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SN74HC646NT

SN74HC646NT

Product Overview

  • Category: Integrated Circuit
  • Use: Data Bus Transceiver
  • Characteristics: High-speed, Non-inverting, 3-state
  • Package: DIP (Dual In-line Package)
  • Essence: Transceiver IC for bidirectional data transfer
  • Packaging/Quantity: Tube packaging, 25 pieces per tube

Specifications

  • Supply Voltage: 2V to 6V
  • Logic Family: HC
  • Number of Channels: 8
  • Input/Output Type: TTL Compatible
  • Maximum Data Rate: 80 Mbps
  • Operating Temperature Range: -40°C to +85°C

Detailed Pin Configuration

  1. OE (Output Enable) - Active Low Output Enable
  2. DIR (Direction Control) - Controls the direction of data flow
  3. A0-A7 (Data Bus) - Bidirectional data lines
  4. B0-B7 (Data Bus) - Bidirectional data lines
  5. VCC (Supply Voltage) - Positive power supply
  6. GND (Ground) - Ground reference
  7. NC (No Connection) - Not connected pin
  8. GND (Ground) - Ground reference
  9. B7 (Data Bus) - Bidirectional data line
  10. B6 (Data Bus) - Bidirectional data line
  11. B5 (Data Bus) - Bidirectional data line
  12. B4 (Data Bus) - Bidirectional data line
  13. B3 (Data Bus) - Bidirectional data line
  14. B2 (Data Bus) - Bidirectional data line
  15. B1 (Data Bus) - Bidirectional data line
  16. B0 (Data Bus) - Bidirectional data line
  17. A7 (Data Bus) - Bidirectional data line
  18. A6 (Data Bus) - Bidirectional data line
  19. A5 (Data Bus) - Bidirectional data line
  20. A4 (Data Bus) - Bidirectional data line
  21. A3 (Data Bus) - Bidirectional data line
  22. A2 (Data Bus) - Bidirectional data line
  23. A1 (Data Bus) - Bidirectional data line
  24. A0 (Data Bus) - Bidirectional data line
  25. GND (Ground) - Ground reference
  26. VCC (Supply Voltage) - Positive power supply
  27. DIR (Direction Control) - Controls the direction of data flow
  28. OE (Output Enable) - Active Low Output Enable

Functional Features

  • Bidirectional data transfer between two data buses
  • Non-inverting logic for compatibility with TTL levels
  • High-speed operation for efficient data transmission
  • 3-state outputs for bus isolation when not enabled
  • Output enable and direction control for flexible data flow management

Advantages and Disadvantages

Advantages

  • High-speed data transfer capability
  • Non-inverting logic ensures compatibility with TTL levels
  • Flexible data flow management with output enable and direction control
  • 3-state outputs allow for bus isolation

Disadvantages

  • Limited to 8 channels of bidirectional data transfer
  • Requires external control signals for direction and output enable

Working Principles

The SN74HC646NT is a bidirectional data bus transceiver that allows for the transfer of data between two separate data buses. It operates using non-inverting logic, ensuring compatibility with TTL levels. The direction of data flow is controlled by the DIR pin, while the OE pin enables or disables the outputs.

When the OE pin is low, the outputs are active, allowing data to be transferred between the A and B buses based on the state of the DIR pin. When the OE pin is high, the outputs are disabled, effectively isolating the A and B buses.

Detailed Application Field Plans

The SN74HC646NT is commonly used in various applications that require bidirectional data transfer between two separate data buses. Some of the typical application fields include:

  1. Microprocessor systems
  2. Data communication networks
  3. Industrial automation
  4. Automotive electronics
  5. Test and measurement equipment

Detailed and Complete Alternative Models

  • SN74HC245N: Octal Bus Transceiver with 3-state Outputs
  • SN74HCT646DW: Octal Bus Transceiver with 3-state Outputs and Schmitt-trigger Inputs
  • SN74LVC646APW: Octal Bus Transceiver with 3-state Outputs and 5V Tolerant Inputs
  • SN74LVTH646PW: Octal Bus Transceiver with 3-state Outputs and 5V Tolerant Inputs

These alternative models offer similar functionality to the SN74HC646NT and can be considered as alternatives based on specific requirements and compatibility needs.

In conclusion, the SN74HC646NT is a high-speed bidirectional data bus transceiver IC

Seznam 10 běžných otázek a odpovědí souvisejících s aplikací SN74HC646NT v technických řešeních

Sure! Here are 10 common questions and answers related to the application of SN74HC646NT:

  1. Q: What is SN74HC646NT? A: SN74HC646NT is a high-speed octal bus transceiver with 3-state outputs, commonly used in digital systems.

  2. Q: What is the operating voltage range for SN74HC646NT? A: The operating voltage range for SN74HC646NT is typically between 2V and 6V.

  3. Q: How many bits can SN74HC646NT handle? A: SN74HC646NT is an octal transceiver, meaning it can handle 8 bits of data.

  4. Q: What is the maximum data transfer rate supported by SN74HC646NT? A: SN74HC646NT supports a maximum data transfer rate of up to 80 MHz.

  5. Q: Can SN74HC646NT be used for bidirectional communication? A: Yes, SN74HC646NT supports bidirectional data flow, making it suitable for applications requiring both input and output data.

  6. Q: Does SN74HC646NT have built-in protection features? A: Yes, SN74HC646NT has built-in ESD (electrostatic discharge) protection on all inputs and outputs.

  7. Q: What is the power supply current required for SN74HC646NT? A: The power supply current for SN74HC646NT depends on the specific operating conditions, but it typically ranges from a few milliamperes to tens of milliamperes.

  8. Q: Can SN74HC646NT be used in mixed-voltage systems? A: Yes, SN74HC646NT has voltage-level translation capabilities, allowing it to interface between different voltage domains.

  9. Q: What is the output drive capability of SN74HC646NT? A: SN74HC646NT has a typical output drive capability of ±24 mA, making it suitable for driving various loads.

  10. Q: Are there any specific application notes or reference designs available for SN74HC646NT? A: Yes, Texas Instruments provides application notes and reference designs that can help in designing with SN74HC646NT. These resources can be found on their website or obtained from their technical support team.

Please note that these answers are general and may vary depending on the specific implementation and requirements of your technical solution.