0329291 BUSHING, Swivel bracket EVINRUDE
BE40EECR, BE40EEDS, BE40EEUC, BE50BEEDS, BE50ESECC, BE50RLEUC, E105WELEEN, E105WELSIF, E105WELSSC, E105WRLEES, E105WRLSIF, E105WRLSSC, E115JKLEOC, E115JKLERS, E40ECEC, E40EEIA, E40EENJ, E40EEOD, E40EERE, E40EESR, E40EETB, E40JRECA, E40JREDC, E40JREOS
BUSHING
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Hacus - Forklift FPE274882 CUP 367 BOSCH Hacus Aftermarket - New
Hacus HIGH-QUALITY CONSTRUCTION: Made with premium materials; built to withstand the demands of industrial environments; offering excellent resistance to wear; corrosion; and mechanical stress. || VERSATILE COMPATIBILITY: Engineered to fit a wide range of forklift models; making it a versatile choice for various equipment configurations. || SAFETY FIRST - FPE products are ready for use with all certifications. || LEADING THE INDUSTRY - FPE is a leader in forklift products and accessories. We take pride in making the highest quality, premium, reliable forklifts on the market. || All products tested for durability, reliability, and performance.
Hacus HIGH-QUALITY CONSTRUCTION: Made with premium materials; built to withstand the demands of industrial environments; offering excellent resistance to wear; corrosion; and mechanical stress. || VERSATILE COMPATIBILITY: Engineered to fit a wide range of forklift models; making it a versatile choice for various equipment configurations. || SAFETY FIRST - FPE products are ready for use with all certifications. || LEADING THE INDUSTRY - FPE is a leader in forklift products and accessories. We take pride in making the highest quality, premium, reliable forklifts on the market. || All products tested for durability, reliability, and performance.
Compatible models:
BE40EECR
BE40EEDS
BE40EEUC
BE50BEEDS
BE50ESECC
BE50RLEUC
E105WELEEN
E105WELSIF
E105WELSSC
E105WRLEES
E105WRLSIF
E105WRLSSC
E115JKLEOC
E115JKLERS
E40ECEC
E40EEIA
E40EENJ
E40EEOD
E40EERE
E40EESR
E40EETB
E40JRECA
E40JREDC
E40JREOS
E40JREUR
E50BECEC
E50BEEIA
E50BEENJ
E50BEEOD
E50BEERE
E50BEESR
E50BEETB
E50TELCEC
E50TTLECA
E50TTLEDC
E50TTLEOS
E50TTLEUR
E60ELCCR
E60ELCEA
E60ELESM
E60TTLECM
E60TTLEDR
E60TTLEIB
E60TTLENE
E60TTLEOC
E60TTLERS
E60TTLETD
E60TTLEUA
E65RSLC
E65RSLM
E65RSLZ2
E65RWLCDR
E65RWLCOC
E65RWLCRS
E65WRLEEO
E65WRLSIR
E65WRLSSC
E70TTLEIE
E70TTLEND
E70TTLEOR
E70TTLERC
E70TTLETS
E85TTLEIE
E85TTLEND
E85TTLEOR
E85TTLERC
E85TTLETS
SE105RWLH
SE105RWLP
SE105WELV
SE125RWYJ
SE125RWYN
SE125RWYV
SE40RSLD
SE40RSLR
SE40RSLZ
SE65RSLD
EVINRUDE
BRP EVINRUDE entire parts catalog list:
- EXHAUST HOUSING & STERN & SWIVEL BRACKET » 0329291
BE40EEUC, BE40ELEUC, BE40TLEUC, E40ELEUC, E40REUC, E40RLEUC, E40TEEUC, E40TELEUC, E40TLEUC, E40TTLEUC, HE40REUC, HE40RLEUC 1997
BE50BEEDS, BE50BELEDS, BE50TLEDS, E50JEDS, E50TLEDS, SE50TLEDS 1996
BE50ESECC, BE50RLECR, BE50TLECR, BE50TSLECC, E50ESLECC, E50TLECR, E50TSLECC 1998
BE50RLEUC, BE50TLEUC, BE50TSLEUS, E50ESLEUR, E50JEUC, E50TLEUC, E50TSLEUS 1997
E105WELEEN, E105WELEES, E105WPLEES, E105WPXEES 1999
E105WELSIF, E105WPLSIF, E105WPXSIF 2001
E105WELSSC, E105WPLSSC, E105WPXSSC 2000
E105WRLEES, E105WRYEES 1999
E105WRLSIF, E105WRYSIF 2001
E105WRLSSC, E105WRYSSC 2000
E115JKLEOC 1995
E115JKLERS 1994
E40ECEC, E40ELCEC, E40RCEC, E40RLCEC, E40TECEC, E40TELCEC, E40TLCEC, E40TTLCEC, TE40ELCEC 1989
E40EEIA, E40ELEIA, E40REIA, E40RLEIA, E40TEEIA, E40TELEIA, E40TLEIA, E40TTLEIA, TE40ELEIA, VE40EEIA, VE40ELEIA, VE40TELEIA, VE40TLEIA 1991
E40EENJ, E40EENM, E40ELENJ, E40ELENM, E40RENM, E40RLENM, E40TEENJ, E40TEENM, E40TELENJ, E40TELENM, E40TLENJ, E40TLENM, E40TTLENM, TE40ELENJ, TE40ELENM, VE40EENJ, VE40EENM, VE40ELENJ, VE40ELENM, VE40TELENJ, VE40TELENM, VE40TLENJ, VE40TLENM 1992
E40EEOD, E40ELEOD, E40REOD, E40RLEOD, E40TEEOD, E40TELEOD, E40TLEOD, E40TTLEOD 1995
E40EERE, E40ELERE, E40RERE, E40RLERE, E40TEERE, E40TELERE, E40TLERE, E40TTLERE 1994
E40EESR, E40ELESR, E40RESR, E40RLESR, E40TEESR, E40TELESR, E40TLESR, E40TTLESR, TE40ELESR, TE40TELESF, TE40TELESR, VE40EESR, VE40ELESR, VE40TELESR, VE40TLESR 1990
E40EETB, E40ELETB, E40RETB, E40RLETB, E40TEETB, E40TELETB, E40TLETB, E40TLETF, E40TTLETB, E40TTLETF, TE40ELETB, VE40EETB, VE40ELETB, VE40TELETB, VE40TLETB, VE40TLETF 1993
E40JRECA 1998
E40JREDC 1996
E40JREOS 1995
E40JREUR 1997
E50BECEC, E50BELCEC, E50TLCEC, TE50TLCEC, TE50TLESF 1989
E50BEEIA, E50BELEIA, E50JEIA, E50TELEIA, E50TLEIA, VE50BEEIA, VE50BELEIA, VE50TLEIA 1991
E50BEENJ, E50BEENM, E50BELENJ, E50BELENM, E50JENJ, E50JENM, E50TELENM, E50TLENJ, E50TLENM, VE50BEENJ, VE50BEENM, VE50BELENJ, VE50BELENM, VE50TELENM, VE50TLENJ, VE50TLENM 1992
E50BEEOD, E50BELEOD, E50JEOD, E50TELEOD, E50TLEOD 1995
E50BEERE, E50BELERE, E50JERE, E50TELERE, E50TLERE 1994
E50BEESR, E50BELESR, E50TELESR, E50TLESR, TE50TLESF, TE50TLESR, VE50BEESR, VE50BELESR, VE50TLESR 1990
E50BEETB, E50BELETB, E50JETB, E50TELETB, E50TLETB, E50TLETF, VE50BEETB, VE50BELETB, VE50TLETB, VE50TLETF 1993
E50TELCEC 1989
E50TTLECA 1998
E50TTLEDC 1996
E50TTLEOS 1995
E50TTLEUR 1997
E60ELCCR, E60TLCCR, E60TTLCCR 1988
E60ELCEA, E60TLCEA, E60TTLCEA, TE60TLCEA, TE60TLESF 1989
E60ELESM, E60TLESM, E60TTLESM, TE60TLESF, TE60TLESM, VE60ELESM, VE60TLESM 1990
E60TTLECM 1998
E60TTLEDR 1996
E60TTLEIB 1991
E60TTLENE 1992
E60TTLEOC 1995
E60TTLERS, E60TTLERV 1994
E60TTLETD 1993
E60TTLEUA 1997
E65RSLC 1995
E65RSLM, SE65RSLM, SE65RSYM 1996
E65RSLZ2, SE65RSLZ2, SE65RSYZ2 1997
E65RWLCDR, E65TELCDR 1986
E65RWLCOC, E65TELCOC 1985
E65RWLCRS, E65TELCRS, E65WTLCRS 1984
E65WRLEEO, E65WRLEES, E65WRYEEO, E65WRYEES 1999
E65WRLSIR, E65WRYSIR 2001
E65WRLSSC, E65WRYSSC 2000
E70TTLEIE 1991
E70TTLEND 1992
E70TTLEOR 1995
E70TTLERC, E70TTLERV 1994
E70TTLETS 1993
E85TTLEIE 1991
E85TTLEND 1992
E85TTLEOR 1995
E85TTLERC 1994
E85TTLETS 1993
SE105RWLH, SE105RWYH 1998
SE105RWLP, SE105RWYP 1997
SE105WELV, SE105WEXV, SE105WRPLV, SE105WRPXV 1998
SE125RWYJ 1997
SE125RWYN 1998
SE125RWYV 1996
SE40RSLD 1997
SE40RSLR 1998
SE40RSLZ 1996
SE65RSLD, SE65RSYD 1998
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 g06484809
Typical example
(1) Temperature sensor for the NOx Reduction System (NRS)
(2) Aftercooler out temperature sensor
(3) Inlet manifold temperature and pressure sensor
(4) Exhaust gas valve for the NOx Reduction System (NRS)
(5) Fuel pressure sensor
(6) Coolant temperature sensor
(7) Suction control valve for the fuel injection pump
(8) Fuel temperature sensor
(9) Camshaft speed/timing sensor
Illustration 2 g06484819
Typical example
(10) Electronic actuated Turbocharger Wastegate (EWG)
(11) Electronic unit injector
(12) Crankshaft speed/timing sensor
(13) Engine oil pressure switch
(14) Electronic Control Module (ECM)
(15) Inlet air temperature sensor
(16) Water in fuel switchECM
Illustration 3 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. This valve controls the volume of fuel that enters the plungers. By controlling the volume of fuel that enters the plungers, this controls the pressure in the fuel manifold. Fuel that is not required for the engine is diverted away from the fuel injection pump back to the fuel tank.The ECM adjusts injection timing and fuel pressure for the best engine performance, the best fuel economy, and the best control of exhaust emissions.Fuel Injection
The programmable software inside the ECM sets certain limits on the amount of fuel that can be injected.The FRC Limit is a limit that is based on intake manifold air pressure and engine rpm. The FRC Limit is used to control the air/fuel ratio to control the exhaust emissions of the engine. When the ECM senses a higher intake manifold air pressure, the ECM increases the FRC Limit. A higher intake manifold air pressure indicates that there is more air in the cylinder. When the ECM increases the FRC Limit, the ECM allows 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 enables the engine power and torque outputs to conform to the power and torque curves of a specific engine model.These limits are in the programmable software and these limits cannot be changed.The ECM controls the following characteristics:
Boost pressure
Operation of the NOx reduction systemDiagnostic Codes
When the ECM detects an electronic system problem, the ECM generates a diagnostic code. Also, the ECM logs the diagnostic code to indicate the time of the problems occurrence. The ECM also logs the number of occurrences of the problem. Diagnostic codes are provided to indicate that the ECM has detected an electrical problem or an electronic problem with the engine control system. Sometimes, the engine performance can be affected when the condition that is causing the code exists.If the operator indicates that a performance problem occurs, the diagnostic code may indicate the cause of the problem. Use a laptop computer to access the diagnostic codes. The problem should then be corrected.Event Codes
Event Codes are used to indicate that the ECM has detected an abnormal engine operating condition. The ECM will log the occurrence of the event code. This does not indicate an electrical malfunction or an electronic malfunction. If the temperature of the coolant in the engine is higher than the permitted limit, then the ECM will detect the condition. The ECM will then log an event code for the condition.Passwords
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 g06484809
Typical example
(1) Temperature sensor for the NOx Reduction System (NRS)
(2) Aftercooler out temperature sensor
(3) Inlet manifold temperature and pressure sensor
(4) Exhaust gas valve for the NOx Reduction System (NRS)
(5) Fuel pressure sensor
(6) Coolant temperature sensor
(7) Suction control valve for the fuel injection pump
(8) Fuel temperature sensor
(9) Camshaft speed/timing sensor
Illustration 2 g06484819
Typical example
(10) Electronic actuated Turbocharger Wastegate (EWG)
(11) Electronic unit injector
(12) Crankshaft speed/timing sensor
(13) Engine oil pressure switch
(14) Electronic Control Module (ECM)
(15) Inlet air temperature sensor
(16) Water in fuel switchECM
Illustration 3 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. This valve controls the volume of fuel that enters the plungers. By controlling the volume of fuel that enters the plungers, this controls the pressure in the fuel manifold. Fuel that is not required for the engine is diverted away from the fuel injection pump back to the fuel tank.The ECM adjusts injection timing and fuel pressure for the best engine performance, the best fuel economy, and the best control of exhaust emissions.Fuel Injection
The programmable software inside the ECM sets certain limits on the amount of fuel that can be injected.The FRC Limit is a limit that is based on intake manifold air pressure and engine rpm. The FRC Limit is used to control the air/fuel ratio to control the exhaust emissions of the engine. When the ECM senses a higher intake manifold air pressure, the ECM increases the FRC Limit. A higher intake manifold air pressure indicates that there is more air in the cylinder. When the ECM increases the FRC Limit, the ECM allows 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 enables the engine power and torque outputs to conform to the power and torque curves of a specific engine model.These limits are in the programmable software and these limits cannot be changed.The ECM controls the following characteristics:
Boost pressure
Operation of the NOx reduction systemDiagnostic Codes
When the ECM detects an electronic system problem, the ECM generates a diagnostic code. Also, the ECM logs the diagnostic code to indicate the time of the problems occurrence. The ECM also logs the number of occurrences of the problem. Diagnostic codes are provided to indicate that the ECM has detected an electrical problem or an electronic problem with the engine control system. Sometimes, the engine performance can be affected when the condition that is causing the code exists.If the operator indicates that a performance problem occurs, the diagnostic code may indicate the cause of the problem. Use a laptop computer to access the diagnostic codes. The problem should then be corrected.Event Codes
Event Codes are used to indicate that the ECM has detected an abnormal engine operating condition. The ECM will log the occurrence of the event code. This does not indicate an electrical malfunction or an electronic malfunction. If the temperature of the coolant in the engine is higher than the permitted limit, then the ECM will detect the condition. The ECM will then log an event code for the condition.Passwords
Parts bushing EVINRUDE:
0314125
0314125 BUSHING,Cam to rod
100193A, 100293R, 100882B, 100990S, 115083D, 115393M, 115493B, 115593, 115693D, 115790S, 115793S, 115890C, 115983E, 125183C, 125283R, 135383M, 135443B, 135543E, 135643D, 150840S, 150940C, 175740S, 200640S, 50172S, 50202C, 50302R, 50442M, 50542B, 5090
0308532
0308532 BUSHING,Throttle lever
100193A, 100293R, 100882B, 100990S, 115083D, 115393M, 115493B, 115593, 115693D, 115790S, 115793S, 115890C, 115983E, 125183C, 125283R, 135383M, 135443B, 135543E, 135643D, 150840S, 150940C, 175740S, 200640S, 40072A, 40202E, 40304D, 40404S, 40504C, 4060
0314137
0314137 BUSHING, Throttle cam
100193A, 100293R, 100990S, 115083D, 115393M, 115493B, 115593, 115693D, 115790S, 115793S, 115890C, 115983E, 125183C, 125283R, 135383M, 135443B, 135543E, 135643D, 55872A, 55972A, 60072B, 60172C, 65272S, 65372R, 70442M, 70572B, 70673D, 70773S, 70873C, 7
0311015
0311015 BUSHING, Throttle cam
10424G, 10524C, 10624G, 10724A, 10824M, 10924B, 150840S, 150940C, 15404G, 15504C, 15604A, 175740S, 200640S, 50172S, 50202C, 50302R, 50442M, 50542B, 50902C, 55642E, 55772D, 55874S, BE115ELEDR, BE115ELEUA, BE115GLECM, BE150ELECD, BE150ELEDB, BE150ELEUC
0325452
0325452 BUSHING, Steering handle to bracket
BE40EECR, BE40EEDS, BE40EEUC, BE50BEEDS, BE50ESECC, BE50RLEUC, E105WRLEES, E105WRLSIF, E105WRLSSC, E115JKLEOC, E115JKLERS, E35AELCDE, E35AELCUD, E40AELCCS, E40DELSOR, E40DELSRC, E40DPLSOR, E40DPLSRC, E40DRLAAA, E40DRLABA, E40DRLIIS, E40DRLINC, E40DRL
0336916
0336916 BUSHING, Pin
B25JREUR, BE20SRECB, BE20SREUM, BE25BAECM, BE30BAECS, BE30BAEEC, BE30BAEUD, BE30BASIA, BE30BASSR, BE40EEDS, BE40EEUC, BE50BEEDS, BE50RLEUC, E25JREDC, E25JREOS, E40EEIA, E40EENJ, E40EEOD, E40EERE, E40EETB, E40JRECA, E40JREDC, E40JREOS, E40JREUR, E50BE
0336875
0335479
0335479 BUSHING, Upper & lower mount
BE115ELEDR, BE115ELEUA, BE115GLECM, BE115TLEDA, BE130TLECE, BE130TLEDM, BE130TLEUB, BE150ELECD, BE150ELEDB, BE150ELEUC, BE175EXECD, BE175EXEDB, BE175EXEUC, BE200CXECM, BE200CXEDR, BE200CXEUA, BE225CXECS, BE225CXEDE, BE225CXEUD, BE50DTLEDC, BE50DTLEUR