WOODWARD 9905-463: Industrial Grade Speed Control Module
Product Type:Speed Control Module
Model Number:9905-463
Brand:WOODWARD
Weight:0.5 kg
Input Voltage Range:90V to 264V AC
Output Frequency:0 to 50 Hz
Operating Temperature:-20°C to +50°C
Power Consumption:Less than 10W
Communication Interface:RS-485
The WOODWARD 9905-463 Speed Control Module is engineered with cutting-edge technology to deliver unparalleled precision and reliability in industrial speed control applications. This module is built for robust performance under challenging conditions, offering a comprehensive suite of features tailored to meet the needs of modern manufacturing and automation processes.
Equipped with advanced analog outputs and bias signals, the module ensures automatic voltage matching, frequency and phase synchronization, minimizing interference and maximizing efficiency. Its RMS voltage sensor further enhances the module's capability to handle harmonic loads with ease, providing consistent and accurate speed control.
Designed with user convenience in mind, the 9905-463 boasts a front-facing LED lit synchroscope display, facilitating easy commissioning and real-time monitoring without the need for additional equipment. This feature ensures quick setup and streamlined maintenance operations, saving time and resources for operators and maintenance personnel.
Crafted from high-quality materials and adhering to strict industry standards, the module guarantees durability and long service life, even in harsh industrial environments. The IP54 protection class ensures dust and water resistance, allowing for installation in various locations without compromising functionality.
Featuring versatile communication interfaces such as RS-485, the WOODWARD 9905-463 seamlessly integrates with existing systems and protocols, enhancing compatibility and interoperability within complex industrial setups. With its robust input/output channels, this module can manage multiple devices and processes efficiently, streamlining operational workflows and improving overall system performance.