MC74VHC1GT125DFT2G-Q Logic Level Shifter, SOIC-8 Package, Low Power

  • The MC74VHC1GT125DFT2G-Q functions as a high-speed buffer, enhancing signal integrity in digital circuits.
  • It features a wide supply voltage range, ensuring compatibility with various systems and applications.
  • This device comes in a compact package type, optimizing board space for efficient designs.
  • Ideal for use in communication devices, it improves signal transmission and reduces noise interference.
  • Manufactured with strict quality standards, this component ensures reliable performance in demanding environments.
ON Semiconductor (onsemi)- логотип
产品上方询盘

MC74VHC1GT125DFT2G-Q Overview

The MC74VHC1GT125DFT2G-Q is a high-speed CMOS buffer designed for low-voltage applications. It offers a wide supply voltage range and operates at high speed, making it suitable for various digital applications. With its low power consumption, it is ideal for battery-operated devices, ensuring long-lasting performance. This component is a key choice for engineers looking for reliability and efficiency in signal buffering tasks. For more details, visit Производитель ИС.

MC74VHC1GT125DFT2G-Q Key Features

  • High-speed operation at up to 5V, enabling faster logic transitions and improved system performance.
  • Low power consumption, which enhances battery life in portable electronics and reduces overall energy costs.
  • Wide operating temperature range ensures reliability in diverse environmental conditions.
  • Single buffer configuration simplifies integration into existing systems while maintaining high performance.

MC74VHC1GT125DFT2G-Q Technical Specifications

ПараметрЗначение
Напряжение питания (Vcc)2V to 5.5V
Input Voltage (Vin)0 В - Vcc
Output Voltage (Vout)0 В - Vcc
Input Current (Iin)??1??A
Output Current (Iout)??6mA
Задержка распространения4.5ns at 5V
Рабочая температура-40??C до 125??C
Packaging TypeSOT-23

MC74VHC1GT125DFT2G-Q Advantages vs Typical Alternatives

This device stands out against typical alternatives due to its superior speed and low power characteristics. Compared to similar components, it offers better sensitivity and reliability, ensuring optimal performance across a wide range of applications. Its compact size also facilitates integration into space-constrained designs.

Типовые применения

  • Signal buffering in digital circuits, where rapid signal transitions and low power are critical for performance and efficiency.
  • Data communication interfaces, providing reliable signal integrity for high-speed data transmission.
  • Battery-operated devices, leveraging low power consumption to extend operational life.
  • Consumer electronics, ensuring compatibility with various logic levels and contributing to robust product designs.

MC74VHC1GT125DFT2G-Q Brand Info

The MC74VHC1GT125DFT2G-Q is manufactured by a leading semiconductor company known for its innovative solutions in digital logic applications. This product embodies the brand’s commitment to quality and reliability, catering specifically to the needs of engineers and designers across various industries. Its design reflects a blend of advanced technology and practical application, making it a trusted choice for high-performance electronic systems.

ЧАСТО ЗАДАВАЕМЫЕ ВОПРОСЫ

What is the maximum supply voltage for the MC74VHC1GT125DFT2G-Q?

The maximum supply voltage for this device is 5.5V, allowing it to be used in both low and high-voltage applications effectively.

Can the MC74VHC1GT125DFT2G-Q operate in extreme temperatures?

Yes, it can operate in temperatures ranging from -40??C to 125??C, making it suitable for a variety of harsh environments.

What is the typical propagation delay for this device?

The typical propagation delay is approximately 4.5ns at 5V, ensuring fast signal processing in digital applications.

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产品中间询盘

What type of packaging does the MC74VHC1GT125DFT2G-Q come in?

This product is available in a SOT-23 package, which is compact and ideal for space-constrained applications.

Is the MC74VHC1GT125DFT2G-Q suitable for battery-powered devices?

Yes, its low power consumption makes it particularly suitable for battery-operated devices, enhancing energy efficiency and longevity.

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