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The Woodward 8200-182 Turbine Driver Module is a turbine-control component used in industrial prime-mover systems where electronic commands need to be converted into an appropriate control response for turbine operation.
In a typical turbine installation, the control system monitors operating conditions such as speed and load, then determines the required actuator response. The turbine driver forms part of the interface between this control logic and the turbine’s actuator or related control mechanism.
This type of module is particularly relevant to turbine-driven equipment where changes in load require corresponding adjustments to turbine operation. For example, a turbine driving a generator or compressor may need continuous control action as the operating load changes.
From a maintenance perspective, the 8200-182 should be evaluated together with its controller, sensing circuits, actuator, wiring, and turbine mechanics. A problem in any of these areas can produce symptoms that appear to originate from the driver module.
| Parameter | Details |
|---|---|
| Manufacturer | Woodward |
| Model | 8200-182 |
| Product Type | Turbine Driver Module |
| Main Function | Turbine Control / Actuator Interface |
| System Role | Turbine Control Component |
| Control Type | Electronic Control |
| Application | Industrial Turbine Control |
| Typical Use | Turbine Actuator and Operating Control |
| Dimensions | 200 × 150 × 75 mm |
| Weight | 0.8 kg |
The 8200-182 is used as part of an electronic turbine-control arrangement where the control system needs to communicate with turbine-side control equipment.
Key characteristics include:
The actual installation should be evaluated according to the turbine model, actuator arrangement, controller, and associated feedback system.
A typical control path can be represented as:
Turbine Controller → 8200-182 → Turbine Actuator → Turbine → Feedback
The turbine controller determines the required operating response based on the current operating condition. The command is passed to the driver, which forms part of the electrical control interface for the turbine actuator.
The actuator then changes the relevant turbine control mechanism. Depending on the turbine system, this may influence the amount of energy entering the turbine or another parameter affecting turbine output.
Feedback from speed or other operating sensors allows the control system to determine whether the turbine is responding as expected.
For example, when the load on a generator-driven turbine increases, the turbine may begin to slow. The control system detects the change and adjusts the actuator command to bring the turbine back toward the required operating condition.
This is why troubleshooting should follow the complete control path rather than focusing only on the driver module.
The 8200-182 is applicable to industrial equipment that uses turbine-based prime movers and electronic control systems.
| Application | Typical Use |
|---|---|
| Power Generation | Turbine operating and actuator control |
| Industrial Turbines | Speed and operating-condition management |
| Compressor Trains | Turbine-driven compressor control |
| Mechanical Drive Systems | Turbine output regulation |
| Process Plants | Turbine-driven process equipment |
| Energy Systems | Prime-mover control |
| Turbine-Driven Pumps | Controlled turbine operation |
| Industrial Machinery | Turbine actuator interface |
The appropriate application depends on the turbine architecture and the associated controller and actuator equipment.
The 8200-182 is normally integrated into a larger turbine-control system.
| Component | Function |
|---|---|
| 8200-182 | Turbine driver and control interface |
| Turbine Controller | Generates operating commands |
| Turbine Actuator | Converts the control command into mechanical movement |
| Speed Sensor | Measures turbine speed |
| Position Feedback Device | Monitors actuator or control-element position |
| Turbine | Produces mechanical power |
| Generator | Converts mechanical power to electrical output where applicable |
| Control Wiring | Carries control and power signals |
| Monitoring Equipment | Tracks turbine operating conditions |
| Protection System | Provides applicable turbine protection functions |
The driver should be matched with the appropriate actuator, controller, feedback arrangement, and turbine application.
Installation and replacement work should be carried out with the complete turbine-control circuit in mind. Before removing an existing module, document the wiring arrangement and identify the connected controller and actuator circuits.
Recommended checks include:
If the turbine fails to respond correctly, check the command signal entering the driver and the response leaving the driver before concluding that the module has failed. The actuator, sensor, wiring, and turbine itself should also be considered.
For the 8200-182, related components should be selected according to the turbine-control architecture and the requirements of the connected actuator.
| Model / Component | Type | Primary Function | Application |
|---|---|---|---|
| Woodward 8200-182 | Turbine Driver Module | Turbine actuator/control interface | Industrial turbine systems |
| Woodward 8200 Series Control Modules | Control Hardware | Electronic turbine and prime-mover control | Industrial control systems |
| Woodward Turbine Actuators | Actuator | Mechanical turbine control | Turbine installations |
| Woodward Speed Sensors | Sensing Device | Turbine speed feedback | Turbine control loops |
| Turbine Control Systems | Control System | Turbine operating management | Power generation and industry |
| Turbine Protection Equipment | Protection Hardware | Turbine protection and monitoring | Industrial turbine systems |
When selecting a replacement, verify the exact model, turbine application, actuator type, controller interface, feedback configuration, and wiring arrangement. A similar enclosure or mounting size does not establish functional compatibility.
The 8200-182 functions as a turbine driver module within the control path between the turbine control system and associated actuator equipment. Its role is related to carrying out the required turbine control response.
Possible areas include the actuator, control wiring, feedback circuit, mechanical linkage, or turbine operating condition. The driver input and output should be checked before identifying the module as the source of the problem.
The control signal should be traced from the controller through the driver and into the actuator circuit. At the same time, speed feedback and actuator response should be checked to determine where the control loop stops behaving as expected.
The complete part number, turbine application, actuator arrangement, controller interface, feedback system, wiring, and existing configuration should be verified. These factors are more important than matching the physical dimensions alone.