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Woodward EASYGEN-3500XT-P1 8440-2082
Woodward EASYGEN-3500XT-P1 8440-2082
Woodward EASYGEN-3500XT-P1 8440-2082
Woodward EASYGEN-3500XT-P1 8440-2082
Woodward EASYGEN-3500XT-P1 8440-2082
Woodward EASYGEN-3500XT-P1 8440-2082
· Product image is representative; revision or series may vary. Contact us to request a specific version.

EASYGEN-3500XT-P1 8440-2082

OPERATOR INTERFACE PANEL
In Stock

Product Information:

easYgen-3000 series

one of the few easYgen-3200XT-P1

models and comes in a display

without a display. The 8440-2082 is

offered in a metal-housed unit

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Technical specifications for EASYGEN-3500XT-P1 8440-2082

  • Manufacturer:
    Woodward
  • Product Category:
    HMI
  • Spare Part Number:
    8440-2082
  • Estimated shipping dimensions:
    19x16.7x4.7cm
  • Weight:
    0.8 kg
  • Tariff Code:
    8537101190
  • Country of origin:
    USA
  • Place of shipment:
    Xiamen, Fujian, China
  • Category Series:
    easYgen-3000 Series
  • Product Type:
    PANEL
  • Input Range:
    12/24 Vdc ( 8 to 40 Vdc)
  • Max. power consumption per path:
    < 0.15 W
  • Primary Setting Range:
    0.5 - 99,999.9 kW/kvar
  • Operating Temperature:
    0°C to +50°C
  • Humidity:
    10-90% RH non-condensing
  • Stock:
    30

Information

Overview Manuals Principle Primary Applications

Features:

  • EasYgen-3000 series OPERATOR INTERFACE PANEL
  • One of the few easYgen-3200XT-P1 models and comes in a display without a display
  • Reliable Control for Complex Power Systems
Its key functions include automatic start-stop control, voltage and frequency regulation, and real-time monitoring of critical engine and electrical parameters. The EASYGEN-3500XT-P1 8440-2082 ensures safe, reliable, and efficient generator set operation while minimizing human intervention by continuously tracking operating data such as AC voltage, current, frequency, engine speed, oil pressure, and coolant temperature.

It supports automatic synchronization, load balancing, and event-driven protection measures to prevent overcurrent, reverse power, or system instability. This controller also integrates advanced alarm logging, fault diagnosis, and communication interfaces such as Modbus RTU or an optional Ethernet interface, enabling integration with SCADA systems and remote monitoring platforms to enhance operational visibility and predictive maintenance.

The EASYGEN-3500XT-P1 8440-2082 Woodward OPERATOR INTERFACE PANEL may still be available for purchase and support from Moore Automated Company beyond End-Of-Life (EOL) by the manufacturer (OEM).
Woodward EASYGEN-3500XT-P1 8440-2082 OPERATOR INTERFACE MODULE datasheet(manual), Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.
Field sensors and transmitters feed analog and digital signals representing electrical and mechanical parameters into the controller. The internal microprocessor processes this data, compares it with configured thresholds or control algorithms, and generates output signals to control the generator starter, fuel system, excitation, and protection relays. This closed-loop system ensures precise regulation of voltage, frequency, and load distribution while performing automatic protection actions and providing real-time status information to the operator or monitoring system.
Complex Parallel Operation: Designed for multi-circuit breaker applications, supporting up to 32 generators connected across 32 different bus sections.
 
Power Management: For grid parallel operation, including peak shaving, inlet/outlet control, and emergency backup power for critical facilities such as data centers.
 
Remote Synchronization: Integrates with LS-5 or LS-6XT smart synchronizers to manage complex distribution systems with multiple utility grid feeders and tie circuit breakers.
 
Harsh Environments: Designed for operation at altitudes up to 4000 meters without derating and supports direct connection to systems up to 690 VAC.

Ask our team:

  • What primary operational function does the EASYGEN-3500XT-P1 8440-2082 serve in modern genset control systems? The Deep Sea EASYGEN-3500XT-P1 8440-2082 functions as an advanced digital controller for diesel or gas generator sets, providing comprehensive monitoring, automatic control, and protection for generator operation in industrial and standby power applications. 2. How does the EASYGEN-3500XT-P1 8440-2082 enable precision synchronization and load sharing among multiple generator sets? The EASYGEN-3500XT-P1 8440-2082 incorporates sophisticated load-sharing algorithms and automatic synchronization routines, allowing multiple gensets to operate in parallel with stable voltage, frequency, and active/reactive power distribution. 3. Which protection and diagnostic functionalities are integrated into the EASYGEN-3500XT-P1 8440-2082 to safeguard generator operation? The EASYGEN-3500XT-P1 8440-2082 provides over/under voltage, over/under frequency, overcurrent, short-circuit, reverse power, and engine fault detection. It also logs alarms and operational events, enabling predictive maintenance and rapid fault resolution. 4. Why is the EASYGEN-3500XT-P1 8440-2082 regarded as essential for automated standby and prime power generation applications? By combining automatic start/stop control, real-time monitoring, and event-driven logic, the EASYGEN-3500XT-P1 8440-2082 ensures continuous, reliable power supply under varying load conditions, minimizing downtime and manual intervention. 5. How does the EASYGEN-3500XT-P1 8440-2082 facilitate remote monitoring and SCADA integration in distributed power systems? The EASYGEN-3500XT-P1 8440-2082 supports multiple communication interfaces such as RS-485, Modbus RTU, and optional Ethernet, allowing remote monitoring, data acquisition, and control from supervisory systems and industrial SCADA networks. 6. What configurable parameters does the EASYGEN-3500XT-P1 8440-2082 provide for fine-tuning generator performance? The EASYGEN-3500XT-P1 8440-2082 allows engineers to configure parameters such as engine speed droop, voltage regulation setpoints, phase sequence, fuel pump control, and start/stop delay timers to optimize generator performance for specific applications. 7. How does the EASYGEN-3500XT-P1 8440-2082 enhance operational reliability in challenging environmental conditions? The EASYGEN-3500XT-P1 8440-2082 is designed with rugged industrial-grade electronics, high-temperature tolerance, and vibration-resistant mounting, ensuring continuous operation in harsh environments such as power plants, offshore platforms, and remote installations. 8. Which operational feedback and measurement parameters are monitored by the EASYGEN-3500XT-P1 8440-2082? The EASYGEN-3500XT-P1 8440-2082 continuously monitors parameters including AC voltage, AC current, frequency, engine speed, oil pressure, coolant temperature, fuel level, and battery voltage, providing comprehensive situational awareness of the genset system. 9. How does the EASYGEN-3500XT-P1 8440-2082 support automatic engine start and stop sequences based on load demand? The EASYGEN-3500XT-P1 8440-2082 employs intelligent load sensing and programmable logic to initiate engine start sequences during power demand events and perform controlled stop sequences when the load decreases or during scheduled shutdowns.
    The EASYGEN-3500XT-P1 8440-2082 incorporates sophisticated load-sharing algorithms and automatic synchronization routines, allowing multiple gensets to operate in parallel with stable voltage, frequency, and active/reactive power distribution.
  • Which protection and diagnostic functionalities are integrated into the EASYGEN-3500XT-P1 8440-2082 to safeguard generator operation?
    The EASYGEN-3500XT-P1 8440-2082 provides over/under voltage, over/under frequency, overcurrent, short-circuit, reverse power, and engine fault detection. It also logs alarms and operational events, enabling predictive maintenance and rapid fault resolution.
  • Why is the EASYGEN-3500XT-P1 8440-2082 regarded as essential for automated standby and prime power generation applications?
    By combining automatic start/stop control, real-time monitoring, and event-driven logic, the EASYGEN-3500XT-P1 8440-2082 ensures continuous, reliable power supply under varying load conditions, minimizing downtime and manual intervention.
  • How does the EASYGEN-3500XT-P1 8440-2082 facilitate remote monitoring and SCADA integration in distributed power systems?
    The EASYGEN-3500XT-P1 8440-2082 supports multiple communication interfaces such as RS-485, Modbus RTU, and optional Ethernet, allowing remote monitoring, data acquisition, and control from supervisory systems and industrial SCADA networks.
  • What configurable parameters does the EASYGEN-3500XT-P1 8440-2082 provide for fine-tuning generator performance?
    The EASYGEN-3500XT-P1 8440-2082 allows engineers to configure parameters such as engine speed droop, voltage regulation setpoints, phase sequence, fuel pump control, and start/stop delay timers to optimize generator performance for specific applications.
  • Which operational feedback and measurement parameters are monitored by the EASYGEN-3500XT-P1 8440-2082?
    The EASYGEN-3500XT-P1 8440-2082 continuously monitors parameters including AC voltage, AC current, frequency, engine speed, oil pressure, coolant temperature, fuel level, and battery voltage, providing comprehensive situational awareness of the genset system.
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Moore Disclaimer: Moore Automated's sales automation equipment and related solutions are intended for industrial automation and business operational efficiency improvement purposes only. Product information, technical parameters, and application cases are for reference only and do not constitute an absolute guarantee of performance for any specific industry, scenario, or final application. Actual equipment performance may vary depending on factors such as the usage environment, system integration method, and maintenance conditions. Users should confirm compatibility and safety based on professional technical assessments. Moore Automated assumes no liability for any direct or indirect losses caused by improper use, modification, or failure to operate according to specifications, to the extent permitted by law.