0336982 JOHNSON O-RING, Vent screw


0336982 O-RING, Vent screw JOHNSON BJ3REDS, BJ40EECR, BJ40EEDS, BJ40EEEA, BJ40EEUC, BJ40ELSIF, BJ40ELSSM, BJ4BREDS, BJ4BREUC, BJ50BEEDS, BJ50EEER, BJ50ELSIF, BJ50ELSSA, BJ50ESECC, BJ50RLEUC, J2RTSIA, J2WRSIR, J3REIA, J3RENM, J3REOD, J3RERE, J3RETB, J3REUC, J3RSDE, J3RSNF, J3RSOD, J3RS O
0336982 O-RING, Vent screw JOHNSON
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12-10-2022

-: -
JOHNSON 336982 0336982 DRAIN PLUG VENT ORING SEAL 2 to 50 1980 to 06
336982 0336982 DRAIN PLUG VENT ORING SEAL 2 to 50 1980 to 06 || Johnson BRP 336982 Gear Drain Plug O Ring Vent Seal
$12.95
 

02-08-2020
5.6[2.25] Pounds
-: -
Johnson/Evinrude/OMC New OEM O-RING 0336982, 336982
SKU: 0336982 || Sold Each || Please verify your own fitment
Number on catalog scheme: 23
 

BRP JOHNSON entire parts catalog list:

BJ3REDS, SJ3REDS 1996
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
BJ4BREDS, BJ4BRLEDS, BJ4REDS, BJ4RLEDS, J4REDS, J4RLEDS, SJ4REDS, SJ4RLEDS 1996
BJ4BREUC, BJ4BRLEUC, J4REUC, J4RLEUC 1997
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
J2RTSIA, J2RTVSIA 2001
J2WRSIR 2001
J3REIA 1991
J3RENM 1992
J3REOD 1995
J3RERE 1994
J3RETB 1993
J3REUC 1997
J3RSDE 2006
J3RSNF 2002
J3RSOD 2005
J3RSRE 2004
J3RSTB, J3RSTF 2003
J3RTLSIA, J3RTSIA, J3RTVSIA 2001
J3WRSIR 2001
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
J48ESLEDC 1996
J48ESLEDC 1996
J48ESLEIM 1991
J48ESLEIM 1991
J48ESLENB, VJ48ESLENB 1992
J48ESLENB, VJ48ESLENB 1992
J48ESLEOS 1995
J48ESLEOS 1995
J48ESLERD 1994
J48ESLERD 1994
J48ESLETE, TJ48ESLETE, VJ48ESLETE 1993
J48ESLETE, TJ48ESLETE, VJ48ESLETE 1993
J4BRECRJ, J4BRLECRJ 1998
J4REEA, J4RLEEA 1999
J4REIA, J4RLEIA 1991
J4RENM, J4RLENM 1992
J4REOD, J4RLEOD 1995
J4RERE, J4RLERE 1994
J4RETB, J4RLETB 1993
J4RLSIB, J4RSIB 2001
J4RLSSM, J4RSSM 2000
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
SJ40RSLD 1997
SJ40RSLR 1998
SJ40RSLZ 1996

Information:


Table 1
Programmable Parameters for the Electronic Control Module (ECM) and the Air/Fuel Ratio Control (AFRC)
Cat ET
"C.S.P (CUSTOMER SPECIFIED PARAMETERS)"
AFRC "Desired Oxygen at Full Load"
AFRC "Governor Gain Factor"
AFRC "Governor Stability Factor"
AFRC "Governor Compensation Factor"
AFRC "Auxiliary Proportional Governor Gain 1"
AFRC "Auxiliary Integral Governor Gain 1"
AFRC "Auxiliary Derivative Governor Gain 1"
AFRC "Low Idle Speed"
AFRC "Rated Engine Speed"
AFRC "Engine Accel. Rate"
AFRC "Engine Speed Droop"
ECM "Engine Compression Ratio"
ECM "Number of Detonation Sensors"
ECM "Rating Number"
ECM "Engine Load Timing Map"
ECM "Engine Configuration"
AFRC "Engine Operation Type"
AFRC "Governor Type Setting"
"TIMING"
ECM "Desired Engine Ignition Timing"
"O2/TEST"
AFRC "Air/Fuel Proportional Gain"
AFRC "Air/Fuel Integral Gain" If a module is replaced, the appropriate parameters must be copied from the old module. The settings can be recorded on paper and then programmed into the new module. Alternatively, this can be done with the "Copy Configuration" feature of theCaterpillar Electronic Technician (Cat ET).
Changing the parameters during engine operation can cause the engine to operate erratically and can cause engine damage.Unless you are otherwise instructed, only change the settings of the parameters when the engine is STOPPED.
"C.S.P. Customer Specified Parameters"
"DES FULL LOAD O2"
This parameter is the desired percent of exhaust oxygen when the engine is at 100 percent of rated load. The programmed value is assumed to be a dry oxygen reading. The oxygen sensor actually measures a wet reading. The software in the ECM is programmed to compensate for the difference.Entering a higher value of desired oxygen will cause the engine to run lean, with a higher air/fuel ratio. Leaner running causes these conditions: reduced exhaust emissions, lower exhaust temperatures, slightly increased fuel consumption and decreased power reserve.Entering a lower value of desired oxygen will cause the engine to run on a richer mixture, with a lower air/fuel ratio. Richer running causes these conditions: greater exhaust emissions, higher exhaust temperatures, lower fuel consumption, and increased power reserve. If the air/fuel mixture is too rich, detonation can occur.Governor Gain Settings
The settings for the governor gains tailor the response of the governor to the application. There are individual adjustments for the proportional gain, the stability, and the compensation. These settings are also called proportional gain, integral gain, and derivative gain.There are primary gains and alternate gains. Two sets of gains allow the engine performance to be optimal under different conditions. For example, primary gains would be selected when the generator is on the grid. Alternate gains would be selected when the generator is off the grid.The primary gains are selected when terminal P1-35 on the ECM is an open circuit.The alternate gains are selected when terminal P1-35 is connected to ground."GOV P-GAIN"
This parameter is based on a proportional multiplier. This parameter determines the speed of the throttle actuator response in adjusting for the difference between the actual speed and the desired speed. Increasing this value provides a faster response to the difference between the actual speed and the desired speed."GOV STAB"
This parameter is based on an integral multiplier. This parameter controls the speed for elimination of the error in the difference between the actual speed and the desired speed. Increasing this value provides less damping."GOV COMP"
This parameter is based on a derivative multiplier. This parameter is used to adjust for the time delay between the control signal and the movement of the throttle actuator. If this value is too low, the engine speed will slowly hunt. If this value is too high, the engine speed will rapidly fluctuate."AUX 1 GOV GAIN"
This parameter is based on a proportional multiplier. This parameter determines the speed of the throttle actuator response in adjusting for the difference between the actual speed and the desired speed. Increasing this value provides a faster response to the difference between the actual speed and the desired speed.This parameter changes the reaction of the throttle actuator when the "AUX 1 GOV GAINS" parameter is enabled. If changing this value causes no effect, check the "AUX 1 GOV GAINS" to make sure that the status is "ENABLED"."AUX 1 GOV STAB"
This parameter is based on an integral multiplier. This parameter controls the speed for elimination of the error in the difference between the actual speed and the desired speed. Increasing this value provides less damping.This parameter changes the reaction of the throttle actuator when the "AUX 1 GOV GAINS" parameter is enabled. If changing this value causes no effect, check the "AUX 1 GOV GAINS" to make sure that the status is "ENABLED"."AUX 1 GOV COMP"
This parameter is based on a derivative multiplier. This parameter is used to adjust for the time delay between the control signal and the movement of the throttle actuator. If this value is too low, the engine speed will slowly hunt. If this value is too high, the engine speed will rapidly fluctuate.This parameter changes the reaction of the throttle actuator when the "AUX 1 GOV GAINS" parameter is enabled. If changing this value causes no effect, check the "AUX 1 GOV GAINS" to make sure that the status is "ENABLED"."LOW IDLE SPEED"
This parameter sets the engine low idle speed. The valid range for this parameter is from 250 to 1500 rpm. The engine will attempt to maintain this speed when the idle/rated switch is in the idle position.This value for this parameter must be less than the value for the "RATED SPEED" parameter. If the value for the "LOW IDLE


Parts o JOHNSON:

0318372
"O" RING,Shift rod
0318372 "O" RING,Shift rod
100ML79S, 115EL77S, 115ESL73M, 115ESL74B, 115ESL75E, 115ETZ78C, 115ML79R, 115TXL77S, 135ESL73M, 135ESL74B, 135ESL75E, 140ML77S, 140ML78C, 140ML79R, 150TL78S, 150TL79C, 175TL77S, 175TL78C, 175TL79R, 200TL76S, 200TL77C, 200TL78R, 200TL79A, 235TL70A, 23
0333428
 
0333428 O-RING
BJ3REDS, BJ4BREDS, BJ4BREUC, J3BRCEC, J3BRESR, J3RCCM, J3RCUA, J3REIA, J3RENM, J3REOD, J3RERE, J3RETB, J3REUC, J4BRECRJ, J4BRHCCS, J4BRHCDE, J4BRHCNR, J4BRHCOB, J4BRHCRM, J4BRHCTA, J4BRHCUD, J4RCCS, J4RCEC, J4RCUD, J4REEA, J4REIA, J4RENM, J4REOD, J4R
0331188
O-RING, Cover
0331188 O-RING, Cover
BJ115ELEDR, BJ115ELEUA, BJ115GLECM, BJ115PLEEM, BJ115PLSIE, BJ115PLSSB, BJ115TLEDA, BJ130PLEED, BJ130PLSSS, BJ130TLECE, BJ130TLEDM, BJ130TLEUB, BJ135PLSIF, BJ150ELECD, BJ150ELEDB, BJ150ELEUC, BJ175EXECD, BJ175EXEDB, BJ175EXEUC, BJ175PLEES, BJ175PLSIF
0331366
 
0331366 O-RING, Nipple to fuel tank
AM55RSLD, BJ20SRECB, BJ20SREDA, BJ20SREUM, BJ25BAECM, BJ25BAEDR, BJ25BAEUA, BJ30BAECS, BJ30BAEDE, BJ30BAEEC, BJ30BAEUD, BJ40EECR, BJ40EEDS, BJ40EEEA, BJ40EEUC, BJ40ELSIF, BJ40ELSSM, BJ50BEEDS, BJ50EEER, BJ50ELSIF, BJ50ELSSA, BJ50ESECC, BJ50RLEUC, D25
0334913
O-RING, Fuel connector
0334913 O-RING, Fuel connector
AM55RSLD, BJ10EEDD, BJ10FAEDC, BJ10FAEUR, BJ10FDLECM, BJ10FDLEDR, BJ10FDLEUA, BJ10RELEUS, BJ130PLSSS, BJ135PLSIF, BJ15EEDS, BJ15FAEDR, BJ15FAEUA, BJ15FDLECM, BJ15RELEUC, BJ20SEECB, BJ20SEEDA, BJ20SEEUM, BJ20SRECB, BJ20SREDA, BJ20SREUM, BJ25ARECA, BJ2
0333639
 
0333639 O-RING, Plunger to end cap
AM55RSLD, BJ150ELECD, BJ150ELEDB, BJ150ELEUC, BJ175EXECD, BJ175EXEDB, BJ175EXEUC, BJ175PLEES, BJ175PLSIF, BJ175PLSSC, BJ20SRECB, BJ20SREDA, BJ20SREUM, BJ25BAECM, BJ25BAEDR, BJ25BAEUA, BJ30BAECS, BJ30BAEDE, BJ30BAEEC, BJ30BAEUD, BJ40EECR, BJ40EEDS, BJ
0433550
O RING KIT
0433550 O RING KIT
BJ40EECR, BJ40EEDS, BJ40EEEA, BJ40EEUC, BJ40ELSIF, BJ40ELSSM, BJ50BEEDS, BJ50EEER, BJ50ELSIF, BJ50ELSSA, BJ50ESECC, BJ50RLEUC, J40ECEC, J40EEIA, J40EENJ, J40EEOD, J40EERE, J40EESR, J40EETB, J40PLSNF, J40PLSOC, J40PLSRS, J40PLSTD, J40RLSNF, J40RLSOC,
0913921
 
0913921 O-RING
J40ECEC, J40EEIA, J40EENJ, J40EESR, J48ESLCER, J48ESLCER, J48ESLEIM, J48ESLEIM, J48ESLENB, J48ESLENB, J48ESLESA, J48ESLESA, J50BECEC, J50BEEIA, J50BEENJ, J50BEESR, J50TELCEC
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