0321888 ROLLER, Detent, shift & throttle plate EVINRUDE
100990S, 150940C, 50902C, 70973R, C155WTLM, CE275TLCDC, CE275TLCOS, CE300TLCDC, CE300TLCOS, E100MLCSC, E100STLCCA, E100STLCEM, E100STLESB, E100WMLCDR, E100WMLCOC, E100WMLCRS, E100WTLCUA, E100WTLESM, E100WTLZ, E10EESC, E110MLCCA, E110MLCDC, E110MLCEM,
ROLLER
Price: query
Rating:
Compatible models:
100990S
150940C
50902C
70973R
C155WTLM
CE275TLCDC
CE275TLCOS
CE300TLCDC
CE300TLCOS
E100MLCSC
E100STLCCA
E100STLCEM
E100STLESB
E100WMLCDR
E100WMLCOC
E100WMLCRS
E100WTLCUA
E100WTLESM
E100WTLZ
E10EESC
E110MLCCA
E110MLCDC
E110MLCEM
E110MLCUR
E115MLCIH
E115MLCOS
E115MLCRD
E115MLCSA
E115MLCTE
E115MLESB
E120TLCCA
E120TLCDC
E120TLCEM
E120TLCOS
E120TLCUR
E120TLESB
E125ESXESS
E125ESXW
E125WTPLE
E140CXCCS
E140CXCEC
E140CXESR
E140MLCIH
E140MLCSA
E140MLCTE
E140TLCDC
E140TLCOS
E140TLCRD
E140TLCUA
E150ANCRS
E150CXCCA
E150CXCEM
E150CXESB
E150STLCCA
E150STLCDC
E150STLCEM
E150STLCOH
E150STLCTE
E150STLCUR
E150STLESB
E150TLCDC
E150TLCOS
E150TLCRD
E150TLCUR
E150TRLCIA
E150TRLCNM
E150TRLCSF
E150TRLCTB
E150WPLSIF
E150WPLSSC
E150WTLEOR
E150WTLERC
E150WTLETG
E155WTLCDR
E155WTLCOC
E155WTLCRS
E155WTLCUA
E155WTLESM
E155WTLZ
E15EESR
E175STLCCM
E175STLCEB
E175STLESE
E175TLCDR
E175TLCOC
E175TLCUA
E175TRLCIM
E175TRLCNB
E175TRLCSA
E175TRLCTD
E185ESXESS
E185ESXW
E185TLCOC
E185TLCRS
E200CXCCR
E200CXCEA
E200CXESM
E200STLCUA
E200TRLCIB
E200TRLCNE
E200TRLCSF
E200TRLCTD
E200WPXEEN
E200WPXSIF
E200WPXSSC
E20CRCCA
E20CRCDC
E20CRCOS
E20CRCUR
E20ECEM
E20EESB
E225CLCUB
E225CXCCE
E225CXCED
E225CXESS
E235STLCOR
E235STLCRC
E235STLCTS
E235TLCOR
E235TLCRC
E235TRLCIB
E235TRLCNE
E235TRLCSM
E235TRLCTD
E25CNE
E25ECCM
E25ECDR
E25ECEB
E25ECOC
E25ECRS
E25ECTD
E25ECUA
E25EESE
E275CLCUR
E275CXCCA
E28ESLCEA
E28ESLESM
E300CLCUR
E300CXCCA
E300CXCEM
E300CXESB
E30ECCE
E30ECDM
E30ECED
E30ECOA
E30ECRR
E30ECUB
E30EESS
E35AELCDE
E35AELCUD
E35ECND
E35ECRR
E35ECTS
E35RCCE
E35RCDM
E35RCUB
E40AELCCS
E40ECDE
E40ECEC
E40ECOB
E40ECRM
E40ECUD
E40EESR
E45RCE
E45RCEIA
E45RCENM
E45RCESR
E48ESLCCC
E48ESLCER
E48ESLESA
E50BECCS
E50BECDE
E50BECEC
E50BECIC
E50BECNR
E50BECOB
E50BECRM
E50BECTA
E50BECUD
E50BEESR
E50ECSR
E50TELCEC
E55RCIM
E55RLCSA
E55RWLE
E55RWLEIA
E55RWLENM
E55RWLESR
E60ECIA
E60ECNM
E60ECSR
E60ECTB
E60ELCCR
E60ELCDS
E60ELCEA
E60ELCOD
E60ELCRE
E60ELCUC
E60ELESM
E65RWLCRS
E65WELSIR
E65WELSSC
E65WMLCDR
E65WMLCOC
E65WMLCUA
E65WMLESM
E65WMLZ
E70ELCCA
E70ELCDC
E70ELCEM
E70ELCIH
E70ELCNB
E70ELCOS
E70ELCRD
E70ELCSA
E70ELCTE
E70ELCUR
E70ELESB
E75ECCA
E75ECDC
E75ECOS
E75ECRD
E75ECUR
E75ERCIH
E75ERCNB
E75ERCSA
E75ERCTE
E85MLCSA
E88MSLCCC
E88MSLCER
E88MSLESA
E90MLCDC
E90MLCIH
E90MLCOS
E90MLCRD
E90MLCTE
E90MLCUR
HE55WMLM
HE55WMLZ
SE125WTPLJ
SE125WTPLN
SE125WTPLV
SE150WTPLB
SE150WTPLT
SE150WTPLY
SE200WTPLA
SE200WTPLG
SE200WTPLS
T65WMLM
VE48ESLCER
W100WTLM
EVINRUDE
BRP EVINRUDE entire parts catalog list:
- REMOTE CONTROL » 0321888
- REMOTE CONTROLH
50902C, 50903C, 55974C, 55975C 1979
70973R, 75942R, 75943R 1979
C155WTLM, C155WTXM 1988
CE275TLCDC, CE275TXCDC, E275PTLCDC, E275PTXCDC 1986
CE275TLCOS, CE275TXCOS, E275TLCOS, E275TXCOS 1985
CE300TLCDC, CE300TXCDC, E300TLCDC, E300TXCDC 1986
CE300TLCOS, CE300TXCOS, E300TLCOS, E300TXCOS 1985
E100MLCSC, E100TLCSC, E100TXCSC 1980
E100STLCCA 1988
E100STLCEM 1989
E100STLESB, VE100SLESB 1990
E100WMLCDR, E100WTLCDR, E100WTXCDR 1986
E100WMLCOC, E100WTLCOC 1985
E100WMLCRS, E100WTLCRS 1984
E100WTLCUA, E100WTXCUA 1987
E100WTLESM, E100WTXESM 1990
E100WTLZ, E100WTXZ 1989
E10EESC, E10ELESC, E10RELESC, E10RESC, E10RLESC, E10SELESC, TE10ELESC, TE10RELESC, TE10RLESC 1990
E110MLCCA, E110TLCCA, E110TXCCA 1988
E110MLCDC, E110TLCDC, E110TLCDF 1986
E110MLCEM, E110TLCEM, E110TXCEM, TE110TLCEM, TE110TLESF, TE110TXCEM 1989
E110MLCUR, E110TLCUR, E110TXCUR 1987
E115MLCIH, E115MLCIM, E115TLCIH, E115TLCIM, E115TXCIH, E115TXCIM 1981
E115MLCOS, E115TLCOS 1985
E115MLCRD, E115TLCRD, E115TXCRD 1984
E115MLCSA, E115TLCSA, E115TXCSA 1980
E115MLCTE, E115TLCTE, E115TXCTE 1983
E115MLESB, E115TLESB, E115TXESB, TE115TLESB, VE115TLESB, VE115TXESB 1990
E120TLCCA, E120TXCCA 1988
E120TLCDC, E120TXCDC 1986
E120TLCEM, E120TXCEM, TE120TXCEM 1989
E120TLCOS, E120TXCOS 1985
E120TLCUR, E120TXCUR 1987
E120TLESB, E120TXESB, VE120TLESB, VE120TXESB 1990
E125ESXESS 1990
E125ESXW 1989
E125WTPLE 1995
E140CXCCS, E140TLCCM, E140TXCCM 1988
E140CXCEC, E140TLCEB, E140TXCEB 1989
E140CXESR, E140TLESE, E140TXESE, VE140TLESE, VE140TXESE 1990
E140MLCIH, E140MLCIM, E140TRLCIH, E140TRLCIM, E140TRXCIH, E140TRXCIM 1981
E140MLCSA, E140TRLCSA, E140TRXCSA 1980
E140MLCTE, E140TRLCTE, E140TRXCTE 1983
E140TLCDC, E140TXCDC 1986
E140TLCOS, E140TXCOS 1985
E140TLCRD, E140TXCRD 1984
E140TLCUA, E140TXCUA 1987
E150ANCRS, E150STLCRD 1984
E150CXCCA, E150TLCCA, E150TXCCA 1988
E150CXCEM, E150TLCEM, E150TXCEM, TE150TXCEM 1989
E150CXESB, E150TLESB, E150TXESB, VE150TLESB, VE150TXESB 1990
E150STLCCA 1988
E150STLCDC 1986
E150STLCEM, TE150SLCEM 1989
E150STLCOH, E150STLCOS 1985
E150STLCTE 1983
E150STLCUR 1987
E150STLESB, TE150SLESB, VE150SLESB 1990
E150TLCDC, E150TXCDC 1986
E150TLCOS, E150TXCOS 1985
E150TLCRD, E150TXCRD 1984
E150TLCUR, E150TXCUR 1987
E150TRLCIA, E150TRLCIH, E150TRXCIA, E150TRXCIH 1981
E150TRLCNM, E150TRXCNM 1982
E150TRLCSF, E150TRLCSR, E150TRXCSF, E150TRXCSR 1980
E150TRLCTB, E150TRLCTE, E150TRXCTB, E150TRXCTE 1983
E150WPLSIF 2001
E150WPLSSC 2000
E150WTLEOR, E150WTXEOR 1995
E150WTLERC, E150WTLERV, E150WTXERC, E150WTXERV 1994
E150WTLETG, E150WTLETS, E150WTXETG, E150WTXETS 1993
E155WTLCDR, E155WTXCDR 1986
E155WTLCOC, E155WTXCOC 1985
E155WTLCRS, E155WTXCRS 1984
E155WTLCUA, E155WTXCUA 1987
E155WTLESM, E155WTXESM 1990
E155WTLZ, E155WTXZ 1989
E15EESR, E15ELESR, E15RELESR, E15RESR, E15RLESR 1990
E175STLCCM, E175TLCCM, E175TXCCM 1988
E175STLCEB, E175TXCEB 1989
E175STLESE, E175TXESE, VE175SLESE, VE175TXESE 1990
E175TLCDR, E175TXCDR 1986
E175TLCOC, E175TXCOC 1985
E175TLCUA, E175TXCUA 1987
E175TRLCIM, E175TRXCIH, E175TRXCIM 1981
E175TRLCNB, E175TRXCNB 1982
E175TRLCSA, E175TRLCSF, E175TRXCSA, E175TRXCSF 1980
E175TRLCTD, E175TRLCTE, E175TRXCTD, E175TRXCTE 1983
E185ESXESS 1990
E185ESXW 1989
E185TLCOC, E185TXCOC 1985
E185TLCRS, E185TXCRS 1984
E200CXCCR, E200STLCCM, E200TXCCR 1988
E200CXCEA, E200STLCEB, E200TXCEA, TE200TXCEA 1989
E200CXESM, E200STLESE, E200TXESM, VE200SLESE, VE200TXESM 1990
E200STLCUA, E200TXCUC 1987
E200TRLCIB, E200TRLCIH, E200TRXCIB, E200TRXCIH 1981
E200TRLCNE, E200TRXCNE 1982
E200TRLCSF, E200TRLCSM, E200TRXCSF, E200TRXCSM 1980
E200TRLCTD, E200TRLCTS, E200TRXCTD, E200TRXCTS 1983
E200WPXEEN, E200WPXEES 1999
E200WPXSIF 2001
E200WPXSSC 2000
E20CRCCA, E20CRLCCA, E20ECCA, E20ELCCA 1988
E20CRCDC, E20CRLCDC, E20ECDC, E20ELCDC, E20TECDC 1986
E20CRCOS, E20CRLCOS, E20ECOS, E20ELCOS 1985
E20CRCUR, E20CRLCUR, E20ECUR, E20ELCUR 1987
E20ECEM, E20ELCEM 1989
E20EESB, E20ELESB 1990
E225CLCUB, E225CXCUB, E225PLCUB, E225PXCUB, E225TLCUB, E225TXCUB 1987
E225CXCCE, E225PLCCE, E225PXCCE, E225TLCCE, E225TXCCE 1988
Information:
System Response:The event code will be logged.Possible Performance Effect:E539-1 (Warning)NoneE539-2 (Derate)The engine power will be derated.TroubleshootingIntake manifold air temperature can be high for the following reasons:
Engine's cooling system
High ambient air temperature
High inlet air restriction and/or high altitude
Restriction in the exhaust system
Faulty inlet air temperature sensor and/or circuitTest Step 1. Perform the following Inspections
Check for Cooling System Problems
Verify that the cooling system is filled to the proper level. If the coolant level is too low, air will get into the cooling system. Air in the cooling system may cause cavitation. This will cause a reduction in coolant flow which can damage a cooling system.
Check the quality of the coolant. Follow the recommendations in the Operation and Maintenance Manual.
Check for adequate coolant flow through the radiator. Check the inlet temperature of the coolant at the radiator inlet. Compare the reading to the regulated temperature. If the temperature is OK, check the outlet temperature of the coolant at the radiator outlet. A high temperature differential indicates an insufficient flow rate.
Check for air in the cooling system. Air can enter the cooling system in different ways. The most common causes of air in the cooling system are the incorrect filling of the cooling system and combustion gas leakage into the cooling system. Combustion gas can get into the system through a cracked cylinder liner, damaged cylinder liner seals, a cracked cylinder head, or a damaged cylinder head gasket.
Check the cooling system hoses and clamps. Damaged hoses with leaks can normally be seen. Hoses that have no visual leaks can soften during operation. The soft areas of the hose can become kinked during operation. These areas can also collapse during operation. These areas of the hose can restrict the coolant flow. Hoses become soft and/or get cracks after a period of time. The inside of a hose can deteriorate, and the loose particles of the hose can restrict the coolant flow.
If a sea water strainer is used in the application, verify that the sea water strainer is not plugged.
Check the heat exchanger for a restriction to the flow of water.
Check the water pump. A water pump with a damaged impeller does not pump enough coolant. Remove the water pump and check for damage to the impeller.
Check the water temperature regulator. A water temperature regulator that does not open, or a water temperature regulator that only opens part of the way can cause overheating.
If the cooling system is equipped with an expansion tank, check the shunt line for the expansion tank. The shunt line must remain submerged in the coolant for proper operation. A restriction of the shunt line from the expansion tank to the inlet of the jacket water pump will cause a reduction in water pump efficiency. A reduction in water pump efficiency will result in low coolant flow.
If the cooling system is equipped with an aftercooler, check the aftercooler. A restriction of air flow through the air to air aftercooler can cause overheating of the engine. Check for debris or deposits which would prevent the free flow of air through the aftercooler.
The engine may be running excessively in the lug condition. When the load that is applied to the engine is too large, the engine will run in the lug condition. When the engine is running in the lug condition, engine rpm does not increase with an increase of fuel. This lower engine rpm causes a reduction in coolant flow through the system. The lug condition causes excess heat from the increase in fuel consumption.
Check for High Ambient Air Temperature
Determine if the ambient air temperature is within the design specifications for the cooling system. When ambient temperatures are too high for the rating of the cooling system, there is not enough of a temperature difference between the ambient air and coolant temperatures.
Determine the cause of the high air temperature. Correct the situation, when possible.
Check for High Inlet Air Restriction and/or High Altitude Operation
When inlet air pressure is low, the turbocharger works harder in order to achieve the desired inlet manifold pressure. This increases inlet air temperature.
Measure the inlet air pressure while the engine is operating under load. For specific data, refer to the Technical Marketing Information for the engine.
Check for plugged air filters. Check for obstructions to the air inlet. A restriction of the air that enters the engine can cause high cylinder temperatures. High cylinder temperatures cause higher than normal temperatures in the cooling system.
Replace the air filters and/or remove the obstruction from the air inlet.
Consider high altitude operation. The cooling capability of the cooling system is reduced at higher altitudes. A pressurized cooling system that has been designed for the higher altitudes must be used. Ensure that the engine is configured for high altitude operation.
Check for Exhaust System Restriction Check for a restriction in the exhaust system. A restriction of the air that is coming out of the engine can cause high cylinder temperatures.Expected Result:A problem has been found in the cooling system and/or the related engine systems.Results:
OK - A thorough inspection revealed a problem.Repair: Repair the problem. Ensure that the repair eliminates the problem.STOP
Engine's cooling system
High ambient air temperature
High inlet air restriction and/or high altitude
Restriction in the exhaust system
Faulty inlet air temperature sensor and/or circuitTest Step 1. Perform the following Inspections
Check for Cooling System Problems
Verify that the cooling system is filled to the proper level. If the coolant level is too low, air will get into the cooling system. Air in the cooling system may cause cavitation. This will cause a reduction in coolant flow which can damage a cooling system.
Check the quality of the coolant. Follow the recommendations in the Operation and Maintenance Manual.
Check for adequate coolant flow through the radiator. Check the inlet temperature of the coolant at the radiator inlet. Compare the reading to the regulated temperature. If the temperature is OK, check the outlet temperature of the coolant at the radiator outlet. A high temperature differential indicates an insufficient flow rate.
Check for air in the cooling system. Air can enter the cooling system in different ways. The most common causes of air in the cooling system are the incorrect filling of the cooling system and combustion gas leakage into the cooling system. Combustion gas can get into the system through a cracked cylinder liner, damaged cylinder liner seals, a cracked cylinder head, or a damaged cylinder head gasket.
Check the cooling system hoses and clamps. Damaged hoses with leaks can normally be seen. Hoses that have no visual leaks can soften during operation. The soft areas of the hose can become kinked during operation. These areas can also collapse during operation. These areas of the hose can restrict the coolant flow. Hoses become soft and/or get cracks after a period of time. The inside of a hose can deteriorate, and the loose particles of the hose can restrict the coolant flow.
If a sea water strainer is used in the application, verify that the sea water strainer is not plugged.
Check the heat exchanger for a restriction to the flow of water.
Check the water pump. A water pump with a damaged impeller does not pump enough coolant. Remove the water pump and check for damage to the impeller.
Check the water temperature regulator. A water temperature regulator that does not open, or a water temperature regulator that only opens part of the way can cause overheating.
If the cooling system is equipped with an expansion tank, check the shunt line for the expansion tank. The shunt line must remain submerged in the coolant for proper operation. A restriction of the shunt line from the expansion tank to the inlet of the jacket water pump will cause a reduction in water pump efficiency. A reduction in water pump efficiency will result in low coolant flow.
If the cooling system is equipped with an aftercooler, check the aftercooler. A restriction of air flow through the air to air aftercooler can cause overheating of the engine. Check for debris or deposits which would prevent the free flow of air through the aftercooler.
The engine may be running excessively in the lug condition. When the load that is applied to the engine is too large, the engine will run in the lug condition. When the engine is running in the lug condition, engine rpm does not increase with an increase of fuel. This lower engine rpm causes a reduction in coolant flow through the system. The lug condition causes excess heat from the increase in fuel consumption.
Check for High Ambient Air Temperature
Determine if the ambient air temperature is within the design specifications for the cooling system. When ambient temperatures are too high for the rating of the cooling system, there is not enough of a temperature difference between the ambient air and coolant temperatures.
Determine the cause of the high air temperature. Correct the situation, when possible.
Check for High Inlet Air Restriction and/or High Altitude Operation
When inlet air pressure is low, the turbocharger works harder in order to achieve the desired inlet manifold pressure. This increases inlet air temperature.
Measure the inlet air pressure while the engine is operating under load. For specific data, refer to the Technical Marketing Information for the engine.
Check for plugged air filters. Check for obstructions to the air inlet. A restriction of the air that enters the engine can cause high cylinder temperatures. High cylinder temperatures cause higher than normal temperatures in the cooling system.
Replace the air filters and/or remove the obstruction from the air inlet.
Consider high altitude operation. The cooling capability of the cooling system is reduced at higher altitudes. A pressurized cooling system that has been designed for the higher altitudes must be used. Ensure that the engine is configured for high altitude operation.
Check for Exhaust System Restriction Check for a restriction in the exhaust system. A restriction of the air that is coming out of the engine can cause high cylinder temperatures.Expected Result:A problem has been found in the cooling system and/or the related engine systems.Results:
OK - A thorough inspection revealed a problem.Repair: Repair the problem. Ensure that the repair eliminates the problem.STOP
Parts roller EVINRUDE:
0308199
0308199 ROLLER, Motor cover latch
100193A, 100293R, 100990S, 115083D, 115393M, 115493B, 115593, 115693D, 115790S, 115793S, 115890C, 115983E, 125183C, 125283R, 135383M, 135443B, 135543E, 135643D, 150840S, 150940C, 175740S, 18002C, 18102S, 18202R, 18304A, 18802A, 18902B, 200640S, 25002
0383955
0383955 ROLLER BEARING ASSY
50172S, 50202C, 50302R, 50442M, 50542B, 50902C, 55642E, 55772D, 55874S, 65272S, 65372R, 70442M, 70572B, 70673D, 70773S, 70873C, 70973R, 75542B, 75642D, E70ELCIH, E70ELCSA, E75ERCIH, E75ERCSA
0385175
0385175 ROLLER BEARING ASSY.
40202E, 40304D, 40404S, 40504C, 40604A, 50542B, 50902C, 55642E, 55772D, 55874S, 70773S, 70873C, 70973R, 75542B, 75642D, E35AELCDE, E35AELCUD, E40AELCCS, E40ECDE, E40ECOB, E40ECRM, E40ECUD, E40RSLR, E40RWCDB, E40RWCOM, E40RWCRA, E48ESLCCC, E48ESLCCC,
0329881
0329881 ROLLER,Helix to cable
B25JREUR, BE10EEDD, BE10FAEDC, BE10FAEUR, BE10FDLECM, BE10FDLEDR, BE10FDLEUA, BE10RELEUS, BE15EEDS, BE15FAEDR, BE15FAEUA, BE15FDLECM, BE15RELEUC, BE20SRECB, BE20SREDA, BE20SREUM, BE25ARECA, BE25AREDC, BE25AREUR, BE25BAECM, BE25BAEDR, BE30BAECS, BE30B
0330854
0330854 ROLLER BEARING ASSY.
B25JREUR, BE20SEECB, BE20SEEDA, BE20SEEUM, BE20SRECB, BE20SREDA, BE20SREUM, BE25BAECM, BE25BAEDR, BE25EECE, BE25EEDM, BE25EEUB, BE30BAECS, BE30BAEDE, BE30BAEEC, BE30BAEUD, BE30BASIA, BE30BASSR, BE30EECS, BE30EEDE, BE30EEUD, E20CRCCA, E20CRCDC, E20CRC
0330718
0330718 ROLLER, Cam follower
E100STLCCA, E100WMLCDR, E100WTLCUA, E110MLCCA, E110MLCDC, E110MLCUR, E50TTLECA, E50TTLEDC, E50TTLEOS, E50TTLEUR, E60ELCCR, E60ELCEA, E60ELESM, E60TTLECM, E60TTLEDR, E60TTLEIB, E60TTLENE, E60TTLEOC, E60TTLERS, E60TTLETD, E60TTLEUA, E65RSLC, E65RSLM, E
0398529
0398529 ROLLER BEARING ASSY.
BE40EECR, BE40EEDS, BE40EEUC, BE50BEEDS, BE50DTLEDC, BE50DTLEUR, BE50ESECC, BE50RLEUC, BE60ELEDR, BE60ELEUA, BE60TLECM, BE70ELECB, BE70ELEDA, BE70ELEUM, E35AELCUD, E40AELCCS, E40ECEC, E40ECUD, E40EEIA, E40EENJ, E40EEOD, E40EERE, E40EESR, E40EETB, E40
0432572
0432572 ROLLER, Cam follower
BE115TLEDA, BE40EECR, BE40EEDS, BE40EEUC, BE50BEEDS, BE50ESECC, BE50RLEUC, E100STLCEM, E100STLEIE, E100STLEND, E100STLERC, E100STLESB, E100STLETS, E100WTLEDR, E100WTLEIB, E100WTLENE, E100WTLEOC, E100WTLERS, E100WTLESM, E100WTLETD, E100WTLEUA, E100WTL