Model Number:5464-414 REV E
Type:Digital Speed Sensor Module
Brand:WOODWARD
Revision:REV E
Weight:0.8 kg
Sensor Technology:High-precision digital
Operating Range:20 Hz to 2 kHz
Accuracy:+/- 0.2% of full scale
Environmental Conditions:IP67 rated for dust and water resistance
Power Supply:12-36 VDC
Output:4-20 mA current loop
Engineered with precision, the WOODWARD 5464-414 REV E module offers unparalleled accuracy and reliability in monitoring and controlling the speed of rotating machinery across various industries. This digital speed sensor module is designed to integrate seamlessly into complex industrial automation setups, providing real-time feedback on motor speeds for enhanced efficiency and operational control.
Featuring a high-resolution sensor capable of measuring speeds with an accuracy of ±0.1% Full Scale, the module ensures that even slight changes in rotational speeds are detected, making it ideal for applications requiring precise control over motor performance. Its robust design withstands harsh environmental conditions, ensuring consistent performance in extreme temperatures ranging from -40°C to +70°C.
With its advanced communication interface, the WOODWARD 5464-414 REV E supports RS-485 Modbus RTU protocol, facilitating easy integration with existing control systems. This feature allows for seamless data exchange between the module and various automation systems, enhancing overall system interoperability.
To further enhance its utility, the module comes equipped with eight input channels for connecting various sensors and four output channels for controlling actuators. This versatile configuration enables users to customize their setup according to specific application requirements, providing flexibility and adaptability.
Compliance with international safety standards such as CE and UL ensures that the WOODWARD 5464-414 REV E meets stringent quality and safety regulations. Its separate power supply requirement helps prevent potential issues related to power fluctuations, ensuring stable operation and reducing the risk of downtime.
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