Welcome to the Industrial Automation website!

NameDescriptionContent
HONG  KANG
E-mail  
Password  
  
Forgot password?
  Register
当前位置:

Woodward EM-80/EM-300 Electric Actuator Specification Guide

来源: | 作者:FAN | 发布时间 :2026-01-23 | 21 次浏览: | Share:

Comprehensive Technical Specification and Application Guide for Woodward EM-80/EM-300 Electric Actuator Systems

Executive Summary

In the evolving landscape of industrial power generation and propulsion, the shift from hydraulic and mechanical actuation to high-performance electric actuation is driven by the need for precision, reduced environmental impact, and lower maintenance overhead. The Woodward EM-80 and EM-300 all-electric actuator systems represent the pinnacle of this technology, designed to deliver precision, high-torque rotary positioning without relying on mechanical drives or hydraulic oil supplies. These systems are specifically engineered for controlling engine fuel racks in large diesel and gas engines, though their versatility allows for application on various turbine types for controlling fuel valves, variable geometry turbochargers, and handling timing control.

This guide provides an in-depth analysis of the product specifications for the EM-80/EM-300 MDS 5150A/LIT Actuator System. It details the operational characteristics, mechanical constraints, and environmental ratings that engineers must consider when integrating these actuators into critical control loops. By understanding the nuances of the EM-80 versus the EM-300 models, system integrators can optimize for either rapid response (slew rate) or high torque output depending on the specific demands of the prime mover.


System Architecture and Core Components

The EM-80/EM-300 system is defined by its integration of three core technologies: a high-performance motor, a precision reduction gearbox, and a dedicated driver unit. The architecture is designed to eliminate the “compliance” and “maintenance issues” often associated with hydraulic linkages while providing a stiffer, more responsive control interface.

1. The Electric Motor

At the heart of the system lies a three-phase brushless AC motor. Unlike brushed motors, the brushless design eliminates physical wear associated with carbon brushes, significantly extending service life and reducing maintenance intervals. The motor provides the rotational energy that is necessary to drive the load, characterized by high efficiency and the ability to maintain performance across a range of operating temperatures. The brushless nature also contributes to the overall cleanliness of the system, avoiding the carbon dust and arc-associated degradation found in brushed alternatives.

2. Precision Planetary Gearbox

To translate the high-speed, low-torque rotation of the motor into the high-torque, low-speed rotation required at the fuel rack, the system employs a high-precision planetary reduction gear box. This gearbox is selected for its high stiffness and low backlash characteristics. High stiffness is critical in governor applications; it ensures that the actuator responds immediately to the driver’s command without elastic deformation that could lead to oscillation or “hunting” in the engine’s RPM. Low backlash is equally important, as it provides a deadband-free response, ensuring that small control signals from the governor result in immediate physical movement of the fuel rack.

3. The Driver Unit

The EM driver acts as the central control unit, housing both the power board and the controller logic within a single enclosure. This digital controller is fully programmable, allowing it to accommodate custom application requirements. The driver manages the current supplied to the motor, effectively controlling the torque output and position with high fidelity. It serves as the interface between the external control system (typically an Engine Control Unit or Governor) and the physical actuator.


Detailed Product Specifications

Understanding the quantitative capabilities of the EM-80 and EM-300 is essential for selecting the correct unit for a given application. The specifications are split between General Specs, Actuator Specs, and Driver Specs.

General Specifications: EM-80 vs. EM-300

The primary distinction between the two models lies in the trade-off between speed and torque.

1. Nominal Torque Output (Continuous)
Torque is the rotational force applied by the actuator. For continuous operation (sustained load holding or movement over time), the EM-80 is rated for 91 N·m (67 lb-ft), while the larger EM-300 provides significantly higher output at 260 N·m (192 lb-ft).

  • *Implication:* The EM-300 is suited for engines with stiff fuel linkages or high-friction racks where substantial force is required to move the rack, whereas the EM-80 is sufficient for smaller bore engines or systems with lighter loads.

2. Maximum Torque Output (1 second max)
This rating defines the peak force available for short durations, typically used during rapid acceleration of the rack. The EM-80 can deliver 190 N·m (140 lb-ft) for a maximum of one second. The EM-300 provides a massive peak of 429 N·m (316 lb-ft).

  • *Implication:* The 1-second rating allows the actuator to overcome stiction or static friction during startup. The EM-300’s high peak torque is crucial for breaking away stiff fuel linkages in cold conditions.

3. Work Output (Energy)
Work is defined as torque over a specific distance (rotation).

  • TRICONEX 2483- Analog Output HART Base Board Kit
  • TRICONEX 2481- Analog Output Base Board Kit
  • TRICONEX 2480A - Hazardous Area Analog Output Base Board Kit
  • TRICONEX 2451- Solid State Relay Output Base Board Kit
  • TRICONEX 2402A - Hazardous Area Digital Output Basic Board Kit
  • TRICONEX 2402- High Voltage Digital Output Base Board Kit
  • TRICONEX 2401L - Low Current Digital Output Base Board Kit
  • TRICONEX 2401- Digital Output Base Board Kit
  • TRICONEX 2381 Pulse Input Base Board Kit
  • TRICONEX 2361- Analog/Digital Input Base Board Kit
  • TRICONEX 3700 TMR Analog Input Module
  • TRICONEX 9771-210F Termination Panel Assembly
  • TRICONEX MP3009 Processor Module
  • TRICONEX AO3482 Analog Output Module
  • TRICONEX D28799‑005 Power Interface Module
  • TRICONEX DI3361 Digital Input Module TMR
  • TRICONEX AT-2701FX 843-000844-00 REVD Industrial Ethernet Network Card
  • TRICONEX AI2361 7400210-020 Safety System Module
  • TRICONEX RO3451 Digital Output Module Relay
  • TRICONEX 4351A Industrial Communication Module
  • TRICONEX AI3351 Analog Input Module
  • TRICONEX 4000093-320 Safety Controller Module
  • TRICONEX AI2361 Analog Input Module
  • TRICONEX 2071H 7400313-100 Dual Power Module
  • TRICONEX T8800C PD8800 PCB130100 Module
  • TRICONEX 4000093-316 Power Supply Module
  • TRICONEX 4000094-313 Industrial Safety Control Module
  • TRICONEX 4000093-306 Termination Panel Module
  • TRICONEX 4000103-513 Safety System Module
  • TRICONEX 3700A Safety System Module
  • TRICONEX 4351B Communication Module
  • TRICONEX 4000066-025 Communication Interface Module
  • TRICONEX 4000066-025 9000011-000 Interface Cable
  • TRICONEX 8112 RXM Rack Remote Expansion Module for Tricon System
  • TRICONEX 4000093-145 Industrial Cable Components
  • TRICONEX 4352B Analog Input Module
  • TRICONEX 4000093-110N System Module
  • TRICONEX 3501TN2 Termination Module
  • TRICONEX 4352AN Analog Input Module
  • TRICONEX 3806E High Density Output Module
  • TRICONEX 3008N Enhanced Main Processor Module
  • TRICONEX 3503E Digital Input Module
  • TRICONEX TCM 4355X Communication Module
  • TRICONEX MP3009X / TCM 4355X Main Processor Module
  • TRICONEX PLM 3900N Power Line Monitor
  • TRICONEX DI 3506X Digital Input Module
  • TRICONEX IMSS 4701X Safety System Module
  • TRICONEX 7400212-100 TMR Power Distribution
  • TRICONEX 2000418 Network Management Module
  • TRICONEX 2000417 TMR Communication Interface
  • TRICONEX 3625C1 Output Module
  • TRICONEX TM11-5L-88 Terminal Module
  • TRICONEX 09031647921 System Module
  • TRICONEX JWA600-24 Industrial Power Supply
  • TRICONEX 9753-1 Digital Output Module
  • TRICONEX 3708EN Controller Module
  • TRICONEX 0903-164-7921 I/O Module
  • TRICONEX 0923-141-6957 Safety System Module
  • TRICONEX 1600071-001 System Accessory Module
  • TRICONEX 2402 Digital Input Module
  • TRICONEX 4000056-002 I/O Interface Module
  • TRICONEX 7400213-100 Power Module
  • TRICONEX HCU3700/3703E Communication Unit
  • TRICONEX 43542560 Triple Modular Redundant Module
  • TRICONEX 3664 I/O Module
  • WEIDMULLER 8560740000 Power Supply Unit
  • WEIDMULLER V23057-B3028-A101 Power Relay Technical Specs
  • WEIDMULLER 915917/67 Interface Relay Module
  • WEIDMULLER 8690880000 Power Supply Unit
  • WEIDMULLER 8540180000 Interface Module
  • WEIDMULLER 8607360000 VAK RS 403 3-Way Isolator
  • WEIDMULLER 8533640000 Power Supply
  • WEIDMULLER 844495000 Interface Module
  • WEIDMULLER 7940005785 Signal Converter Technical Guide
  • Weidmuller 836598 Terminal Block
  • Weidmuller 7940005785 Signal Converter Technical Guide
  • WEIDMULLER 7901620000 Interface Module
  • WEIDMULLER 0302860000 Terminal Block
  • WESTINGHOUSE 5X00167G01 Control Module
  • Westinghouse 1C31238H01 Ovation Relay Output Module
  • Westinghouse 5X00321G01 PLC Processor Module
  • WESTINGHOUSE 1C31234G01 I/O Module
  • Westinghouse 1C31233G04 Ovation Digital Input Module
  • WESTINGHOUSE 1C31224G01 I/O Module
  • Westinghouse 1C31227G01 Ovation Analog Input Module
  • Westinghouse 1C31132G01 Signal Conditioning Module
  • Westinghouse 1C31127G01 Analog Input Module
  • WESTINGHOUSE 1C31125G02 I/O Module
  • WESTINGHOUSE 1C31116G04 Analog Input Module
  • Westinghouse 1B30023H01 Ovation Power Supply Module
  • WESTINGHOUSE 1C31179G01 I/O Module
  • Westinghouse KL4503X1-BA1 Automation Controller
  • Westinghouse 5X00453G01 Ovation Analog Output Module
  • WESTINGHOUSE KL4502X1-FA1 Control Module
  • Westinghouse 1C31222G01 Signal Conditioner
  • Westinghouse 1C31132G02 Ovation Valve Positioner Module
  • WESTINGHOUSE 5X00109G02 Control Module
  • Westinghouse 5X00241G04 PLC Interface Module
  • Westinghouse 5X00070G03 PLC System Module
  • Westinghouse 5X00226G04 Ovation Controller Module
  • WESTINGHOUSE 1C31107G01 Analog Input Module
  • WESTINGHOUSE 1C31201G01 PLC Module
  • WESTINGHOUSE 5X00226G01 Ovation Analog Output
  • Westinghouse 5X00501G01 Automation Controller Module
  • Westinghouse 1C31233G02 Signal Conditioning Module
  • WESTINGHOUSE 5X00357G03 PLC Module
  • WESTINGHOUSE 5X00301G01 Ovation Module
  • Westinghouse 5X00300G02 Industrial Controller
  • WESTINGHOUSE 5X00481G04 PLC Module
  • WESTINGHOUSE 5X00499G01 Ovation Module
  • Westinghouse 5X00583G01 Control Module
  • WESTINGHOUSE 5X00497G01 PLC Module
  • WESTINGHOUSE 1C31233G01 Ovation Module
  • WESTINGHOUSE 4D33900G19 Industrial Control Module
  • Westinghouse 5X00225G01 Controller Base Rack for Industrial Automation
  • WESTINGHOUSE 5A26304G02 Ovation I/O Module
  • WESTINGHOUSE 5X00070G01 Ovation Module
  • Westinghouse 5X00605G01 Control Module
  • WESTINGHOUSE 5X00241G02 Ovation System Communication Module
  • WESTINGHOUSE 5X00226G03 Ovation Module
  • Westinghouse ZX345Q Control System
  • WESTINGHOUSE ST24B3 Temperature Transmitter
  • WESTINGHOUSE AID-1 Industrial Keyboard
  • Westinghouse 5X00241G01 Control Module
  • WESTINGHOUSE 5X00226G02 Ovation Controller Base Module
  • WESTINGHOUSE 5X00119G01 Ovation Module
  • Westinghouse 5X00105G14 Control Module
  • WESTINGHOUSE 5X00105G01 Ovation System Base Module