UPC398C

UPC398C


Specifications
SKU
12606437
Details

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Parameter Description Min Typ Max Unit
VDD Supply Voltage 2.7 - 5.5 V
IDD Supply Current (Quiescent) - 100 - 渭A
VIH Input High Voltage 2.0 - 5.5 V
VIL Input Low Voltage 0.0 - 0.8 V
VOH Output High Voltage (IOL = 0.4 mA) 2.4 - VDD V
VOL Output Low Voltage (IOL = 16 mA) 0.0 - 0.4 V
IOL Output Low Current - 16 - mA
IOH Output High Current - -2 - mA
fMAX Maximum Operating Frequency - 200 - MHz
tpd Propagation Delay Time - 2.5 - ns
tplh Propagation Delay Time (Low to High) - 2.5 - ns
tphl Propagation Delay Time (High to Low) - 2.5 - ns
tskew Skew - 0.5 - ns
tslew Slew Rate - 1.0 - V/ns

Instructions for Use:

  1. Power Supply:

    • Ensure the supply voltage (VDD) is within the range of 2.7V to 5.5V.
    • Connect the ground (GND) pin to a stable ground reference.
  2. Input Signals:

    • Input high voltage (VIH) should be at least 2.0V and can go up to the supply voltage (VDD).
    • Input low voltage (VIL) should not exceed 0.8V.
  3. Output Signals:

    • Output high voltage (VOH) will be at least 2.4V when the output current (IOL) is 0.4 mA.
    • Output low voltage (VOL) will be no more than 0.4V when the output current (IOL) is 16 mA.
    • Ensure the load connected to the output does not exceed the maximum output current ratings.
  4. Operating Frequency:

    • The device is designed to operate at frequencies up to 200 MHz.
  5. Propagation Delay:

    • The typical propagation delay time (tpd) is 2.5 ns.
    • The propagation delay times for low-to-high (tplh) and high-to-low (tphl) transitions are also 2.5 ns.
  6. Skew and Slew Rate:

    • The skew between different outputs is typically 0.5 ns.
    • The slew rate is typically 1.0 V/ns.
  7. Handling and Storage:

    • Handle the device with care to avoid electrostatic discharge (ESD) damage.
    • Store in a dry, cool place to prevent moisture damage.
  8. Application Notes:

    • Refer to the datasheet for specific application notes and recommended circuit configurations.
    • Use appropriate decoupling capacitors near the power supply pins to ensure stable operation.
(For reference only)

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