0328693 SCREW, Throttle stop EVINRUDE
BE115TLEDA, C155WTLM, E100STLCCA, E100STLCEM, E100STLEIE, E100STLEND, E100STLERC, E100STLESB, E100STLETS, E100WTLCUA, E100WTLEDR, E100WTLEIB, E100WTLENE, E100WTLEOC, E100WTLERS, E100WTLESM, E100WTLETD, E100WTLEUA, E100WTLZ, E110MLCCA, E110MLCEM, E110
SCREW
Price: query
Rating:
Compatible models:
BE115TLEDA
C155WTLM
E100STLCCA
E100STLCEM
E100STLEIE
E100STLEND
E100STLERC
E100STLESB
E100STLETS
E100WTLCUA
E100WTLEDR
E100WTLEIB
E100WTLENE
E100WTLEOC
E100WTLERS
E100WTLESM
E100WTLETD
E100WTLEUA
E100WTLZ
E110MLCCA
E110MLCEM
E110MLCUR
E112TSLEDR
E112TSLEOC
E112TSLERS
E115JKLEOC
E115JKLERS
E115JLEIE
E115JLEND
E115JLEOR
E115JLERC
E115JLETS
E115JLEUM
E115MLESB
E115TSLECM
E115TSLEUA
E150ANCRS
E150CXCCA
E150CXCEM
E150CXEIE
E150CXESB
E150STLCCA
E150STLCDC
E150STLCEM
E150STLCOH
E150STLCUR
E150STLEIE
E150STLESB
E150TLCDC
E150TLCOS
E150TLCRD
E150TLCUR
E155WTLCDR
E155WTLCOC
E155WTLCRS
E155WTLCUA
E155WTLEIB
E155WTLENE
E155WTLESM
E155WTLZ
E175STLCCM
E175STLCEB
E175STLEID
E175STLESE
E175TLCDR
E175TLCOC
E175TLCUA
E185TLCOC
E185TLCRS
E235STLCOR
E235STLCRC
E235TLCOR
E235TLCRC
E250CXATF
E300CXETF
E50TTLECA
E50TTLEDC
E50TTLEOS
E50TTLEUR
E60ELCCR
E60ELCEA
E60ELESM
E60TTLECM
E60TTLEDR
E60TTLEIB
E60TTLENE
E60TTLEOC
E60TTLERS
E60TTLETD
E60TTLEUA
E65RSLC
E65RSLM
E65RSLZ2
E65WRLEEO
E65WRLSIR
E65WRLSSC
E6RCDE
E6RCOB
E70TTLEIE
E70TTLEND
E70TTLEOR
E70TTLERC
E70TTLETS
E85TTLEIE
E85TTLEND
E85TTLEOR
E85TTLERC
E85TTLETS
E88MSLCCC
E88MSLCER
E88MSLEDC
E88MSLEIM
E88MSLENB
E88MSLEOS
E88MSLERD
E88MSLESA
E88MSLETE
E88TSLEDR
E88TSLEOC
E88TSLERS
E8RCDE
E8RCOB
E90MLCUR
E90TSLECM
E90TSLEUA
SE100WMPLM
SE100WMPLZ
SE65RSLD
W100WTLM
EVINRUDE
BRP EVINRUDE entire parts catalog list:
- CYLINDER & CRANKCASE » 0328693
E100STLCCA 1988
E100STLCEM 1989
E100STLEIE, VE100SLEIE 1991
E100STLEND, VE100SLEND 1992
E100STLERC 1994
E100STLESB, VE100SLESB 1990
E100STLETS, VE100SLETS 1993
E100WTLCUA, E100WTXCUA 1987
E100WTLEDR, E100WTXEDR 1996
E100WTLEIB, E100WTXEIB 1991
E100WTLENE, E100WTXENE 1992
E100WTLEOC, E100WTXEOC 1995
E100WTLERS, E100WTXERS 1994
E100WTLESM, E100WTXESM 1990
E100WTLETD, E100WTXETD 1993
E100WTLEUA, E100WTXEUA 1997
E100WTLZ, E100WTXZ 1989
E110MLCCA, E110TLCCA, E110TXCCA 1988
E110MLCEM, E110TLCEM, E110TXCEM, TE110TLCEM, TE110TLESF, TE110TXCEM 1989
E110MLCUR, E110TLCUR, E110TXCUR 1987
E112TSLEDR, E112TSXEDR, XE112TSLEDR, XE112TSXEDR 1996
E112TSLEDR, E112TSXEDR, XE112TSLEDR, XE112TSXEDR 1996
E112TSLEOC, E112TSXEOC, XE112TSLEOC, XE112TSXEOC 1995
E112TSLEOC, E112TSXEOC, XE112TSLEOC, XE112TSXEOC 1995
E112TSLERS, E112TSXERS, XE112TSLERS, XE112TSXERS 1994
E115JKLEOC 1995
E115JKLERS 1994
E115JLEIE, E115MLEIE, E115TLEIE, E115TXEIE, TE115TLEIE, VE115TLEIE, VE115TXEIE 1991
E115JLEND, E115MLEND, E115TLEND, E115TXEND, TE115TLEND 1992
E115JLEOR, E115MLEOR, E115TLEOR, E115TXAOR 1995
E115JLERC, E115MLERS, E115TLERC, E115TXARS 1994
E115JLETS, E115MLETS, E115TLETS, E115TXATS, TE115TLETS, VE115TLETS 1993
E115JLEUM 1997
E115MLESB, E115TLESB, E115TXESB, TE115TLESB, VE115TLESB, VE115TXESB 1990
E115TSLECM, E115TSXECM, XE115HLECM, XE115HXECM 1998
E115TSLEUA, E115TSXEUA, XE115HLEUA, XE115HXEUA 1997
E150ANCRS, E150STLCRD 1984
E150CXCCA, E150TLCCA, E150TXCCA 1988
E150CXCEM, E150TLCEM, E150TXCEM, TE150TXCEM 1989
E150CXEIE, E150JLEIE, E150TLEIE, E150TXEIE, VE150TLEIE, VE150TXEIE 1991
E150CXESB, E150TLESB, E150TXESB, VE150TLESB, VE150TXESB 1990
E150STLCCA 1988
E150STLCDC 1986
E150STLCEM, TE150SLCEM 1989
E150STLCOH, E150STLCOS 1985
E150STLCUR 1987
E150STLEIE, TE150SLEIE, VE150SLEIE 1991
E150STLESB, TE150SLESB, VE150SLESB 1990
E150TLCDC, E150TXCDC 1986
E150TLCOS, E150TXCOS 1985
E150TLCRD, E150TXCRD 1984
E150TLCUR, E150TXCUR 1987
E155WTLCDR, E155WTXCDR 1986
E155WTLCOC, E155WTXCOC 1985
E155WTLCRS, E155WTXCRS 1984
E155WTLCUA, E155WTXCUA 1987
E155WTLEIB, E155WTXEIB 1991
E155WTLENE, E155WTXENE 1992
E155WTLESM, E155WTXESM 1990
E155WTLZ, E155WTXZ 1989
E175STLCCM, E175TLCCM, E175TXCCM 1988
E175STLCEB, E175TXCEB 1989
E175STLEID, E175TXEID, VE175SLEID, VE175TXEID 1991
E175STLESE, E175TXESE, VE175SLESE, VE175TXESE 1990
E175TLCDR, E175TXCDR 1986
E175TLCOC, E175TXCOC 1985
E175TLCUA, E175TXCUA 1987
E185TLCOC, E185TXCOC 1985
E185TLCRS, E185TXCRS 1984
E235STLCOR 1985
E235STLCRC 1984
E235TLCOR, E235TXCOR 1985
E235TLCRC, E235TXCRC 1984
E250CXATF, E250CXATS, E250CXETF, E250CXETS, E250CZATF, E250CZATS, E250CZETF, E250CZETS, E250TXATF, E250TXATS, E250TXETF, E250TXETS, E250TZATF, E250TZATS, E250TZETF, E250TZETS 1993
E300CXETF, E300CXETS, E300PLETF, E300PLETS, E300PXETF, E300PXETS 1993
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
E65WRLEEO, E65WRLEES, E65WRYEEO, E65WRYEES 1999
E65WRLSIR, E65WRYSIR 2001
E65WRLSSC, E65WRYSSC 2000
E6RCDE, E6RLCDE, E6SLCDE 1986
E6RCOB, E6RLCOB, E6SLCOB 1985
E70TTLEIE 1991
E70TTLEND 1992
E70TTLEOR 1995
E70TTLERC, E70TTLERV 1994
E70TTLETS 1993
E85TTLEIE 1991
E85TTLEND 1992
E85TTLEOR 1995
E85TTLERC 1994
E85TTLETS 1993
E88MSLCCC, VE88MSLCCC 1988
E88MSLCCC, E90TLCCA 1988
E88MSLCER, E90TLCEM, TE90TLCEM, TE90TLESF 1989
E88MSLCER, VE88MSLCER 1989
BE90TLEDA, E88MSLEDC, E90TLEDA, HE88MSLEDC, HE90MLEDA, HE90TXADA 1996
Information:
Visual Inspection
Inspect the following parts at each oil change:
Air lines
Hoses
Gasket joints
Pressurized air can cause personal injury. When pressurized air is used for cleaning, wear a protective face shield, protective clothing, and protective shoes.
Ensure that the constant torque hose clamps are tightened to the correct torque. Check the welded joints for cracks. Ensure that the brackets are tightened in the correct positions. Ensure that the brackets are in good condition. Use compressed air to clean any debris or any dust from the aftercooler core assembly. Inspect the fins in the aftercooler core for the following conditions:
Damage
Debris
CorrosionUse a stainless steel brush to remove any corrosion.Note: When parts of the air-to-air aftercooler system are repaired or replaced, a leak test is recommended.Inlet Manifold Pressure
Normal inlet manifold pressure with high exhaust temperature can be caused by blockage of the fins of the aftercooler core. Clean the fins of the aftercooler core. Refer to "Visual Inspection" under this topic for the cleaning procedure.Low inlet manifold pressure and high exhaust manifold temperature can be caused by any of the following conditions:Plugged air cleaner - Clean the air cleaner or replace the air cleaner, as required. Refer to the Operation and Maintenance Manual, "Engine Air Cleaner Element - Clean/Replace".Blockage in the air lines - Blockage in the air lines between the air cleaner and the turbocharger must be removed.Aftercooler core leakage - Aftercooler core leakage should be pressure tested. Refer to "Aftercooler Core Leakage" under this topic for the testing procedure.Inlet manifold leak - An inlet manifold leak can be caused by the following conditions: loose fittings and plugs, missing fittings and plugs, damaged fittings and plugs and leaking inlet manifold gasket.Aftercooler Core Leakage
Illustration 1 g01134323
FT-1984 Aftercooler Testing Group
(1) Regulator and valve assembly
(2) Nipple
(3) Relief valve
(4) Tee
(5) Coupler
(6) Aftercooler
(7) Dust plug
(8) Dust plug
(9) Chain A low power problem in the engine can be the result of aftercooler leakage. Aftercooler system leakage can result in the following problems:
Low power
Low boost pressure
Black smoke
High exhaust temperature
Remove all air leaks from the system to prevent engine damage. In some operating conditions, the engine can pull a manifold vacuum for short periods of time. A leak in the aftercooler or air lines can let dirt and other foreign material into the engine and cause rapid wear and/or damage to engine parts.
A large leak of the aftercooler core can often be found by making a visual inspection. To check for smaller leaks, use the following procedure:
Disconnect the air pipes from the inlet and outlet side of the aftercooler core.
Dust plug chains must be installed to the aftercooler core or to the radiator brackets to prevent possible injury while you are testing. Do not stand in front of the dust plugs while you are testing.
Install couplers (5) on each side of the aftercooler core. Also, install dust plugs (7) and (8). These items are included with the FT-1984 Aftercooler Testing Group.Note: Installation of additional hose clamps on the hump hoses is recommended in order to prevent the hoses from bulging while the aftercooler core is being pressurized.
Do not use more than 240 kPa (35 psi) of air pressure or damage to the aftercooler core can be the result.
Install the regulator and valve assembly (1) on the outlet side of the aftercooler core assembly. Also, attach the air supply.
Open the air valve and pressurize the aftercooler to 205 kPa (30 psi). Shut off the air supply.
Inspect all connection points for air leakage.
The pressure in the aftercooler system should not drop more than 35 kPa (5 psi) in 15 seconds.
If the pressure drop is more than the specified amount, use a solution of soap and water to check all areas for leakage. Look for air bubbles that will identify possible leaks. Replace the aftercooler core, or repair the aftercooler core, as needed.
To help prevent personal injury when the tooling is removed, relieve all pressure in the system slowly by using an air regulator and a valve assembly.
After the testing, remove the FT-1984 Aftercooler Testing Group. Reconnect the air pipes on both sides of the aftercooler core assembly. Turbocharger Failure
Personal injury can result from air pressure.Personal injury can result without following proper procedure. When using pressure air, wear a protective face shield and protective clothing.Maximum air pressure at the nozzle must be less than 205 kPa (30 psi) for cleaning purposes.
If a turbocharger failure occurs, remove the air-to-air aftercooler core. Internally flush the air-to-air aftercooler core with a solvent that removes oil and other foreign substances. Shake the air-to-air aftercooler core in order to eliminate any trapped debris. Wash the aftercooler with hot, soapy water. Thoroughly rinse the aftercooler with clean water and blow dry the aftercooler with compressed air. Blow dry the assembly in the reverse direction of normal air flow. To make sure that the whole system is clean, carefully inspect the system.
Inspect the following parts at each oil change:
Air lines
Hoses
Gasket joints
Pressurized air can cause personal injury. When pressurized air is used for cleaning, wear a protective face shield, protective clothing, and protective shoes.
Ensure that the constant torque hose clamps are tightened to the correct torque. Check the welded joints for cracks. Ensure that the brackets are tightened in the correct positions. Ensure that the brackets are in good condition. Use compressed air to clean any debris or any dust from the aftercooler core assembly. Inspect the fins in the aftercooler core for the following conditions:
Damage
Debris
CorrosionUse a stainless steel brush to remove any corrosion.Note: When parts of the air-to-air aftercooler system are repaired or replaced, a leak test is recommended.Inlet Manifold Pressure
Normal inlet manifold pressure with high exhaust temperature can be caused by blockage of the fins of the aftercooler core. Clean the fins of the aftercooler core. Refer to "Visual Inspection" under this topic for the cleaning procedure.Low inlet manifold pressure and high exhaust manifold temperature can be caused by any of the following conditions:Plugged air cleaner - Clean the air cleaner or replace the air cleaner, as required. Refer to the Operation and Maintenance Manual, "Engine Air Cleaner Element - Clean/Replace".Blockage in the air lines - Blockage in the air lines between the air cleaner and the turbocharger must be removed.Aftercooler core leakage - Aftercooler core leakage should be pressure tested. Refer to "Aftercooler Core Leakage" under this topic for the testing procedure.Inlet manifold leak - An inlet manifold leak can be caused by the following conditions: loose fittings and plugs, missing fittings and plugs, damaged fittings and plugs and leaking inlet manifold gasket.Aftercooler Core Leakage
Illustration 1 g01134323
FT-1984 Aftercooler Testing Group
(1) Regulator and valve assembly
(2) Nipple
(3) Relief valve
(4) Tee
(5) Coupler
(6) Aftercooler
(7) Dust plug
(8) Dust plug
(9) Chain A low power problem in the engine can be the result of aftercooler leakage. Aftercooler system leakage can result in the following problems:
Low power
Low boost pressure
Black smoke
High exhaust temperature
Remove all air leaks from the system to prevent engine damage. In some operating conditions, the engine can pull a manifold vacuum for short periods of time. A leak in the aftercooler or air lines can let dirt and other foreign material into the engine and cause rapid wear and/or damage to engine parts.
A large leak of the aftercooler core can often be found by making a visual inspection. To check for smaller leaks, use the following procedure:
Disconnect the air pipes from the inlet and outlet side of the aftercooler core.
Dust plug chains must be installed to the aftercooler core or to the radiator brackets to prevent possible injury while you are testing. Do not stand in front of the dust plugs while you are testing.
Install couplers (5) on each side of the aftercooler core. Also, install dust plugs (7) and (8). These items are included with the FT-1984 Aftercooler Testing Group.Note: Installation of additional hose clamps on the hump hoses is recommended in order to prevent the hoses from bulging while the aftercooler core is being pressurized.
Do not use more than 240 kPa (35 psi) of air pressure or damage to the aftercooler core can be the result.
Install the regulator and valve assembly (1) on the outlet side of the aftercooler core assembly. Also, attach the air supply.
Open the air valve and pressurize the aftercooler to 205 kPa (30 psi). Shut off the air supply.
Inspect all connection points for air leakage.
The pressure in the aftercooler system should not drop more than 35 kPa (5 psi) in 15 seconds.
If the pressure drop is more than the specified amount, use a solution of soap and water to check all areas for leakage. Look for air bubbles that will identify possible leaks. Replace the aftercooler core, or repair the aftercooler core, as needed.
To help prevent personal injury when the tooling is removed, relieve all pressure in the system slowly by using an air regulator and a valve assembly.
After the testing, remove the FT-1984 Aftercooler Testing Group. Reconnect the air pipes on both sides of the aftercooler core assembly. Turbocharger Failure
Personal injury can result from air pressure.Personal injury can result without following proper procedure. When using pressure air, wear a protective face shield and protective clothing.Maximum air pressure at the nozzle must be less than 205 kPa (30 psi) for cleaning purposes.
If a turbocharger failure occurs, remove the air-to-air aftercooler core. Internally flush the air-to-air aftercooler core with a solvent that removes oil and other foreign substances. Shake the air-to-air aftercooler core in order to eliminate any trapped debris. Wash the aftercooler with hot, soapy water. Thoroughly rinse the aftercooler with clean water and blow dry the aftercooler with compressed air. Blow dry the assembly in the reverse direction of normal air flow. To make sure that the whole system is clean, carefully inspect the system.
Parts screw EVINRUDE:
0310539
0310539 SCREW,Latch
100882B, 100990S, 115493B, 115593, 115693D, 115790S, 115793S, 115890C, 135543E, 135643D, 150840S, 150940C, 175740S, 200640S, 50442M, 50542B, 50902C, 55642E, 55772D, 55874S, 70442M, 70572B, 70673D, 70773S, 70873C, 70973R, 75542B, 75642D, 85493B, 85593
0318544
0318544 SCREW, Drain and fill
100990S, 115393M, 115493B, 115593, 115693D, 115790S, 115793S, 115890C, 135383M, 135443B, 135543E, 135643D, 150840S, 150940C, 175740S, 200640S, 50302R, 50442M, 65372R, 70442M, 70572B, 70673D, 70773S, 70873C, 70973R, 75542B, 75642D, 85393M, 85493B, 855
0319126
0319126 SCREW, Outer exh, hsg to powerhead, long
10424G, 10524C, 10624G, 10724A, 10824M, 10924B, 150840S, 150940C, 15404G, 15504C, 15604A, BE10EEDD, BE10RELEUS, BE115ELEDR, BE115ELEUA, BE115GLECM, BE150ELECD, BE150ELEDB, BE150ELEUC, BE15EEDS, BE15RELEUC, BE175EXECD, BE175EXEDB, BE175EXEUC, BE250CXE
0321922
0321922 SCREW,Plate
10724A, 10824M, 10924B, 25702H, 25802C, 25904R, 2702C, 2802R, 2902A, 4706B, 4806E, 4904D, 6704M, 6804B, 6904E, B25JREUR, BE10EEDD, BE10FAEDC, BE10FAEUR, BE10FDLECM, BE10FDLEDR, BE10FDLEUA, BE10RELEUS, BE15EEDS, BE15FAEDR, BE15FAEUA, BE15FDLECM, BE15R
0325135
0325135 SCREW, Stator mounting
100990S, 150940C, BE115TLEDA, BE200CXECM, BE200CXEDR, BE200CXEUA, BE225CXECS, BE225CXEDE, BE225CXEUD, BE250CXECB, BE250CXEDA, BE250CXEUM, CE275TLCDC, CE300TLCDC, E100MLCSC, E100STLCCA, E100STLCEM, E100STLEIE, E100STLEND, E100STLERC, E100STLESB, E100S
0328694
0328694 SCREW, Front to rear cover
B25JREUR, BE115ELEDR, BE115TLEDA, BE150ELECD, BE150ELEDB, BE150ELEUC, BE175EXECD, BE175EXEDB, BE175EXEUC, BE200CXECM, BE200CXEDR, BE200CXEUA, BE20SEECB, BE20SEEDA, BE20SEEUM, BE20SRECB, BE20SREDA, BE20SREUM, BE225CXECS, BE225CXEDE, BE225CXEUD, BE25BA
0330131
0330131 SCREW, Plug
BE115TLEDA, E100WMLCDR, E100WMLCOC, E100WMLCRS, E100WTLCUA, E100WTLEDR, E100WTLEOC, E100WTLEUA, E110MLCDC, E110MLCUR, E112TSLEDR, E112TSLEDR, E112TSLEOC, E112TSLEOC, E115JKLEOC, E115JLEOR, E115JLEUM, E115MLCOS, E115MLCRD, E115TSLECM, E115TSLEUA, E140
0328724
0328724 SCREW, Clamp to anchor block
BE10EEDD, BE10RELEUS, BE115ELEDR, BE115ELEUA, BE115GLECM, BE115TLEDA, BE130TLECE, BE130TLEDM, BE130TLEUB, BE150ELECD, BE150ELEDB, BE150ELEUC, BE15EEDS, BE15RELEUC, BE175EXECD, BE175EXEDB, BE175EXEUC, BE200CXECM, BE200CXEDR, BE200CXEUA, BE20SEECB, BE2