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74ACT574MTCX

Encyclopedia Entry: 74ACT574MTCX

Product Overview

Category

The 74ACT574MTCX belongs to the category of integrated circuits (ICs) and specifically falls under the family of flip-flops.

Use

This IC is commonly used in digital electronics for storing and transferring data. It serves as an octal D-type flip-flop with a transparent latch.

Characteristics

  • High-speed operation: The 74ACT574MTCX offers fast data transfer rates, making it suitable for applications that require quick data processing.
  • Low power consumption: This IC is designed to operate efficiently while consuming minimal power.
  • Wide operating voltage range: It can function within a broad range of supply voltages, typically between 2V and 6V.
  • Robust design: The 74ACT574MTCX is built to withstand various environmental conditions and provide reliable performance.
  • Compact package: It comes in a small-sized TSSOP-20 package, which allows for space-saving integration into electronic circuits.

Packaging/Quantity

The 74ACT574MTCX is typically packaged in reels or tubes, containing a quantity of 250 units per package.

Specifications

  • Logic Family: ACT
  • Number of Flip-Flops: 8
  • Input Type: D-Type
  • Output Type: Standard
  • Supply Voltage Range: 2V - 6V
  • Operating Temperature Range: -40°C to +85°C
  • Package Type: TSSOP-20

Detailed Pin Configuration

The pin configuration of the 74ACT574MTCX is as follows:

  1. GND (Ground)
  2. D0 (Data Input 0)
  3. D1 (Data Input 1)
  4. D2 (Data Input 2)
  5. D3 (Data Input 3)
  6. D4 (Data Input 4)
  7. D5 (Data Input 5)
  8. D6 (Data Input 6)
  9. D7 (Data Input 7)
  10. OE (Output Enable)
  11. CP (Clock Pulse)
  12. Q0 (Flip-Flop Output 0)
  13. Q1 (Flip-Flop Output 1)
  14. Q2 (Flip-Flop Output 2)
  15. Q3 (Flip-Flop Output 3)
  16. Q4 (Flip-Flop Output 4)
  17. Q5 (Flip-Flop Output 5)
  18. Q6 (Flip-Flop Output 6)
  19. Q7 (Flip-Flop Output 7)
  20. VCC (Supply Voltage)

Functional Features

The 74ACT574MTCX offers the following functional features:

  • Transparent latch: The IC has a transparent latch that allows data to be transferred to the outputs when the clock pulse is active.
  • Output enable control: The output enable pin (OE) enables or disables the outputs, providing flexibility in data transfer operations.
  • High-speed operation: With its ACT logic family, this IC ensures fast and efficient data processing.
  • Data storage: The octal flip-flop design allows for the storage of eight bits of data.

Advantages and Disadvantages

Advantages

  • High-speed operation enables quick data transfer.
  • Low power consumption makes it energy-efficient.
  • Wide operating voltage range provides versatility in various applications.
  • Compact package size allows for space-saving integration.

Disadvantages

  • Limited number of flip-flops (8) may not be sufficient for certain complex applications.
  • Lack of built-in error detection or correction mechanisms.

Working Principles

The 74ACT574MTCX operates based on the principles of flip-flops and latch circuits. When the clock pulse is active, the data inputs are transferred to the outputs through the transparent latch. The output enable pin controls the activation of the outputs, allowing for efficient data transfer operations.

Detailed Application Field Plans

The 74ACT574MTCX finds applications in various digital systems, including but not limited to:

  1. Microcontrollers: Used for storing and transferring data between the microcontroller and other peripheral devices.
  2. Data communication systems: Enables data buffering and synchronization in communication protocols.
  3. Memory modules: Facilitates data storage and retrieval operations in memory units.
  4. Industrial automation: Utilized in control systems for data processing and signal synchronization.
  5. Automotive electronics: Supports data transfer and storage in automotive control units.

Detailed and Complete Alternative Models

Some alternative models that can be considered as alternatives to the 74ACT574MTCX include:

  1. 74HC574: A similar octal D-type flip-flop IC with a different logic family (HC).
  2. 74LS574: Another octal D-type flip-flop IC with a different logic family (LS).
  3. CD4013: A dual D-type flip-flop IC with additional features

רשום 10 שאלות ותשובות נפוצות הקשורות ליישום של 74ACT574MTCX בפתרונות טכניים

Sure! Here are 10 common questions and answers related to the application of 74ACT574MTCX in technical solutions:

  1. Q: What is the 74ACT574MTCX? A: The 74ACT574MTCX is a octal D-type flip-flop with tri-state outputs, commonly used in digital circuits.

  2. Q: What is the purpose of the 74ACT574MTCX? A: The purpose of this IC is to store and transfer data in digital systems, providing synchronization and control.

  3. Q: How many flip-flops are there in the 74ACT574MTCX? A: The 74ACT574MTCX consists of eight individual D-type flip-flops.

  4. Q: What is the maximum operating frequency of the 74ACT574MTCX? A: The maximum operating frequency of this IC is typically around 200 MHz.

  5. Q: Can the 74ACT574MTCX be used for bidirectional data transfer? A: No, the 74ACT574MTCX is designed for unidirectional data transfer only.

  6. Q: What is the voltage supply range for the 74ACT574MTCX? A: The voltage supply range for this IC is typically between 4.5V and 5.5V.

  7. Q: Does the 74ACT574MTCX have any built-in output protection features? A: Yes, it has built-in diode clamps to protect against overvoltage and undervoltage conditions.

  8. Q: Can the 74ACT574MTCX be cascaded to increase the number of flip-flops? A: Yes, multiple 74ACT574MTCX ICs can be cascaded to increase the number of flip-flops in a system.

  9. Q: What is the power consumption of the 74ACT574MTCX? A: The power consumption of this IC depends on the operating frequency and load conditions, typically ranging from a few milliwatts to a few watts.

  10. Q: Are there any specific precautions to consider when using the 74ACT574MTCX? A: It is important to ensure proper decoupling capacitors are used near the power supply pins to minimize noise and voltage fluctuations. Additionally, care should be taken to avoid exceeding the maximum ratings specified in the datasheet to prevent damage to the IC.