ABB 3HAC021591-006 | High-Performance Harneis Communication Drive & Controller for Robot Parts

This ABB 3HAC021591-006 harness communication drive/controller is specifically designed for robotic systems, ensuring seamless integration and high performance in industrial automation.

Description

Model Number:3HAC021591-006

Connector Type:RS485

Communication Protocol:MODBUS RTU

Power Supply Voltage:24V DC

Current Capacity:10A

Communication Distance:Up to 30m

Operating Temperature:-20°C to +60°C

IP Rating:IP20

Wiring Harness Length:30m

    The ABB 3HAC021591-006 is a state-of-the-art harness and communication drive controller tailored for 30-meter robotic applications, ensuring unparalleled performance and reliability in demanding industrial environments.

    Engineered with advanced communication protocols like EtherCAT and CANopen, this controller facilitates real-time data exchange, enabling seamless integration with a wide range of automation systems.

    Featuring a robust 3kW power rating, it is capable of driving large-scale robotic operations efficiently, supporting high-speed, high-precision movements essential for complex manufacturing tasks.

    Equipped with a 24V DC operating voltage and an IP65 protection class, the ABB 3HAC021591-006 is designed for durability against dust and water ingress, ensuring reliable operation in various industrial settings.

    Adaptable to a temperature range from -20°C to +60°C, this controller can withstand extreme conditions, making it suitable for a broad spectrum of industrial applications.

    Compact yet powerful, its dimensions and lightweight design (2.5kg) facilitate easy installation and integration, enhancing operational flexibility without compromising on functionality.

ABB 3HAC021591-006 Harn.-Comm.Drive/Ctrl 30m ROBOT PARTS

Reviews

There are no reviews yet.

Be the first to review “ABB 3HAC021591-006 | High-Performance Harneis Communication Drive & Controller for Robot Parts”

Your email address will not be published. Required fields are marked *