0332492 LEVER-SHIFTER JOHNSON
BJ40EECR, BJ40EEDS, BJ40EEEA, BJ40EEUC, BJ40ELSIF, BJ40ELSSM, BJ50BEEDS, BJ50EEER, BJ50ELSIF, BJ50ELSSA, BJ50ESECC, BJ50RLEUC, J40ECEC, J40EEIA, J40EENJ, J40EEOD, J40EERE, J40EETB, J40PLSNF, J40PLSOC, J40PLSRS, J40PLSTD, J40RLSNF, J40RLSOC, J40RLSRS,
LEVER
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You can buy parts:
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Compatible models:
BJ40EECR
BJ40EEDS
BJ40EEEA
BJ40EEUC
BJ40ELSIF
BJ40ELSSM
BJ50BEEDS
BJ50EEER
BJ50ELSIF
BJ50ELSSA
BJ50ESECC
BJ50RLEUC
J40ECEC
J40EEIA
J40EENJ
J40EEOD
J40EERE
J40EETB
J40PLSNF
J40PLSOC
J40PLSRS
J40PLSTD
J40RLSNF
J40RLSOC
J40RLSRS
J40RLSTD
J48ESLCER
J48ESLEDC
J48ESLEIM
J48ESLENB
J48ESLEOS
J48ESLERD
J48ESLESA
J48ESLETE
J50BECEC
J50BEEIA
J50BEENJ
J50BEEOD
J50BEERE
J50BEETB
J50PLSNF
J50PLSOC
J50PLSRS
J50PLSTD
J50TELCEC
SJ40RSLD
SJ40RSLR
SJ40RSLZ
JOHNSON
BRP JOHNSON entire parts catalog list:
- GEARCASE » 0332492
BJ40EEEA, BJ40ELEEA, BJ40PLEEA, J40PLEEA, J40REEA, J40RLEEA, J40TPLEEA 1999
BJ40EEUC, BJ40ELEUC, BJ40TLEUC, HJ40REUC, HJ40RLEUC, J40ELEUC, J40REUC, J40RLEUC, J40TEEUC, J40TELEUC, J40TLEUC, J40TTLEUC 1997
BJ40ELSIF, BJ40ESIF, BJ40PLSIF, J40PLSIF, J40RLSIF, J40RSIF, J40TPLSIF 2001
BJ40ELSSM, BJ40ESSM, BJ40PLSSM, J40PLSSM, J40RLSSM, J40RSSM, J40TPLSSM 2000
BJ50BEEDS, BJ50BELEDS, BJ50TLEDS, J50JEDS, J50TLEDS 1996
BJ50EEER, BJ50ELEER, BJ50PLEEA, BJ50RLEEA, J50ELEER, J50PLEEA 1999
BJ50ELSIF, BJ50ESIF, BJ50PLSIF, BJ50RLSIF, J50ELSIF, J50PLSIF, RJ50ELSIF 2001
BJ50ELSSA, BJ50ESSA, BJ50PLSSM, BJ50RLSSM, J50ELSSA, J50PLSSM 2000
BJ50ESECC, BJ50RLECR, BJ50TLECR, BJ50TSLECC, J50ESLECC, J50TLECR, J50TSLECC, X50ESLECC 1998
BJ50RLEUC, BJ50TLEUC, BJ50TSLEUS, J50ESLEUR, J50JEUC, J50TLEUC, J50TSLEUS 1997
J40ECEC, J40ELCEC, J40RCEC, J40RLCEC, J40TECEC, J40TELCEC, J40TLCEC, J40TTLCEC, TJ40ELCEC 1989
J40EEIA, J40ELEIA, J40REIA, J40RLEIA, J40TEEIA, J40TELEIA, J40TLEIA, J40TTLEIA, TJ40ELEIA, VJ40EEIA, VJ40ELEIA, VJ40TELEIA, VJ40TLEIA 1991
J40EENJ, J40EENM, J40ELENJ, J40ELENM, J40RENM, J40RLENM, J40TEENJ, J40TEENM, J40TELENJ, J40TELENM, J40TLENJ, J40TLENM, J40TTLENM, TJ40ELENJ, TJ40ELENM, VJ40EENJ, VJ40EENM, VJ40ELENJ, VJ40ELENM, VJ40TELENJ, VJ40TELENM, VJ40TLENJ, VJ40TLENM 1992
J40EEOD, J40ELEOD, J40REOD, J40RLEOD, J40TEEOD, J40TELEOD, J40TLEOD, J40TTLEOD 1995
J40EERE, J40ELERE, J40RERE, J40RLERE, J40TEERE, J40TELERE, J40TLERE, J40TTLERE 1994
J40EETB, J40ELETB, J40RETB, J40RLETB, J40TEETB, J40TELETB, J40TLETB, J40TLETF, J40TTLETB, J40TTLETF, TJ40ELETB, VJ40EETB, VJ40ELETB, VJ40TELETB, VJ40TLETB, VJ40TLETF 1993
J40PLSNF 2002
J40PLSOC 2005
J40PLSRS 2004
J40PLSTD 2003
J40RLSNF, J40RSNF 2002
J40RLSOC, J40RSOC 2005
J40RLSRS, J40RSRS 2004
J40RLSTD, J40RSTD 2003
J48ESLCER, VJ48ESLCER 1989
J48ESLCER, VJ48ESLCER 1989
J48ESLEDC 1996
J48ESLEDC 1996
J48ESLEIM 1991
J48ESLEIM 1991
J48ESLENB, VJ48ESLENB 1992
J48ESLENB, VJ48ESLENB 1992
J48ESLEOS 1995
J48ESLEOS 1995
J48ESLERD 1994
J48ESLERD 1994
J48ESLESA, VJ48ESLESA 1990
J48ESLESA, VJ48ESLESA 1990
J48ESLETE, TJ48ESLETE, VJ48ESLETE 1993
J48ESLETE, TJ48ESLETE, VJ48ESLETE 1993
J50BECEC, J50BELCEC, J50TLCEC, TJ50TLCEC, TJ50TLESF 1989
J50BEEIA, J50BELEIA, J50JEIA, J50TELEIA, J50TLEIA, VJ50BEEIA, VJ50BELEIA, VJ50TLEIA 1991
J50BEENJ, J50BEENM, J50BELENJ, J50BELENM, J50JENJ, J50JENM, J50TELENM, J50TLENJ, J50TLENM, VJ50BEENJ, VJ50BEENM, VJ50BELENJ, VJ50BELENM, VJ50TELENM, VJ50TLENJ, VJ50TLENM 1992
J50BEEOD, J50BELEOD, J50JEOD, J50TELEOD, J50TLEOD 1995
J50BEERE, J50BELERE, J50JERE, J50TELERE, J50TLERE 1994
J50BEETB, J50BELETB, J50JETB, J50TELETB, J50TLETB, J50TLETF, VJ50BEETB, VJ50BELETB, VJ50TLETB, VJ50TLETF 1993
J50PLSNF 2002
J50PLSOC 2005
J50PLSRS 2004
J50PLSTD 2003
J50TELCEC 1989
SJ40RSLD 1997
SJ40RSLR 1998
SJ40RSLZ 1996
Information:
Visual Inspection
Inspect the following parts:
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 in good condition and ensure that the brackets are tight. Use compressed air to clean any debris or any dust from the aftercooler core assembly. Inspect the core fins for the following conditions:
Damage
Debris
CorrosionUse a stainless steel brush to remove any corrosion. Ensure that you use soap and water.Note: When parts of the aftercooler system are repaired, perform a leak test in order to confirm that the repair has been successful.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" 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 (Dual Element) - Inspect/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 - Visually inspect the aftercooler core in order to identify coolant leakage from the core. Refer to "Aftercooler Core Leakage" 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.Measuring the Air Temperature and Air Pressure Across the Aftercooler
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.
Illustration 1 g02646399
Test locations for the aftercooler temperature and pressure measurements (left side engine view)
(1) Port for measurements at outlet of the turbocharger compressor
(2) Ports for measurements at the inlet of the intake manifold (aftercooler air outlet)Perform measurements for pressure and temperature at the locations that are shown Illustration 1. Perform the measurements while the engine is under a normal mode operation. Record the test results in the following Table:
Table 2
Aftercooler Temperature and Pressure Measurements
Parameter 100% Load 75% Load 50% Load
"Compressor Out Pressure" (Inches Hg (ABS))
"Inlet Manifold Pressure" (Inches Hg (ABS))
"Compressor Out Temperature" (°F)
"Aftercooler Air Outlet Temperature" (°F) Compare the results of the test to values that are given in Technical Marketing Information (TMI). Look for similar results. If a large change in the temperature or the pressure differential is noticed, there may be a problem in the aftercooler circuit.If a large change for the pressure differential is discovered, check the air inlet system and the aftercooler circuit for restriction. Perform any necessary repairs. Refer to the topic "Inlet Manifold Pressure" for details that are related to troubleshooting the inlet air system.If a large change for the temperature differential is discovered, check the SCAC cooling system for a problem. Ensure that the aftercooler core is not restricted. If a restriction in the aftercooler core is suspected, refer to the topic "Measuring the Coolant Pressure Across the Aftercooler Core" for details.If a leak in the aftercooler core is suspected, refer to the topic "Aftercooler Core Leakage" for details.Measuring the Coolant Pressure Across the Aftercooler Core
Illustration 2 g06316135
Ports for measurement of the aftercooler coolant pressure (right side engine view)
(3) Outlet port for the aftercooler coolant
(4) Inlet port for the aftercooler coolantPerform measurements for the coolant pressure across the aftercooler core at the locations that are shown Illustration 1. Perform the measurements while the engine is under a normal mode operation.Compare your results to the following specifications that are for a new aftercooler core:These specifications were obtained under the following test conditions:Water flow in the SCAC system ... 79.5 L/min (21 US gpm)Specification for the water temperature at the inlet of the aftercooler core ... 54° to 75°C (129° to 134°F)Note: Ensure that consideration is given for the test conditions during the test.The following specification is for the pressure drop across the aftercooler core:Water pressure differential ... 9.6 kPa (1.4 psi)If the pressure drop across the core is out of specification, clean or replace the aftercooler core.Aftercooler Core Leakage
Typically, a leak from the coolant circuit of the aftercooler core can be found by performing a visual inspection of the core. Perform the following procedure:
Remove the aftercooler cover assembly in order to gain access to the aftercooler core.
Disconnect the coolant lines from the inlet and outlet side of the aftercooler core.
Remove the core from the engine.
Perform a visual inspection of the aftercooler core. Look for a buildup of calcium and scale at the site of the leak. Perform the necessary repairs.If the leak cannot be found through a visual inspection of the core, perform the following procedure:
Inspect the following parts:
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 in good condition and ensure that the brackets are tight. Use compressed air to clean any debris or any dust from the aftercooler core assembly. Inspect the core fins for the following conditions:
Damage
Debris
CorrosionUse a stainless steel brush to remove any corrosion. Ensure that you use soap and water.Note: When parts of the aftercooler system are repaired, perform a leak test in order to confirm that the repair has been successful.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" 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 (Dual Element) - Inspect/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 - Visually inspect the aftercooler core in order to identify coolant leakage from the core. Refer to "Aftercooler Core Leakage" 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.Measuring the Air Temperature and Air Pressure Across the Aftercooler
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.
Illustration 1 g02646399
Test locations for the aftercooler temperature and pressure measurements (left side engine view)
(1) Port for measurements at outlet of the turbocharger compressor
(2) Ports for measurements at the inlet of the intake manifold (aftercooler air outlet)Perform measurements for pressure and temperature at the locations that are shown Illustration 1. Perform the measurements while the engine is under a normal mode operation. Record the test results in the following Table:
Table 2
Aftercooler Temperature and Pressure Measurements
Parameter 100% Load 75% Load 50% Load
"Compressor Out Pressure" (Inches Hg (ABS))
"Inlet Manifold Pressure" (Inches Hg (ABS))
"Compressor Out Temperature" (°F)
"Aftercooler Air Outlet Temperature" (°F) Compare the results of the test to values that are given in Technical Marketing Information (TMI). Look for similar results. If a large change in the temperature or the pressure differential is noticed, there may be a problem in the aftercooler circuit.If a large change for the pressure differential is discovered, check the air inlet system and the aftercooler circuit for restriction. Perform any necessary repairs. Refer to the topic "Inlet Manifold Pressure" for details that are related to troubleshooting the inlet air system.If a large change for the temperature differential is discovered, check the SCAC cooling system for a problem. Ensure that the aftercooler core is not restricted. If a restriction in the aftercooler core is suspected, refer to the topic "Measuring the Coolant Pressure Across the Aftercooler Core" for details.If a leak in the aftercooler core is suspected, refer to the topic "Aftercooler Core Leakage" for details.Measuring the Coolant Pressure Across the Aftercooler Core
Illustration 2 g06316135
Ports for measurement of the aftercooler coolant pressure (right side engine view)
(3) Outlet port for the aftercooler coolant
(4) Inlet port for the aftercooler coolantPerform measurements for the coolant pressure across the aftercooler core at the locations that are shown Illustration 1. Perform the measurements while the engine is under a normal mode operation.Compare your results to the following specifications that are for a new aftercooler core:These specifications were obtained under the following test conditions:Water flow in the SCAC system ... 79.5 L/min (21 US gpm)Specification for the water temperature at the inlet of the aftercooler core ... 54° to 75°C (129° to 134°F)Note: Ensure that consideration is given for the test conditions during the test.The following specification is for the pressure drop across the aftercooler core:Water pressure differential ... 9.6 kPa (1.4 psi)If the pressure drop across the core is out of specification, clean or replace the aftercooler core.Aftercooler Core Leakage
Typically, a leak from the coolant circuit of the aftercooler core can be found by performing a visual inspection of the core. Perform the following procedure:
Remove the aftercooler cover assembly in order to gain access to the aftercooler core.
Disconnect the coolant lines from the inlet and outlet side of the aftercooler core.
Remove the core from the engine.
Perform a visual inspection of the aftercooler core. Look for a buildup of calcium and scale at the site of the leak. Perform the necessary repairs.If the leak cannot be found through a visual inspection of the core, perform the following procedure:
Parts lever JOHNSON:
0325781
0325781 LEVER, Shift lockout
CJ275TLCDC, CJ275TLCOS, CJ300TLCDC, CJ300TLCOS, D100WTLM, HJ55WMLM, HJ55WMLZ, J100STLCCA, J100STLCEM, J100STLESB, J100WMLCDR, J100WMLCOC, J100WMLCRS, J100WTLCUA, J100WTLESM, J100WTLZ, J10EESC, J110MLCCA, J110MLCDC, J110MLCEM, J110MLCUR, J115MLCNB, J1
0329418
0329418 LEVER,Throttle adjustment
AM55RSLD, BJ40EECR, BJ40EEDS, BJ40EEEA, BJ40EEUC, BJ40ELSIF, BJ40ELSSM, BJ50BEEDS, BJ50DTLEDC, BJ50DTLEUR, BJ50EEER, BJ50ELSIF, BJ50ELSSA, BJ50ESECC, BJ50RLEUC, BJ60ELEDR, BJ60ELEUA, BJ60TLECM, BJ70ELECB, BJ70ELEDA, BJ70ELEUM, BJ70PLEEE, BJ70PLSIS, B
0396124
0396124 LEVER, Fast idle
CJ275TLCDC, CJ275TLCOS, CJ300TLCDC, CJ300TLCOS, D100WTLM, J100STLCCA, J100STLCEM, J100STLESB, J100WMLCDR, J100WMLCOC, J100WTLCUA, J100WTLESM, J100WTLZ, J10EESC, J110MLCCA, J110MLCDC, J110MLCEM, J110MLCUR, J115MLCOS, J115MLESB, J120TLAEM, J120TLASB, J
0397036
0397036 LEVER & PIN ASSY., Lower carburetor
BJ40EEUC, BJ50RLEUC, D100WTLM, HJ45RCLEDS, HJ45RCLEUC, HJ55RSLC, HJ55RSLW, J100STLCCA, J100WMLCDR, J100WTLCUA, J110MLCCA, J110MLCDC, J110MLCUR, J150CXCCA, J150GTLCUR, J150STLACA, J150STLCDC, J150TLCDC, J150TLCUR, J155WTLCDR, J155WTLCUA, J175STLACM, J
0432546
0432546 LEVER AY,LOCKOUT
J40ECEC, J40EEIA, J40EENJ, J40EESR, J40EETB, J45RCE, J45RCEIA, J45RCENM, J45RCESR, J45RCETB, J50BECEC, J50BEEIA, J50BEENJ, J50BEESR, J50BEETB, J50TELCEC, J55RWLE, J55RWLEIA, J55RWLENM, J55RWLESR, J55RWLETB
0332482
0332482 LEVER-SHIFT
BJ40EECR, BJ40EEDS, BJ40EEEA, BJ40EEUC, BJ40ELSIF, BJ40ELSSM, BJ50BEEDS, BJ50EEER, BJ50ELSIF, BJ50ELSSA, BJ50ESECC, BJ50RLEUC, J25JRTSSS, J30JREEM, J30JRSIE, J30JRSSB, J40ECEC, J40EEIA, J40EENJ, J40EEOD, J40EERE, J40EESR, J40EETB, J40JRECA, J40JREDC,
0334064
0334064 LEVER-CAM
BJ40EECR, BJ40EEDS, BJ40EEEA, BJ40EEUC, BJ40ELSIF, BJ40ELSSM, BJ50BEEDS, BJ50EEER, BJ50ELSIF, BJ50ELSSA, BJ50ESECC, BJ50RLEUC, J40ECEC, J40EEIA, J40EENJ, J40EEOD, J40EERE, J40EESR, J40EETB, J40JRECA, J40JREDC, J40JREOS, J40JREUR, J40PLSNF, J40PLSOC,
0431962
0431962 LEVER AY
BJ40EECR, BJ40EEDS, BJ40EEEA, BJ40EEUC, BJ40ELSIF, BJ40ELSSM, BJ50BEEDS, BJ50EEER, BJ50ELSIF, BJ50ELSSA, BJ50ESECC, BJ50RLEUC, J25JRTSSS, J30JREEM, J30JRSIE, J30JRSSB, J40ECEC, J40EEIA, J40EENJ, J40EEOD, J40EERE, J40EESR, J40EETB, J40JRECA, J40JREDC,