Woodward 8272-517 PM Motor Control Module, Industrial Automation
The Woodward 8272-517 PM Motor Control Module is an advanced, compact solution designed for precise motor control applications in industrial environments. It efficiently manages and monitors motors, ensuring optimal performance and energy efficiency.
Detailed content
Model Number:8272-517
Motor Control Technology:Permanent Magnet
Power Handling Capacity:Up to 100 kW
Control Mode:Variable Frequency Drive
Input Voltage Range:208V to 600V AC
Output Current Range:0A to 40A
Protection Class:IP54
Operating Temperature:-20°C to +50°C
Weight:10 kg
Dimensions:300mm x 200mm x 100mm
The Woodward 8272-517 PM Motor Control Module boasts advanced PWM technology, enabling precise and efficient motor control across a wide range of industrial applications. Its robust design ensures reliable operation under extreme conditions, making it suitable for environments with fluctuating temperatures and varying power demands.
Featuring support for vector, field-oriented, and sensorless control modes, this module offers unparalleled flexibility in managing motor loads, optimizing energy consumption, and enhancing system performance. Whether you’re dealing with heavy machinery or sensitive automation processes, the 8272-517 adapts seamlessly to meet your needs.
Equipped with an RS-485 Modbus communication interface, the module facilitates easy integration into existing control systems, allowing for seamless data exchange and remote monitoring. This feature is particularly valuable for maintenance and troubleshooting, enabling proactive management of your industrial operations.
With an operating temperature range of -40°C to +70°C and input voltage capability from 90V to 690V AC/DC, the Woodward 8272-517 is built to withstand harsh industrial environments. Its IP20 protection class ensures durability against dust and splashes, further extending its lifespan and reducing maintenance costs.
Each channel provides a maximum output current of 10A, making it capable of handling high-power loads efficiently. This capability is crucial for applications requiring substantial torque and speed adjustments, ensuring smooth and precise motor operation.