Keterangan
The Woodward 5462-744 is a dedicated I/O module designed for integration within the MicroNet control system architecture. This module serves as a critical interface component, facilitating the processing of digital input signals and the generation of precise analog control signals for industrial automation applications.
Features
- Designed specifically for the Woodward MicroNet platform.
- Equipped with 16 discrete digital inputs rated for 24 V dc operation.
- Provides 2 isolated 4–20 mA analog outputs for actuator or process control.
- Optimized for low power consumption with a typical draw of 6 W.
- Robust construction suitable for standard industrial control cabinet environments.
Technical Specifications
| Model Number |
5462-744 |
| Manufacturer |
Woodward |
| Supply Voltage |
24 V dc |
| Power Consumption |
6 W (typical) |
| Digital Inputs |
16 x 24 V dc |
| Analog Outputs |
2 x 4–20 mA |
| Operating Temperature |
0 degC to +60 degC |
| Storage Temperature |
-40 degC to +85 degC |
| Relative Humidity |
5% to 95% (non-condensing) |
Installation Guidelines
- Ensure the MicroNet rack is powered down before inserting or removing the 5462-744 module to prevent electrical damage.
- Verify that the 24 V dc power supply meets the module's voltage requirements and is properly grounded.
- Use shielded cabling for all analog output signals to minimize electromagnetic interference (EMI) in high-noise industrial environments.
- Maintain adequate clearance around the module to allow for proper heat dissipation and airflow.
- Handle the module using standard ESD (electrostatic discharge) precautions to protect sensitive internal circuitry.
FAQ
Is the Woodward 5462-744 compatible with other MicroNet modules?
Yes, this module is designed for use within the Woodward MicroNet system. Please ensure your specific control configuration supports the I/O mapping for this part number.
What is the typical power consumption for this unit?
The module is highly efficient, with a typical power consumption of 6 W during standard operation.