TXS0108EPWR

TXS0108EPWR


Specifications
Details

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Parameter Symbol Min Typ Max Unit Conditions/Comments
Supply Voltage VCC 3.6 V Single supply operation
Input Voltage Range VIN -0.5 3.6 V With respect to GND
Output Voltage Range VOUT -0.5 3.6 V With respect to GND
Quiescent Current IQ 1 4 μA All channels in Hi-Z state, TA = 25°C
Propagation Delay (Low) tPLH 2.7 4.5 ns VINL=0V to VOUTL=0.8V, VINH=2.0V to VOUTH=2.0V, CL=15pF
Propagation Delay (High) tPHL 2.7 4.5 ns VINL=0V to VOUTL=0.8V, VINH=2.0V to VOUTH=2.0V, CL=15pF
Channel-to-Channel Skew tSKEW 0.5 1.0 ns Between any two channels
Maximum Data Rate fMAX 100 MHz Typical value

Instructions for TXS0108EPWR:

  1. Power Supply Connection:

    • Connect the VCC pin to a stable 3.3V or lower supply voltage up to 3.6V.
    • Ensure that the ground (GND) pin is properly connected to the system ground.
  2. Signal Routing:

    • Route input signals to the respective input pins (IN1-IN8).
    • Corresponding output signals will be available on the output pins (OUT1-OUT8).
  3. Handling Electrostatic Discharge (ESD):

    • The device has built-in ESD protection but handle with care to avoid damage.
    • Use proper anti-static measures during handling and installation.
  4. Operating Temperature:

    • The device operates within the temperature range of -40°C to +85°C.
  5. Layout Considerations:

    • Place decoupling capacitors close to the VCC and GND pins to minimize noise and improve performance.
    • Keep signal traces as short as possible to reduce parasitic effects.
  6. Propagation Delay Matching:

    • For applications requiring matched delays across multiple channels, account for the channel-to-channel skew in your design.
  7. Data Rate:

    • Ensure that the data rate does not exceed 100 MHz to maintain reliable operation.
  8. Quiescent Current:

    • Monitor the quiescent current especially in low-power designs to ensure it stays within acceptable limits.
(For reference only)

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