0323950 KEY, Driveshaft to impeller EVINRUDE
100990S, 150940C, 50902C, 70973R, E100MLCSC, E100WMLCRS, E115MLCIH, E115MLCNB, E115MLCOS, E115MLCRD, E115MLCSA, E115MLCTE, E120TLCOS, E140MLCIH, E140MLCNB, E140MLCSA, E140MLCTE, E140TLCOS, E140TLCRD, E150ANCRS, E150STLCOH, E150TLCOS, E150TLCRD, E150T
KEY
Price: query
Rating:
Compatible models:
100990S
150940C
50902C
70973R
E100MLCSC
E100WMLCRS
E115MLCIH
E115MLCNB
E115MLCOS
E115MLCRD
E115MLCSA
E115MLCTE
E120TLCOS
E140MLCIH
E140MLCNB
E140MLCSA
E140MLCTE
E140TLCOS
E140TLCRD
E150ANCRS
E150STLCOH
E150TLCOS
E150TLCRD
E150TRLCIA
E150TRLCNM
E150TRLCSF
E150TRLCTB
E155WTLCRS
E175TLCOC
E175TRLCIM
E175TRLCNB
E175TRLCSA
E175TRLCTD
E185TLCOC
E185TLCRS
E200STLCDR
E200STLCUA
E200TRLCIB
E200TRLCNE
E200TRLCSF
E200TRLCTD
E225CLCUB
E225PTLCDA
E235STLCOR
E235STLCRC
E235TLCOR
E235TLCRC
E235TRLCIB
E235TRLCNE
E235TRLCSM
E235TRLCTD
E40ECOB
E40ECRM
E50BECIC
E50BECNR
E50BECOB
E50BECRM
E50BECTA
E50ECSR
E55RCIM
E55RLCSA
E55RSLN
E55RWLCOS
E55RWLCRD
E60ECIA
E60ECNM
E60ECSR
E60ECTB
E60ELCOD
E60ELCRE
E65RWLCOC
E65RWLCRS
E65WMLCOC
E70ELCIH
E70ELCNB
E70ELCOS
E70ELCRD
E70ELCSA
E70ELCTE
E75ECOS
E75ECRD
E75ERCIH
E75ERCNB
E75ERCSA
E75ERCTE
E85MLCSA
E90MLCIH
E90MLCNB
E90MLCOS
E90MLCRD
E90MLCTE
EVINRUDE
BRP EVINRUDE entire parts catalog list:
- GEARCASE » 0323950
50902C, 50903C, 55974C, 55975C 1979
70973R, 75942R, 75943R 1979
E100MLCSC, E100TLCSC, E100TXCSC 1980
E100WMLCRS, E100WTLCRS 1984
E115MLCIH, E115MLCIM, E115TLCIH, E115TLCIM, E115TXCIH, E115TXCIM 1981
E115MLCNB, E115TLCNB, E115TXCNB 1982
E115MLCOS, E115TLCOS 1985
E115MLCRD, E115TLCRD, E115TXCRD 1984
E115MLCSA, E115TLCSA, E115TXCSA 1980
E115MLCTE, E115TLCTE, E115TXCTE 1983
E120TLCOS, E120TXCOS 1985
E140MLCIH, E140MLCIM, E140TRLCIH, E140TRLCIM, E140TRXCIH, E140TRXCIM 1981
E140MLCNB, E140TRLCNB, E140TRXCNB 1982
E140MLCSA, E140TRLCSA, E140TRXCSA 1980
E140MLCTE, E140TRLCTE, E140TRXCTE 1983
E140TLCOS, E140TXCOS 1985
E140TLCRD, E140TXCRD 1984
E150ANCRS, E150STLCRD 1984
E150STLCOH, E150STLCOS 1985
E150TLCOS, E150TXCOS 1985
E150TLCRD, E150TXCRD 1984
E150TRLCIA, E150TRLCIH, E150TRXCIA, E150TRXCIH 1981
E150TRLCNM, E150TRXCNM 1982
E150TRLCSF, E150TRLCSR, E150TRXCSF, E150TRXCSR 1980
E150TRLCTB, E150TRLCTE, E150TRXCTB, E150TRXCTE 1983
E155WTLCRS, E155WTXCRS 1984
E175TLCOC, E175TXCOC 1985
E175TRLCIM, E175TRXCIH, E175TRXCIM 1981
E175TRLCNB, E175TRXCNB 1982
E175TRLCSA, E175TRLCSF, E175TRXCSA, E175TRXCSF 1980
E175TRLCTD, E175TRLCTE, E175TRXCTD, E175TRXCTE 1983
E185TLCOC, E185TXCOC 1985
E185TLCRS, E185TXCRS 1984
E200STLCDR, E200TXCDS 1986
E200STLCUA, E200TXCUC 1987
E200TRLCIB, E200TRLCIH, E200TRXCIB, E200TRXCIH 1981
E200TRLCNE, E200TRXCNE 1982
E200TRLCSF, E200TRLCSM, E200TRXCSF, E200TRXCSM 1980
E200TRLCTD, E200TRLCTS, E200TRXCTD, E200TRXCTS 1983
E225CLCUB, E225CXCUB, E225PLCUB, E225PXCUB, E225TLCUB, E225TXCUB 1987
E225PTLCDA, E225PTXCDA, E225TLCDA, E225TXCDA 1986
E235STLCOR 1985
E235STLCRC 1984
E235TLCOR, E235TXCOR 1985
E235TLCRC, E235TXCRC 1984
E235TRLCIB, E235TRLCIH, E235TRXCIB, E235TRXCIH 1981
E235TRLCNE, E235TRXCNE 1982
E235TRLCSM, E235TRXCSM 1980
E235TRLCTD, E235TRLCTS, E235TRXCTD, E235TRXCTS 1983
E40ECOB, E40ELCOB, E40RCOB, E40RLCOB, E40TECOB, E40TELCOB 1985
E40ECRM, E40ELCRM, E40RCRM, E40RLCRM, E40TECRM, E40TELCRM 1984
E50BECIC, E50BELCIC 1981
E50BECNR, E50BELCNR 1982
E50BECOB, E50BELCOB, E50TELCOB, E50TLCOB 1985
E50BECRM, E50BELCRM, E50TELCRM, E50TLCRM 1984
E50BECTA, E50BELCTA, E50TELCTA 1983
E50ECSR, E50ELCSR 1980
E55RCIM, E55TLCIM 1981
E55RLCSA 1980
E55RSLN, E55RSLN-2, E55RSN, E55RSN-2, E55RSYN, E55RSYN-2 1983
E55RWLCOS 1985
E55RWLCRD 1984
E60ECIA, E60ECIH, E60ELCIA, E60ELCIH, E60TLCIA, E60TLCIH 1981
E60ECNM, E60ELCNM, E60TLCNM 1982
E60ECSR, E60ELCSR 1980
E60ECTB, E60ELCTB, E60TLCTB 1983
E60ELCOD, E60TLCOD 1985
E60ELCRE, E60TLCRE 1984
E65RWLCOC, E65TELCOC 1985
E65RWLCRS, E65TELCRS, E65WTLCRS 1984
E65WMLCOC, E65WTLCOC 1985
E70ELCIH, E70ELCIM, E70TLCIM 1981
E70ELCNB, E70TLCNB 1982
E70ELCOS, E70TLCOS 1985
E70ELCRD, E70TLCRD 1984
E70ELCSA 1980
E70ELCTE, E70TLCTE 1983
E75ECOS 1985
E75ECRD, E75ELCRD, E75TLCRD 1984
E75ERCIH, E75ERCIM, E75ERLCIH, E75ERLCIM, E75TRLCIH, E75TRLCIM 1981
E75ERCNB, E75ERLCNB, E75TRLCNB 1982
E75ERCSA, E75ERLCSA, E75TRLCSA 1980
E75ERCTE, E75ERLCTE, E75TRLCTE 1983
E85MLCSA, E85STLCSA, E85STXCSA 1980
E90MLCIH, E90MLCIM, E90TLCIH, E90TLCIM, E90TXCIH, E90TXCIM 1981
E90MLCNB, E90TLCNB, E90TXCNB 1982
E90MLCOS, E90TLCOS, E90TXCOS 1985
E90MLCRD, E90TLCRD, E90TXCRD 1984
E90MLCTE, E90TLCTE, E90TXCTE 1983
Information:
Illustration 1 g01122516
Air flow through the engine
(1) Exhaust outlet
(2) Air inlet
(3) Turbocharger
(4) Air cleaner
(5) Exhaust manifold
(6) Exhaust valves
(7) Inlet valves
(8) Sea water inlet to aftercooler
(9) Sea water outlet from aftercooler
(10) Aftercooler
(11) Cylinder head Clean inlet air from the air cleaner (4) is pulled through the air inlet of the turbocharger (3) by the turning of the compressor wheel. The compressor wheel causes a compression of the air. The turbocharger compresses the inlet air so that a larger volume of air can be drawn into the cylinders. This compressing of the inlet air is referred to as boost. The compression of the inlet air causes the temperature of the air to increase. The air then flows to the aftercooler (10). The aftercooler utilized cool sea water in order to cool the inlet air. Cooling of the inlet air causes the air to become more dense. This increases the combustion efficiency and the horsepower output of the engine. The air then flows from the aftercooler to the inlet manifold of the engine. When the inlet valves (7) open, the air flows into the engine cylinders. The air is mixed with the fuel for combustion. When the exhaust valves (6) open, the exhaust gases go out of the engine cylinders and into exhaust manifold (5). From the exhaust manifold, the exhaust gases flow through the blades of the turbine wheel in the turbocharger (3). This causes the turbine wheel to spin. The exhaust gases then flow out of exhaust outlet (1) of the turbocharger.Turbocharger
Two turbochargers are mounted on the rear of the engine. All of the exhaust gases from the left exhaust manifold goes through the left turbocharger, and the right turbocharger uses the exhaust from the right exhaust manifold.
Illustration 2 g01385582
Turbocharger
(12) Air inlet
(13) Compressor housing
(14) Compressor wheel
(15) Bearing
(16) Oil Inlet port
(17) Bearing
(18) Turbine housing
(19) Turbine wheel
(20) Exhaust outlet
(21) Oil outlet port
(22) Exhaust inlet All of the air that enters the engine passes through the turbocharger. All of the exhaust gases from the engine pass through the turbocharger.The exhaust gases enter turbine housing (18) through exhaust inlet (22). The exhaust gas pushes on the blades of the turbine wheel (19). The turbine wheel is connected by a shaft to the compressor wheel (14).Air that passes through the air filters enters the compressor housing air inlet (12) by the rotation of compressor wheel (14). The compressor wheel causes the inlet air to be pushed into the inlet side of the engine. Boost pressure is caused when the compressor wheel pushes more air into the inlet side of the engine. This results in an inlet manifold pressure that exceeds atmospheric pressure. This allows the engine to burn more fuel. When the engine burns more fuel the engine produces more power.When the throttle is opened, more fuel is injected into the cylinders. The combustion of this additional fuel produces greater exhaust temperature. The additional exhaust temperature causes the turbine and the compressor wheels of the turbocharger to turn faster. As the compressor wheel turns faster, more air is forced into the cylinders. The increased flow of air gives the engine more power by allowing the engine to burn the additional fuel with greater efficiency.Bearings (15) and (17) for the turbocharger use engine oil under pressure for lubrication and cooling. The oil comes in through oil inlet port (16). The oil then goes through passages in the center section in order to lubricate the bearings. This oil also cools the bearings. Oil from the turbocharger goes out through oil outlet port (21) in the bottom of the center section. The oil then goes back to the engine oil pan. Aftercooler
The C32 has a sea water aftercooler. The aftercooler is installed above the inlet manifold.
Illustration 3 g01385585
Air inlet system (typical example)
(23) Turbocharger
(24) Aftercooler
(25) Elbow on the front bonnet of the oil cooler The inlet air from the compressor side of the turbocharger flows into the aftercooler. The air passes through the core assembly which lowers the temperature as much as 38°C to 93°C (100°F to 200°F). The cooler air flows out of the bottom of the aftercooler and into the air chamber. The cooler air then flows through the inlet ports (passages) in the cylinder heads. Cooling the inlet air causes the air to become more dense. Dense air will help the engine burn the fuel more efficiently. This gives the engine more power.Valve System Components
Illustration 4 g01385586
Valve system components
(26) Rocker arm
(27) Locknut
(28) Rocker arm shaft
(29) Camshaft
(30) Valve bridge The valve train controls the flow of inlet air and exhaust gases into the cylinders and out of the cylinders during engine operation. The camshaft (29) controls the timing of the valves during engine operation.The crankshaft gear drives the camshaft gear through an idler gear. The camshaft must be timed to the crankshaft in order to get the correct relation between the piston position and the valve position.The camshaft has three camshaft lobes for each cylinder. One camshaft lobe operates the inlet valves. One camshaft lobe operates the exhaust valves. One camshaft lobe operates the unit injector. The camshaft lobes cause the follower on the rocker arm in order to actuate the valves and the unit injector.Each cylinder has two inlet valves and two exhaust valves. Valve springs hold the valves closed and the valve springs resist the opening of the valves. This ensures that the valves will close at high rpm and under high boost pressures. Valve rotators cause the valves to rotate while the engine is running. The rotation of the valves prevents the valves from burning by constantly changing the contact area of the valve face and the valve seat. This rotation gives the valves longer service life.
Parts key EVINRUDE:
0307480
0307480 KEY,Flywheel to crankshaft
100193A, 100293R, 100882B, 100990S, 115083D, 115393M, 115493B, 115593, 115693D, 115790S, 115793S, 115890C, 115983E, 125183C, 125283R, 135383M, 135443B, 135543E, 135643D, 150840S, 150940C, 175740S, 200640S, 25702H, 25802C, 25904R, 33002M, 33802M, 3390
0120395
0120395 KEY,Flywheel
1002R, 18002C, 1802S, 18102S, 18202R, 18304A, 18802A, 18902B, 1902C, 2102A, 2202M, 2302B, 2402E, 25002C, 2502D, 25102S, 25202R, 25302A, 25402M, 25502B, 25602E, 25902B, 2602S, 2702C, 2802R, 2902A, 3802A, 4006E, 4106D, 4206S, 4306C, 4406R, 4506A, 4606M
0305720
0305720 KEY,Pinion
6002B, 6102E, 6202D, 6302S, 6402C, 6504R, 6802A, 6902M, BE200CXEDR, BE225CXEDE, CE275TLCDC, CE300TLCDC, E185ESERK, E185ESXENR, E185ESXESS, E185ESXETA, E185ESXW, E200CXARC, E200CXATF, E200CXCCR, E200CXCEA, E200CXEIB, E200CXENE, E200CXEOC, E200CXESM, E
0322693
0322693 KEY,Ignition
BE10FDLECM, BE10FDLEDR, BE10FDLEUA, BE15FAEDR, BE15FAEUA, BE15FDLECM, BE40EECR, BE40EEDS, BE40EEUC, BE50BEEDS, BE50ESECC, BE50RLEUC, C155WTLM, CE275TLCDC, CE275TLCOS, CE300TLCDC, CE300TLCOS, E100MLCSC, E100STLCCA, E100STLCEM, E100STLESB, E100WMLCDR,
0331107
0331107 KEY, Impeller
BE115ELEDR, BE115ELEUA, BE115GLECM, BE115TLEDA, BE130TLECE, BE130TLEDM, BE130TLEUB, BE150ELECD, BE150ELEDB, BE150ELEUC, BE175EXECD, BE175EXEDB, BE175EXEUC, BE200CXECM, BE200CXEDR, BE200CXEUA, BE225CXECS, BE225CXEDE, BE225CXEUD, BE250CXECB, BE250CXEDA