Manufacturer Part Number
MAX3221ECUE+T
Manufacturer
analog-devices
Introduction
The MAX3221ECUE+T is a single driver/receiver transceiver that provides an interface between any asynchronous communication equipment and the RS-232 serial port of a computer or other data terminal equipment (DTE). It is designed to operate from a single 3V to 5.5V power supply and can be configured for 3V or 5V operation.
Product Features and Performance
Single driver/receiver transceiver for RS-232 interface
Operates from a single 3V to 5.5V power supply
Supports data rates up to 250kbps
500mV receiver hysteresis for improved noise immunity
Automatic shutdown and wake-up modes for power savings
ESD protection exceeds ±15kV for human body model and ±8kV for machine model
DFN package available for space-constrained applications
Product Advantages
Efficient power management with automatic shutdown and wake-up modes
Robust ESD protection for improved reliability
Compact surface-mount package options for space-saving designs
Wide operating voltage range for versatile applications
Key Reasons to Choose This Product
Industry-leading performance and power efficiency
Excellent noise immunity for reliable data transmission
Flexible configuration options to meet diverse application needs
Proven analog expertise from Analog Devices
Quality and Safety Features
Complies with relevant safety and regulatory standards
Rigorous quality control and testing processes
Backed by Analog Devices' reputation for reliability
Compatibility
Designed to interface with RS-232 serial ports
Compatible with a wide range of microcontrollers and other digital systems
Application Areas
Embedded systems
Industrial automation
Telecommunications equipment
Portable devices
Medical equipment
Product Lifecycle
The MAX3221ECUE+T is an active product, and there are several equivalent or alternative models available from Analog Devices, such as the MAX3222E, MAX3223E, and MAX3232E. If you need further assistance, please contact our sales team via our website for more information.