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8EI8X8HWT10.0500-1

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The B&R Automation ACOPOS P3 servo drive, model 8EI8X8HWT10.0500-1, is engineered for superior efficiency and reliability in industrial automation, particularly in motion control applications. Operating from a 24 VDC supply voltage with a ~25% tolerance and an input capacitance of 5507 uF, this servo drive is built to handle demanding conditions.

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Product Description

The B&R Automation ACOPOS P3 servo drive, model 8EI8X8HWT10. 0500-1 is designed to provide a highly efficient and reliable solution for industrial automation. Specifically intended for motion control, the servo drive operates from a 24 VDC supply voltage with a tolerance of ~25% and has an input capacitance of 5507 uF.

The power requirements of the unit also include an extra 1. 2 A current for the motor holding brake. This model supports three motor connections, each with a continuous power output of 4 kW and a peak power output of 8. 8 Amperes of effective continuous current. It is capable of operating at different frequencies such as 5 kHz, 10 kHz, and 20 kHz with provisions for adjusting current continuously depending on the installation elevation and switching frequency. Security is not an issue in this model since it has overload protection, short circuit protection, and ground fault protection. It also has open circuit protection and under-voltage protection features to make it even more reliable. Communication is enhanced with a POWERLINK V2-controlled node that enables high data transfer rates of up to 100Mbit/s and supports long station-to-station line lengths.

The servo drive has digital multi-encoder interfaces that can be programmed, which is crucial in offering feedback and control in industrial processes. It also works optimally at a temperature of -25 degrees C to 55 degrees C and can be installed up to 4000 meters above sea level without affecting performance. Its mechanical design involves conformity to standards like EN 61800-5-1 and IEC TS 60034-25:2004 to enhance reliability and safety in various environments. The product is available at Wake Industrial with a one-year warranty period.

8EI8X8HWT10.0500-1 Technical Specifications

Supply Voltage: 24 VDC ~25%
Installation Elevation: Up to 4000 meters above sea level
Input Capacitance: 5507 uF
Motor Holding Brake Current: 1.2 A
Continuous Power Output per Connection: 4 kW
Peak Power Output per Connection: 8.8 A
Operating Frequencies: 5 kHz, 10 kHz, and 20 kHz
Communication Protocol: POWERLINK V2-controlled node
Data Transfer Rate: Up to 100 Mbit/s
Operating Temperature Range: -25 degrees C to 55 degrees C

Frequently Asked Questions about 8EI8X8HWT10.0500-1


Q: What environmental conditions can the 8EI8X8HWT10.0500-1 servo drive withstand?

A: It operates optimally within a temperature range of -25 degrees C to 55 degrees C and can be installed up to 4000 meters above sea level without performance degradation.

Q: How does the 8EI8X8HWT10.0500-1 handle communication and control?

A: The servo drive features a POWERLINK V2 controlled node for up to 100 Mbit/s data transfer rates and digital multi-encoder interfaces for precise feedback and control.

Q: What are the power and current capabilities of the 8EI8X8HWT10.0500-1 servo drive?

A: It supports three motor connections with 4 kW continuous and 8 kW peak power output, and 8 amperes of effective continuous current.

Q: What safety features does the 8EI8X8HWT10.0500-1 include?

A: It includes overload, short-circuit, ground fault, open circuit, and undervoltage protections, enhancing reliability and safety.

Q: What standards does the 8EI8X8HWT10.0500-1 servo drive conform to?

A: It conforms to EN 61800-5-1 and IEC TS 60034-25:2004 standards, ensuring compliance with rigorous international safety and operational standards.

Internal Product Review

  • ‘‘The ACOPOS P3 servo drive, model 8EI8X8HWT10.0500-1, from B&R Automation is a standout solution for those in need of reliable and precise motion control in industrial settings. Its ability to manage significant power outputs and maintain stability under various electrical conditions makes it an essential tool for enhancing operational efficiency. ’’

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