16882-ZW2-900 TUBE, FUEL (5.3X70) Honda
BF25D4 LHA, BF25D4 LHTA, BF25D4 LRGA, BF25D4 LRTA, BF25D4 SHA, BF25D4 SHGA, BF25D4 SRGA, BF25D4 SRTA, BF25D5 LHA, BF25D5 LHTA, BF25D5 LRGA, BF25D5 LRTA, BF25D5 SHA, BF25D5 SHGA, BF25D5 SRGA, BF25D5 SRTA, BF25D6 LHA, BF25D6 LHTA, BF25D6 LRGA, BF25D6 L
TUBE
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Compatible models:
BF25D4 LHA
BF25D4 LHTA
BF25D4 LRGA
BF25D4 LRTA
BF25D4 SHA
BF25D4 SHGA
BF25D4 SRGA
BF25D4 SRTA
BF25D5 LHA
BF25D5 LHTA
BF25D5 LRGA
BF25D5 LRTA
BF25D5 SHA
BF25D5 SHGA
BF25D5 SRGA
BF25D5 SRTA
BF25D6 LHA
BF25D6 LHTA
BF25D6 LRGA
BF25D6 LRTA
BF25D6 SHA
BF25D6 SHGA
BF25D6 SRGA
BF25D6 SRTA
BF25DK0 LRGA
BF25DK0 LRTA
BF25DK0 SHGA
BF25DK2 LRGA
BF25DK2 LRTA
BF25DK2 SHGA
BF25DK3 LRGA
BF25DK3 LRTA
BF25DK3 SHGA
BF30DK0 LRGA
BF30DK0 LRTA
BF30DK0 SRTA
BF30DK2 LRGA
BF30DK2 LRTA
BF30DK2 SRTA
BF30DK3 LRGA
BF30DK3 LRTA
BF30DK3 SRTA
Honda
Honda entire parts catalog list:
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- CARBURETOR TUBING » 16882-ZW2-900
- CARBURETOR TUBING » 16882-ZW2-900
- CARBURETOR TUBING » 16882-ZW2-900
- CARBURETOR TUBING » 16882-ZW2-900
- CARBURETOR TUBING » 16882-ZW2-900
- CARBURETOR TUBING » 16882-ZW2-900
- CARBURETOR TUBING » 16882-ZW2-900
- CARBURETOR TUBING » 16882-ZW2-900
- CARBURETOR TUBING » 16882-ZW2-900
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Information:
Sensor Locations for the C3.6 Engine
The illustrations in this section show the typical locations of the sensors for the industrial engine. Specific engines may appear different from the illustration due to differences in applications.
Illustration 1 g06163628
Typical example
(1) Temperature sensor for the NOx Reduction System (NRS)
(2) Throttle valve for the NOx Reduction System (NRS)
(3) Inlet manifold temperature and pressure sensor
(4) Fuel pressure sensor
(5) Exhaust gas valve for the NOx Reduction System (NRS)
(6) Temperature sensor for the NOx Reduction System (NRS)
(7) Differential Pressure Sensor for the NOx Reduction System (NRS)
(8) Coolant temperature sensor
(9) Suction control valve for the fuel injection pump
(10) Fuel temperature sensor
(11) Camshaft speed/timing sensor
Illustration 2 g06163694
Typical example
(12) Electronic actuated Turbocharger Wastegate (EWG)
(13) Electronic unit injector
(14) Crankshaft speed/timing sensor
(15) Engine oil pressure switch
(16) Electronic Control Module (ECM)
(17) Inlet air temperature sensor
(18) Water in fuel switchSensor Locations for the Clean Emissions Module
DOC, DPF, and SCR
Illustration 3 g06163533
Typical example
(1) DEF Injector
(2) SCR temperature sensor probe
(3) DOC temperature sensor probe
(4) Delta pressure sensor connection
(5) DOC, DPF, and SCR temperature sensor
(6) DPF temperature sensor probe
(7) Delta pressure sensor
(8) Delta pressure sensor connection
Illustration 4 g06163535
Typical example
(9) NOx sensor locationDOC and DPF
Illustration 5 g06367555
Typical example
(1) DOC and DPF temperature sensor
(2) Delta pressure sensor
(3) DPF temperature sensor probe
(4) DOC temperature sensor probe
(5) Delta pressure sensor connection
(6) Delta pressure sensor connectionECM
Illustration 6 g06163526
Typical example
The Electronic Control Module (ECM) (1) functions as a governor and a computer for the fuel system. The ECM receives signals from the sensors to control the timing and the engine speed.The electronic system consists of the ECM, the engine sensors, and inputs from the parent machine. The ECM is the computer. The personality module is the software for the computer. The personality module contains the operating maps. The operating maps define the following characteristics of the engine:
Engine rating
Torque curves
High and low idle speed (rpm)
Emissions
Injection timingThe factory passwords restrict changes to authorized personnel. Factory passwords are required to clear any event code. Refer to Troubleshooting, "Factory Passwords" for more information on the passwords.The ECM has an excellent record of reliability. Any problems in the system are most likely to be the connectors and the wiring harness. The ECM should be the last item in troubleshooting the engine.The programmable software contains all the fuel setting information. The information determines the engine performance.Flash programming is the method of programming or updating the programmable software. Refer to Troubleshooting, "Flash Programming" for the instructions on the flash programming of the programmable software.The ECM is sealed and the ECM needs no routine adjustment or maintenance.Engine Speed
The electronic controls determine the injection timing, the amount of fuel that is delivered to the cylinders and the intake manifold pressure if an electronically controlled wastegate is installed. These decisions are based on the actual conditions and the desired conditions at any given time.The ECM has software that compares the desired engine speed to the actual engine speed. The actual engine speed is determined through the crankshaft speed/timing sensor and the camshaft speed/timing sensor. If the desired engine speed is greater than the actual engine speed, the ECM will instruct the electronic unit injector to inject more fuel to increase engine speed.Timing Considerations
Once the ECM has determined the amount of fuel that is required, the software must determine the timing of the fuel injection. Fuel injection timing is determined by the ECM after considering input from the following components:
Engine coolant temperature sensor
The sensor for the inlet manifold temperature and pressureAt start-up, the ECM determines the TOP CENTER position of the number 1 cylinder from the secondary speed/timing sensor on the camshaft. The ECM decides when fuel injection should occur relative to the TOP CENTER position. The ECM optimizes engine performance by control of each of the electronic unit injectors so that the required amount of fuel is injected at the precise cycle of the engine. The electronic unit injectors are supplied high-pressure fuel from the fuel manifold. The ECM also provides the signal to the solenoid in the fuel injection pump. The solenoid in the fuel injection pump controls a valve in the fuel injection pump.
The illustrations in this section show the typical locations of the sensors for the industrial engine. Specific engines may appear different from the illustration due to differences in applications.
Illustration 1 g06163628
Typical example
(1) Temperature sensor for the NOx Reduction System (NRS)
(2) Throttle valve for the NOx Reduction System (NRS)
(3) Inlet manifold temperature and pressure sensor
(4) Fuel pressure sensor
(5) Exhaust gas valve for the NOx Reduction System (NRS)
(6) Temperature sensor for the NOx Reduction System (NRS)
(7) Differential Pressure Sensor for the NOx Reduction System (NRS)
(8) Coolant temperature sensor
(9) Suction control valve for the fuel injection pump
(10) Fuel temperature sensor
(11) Camshaft speed/timing sensor
Illustration 2 g06163694
Typical example
(12) Electronic actuated Turbocharger Wastegate (EWG)
(13) Electronic unit injector
(14) Crankshaft speed/timing sensor
(15) Engine oil pressure switch
(16) Electronic Control Module (ECM)
(17) Inlet air temperature sensor
(18) Water in fuel switchSensor Locations for the Clean Emissions Module
DOC, DPF, and SCR
Illustration 3 g06163533
Typical example
(1) DEF Injector
(2) SCR temperature sensor probe
(3) DOC temperature sensor probe
(4) Delta pressure sensor connection
(5) DOC, DPF, and SCR temperature sensor
(6) DPF temperature sensor probe
(7) Delta pressure sensor
(8) Delta pressure sensor connection
Illustration 4 g06163535
Typical example
(9) NOx sensor locationDOC and DPF
Illustration 5 g06367555
Typical example
(1) DOC and DPF temperature sensor
(2) Delta pressure sensor
(3) DPF temperature sensor probe
(4) DOC temperature sensor probe
(5) Delta pressure sensor connection
(6) Delta pressure sensor connectionECM
Illustration 6 g06163526
Typical example
The Electronic Control Module (ECM) (1) functions as a governor and a computer for the fuel system. The ECM receives signals from the sensors to control the timing and the engine speed.The electronic system consists of the ECM, the engine sensors, and inputs from the parent machine. The ECM is the computer. The personality module is the software for the computer. The personality module contains the operating maps. The operating maps define the following characteristics of the engine:
Engine rating
Torque curves
High and low idle speed (rpm)
Emissions
Injection timingThe factory passwords restrict changes to authorized personnel. Factory passwords are required to clear any event code. Refer to Troubleshooting, "Factory Passwords" for more information on the passwords.The ECM has an excellent record of reliability. Any problems in the system are most likely to be the connectors and the wiring harness. The ECM should be the last item in troubleshooting the engine.The programmable software contains all the fuel setting information. The information determines the engine performance.Flash programming is the method of programming or updating the programmable software. Refer to Troubleshooting, "Flash Programming" for the instructions on the flash programming of the programmable software.The ECM is sealed and the ECM needs no routine adjustment or maintenance.Engine Speed
The electronic controls determine the injection timing, the amount of fuel that is delivered to the cylinders and the intake manifold pressure if an electronically controlled wastegate is installed. These decisions are based on the actual conditions and the desired conditions at any given time.The ECM has software that compares the desired engine speed to the actual engine speed. The actual engine speed is determined through the crankshaft speed/timing sensor and the camshaft speed/timing sensor. If the desired engine speed is greater than the actual engine speed, the ECM will instruct the electronic unit injector to inject more fuel to increase engine speed.Timing Considerations
Once the ECM has determined the amount of fuel that is required, the software must determine the timing of the fuel injection. Fuel injection timing is determined by the ECM after considering input from the following components:
Engine coolant temperature sensor
The sensor for the inlet manifold temperature and pressureAt start-up, the ECM determines the TOP CENTER position of the number 1 cylinder from the secondary speed/timing sensor on the camshaft. The ECM decides when fuel injection should occur relative to the TOP CENTER position. The ECM optimizes engine performance by control of each of the electronic unit injectors so that the required amount of fuel is injected at the precise cycle of the engine. The electronic unit injectors are supplied high-pressure fuel from the fuel manifold. The ECM also provides the signal to the solenoid in the fuel injection pump. The solenoid in the fuel injection pump controls a valve in the fuel injection pump.
Parts tube Honda:
17701-ZV5-000
17701-ZV5-000 TUBE, FUEL (7.5X2000) (Honda Code 3702305).
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,
17702-ZV4-000
17702-ZV4-000 TUBE, FUEL SHORT (Honda Code 2795557).
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,
16861-ZV5-000
16861-ZV5-000 TUBE B, FUEL (Honda Code 3702065).
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,
16190-ZW2-900
16190-ZW2-900 TUBE, AIR VENT (A)
BF25D4 LHA, BF25D4 LHTA, BF25D4 LRGA, BF25D4 LRTA, BF25D4 SHA, BF25D4 SHGA, BF25D4 SRGA, BF25D4 SRTA, BF25D5 LHA, BF25D5 LHTA, BF25D5 LRGA, BF25D5 LRTA, BF25D5 SHA, BF25D5 SHGA, BF25D5 SRGA, BF25D5 SRTA, BF25D6 LHA, BF25D6 LHTA, BF25D6 LRGA, BF25D6 L
16871-ZV7-900
16871-ZV7-900 TUBE C, FUEL
BF25D4 LHA, BF25D4 LHTA, BF25D4 LRGA, BF25D4 LRTA, BF25D4 SHA, BF25D4 SHGA, BF25D4 SRGA, BF25D4 SRTA, BF25D5 LHA, BF25D5 LHTA, BF25D5 LRGA, BF25D5 LRTA, BF25D5 SHA, BF25D5 SHGA, BF25D5 SRGA, BF25D5 SRTA, BF25D6 LHA, BF25D6 LHTA, BF25D6 LRGA, BF25D6 L
16880-ZW2-900
16880-ZW2-900 TUBE, FUEL
BF25D4 LHA, BF25D4 LHTA, BF25D4 LRGA, BF25D4 LRTA, BF25D4 SHA, BF25D4 SHGA, BF25D4 SRGA, BF25D4 SRTA, BF25D5 LHA, BF25D5 LHTA, BF25D5 LRGA, BF25D5 LRTA, BF25D5 SHA, BF25D5 SHGA, BF25D5 SRGA, BF25D5 SRTA, BF25D6 LHA, BF25D6 LHTA, BF25D6 LRGA, BF25D6 L
16133-ZW2-900
16133-ZW2-900 TUBE (CARBURETOR NO.)
BF25DK2 LRGA, BF25DK2 LRTA, BF25DK2 SHGA, BF25DK3 LRGA, BF25DK3 LRTA, BF25DK3 SHGA, BF30D4 LHTA, BF30D4 LRGA, BF30D4 LRTA, BF30D4 SHGA, BF30D4 SRTA, BF30D5 LHTA, BF30D5 LRGA, BF30D5 LRTA, BF30D5 SHGA, BF30D5 SRTA, BF30D6 LHTA, BF30D6 LRGA, BF30D6 LRT
16891-ZW2-900
16891-ZW2-900 TUBE, BYSTARTER (CARBURETOR NO.)
BF25DK2 LRGA, BF25DK2 LRTA, BF25DK2 SHGA, BF25DK3 LRGA, BF25DK3 LRTA, BF25DK3 SHGA, BF30D4 LHTA, BF30D4 LRGA, BF30D4 LRTA, BF30D4 SHGA, BF30D4 SRTA, BF30D5 LHTA, BF30D5 LRGA, BF30D5 LRTA, BF30D5 SHGA, BF30D5 SRTA, BF30D6 LHTA, BF30D6 LRGA, BF30D6 LRT