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74AC11074DRG4

Encyclopedia Entry: 74AC11074DRG4

Product Overview

Category

The 74AC11074DRG4 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 manipulating binary data. It serves as a D-type flip-flop with a dual-edge-triggered clock input.

Characteristics

  • Dual-edge-triggered flip-flop
  • High-speed operation
  • Low power consumption
  • Wide operating voltage range
  • Schmitt-trigger inputs for noise immunity

Package

The 74AC11074DRG4 is available in a small-outline integrated circuit (SOIC) package. This package provides compactness and ease of integration into electronic circuits.

Essence

The essence of the 74AC11074DRG4 lies in its ability to store and synchronize digital signals, making it an essential component in various applications requiring sequential logic operations.

Packaging/Quantity

The IC is typically sold in reels or tubes containing multiple units. The exact quantity may vary depending on the supplier and customer requirements.

Specifications

  • Supply Voltage Range: 2V to 6V
  • Input Voltage Range: 0V to VCC
  • Output Voltage Range: 0V to VCC
  • Operating Temperature Range: -40°C to +85°C
  • Propagation Delay: 5ns (typical)
  • Output Current: ±24mA

Detailed Pin Configuration

The 74AC11074DRG4 has a total of 14 pins, each serving a specific function:

  1. CLR (Clear) - Asynchronous clear input
  2. D (Data) - Data input
  3. CP (Clock Pulse) - Clock input
  4. Q (Output) - Complementary output
  5. Q̅ (Output) - Non-complementary output
  6. GND (Ground) - Ground reference
  7. Q̅ (Output) - Complementary output
  8. Q (Output) - Non-complementary output
  9. VCC (Positive Power Supply) - Positive power supply input
  10. D (Data) - Data input
  11. CP (Clock Pulse) - Clock input
  12. CLR (Clear) - Asynchronous clear input
  13. GND (Ground) - Ground reference
  14. VCC (Positive Power Supply) - Positive power supply input

Functional Features

  • Dual-edge-triggered operation allows for capturing data on both rising and falling edges of the clock signal.
  • Asynchronous clear input enables resetting the flip-flop to a known state.
  • Schmitt-trigger inputs provide improved noise immunity, ensuring reliable operation in noisy environments.
  • High-speed operation facilitates efficient data processing in time-critical applications.

Advantages and Disadvantages

Advantages

  • Dual-edge triggering enhances flexibility in capturing data at different points in the clock cycle.
  • Low power consumption makes it suitable for battery-powered devices.
  • Wide operating voltage range allows compatibility with various digital systems.
  • Schmitt-trigger inputs improve noise immunity, reducing the risk of erroneous data capture.

Disadvantages

  • Limited functionality compared to more complex flip-flops or sequential logic devices.
  • May not be suitable for applications requiring precise timing control beyond its specified propagation delay.

Working Principles

The 74AC11074DRG4 operates based on the principles of sequential logic. It utilizes flip-flop circuits to store and synchronize binary data. The clock input triggers the transfer of data from the D input to the Q and Q̅ outputs. The dual-edge triggering feature ensures that data is captured on both rising and falling edges of the clock signal.

Detailed Application Field Plans

The 74AC11074DRG4 finds applications in various digital systems, including but not limited to: - Data storage and retrieval systems - Communication equipment - Microcontrollers and microprocessors - Digital signal processing - Industrial automation

Detailed and Complete Alternative Models

Some alternative models that offer similar functionality to the 74AC11074DRG4 include: - SN74AC11074 from Texas Instruments - MC74AC11074 from ON Semiconductor - CD74AC11074 from Texas Instruments - 74HC11074 from NXP Semiconductors

These alternatives may have slight variations in specifications, pin configuration, or package type, but they serve the same purpose of dual-edge-triggered flip-flops.


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10 سوال و پاسخ رایج مربوط به کاربرد 74AC11074DRG4 در راه حل های فنی را فهرست کنید

Sure! Here are 10 common questions and answers related to the application of 74AC11074DRG4 in technical solutions:

  1. Q: What is the 74AC11074DRG4? A: The 74AC11074DRG4 is a dual positive-edge-triggered D-type flip-flop integrated circuit (IC) that operates on a 3.3V to 5V power supply.

  2. Q: What is the purpose of a D-type flip-flop? A: A D-type flip-flop is used to store and transfer data in sequential logic circuits. It can be used for various applications such as data synchronization, frequency division, and memory storage.

  3. Q: What is the operating voltage range of the 74AC11074DRG4? A: The 74AC11074DRG4 operates within a voltage range of 3.3V to 5.5V.

  4. Q: How many flip-flops are there in the 74AC11074DRG4? A: The 74AC11074DRG4 contains two independent D-type flip-flops.

  5. Q: What is the maximum clock frequency supported by the 74AC11074DRG4? A: The 74AC11074DRG4 can operate at a maximum clock frequency of 125 MHz.

  6. Q: Can the 74AC11074DRG4 be used in both synchronous and asynchronous applications? A: Yes, the 74AC11074DRG4 can be used in both synchronous and asynchronous applications depending on the clock input configuration.

  7. Q: What is the output drive capability of the 74AC11074DRG4? A: The 74AC11074DRG4 has a typical output drive capability of ±24 mA.

  8. Q: Does the 74AC11074DRG4 have any built-in protection features? A: Yes, the 74AC11074DRG4 includes built-in ESD protection to prevent damage from electrostatic discharge.

  9. Q: Can the 74AC11074DRG4 be cascaded to create larger flip-flop configurations? A: Yes, multiple 74AC11074DRG4 ICs can be cascaded together to create larger flip-flop configurations for more complex applications.

  10. Q: What is the package type of the 74AC11074DRG4? A: The 74AC11074DRG4 is available in a small-outline integrated circuit (SOIC) package with 14 pins.

Please note that these answers are general and may vary depending on specific datasheet specifications and application requirements.