0324455 SPACER, Impeller housing 5 INCH LONGER PARTS EVINRUDE
25904R, E25CNE, E25ECIB, E25ECRS, E25ECTD, E25RCSA, E25RSA, E25RSLS, E25RWCDC, E25RWCOS, E25RWCRD, E25RWCUR, E25RWEDC, E25RWEIM, E25RWENB, E25RWEOS, E25RWERD, E25RWESA, E25RWETE, E25RWEUR, E25RWK, E28ELCDS, E28ELCDS, E28ESLCCR, E28ESLCCR, E28ESLCEA,
SPACER
Price: query
Rating:
Compatible models:
25904R
E25CNE
E25ECIB
E25ECRS
E25ECTD
E25RCSA
E25RSA
E25RSLS
E25RWCDC
E25RWCOS
E25RWCRD
E25RWCUR
E25RWEDC
E25RWEIM
E25RWENB
E25RWEOS
E25RWERD
E25RWESA
E25RWETE
E25RWEUR
E25RWK
E28ELCDS
E28ESLCCR
E28ESLCEA
E28ESLCUC
E28ESLEDR
E28ESLEIB
E28ESLENE
E28ESLEOC
E28ESLERS
E28ESLESM
E28ESLETD
E35ECSM
U25RWA
EVINRUDE
BRP EVINRUDE entire parts catalog list:
- GEARCASE - 25 » 0324455
E25ECIB, E25ECIM, E25ELCIB, E25ELCIM, E25RCIM, E25RLCIM, E25TECIM, E25TELCIM 1981
E25ECRS, E25ELCRS, E25RCRD, E25RLCRD, E25TECRD, E25TELCRD 1984
E25ECTD, E25ELCTD, E25RCTE, E25RLCTE, E25TECTE, E25TELCTE 1983
E25RCSA, E25RLCSA, E25TECSA, E25TELCSA 1980
E25RSA, E25RSLA, E25RWCIM, E25RWLCIM 1981
E25RSLS, E25RSS, E25RWCTE, E25RWLCTE 1983
E25RWCDC, E25RWLCDC 1986
E25RWCOS, E25RWLCOS 1985
E25RWCRD, E25RWLCRD 1984
E25RWCUR, E25RWLCUR 1987
E25RWEDC, E25RWLEDC, HE25FPO, HE25RSLO 1996
E25RWEIM, E25RWLEIM 1991
E25RWENB, E25RWLENB 1992
E25RWEOS, E25RWLEOS 1995
E25RWERD, E25RWLERD 1994
E25RWESA, E25RWLESA 1990
E25RWETE, E25RWLETE 1993
E25RWEUR, E25RWLEUR, HE25FPV, HE25RSLV, SE25RPLV, SE25RPV 1997
E25RWK, E25RWLK 1989
E28ELCDS 1986
E28ELCDS 1986
E28ESLCCR 1988
E28ESLCCR, VE28ESLCCR 1988
E28ESLCEA, VE28ESLCEA 1989
E28ESLCEA 1989
E28ESLCUC 1987
E28ESLCUC 1987
E28ESLEDR 1996
E28ESLEDR 1996
E28ESLEIB 1991
E28ESLEIB 1991
E28ESLENE 1992
E28ESLENE 1992
E28ESLEOC 1995
E28ESLEOC 1995
E28ESLERS 1994
E28ESLERS 1994
E28ESLESM 1990
E28ESLESM, VE28ESLESM 1990
E28ESLETD 1993
E28ESLETD 1993
E35ECSM, E35ELCSM, E35TCSM, E35TLESM 1980
U25RWA, U25RWLA 1988
Information:
Probable Causes
Diagnostic codes
Fuel supply
Transfer Pump Inlet Regulator (TPIR)
Electric Fuel Lift Pump (EFLP)
Return fuel lines
Throttle position sensor
CAN data link
High-pressure fuel pump
Low compression (cylinder pressure)
Electronic unit injectors
Individual malfunctioning cylinderRecommended Actions
Note: The procedures have been listed in order of probability. Complete the procedures in order.
Table 1
Troubleshooting Test Steps Values Results
1. Diagnostic Codes
A. Establish communication between the electronic service tool and the Electronic Control Module (ECM). Refer to Troubleshooting, "Electronic Service Tools", if necessary.
B. Download the Warranty Report and the Product Status Report with Histograms before performing any troubleshooting or clearing any diagnostic codes.
Note: The downloaded information will be required by the Dealer Solutions Network (DSN) if troubleshooting assistance is needed.
C. Use the electronic service tool to check for active or logged codes.
Codes
Result: There are active codes.
Repair: Troubleshoot any active codes before continuing with this procedure.
Result: There are no active codes.
Proceed to Test Step 2.
2. Fuel Supply
A. Visually check the fuel tank for fuel. The fuel gauge may be faulty.
B. Ensure that the vent in the fuel cap is not filled with debris.
C. Ensure that the fuel supply valve (if equipped) is in the full OPEN position.
D. Check the primary filter/water separator for water in the fuel.
E. Check for fuel supply lines that are restricted.
F. Check that the Electric Fuel Lift Pump (EFLP) is operating. If the EFLP is suspect, refer to Troubleshooting, "Relay - Test (Electric Fuel Lift Pump)".
G. Check for air in the fuel system. Refer to Systems Operation, Testing, and Adjusting, "Air in Fuel - Test".
H. Obtain a fuel analysis to confirm that the correct fuel is being used. Refer to Systems Operation/Testing and Adjusting, "Fuel Quality - Test" for the correct procedure.
Fuel supply
Result: There is air in the fuel system.
Repair: Prime the fuel system. Refer to Systems Operation, Testing, and Adjusting, "Fuel System - Prime".
Result: The fuel quality is not OK.
Repair: Replace the fuel. Replace the in line fuel filter that is upstream of the EFLP. Replace the primary and secondary fuel filters. Verify that the repair eliminated the fault.
Proceed to Test Step 13.
Result: The fuel quality is OK.
Proceed to Test Step 3.
Illustration 1 g03700009
Transfer Pump Inlet Regulator (TPIR) components on a C4.4 engine
(1) Transfer Pump Inlet Regulator (TPIR)
(2) TPIR return port
Illustration 2 g06100802
Transfer Pump Inlet Regulator (TPIR) components on a C6.6 engine
(1) Transfer Pump Inlet Regulator (TPIR)
(2) TPIR return port
Illustration 3 g02485896
Minimum TPIR flow rate in a 12 VDC system on a C4.4 engine
Illustration 4 g02485897
Minimum TPIR flow rate in a 24 VDC system on a C4.4 engine
Illustration 5 g02355128
Minimum TPIR flow rate in a 12 VDC system on a C6.6 engine
Illustration 6 g02355130
Minimum TPIR flow rate in a 24 VDC system on a C6.6 engine
Table 2
Troubleshooting Test Steps Values Results
3. Transfer Pump Inlet Regulator (TPIR) Flow Test
For a C4.4 engine, refer to Illustration 1. For a C6.6 engine, refer to Illustration 2.
A. Disconnect the TPIR return line from the drain port on the TPIR. Install a suitable blanking cap on the open port in the TPIR return line.
B. Connect a temporary drain line to the drain port on the TPIR.
C. Place the end of the temporary drain line into a suitable calibrated container.
D. With the isolator switch in the ON position but the engine not running, use a suitable multimeter to measure the input voltage to the EFLP. Record the reading.
E. With the isolator switch in the ON position but the engine not running, measure the fuel flow from the temporary drain line.
F. Refer to Illustration 3 through 6 for the minimum acceptable flow rate.
G. Remove the temporary drain line from the drain port on the TPIR. Connect the TPIR return line to the TPIR.
TPIR flow rate
Result: The fuel flow is greater than the minimum limit.
Proceed to Test Step 5.
Result: The fuel flow is less than the minimum limit.
Proceed to Test Step 4.
Illustration 7 g02527498
Minimum EFLP flow rate in a 12 VDC system
Diagnostic codes
Fuel supply
Transfer Pump Inlet Regulator (TPIR)
Electric Fuel Lift Pump (EFLP)
Return fuel lines
Throttle position sensor
CAN data link
High-pressure fuel pump
Low compression (cylinder pressure)
Electronic unit injectors
Individual malfunctioning cylinderRecommended Actions
Note: The procedures have been listed in order of probability. Complete the procedures in order.
Table 1
Troubleshooting Test Steps Values Results
1. Diagnostic Codes
A. Establish communication between the electronic service tool and the Electronic Control Module (ECM). Refer to Troubleshooting, "Electronic Service Tools", if necessary.
B. Download the Warranty Report and the Product Status Report with Histograms before performing any troubleshooting or clearing any diagnostic codes.
Note: The downloaded information will be required by the Dealer Solutions Network (DSN) if troubleshooting assistance is needed.
C. Use the electronic service tool to check for active or logged codes.
Codes
Result: There are active codes.
Repair: Troubleshoot any active codes before continuing with this procedure.
Result: There are no active codes.
Proceed to Test Step 2.
2. Fuel Supply
A. Visually check the fuel tank for fuel. The fuel gauge may be faulty.
B. Ensure that the vent in the fuel cap is not filled with debris.
C. Ensure that the fuel supply valve (if equipped) is in the full OPEN position.
D. Check the primary filter/water separator for water in the fuel.
E. Check for fuel supply lines that are restricted.
F. Check that the Electric Fuel Lift Pump (EFLP) is operating. If the EFLP is suspect, refer to Troubleshooting, "Relay - Test (Electric Fuel Lift Pump)".
G. Check for air in the fuel system. Refer to Systems Operation, Testing, and Adjusting, "Air in Fuel - Test".
H. Obtain a fuel analysis to confirm that the correct fuel is being used. Refer to Systems Operation/Testing and Adjusting, "Fuel Quality - Test" for the correct procedure.
Fuel supply
Result: There is air in the fuel system.
Repair: Prime the fuel system. Refer to Systems Operation, Testing, and Adjusting, "Fuel System - Prime".
Result: The fuel quality is not OK.
Repair: Replace the fuel. Replace the in line fuel filter that is upstream of the EFLP. Replace the primary and secondary fuel filters. Verify that the repair eliminated the fault.
Proceed to Test Step 13.
Result: The fuel quality is OK.
Proceed to Test Step 3.
Illustration 1 g03700009
Transfer Pump Inlet Regulator (TPIR) components on a C4.4 engine
(1) Transfer Pump Inlet Regulator (TPIR)
(2) TPIR return port
Illustration 2 g06100802
Transfer Pump Inlet Regulator (TPIR) components on a C6.6 engine
(1) Transfer Pump Inlet Regulator (TPIR)
(2) TPIR return port
Illustration 3 g02485896
Minimum TPIR flow rate in a 12 VDC system on a C4.4 engine
Illustration 4 g02485897
Minimum TPIR flow rate in a 24 VDC system on a C4.4 engine
Illustration 5 g02355128
Minimum TPIR flow rate in a 12 VDC system on a C6.6 engine
Illustration 6 g02355130
Minimum TPIR flow rate in a 24 VDC system on a C6.6 engine
Table 2
Troubleshooting Test Steps Values Results
3. Transfer Pump Inlet Regulator (TPIR) Flow Test
For a C4.4 engine, refer to Illustration 1. For a C6.6 engine, refer to Illustration 2.
A. Disconnect the TPIR return line from the drain port on the TPIR. Install a suitable blanking cap on the open port in the TPIR return line.
B. Connect a temporary drain line to the drain port on the TPIR.
C. Place the end of the temporary drain line into a suitable calibrated container.
D. With the isolator switch in the ON position but the engine not running, use a suitable multimeter to measure the input voltage to the EFLP. Record the reading.
E. With the isolator switch in the ON position but the engine not running, measure the fuel flow from the temporary drain line.
F. Refer to Illustration 3 through 6 for the minimum acceptable flow rate.
G. Remove the temporary drain line from the drain port on the TPIR. Connect the TPIR return line to the TPIR.
TPIR flow rate
Result: The fuel flow is greater than the minimum limit.
Proceed to Test Step 5.
Result: The fuel flow is less than the minimum limit.
Proceed to Test Step 4.
Illustration 7 g02527498
Minimum EFLP flow rate in a 12 VDC system
Parts spacer EVINRUDE:
0316741
0316741 SPACER, Stop gear
100990S, 115393M, 115493B, 115593, 115693D, 115793S, 115890C, 135383M, 135443B, 135543E, 135643D, 25702H, 25802C, 25904R, 35602G, 50202C, 50302R, 50442M, 50542B, 50902C, 55642E, 55772D, 55874S, 60072B, 60172C, 65272S, 65372R, 70442M, 70572B, 70673D,
0322408
0322409
0322878
0324453
0324453 SPACER, Exhaust hsg.
25904R, E25CNE, E25ECIB, E25ECRS, E25ECTD, E25RCSA, E25RSA, E25RSLS, E25RWCDC, E25RWCOS, E25RWCRD, E25RWCUR, E25RWEDC, E25RWEIM, E25RWENB, E25RWEOS, E25RWERD, E25RWESA, E25RWETE, E25RWEUR, E25RWK, E35ECSM, U25RWA
0323943
0323943 SPACER, Prop nut
25904R, B25JREUR, BE20SEECB, BE20SEEDA, BE20SEEUM, BE20SRECB, BE20SREDA, BE20SREUM, BE25ARECA, BE25AREDC, BE25AREUR, BE25BAECM, BE25BAEDR, BE25EECE, BE25EEDM, BE25EEUB, BE30BAECS, BE30BAEDE, BE30BAEEC, BE30BAEUD, BE30BASIA, BE30BASSR, BE30EECS, BE30E
0326693
0326693 SPACER,Impeller hsg.,long
B25JREUR, BE20SEECB, BE20SEEDA, BE20SEEUM, BE20SRECB, BE20SREDA, BE20SREUM, BE25BAECM, BE25BAEDR, BE25EECE, BE25EEDM, BE25EEUB, BE30BAECS, BE30BAEDE, BE30BAEEC, BE30BAEUD, BE30BASIA, BE30BASSR, BE30EECS, BE30EEDE, BE30EEUD, E20CRCCA, E20CRCDC, E20CRC
0326692
0326692 SPACER,Impeller hsg.,std.
B25JREUR, BE20SEECB, BE20SEEDA, BE20SEEUM, BE20SRECB, BE20SREDA, BE20SREUM, BE25BAECM, BE25BAEDR, BE25EECE, BE25EEDM, BE25EEUB, BE30BAECS, BE30BAEDE, BE30BAEEC, BE30BAEUD, BE30BASIA, BE30BASSR, BE30EECS, BE30EEDE, BE30EEUD, E20CRCCA, E20CRCDC, E20CRC