N74F166N,602

N74F166N,602

Manufacturer No:

N74F166N,602

Manufacturer:

NXP USA Inc.

Description:

IC SHIFT REGISTER 8BIT 16-DIP

Datasheet:

Datasheet

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N74F166N,602 Specifications

  • Type
    Parameter
  • Supplier Device Package
    16-DIP
  • Package / Case
    16-DIP (0.300", 7.62mm)
  • Mounting Type
    Through Hole
  • Operating Temperature
    -40°C ~ 85°C
  • Voltage - Supply
    4.5V ~ 5.5V
  • Function
    Universal
  • Number of Bits per Element
    8
  • Number of Elements
    1
  • Output Type
    Push-Pull
  • Logic Type
    Register, Bidirectional
  • Packaging
    Tube
  • Packaging
    Tube
  • Product Status
    Obsolete
  • Series
    74F
The N74F166N and 602 are both integrated circuit chips that belong to the 74F series of logic devices. Here are the advantages and application scenarios for these chips:Advantages: 1. High-speed operation: The 74F series chips are known for their fast operation, making them suitable for applications that require quick response times. 2. Wide operating voltage range: These chips can operate within a wide voltage range, typically from 4.5V to 5.5V, allowing them to be used in various electronic systems. 3. Low power consumption: The 74F series chips are designed to consume low power, making them energy-efficient and suitable for battery-powered devices. 4. High noise immunity: These chips have high noise immunity, meaning they can tolerate external noise and interference, ensuring reliable operation in noisy environments. 5. Compatibility: The 74F series chips are compatible with other TTL (Transistor-Transistor Logic) devices, allowing for easy integration into existing systems.Application Scenarios: 1. Shift registers: The N74F166N chip is a parallel-in/serial-out shift register. It can be used in applications where data needs to be shifted in a serial manner, such as data storage, data transfer, or data conversion. 2. Data acquisition systems: The N74F602 chip is a 8-bit universal shift register with parallel outputs. It can be used in data acquisition systems to capture and store data from multiple sources simultaneously. 3. Serial-to-parallel conversion: Both chips can be used for serial-to-parallel conversion, where a serial data stream is converted into parallel data for further processing or display. 4. Control systems: These chips can be used in control systems where data needs to be stored, shifted, or converted to perform various control functions. 5. Communication systems: The high-speed operation and compatibility of these chips make them suitable for use in communication systems, such as UART (Universal Asynchronous Receiver-Transmitter) interfaces or data transmission protocols.It's important to note that the specific application scenarios may vary depending on the requirements of the system and the overall circuit design.