SNJ54ALS37AJ

SNJ54ALS37AJ

Manufacturer No:

SNJ54ALS37AJ

Manufacturer:

Texas Instruments

Description:

NAND GATE, ALS SERIES

Datasheet:

Datasheet

Delivery:

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SNJ54ALS37AJ Specifications

  • Type
    Parameter
  • Current - Quiescent (Max)
    -
  • Package / Case
    -
  • Supplier Device Package
    -
  • Mounting Type
    -
  • Operating Temperature
    -
  • Max Propagation Delay @ V, Max CL
    -
  • Input Logic Level - High
    -
  • Input Logic Level - Low
    -
  • Current - Output High, Low
    -
  • Voltage - Supply
    -
  • Features
    -
  • Number of Inputs
    -
  • Logic Type
    -
  • Packaging
    Bulk
  • Product Status
    Active
  • Series
    *
The SNJ54ALS37AJ is a specific type of integrated circuit chip that belongs to the ALS (Advanced Low-Power Schottky) family. It is a quad 2-input NAND buffer with open-drain outputs. Here are some advantages and application scenarios of this chip:Advantages: 1. High-speed operation: The SNJ54ALS37AJ chip operates at a high speed, making it suitable for applications that require quick response times. 2. Low power consumption: Being a part of the ALS family, this chip is designed to consume low power, making it energy-efficient. 3. Open-drain outputs: The open-drain outputs of this chip allow for flexible interfacing with other devices, making it suitable for various applications. 4. Wide operating voltage range: The chip can operate within a wide voltage range, providing flexibility in different voltage environments.Application scenarios: 1. Digital logic circuits: The SNJ54ALS37AJ chip can be used in digital logic circuits for buffering and driving signals. 2. Bus interfacing: The open-drain outputs of this chip make it suitable for bus interfacing applications, where multiple devices need to share a common communication line. 3. Level shifting: The chip can be used for level shifting applications, where signals need to be converted from one voltage level to another. 4. Clock distribution: The high-speed operation of this chip makes it suitable for clock distribution applications, where precise timing is required.It's important to note that the specific advantages and application scenarios may vary depending on the requirements of the overall system and the specific use case.