TD62107PG

TD62107PG


Specifications
SKU
12609304
Details

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Parameter Symbol Conditions Min Typ Max Unit
Supply Voltage Vcc - 4.5 5 5.5 V
Output Current (Per Channel) IO Vout = 3.5V, Ta = 25掳C - 50 - mA
Operating Temperature Topr - -40 - 85 掳C
Storage Temperature Tstg - -55 - 150 掳C
Power Dissipation Pd Ta = 25掳C, 胃ja = 250掳C/W - - 375 mW
Input Capacitance Cin f = 1MHz - 10 - pF
Output Capacitance Cout f = 1MHz - 20 - pF
Quiescent Current IQ Vcc = 5V, No Load - 1 - mA
Shutdown Current ISD Vcc = 5V, Shutdown Mode - 0.1 - 渭A

Instructions for Use

  1. Supply Voltage:

    • Ensure the supply voltage is within the range of 4.5V to 5.5V. The typical operating voltage is 5V.
  2. Output Current:

    • Each channel can provide up to 50mA of output current at 3.5V output with ambient temperature at 25掳C.
  3. Operating Temperature:

    • The device is designed to operate within the temperature range of -40掳C to 85掳C.
  4. Storage Temperature:

    • Store the device in an environment where the temperature ranges from -55掳C to 150掳C.
  5. Power Dissipation:

    • The maximum power dissipation is 375mW at 25掳C ambient temperature with a thermal resistance of 250掳C/W.
  6. Input and Output Capacitance:

    • The input capacitance is typically 10pF at 1MHz, and the output capacitance is typically 20pF at 1MHz.
  7. Quiescent Current:

    • The quiescent current is typically 1mA when the supply voltage is 5V and there is no load.
  8. Shutdown Current:

    • In shutdown mode, the current consumption is typically 0.1渭A when the supply voltage is 5V.
  9. Handling and Storage:

    • Handle the device with care to avoid damage. Store in a dry, cool place to prevent moisture damage.
  10. Mounting and Soldering:

    • Follow recommended soldering profiles to ensure proper mounting and to avoid thermal stress on the device.
  11. Electrostatic Discharge (ESD) Protection:

    • Use appropriate ESD protection measures during handling and assembly to prevent damage to the device.
  12. Circuit Design:

    • Ensure that the circuit design includes necessary decoupling capacitors and follows best practices for noise reduction and stability.
(For reference only)

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