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74ABT652CSC

Encyclopedia Entry: 74ABT652CSC

Product Overview

Category

The 74ABT652CSC belongs to the category of integrated circuits (ICs) and specifically falls under the family of ABT series ICs.

Use

This IC is commonly used in digital systems for data bus interfacing applications. It serves as a bidirectional transceiver, facilitating the exchange of data between two buses with different voltage levels.

Characteristics

  • Bidirectional transceiver
  • Supports voltage level translation
  • High-speed operation
  • Low power consumption
  • Robust output drive capability

Package

The 74ABT652CSC is available in a small-outline integrated circuit (SOIC) package. This package offers compactness and ease of integration into various electronic systems.

Essence

The essence of the 74ABT652CSC lies in its ability to enable seamless communication between buses operating at different voltage levels, ensuring efficient data transfer in digital systems.

Packaging/Quantity

The 74ABT652CSC is typically packaged in reels or tubes, containing a quantity of 250 units per package.

Specifications

  • Supply Voltage Range: 4.5V to 5.5V
  • Input Voltage Levels:
    • High-Level Input Voltage: 2.0V to VCC + 0.5V
    • Low-Level Input Voltage: -0.5V to 0.8V
  • Output Voltage Levels:
    • High-Level Output Voltage: VCC - 0.5V
    • Low-Level Output Voltage: 0.5V
  • Operating Temperature Range: -40°C to +85°C
  • Propagation Delay Time: 3.5ns (Max)
  • Output Drive Capability: ±24mA

Detailed Pin Configuration

The 74ABT652CSC consists of 24 pins, each serving a specific function. The pin configuration is as follows:

  1. OE (Output Enable) A
  2. I/O0A
  3. I/O1A
  4. I/O2A
  5. I/O3A
  6. I/O4A
  7. GND (Ground)
  8. I/O5A
  9. I/O6A
  10. I/O7A
  11. VCC (Supply Voltage)
  12. DIR (Direction Control)
  13. I/O7B
  14. I/O6B
  15. I/O5B
  16. GND (Ground)
  17. I/O4B
  18. I/O3B
  19. I/O2B
  20. I/O1B
  21. I/O0B
  22. OE (Output Enable) B
  23. NC (No Connection)
  24. VCC (Supply Voltage)

Functional Features

  • Bidirectional data transfer between two buses with different voltage levels
  • Automatic direction control based on the DIR pin
  • Output enable/disable functionality for individual bus control
  • Non-inverting outputs for both A and B buses
  • High-speed operation allows for efficient data transmission

Advantages and Disadvantages

Advantages

  • Facilitates seamless communication between buses with different voltage levels
  • Supports high-speed data transfer
  • Low power consumption enhances energy efficiency
  • Robust output drive capability ensures reliable signal transmission

Disadvantages

  • Limited to bidirectional data transfer applications
  • Requires careful consideration of voltage level compatibility between connected buses

Working Principles

The 74ABT652CSC operates by utilizing internal circuitry to translate and transmit data bidirectionally between two buses. The DIR pin controls the direction of data flow, while the OE pins enable or disable the outputs for individual bus control. The IC's internal design ensures efficient voltage level translation, allowing for seamless data exchange.

Detailed Application Field Plans

The 74ABT652CSC finds applications in various digital systems where data bus interfacing is required. Some specific application fields include: - Microprocessor-based systems - Communication equipment - Industrial automation systems - Automotive electronics - Consumer electronics

Detailed and Complete Alternative Models

  1. 74ACT652: Similar to the 74ABT652CSC, but operates at a different voltage range (2.0V to 5.5V).
  2. 74HC652: Provides similar functionality but operates at a lower speed compared to the 74ABT652CSC.
  3. 74LVX652: Offers compatibility with lower voltage levels (1.65V to 3.6V) while providing bidirectional data transfer capabilities.

These alternative models can be considered based on specific system requirements and voltage level compatibility.


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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací 74ABT652CSC v technických řešeních

Sure! Here are 10 common questions and answers related to the application of 74ABT652CSC in technical solutions:

  1. Q: What is the purpose of the 74ABT652CSC? A: The 74ABT652CSC is a bus transceiver with 3-state outputs, used for bidirectional data transfer between different parts of a digital system.

  2. Q: What voltage levels does the 74ABT652CSC support? A: The 74ABT652CSC supports both TTL (Transistor-Transistor Logic) and CMOS (Complementary Metal-Oxide-Semiconductor) voltage levels.

  3. Q: How many bits can the 74ABT652CSC handle? A: The 74ABT652CSC can handle 16 bits of data, as it has 16 bidirectional I/O pins.

  4. Q: Can the 74ABT652CSC be used in high-speed applications? A: Yes, the 74ABT652CSC is designed for high-speed operation and can be used in applications where fast data transfer is required.

  5. Q: Does the 74ABT652CSC have built-in protection against bus contention? A: Yes, the 74ABT652CSC has built-in bus-hold circuitry that prevents bus contention when multiple devices try to drive the bus simultaneously.

  6. Q: Can the 74ABT652CSC be used in multi-voltage systems? A: Yes, the 74ABT652CSC has separate VCC and GND pins for each side of the device, allowing it to be used in multi-voltage systems.

  7. Q: What is the maximum operating frequency of the 74ABT652CSC? A: The maximum operating frequency of the 74ABT652CSC is typically around 200 MHz, making it suitable for many high-speed applications.

  8. Q: Can the 74ABT652CSC be used in both parallel and serial data transfer applications? A: Yes, the 74ABT652CSC can be used in both parallel and serial data transfer applications, depending on how it is connected in the system.

  9. Q: Does the 74ABT652CSC have any power-saving features? A: No, the 74ABT652CSC does not have any specific power-saving features. However, it does have a low-power standby mode when the OE (Output Enable) pin is pulled low.

  10. Q: Are there any specific layout considerations when using the 74ABT652CSC? A: Yes, it is important to follow proper PCB layout guidelines to minimize noise and ensure signal integrity, especially when operating at high frequencies.

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