Manufacturer Part Number
MAX3223ECAP+T
Manufacturer
Analog Devices
Introduction
The MAX3223ECAP+T is an RS232 interface transceiver from Analog Devices with full duplex capability.
Product Features and Performance
RS232 transceiver with full duplex functionality
Supports 2 drivers and 2 receivers
500mV receiver hysteresis for improved noise rejection
Data rate of 250kbps for moderate speed communication
Compatible with 3V to 5.5V supply voltages for versatile power setups
Supports operating temperatures from -40°C to 85°C for industrial applications
Product Advantages
Increased reliability in noisy environments due to receiver hysteresis
Flexible voltage range accommodating various power supply designs
Suitable for harsh temperature environments
Compact 20-SSOP package for space-saving designs
Tape & Reel packaging for automated assembly processes
Key Technical Parameters
Duplex: Full
Number of Drivers/Receivers: 2/2
Receiver Hysteresis: 500 mV
Data Rate: 250kbps
Voltage - Supply: 3V ~ 5.5V
Operating Temperature: -40°C ~ 85°C
Mounting Type: Surface Mount
Package / Case: 20-SSOP
Quality and Safety Features
Robust design suited for industrial temperature ranges
Compliance with industry standards for interface drivers
Compatibility
Compatible with RS232 communication protocols
Surface-mounted 20-SSOP package for widespread board compatibility
Application Areas
Industrial automation
Data communication equipment
Point-of-Sale systems
Telecommunications
Product Lifecycle
Active status, indicating ongoing production and availability
No notification of discontinuation, replacements, or upgrades at the time of writing
Several Key Reasons to Choose This Product
Reliable data transmission in electrically noisy environments due to enhanced hysteresis
Support for a wide range of power supplies, enhancing design flexibility
Tape & Reel packaging supports efficient mass production
Durability in extreme temperatures makes it ideal for industrial and outdoor applications
Provides essential RS232 connectivity in a compact footprint suitable for space-constrained applications