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M74HC367TTR

M74HC367TTR

Product Overview

Category

The M74HC367TTR belongs to the category of integrated circuits (ICs).

Use

It is commonly used as a hex buffer/line driver with 3-state outputs.

Characteristics

  • High-speed CMOS technology
  • 3-state non-inverting outputs
  • High impedance when disabled or powered off
  • Wide operating voltage range

Package

The M74HC367TTR is typically available in a TSSOP-16 package.

Essence

This IC serves as a buffer and line driver, providing signal amplification and isolation.

Packaging/Quantity

It is usually supplied in reels with a quantity of 2500 units per reel.

Specifications

  • Supply Voltage Range: 2V to 6V
  • High-Level Input Voltage: 2V to VCC
  • Low-Level Input Voltage: GND to 0.8V
  • High-Level Output Voltage: VCC - 0.1V
  • Low-Level Output Voltage: 0.1V
  • Maximum Operating Frequency: 25MHz

Detailed Pin Configuration

The M74HC367TTR has the following pin configuration: 1. Output Enable (OE) 2. Data Inputs (A, B, C, D, E, F) 3. Outputs (Q1, Q2, Q3, Q4, Q5, Q6) 4. Ground (GND) 5. Supply Voltage (VCC)

Functional Features

  • Hex buffer with 3-state outputs
  • Non-inverting logic
  • High-speed operation
  • Wide voltage range compatibility

Advantages

  • High-speed CMOS technology ensures fast operation
  • 3-state outputs allow for easy bus interfacing
  • Wide operating voltage range enables versatile applications

Disadvantages

  • Limited maximum operating frequency compared to some alternative models
  • TSSOP package may require careful handling during assembly

Working Principles

The M74HC367TTR functions as a buffer and line driver by amplifying and isolating input signals. When the output enable (OE) is active, the inputs are transferred to the outputs without any inversion. When the OE is inactive, the outputs are in a high-impedance state, effectively disconnecting them from the rest of the circuit.

Detailed Application Field Plans

The M74HC367TTR is widely used in digital systems, such as microcontroller-based projects, data communication interfaces, and address/data bus buffering. It is also employed in industrial automation, consumer electronics, and automotive applications where signal buffering and isolation are required.

Detailed and Complete Alternative Models

Some alternative models to the M74HC367TTR include: - SN74HC367: Similar hex buffer/line driver with 3-state outputs - MC74HC367: Another option with comparable functionality and performance - CD74HC367: Alternative IC offering similar features and characteristics

In conclusion, the M74HC367TTR is a versatile integrated circuit that serves as a reliable buffer and line driver in various digital and analog applications, offering high-speed operation, wide voltage compatibility, and 3-state output capability.

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Enumere 10 preguntas y respuestas comunes relacionadas con la aplicación de M74HC367TTR en soluciones técnicas

  1. What is the M74HC367TTR?

    • The M74HC367TTR is a high-speed CMOS hex buffer/line driver with 3-state outputs.
  2. What is the operating voltage range of M74HC367TTR?

    • The operating voltage range of M74HC367TTR is 2V to 6V.
  3. What is the maximum output current of M74HC367TTR?

    • The maximum output current of M74HC367TTR is typically ±6mA.
  4. What are the typical applications of M74HC367TTR?

    • Typical applications include memory address drivers, clock drivers, and bus-oriented systems.
  5. What is the propagation delay of M74HC367TTR?

    • The propagation delay of M74HC367TTR is typically 13ns at 4.5V.
  6. What is the package type of M74HC367TTR?

    • M74HC367TTR is available in TSSOP-16 and SO-16 package types.
  7. Is M74HC367TTR RoHS compliant?

    • Yes, M74HC367TTR is RoHS compliant.
  8. What is the temperature range for M74HC367TTR?

    • The temperature range for M74HC367TTR is -40°C to 125°C.
  9. Can M74HC367TTR be used in automotive applications?

    • Yes, M74HC367TTR is suitable for use in automotive applications.
  10. What are the key features of M74HC367TTR?

    • Key features include high speed, low power consumption, and 3-state outputs.