15571-ZM7-003 VALVE, OIL OUTLET (Honda Code 5988431). Honda
BF2.3DK2 LCHA, BF2.3DK2 SCHA, BF2D1 LCHA, BF2D1 SA, BF2D1 SAB, BF2D1 SCAB, BF2D1 SCHA, BF2D1 SHA, BF2D2 LCHA, BF2D2 SA, BF2D2 SAB, BF2D2 SCAB, BF2D2 SCHA, BF2D2 SHA, BF2D3 LCHA, BF2D3 SA, BF2D3 SAB, BF2D3 SCAB, BF2D3 SCHA, BF2D3 SHA, BF2D4 LCHA, BF2D
VALVE
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Compatible models:
BF2.3DK2 LCHA
BF2.3DK2 SCHA
BF2D1 LCHA
BF2D1 SA
BF2D1 SAB
BF2D1 SCAB
BF2D1 SCHA
BF2D1 SHA
BF2D2 LCHA
BF2D2 SA
BF2D2 SAB
BF2D2 SCAB
BF2D2 SCHA
BF2D2 SHA
BF2D3 LCHA
BF2D3 SA
BF2D3 SAB
BF2D3 SCAB
BF2D3 SCHA
BF2D3 SHA
BF2D4 LCHA
BF2D4 SA
BF2D4 SAB
BF2D4 SCAB
BF2D4 SCHA
BF2D4 SHA
BF2D5 LCHA
BF2D5 SCAB
BF2D5 SCHA
BF2D5 SHA
BF2D6 LCHA
BF2D6 SCAB
BF2D6 SCHA
BF2D6 SHA
BF2DK0 LCHA
BF2DK0 SCAB
BF2DK0 SCHA
BF2DX LCHA
BF2DX SA
BF2DX SAB
BF2DX SCAB
BF2DX SCHA
BF2DY LCHA
BF2DY SA
BF2DY SAB
BF2DY SCAB
BF2DY SCHA
BF2DY SHA
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Information:
Standard Diesel Injection
Electronic Controls
The electronic system consists of the following components: the ECM, the Mechanically Actuated Electronically Controlled Unit Injectors (MEUI), the wiring harness, the switches, and the sensors. The ECM is the computer. The flash file is the software for the computer. The flash file contains the operating maps. The operating maps define the following characteristics of the engine:
Horsepower
Torque curvesThe ECM determines the timing and the amount of fuel that is delivered to the cylinders. These decisions are based on the actual conditions and/or the desired conditions at any given time.The ECM compares the desired engine speed to the actual engine speed. The actual engine speed is determined through a signal from the engine speed/timing sensor. The desired engine speed is determined through the following items:
Throttle position sensor
Other input signals from sensors
Certain diagnostic codesIf the desired engine speed is greater than the actual engine speed, the ECM injects more fuel to increase the actual engine speed.Fuel Injection
The ECM controls the amount of fuel that is injected by varying the signals to the injectors. The injectors will pump fuel only if the injector solenoid is energized. The ECM sends a high-voltage signal to the solenoid. This high-voltage signal energizes the solenoid. By controlling the timing and the duration of the high-voltage signal, the ECM can control injection timing and the ECM can control the amount of fuel that is injected.Once the ECM determines the amount of fuel that is required, the ECM must determine the timing of the fuel injection. The ECM determines the TOP CENTER position of each cylinder from the engine speed/timing sensor's signal. The ECM determines when fuel injection should occur relative to the top center position and the ECM provides the signal to the injector at the desired time. The ECM adjusts timing for optimum engine performance, for optimum fuel economy, and for optimum control of white smoke.Programmable Parameters
Certain parameters that affect the engine operation may be changed with the Cat® Electronic Technician (ET). The parameters are stored in the ECM, and some parameters are protected from unauthorized changes by passwords.Passwords
Several system configuration parameters and most logged events are protected by factory passwords. Factory passwords are available only to Caterpillar dealers. Refer to Troubleshooting, "Factory Passwords" for additional information.Dynamic Gas Blending (DGB)
The DGB engine kit automatically adjusts to changes in incoming gas fuel quality and pressure allowing diesel engines to run on a wide variety of fuels. The kit has an engine electrical and protection system that protects the engine from any abnormal combustion event such as detonation or knock that may occur as a result of blending natural gas. To maintain detonation protection and engine life, it is necessary to regulate the flow of gaseous fuel. Through continuous engine monitoring, the DGB engine kit achieves maximum substitution of gaseous fuel while maintaining engine life.The key components of the DGB engine electrical and protection systems are:
A5:E4 Engine ECM
A4:E4 Gas Admission Valve ECM (Left-Hand and Right-Hand)
A6:P1 Cylinder Pressure Sensing ECM
In Cylinder Pressure Sensors (ICPS)
Gas Admission Valve (GAV)
Gas Shut Off Valve (GSOV)Engine Control Module (ECM)
All engine functions are controlled by an integrated A5:E4 ECM. The ECM monitors the status of the various systems and displays the system operating values. The ECM uses these same values to generate alarms and shutdowns to protect the engine.The ECM provides the basic principles for:
Engine speed governing
Monitoring and protection
Diagnostic codesCylinder Pressure Sensing ECM
In addition to the A5:E4 ECM the engine employs an A6:P1 Cylinder Pressure Sensing ECM. The Cylinder Pressure Sensing ECM has responsibility for monitoring the engine In Cylinder Pressure Sensors (ICPS) and to detect any abnormal conditions within the combustion of an individual cylinder.Cylinder pressure levels are always being monitored for abnormal conditions. When abnormal conditions are detected that indicate premature ignition or detonation has occurred, the ICPS ECM will notify the engine ECM via the local CAN B Data Link. The engine ECM will take action to mitigate the abnormal conditions which may include altering the gas substitution ratio, advancing or retarding timing controls, or disabling gas blending.The ICPS ECM receives inputs from the following components:
CAN local data link
ICPS
Camshaft position sensor #1 and crankshaft position sensor #1The ICPS ECM receives and communicates these inputs to the engine ECM via the Local CAN B data link.In Cylinder Pressure Sensor (ICPS)
An ICPS is installed into each cylinder head and replaces the detonation sensors typically seen on engines operating on a gaseous fuel supply. The ICPS will actively measure cylinder pressure and provide a feedback signal to the ICPS ECM to determine cylinder health and efficiency.The ICPS connector style is a press-fit "Hirschmann connector" which is unique from other styles of sensor connectors found on Cat engines and equipment. Due to the type of connection found at the sensor adapter harness at the ICPS, it is not possible to accurately measure resistance or create short circuits. Exchanging the adapter harness with another harness from a known good cylinder may be necessary for troubleshooting purposes.Gas Admission Valve (GAV)
The GAV is a solenoid operated, mechanically actuated fuel valve that is mounted on the outboard side of each cylinder head. The GAV is connected to the engine intake manifold runner via a flexible fuel line which delivers fuel to the intake stream per cylinder upon command from the GAV ECM. Each valve is individually controlled which allows dynamic control of each cylinder based on ICPS feedback.Gas Shut Off Valve (GSOV)
The GSOV is a solenoid operated, mechanically actuated valve that is used to isolate or allow gaseous fuel to enter the downstream fuel train. When conditions to enable gas blending have been met, the A5:E4 Diesel ECM will supply power to the GSOV enabling fuel flow. When blending mode is not active or disabled, the GSOV will be closed.
Electronic Controls
The electronic system consists of the following components: the ECM, the Mechanically Actuated Electronically Controlled Unit Injectors (MEUI), the wiring harness, the switches, and the sensors. The ECM is the computer. The flash file is the software for the computer. The flash file contains the operating maps. The operating maps define the following characteristics of the engine:
Horsepower
Torque curvesThe ECM determines the timing and the amount of fuel that is delivered to the cylinders. These decisions are based on the actual conditions and/or the desired conditions at any given time.The ECM compares the desired engine speed to the actual engine speed. The actual engine speed is determined through a signal from the engine speed/timing sensor. The desired engine speed is determined through the following items:
Throttle position sensor
Other input signals from sensors
Certain diagnostic codesIf the desired engine speed is greater than the actual engine speed, the ECM injects more fuel to increase the actual engine speed.Fuel Injection
The ECM controls the amount of fuel that is injected by varying the signals to the injectors. The injectors will pump fuel only if the injector solenoid is energized. The ECM sends a high-voltage signal to the solenoid. This high-voltage signal energizes the solenoid. By controlling the timing and the duration of the high-voltage signal, the ECM can control injection timing and the ECM can control the amount of fuel that is injected.Once the ECM determines the amount of fuel that is required, the ECM must determine the timing of the fuel injection. The ECM determines the TOP CENTER position of each cylinder from the engine speed/timing sensor's signal. The ECM determines when fuel injection should occur relative to the top center position and the ECM provides the signal to the injector at the desired time. The ECM adjusts timing for optimum engine performance, for optimum fuel economy, and for optimum control of white smoke.Programmable Parameters
Certain parameters that affect the engine operation may be changed with the Cat® Electronic Technician (ET). The parameters are stored in the ECM, and some parameters are protected from unauthorized changes by passwords.Passwords
Several system configuration parameters and most logged events are protected by factory passwords. Factory passwords are available only to Caterpillar dealers. Refer to Troubleshooting, "Factory Passwords" for additional information.Dynamic Gas Blending (DGB)
The DGB engine kit automatically adjusts to changes in incoming gas fuel quality and pressure allowing diesel engines to run on a wide variety of fuels. The kit has an engine electrical and protection system that protects the engine from any abnormal combustion event such as detonation or knock that may occur as a result of blending natural gas. To maintain detonation protection and engine life, it is necessary to regulate the flow of gaseous fuel. Through continuous engine monitoring, the DGB engine kit achieves maximum substitution of gaseous fuel while maintaining engine life.The key components of the DGB engine electrical and protection systems are:
A5:E4 Engine ECM
A4:E4 Gas Admission Valve ECM (Left-Hand and Right-Hand)
A6:P1 Cylinder Pressure Sensing ECM
In Cylinder Pressure Sensors (ICPS)
Gas Admission Valve (GAV)
Gas Shut Off Valve (GSOV)Engine Control Module (ECM)
All engine functions are controlled by an integrated A5:E4 ECM. The ECM monitors the status of the various systems and displays the system operating values. The ECM uses these same values to generate alarms and shutdowns to protect the engine.The ECM provides the basic principles for:
Engine speed governing
Monitoring and protection
Diagnostic codesCylinder Pressure Sensing ECM
In addition to the A5:E4 ECM the engine employs an A6:P1 Cylinder Pressure Sensing ECM. The Cylinder Pressure Sensing ECM has responsibility for monitoring the engine In Cylinder Pressure Sensors (ICPS) and to detect any abnormal conditions within the combustion of an individual cylinder.Cylinder pressure levels are always being monitored for abnormal conditions. When abnormal conditions are detected that indicate premature ignition or detonation has occurred, the ICPS ECM will notify the engine ECM via the local CAN B Data Link. The engine ECM will take action to mitigate the abnormal conditions which may include altering the gas substitution ratio, advancing or retarding timing controls, or disabling gas blending.The ICPS ECM receives inputs from the following components:
CAN local data link
ICPS
Camshaft position sensor #1 and crankshaft position sensor #1The ICPS ECM receives and communicates these inputs to the engine ECM via the Local CAN B data link.In Cylinder Pressure Sensor (ICPS)
An ICPS is installed into each cylinder head and replaces the detonation sensors typically seen on engines operating on a gaseous fuel supply. The ICPS will actively measure cylinder pressure and provide a feedback signal to the ICPS ECM to determine cylinder health and efficiency.The ICPS connector style is a press-fit "Hirschmann connector" which is unique from other styles of sensor connectors found on Cat engines and equipment. Due to the type of connection found at the sensor adapter harness at the ICPS, it is not possible to accurately measure resistance or create short circuits. Exchanging the adapter harness with another harness from a known good cylinder may be necessary for troubleshooting purposes.Gas Admission Valve (GAV)
The GAV is a solenoid operated, mechanically actuated fuel valve that is mounted on the outboard side of each cylinder head. The GAV is connected to the engine intake manifold runner via a flexible fuel line which delivers fuel to the intake stream per cylinder upon command from the GAV ECM. Each valve is individually controlled which allows dynamic control of each cylinder based on ICPS feedback.Gas Shut Off Valve (GSOV)
The GSOV is a solenoid operated, mechanically actuated valve that is used to isolate or allow gaseous fuel to enter the downstream fuel train. When conditions to enable gas blending have been met, the A5:E4 Diesel ECM will supply power to the GSOV enabling fuel flow. When blending mode is not active or disabled, the GSOV will be closed.
Parts valve Honda:
16011-ZE0-005
16011-ZE0-005 VALVE SET, FLOAT (Honda Code 1441476).
BF2.3DK2 LCHA, BF2.3DK2 SCHA, BF2AM SA, BF2AM SAB, BF2AW LA, BF2AW SA, BF2AW SAB, BF2D1 LCHA, BF2D1 SA, BF2D1 SAB, BF2D1 SCAB, BF2D1 SCHA, BF2D1 SHA, BF2D2 LCHA, BF2D2 SA, BF2D2 SAB, BF2D2 SCAB, BF2D2 SCHA, BF2D2 SHA, BF2D3 LCHA, BF2D3 SA, BF2D3 SAB,
14711-ZW6-000
14711-ZW6-000 VALVE, IN. (Honda Code 6006423).
BF2.3DK2 LCHA, BF2.3DK2 SCHA, BF2D1 LCHA, BF2D1 SA, BF2D1 SAB, BF2D1 SCAB, BF2D1 SCHA, BF2D1 SHA, BF2D2 LCHA, BF2D2 SA, BF2D2 SAB, BF2D2 SCAB, BF2D2 SCHA, BF2D2 SHA, BF2D3 LCHA, BF2D3 SA, BF2D3 SAB, BF2D3 SCAB, BF2D3 SCHA, BF2D3 SHA, BF2D4 LCHA, BF2D
14721-ZW6-000
14721-ZW6-000 VALVE, EX. (Honda Code 6006431).
BF2.3DK2 LCHA, BF2.3DK2 SCHA, BF2D1 LCHA, BF2D1 SA, BF2D1 SAB, BF2D1 SCAB, BF2D1 SCHA, BF2D1 SHA, BF2D2 LCHA, BF2D2 SA, BF2D2 SAB, BF2D2 SCAB, BF2D2 SCHA, BF2D2 SHA, BF2D3 LCHA, BF2D3 SA, BF2D3 SAB, BF2D3 SCAB, BF2D3 SCHA, BF2D3 SHA, BF2D4 LCHA, BF2D
17626-ZW6-000
17626-ZW6-000 VALVE, BREATHER (Honda Code 6841142).
BF2D1 LCHA, BF2D1 SA, BF2D1 SAB, BF2D1 SCAB, BF2D1 SCHA, BF2D1 SHA, BF2D2 LCHA, BF2D2 SA, BF2D2 SAB, BF2D2 SCAB, BF2D2 SCHA, BF2D2 SHA, BF2D3 LCHA, BF2D3 SA, BF2D3 SAB, BF2D3 SCAB, BF2D3 SCHA, BF2D3 SHA, BF2D4 LCHA, BF2D4 SA, BF2D4 SAB, BF2D4 SCAB, B
17626-Z07-R30