24318-ZW1-B00 SPRING, SHIFT ROD (Honda Code 5891700). Honda
BF115A1 LA, BF115A1 LCA, BF115A1 XA, BF115A1 XCA, BF115A2 LA, BF115A2 LCA, BF115A2 XA, BF115A2 XCA, BF115A3 LA, BF115A3 LCA, BF115A3 XA, BF115A3 XCA, BF115A4 LA, BF115A4 LCA, BF115A4 XA, BF115A4 XCA, BF115AX LA, BF115AX LCA, BF115AX XA, BF115AX XCA,
SPRING
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Compatible models:
BF115A1 LA
BF115A1 LCA
BF115A1 XA
BF115A1 XCA
BF115A2 LA
BF115A2 LCA
BF115A2 XA
BF115A2 XCA
BF115A3 LA
BF115A3 LCA
BF115A3 XA
BF115A3 XCA
BF115A4 LA
BF115A4 LCA
BF115A4 XA
BF115A4 XCA
BF115AX LA
BF115AX LCA
BF115AX XA
BF115AX XCA
BF115AY LA
BF115AY LCA
BF115AY XA
BF115AY XCA
BF130A1 LA
BF130A1 LCA
BF130A1 XA
BF130A1 XCA
BF130A2 LA
BF130A2 LCA
BF130A2 XA
BF130A2 XCA
BF130A3 LA
BF130A3 LCA
BF130A3 XA
BF130A3 XCA
BF130A4 LA
BF130A4 LCA
BF130A4 XA
BF130A4 XCA
BF130AX LA
BF130AX LCA
BF130AX XA
BF130AX XCA
BF130AY LA
BF130AY LCA
BF130AY XA
BF130AY XCA
BF75A1 LHTA
BF75A1 LRTA
BF75A1 XRTA
BF75A2 LHTA
BF75A2 LRTA
BF75A2 XRTA
BF75A3 LHTA
BF75A3 LRTA
BF75A3 XRTA
BF75A4 LHTA
BF75A4 LRTA
BF75A4 XRTA
BF75AX LHTA
BF75AX LRTA
BF75AX XRTA
BF75AY LHTA
BF75AY LRTA
BF75AY XRTA
BF90A1 LHTA
BF90A1 LRTA
BF90A1 XRTA
BF90A2 LHTA
BF90A2 LRTA
BF90A2 XRTA
BF90A3 LHTA
BF90A3 LRTA
BF90A3 XRTA
BF90A4 LHTA
BF90A4 LRTA
BF90A4 XRTA
BF90AX LHTA
BF90AX LRTA
BF90AX XRTA
BF90AY LHTA
BF90AY LRTA
BF90AY XRTA
Honda
Honda entire parts catalog list:
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT (2) » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT (2) » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT (2) » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT (2) » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT (2) » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT (2) » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT (2) » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT (2) » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT (2) » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT (2) » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT (2) » 24318-ZW1-B00
- WATER PUMP VERTICAL SHAFT (2) » 24318-ZW1-B00
Information:
System Operation
Engine Governor
The ECM governs the engine. The ECM determines the timing, the injection pressure, and the amount of fuel that is delivered to each cylinder. These factors are based on the actual conditions and on the desired conditions at any given time during starting and operation.The ECM uses the throttle position sensor to determine the desired engine speed. The ECM compares the desired engine speed to the actual engine speed. The actual engine speed is determined through interpretation of the signals that are received by the ECM from the engine speed/timing sensors. If the desired engine speed is greater than the actual engine speed, the ECM requests that more fuel is injected in order to increase engine speed.Timing Considerations
Once the ECM has determined the amount of fuel that is required, the ECM must determine the timing of the fuel injection. The ECM adjusts timing for optimum engine performance and for the fuel economy. Actual timing and desired timing cannot be viewed with Caterpillar Electronic Technician (ET). The ECM determines the location of top center of the number one cylinder from the signals that are provided by the engine speed/timing sensors. The ECM determines when injection should occur relative to the top center. The ECM then provides the signal to the injector at the desired time.Fuel Injection
The C9.3 common rail fuel system is controlled by the ECM. The ECM gathers data from several sensors on the engine. The ECM then uses this data to adjust the quantity of fuel being delivered as well as the timing of the injection event. The injection event begins when the ECM sends a signal to the injector solenoid to actuate the three way valve inside the injector. As the valve opens, the fuel flows from the fuel rail, through the fuel line, and into the injector. As the valve opening pressure is reached, the check is lifted and the fuel is delivered at a high pressure into the combustion chamber.The C13-C18 ECM sends high voltage signals to the injector solenoids in order to energize the solenoids. By controlling the timing and the duration of the high voltage signals, the ECM can control the following aspects of injection:
Injection timing
Fuel deliveryThe flash file inside the ECM establishes certain limits on the amount of fuel that can be injected. The "FRC Fuel Limit" is a limit that is based on the intake manifold pressure. The "FRC Fuel Limit" is used to control the air/fuel ratio for control of emissions. When the ECM senses a higher intake manifold pressure, the ECM increases the "FRC Fuel Limit". A higher intake manifold pressure indicates that there is more air in the cylinder. When the ECM increases the "FRC Fuel Limit", the ECM changes the control signal to the injector. The signal will allow more fuel into the cylinder.The "Rated Fuel Limit" is a limit that is based on the power rating of the engine and on the engine rpm. The "Rated Fuel Limit" is like the rack stops and the torque spring on a mechanically governed engine. The "Rated Fuel Limit" provides the power curves and the torque curves for a specific engine family and a specific engine rating. All of these limits are determined at the factory. These limits cannot be changed. Other ECM Functions for Performance
The ECM may also provide enhanced control of the engine for functions such as retarding the engine and controlling the cooling fan. Refer to Troubleshooting, "Configuration Parameters" for supplemental information about the systems that can be monitored by the ECM.Programmable Parameters
Certain parameters that affect engine operation may be changed with Cat ET. The parameters are stored in the ECM, and the parameters are protected from unauthorized changes by passwords. These parameters are either system configuration parameters or customer parameters.System configuration parameters are set at the factory. System configuration parameters affect emissions or power ratings within an engine family. Factory passwords must be obtained and factory passwords must be used to change the system configuration parameters.Some of the parameters may affect engine operation in an unusual way. An operator might not expect this type of effect. Without adequate training, these parameters may lead to power complaints or performance complaints even though the engines performance is to the specification.Customer parameters are variable. Customer parameters can be used to affect the characteristics of the engine. Limits are set by the factory and by the monitoring system.Customer passwords may be required to change customer specified parameters.Refer to Troubleshooting, "Configuration Parameters" for additional information on this subject.Passwords
System configuration parameters are protected by factory passwords. Factory passwords are calculated on a computer system that is available only to Caterpillar dealers. Since factory passwords contain alphabetic characters, only Cat ET may change system configuration parameters. Customer parameters can be protected by customer passwords. The customer passwords are programmed by the customer. Factory passwords can be used to change customer passwords if customer passwords are lost.Refer to Troubleshooting, "Customer Passwords" and Troubleshooting, "Factory Passwords" for additional information on this subject.
Engine Governor
The ECM governs the engine. The ECM determines the timing, the injection pressure, and the amount of fuel that is delivered to each cylinder. These factors are based on the actual conditions and on the desired conditions at any given time during starting and operation.The ECM uses the throttle position sensor to determine the desired engine speed. The ECM compares the desired engine speed to the actual engine speed. The actual engine speed is determined through interpretation of the signals that are received by the ECM from the engine speed/timing sensors. If the desired engine speed is greater than the actual engine speed, the ECM requests that more fuel is injected in order to increase engine speed.Timing Considerations
Once the ECM has determined the amount of fuel that is required, the ECM must determine the timing of the fuel injection. The ECM adjusts timing for optimum engine performance and for the fuel economy. Actual timing and desired timing cannot be viewed with Caterpillar Electronic Technician (ET). The ECM determines the location of top center of the number one cylinder from the signals that are provided by the engine speed/timing sensors. The ECM determines when injection should occur relative to the top center. The ECM then provides the signal to the injector at the desired time.Fuel Injection
The C9.3 common rail fuel system is controlled by the ECM. The ECM gathers data from several sensors on the engine. The ECM then uses this data to adjust the quantity of fuel being delivered as well as the timing of the injection event. The injection event begins when the ECM sends a signal to the injector solenoid to actuate the three way valve inside the injector. As the valve opens, the fuel flows from the fuel rail, through the fuel line, and into the injector. As the valve opening pressure is reached, the check is lifted and the fuel is delivered at a high pressure into the combustion chamber.The C13-C18 ECM sends high voltage signals to the injector solenoids in order to energize the solenoids. By controlling the timing and the duration of the high voltage signals, the ECM can control the following aspects of injection:
Injection timing
Fuel deliveryThe flash file inside the ECM establishes certain limits on the amount of fuel that can be injected. The "FRC Fuel Limit" is a limit that is based on the intake manifold pressure. The "FRC Fuel Limit" is used to control the air/fuel ratio for control of emissions. When the ECM senses a higher intake manifold pressure, the ECM increases the "FRC Fuel Limit". A higher intake manifold pressure indicates that there is more air in the cylinder. When the ECM increases the "FRC Fuel Limit", the ECM changes the control signal to the injector. The signal will allow more fuel into the cylinder.The "Rated Fuel Limit" is a limit that is based on the power rating of the engine and on the engine rpm. The "Rated Fuel Limit" is like the rack stops and the torque spring on a mechanically governed engine. The "Rated Fuel Limit" provides the power curves and the torque curves for a specific engine family and a specific engine rating. All of these limits are determined at the factory. These limits cannot be changed. Other ECM Functions for Performance
The ECM may also provide enhanced control of the engine for functions such as retarding the engine and controlling the cooling fan. Refer to Troubleshooting, "Configuration Parameters" for supplemental information about the systems that can be monitored by the ECM.Programmable Parameters
Certain parameters that affect engine operation may be changed with Cat ET. The parameters are stored in the ECM, and the parameters are protected from unauthorized changes by passwords. These parameters are either system configuration parameters or customer parameters.System configuration parameters are set at the factory. System configuration parameters affect emissions or power ratings within an engine family. Factory passwords must be obtained and factory passwords must be used to change the system configuration parameters.Some of the parameters may affect engine operation in an unusual way. An operator might not expect this type of effect. Without adequate training, these parameters may lead to power complaints or performance complaints even though the engines performance is to the specification.Customer parameters are variable. Customer parameters can be used to affect the characteristics of the engine. Limits are set by the factory and by the monitoring system.Customer passwords may be required to change customer specified parameters.Refer to Troubleshooting, "Configuration Parameters" for additional information on this subject.Passwords
System configuration parameters are protected by factory passwords. Factory passwords are calculated on a computer system that is available only to Caterpillar dealers. Since factory passwords contain alphabetic characters, only Cat ET may change system configuration parameters. Customer parameters can be protected by customer passwords. The customer passwords are programmed by the customer. Factory passwords can be used to change customer passwords if customer passwords are lost.Refer to Troubleshooting, "Customer Passwords" and Troubleshooting, "Factory Passwords" for additional information on this subject.
Parts spring Honda:
24210-ZV1-010
24210-ZV1-010 SPRING, CLICK (Honda Code 2944411).
BF115A1 LA, BF115A1 LCA, BF115A1 XA, BF115A1 XCA, BF115A2 LA, BF115A2 LCA, BF115A2 XA, BF115A2 XCA, BF115A3 LA, BF115A3 LCA, BF115A3 XA, BF115A3 XCA, BF115A4 LA, BF115A4 LCA, BF115A4 XA, BF115A4 XCA, BF115A5 LA, BF115A5 LCA, BF115A5 XA, BF115A5 XCA,
16052-MB0-671
16052-MB0-671 SPRING (Honda Code 1241934).
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
16659-ZV5-000
16659-ZV5-000 SPRING, CHOKE ARM ADJUSTING (Honda Code 3702008).
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
17938-ZV5-000
17938-ZV5-000 SPRING, OPENER CAM RETURN (Honda Code 3702446).
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
19292-ZW1-000
19292-ZW1-000 SPRING, RELIEF VALVE (Honda Code 4898284).
BF75A1 LHTA, BF75A1 LRTA, BF75A1 XRTA, BF75A2 LHTA, BF75A2 LRTA, BF75A2 XRTA, BF75A3 LHTA, BF75A3 LRTA, BF75A3 XRTA, BF75A4 LHTA, BF75A4 LRTA, BF75A4 XRTA, BF75A5 LHTA, BF75A5 LRTA, BF75A5 XRTA, BF75A6 LHTA, BF75A6 LRTA, BF75A6 XRTA, BF75AT LHTA, BF7
24848-ZW1-V01
24848-ZW1-V01 SPRING, GEARSHIFT (Honda Code 4898961).
BF115A1 LA, BF115A1 LCA, BF115A1 XA, BF115A1 XCA, BF115A2 LA, BF115A2 LCA, BF115A2 XA, BF115A2 XCA, BF115A3 LA, BF115A3 LCA, BF115A3 XA, BF115A3 XCA, BF115A4 LA, BF115A4 LCA, BF115A4 XA, BF115A4 XCA, BF115A5 LA, BF115A5 LCA, BF115A5 XA, BF115A5 XCA,
24833-ZW1-V01
24833-ZW1-V01 SPRING (Honda Code 4929089).
BF115A1 LA, BF115A1 LCA, BF115A1 XA, BF115A1 XCA, BF115A2 LA, BF115A2 LCA, BF115A2 XA, BF115A2 XCA, BF115A3 LA, BF115A3 LCA, BF115A3 XA, BF115A3 XCA, BF115A4 LA, BF115A4 LCA, BF115A4 XA, BF115A4 XCA, BF115A5 LA, BF115A5 LCA, BF115A5 XA, BF115A5 XCA,
17928-ZW0-L00
17928-ZW0-L00 SPRING, ASSIST (Honda Code 6553127).
BF75A1 LHTA, BF75A1 LRTA, BF75A1 XRTA, BF75A2 LHTA, BF75A2 LRTA, BF75A2 XRTA, BF75A3 LHTA, BF75A3 LRTA, BF75A3 XRTA, BF75A4 LHTA, BF75A4 LRTA, BF75A4 XRTA, BF75A5 LHTA, BF75A5 LRTA, BF75A5 XRTA, BF75A6 LHTA, BF75A6 LRTA, BF75A6 XRTA, BF90A2 JHTA, BF9