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TS514IDT

Specifications

SKU: 5330316

BUY TS514IDT https://www.utsource.net/itm/p/5330316.html
Precision Quad Operational Amplifier
Parameter Symbol Conditions Min Typ Max Unit
Supply Voltage VDD Operating Range 2.7 - 5.5 V
Output Current IO Continuous - 100 - mA
Quiescent Current IQ VDD = 5V - 1 - μA
Input Leakage Current IIH VDD = 5V, VIH = 5V - 1 - μA
Input Low Voltage VIL Input Low Level 0 - 0.8 V
Input High Voltage VIH Input High Level 2.0 - VDD V
Output Low Voltage VOL IO = 10mA 0 - 0.4 V
Output High Voltage VOH IO = -10mA VDD-0.4 - VDD V
Propagation Delay Time tpd VDD = 5V - 15 - ns

Instructions for TS514IDT

  1. Supply Voltage (VDD):

    • The device operates within a supply voltage range of 2.7V to 5.5V. Ensure the supply voltage is within this range to avoid damage.
  2. Output Current (IO):

    • The maximum continuous output current is 100mA. Do not exceed this limit to prevent overheating or damage.
  3. Quiescent Current (IQ):

    • At a supply voltage of 5V, the quiescent current is typically 1μA. This is the current consumed by the device when it is not driving any load.
  4. Input Leakage Current (IIH):

    • When the input voltage is at the high level (5V) and the supply voltage is 5V, the input leakage current is typically 1μA. This is the current that flows into the input pin.
  5. Input Voltage Levels:

    • Input Low Voltage (VIL): The input is considered low when the voltage is between 0V and 0.8V.
    • Input High Voltage (VIH): The input is considered high when the voltage is between 2.0V and VDD.
  6. Output Voltage Levels:

    • Output Low Voltage (VOL): When the output is driving a load of 10mA, the output voltage is between 0V and 0.4V.
    • Output High Voltage (VOH): When the output is sinking a load of -10mA, the output voltage is between VDD-0.4V and VDD.
  7. Propagation Delay Time (tpd):

    • The propagation delay time, which is the time it takes for the output to change state after the input changes, is typically 15ns at a supply voltage of 5V.
  8. Handling and Storage:

    • Handle the device with care to avoid static discharge, which can damage the internal circuits.
    • Store the device in a dry, cool place to prevent moisture damage.
  9. Mounting and Soldering:

    • Follow standard surface mount technology (SMT) guidelines for mounting and soldering the device.
    • Use a controlled temperature profile to ensure proper soldering without damaging the device.
  10. Testing:

    • Before final assembly, test the device to ensure it meets the specified electrical parameters and functional requirements.
(For reference only)

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