0391710 RUBBER MOUNT, Lower, std EVINRUDE
C155WTLM, E120TLCCA, E120TLCDC, E120TLCEM, E120TLCOS, E120TLCUR, E120TLESB, E125ESXESS, E125ESXW, E140CXCCS, E140CXCEC, E140CXESR, E140TLCDC, E140TLCOS, E140TLCUA, E150CXCCA, E150CXCEM, E150CXESB, E150TLCDC, E150TLCOS, E150TLCRD, E150TLCUR, E150TRLCI
RUBBER
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O'Neal Matrix Camo Glove, Gray/Yellow 10
O'Neal Hook and loop adjustable wrist closure || Lightweight, uncomplicated design for superb feel and comfort while riding || Long lasting and flexible materials for the perfect fit || Super lightweight design with bold non-fade graphics || Synthetic leather palm with double layer thumb reinforcement and Pre-curved tailoring for the best fit possible
O'Neal Hook and loop adjustable wrist closure || Lightweight, uncomplicated design for superb feel and comfort while riding || Long lasting and flexible materials for the perfect fit || Super lightweight design with bold non-fade graphics || Synthetic leather palm with double layer thumb reinforcement and Pre-curved tailoring for the best fit possible
Compatible models:
C155WTLM
E120TLCCA
E120TLCDC
E120TLCEM
E120TLCOS
E120TLCUR
E120TLESB
E125ESXESS
E125ESXW
E140CXCCS
E140CXCEC
E140CXESR
E140TLCDC
E140TLCOS
E140TLCUA
E150CXCCA
E150CXCEM
E150CXESB
E150TLCDC
E150TLCOS
E150TLCRD
E150TLCUR
E150TRLCIA
E150TRLCNM
E150TRLCTB
E155WTLESM
E155WTLZ
E175STLCCM
E175STLCEB
E175STLESE
E175TLCDR
E175TLCOC
E175TLCUA
E175TRLCIM
E175TRLCNB
E175TRLCTD
E185ESXESS
E185ESXW
E185TLCOC
E185TLCRS
E200CXCCR
E200CXCEA
E200CXESM
E200STLCDR
E200STLCUA
E200TRLCIB
E200TRLCNE
E200TRLCTD
E225CLCUB
E225CXCCE
E225CXCED
E225CXESS
E225PTLCDA
E235TLCOR
E235TLCRC
E235TRLCIB
E235TRLCNE
E235TRLCTD
EVINRUDE
BRP EVINRUDE entire parts catalog list:
- MIDSECTION » 0391710
E120TLCDC, E120TXCDC 1986
E120TLCEM, E120TXCEM, TE120TXCEM 1989
E120TLCOS, E120TXCOS 1985
E120TLCUR, E120TXCUR 1987
E120TLESB, E120TXESB, VE120TLESB, VE120TXESB 1990
E125ESXESS 1990
E125ESXW 1989
E140CXCCS, E140TLCCM, E140TXCCM 1988
E140CXCEC, E140TLCEB, E140TXCEB 1989
E140CXESR, E140TLESE, E140TXESE, VE140TLESE, VE140TXESE 1990
E140TLCDC, E140TXCDC 1986
E140TLCOS, E140TXCOS 1985
E140TLCUA, E140TXCUA 1987
E150CXCCA, E150TLCCA, E150TXCCA 1988
E150CXCEM, E150TLCEM, E150TXCEM, TE150TXCEM 1989
E150CXESB, E150TLESB, E150TXESB, VE150TLESB, VE150TXESB 1990
E150TLCDC, E150TXCDC 1986
E150TLCOS, E150TXCOS 1985
E150TLCRD, E150TXCRD 1984
E150TLCUR, E150TXCUR 1987
E150TRLCIA, E150TRLCIH, E150TRXCIA, E150TRXCIH 1981
E150TRLCNM, E150TRXCNM 1982
E150TRLCTB, E150TRLCTE, E150TRXCTB, E150TRXCTE 1983
E155WTLESM, E155WTXESM 1990
E155WTLZ, E155WTXZ 1989
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
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
E200STLCDR, E200TXCDS 1986
E200STLCUA, E200TXCUC 1987
E200TRLCIB, E200TRLCIH, E200TRXCIB, E200TRXCIH 1981
E200TRLCNE, E200TRXCNE 1982
E200TRLCTD, E200TRLCTS, E200TRXCTD, E200TRXCTS 1983
E225CLCUB, E225CXCUB, E225PLCUB, E225PXCUB, E225TLCUB, E225TXCUB 1987
E225CXCCE, E225PLCCE, E225PXCCE, E225TLCCE, E225TXCCE 1988
E225CXCED, E225PLCED, E225PXCED, E225TLCED, E225TXCED 1989
E225CXESS, E225PLESS, E225PXESS, E225TLESS, E225TXESS, VE225PLESS, VE225PXESS, VE225TLESS, VE225TXESS 1990
E225PTLCDA, E225PTXCDA, E225TLCDA, E225TXCDA 1986
E235TLCOR, E235TXCOR 1985
E235TLCRC, E235TXCRC 1984
E235TRLCIB, E235TRLCIH, E235TRXCIB, E235TRXCIH 1981
E235TRLCNE, E235TRXCNE 1982
E235TRLCTD, E235TRLCTS, E235TRXCTD, E235TRXCTS 1983
Information:
Electronic Controls
Electronic Control Module
The ECM consists of two main components, the control computer (hardware) and the flash file (software). The control computer consists of a microprocessor and electronic circuitry. The flash file contains the engine's operational characteristics. The operating maps influence the engine's performance.Engine Governor
The engine ECM governs engine speed. The engine ECM and the flash file work together by controlling the amount of fuel that is delivered by the injectors. Desired engine rpm is determined by the throttle position sensor signal and certain sensor readings. Diagnostic codes may derate the engine. Actual engine rpm is measured by the engine speed/timing signal.Fuel Injection
The engine ECM controls the timing and the duration of the fuel that is injected. The engine ECM varies the signals to the fuel injectors. Fuel is injected only while an injector solenoid is energized by a 105 volt signal from the engine ECM. The timing of the injection signal determines the engine timing. The length of the injection signal determines engine speed. By controlling the timing and duration of the 105 volt signal, the ECM controls the engine speed.Injection timing depends on the following conditions: desired engine rpm and load. The ECM detects the top center of each cylinder. The ECM sends an injection signal at the desired time.Cold Mode Operation
Cold mode operation automatically stops fuel injection to cylinders that are not firing. Cold mode operation has the following benefits: increased startability, reduced warm up period and reduced white smoke. The cold mode operation is activated whenever the engine coolant temperature falls below 63 °C (145 °F) and the following conditions are met:
An engine without the ether option has been running for ten seconds.
Ether injection has been completed for three seconds.
The engine has been idling for ten minutes.The engine will exit the cold cylinder cutout strategy for ten minutes under the following conditions:
Engine speed drops 50 rpm below low idle.
The throttle switch position is changed.The engine will exit the cold mode operation under the following conditions:
The coolant temperature rises above 70 °C (158 °F).
The Cylinder Cutout Test on Caterpillar Electronic Technician (ET) is activated.FRC Limit
The flash file inside the engine ECM sets certain limits on the amount of fuel that can be injected. The FRC limit is a limit that is based on the boost pressure. The boost pressure is calculated as the difference in pressure between atmospheric pressure and turbocharger outlet pressure. The FRC limit is used to control the air/fuel ratio for control of emissions. When the engine ECM senses a higher boost pressure, the engine ECM increases the FRC limit. A higher boost pressure indicates that there is more air in the cylinder. When the engine ECM increases the FRC limit, the engine ECM allows more fuel into the cylinder.Rated Fuel Position
The rated fuel position is a limit that is based on the power rating of the engine. The rated fuel position is similar to the rack stops and the torque spring on a mechanically governed engine. The rated fuel position determines maximum power and torque values for a specific engine family and a specific rating. The rated fuel position is programmed into the flash file at the factory.Electronic Governor
Illustration 1 g01214361
Electronic Control Module
The ECM consists of two main components, the control computer (hardware) and the flash file (software). The control computer consists of a microprocessor and electronic circuitry. The flash file contains the engine's operational characteristics. The operating maps influence the engine's performance.Engine Governor
The engine ECM governs engine speed. The engine ECM and the flash file work together by controlling the amount of fuel that is delivered by the injectors. Desired engine rpm is determined by the throttle position sensor signal and certain sensor readings. Diagnostic codes may derate the engine. Actual engine rpm is measured by the engine speed/timing signal.Fuel Injection
The engine ECM controls the timing and the duration of the fuel that is injected. The engine ECM varies the signals to the fuel injectors. Fuel is injected only while an injector solenoid is energized by a 105 volt signal from the engine ECM. The timing of the injection signal determines the engine timing. The length of the injection signal determines engine speed. By controlling the timing and duration of the 105 volt signal, the ECM controls the engine speed.Injection timing depends on the following conditions: desired engine rpm and load. The ECM detects the top center of each cylinder. The ECM sends an injection signal at the desired time.Cold Mode Operation
Cold mode operation automatically stops fuel injection to cylinders that are not firing. Cold mode operation has the following benefits: increased startability, reduced warm up period and reduced white smoke. The cold mode operation is activated whenever the engine coolant temperature falls below 63 °C (145 °F) and the following conditions are met:
An engine without the ether option has been running for ten seconds.
Ether injection has been completed for three seconds.
The engine has been idling for ten minutes.The engine will exit the cold cylinder cutout strategy for ten minutes under the following conditions:
Engine speed drops 50 rpm below low idle.
The throttle switch position is changed.The engine will exit the cold mode operation under the following conditions:
The coolant temperature rises above 70 °C (158 °F).
The Cylinder Cutout Test on Caterpillar Electronic Technician (ET) is activated.FRC Limit
The flash file inside the engine ECM sets certain limits on the amount of fuel that can be injected. The FRC limit is a limit that is based on the boost pressure. The boost pressure is calculated as the difference in pressure between atmospheric pressure and turbocharger outlet pressure. The FRC limit is used to control the air/fuel ratio for control of emissions. When the engine ECM senses a higher boost pressure, the engine ECM increases the FRC limit. A higher boost pressure indicates that there is more air in the cylinder. When the engine ECM increases the FRC limit, the engine ECM allows more fuel into the cylinder.Rated Fuel Position
The rated fuel position is a limit that is based on the power rating of the engine. The rated fuel position is similar to the rack stops and the torque spring on a mechanically governed engine. The rated fuel position determines maximum power and torque values for a specific engine family and a specific rating. The rated fuel position is programmed into the flash file at the factory.Electronic Governor
Illustration 1 g01214361
Parts rubber EVINRUDE:
0387998
0387998 RUBBER MOUNT,Hi performance
100990S, 115790S, 115890C, 150840S, 150940C, 175740S, 200640S, E100MLCSC, E115MLCIH, E115MLCSA, E140MLCIH, E140MLCSA, E150TRLCIA, E150TRLCSF, E175TRLCIM, E175TRLCSA, E200TRLCIB, E200TRLCSF, E235TRLCIB, E235TRLCSM, E85MLCSA, E90MLCIH
0387243
0387243 RUBBER MOUNT,Lower
150840S, 150940C, 175740S, 200640S, E150TRLCIA, E150TRLCSF, E175TRLCIM, E175TRLCSA, E200TRLCIB, E200TRLCSF, E235TRLCIB, E235TRLCSM
0387098
0387098 RUBBER MOUNT ASSY.,Upper
150840S, 150940C, 175740S, 200640S, E150ANCRS, E150STLCTE, E150TLCRD, E150TRLCIA, E150TRLCNM, E150TRLCSF, E150TRLCTB, E155WTLCRS, E175TRLCIM, E175TRLCNB, E175TRLCSA, E175TRLCTD, E185TLCRS, E200TRLCIB, E200TRLCNE, E200TRLCSF, E200TRLCTD, E235STLCRC, E
0391774
0391774 RUBBER MOUNT, Lower, hi perf.
CE300TLCOS, E100STLCCA, E100STLCEM, E100STLESB, E110MLCCA, E110MLCDC, E110MLCEM, E110MLCUR, E115MLCIH, E115MLCNB, E115MLCOS, E115MLCRD, E115MLCTE, E115MLESB, E140MLCIH, E140MLCNB, E140MLCTE, E140TLCRD, E150ANCRS, E150CXCCA, E150CXCEM, E150CXESB, E150
0395539
0395539 RUBBER MOUNT ASSY., Upper
BE130TLECE, BE130TLEDM, BE130TLEUB, BE250CXECB, BE250CXEDA, BE250CXEUM, C155WTLM, E120TLCCA, E120TLCDC, E120TLCEM, E120TLCOS, E120TLCUR, E120TLEIE, E120TLEND, E120TLERC, E120TLESB, E120TLETF, E125ESXENR, E125ESXERK, E125ESXESS, E125ESXETA, E125ESXW,