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ADM3052BRWZ

ADIADM3052BRWZ

Analog Devices Inc.
1/1 Transceiver, Isolated CANbus 16-SOIC
Active103 in stock

Overview

The ADM3052BRWZ is an isolated CAN physical layer transceiver with an integrated V+ linear regulator, designed for high-voltage industrial and automotive networks. It provides 5 kV rms isolation and is powered on the bus side by the network supply, simplifying the design of nodes in distributed systems. The device supports data rates up to 1 Mbps and features high common-mode transient immunity of greater than 25 kV/us.

Why Choose This Part

This transceiver integrates a linear regulator that allows the bus side to be powered directly from the 11V to 25V bus supply, reducing component count. It offers superior protection with short-circuit and thermal shutdown capabilities, alongside a high node count support of 110 or more nodes on a single bus.

Applications

Industrial Automation
Ideal for CANopen or DeviceNet networks where ground loops and high-voltage transients require robust galvanic isolation.
Solar Inverter Monitoring
Used to communicate diagnostic data from high-side power electronics to a grounded control board.
Electric Vehicle Charging Stations
Provides a safe communication interface between the high-voltage charging infrastructure and the vehicle's control system.

Key Specifications

Type Transceiver, Isolated
Protocol CANbus
Data Rate 1Mbps
Mounting Type Surface Mount
Package / Case 16-SOIC (0.295", 7.50mm Width)
Voltage - Supply 0.5V ~ 6V
Operating Temperature -40degC ~ 85degC
Supplier Device Package 16-SOIC
Number of Drivers/Receivers 1/1

Getting Started

Designers should ensure proper bypass capacitors are placed near the VDD and V+ pins as specified in the datasheet. When prototyping, verify that the logic side supply (VDD) is between 3V and 5.5V and that the bus side receives at least 11V at the V+ pin for the internal regulator to function.

Also Consider

MAX14878 Maxim Integrated - Provides 5 kV rms isolation and integrated ESD protection up to 35 kV, suitable for extremely harsh environments.