Manufacturer Part Number
ADUM6411BRSZ
Manufacturer
analog-devices
Introduction
The ADUM6411BRSZ is a high-speed, quad-channel digital isolator that uses Analog Devices' iCoupler® magnetic coupling technology to provide reliable and cost-effective galvanic isolation between digital systems. It offers a compact, low-power solution for isolating control and data signals in industrial, automotive, and other applications.
Product Features and Performance
4-channel digital isolator with unidirectional signal transmission
Magnetic coupling technology for reliable galvanic isolation
Isolated power supply
High common-mode transient immunity (75 kV/μs)
High-speed data rates up to 150 Mbps
Low propagation delay (13 ns max)
Compact 24-SSOP package
Product Advantages
Reliable galvanic isolation to protect sensitive electronics
High-speed data transmission for fast, real-time communication
Low power consumption for energy-efficient designs
Compact package for space-constrained applications
Key Reasons to Choose This Product
Proven iCoupler® technology for long-term reliability
High performance and efficiency for critical applications
Comprehensive protection against electrical noise and transients
Versatile and easy to integrate into various system designs
Quality and Safety Features
Robust magnetic coupling for reliable isolation
Extended temperature range (-40°C to 105°C)
Compliant with relevant safety and EMC standards
Compatibility
The ADUM6411BRSZ is compatible with a wide range of digital systems and can be used in various industrial, automotive, and other applications.
Application Areas
Industrial automation and control systems
Automotive electronics
Medical equipment
Power supplies and converters
General-purpose signal isolation
Product Lifecycle
The ADUM6411BRSZ is an active product, and Analog Devices continues to support it. There are no known plans for discontinuation at this time. Customers are advised to contact our website's sales team for the latest information on availability and any potential alternative or equivalent models.