87132-ZW4-020 MARK, SIDE STRIPE (Honda Code 6150049). Honda
BF40A1 LHA, BF40A1 LHTA, BF40A1 LRA, BF40A1 LRTA, BF40A1 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
MARK
Price: query
Rating:
Compatible models:
BF40A1 LHA
BF40A1 LHTA
BF40A1 LRA
BF40A1 LRTA
BF40A1 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
BF50A1 LHTA
BF50A1 LRA
BF50A1 LRTA
BF50A1 SRJA
BF50A1 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
Honda
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Information:
Table 1
CDL Code Description Information
1901-5 Engine Intake Valve Actuator #1 : Current Below Normal The ECM monitors the current flow through the circuit for each actuator. If low current flow (open circuit) is detected, a -5 diagnostic code is activated. The ECM continues to try to activate the actuator. If high current flow (short circuit) is detected, a -6 diagnostic trouble code is activated. The ECM will disable the solenoid circuit in order to prevent damage from the high current flow. However, the ECM will periodically try to activate the actuator. If the short circuit remains, this sequence of events will be repeated until the problem is corrected.
The ECM takes the following actions while the code is active:
Engine power is derated by ten percent.
The amber warning lamp is illuminated.
These codes are usually caused by a wiring problem. The wiring problem can be on the outside of the engine or underneath the valve cover.
1901-6 Engine Intake Valve Actuator #1 : Current Above Normal
1902-5 Engine Intake Valve Actuator #2 : Current Below Normal
1902-6 Engine Intake Valve Actuator #2 : Current Above Normal
1903-5 Engine Intake Valve Actuator #3 : Current Below Normal
1903-6 Engine Intake Valve Actuator #3 : Current Above Normal
1904-5 Engine Intake Valve Actuator #4 : Current Below Normal
1904-6 Engine Intake Valve Actuator #4 : Current Above Normal
1905-5 Engine Intake Valve Actuator #5 : Current Below Normal
1905-6 Engine Intake Valve Actuator #5 : Current Above Normal
1906-5 Engine Intake Valve Actuator #6 : Current Below Normal
1906-6 Engine Intake Valve Actuator #6 : Current Above Normal
System Operation During Engine OperationThe intake valve actuation system does not operate until the engine has reached normal operating temperature. Also, the engine must meet certain operating conditions in order to activate the intake valve actuation system.There are three housings under the valve cover. Each housing contains two actuators. There is a solenoid for each actuator. The ECM sends a command to a solenoid when the ECM requires the intake valves for a cylinder to remain open. The ECM monitors the current flow through the circuit for the solenoid. The ECM activates a diagnostic code if the current flow is below normal or above normal."Intake Valve Actuator Solenoid Test"This test is available on the Caterpillar Electronic Technician (ET). The test helps diagnose problems with the circuits for the solenoids. The following conditions must be met before the test will function:
Engine speed must be zero.
Vehicle speed must be zero.
The transmission gearshift lever must be in neutral.
Illustration 1 g02300033
Schematic for the C15 engine
Illustration 2 g01185728
P2 terminals for the intake valve actuators
(18) Actuator 4 return
(21) Actuator 5 return
(22) Actuator 2 return
(31) Actuator 3 return
(42) Actuator 6 return
(50) Actuator 1 return
(58) Actuator 5 & 6 supply
(67) Actuator 3 & 4 supply
(68) Actuator 1 & 2 supply
Table 2
Troubleshooting Test Steps Values Results
1. Inspect the Electrical Connectors and the Wiring
A. Check the engine harness between the P2 connector and the connectors near the grommets. Look for the following problems:
1. Moisture
2. Loose connectors or damaged connectors
3.Damage that is caused by excessive heat
4. Damage that is caused by chafing
5. Improper routing of wiring
6. Damaged insulation
B.Inspect the connectors near the grommets. The connectors must be clean and dry.
C. Perform a 45 N (10 lb) pull test on each of the wires in the connectors. This test verifies that the wire is properly crimped to the terminal and that the terminal is properly inserted into the connector.
Moisture
Damage to connectors
Result: The wiring is OK.
If you are troubleshooting a -5 code, proceed to Test Step 2.
If you are troubleshooting a -6 code, proceed to Test Step 4.
Result: The wiring is not OK.
Repair the wiring problem. Replace parts, if necessary. Perform the "Intake Valve Actuator Solenoid Test".
If all of the actuators pass the test, troubleshooting is complete. Return the unit to service.
2. Short the External Wiring Harness
A.Connect a jumper wire to the engine harness connector. Connect the jumper wire between the appropriate terminals for the supply and for the return of the suspect actuator.
The jumper will replace the actuator and the valve cover wiring harness with a short circuit. Refer to Illustration 1 or Illustration 2.
B. Perform the "Intake Valve Actuator Solenoid Test". Determine the test result for the suspect cylinder.
Short Circuit indicated
Result: The test result indicated "Not Active: Device Open" for the suspect cylinder.
The ECM did not detect the jumper wire. There is an open circuit in the wiring between the valve cover connector and the P2 connector. There may be a problem inside a connector.
Repair the wiring problem. Replace parts, if necessary. Connect all of the electrical connectors.
Perform the "Intake Valve Actuator Solenoid Test". Verify that all of the cylinders pass the test.
Result: The test result indicated "Not Active: Device Short" for the suspect cylinder.
The ECM detected the jumper wire. The external engine wiring harness is OK.
proceed to Test Step 3.
3. Inspect Wiring Under the Valve Cover
A. Remove the valve cover. Look for these problems:
1. Loose connectors or damaged connectors
2.Damage that is caused by excessive heat
3. Damage that is caused by chafing
4. Improper routing of wiring
5. Damaged insulation
Repair any wiring problems. Replace parts, if necessary.
Connect all of the electrical connectors.
Perform the "Intake Valve Actuator Solenoid Test".
Damage to wires or connectors
Result: The suspect cylinder passed the test. the problem is resolved.
Return the engine to service.
Result: The suspect cylinder failed the test.
Replace the appropriate actuator housing.
Verify that all actuators pass the "Intake Valve Actuator Solenoid Test" after the new housing is installed.
Return the engine to service.
4. Create an Open in the External Wiring Harness
A. Disconnect the appropriate connector near the grommets. This will replace the actuator and the valve cover wiring harness with an open circuit.
Refer to Illustration 1 or Illustration 2.
B. Perform the "Intake Valve Actuator Solenoid Test". Determine the test result for the suspect cylinder.
Open Circuit
Result: The test result indicated "Not Active: Device Short" for the suspect cylinder.
The ECM did not detect the open circuit. There is a short circuit in the wiring between the valve cover connector and the P2 connector. There may be a problem inside a connector.
Repair the wiring. Replace parts, if necessary.
Connect all of the electrical
Parts mark Honda:
87124-ZV3-620
87124-ZV3-620 MARK, EMERGENCY SWITCH (Honda Code 3705340). INDICATION (ENGLISH)
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
87511-ZV5-620
87511-ZV5-620 MARK, CHANGE (ENGLISH) (Honda Code 3705423).
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
87125-ZV3-620
87125-ZV3-620 MARK, STARTER (ENGLISH) (Honda Code 3705365).
BF15A1 LAS, BF15A1 SAS, BF15A1 XAS, BF15A2 LAS, BF15A2 SAS, BF15A2 XAS, BF15AM LAS, BF15AM SAS, BF15AM XAS, BF15AW LAS, BF15AW SAS, BF15AW XAS, BF15AX LAS, BF15AX SAS, BF15AX XAS, BF15AY LAS, BF15AY SAS, BF15AY XAS, BF25A1 LHSA, BF25A1 SHSA, BF25A2 L
87532-ZV3-620
87532-ZV3-620 MARK, THROTTLE (ENGLISH) (Honda Code 3705464).
BF25A1 LHA, BF25A1 LHSA, BF25A1 SHA, BF25A1 SHSA, BF25A2 LHA, BF25A2 LHSA, BF25A2 SHA, BF25A2 SHSA, BF25A3 LHA, BF25A3 LHSA, BF25A3 SHA, BF25A3 SHSA, BF25AW LHA, BF25AW LHSA, BF25AW SHA, BF25AW SHSA, BF25AX LHA, BF25AX LHSA, BF25AX SHA, BF25AX SHSA,
87543-ZV5-000
87543-ZV5-000 MARK, ASSIST LEVER (E) (Honda Code 3705530).
BF35AM LHA, BF35AM LRA, BF35AM SHA, BF40A1 LHA, BF40A1 LRA, BF40A2 LHA, BF40A2 LRA, BF40A3 LHA, BF40A3 LRA, BF40A4 LHA, BF40A5 LHA, BF40A6 LHA, BF40AK0 LHA, BF40AW LHA, BF40AW LRA, BF40AX LHA, BF40AX LRA, BF40AY LHA, BF40AY LRA, BF40DK2 LHA, BF45AM L
87546-ZV5-621
87546-ZV5-621 MARK, EMERGENCY START (Honda Code 5396668). (ENGLISH)
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,
87702-ZV5-000
87702-ZV5-000 MARK, FAST IDLE (Honda Code 3705589).
BF15A1 LA, BF15A1 LAS, BF15A1 SA, BF15A1 SAS, BF15A1 XAS, BF15A2 LA, BF15A2 LAS, BF15A2 SA, BF15A2 SAS, BF15A2 XAS, BF25A1 LRSA, BF25A1 SRSA, BF25A1 XRSA, BF25A2 LRSA, BF25A2 SRSA, BF25A2 XRSA, BF25A3 LRSA, BF25A3 SRSA, BF25A3 XRSA, BF25AW LRSA, BF25
87634-ZW4-D20
87634-ZW4-D20 MARK, ENVIRONMENT (EPA 2006) (Honda Code 5688866).
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, BF25AW LHA, BF25AW LHSA, BF25AW LRSA, BF25AW SHA, BF25AW SHSA, BF25AW SRSA,