Manufacturer Part Number
ADUM5210ARSZ
Manufacturer
analog-devices
Introduction
The ADUM5210ARSZ is a dual-channel digital isolator from Analog Devices. It features magnetic coupling technology to provide reliable and robust isolation between two independent signal paths. This isolator is designed for general-purpose applications and offers a compact surface-mount package.
Product Features and Performance
2-channel unidirectional digital isolator
Isolated power: Yes
Voltage isolation: 2500Vrms
Common mode transient immunity: 25kV/µs
Maximum data rate: 1Mbps
Propagation delay (max): 50ns
Pulse width distortion (max): 10ns
Rise/fall time (typical): 2.5ns
Operates from 2.7V to 5.5V supply
Wide operating temperature range: -40°C to 105°C
Product Advantages
Reliable magnetic coupling technology for robust signal isolation
Compact surface-mount package
Low propagation delay and pulse width distortion for high-speed data transmission
Wide operating voltage and temperature ranges for versatile applications
Key Reasons to Choose This Product
Proven isolation technology from a trusted manufacturer
Excellent common mode transient immunity for reliable operation
High-speed data transfer capability
Compact size and wide operating range for design flexibility
Quality and Safety Features
2500Vrms voltage isolation for enhanced safety
Magnetic coupling technology for reliable long-term performance
Compatibility
This digital isolator can be used in a variety of applications that require signal isolation, such as industrial control systems, medical equipment, and transportation electronics.
Application Areas
Industrial automation and control
Medical instrumentation
Transportation electronics
General-purpose signal isolation
Product Lifecycle
The ADUM5210ARSZ is an active product. There are equivalent or alternative models available, such as the ADUM5210BRSZ and ADUM5210CRSZ, which offer similar features and performance. Customers are advised to contact our website's sales team for more information about the availability and compatibility of alternative models.