Manufacturer Part Number
SN65HVD10QP
Manufacturer
texas-instruments
Introduction
The SN65HVD10QP is a highly-integrated, single-channel RS-422/RS-485 transceiver designed for half-duplex communication applications. It features excellent noise immunity, fast data rates, and a wide operating temperature range, making it well-suited for industrial, automation, and other demanding environments.
Product Features and Performance
Supports data rates up to 32Mbps
3V to 3.6V supply voltage
-40°C to 125°C operating temperature range
35mV receiver hysteresis for improved noise immunity
Integrated driver and receiver in a single package
Half-duplex operation
Product Advantages
Robust and reliable performance in harsh environments
High-speed data transmission capability
Wide operating voltage and temperature range
Space-saving single-chip integration
Key Reasons to Choose This Product
Exceptional noise immunity and data integrity
Versatile and flexible for a wide range of applications
Cost-effective solution for RS-422/RS-485 communication
Proven reliability from a trusted semiconductor manufacturer
Quality and Safety Features
Rigorous quality control and testing standards
Compliance with relevant industry standards and regulations
Compatibility
The SN65HVD10QP is compatible with standard RS-422 and RS-485 communication protocols, making it suitable for integration into a variety of industrial, automation, and other data communication systems.
Application Areas
Industrial automation and control systems
Building automation and security systems
Transportation and traffic control systems
Medical equipment and instrumentation
Data acquisition and monitoring applications
Product Lifecycle
The SN65HVD10QP is an obsolete product, meaning it is no longer in active production. However, there are several alternative and equivalent models available from Texas Instruments that may suit your needs. We recommend contacting our sales team via our website for more information on the available options and to discuss the best solution for your specific application.