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MAX483ESA+

Specifications

SKU: 4868424

BUY MAX483ESA+ https://www.utsource.net/itm/p/4868424.html
IC TRANSCEIVER HALF 1/1 8SOIC
Parameter Symbol Conditions Min Typical Max Unit
Supply Voltage VCC Operating Range 4.75 - 5.25 V
Input Voltage Range VI Differential Mode -7 - 12 V
Output Short-Circuit ISC Output to GND - 200 - mA
Output Current IO Continuous - 100 - mA
Driver Output Low VOL IL=10mA 0.4 - - V
Driver Output High VOH IH=10mA - - 2.4 V
Receiver Input High VIH II=10μA 2.0 - - V
Receiver Input Low VIL II=-10μA - - 0.8 V
Propagation Delay tpd Differential Mode 20 - 30 ns
Skew tskew Differential Mode - 10 - ns
Power Dissipation PD Continuous - 250 - mW
Operating Temperature TA Commercial 0 - 70 °C
Storage Temperature TSTG -65 - 150 °C

Instructions for Use:

  1. Power Supply: Connect the VCC pin to a 5V power supply. Ensure the supply voltage remains within the operating range of 4.75V to 5.25V.
  2. Ground Connection: Connect the GND pin to the ground of your system.
  3. Differential Inputs: Connect the differential input pins (A and B) to the signal source. The input voltage range should be between -7V and 12V.
  4. Differential Outputs: Connect the differential output pins (Y and Z) to the load or next stage of your circuit. Ensure the output current does not exceed 100mA continuously.
  5. Receiver Inputs: Connect the receiver inputs (R? and R) to the logic levels of your system. VIH should be at least 2.0V and VIL should be no more than 0.8V.
  6. Propagation Delay: The propagation delay is typically between 20ns and 30ns. Ensure your timing requirements can accommodate this delay.
  7. Temperature Considerations: Operate the device within the commercial temperature range of 0°C to 70°C. Store the device within the storage temperature range of -65°C to 150°C.
  8. Power Dissipation: The maximum continuous power dissipation is 250mW. Ensure proper heat sinking if operating near this limit.
  9. Short-Circuit Protection: The device has built-in short-circuit protection, but avoid prolonged short circuits to prevent damage.
  10. Handling Precautions: Handle the device with care to avoid static discharge, which can damage sensitive components. Use ESD-safe practices when handling the device.
(For reference only)

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