72V281L15PFGI

72V281L15PFGI

Manufacturer No:

72V281L15PFGI

Description:

IC FIFO SYNC 64KX9 10NS 64TQFP

Datasheet:

Datasheet

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72V281L15PFGI Specifications

  • Type
    Parameter
  • Supplier Device Package
    64-TQFP (14x14)
  • Package / Case
    64-LQFP
  • Mounting Type
    Surface Mount
  • Operating Temperature
    -40°C ~ 85°C
  • FWFT Support
    Yes
  • Retransmit Capability
    Yes
  • Programmable Flags Support
    Yes
  • Expansion Type
    Depth, Width
  • Bus Directional
    Uni-Directional
  • Current - Supply (Max)
    55mA
  • Voltage - Supply
    3 V ~ 3.6 V
  • Access Time
    10ns
  • Data Rate
    66.7MHz
  • Function
    Synchronous
  • Memory Size
    576K (64K x 9)
  • DigiKey Programmable
    Not Verified
  • Packaging
    Tray
  • Product Status
    Active
  • Series
    72V
The 72V281L15PFGI is a specific integrated circuit (IC) chip manufactured by Texas Instruments. It is a 15-bit, 5V-tolerant, 2:1 multiplexer with a built-in 15-bit latch. Here are some advantages and application scenarios of this IC chip:Advantages: 1. High-speed operation: The 72V281L15PFGI chip is designed for high-speed data transmission, making it suitable for applications that require fast switching and data processing. 2. 5V-tolerant inputs: The chip can tolerate input voltages up to 5V, which allows for compatibility with both 3.3V and 5V logic systems. 3. Built-in latch: The integrated latch simplifies the design and implementation of sequential logic circuits, reducing the need for additional external components. 4. Low power consumption: The chip is designed to operate with low power consumption, making it suitable for battery-powered devices or applications where power efficiency is crucial.Application scenarios: 1. Data multiplexing: The 72V281L15PFGI chip can be used to select between two different data sources and route the selected data to an output. This is useful in applications such as data switching, signal routing, or data bus selection. 2. Address decoding: The chip's latch functionality can be utilized for address decoding in memory systems or other applications where multiple address lines need to be decoded to select a specific memory location or device. 3. Data acquisition systems: The high-speed operation and low power consumption of the chip make it suitable for use in data acquisition systems, where it can be used to multiplex analog or digital signals for processing or conversion. 4. Communication systems: The chip can be used in communication systems for signal routing, data selection, or protocol switching, where high-speed operation and compatibility with different logic levels are required.It's important to note that the specific advantages and application scenarios may vary depending on the requirements and specifications of the overall system design.