16622-ZV5-000 ROD, CHOKE (Honda Code 3701984). Honda
BF25A1 LHA, BF25A1 LHSA, BF25A1 LRSA, BF25A1 SHA, BF25A1 SHSA, BF25A1 SRSA, BF25A1 XRSA, BF25A2 LHA, BF25A2 LHSA, BF25A2 LRSA, BF25A2 SHA, BF25A2 SHSA, BF25A2 SRSA, BF25A2 XRSA, BF25A3 LHA, BF25A3 LHSA, BF25A3 LRSA, BF25A3 SHA, BF25A3 SHSA, BF25A3 SR
ROD
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Compatible models:
BF25A1 LHA
BF25A1 LHSA
BF25A1 LRSA
BF25A1 SHA
BF25A1 SHSA
BF25A1 SRSA
BF25A1 XRSA
BF25A2 LHA
BF25A2 LHSA
BF25A2 LRSA
BF25A2 SHA
BF25A2 SHSA
BF25A2 SRSA
BF25A2 XRSA
BF25A3 LHA
BF25A3 LHSA
BF25A3 LRSA
BF25A3 SHA
BF25A3 SHSA
BF25A3 SRSA
BF25A3 XRSA
BF25AW LHA
BF25AW LHSA
BF25AW LRSA
BF25AW SHA
BF25AW SHSA
BF25AW SRSA
BF25AW XRSA
BF25AX LHA
BF25AX LHSA
BF25AX LRSA
BF25AX SHA
BF25AX SHSA
BF25AX SRSA
BF25AX XRSA
BF25AY LHA
BF25AY LHSA
BF25AY LRSA
BF25AY SHA
BF25AY SHSA
BF25AY SRSA
BF25AY XRSA
BF30A1 LHA
BF30A1 LHSA
BF30A1 LRSA
BF30A1 SHA
BF30A1 SRSA
BF30A2 LHA
BF30A2 LHSA
BF30A2 LRSA
BF30A2 SHA
BF30A2 SRSA
BF30A3 LHA
BF30A3 LHSA
BF30A3 LRSA
BF30A3 SHA
BF30A3 SRSA
BF30AW LHA
BF30AW LHSA
BF30AW LRSA
BF30AW SHA
BF30AW SRSA
BF30AX LHA
BF30AX LHSA
BF30AX LRSA
BF30AX SHA
BF30AX SRSA
BF30AY LHA
BF30AY LHSA
BF30AY LRSA
BF30AY SHA
BF30AY SRSA
BF35AM LHA
BF35AM LRA
BF35AM LRTA
BF35AM SHA
BF35AM XRTA
BF40A1 LHA
BF40A1 LHTA
BF40A1 LRA
BF40A1 LRTA
BF40A1 XRTA
BF40A2 LHA
BF40A2 LHTA
BF40A2 LRA
BF40A2 LRTA
BF40A2 XRTA
BF40A3 LHA
BF40A3 LHTA
BF40A3 LRA
BF40A3 LRTA
BF40A3 XRTA
BF40AW LHA
BF40AW LHTA
BF40AW LRA
BF40AW LRTA
BF40AW XRTA
BF40AX LHA
BF40AX LHTA
BF40AX LRA
BF40AX LRTA
BF40AX XRTA
BF40AY LHA
BF40AY LHTA
BF40AY LRA
BF40AY LRTA
BF40AY XRTA
BF45AM LHA
BF45AM LRA
BF45AM LRTA
BF45AM SRTA
BF45AM XRTA
BF50A1 LHTA
BF50A1 LRA
BF50A1 LRTA
BF50A1 SRJA
BF50A1 XRTA
BF50A2 LHTA
BF50A2 LRA
BF50A2 LRTA
BF50A2 SRJA
BF50A2 XRTA
BF50A3 LHTA
BF50A3 LRA
BF50A3 LRTA
BF50A3 SRJA
BF50A3 XRTA
BF50AW LHTA
BF50AW LRA
BF50AW LRTA
BF50AW SRJA
BF50AW XRTA
BF50AX LHTA
BF50AX LRA
BF50AX LRTA
BF50AX SRJA
BF50AX XRTA
BF50AY LHTA
BF50AY LRA
BF50AY LRTA
BF50AY SRJA
BF50AY XRTA
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Information:
Electronic Controls
Electronic Control Module
The ECM consists of two main components, the control computer (hardware) and the flash file (software). The control computer consists of a microprocessor and electronic circuitry. The flash file contains the engines operational characteristics. The operating maps influence the engines performance.Engine Governor
The engine ECM governs engine speed. Desired engine rpm is determined by the throttle position sensor signal and certain sensor readings. Diagnostic codes may be accompanied by a reduction in the available power from the engine. The reduction in power is typically called an engine derate. Actual engine rpm is measured by the engine speed/timing sensor.Fuel Injection
The engine ECM controls the timing and the duration of the fuel that is injected. The engine ECM varies the signals to the fuel injectors. Fuel is injected only while an injector solenoid is energized by a 105 V signal from the engine ECM. The timing of the injection signal determines the engine timing. The length of the injection signal determines engine speed. By controlling the timing and duration of the 105 V signal, the ECM controls the engine speed.Injection timing depends on the desired engine rpm and load. The ECM detects the top center of each cylinder. The ECM sends an injection signal at the desired time.Cold Cylinder Cutout
During a cold start or extended periods at low idle, the engine ECM will automatically turn off one unit injector at a time. The ECM can then determine if the cylinder is firing. If the ECM determines that the cylinder is not firing, the ECM turns off the unit injector. If the ECM determines that the cylinder is firing, the ECM turns on the unit injector. This strategy improves engine starting. This strategy reduces the following: white smoke, the use of ether injection and warm-up time.Cold Mode Operation
Cold mode operation automatically stops fuel injection to cylinders that are not firing. Cold mode operation has the following benefits: increased startability, reduced warm-up period and reduced white smoke. Cold mode is activated whenever the engine coolant temperature falls below a predetermined value.FRC Limit
The flash file inside the engine ECM sets certain limits on the amount of fuel that can be injected. The FRC limit is a limit that is based on the boost pressure. The boost pressure is calculated as the difference in pressure between atmospheric pressure and turbocharger outlet pressure. The FRC limit is used to control the air/fuel ratio for control of emissions. When the engine ECM senses a higher boost pressure, the engine ECM increases the FRC limit. A higher boost pressure indicates that there is more air in the cylinder. When the engine ECM increases the FRC limit, the engine ECM allows more fuel into the cylinder.Rated Fuel Position
The rated fuel position is a limit that is based on the power rating of the engine. The rated fuel position is similar to the rack stops and the torque spring on a mechanically governed engine. The rated fuel position determines maximum power and torque values for a specific engine family and a specific rating. The rated fuel position is programmed into the flash file at the factory.Engine Starting and Stopping Procedures
Engine Starting Sequence
1) The generator control module will receive one of the following start signals:
The operator places the control in the RUN mode.
The operator places the control in the AUTO mode and the remote initiate input becomes active.
The operator places the control in the AUTO mode and a start command is sent via the data link.2) The generator control module performs the following system checks:
No system faults are present.
All previous shutdown faults have been reset.
The engine is not already running.
If the prelube (if equipped) is not complete, the generator control module will not crank the engine.3) The generator control module begins the following cranking sequence:
Activate the Starting Motor Relay (SMR).
A start signal is sent to the engine ECM via the Cat Data Link and the fuel control relay is activated.4) The generator control enables cranking the engine until the cycle crank time reaches the setpoint for total crank time or until the engine starts.5) The generator control module deactivates the SMR when the engine speed reaches the setpoint for crank terminate speed.Engine Stopping Procedure
1) The generator control module receives one of the following engine stop signal:
The operator places the control in the STOP mode.
The operator places the control in the AUTO mode and the remote initiate input becomes inactive.
The generator control module begins the cooldown period. Place the generator control in the STOP mode in order to bypass the cooldown . "PRESS ENTER TO BYPASS" and "PRESS ESCAPE TO CONTINUE" will be shown on the display. 2) After the cooldown period, the generator control module sends a shutdown signal to the engine ECM. The engine ECM deactivates the fuel control relay which shuts down the engine.
Electronic Control Module
The ECM consists of two main components, the control computer (hardware) and the flash file (software). The control computer consists of a microprocessor and electronic circuitry. The flash file contains the engines operational characteristics. The operating maps influence the engines performance.Engine Governor
The engine ECM governs engine speed. Desired engine rpm is determined by the throttle position sensor signal and certain sensor readings. Diagnostic codes may be accompanied by a reduction in the available power from the engine. The reduction in power is typically called an engine derate. Actual engine rpm is measured by the engine speed/timing sensor.Fuel Injection
The engine ECM controls the timing and the duration of the fuel that is injected. The engine ECM varies the signals to the fuel injectors. Fuel is injected only while an injector solenoid is energized by a 105 V signal from the engine ECM. The timing of the injection signal determines the engine timing. The length of the injection signal determines engine speed. By controlling the timing and duration of the 105 V signal, the ECM controls the engine speed.Injection timing depends on the desired engine rpm and load. The ECM detects the top center of each cylinder. The ECM sends an injection signal at the desired time.Cold Cylinder Cutout
During a cold start or extended periods at low idle, the engine ECM will automatically turn off one unit injector at a time. The ECM can then determine if the cylinder is firing. If the ECM determines that the cylinder is not firing, the ECM turns off the unit injector. If the ECM determines that the cylinder is firing, the ECM turns on the unit injector. This strategy improves engine starting. This strategy reduces the following: white smoke, the use of ether injection and warm-up time.Cold Mode Operation
Cold mode operation automatically stops fuel injection to cylinders that are not firing. Cold mode operation has the following benefits: increased startability, reduced warm-up period and reduced white smoke. Cold mode is activated whenever the engine coolant temperature falls below a predetermined value.FRC Limit
The flash file inside the engine ECM sets certain limits on the amount of fuel that can be injected. The FRC limit is a limit that is based on the boost pressure. The boost pressure is calculated as the difference in pressure between atmospheric pressure and turbocharger outlet pressure. The FRC limit is used to control the air/fuel ratio for control of emissions. When the engine ECM senses a higher boost pressure, the engine ECM increases the FRC limit. A higher boost pressure indicates that there is more air in the cylinder. When the engine ECM increases the FRC limit, the engine ECM allows more fuel into the cylinder.Rated Fuel Position
The rated fuel position is a limit that is based on the power rating of the engine. The rated fuel position is similar to the rack stops and the torque spring on a mechanically governed engine. The rated fuel position determines maximum power and torque values for a specific engine family and a specific rating. The rated fuel position is programmed into the flash file at the factory.Engine Starting and Stopping Procedures
Engine Starting Sequence
1) The generator control module will receive one of the following start signals:
The operator places the control in the RUN mode.
The operator places the control in the AUTO mode and the remote initiate input becomes active.
The operator places the control in the AUTO mode and a start command is sent via the data link.2) The generator control module performs the following system checks:
No system faults are present.
All previous shutdown faults have been reset.
The engine is not already running.
If the prelube (if equipped) is not complete, the generator control module will not crank the engine.3) The generator control module begins the following cranking sequence:
Activate the Starting Motor Relay (SMR).
A start signal is sent to the engine ECM via the Cat Data Link and the fuel control relay is activated.4) The generator control enables cranking the engine until the cycle crank time reaches the setpoint for total crank time or until the engine starts.5) The generator control module deactivates the SMR when the engine speed reaches the setpoint for crank terminate speed.Engine Stopping Procedure
1) The generator control module receives one of the following engine stop signal:
The operator places the control in the STOP mode.
The operator places the control in the AUTO mode and the remote initiate input becomes inactive.
The generator control module begins the cooldown period. Place the generator control in the STOP mode in order to bypass the cooldown . "PRESS ENTER TO BYPASS" and "PRESS ESCAPE TO CONTINUE" will be shown on the display. 2) After the cooldown period, the generator control module sends a shutdown signal to the engine ECM. The engine ECM deactivates the fuel control relay which shuts down the engine.
Parts rod Honda:
16628-ZV5-000
16628-ZV5-000 ROD, CHOKE KNOB (Honda Code 3701992).
BF35AM LHA, BF35AM LRA, BF35AM LRTA, BF35AM SHA, BF35AM XRTA, BF40A1 LHA, BF40A1 LHTA, BF40A1 LRA, BF40A1 LRTA, BF40A1 XRTA, BF40A2 LHA, BF40A2 LHTA, BF40A2 LRA, BF40A2 LRTA, BF40A2 XRTA, BF40A3 LHA, BF40A3 LHTA, BF40A3 LRA, BF40A3 LRTA, BF40A3 XRTA,
24613-ZV3-000
24613-ZV3-000 ROD, LINK (Honda Code 3702941).
BF35AM LHA, BF35AM SHA, BF40A1 LHA, BF40A1 LHTA, BF40A2 LHA, BF40A2 LHTA, BF40A3 LHA, BF40A3 LHTA, BF40AW LHA, BF40AW LHTA, BF40AX LHA, BF40AX LHTA, BF40AY LHA, BF40AY LHTA, BF45AM LHA, BF50A1 LHTA, BF50A2 LHTA, BF50A3 LHTA, BF50AW LHTA, BF50AX LHTA,
24320-ZV5-000
24320-ZV5-000 ROD A, SHIFT (Honda Code 3702891).
BF35AM LHA, BF35AM LRA, BF35AM LRTA, BF35AM SHA, BF35AM XRTA, BF40A1 LHA, BF40A1 LHTA, BF40A1 LRA, BF40A1 LRTA, BF40A1 XRTA, BF40A2 LHA, BF40A2 LHTA, BF40A2 LRA, BF40A2 LRTA, BF40A2 XRTA, BF40A3 LHA, BF40A3 LHTA, BF40A3 LRA, BF40A3 LRTA, BF40A3 XRTA,
17853-ZV5-000
17853-ZV5-000 ROD, STEERING (Honda Code 3702347).
BF15D3 LRA, BF15D3 LRTA, BF15D3 SHA, BF15D3 SHSA, BF15D3 SRTA, BF15D4 LRA, BF15D4 LRTA, BF15D4 SRTA, BF15D5 LGA, BF15D5 LHA, BF15D5 LHGA, BF15D5 LHSA, BF15D5 LHTA, BF15D5 LRA, BF15D5 LRTA, BF15D5 SRTA, BF15D5 XHA, BF15D5 XHGA, BF15D6 LHA, BF15D6 LHSA
17840-ZV7-000
17840-ZV7-000 ROD, THROTTLE (Honda Code 4432266).
BF25A1 LHA, BF25A1 LHSA, BF25A1 LRSA, BF25A1 SHA, BF25A1 SHSA, BF25A1 SRSA, BF25A1 XRSA, BF25A2 LHA, BF25A2 LHSA, BF25A2 LRSA, BF25A2 SHA, BF25A2 SHSA, BF25A2 SRSA, BF25A2 XRSA, BF25A3 LHA, BF25A3 LHSA, BF25A3 LRSA, BF25A3 SHA, BF25A3 SHSA, BF25A3 SR
50340-ZV5-000
50340-ZV5-000 ROD, ADJUSTING (Honda Code 3704939).
BF40A1 LHA, BF40A1 LHTA, BF40A1 LRA, BF40A1 LRTA, BF40A1 XRTA, BF40A2 LHA, BF40A2 LHTA, BF40A2 LRA, BF40A2 LRTA, BF40A2 XRTA, BF40A3 LHA, BF40A3 LHTA, BF40A3 LRA, BF40A3 LRTA, BF40A3 XRTA, BF40AY LHA, BF40AY LHTA, BF40AY LRA, BF40AY LRTA, BF40AY XRTA
50341-ZV7-300
50341-ZV7-300 ROD, ADJUSTING
BF25A1 LHA, BF25A1 LHSA, BF25A1 LRSA, BF25A1 SHA, BF25A1 SHSA, BF25A1 SRSA, BF25A1 XRSA, BF25A2 LHA, BF25A2 LHSA, BF25A2 LRSA, BF25A2 SHA, BF25A2 SHSA, BF25A2 SRSA, BF25A2 XRSA, BF25A3 LHA, BF25A3 LHSA, BF25A3 LRSA, BF25A3 SHA, BF25A3 SHSA, BF25A3 SR
24310-ZV7-723
24310-ZV7-723 ROD, SHIFT (L)
BF25A1 LHA, BF25A1 LHSA, BF25A1 LRSA, BF25A1 SHA, BF25A1 SHSA, BF25A1 SRSA, BF25A2 LHA, BF25A2 LHSA, BF25A2 LRSA, BF25A2 SHA, BF25A2 SHSA, BF25A2 SRSA, BF25A3 LHA, BF25A3 LHSA, BF25A3 LRSA, BF25A3 XRSA, BF25D4 LHA, BF25D4 LHTA, BF25D4 LRGA, BF25D4 LR