8440-2152 Product datasheet
Model number: |
8440-2152 |
|
Module Type: |
Circuit Breaker Relay Module |
Manufacture: |
Woodward |
|
Condition: |
Brand New |
Range of Product: |
Woodward |
|
Lead time: |
In Stock |
Weight: |
0.38kg |
|
HS CODE: |
8537101190 |
Dimension: |
15.8x15.8x4cm |
|
MOQ: |
1 |
Product Origin: |
USA |
|
System: |
PLC |
Discontinued on: |
active |
|
Communication Service: |
Ethernet router |
8440-2052 Functional Description
The Woodward 8440-2152 Circuit Breaker Relay Module represents advanced turbine control technology, replacing traditional mechanical systems with superior digital precision. This microprocessor-based unit features real-time monitoring and adaptive adjustment capabilities, delivering ±0.1% speed regulation accuracy for critical turbine applications. The 8440-2152 Digital Speed Control Turbocharger operates across a wide 8-40VDC input range while maintaining low power consumption (<5W), making it suitable for both 12/24VDC industrial power systems. Its digital architecture enables rapid response to load changes, typically 3-5 times faster than analog alternatives.
Engineered for robust performance, the Circuit Breaker Relay Module 8440-2152 accommodates dual voltage configurations (69/120VAC rated, 86/150VAC max) through its intelligent power supply design. The control board integrates Woodward's proprietary LS-5 Series relay technology for fail-safe operation, with built-in protection against voltage spikes and electromagnetic interference. The unit's compact design houses advanced signal processing modules that continuously analyze turbine parameters including RPM, temperature, and vibration, automatically adjusting fuel/air ratios for optimal combustion efficiency.
At the core of the WOODWARD LS-511-5/P1 CONTROLLER 8440-2152 lies a sophisticated 32-bit processor running adaptive PID control algorithms. These digital protocols enable precise fuel metering and airflow management, achieving turbine response times under 50ms. The controller supports multiple communication protocols (Modbus, Profibus, CANopen) for seamless integration with SCADA systems and plant DCS networks. Field technicians appreciate the Woodward 8440-2152's intuitive interface, which simplifies parameter tuning while maintaining comprehensive system diagnostics.
The Synchronizer Controller 8440-2152 excels in demanding environments including power generation, oil & gas, and marine propulsion systems. Its MIL-SPEC rated components withstand extreme temperatures (-40°C to +85°C operational, -50°C to +100°C storage) and high-vibration conditions. The controller's modular design allows for easy field upgrades, while its predictive maintenance capabilities reduce downtime by 30-40% compared to conventional systems. Woodward's global support network ensures technical assistance for installation, calibration, and troubleshooting of these mission-critical turbine controls.
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Circuit Breaker Relay Module
The Circuit Breaker Relay Module is an advanced electromechanical device that combines the switching functionality of a relay with the protective features of a circuit breaker in a single compact unit. Designed for modern electrical systems, this hybrid module responds to low-voltage control signals (typically 5-24VDC) from PLCs or microcontrollers while simultaneously safeguarding circuits against overloads and short circuits through integrated thermal-magnetic trip mechanisms. Its unified design eliminates the need for separate components, reducing panel space requirements by up to 40% and minimizing wiring complexity in control panels. The module supports both manual reset and auto-reclosing configurations, with trip thresholds adjustable for specific application requirements. Common in industrial automation, renewable energy systems, and building management applications, it provides reliable contact isolation (up to 10kA breaking capacity) while maintaining precise switching performance (typically 10,000+ mechanical operations). The integrated LED status indicators and test buttons enhance maintenance efficiency, making this solution particularly valuable for space-constrained installations requiring both control flexibility and robust circuit protection.