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SN74AUP1G08DCKT

SN74AUP1G08DCKT

Product Overview

  • Category: Integrated Circuit (IC)
  • Use: Logic Gate
  • Characteristics: Single 2-input AND gate
  • Package: SC-70 (SOT-323)
  • Essence: High-performance CMOS technology
  • Packaging/Quantity: Tape and Reel, 3000 pieces per reel

Specifications

  • Supply Voltage Range: 0.8V to 3.6V
  • Input Voltage Range: -0.5V to VCC + 0.5V
  • Output Voltage Range: 0V to VCC
  • Maximum Operating Frequency: 500 MHz
  • Propagation Delay: 2.7 ns (typical)
  • Low Power Consumption: 0.9 µA (typical)

Detailed Pin Configuration

The SN74AUP1G08DCKT has the following pin configuration:

____ A --| |-- VCC B --| |-- Y GND --|____|-- NC

Functional Features

  • High-speed operation with low power consumption
  • Wide supply voltage range allows compatibility with various systems
  • Schmitt-trigger input for noise immunity
  • Small package size enables space-saving designs
  • RoHS compliant and lead-free

Advantages and Disadvantages

Advantages: - High-performance CMOS technology ensures fast and reliable operation - Low power consumption makes it suitable for battery-powered devices - Wide supply voltage range provides flexibility in different applications - Schmitt-trigger input enhances noise immunity

Disadvantages: - Limited to a single 2-input AND gate functionality - Not suitable for applications requiring more complex logic functions

Working Principles

The SN74AUP1G08DCKT is based on Complementary Metal-Oxide-Semiconductor (CMOS) technology. It utilizes a single 2-input AND gate to perform logical operations. The inputs A and B are combined using the AND gate, and the output Y reflects the result of the logical operation.

Detailed Application Field Plans

The SN74AUP1G08DCKT is commonly used in various digital systems and applications, including but not limited to: - Mobile devices - Consumer electronics - Industrial automation - Automotive electronics - Communication systems

Detailed and Complete Alternative Models

Some alternative models that offer similar functionality to the SN74AUP1G08DCKT include: - 74HC08: Quad 2-input AND gate - CD4081: Quad 2-input AND gate - MC14008: Quad 2-input AND gate - HCF4081: Quad 2-input AND gate

These alternative models can be considered based on specific requirements and availability.

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Enumere 10 preguntas y respuestas comunes relacionadas con la aplicación de SN74AUP1G08DCKT en soluciones técnicas

Sure! Here are 10 common questions and answers related to the application of SN74AUP1G08DCKT:

Q1: What is SN74AUP1G08DCKT? A1: SN74AUP1G08DCKT is a single 2-input AND gate IC (integrated circuit) manufactured by Texas Instruments.

Q2: What is the operating voltage range of SN74AUP1G08DCKT? A2: The operating voltage range of SN74AUP1G08DCKT is from 0.8V to 3.6V.

Q3: What is the maximum output current of SN74AUP1G08DCKT? A3: The maximum output current of SN74AUP1G08DCKT is 32mA.

Q4: Can SN74AUP1G08DCKT be used in battery-powered applications? A4: Yes, SN74AUP1G08DCKT can be used in battery-powered applications due to its low power consumption and wide operating voltage range.

Q5: What is the package type of SN74AUP1G08DCKT? A5: SN74AUP1G08DCKT comes in a small SOT-353 package.

Q6: What is the typical propagation delay of SN74AUP1G08DCKT? A6: The typical propagation delay of SN74AUP1G08DCKT is around 2.9ns.

Q7: Can SN74AUP1G08DCKT be used in high-speed applications? A7: Yes, SN74AUP1G08DCKT can be used in high-speed applications due to its fast switching speed and low propagation delay.

Q8: What is the input voltage threshold of SN74AUP1G08DCKT? A8: The input voltage threshold of SN74AUP1G08DCKT is typically 0.7V.

Q9: Can SN74AUP1G08DCKT be used in automotive applications? A9: Yes, SN74AUP1G08DCKT is AEC-Q100 qualified and can be used in automotive applications.

Q10: What are some typical applications of SN74AUP1G08DCKT? A10: Some typical applications of SN74AUP1G08DCKT include signal conditioning, level shifting, power management, and general-purpose logic gate functions.

Please note that these answers are general and may vary depending on specific design requirements and conditions.