0332179 PUSH KNOB, Key JOHNSON
BJ10FDLECM, BJ10FDLEDR, BJ10FDLEUA, BJ15FAEDR, BJ15FAEUA, BJ15FDLECM, BJ40EECR, BJ40EEDS, BJ40EEEA, BJ40EEUC, BJ40ELSIF, BJ40ELSSM, BJ50BEEDS, BJ50EEER, BJ50ELSIF, BJ50ELSSA, BJ50ESECC, BJ50RLEUC, CJ275TLCDC, CJ300TLCDC, D100WTLM, HJ55WMLM, J100STLCC
PUSH
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Compatible models:
BJ10FDLECM
BJ10FDLEDR
BJ10FDLEUA
BJ15FAEDR
BJ15FAEUA
BJ15FDLECM
BJ40EECR
BJ40EEDS
BJ40EEEA
BJ40EEUC
BJ40ELSIF
BJ40ELSSM
BJ50BEEDS
BJ50EEER
BJ50ELSIF
BJ50ELSSA
BJ50ESECC
BJ50RLEUC
CJ275TLCDC
CJ300TLCDC
D100WTLM
HJ55WMLM
J100STLCCA
J100STLCEM
J100STLESB
J100WMLCDR
J100WTLCUA
J100WTLESM
J100WTLZ
J10EESC
J10FEXEO
J110MLCCA
J110MLCDC
J110MLCEM
J110MLCUR
J115JKLEOC
J115JKLERS
J115MLESB
J120TLAEM
J120TLASB
J120TLCCA
J120TLCDC
J120TLCUR
J125ESXESS
J125ESXW
J125WTPLE
J140CXCCS
J140CXCEC
J140CXESR
J140TLCDC
J140TLCUA
J150CXCCA
J150CXCEM
J150CXESB
J150GTLCUR
J150STLACA
J150STLCDC
J150STLCEM
J150STLESB
J150TLCDC
J150TLCUR
J150WTLEOR
J150WTLERC
J150WTLETG
J155WTLCDR
J155WTLCUA
J155WTLESM
J155WTLZ
J15DLEOC
J15EESR
J175STLACM
J175STLCEB
J175STLESE
J175TLCDR
J175TLCUA
J185ESXESS
J185ESXW
J200CXCCR
J200CXCEA
J200CXESM
J200STLCUA
J20CRCCA
J20CRCDC
J20CRCUR
J20ECEM
J20EESB
J225CLCUB
J225CXCCE
J225CXCED
J225CXESS
J25ECCM
J25ECDR
J25ECEB
J25ECUA
J25EESE
J275CLCUR
J275CXCCA
J28ESLCCR
J28ESLCEA
J28ESLCUC
J28ESLESM
J300CLCUR
J300CXCCA
J300CXCEM
J300CXESB
J30ECCE
J30ECDM
J30ECED
J30ECUB
J30EESS
J35AELCDE
J35AELCUD
J35RCCE
J35RCDM
J35RCUB
J40AELCCS
J40ECDE
J40ECEC
J40ECUD
J40EENJ
J40EEOD
J40EERE
J40EESR
J40EETB
J45RCE
J45RCEIA
J45RCENM
J45RCESR
J48ESLCCC
J48ESLCER
J48ESLCUS
J48ESLESA
J50BECCS
J50BECDE
J50BECEC
J50BECUD
J50BEENJ
J50BEEOD
J50BEERE
J50BEESR
J50BEETB
J50TELCEC
J50TTLECA
J50TTLEDC
J50TTLEOS
J50TTLEUR
J55RWLE
J55RWLEIA
J55RWLENM
J55RWLESR
J60ELCDS
J60ELCEA
J60ELCUC
J60ELESM
J60TTLECM
J60TTLEDR
J60TTLENE
J60TTLEOC
J60TTLERS
J60TTLETD
J60TTLEUA
J65WMLCDR
J65WMLCUA
J65WMLESM
J65WMLZ
J70ELCCA
J70ELCDC
J70ELCEM
J70ELCUR
J70ELESB
J70TTLEND
J70TTLEOR
J70TTLERC
J70TTLETS
J75ECDC
J75ECUR
J85TTLEND
J85TTLEOR
J85TTLERC
J85TTLETS
J88MSLCCC
J88MSLCER
J88MSLCUS
J88MSLESA
J90MLCDC
J90MLCUR
N65WMLM
SJ125WTPLV
TJ30ELESS
X155WTLM
JOHNSON
BRP JOHNSON entire parts catalog list:
- IGNITION SWITCH & CABLE -- 9.9 » 0332179
BJ10FDLEUA, BJ10FPXEUR, BJ10FRELUA, J10FEXEUA, J10FRELEUA, J10FREUA, J10FRLEUA 1997
BJ15FAEDR, BJ15FDLEDR, BJ15FKEDR, BJ15FREDR, BJ15FRELEDR, BJ15FWEDC, BJ15FWLEDC, J15FKEDR, J15FREDR, J15FRELEDR, J15FRLEDR 1996
BJ15FAEUA, BJ15FDLEUA, BJ15FKEUA, BJ15FRELUA, BJ15FREUA, BJ15FWEUR, BJ15FWLEUR, J15FKEUA, J15FRELEUA, J15FREUA, J15FRLEUA 1997
BJ15FDLECM, BJ15FWECA, BJ15FWLECA, J15FRECM, J15FRELECM, J15FRLECM 1998
BJ40EECR, BJ40ELECR, BJ40TLECR, J40ELECR, J40RECR, J40RLECR, J40TEECR, J40TELECR, J40TLECR, J40TTLECR 1998
BJ40EEDS, BJ40ELEDS, BJ40TLEDS, HJ40REDS, HJ40RLEDS, J40ELEDS, J40REDS, J40RLEDS, J40TEEDS, J40TELEDS, J40TLEDS, J40TTLEDS, SJ40EEDS, SJ40REDS, SJ40RLEDS 1996
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
CJ275TLCDC, CJ275TXCDC, J275PTLCDC, J275PTXCDC 1986
CJ300TLCDC, CJ300TXCDC, J300TLCDC, J300TXCDC 1986
D100WTLM, D100WTXM 1988
HJ55WMLM 1996
J100STLCCA 1988
J100STLCEM 1989
J100STLESB, VJ100SLESB 1990
J100WMLCDR, J100WTLCDR, J100WTXCDR 1986
J100WTLCUA, J100WTXCUA 1987
J100WTLESM, J100WTXESM 1990
J100WTLZ, J100WTXZ 1989
J10EESC, J10ELESC, J10RELESC, J10RESC, J10RLESC, J10SELESC, TJ10ELESC, TJ10RELESC, TJ10RLESC 1990
J10FEXEO, J10FRELEOC, J10FREOC, J10FRLEO 1995
J110MLCCA, J110TLCCA, J110TXCCA 1988
J110MLCDC, J110TLCDC, J110TLCDF 1986
J110MLCEM, J110TLAEM, J110TLCEM, J110TXCEM, TJ110TLCEM, TJ110TXCEM 1989
J110MLCUR, J110TLCUR, J110TXCUR 1987
J115JKLEOC 1995
J115JKLERS 1994
J115MLESB, J115TLASB, J115TLESB, J115TXESB, TJ115TLESB, VJ115TLASB, VJ115TLESB, VJ115TXESB 1990
J120TLAEM, J120TLCEM, J120TXCEM, TJ120TXCEM 1989
J120TLASB, J120TLESB, J120TXESB, VJ120TLASB, VJ120TLESB, VJ120TXESB 1990
J120TLCCA, J120TXCCA 1988
J120TLCDC, J120TXCDC 1986
J120TLCUR, J120TXCUR 1987
J125ESXESS 1990
J125ESXW 1989
J125WTPLE 1995
J140CXCCS, J140TLCCM, J140TXCCM 1988
J140CXCEC, J140TLAEB, J140TLCEB, J140TXCEB 1989
J140CXESR, J140TLASE, J140TLESE, J140TXESE, VJ140TLASE, VJ140TLESE, VJ140TXESE 1990
J140TLCDC, J140TXCDC 1986
J140TLCUA, J140TXCUA 1987
J150CXCCA, J150TLCCA, J150TXCCA 1988
J150CXCEM, J150TLAEM, J150TLCEM, J150TXCEM, TJ150TXCEM 1989
J150CXESB, J150TLASB, J150TLESB, J150TXESB, VJ150TLESB, VJ150TXESB 1990
J150GTLCUR, J150STLCUR 1987
J150STLACA, J150STLCCA 1988
J150STLCDC 1986
J150STLCEM, TJ150SLCEM 1989
J150STLESB, TJ150SLESB, VJ150SLESB 1990
J150TLCDC, J150TXCDC 1986
J150TLCUR, J150TXCUR 1987
J150WTLEOR, J150WTXEOR 1995
J150WTLERC, J150WTLERV, J150WTXERC, J150WTXERV 1994
J150WTLETG, J150WTLETS, J150WTXETG, J150WTXETS 1993
J155WTLCDR, J155WTXCDR 1986
J155WTLCUA, J155WTXCUA 1987
J155WTLESM, J155WTXESM 1990
J155WTLZ, J155WTXZ 1989
J15DLEOC, J15FREOC, J15FRLEOC, J15KEOC 1995
J15EESR, J15ELESR, J15RELESR, J15RESR, J15RLESR 1990
J175STLACM, J175STLCCM, J175TLCCM, J175TXCCM 1988
J175STLCEB, J175TXCEB 1989
J175STLESE, J175TXESE, VJ175SLESE, VJ175TXESE 1990
J175TLCDR, J175TXCDR 1986
J175TLCUA, J175TXCUA 1987
J185ESXESS 1990
J185ESXW 1989
J200CXCCR, J200STLACM, J200STLCCM, J200TXCCR 1988
J200CXCEA, J200STLCEB, J200TXCEA, TJ200TXCEA 1989
J200CXESM, J200STLESE, J200TXESM, VJ200SLESE, VJ200TXESM 1990
J200STLCUA, J200TXCUC 1987
J20CRCCA, J20CRLCCA, J20ECCA, J20ELCCA 1988
J20CRCDC, J20CRLCDC, J20ECDC, J20ELCDC, J20TECDC 1986
J20CRCUR, J20CRLCUR, J20ECUR, J20ELCUR 1987
J20ECEM, J20ELCEM 1989
J20EESB, J20ELESB 1990
J225CLCUB, J225CXCUB, J225PLCUB, J225PXCUB, J225TLCUB, J225TXCUB 1987
J225CXCCE, J225PLCCE, J225PXCCE, J225TLCCE, J225TXCCE 1988
J225CXCED, J225PLAED, J225PLCED, J225PXCED, J225TLAED, J225TLCED, J225TXCED 1989
J225CXESS, J225PLASS, J225PLESS, J225PXESS, J225TLASS, J225TLESS, J225TXESS, VJ225PLESS, VJ225PXESS, VJ225TLASS, VJ225TLESS, VJ225TXESS 1990
J25ECCM, J25ELCCM, J25RCCA, J25RLCCA, J25TECCA, J25TELCCA 1988
J25ECDR, J25ELCDR, J25RCDC, J25RDC, J25RLCDC, J25TECDC, J25TELCDC 1986
J25ECEB, J25ELCEB, TJ25ELCEB, TJ25ELESF 1989
Information:
Hints for Cold Weather Operation
If the engine will start, operate the engine until a minimum operating temperature of 80° C (176° F) is achieved. Achieving operating temperature will help prevent the intake valves and exhaust valves from sticking.
The cooling system and the lubrication system for the engine do not lose heat immediately upon shutdown. This means that an engine can be shut down for a period and the engine can still have the ability to start readily.
Install the correct specification of engine lubricant before the beginning of cold weather. Refer to Special Publication, SEBU6251, "Caterpillar Commercial Diesel Engine Fluids Recommendations".
Check all rubber parts (hoses, fan drive belts, ) weekly.
Check all electrical wiring and connections for any fraying or damaged insulation.
Keep all batteries fully charged and warm by ensuring that the engine is allowed to operated at normal operating temperature.
Fill the fuel tank at the end of each shift.
Drain the water from the fuel system. Refer to this Operation and Maintenance Manual, "Fuel System Primary Filter/Water Separator - Drain".
Check the air cleaners and the air intake daily. Check the air intake more often when you operate in snow.
Ensure that the glow plugs are in working order. Refer to Testing and Adjusting Manual, "Glow Plug - Test".
Personal injury or property damage can result from alcohol or starting fluids.Alcohol or starting fluids are highly flammable and toxic and if improperly stored could result in injury or property damage.
Do not use aerosol types of starting aids such as ether. Such use could result in an explosion and personal injury.
For jump starting with cables in cold weather, refer to the Operation and Maintenance Manual, "Starting with Jump Start Cables." for instructions.Viscosity of the Engine Lubrication Oil
Correct engine oil viscosity is essential. Oil viscosity affects lubrication properties and wear protection that the oil provides for the engine. Refer to this Operation and Maintenance Manual, "Fluid Recommendations" for the recommended viscosity of oil.Recommendations for the Coolant
Provide cooling system protection for the lowest expected outside temperature. Refer to this Operation and Maintenance Manual, "Fluid Recommendations" for the recommended coolant mixture.In cold weather, check the coolant often for the correct glycol concentration in order to ensure adequate freeze protection.Engine Block Heaters
Engine block heaters (if equipped) heat the engine jacket water that surrounds the combustion chambers. This equipment provides the following functions:
Startability is improved.
Warm up time is reduced.An electric block heater can be activated once the engine is stopped. A block heater can be 110 V or 240 V. The output can be 750/1000 W. Consult your Cat dealer for more information.Idling the Engine
After starting the engine, the engine speed will be governed for a maximum period of 25 seconds. When idling after the engine is started in cold weather, increase the engine rpm from 1000 to 1200 rpm. This idling will warm up the engine more quickly. Maintaining an elevated low idle speed for extended periods will be easier with the installation of a hand throttle. The engine should not be “raced” in order to speed up the warm-up process.While the engine is idling, the application of a light load (parasitic load) will assist in achieving the minimum operating temperature. The minimum operating temperature is 80° C (176° F).Constant speed engines should be allowed to operate at low idle for 3 minutes before used at operational speed. If the low idle option is not available, then operate the engine at operational speed with no load for 2 minutes.Recommendations for Coolant Warm Up
Warm up an engine that has cooled below normal operating temperatures due to inactivity. This warn-up should be performed before the engine is returned to full operation. During operation in very cold temperature conditions, damage to engine valve mechanisms can result from engine operation for short intervals. This damage can happen if the engine is started and the engine is stopped many times without being operated in order to warm up completely.When the engine is operated below normal operating temperatures, fuel and oil are not completely burned in the combustion chamber. This fuel and oil causes soft carbon deposits to form on the valve stems. Generally, the deposits do not cause problems and the deposits are burned off during operation at normal engine operating temperatures.Starting and stopping the engine many times without being operated in order to warm up completely, the carbon deposits become thicker. This issue can cause the following problems:
Free operation of the valves is prevented.
Valves become stuck.
Pushrods may become bent.
Other damage to valve train components can result. For this reason, when the engine is started, the engine must be operated until the coolant temperature is 80° C (176° F) minimum. Carbon deposits on the valve stems will be kept at a minimum. Free operation of the valves and the valve components will be maintained.In addition, the engine must be thoroughly warmed in order to keep other engine parts in better condition. The service life of the engine will be generally extended. Lubrication will be improved. There will be less acid and less sludge in the oil. This better condition will provide longer service life for the engine bearings, the piston rings, and other parts. However, limit unnecessary idle time to 10 minutes in order to reduce wear and unnecessary fuel consumption.The Water Temperature Regulator and Insulated Heater Lines
The engine is equipped with a water temperature regulator. When the engine coolant is below the correct operating temperature jacket water circulates through the engine cylinder block and into the engine cylinder head. The coolant then returns to the cylinder block via an internal passage that bypasses the valve of the coolant temperature regulator. This system ensures that coolant flows around the engine under cold operating conditions. The water temperature regulator begins to open when the engine jacket water has reached the correct minimum operating temperature. As the jacket water coolant temperature rises above the minimum operating temperature the water temperature regulator opens further allowing more coolant through the radiator to dissipate excess heat. The progressive opening of the water temperature regulator operates the progressive closing
If the engine will start, operate the engine until a minimum operating temperature of 80° C (176° F) is achieved. Achieving operating temperature will help prevent the intake valves and exhaust valves from sticking.
The cooling system and the lubrication system for the engine do not lose heat immediately upon shutdown. This means that an engine can be shut down for a period and the engine can still have the ability to start readily.
Install the correct specification of engine lubricant before the beginning of cold weather. Refer to Special Publication, SEBU6251, "Caterpillar Commercial Diesel Engine Fluids Recommendations".
Check all rubber parts (hoses, fan drive belts, ) weekly.
Check all electrical wiring and connections for any fraying or damaged insulation.
Keep all batteries fully charged and warm by ensuring that the engine is allowed to operated at normal operating temperature.
Fill the fuel tank at the end of each shift.
Drain the water from the fuel system. Refer to this Operation and Maintenance Manual, "Fuel System Primary Filter/Water Separator - Drain".
Check the air cleaners and the air intake daily. Check the air intake more often when you operate in snow.
Ensure that the glow plugs are in working order. Refer to Testing and Adjusting Manual, "Glow Plug - Test".
Personal injury or property damage can result from alcohol or starting fluids.Alcohol or starting fluids are highly flammable and toxic and if improperly stored could result in injury or property damage.
Do not use aerosol types of starting aids such as ether. Such use could result in an explosion and personal injury.
For jump starting with cables in cold weather, refer to the Operation and Maintenance Manual, "Starting with Jump Start Cables." for instructions.Viscosity of the Engine Lubrication Oil
Correct engine oil viscosity is essential. Oil viscosity affects lubrication properties and wear protection that the oil provides for the engine. Refer to this Operation and Maintenance Manual, "Fluid Recommendations" for the recommended viscosity of oil.Recommendations for the Coolant
Provide cooling system protection for the lowest expected outside temperature. Refer to this Operation and Maintenance Manual, "Fluid Recommendations" for the recommended coolant mixture.In cold weather, check the coolant often for the correct glycol concentration in order to ensure adequate freeze protection.Engine Block Heaters
Engine block heaters (if equipped) heat the engine jacket water that surrounds the combustion chambers. This equipment provides the following functions:
Startability is improved.
Warm up time is reduced.An electric block heater can be activated once the engine is stopped. A block heater can be 110 V or 240 V. The output can be 750/1000 W. Consult your Cat dealer for more information.Idling the Engine
After starting the engine, the engine speed will be governed for a maximum period of 25 seconds. When idling after the engine is started in cold weather, increase the engine rpm from 1000 to 1200 rpm. This idling will warm up the engine more quickly. Maintaining an elevated low idle speed for extended periods will be easier with the installation of a hand throttle. The engine should not be “raced” in order to speed up the warm-up process.While the engine is idling, the application of a light load (parasitic load) will assist in achieving the minimum operating temperature. The minimum operating temperature is 80° C (176° F).Constant speed engines should be allowed to operate at low idle for 3 minutes before used at operational speed. If the low idle option is not available, then operate the engine at operational speed with no load for 2 minutes.Recommendations for Coolant Warm Up
Warm up an engine that has cooled below normal operating temperatures due to inactivity. This warn-up should be performed before the engine is returned to full operation. During operation in very cold temperature conditions, damage to engine valve mechanisms can result from engine operation for short intervals. This damage can happen if the engine is started and the engine is stopped many times without being operated in order to warm up completely.When the engine is operated below normal operating temperatures, fuel and oil are not completely burned in the combustion chamber. This fuel and oil causes soft carbon deposits to form on the valve stems. Generally, the deposits do not cause problems and the deposits are burned off during operation at normal engine operating temperatures.Starting and stopping the engine many times without being operated in order to warm up completely, the carbon deposits become thicker. This issue can cause the following problems:
Free operation of the valves is prevented.
Valves become stuck.
Pushrods may become bent.
Other damage to valve train components can result. For this reason, when the engine is started, the engine must be operated until the coolant temperature is 80° C (176° F) minimum. Carbon deposits on the valve stems will be kept at a minimum. Free operation of the valves and the valve components will be maintained.In addition, the engine must be thoroughly warmed in order to keep other engine parts in better condition. The service life of the engine will be generally extended. Lubrication will be improved. There will be less acid and less sludge in the oil. This better condition will provide longer service life for the engine bearings, the piston rings, and other parts. However, limit unnecessary idle time to 10 minutes in order to reduce wear and unnecessary fuel consumption.The Water Temperature Regulator and Insulated Heater Lines
The engine is equipped with a water temperature regulator. When the engine coolant is below the correct operating temperature jacket water circulates through the engine cylinder block and into the engine cylinder head. The coolant then returns to the cylinder block via an internal passage that bypasses the valve of the coolant temperature regulator. This system ensures that coolant flows around the engine under cold operating conditions. The water temperature regulator begins to open when the engine jacket water has reached the correct minimum operating temperature. As the jacket water coolant temperature rises above the minimum operating temperature the water temperature regulator opens further allowing more coolant through the radiator to dissipate excess heat. The progressive opening of the water temperature regulator operates the progressive closing
Parts push JOHNSON:
0122506
0122506 PUSH-ON RING
115EL77S, 115ESL74B, 115ESL75E, 135ESL74B, 135ESL75E, 85EL76D, 85EL77S, J35AELCDE, J35AELCUD, J40AELCCS, J40ECDE, J40ECUD, J45RCE, J50BECCS, J50BECDE, J50BECIC, J50BECNR, J50BECOB, J50BECRM, J50BECTA, J50BECUD, J55RCIM, J55RWLE, J60ECIA, J60ECNM, J60