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Woodward 8440-2084 easYgen-3400XT-P1 Genset Controller

Woodward 8440-2084 easYgen-3400XT-P1 Genset Controller

The Woodward 8440-2084, also cataloged as the easYgen-3400XT-P1 Genset Controller, operates as a dedicated hardware component for advanced paralleling, load sharing, and engine protection within complex multi-generator automation networks. Designed...

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SKU: 8440-2084
Proveedora: Woodward

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Autenticidad y garantía

  • Garantía genuina: Suministramos únicamente piezas de automatización industrial 100% originales, nuevas y selladas de fábrica .
  • Cobertura total: cada componente está respaldado por una garantía integral de 12 meses a partir de la fecha de compra.
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The Woodward 8440-2084, also cataloged as the easYgen-3400XT-P1 Genset Controller, operates as a dedicated hardware component for advanced paralleling, load sharing, and engine protection within complex multi-generator automation networks. Designed without an integrated front display for rear panel mounting, the unit executes direct electrical measurement of 50 Vac to 650,000 Vac systems across a 40 Hz to 85 Hz frequency spectrum, interfacing with up to 32 generator controllers and 16 LS-5 circuit breakers across shared CAN bus links.

Hardware Specifications

Parameter Specification
Model 8440-2088 (easYgen-3400XT-P1)
Brand Woodward
Origin USA
Weight  2.5 kg
Dimensions 282 x 216 x 96 mm
Operating Temp -20 deg C to +70 deg C
Power Consumption 12/24 VDC nominal (8 to 40 VDC operating range)
CT Input Rating 1 A / 5 A secondary
Voltage Measurement 50 Vac to 650,000 Vac
Frequency Range 40 Hz to 85 Hz
Display None (remote panel/PC operated)
Mounting Rear panel-mounted
Enclosure Rating Metal housing, IP20 (IP54 with optional cover)

Actuator Loop Feedback Response & Dynamic Load Sharing

The Woodward 8440-2084 processes continuous current transformer (CT) inputs rated at 1 A or 5 A to evaluate real-time active and reactive power distribution across networked gensets. Internal processing loops dynamically calculate fuel governor and automatic voltage regulator (AVR) bias commands, optimizing actuator loop feedback response during synchronization, ramp loading, and bus decoupling operations to maintain grid frequency stability.

Frequently Asked Questions

Q: How is local parameter monitoring conducted given that the 8440-2084 lacks an integrated LCD screen?

A: Operator interface and monitoring are executed via external CAN-connected remote panels (such as the RP-3000XT) or directly through a PC utilizing Woodward ToolKit software over serial or USB communication ports.

Q: What power supply operating range is supported by the internal DC power stage?

A: The main board is rated for 12 VDC or 24 VDC nominal system power, accepting a wide continuous input window from 8 VDC to 40 VDC to withstand severe engine cranking voltage drops.

Q: How many networked units and circuit breakers can be synchronized in a single system loop?

A: The internal communications logic supports deterministic load-sharing parameters across a network topology containing up to 32 generators and up to 16 LS-5 circuit breaker control units.

Field Installation Guidelines

  • Mount the controller chassis securely to the back panel inside an industrial enclosure using all specified mounting points to maintain IP20 chassis ground continuity.
  • Verify that CT secondary wires (1 A or 5 A) are firmly landed and shorting blocks are open only after current loops are fully wired to prevent hazardous overvoltages.
  • Connect 12/24 VDC power leads using twisted pair conductors fused according to manual rating requirements.
  • Route CAN bus and network communications cabling using shielded twisted-pair wire, grounding the cable shield at one point only to avoid ground loop noise.
  • Ensure a minimum 5-turn thread engagement when securing terminal block and chassis mounting hardware.