Woodward 5464-8503 – Advanced Control Module for Industrial Applications
The Woodward 5464-8503 Industrial Control Module is a high-performance solution designed for critical industrial applications, offering precise control over various processes through its advanced analog outputs and bias signals.
Detailed content
Input Voltage Range:120-240VAC
Output Power Rating:300W
Operating Frequency:40-60Hz
Control Accuracy:+/- 0.1%
Response Time:Less than 10ms
Communication Interface:RS-485 Modbus
Ambient Temperature Range:-20°C to +50°C
Humidity Level:0% to 95% non-condensing
Safety Certification:CE, UL
The Woodward 5464-8503 precision control module is engineered to meet the stringent requirements of industrial automation environments, delivering unmatched performance and reliability. This module is designed to seamlessly integrate into a wide range of industrial systems, enhancing operational efficiency and productivity.
Featuring advanced electronic speed control technology, the 5464-8503 ensures precise control over machinery and processes, even under the most demanding conditions. Its robust design withstands harsh environmental factors, ensuring consistent operation throughout its lifecycle.
Equipped with an IP54 protection class, the module is protected against dust and light splashes, making it suitable for use in various industrial settings. The compact size and modular design facilitate easy installation and integration within existing systems, minimizing downtime and facilitating quick setup.
With a wide operating range from 0.1 Hz to 1500 Hz and a voltage rating of 380V AC at 50/60 Hz, the 5464-8503 is capable of handling diverse industrial applications, from low-speed operations to high-frequency control tasks. Its current rating of up to 500A ensures sufficient capacity for even the most power-intensive systems.
The inclusion of RS-485 Modbus RTU communication interface allows for seamless data exchange with other devices and systems, enhancing connectivity and enabling remote monitoring and control capabilities. This feature is particularly valuable in large-scale industrial complexes where centralized management is essential for optimal resource utilization.