging from -65°C to 150°C to prevent degradation.
  4. Input Voltages:

    • For a valid high input, the voltage should be between 2.0V and 5.5V.
    • For a valid low input, the voltage should be between 0V and 3.0V.
  5. Output Voltages:

    • The output high voltage should be between 2.4V and 5.0V.
    • The output low voltage should be between 0V and 0.7V.
  6. Propagation Delay Time:

    • The typical propagation delay time is 12ns, with a maximum of 20ns. This is crucial for timing considerations in your circuit design.
  7. Skew:

    • The skew, or the difference in propagation delay between different channels, is typically 2ns with a maximum of 5ns. This ensures consistent performance across multiple channels.
  8. Power Dissipation:

    • The maximum power dissipation is 100mW. Ensure adequate heat dissipation if operating near this limit to prevent overheating.
  9. Capacitance:

    • The input and output capacitance are both typically 10pF. Consider these values when designing your PCB layout to minimize signal degradation.

Additional Notes:

  • Always refer to the datasheet for the most accurate and detailed information.
  • Proper decoupling capacitors should be used near the power pins to ensure stable operation.
  • Ensure all connections are secure and free from shorts or open circuits.
(For reference only)

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