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TD74ABT244AF

Part No TD74ABT244AF
Manufacturer Toshiba Semiconductor and Storage
Catalog HOT - SALES and EOL Components (T)
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Manufacturer Toshiba Semiconductor and Storage
Win Source Part Number 361389-TD74ABT244AF
Popularity Low
Supply and Demand Status Balance
Ultra Librarian 3D Model Ultra Librarian TD74ABT244AF CAD Model

Description

The TD74ABT244AF is a high-speed, low-power octal buffer/line driver from Toshiba Semiconductor and Storage. This device is designed for use in applications requiring high-performance buffering of data signals. It features non-inverting outputs and a three-state output control, making it suitable for driving bus lines and other high-capacitance loads.

Applications:

  • Memory address drivers
  • Clock drivers
  • Bus-oriented applications
  • Data transmission applications

Features:

  • High-speed operation: Suitable for high-frequency applications.
  • Low power consumption: Minimizes power requirements in the system.
  • Three-state outputs: Allows for connection to bus lines.
  • Non-inverting outputs: Simplifies signal management.
  • Wide operating voltage range: Offers flexibility in various system environments.

Benefits:

  • Improved system performance due to high-speed operation.
  • Reduced power consumption leads to energy efficiency.
  • Enhanced system flexibility with three-state outputs for bus interfacing.
  • Simplified design and implementation with non-inverting outputs.
  • Increased reliability and stability due to wide operating voltage range.

Technical Specifications:

The TD74ABT244AF is characterized by its high-speed performance, typically exhibiting propagation delays in the nanosecond range. It operates within a broad voltage range, commonly 4.5V to 5.5V, providing compatibility with standard logic levels. The device is available in a surface-mount package, facilitating efficient board assembly. The three-state outputs enable the device to be effectively disconnected from the bus, allowing multiple devices to share the same lines without contention. The non-inverting configuration ensures that the output signal accurately reflects the input signal, which is crucial in data transmission applications.

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