90125-ZV4-000 BOLT, FLANGE (6X35) (Honda Code 2945020). Honda
BF15A1 LA, BF15A1 LAS, BF15A1 SA, BF15A1 SAS, BF15A1 XAS, BF15A2 LA, BF15A2 LAS, BF15A2 SA, BF15A2 SAS, BF15A2 XAS, BF15AM LA, BF15AM LAS, BF15AM SA, BF15AM SAS, BF15AM XAS, BF15AW LA, BF15AW LAS, BF15AW SA, BF15AW SAS, BF15AW XAS, BF15AX LA, BF15AX
BOLT
Price: query
Rating:
Compatible models:
BF15A1 LA
BF15A1 LAS
BF15A1 SA
BF15A1 SAS
BF15A1 XAS
BF15A2 LA
BF15A2 LAS
BF15A2 SA
BF15A2 SAS
BF15A2 XAS
BF15AM LA
BF15AM LAS
BF15AM SA
BF15AM SAS
BF15AM XAS
BF15AW LA
BF15AW LAS
BF15AW SA
BF15AW SAS
BF15AW XAS
BF15AX LA
BF15AX LAS
BF15AX SA
BF15AX SAS
BF15AX XAS
BF15AY LA
BF15AY LAS
BF15AY SA
BF15AY SAS
BF15AY XAS
BF9.9AM LA
BF9.9AM LAS
BF9.9AM SA
BF9.9AM SAS
BF9.9AM XA
BF9.9AM XAS
BF9.9AW LA
BF9.9AW LAS
BF9.9AW SA
BF9.9AW SAS
BF9.9AW XA
BF9.9AW XAS
BF9.9AX LA
BF9.9AX LAS
BF9.9AX SA
BF9.9AX SAS
BF9.9AX XA
BF9.9AX XAS
BF9.9AY LA
BF9.9AY LAS
BF9.9AY SA
BF9.9AY SAS
BF9.9AY XA
BF9.9AY XAS
Honda
Honda entire parts catalog list:
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
- OIL CASE ENGINE COVER » 90125-ZV4-000
Information:
Engine Speed Governing
The master ECM maintains the desired engine speed by controlling the actuator for the throttle. The actuator is located at the inlet to the aftercooler. The actuator is electrically controlled and electrically actuated.The master ECM issues a throttle command that represents a percent of the level of electrical current. The output can be viewed on Caterpillar Electronic Technician (ET).Desired engine speed is determined by the following:
Status of the idle/rated switch
Desired speed input (analog voltage or 4 to 20 mA)
Programmable ParametersAir/Fuel Ratio Control
The master ECM provides control of the air/fuel mixture for performance and for efficiency at low emission levels. The system consists of an electronic fuel metering valve, output drivers in the master ECM, and maps in the master ECM. The control compensates for changes in the BTU of the fuel in order to maintain desired emission levels.The following steps describe the basic operation:
The master ECM determines the desired flow rates for the air and for the fuel. The flow rates are determined by these factors:
Desired engine speed
Actual engine speed
Calculated engine load
The command for the flow of the fuel is sent to the electronic fuel metering valve via the CAN data link.This process is repeated continuously during engine operation.Start/Stop Sequencing
The master ECM contains the logic and the outputs for control of starting and of shutdown. The customer programmable logic responds to signals from the following components: engine control, emergency stop switch, remote start switch, data link and other inputs.When the programmable logic determines necessary to crank the engine, the master ECM supplies +Battery voltage to the relay for the starting motor. The master ECM removes the voltage when the programmable crank terminate speed is reached or when a programmable cycle crank time has expired.The engine must be equipped with an energize-to-run type of gas shutoff valve (GSOV). The source of the voltage to the GSOV depends on the engine configuration. The GSOV may be energized by customer equipment or by the engine control system.If the engine control system controls the GSOV, the master ECM supplies +Battery voltage to the GSOV whenever the programmable logic determines that fuel is required to operate the engine.For more information on programmable parameters, refer to Troubleshooting, "Programming Parameters".Engine Monitoring and Protection
The control system monitors both the engine operation and the electrical circuits for the engine.Problems with engine operation such as low oil pressure produce an event code. The master ECM can issue a warning or a shutdown. This depends on the severity of the condition. For more information, refer to Troubleshooting, "Event Codes".Problems with an electrical circuit such as an open circuit produce a diagnostic code. For more information, refer to Troubleshooting, "Diagnostic Trouble Codes".Ignition Control
The control system provides variable ignition timing that is sensitive to detonation.Each cylinder has an ignition transformer that is located under the valve cover for the cylinder. To initiate combustion, an ECM sends a pulse of approximately 100 V to the primary coil of an ignition transformer at the appropriate time and for the appropriate duration. The transformer steps up the voltage in order to create a spark across the spark plug electrode.Detonation sensors monitor the engine for excessive detonation. The engine has ten detonation sensors. Each sensor monitors two adjacent cylinders. The sensors generate data on vibration that is processed by each ECM in order to determine detonation levels. If detonation reaches an unacceptable level, the appropriate ECM retards the ignition timing of the affected cylinder or cylinders. If retarding the timing does not limit detonation to an acceptable level, the master ECM shuts down the engine.The master ECM and the slave ECM provide extensive diagnostics for the ignition system. The master ECM can receive a discrete input for ignition timing in order to allow operation with alternate fuels such as propane that requires a timing offset.
The master ECM maintains the desired engine speed by controlling the actuator for the throttle. The actuator is located at the inlet to the aftercooler. The actuator is electrically controlled and electrically actuated.The master ECM issues a throttle command that represents a percent of the level of electrical current. The output can be viewed on Caterpillar Electronic Technician (ET).Desired engine speed is determined by the following:
Status of the idle/rated switch
Desired speed input (analog voltage or 4 to 20 mA)
Programmable ParametersAir/Fuel Ratio Control
The master ECM provides control of the air/fuel mixture for performance and for efficiency at low emission levels. The system consists of an electronic fuel metering valve, output drivers in the master ECM, and maps in the master ECM. The control compensates for changes in the BTU of the fuel in order to maintain desired emission levels.The following steps describe the basic operation:
The master ECM determines the desired flow rates for the air and for the fuel. The flow rates are determined by these factors:
Desired engine speed
Actual engine speed
Calculated engine load
The command for the flow of the fuel is sent to the electronic fuel metering valve via the CAN data link.This process is repeated continuously during engine operation.Start/Stop Sequencing
The master ECM contains the logic and the outputs for control of starting and of shutdown. The customer programmable logic responds to signals from the following components: engine control, emergency stop switch, remote start switch, data link and other inputs.When the programmable logic determines necessary to crank the engine, the master ECM supplies +Battery voltage to the relay for the starting motor. The master ECM removes the voltage when the programmable crank terminate speed is reached or when a programmable cycle crank time has expired.The engine must be equipped with an energize-to-run type of gas shutoff valve (GSOV). The source of the voltage to the GSOV depends on the engine configuration. The GSOV may be energized by customer equipment or by the engine control system.If the engine control system controls the GSOV, the master ECM supplies +Battery voltage to the GSOV whenever the programmable logic determines that fuel is required to operate the engine.For more information on programmable parameters, refer to Troubleshooting, "Programming Parameters".Engine Monitoring and Protection
The control system monitors both the engine operation and the electrical circuits for the engine.Problems with engine operation such as low oil pressure produce an event code. The master ECM can issue a warning or a shutdown. This depends on the severity of the condition. For more information, refer to Troubleshooting, "Event Codes".Problems with an electrical circuit such as an open circuit produce a diagnostic code. For more information, refer to Troubleshooting, "Diagnostic Trouble Codes".Ignition Control
The control system provides variable ignition timing that is sensitive to detonation.Each cylinder has an ignition transformer that is located under the valve cover for the cylinder. To initiate combustion, an ECM sends a pulse of approximately 100 V to the primary coil of an ignition transformer at the appropriate time and for the appropriate duration. The transformer steps up the voltage in order to create a spark across the spark plug electrode.Detonation sensors monitor the engine for excessive detonation. The engine has ten detonation sensors. Each sensor monitors two adjacent cylinders. The sensors generate data on vibration that is processed by each ECM in order to determine detonation levels. If detonation reaches an unacceptable level, the appropriate ECM retards the ignition timing of the affected cylinder or cylinders. If retarding the timing does not limit detonation to an acceptable level, the master ECM shuts down the engine.The master ECM and the slave ECM provide extensive diagnostics for the ignition system. The master ECM can receive a discrete input for ignition timing in order to allow operation with alternate fuels such as propane that requires a timing offset.
Parts bolt Honda:
90017-ZV0-000
90017-ZV0-000 BOLT, FLANGE (6X18) (Honda Code 1816370).
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, BF25AW LHA, BF25AW LHSA, BF25AW LRSA, BF25AW SHA, BF25AW SHSA, BF25AW SR
90019-ZV1-010
90019-ZV1-010 BOLT, FLANGE (5X10) (Honda Code 7183973).
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,
95701-06050-02
95701-06050-02 BOLT, FLANGE (6X50) (Honda Code 2801363).
BF115A1 LA, BF115A1 LCA, BF115A1 XA, BF115A1 XCA, BF115A2 LA, BF115A2 LCA, BF115A2 XA, BF115A2 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,
95701-08065-02
95701-08065-02 BOLT, FLANGE (8X65) (Honda Code 2801397).
BF115A1 LA, BF115A1 LCA, BF115A1 XA, BF115A1 XCA, BF115A2 LA, BF115A2 LCA, BF115A2 XA, BF115A2 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,
90022-ZV4-003
90022-ZV4-003 BOLT, HEX. (6X14) (Honda Code 2800290).
BF15A1 LA, BF15A1 LAS, BF15A1 SA, BF15A1 SAS, BF15A1 XAS, BF15A2 LA, BF15A2 LAS, BF15A2 SA, BF15A2 SAS, BF15A2 XAS, BF15AM LA, BF15AM LAS, BF15AM SA, BF15AM SAS, BF15AM XAS, BF15AW LA, BF15AW LAS, BF15AW SA, BF15AW SAS, BF15AW XAS, BF15AX LA, BF15AX
90013-ZV0-010
90013-ZV0-010 BOLT, FLANGE (6X12) (Honda Code 6556187).
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,
93404-05016-08
93404-05016-08 BOLT-WASHER (5X16) (Honda Code 5989025).
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
90001-ZM7-000
90001-ZM7-000 BOLT, CONNECTING ROD (Honda Code 5988910).
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