Manufacturer Part Number
MAX3443EESA+
Manufacturer
Analog Devices
Introduction
The MAX3443EESA+ is a specialized interface transceiver designed for RS422 and RS485 communication protocols, ensuring reliable data transmission even under harsh environmental conditions.
Product Features and Performance
Supports RS422 and RS485 protocols
Operates with a single driver and receiver (1/1)
Half-duplex communication capability
Receiver Hysteresis of 25 mV for improved noise immunity
Maximum data rate of 10Mbps facilitates rapid data transfer
Operates effectively within a voltage supply range of 4.75V to 5.25V
Functional across a wide temperature range from -40°C to 85°C
Surface mount, 8-SOIC package allows compact and efficient PCB design
Product Advantages
High-speed data capabilities and robust receiver hysteresis make the MAX3443EESA+ ideal for demanding applications requiring reliable data exchange
The compact form factor and surface-mount packaging support streamlined and flexible board design
Key Technical Parameters
Protocol Compatibility: RS422, RS485
Duplex: Half
Data Rate: 10Mbps
Voltage Supply Range: 4.75V ~ 5.25V
Operating Temperature Range: -40°C ~ 85°C
Mounting Type: Surface Mount
Package: 8-SOIC
Quality and Safety Features
Built to withstand extended operating temperatures and voltage fluctuations, ensuring longevity and operational reliability
Compatibility
Designed for use in systems requiring RS422 or RS485 communication standards
Application Areas
Industrial automation
Telecommunications systems
Networking equipment
Data acquisition systems
Product Lifecycle
Currently active and not close to discontinuation
Future replacements or upgrades will adhere to similar standards for compatibility and performance
Several Key Reasons to Choose This Product
High-speed data transmission capabilities up to 10Mbps
Supports critical industrial communication protocols (RS422/RS485)
Reliable performance in extreme temperatures ranging from -40°C to 85°C
Small footprint allows integration in space-constrained applications
Robust receiver hysteresis enhances noise immunity