Manufacturer Part Number
MAX3083ESD+T
Manufacturer
Analog Devices
Introduction
The MAX3083ESD+T is a high-speed transceiver for RS422 and RS485 communication, designed for bi-directional data communication on balanced lines.
Product Features and Performance
Transceiver for RS422, RS485 protocols
Single Driver/Receiver with Full Duplex capability
100mV Receiver Hysteresis for improved noise rejection
Data Rate of up to 500kbps for high-speed communications
Wide Supply Voltage range of 4.75V to 5.25V
Product Advantages
Enhanced ESD protection
Low-power shutdown mode
Thermal shutdown protection mechanism
Industry-standard 14-SOIC package for ease of design and implementation
Key Technical Parameters
Full Duplex 1/1 Driver/Receiver configuration
Data Rate: 500kbps
Receiver Hysteresis: 100mV
Voltage - Supply: 4.75V ~ 5.25V
Operating Temperature range: -40°C to 85°C
Quality and Safety Features
Thermal shutdown protection helps prevent damage from over-temperature conditions
Robust ESD protection safeguards the device from electrostatic discharges
Compatibility
Compatible with RS422 and RS485 communication standards
Suited for a wide range of industrial applications with its extended temperature range
Application Areas
Industrial data communication
Networking equipment
Device control interfaces
Product Lifecycle
Status: Active, indicating that the product is in production and not near discontinuation
Replacements or upgrades may be available depending on future product enhancements or changes within the Analog Devices portfolio
Several Key Reasons to Choose This Product
Support for high-speed data communication up to 500kbps to meet demanding system requirements
Robust ESD protection ensures greater reliability in harsh environments
Full Duplex capability allows for bi-directional communication to maximize data flow
Low-power shutdown mode to conserve energy in idle states
An operating temperature range of -40°C to 85°C for use in a wide range of environmental conditions
Backed by Analog Devices, a leader in high-performance semiconductors for signal processing applications