0393924 PISTON,Std.150 EVINRUDE
C155WTLM, E100WMLCDR, E100WMLCRS, E100WTLCUA, E100WTLEDR, E100WTLEIB, E100WTLENE, E100WTLEOC, E100WTLERS, E100WTLESM, E100WTLETD, E100WTLEUA, E100WTLZ, E150ANCRS, E150CXCCA, E150CXCEM, E150CXEIE, E150CXESB, E150STLCCA, E150STLCDC, E150STLCEM, E150STL
PISTON
Price: query
Rating:
You can buy parts:
As an associate, we earn commssions on qualifying purchases through the links below
$102.36
22-11-2020
2.0[0.90] Pounds
-: -
Johnson/Evinrude OMC V4 V6 Crossflow Piston OEM 5006661
Superseded by part number: 0393924 || Sold Each || Please verify your own fitment
Superseded by part number: 0393924 || Sold Each || Please verify your own fitment
Compatible models:
C155WTLM
E100WMLCDR
E100WMLCRS
E100WTLCUA
E100WTLEDR
E100WTLEIB
E100WTLENE
E100WTLEOC
E100WTLERS
E100WTLESM
E100WTLETD
E100WTLEUA
E100WTLZ
E150ANCRS
E150CXCCA
E150CXCEM
E150CXEIE
E150CXESB
E150STLCCA
E150STLCDC
E150STLCEM
E150STLCOH
E150STLCTE
E150STLCUR
E150STLEIE
E150STLESB
E150TLCDC
E150TLCOS
E150TLCRD
E150TLCUR
E150TRLCTB
E155WTLCDR
E155WTLCOC
E155WTLCRS
E155WTLCUA
E155WTLEIB
E155WTLENE
E155WTLESM
E155WTLZ
E175STLCCM
E175STLCEB
E175STLEID
E175STLESE
E175TLCDR
E175TLCOC
E175TLCUA
E175TRLCTD
E185TLCOC
E185TLCRS
E200TRLCTD
E235STLCOR
E235STLCRC
E235STLCTS
E235TLCOR
E235TLCRC
E235TRLCTD
SE100WMPLM
SE100WMPLZ
W100WTLM
EVINRUDE
BRP EVINRUDE entire parts catalog list:
- CRANKSHAFT & PISTON » 0393924
E100WMLCRS, E100WTLCRS 1984
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
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
E150STLCTE 1983
E150STLCUR 1987
E150STLEIE, TE150SLEIE, VE150SLEIE 1991
E150STLESB, TE150SLESB, VE150SLESB 1990
E150TLCDC, E150TXCDC 1986
E150TLCOS, E150TXCOS 1985
E150TLCRD, E150TXCRD 1984
E150TLCUR, E150TXCUR 1987
E150TRLCTB, E150TRLCTE, E150TRXCTB, E150TRXCTE 1983
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
E175TRLCTD, E175TRLCTE, E175TRXCTD, E175TRXCTE 1983
E185TLCOC, E185TXCOC 1985
E185TLCRS, E185TXCRS 1984
E200TRLCTD, E200TRLCTS, E200TRXCTD, E200TRXCTS 1983
E235STLCOR 1985
E235STLCRC 1984
E235STLCTS 1983
E235TLCOR, E235TXCOR 1985
E235TLCRC, E235TXCRC 1984
E235TRLCTD, E235TRLCTS, E235TRXCTD, E235TRXCTS 1983
SE100WMPLM, SE100WTPLM 1996
SE100WMPLZ, SE100WTPLZ 1997
W100WTLM, W100WTXM 1988
Information:
Probable Causes
Inlet system leak
Engine operating conditions
Failed exhaust back pressure valve
High altitude
Obstructed Air-to-Air Aftercooler (ATAAC)
Illustration 1 g03795585
Example of an electronic service tool screenshot of the histogram. This histogram is populated when the engine system has calculated a condition in which high exhaust temperatures are present. A diagnostic code will not be logged when the system calculates a high exhaust temperature condition. The engine will be derated in order to protect the engine system. This situation is normal under most circumstances and no additional troubleshooting is necessary.
Note: Information from this histogram is to be used with active and logged diagnostic trouble codes. This histogram is for information only.Complete the procedure in the order in which the steps are listed.
Table 1
Troubleshooting Test Steps Values Results
1. Check for Inlet System Leakage
A. Apply a light load to the engine and check for leakage from the inlet system downstream of the low-pressure turbocharger.
Boost leaks
Result: Leakage was found.
Repair: Repair the leaks. Return the unit to service.
Result: Leakage was not found.
Proceed to Test Step 2.
2. Check the Engine Operating Conditions
A. Use the electronic service tool to check the histograms. Use the histograms to determine if the high exhaust temperature was due to normal operation.
If possible, interview the operator. Determine if the engine is being operated under heavy load. Ensure that the engine is being operated at an acceptable engine speed.
If derates are suspected, reset the histogram and return the unit to service. If the histogram repopulates without fault codes, the derating of the engine was under normal engine operation.
Normal operation
Result: The code was logged during a heavy load.
Repair: Reduce the load on the engine. Return the unit to service.
Result: The code was not logged during a heavy load.
Proceed to Test Step 3.
3. Check the Exhaust Back Pressure Regulator (EBPR)
A. Check the EBPR for correct operation. Refer to Troubleshooting, "Motorized Valve - Test" for the correct troubleshooting procedure.
Note: An EBPR that has failed in the closed position can cause high exhaust temperatures.
Failed exhaust back pressure regulator
Result: The exhaust back pressure regulator has failed.
Repair: Repair or replace the valve. Return the unit to service.
Result: The exhaust back pressure regulator has not failed.
Proceed to Test Step 4.
4. Check the Engine Operating Altitude
A. Check the engine operating altitude.
Note: High altitudes can cause high exhaust temperatures, consider the operational altitude when troubleshooting a high exhaust temperature. High exhaust temperatures are associated with high operational altitudes.
When operating below 5500ft and the ambient temperature is below 30° C (85° F), altitude should not cause a high exhaust temperature derate.
High operational altitudes
Result: The engine was operating at high altitudes.
The high exhaust temperature was due to high altitudes. Return the unit to service.
Result: The engine was not operating at high altitudes.
Proceed to Test Step 5.
5. Check for an Obstructed Air-to-Air Aftercooler (ATAAC)
A. The intake manifold air temperature can increase if the flow through the ATAAC is obstructed. Check the ATAAC for obstructions or debris. Ensure that the flow of air or coolant through the ATAAC is adequate.
Obstructed aftercooler
Result: The engine ATAAC was obstructed.
Repair: Clear any obstructions. Return the unit to service.
If the procedure did not correct the issue, contact the Dealer Solutions Network (DSN).
Inlet system leak
Engine operating conditions
Failed exhaust back pressure valve
High altitude
Obstructed Air-to-Air Aftercooler (ATAAC)
Illustration 1 g03795585
Example of an electronic service tool screenshot of the histogram. This histogram is populated when the engine system has calculated a condition in which high exhaust temperatures are present. A diagnostic code will not be logged when the system calculates a high exhaust temperature condition. The engine will be derated in order to protect the engine system. This situation is normal under most circumstances and no additional troubleshooting is necessary.
Note: Information from this histogram is to be used with active and logged diagnostic trouble codes. This histogram is for information only.Complete the procedure in the order in which the steps are listed.
Table 1
Troubleshooting Test Steps Values Results
1. Check for Inlet System Leakage
A. Apply a light load to the engine and check for leakage from the inlet system downstream of the low-pressure turbocharger.
Boost leaks
Result: Leakage was found.
Repair: Repair the leaks. Return the unit to service.
Result: Leakage was not found.
Proceed to Test Step 2.
2. Check the Engine Operating Conditions
A. Use the electronic service tool to check the histograms. Use the histograms to determine if the high exhaust temperature was due to normal operation.
If possible, interview the operator. Determine if the engine is being operated under heavy load. Ensure that the engine is being operated at an acceptable engine speed.
If derates are suspected, reset the histogram and return the unit to service. If the histogram repopulates without fault codes, the derating of the engine was under normal engine operation.
Normal operation
Result: The code was logged during a heavy load.
Repair: Reduce the load on the engine. Return the unit to service.
Result: The code was not logged during a heavy load.
Proceed to Test Step 3.
3. Check the Exhaust Back Pressure Regulator (EBPR)
A. Check the EBPR for correct operation. Refer to Troubleshooting, "Motorized Valve - Test" for the correct troubleshooting procedure.
Note: An EBPR that has failed in the closed position can cause high exhaust temperatures.
Failed exhaust back pressure regulator
Result: The exhaust back pressure regulator has failed.
Repair: Repair or replace the valve. Return the unit to service.
Result: The exhaust back pressure regulator has not failed.
Proceed to Test Step 4.
4. Check the Engine Operating Altitude
A. Check the engine operating altitude.
Note: High altitudes can cause high exhaust temperatures, consider the operational altitude when troubleshooting a high exhaust temperature. High exhaust temperatures are associated with high operational altitudes.
When operating below 5500ft and the ambient temperature is below 30° C (85° F), altitude should not cause a high exhaust temperature derate.
High operational altitudes
Result: The engine was operating at high altitudes.
The high exhaust temperature was due to high altitudes. Return the unit to service.
Result: The engine was not operating at high altitudes.
Proceed to Test Step 5.
5. Check for an Obstructed Air-to-Air Aftercooler (ATAAC)
A. The intake manifold air temperature can increase if the flow through the ATAAC is obstructed. Check the ATAAC for obstructions or debris. Ensure that the flow of air or coolant through the ATAAC is adequate.
Obstructed aftercooler
Result: The engine ATAAC was obstructed.
Repair: Clear any obstructions. Return the unit to service.
If the procedure did not correct the issue, contact the Dealer Solutions Network (DSN).
Parts piston EVINRUDE:
0323848
0323848 PISTON, Pump control
100990S, 115890C, 150840S, 150940C, BE250CXECB, BE250CXEDA, BE250CXEUM, C155WTLM, CE275TLCDC, CE275TLCOS, CE300TLCDC, CE300TLCOS, E100MLCSC, E100STLCCA, E100STLCEM, E100STLESB, E100WMLCDR, E100WMLCOC, E100WMLCRS, E100WTLCUA, E100WTLEDR, E100WTLEIB, E
0390511
0390511 PISTON,.030,235
E150TRLCIA, E150TRLCNM, E150TRLCSF, E150TRLCTB, E175TRLCIM, E175TRLCNB, E175TRLCSA, E175TRLCTD, E200TRLCIB, E200TRLCNE, E200TRLCSF, E200TRLCTD, E235TRLCIB, E235TRLCNE, E235TRLCSM, E235TRLCTD
0394428
0393929
0393929 PISTON, .030 O.S.150
E100WMLCOC, E100WMLCRS, E150ANCRS, E150STLCTE, E150TLCRD, E150TRLCTB, E155WTLCRS, E175TRLCTD, E185TLCRS, E200TRLCTD, E235STLCRC, E235STLCTS, E235TLCRC, E235TRLCTD
0394507
0394908
0394909
0327887