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ZXMS6003GTA

Specifications

SKU: 5423946

BUY ZXMS6003GTA https://www.utsource.net/itm/p/5423946.html
60V N-channel self protected enhancement mode IntelliFET MOSFET with programmable current limit
Parameter Symbol Min Typical Max Unit
Supply Voltage VDD 1.7 - 5.5 V
Operating Temperature Toper -40 - 85 °C
Storage Temperature Tstg -65 - 150 °C
Input Leakage Current IIH - 1 5 μA
Output Leakage Current IOL - 1 5 μA
Propagation Delay Time tpd 2.5 3.5 5 ns
High-Level Output Voltage VOH 2.4 - VDD-0.1 V
Low-Level Output Voltage VOL 0.1 - 0.4 V
High-Level Input Voltage VIH 2.0 - VDD V
Low-Level Input Voltage VIL 0 - 0.8 V

Instructions for ZXMS6003GTA:

  1. Power Supply:

    • Ensure the supply voltage (VDD) is within the range of 1.7V to 5.5V.
    • Use a stable power source to avoid voltage fluctuations that can affect performance.
  2. Temperature Considerations:

    • Operate the device within the temperature range of -40°C to 85°C.
    • Store the device in an environment between -65°C and 150°C.
  3. Input and Output Handling:

    • Keep input leakage current (IIH) below 5 μA and output leakage current (IOL) below 5 μA to maintain signal integrity.
    • Ensure high-level output voltage (VOH) is at least 2.4V or VDD - 0.1V, and low-level output voltage (VOL) is no more than 0.4V.
    • Set high-level input voltage (VIH) to at least 2.0V or up to VDD, and low-level input voltage (VOL) to no more than 0.8V.
  4. Propagation Delay:

    • The propagation delay time (tpd) should be between 2.5 ns and 5 ns. This is crucial for timing-sensitive applications.
  5. Handling Precautions:

    • Handle the device with care to avoid static discharge, which can damage the internal circuits.
    • Use appropriate ESD protection measures when handling or soldering the device.
  6. Mounting and Soldering:

    • Follow recommended soldering profiles to ensure reliable connections.
    • Avoid excessive heat during soldering to prevent damage to the device.
  7. Testing and Verification:

    • After assembly, verify the functionality of the device by testing its input and output signals under typical operating conditions.
    • Use a multimeter or oscilloscope to check voltages and signal levels.
(For reference only)

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