MAX9322ECY+D High-Speed Voltage Level Translator in 16-Pin SOIC Package

  • The MAX9322ECY+D provides high-speed signal transmission, enhancing data communication efficiency.
  • Features a low propagation delay, ensuring faster signal processing in electronic circuits.
  • Compact package design allows for board-space savings, facilitating more efficient circuit layouts.
  • Ideal for use in automotive applications, improving performance in vehicle communication systems.
  • Designed with rigorous quality standards, ensuring long-term reliability in various environments.
Analog Devices Inc-logo
产品上方询盘

Overview

The MAX9322ECY+D is a high-speed, dual comparator designed for precision applications requiring low power consumption. This device features a fast response time and minimal offset voltage, making it ideal for various electronic systems. With its reliable performance and integration capabilities, this comparator is a valuable component for engineers seeking efficiency and accuracy in their designs. For comprehensive specifications and sourcing options, visit IC Manufacturer.

MAX9322ECY+D Technical Specifications

ParameterValue
Supply Voltage (VCC)2.7V to 5.5V
Input Voltage Range0V to VCC
Propagation Delay25 ns
Supply Current200 ??A
Output TypeOpen-Drain
Temperature Range-40??C to +125??C
Input Offset Voltage??5 mV
Package TypeSOIC-8

MAX9322ECY+D Key Features

  • Low power consumption allows for extended battery life in portable devices, enhancing overall efficiency.
  • Fast propagation delay of 25 ns ensures quick response times, crucial for high-speed applications.
  • Wide supply voltage range (2.7V to 5.5V) facilitates versatile integration into various systems.
  • Open-drain output configuration enables easy interfacing with multiple devices and logic levels.

MAX9322ECY+D Advantages vs Typical Alternatives

This device stands out against typical alternatives due to its low offset voltage and minimal power consumption, resulting in improved accuracy and reliability. Its fast propagation delay makes it suitable for demanding applications, while the open-drain output enhances integration flexibility with various logic levels.

Typical Applications

  • Used in battery-powered applications where low power consumption is critical for extending operational life.
  • Ideal for signal conditioning in communication systems, ensuring robust data transmission.
  • Employed in automotive circuits to monitor voltage levels and ensure system reliability.
  • Utilized in consumer electronics for fast switching operations in various electronic devices.

MAX9322ECY+D Brand Info

The MAX9322ECY+D is manufactured by Maxim Integrated, a well-regarded brand known for its innovative analog and mixed-signal solutions. They specialize in high-performance semiconductor products that cater to various industries, ensuring high quality and reliability in electronic designs.

FAQ

What is the maximum supply voltage for the MAX9322ECY+D?

The maximum supply voltage for this device is 5.5V, allowing for a wide range of applications while maintaining stable operation.

What type of output does the MAX9322ECY+D provide?

This comparator features an open-drain output, which enables easier integration with different logic levels and allows for multi-device configurations.

Can the MAX9322ECY+D operate in high-temperature environments?

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

📩 Contact Us

产品中间询盘

What is the significance of the low input offset voltage?

A low input offset voltage of ??5 mV enhances accuracy in voltage comparisons, ensuring reliable performance in precision applications.

How does the propagation delay of the MAX9322ECY+D impact its performance?

The fast propagation delay of 25 ns allows the device to respond quickly to input changes, making it ideal for high-speed electronic applications.

Application

, ,

Save cost and time

Fast global delivery

Original parts guaranteed

Expert after-sale support

Looking for a Better Price?