The WOODWARD 8200-1300 serves as the primary 8200-1300 Electronic Governor utilized to execute speed and load regulation across gas and steam turbine platforms.
The WOODWARD 8200-1300 serves as the primary 8200-1300 Electronic Governor utilized to execute speed and load regulation across gas and steam turbine platforms.
Hardware Specifications
Parameter
Specification
Model
8200-1300
Brand
WOODWARD
Origin
USA
Weight
2.5 kg (5.51 lbs)
Dimensions
220 x 120 x 100 mm
Operating Temp
-20 to 70 deg C (-4 to 158 deg F)
Power Consumption
50 VA max
Input Voltage
115/230 VAC +/-10% (50/60 Hz)
Mounting Style
DIN Rail
Product Type
Electronic Governor
Actuator Loop Feedback Response and Thermal Dissipation Profiles
The controller processes turbine speed sensor inputs to execute closed-loop valve position commands. Internal processing loops continuously calculate speed deviations and adjust output signals to optimize actuator loop feedback response during transient load changes. The physical housing relies on passive air conduction across thermal heat sink dissipation profiles to prevent thermal drift within the ambient operating range of -20 to 70 deg C.
Frequently Asked Questions
Q: How is dual-voltage input selection configured on the power terminal block?
A: The input power supply accepts 115 VAC or 230 VAC nominal inputs within a +/-10% tolerance band. Terminal jumpers or internal selector wiring must be set according to the site AC supply voltage before applying line power.
Q: What mechanism prevents noise interference on the speed sensing inputs?
A: Magnetic pickup sensor lines must use twisted-pair shielded cabling grounded at the governor chassis only, isolating the high-frequency pulse counting circuits from external common-mode noise.
Field Installation Guidelines
Snap the unit securely onto a standard 35 mm DIN rail inside an enclosure, ensuring mechanical latching is fully engaged.
Verify that the AC supply voltage matches the configured 115 VAC or 230 VAC terminal setting before energizing the module.
Wire speed sensor inputs using low-capacitance shielded twisted-pair conductors, terminating the cable shield at the designated ground terminal.
Route low-voltage control lines and communications interface cables in separate wire ducts away from high-current AC power leads.
Provide a minimum vertical clearance of 50 mm above and below the housing to maintain unimpeded natural convection airflow across the enclosure heatsink.
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