SN74ALS679DWE4

SN74ALS679DWE4

Manufacturer No:

SN74ALS679DWE4

Manufacturer:

Texas Instruments

Description:

IC COMPARATOR ADDRESS 12B 20SOIC

Datasheet:

Datasheet

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SN74ALS679DWE4 Specifications

  • Type
    Parameter
  • Mounting Type
    Surface Mount
  • Supplier Device Package
    20-SOIC
  • Package / Case
    20-SOIC (0.295", 7.50mm Width)
  • Operating Temperature
    0°C ~ 70°C
  • Max Propagation Delay @ V, Max CL
    30ns @ 5V, 50pF
  • Current - Output High, Low
    2.6mA, 24mA
  • Voltage - Supply
    4.5V ~ 5.5V
  • Output Function
    -
  • Output
    Active High
  • Number of Bits
    12
  • Type
    Address Comparator
  • Packaging
    Tube
  • Product Status
    Obsolete
  • Series
    74ALS
The SN74ALS679DWE4 is a 16-bit, binary, parallel, synchronous, programmable counter integrated circuit chip. Some of its advantages and application scenarios include:Advantages: 1. Versatility: The chip can be programmed to function as a binary counter, decade counter, or a BCD counter, providing flexibility in various applications. 2. Synchronous Operation: The chip operates synchronously, meaning that the outputs change simultaneously with the clock signal, ensuring accurate and reliable counting. 3. High-Speed Operation: The chip operates at high clock frequencies, making it suitable for applications that require fast counting or timing functions. 4. Wide Operating Voltage Range: The chip can operate within a wide voltage range, typically from 4.5V to 5.5V, allowing compatibility with different power supply systems. 5. Low Power Consumption: The chip is designed to consume low power, making it suitable for battery-powered or energy-efficient applications.Application Scenarios: 1. Digital Counters: The chip can be used in various digital counting applications, such as frequency dividers, event counters, or timers. 2. Industrial Control Systems: The chip can be utilized in industrial control systems that require precise counting or timing functions, such as process control, automation, or robotics. 3. Communication Systems: The chip can be employed in communication systems for tasks like frequency synthesis, clock generation, or data rate control. 4. Test and Measurement Equipment: The chip can be integrated into test and measurement equipment, such as oscilloscopes or frequency counters, to provide accurate counting or timing capabilities. 5. Automotive Electronics: The chip can be used in automotive electronics for applications like engine control units, dashboard displays, or vehicle diagnostics, where counting or timing functions are required.It is important to note that the specific application scenarios may vary depending on the requirements and design considerations of the overall system.