SN74AUC2GU04YEPR

SN74AUC2GU04YEPR

Manufacturer No:

SN74AUC2GU04YEPR

Manufacturer:

Texas Instruments

Description:

IC INVERTER 2CH 2-INP 6DSBGA

Datasheet:

Datasheet

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SN74AUC2GU04YEPR Specifications

  • Type
    Parameter
  • Current - Quiescent (Max)
    10 µA
  • Package / Case
    6-XFBGA, DSBGA
  • Supplier Device Package
    6-DSBGA
  • Mounting Type
    Surface Mount
  • Operating Temperature
    -40°C ~ 85°C
  • Max Propagation Delay @ V, Max CL
    2ns @ 2.5V, 30pF
  • Input Logic Level - High
    -
  • Input Logic Level - Low
    -
  • Current - Output High, Low
    9mA, 9mA
  • Voltage - Supply
    0.8V ~ 2.7V
  • Features
    -
  • Number of Inputs
    2
  • Number of Circuits
    2
  • Logic Type
    Inverter
  • Packaging
    Tape & Reel (TR)
  • Product Status
    Obsolete
  • Series
    74AUC
The SN74AUC2GU04YEPR is a specific model of integrated circuit chip manufactured by Texas Instruments. It is a dual inverter gate chip that belongs to the AUC family of advanced ultra-low power CMOS logic chips. Here are some advantages and application scenarios of this chip:Advantages: 1. Low power consumption: The AUC family of chips is designed for ultra-low power operation, making them suitable for battery-powered devices and energy-efficient applications. 2. High speed: The SN74AUC2GU04YEPR chip operates at high speeds, allowing for fast signal processing and data transmission. 3. Wide operating voltage range: It can operate within a wide voltage range, typically from 0.8V to 3.6V, making it compatible with various power supply levels. 4. Small form factor: The chip is available in small packages, such as the 8-pin VSSOP, enabling compact designs and space-saving integration.Application scenarios: 1. Portable devices: The low power consumption and small form factor make the SN74AUC2GU04YEPR chip suitable for use in portable devices like smartphones, tablets, wearables, and IoT devices. 2. Battery-powered applications: Due to its low power requirements, the chip can be used in battery-powered applications, such as wireless sensors, remote controls, and portable medical devices. 3. Communication systems: The high-speed operation of the chip makes it suitable for use in communication systems, including data transmission, signal conditioning, and buffering. 4. Industrial automation: The chip can be used in industrial automation systems for signal processing, control logic, and interfacing between different components. 5. Automotive electronics: The wide operating voltage range and high-speed capabilities make the chip suitable for automotive applications, such as infotainment systems, driver assistance systems, and engine control units.It's important to note that the specific advantages and application scenarios may vary depending on the requirements and specifications of the project or system in which the chip is being used.