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MN6092

Specifications

SKU: 1373583

BUY MN6092 https://www.utsource.net/itm/p/1373583.html
DIGITAL MONOLITHIC INTEGRATED CIRCUITS(MOS)
Parameter Description Min Typ Max Unit
VDD Supply Voltage 2.7 - 5.5 V
IDD Supply Current - 1.0 - mA
fIN Input Frequency 300 - 3000 kHz
VOUT Output Voltage - VDD-0.3 - V
IOUT Output Current - 20 - mA
tPD Propagation Delay 100 150 200 ns
tPLH Output Rise Time 10 20 30 ns
tPHL Output Fall Time 10 20 30 ns
VIL Input Low Voltage - 0.8 - V
VIH Input High Voltage - VDD-0.8 - V
VOL Output Low Voltage - 0.4 - V
VOH Output High Voltage - VDD-0.4 - V

Instructions for Use:

  1. Supply Voltage (VDD):

    • Ensure the supply voltage is within the range of 2.7V to 5.5V.
    • Connect the VDD pin to the power supply and GND pin to ground.
  2. Input Signal (fIN):

    • The input signal frequency should be between 300kHz and 3000kHz.
    • Apply the input signal to the designated input pin.
  3. Output Signal (VOUT, IOUT):

    • The output voltage will be approximately VDD - 0.3V.
    • The maximum output current is 20mA. Ensure that the load does not exceed this limit.
  4. Propagation Delay (tPD):

    • The propagation delay from input to output is typically 150ns, with a minimum of 100ns and a maximum of 200ns.
  5. Rise and Fall Times (tPLH, tPHL):

    • The output rise time (tPLH) and fall time (tPHL) are typically 20ns, with a minimum of 10ns and a maximum of 30ns.
  6. Input Voltage Levels (VIL, VIH):

    • The input low voltage (VIL) is typically 0.8V.
    • The input high voltage (VIH) is typically VDD - 0.8V.
  7. Output Voltage Levels (VOL, VOH):

    • The output low voltage (VOL) is typically 0.4V.
    • The output high voltage (VOH) is typically VDD - 0.4V.
  8. Handling and Storage:

    • Handle the device with care to avoid static damage.
    • Store in a dry, cool place away from direct sunlight.
  9. Mounting:

    • Solder the device to the PCB using standard surface mount technology (SMT) procedures.
    • Ensure proper thermal management if operating at high temperatures or high currents.
  10. Testing:

    • After mounting, test the device to ensure it meets the specified parameters.
    • Verify the input and output signals using an oscilloscope or similar equipment.
(For reference only)

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