Woodward|8290-191| Electrically Powered Governor
8290-191: Woodward EPG (Electrically Powered Governor) Actuator
Description
The 8290-191 is a high-performance actuator designed for use with Woodward's Electrically Powered Governor (EPG) systems. It provides precise and reliable control of fuel or throttle positions in reciprocating engines and turbines. The actuator ensures optimal engine performance by accurately responding to speed control signals, making it suitable for a wide range of industrial applications, including power generation, marine, and oil and gas industries.
Features
- Precise position control.
- Fast response time.
- Compact and robust design.
- Suitable for both 12V and 24V systems.
- Integrated safety features for reliable operation.
- Easy installation and maintenance.
Technical Specifications
- Supply Voltage: 12 VDC or 24 VDC
- Power Consumption: < 3 A (24 VDC), < 4 A (12 VDC)
- Operating Temperature: -40°C to +75°C
-
Actuator Rotation:
- 30° for 512/524 models.
- 35° for 1712/1724 models.
-
Torque:
- Maximum torque: 10 Nm at 24 VDC.
- Minimum torque: 5 Nm at 12 VDC.
-
Internal Springs:
- Two preloaded return springs for 1712/1724 models.
- One preloaded return spring for 512/524 models.
-
Actuator Current:
- Maximum current: 400 mA (continuous).
- Peak current: 2 A (for initial movement).
- Response Time: < 100 ms from input signal to full actuation.
-
Dimensions:
- Length: 200 mm.
- Diameter: 60 mm.
- Weight: 1.2 kg.
-
Communication:
- Integrated speed control interface.
- Protection Rating: IP65, suitable for harsh environments.
- Certification: UL/cUL Listed, EU Directive compliant.
-
Mounting Options:
- Standard mounting hardware included.
- Custom installation kits available for specific engines.
-
Linkage Compatibility:
- Compatible with various mechanical linkages for fuel control.
-
Environmental Robustness:
- Designed to operate reliably in harsh industrial environments.
-
Safety Features:
- Built-in failsafe mechanism to prevent over-speed conditions.
- Energy limiter to prevent overheating and excessive current flow.
Woodward|8290-191| Electrically Powered Governor
Woodward|8290-191| Electrically Powered Governor
8290-191: Woodward EPG (Electrically Powered Governor) Actuator
Description
The 8290-191 is a high-performance actuator designed for use with Woodward's Electrically Powered Governor (EPG) systems. It provides precise and reliable control of fuel or throttle positions in reciprocating engines and turbines. The actuator ensures optimal engine performance by accurately responding to speed control signals, making it suitable for a wide range of industrial applications, including power generation, marine, and oil and gas industries.
Features
- Precise position control.
- Fast response time.
- Compact and robust design.
- Suitable for both 12V and 24V systems.
- Integrated safety features for reliable operation.
- Easy installation and maintenance.
Technical Specifications
- Supply Voltage: 12 VDC or 24 VDC
- Power Consumption: < 3 A (24 VDC), < 4 A (12 VDC)
- Operating Temperature: -40°C to +75°C
-
Actuator Rotation:
- 30° for 512/524 models.
- 35° for 1712/1724 models.
-
Torque:
- Maximum torque: 10 Nm at 24 VDC.
- Minimum torque: 5 Nm at 12 VDC.
-
Internal Springs:
- Two preloaded return springs for 1712/1724 models.
- One preloaded return spring for 512/524 models.
-
Actuator Current:
- Maximum current: 400 mA (continuous).
- Peak current: 2 A (for initial movement).
- Response Time: < 100 ms from input signal to full actuation.
-
Dimensions:
- Length: 200 mm.
- Diameter: 60 mm.
- Weight: 1.2 kg.
-
Communication:
- Integrated speed control interface.
- Protection Rating: IP65, suitable for harsh environments.
- Certification: UL/cUL Listed, EU Directive compliant.
-
Mounting Options:
- Standard mounting hardware included.
- Custom installation kits available for specific engines.
-
Linkage Compatibility:
- Compatible with various mechanical linkages for fuel control.
-
Environmental Robustness:
- Designed to operate reliably in harsh industrial environments.
-
Safety Features:
- Built-in failsafe mechanism to prevent over-speed conditions.
- Energy limiter to prevent overheating and excessive current flow.