0329080 GASKET, Exh. cover to pwhd. JOHNSON
BJ5DREDS, BJ5DREUC, BJ6DRECR, BJ6DREDS, BJ6DREUC, BJ8RCB, BJ8RCH, BJ8RCLT, BJ8REDS, J5DRECR, J6RCCS, J6RCDE, J6RCEC, J6RCOB, J6RCRM, J6RCUD, J6REEA, J6REIA, J6RENM, J6REOD, J6RERE, J6RESR, J6RETB, J6RLSIB, J6RLSOC, J6RLSRS, J6RLSSM, J6RLSTD, J8DREEA,
GASKET
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Compatible models:
BJ5DREDS
BJ5DREUC
BJ6DRECR
BJ6DREDS
BJ6DREUC
BJ8RCB
BJ8RCH
BJ8RCLT
BJ8REDS
J5DRECR
J6RCCS
J6RCDE
J6RCEC
J6RCOB
J6RCRM
J6RCUD
J6REEA
J6REIA
J6RENM
J6REOD
J6RERE
J6RESR
J6RETB
J6RLSIB
J6RLSOC
J6RLSRS
J6RLSSM
J6RLSTD
J8DREEA
J8RCCS
J8RCDE
J8RCEC
J8RCOB
J8RCRM
J8RCUD
J8RECR
J8REIA
J8RENM
J8REOD
J8RERE
J8RESR
J8RETB
J8REUC
J8RLSIE
J8RLSOR
J8RLSRC
J8RLSSB
J8RLSTS
J8WREES
J8WRLSIR
J8WRLSSC
JOHNSON
BRP JOHNSON entire parts catalog list:
- CYLINDER & CRANKCASE » 0329080
BJ6DRECR, BJ6DRLECR, J6RECR, J6RLECR 1998
BJ6DREDS, BJ6DRLEDS, BJ6REDS, BJ6RLEDS, J6REDS, J6RLEDS, J6SLEDS, SJ6REDS, SJ6RLEDS 1996
BJ6DREUC, BJ6DRLEUC, J6REUC, J6RLEUC 1997
BJ8RCB, BJ8RCLB 1997
BJ8RCH, BJ8RCLH 1996
BJ8RCLT, BJ8RCT 1998
BJ8REDS, BJ8RLEDS, BJ8SRLEDS, J8REDS, J8RLEDS, J8SRLEDS, SJ8REDS, SJ8RLEDS 1996
J5DRECR, J5DRLECR 1998
J6RCCS, J6RLCCS, J6SLCCS 1988
J6RCDE, J6RLCDE, J6SLCDE 1986
J6RCEC, J6RLCEC, J6SLCEC 1989
J6RCOB, J6RLCOB, J6SLCOB 1985
J6RCRM, J6RLCRM, J6SLCRM 1984
J6RCUD, J6RLCUD, J6SLCUD 1987
J6REEA, J6RLEEA 1999
J6REIA, J6RLEIA, J6SLEIA 1991
J6RENM, J6RLENM, J6SLENM 1992
J6REOD, J6RLEOD, J6SLEOD 1995
J6RERE, J6RLERE, J6SLERE 1994
J6RESR, J6RLESR, J6SLESR 1990
J6RETB, J6RLETB, J6SLETB 1993
J6RLSIB, J6RLVSIB, J6RSIB, J6RVSIB 2001
J6RLSOC, J6RSOC 2005
J6RLSRS, J6RSRS 2004
J6RLSSM, J6RSSM 2000
J6RLSTD, J6RSTD 2003
J8DREEA, J8REEM, J8RLEEM, J8RXEEM 1999
J8RCCS, J8RLCCS, J8SRLCCS 1988
J8RCDE, J8RLCDE, J8SRLCDE 1986
J8RCEC, J8RLCEC, J8SRLCEC, TJ8RCEC, TJ8RLCEC 1989
J8RCOB, J8RLCOB, J8SRLCOB 1985
J8RCRM, J8RLCRM, J8SRLCRM 1984
J8RCUD, J8RLCUD, J8SRLCUD 1987
J8RECR, J8RLECR, J8SRLECA 1998
J8REIA, J8RLEIA, J8SRLEIA 1991
J8RENM, J8RLENM, J8SRLENM 1992
J8REOD, J8RLEOD, J8SRLEOD 1995
J8RERE, J8RLERE, J8SRLERE 1994
J8RESR, J8RLESR, J8SRLESR 1990
J8RETB, J8RLETB, J8SRLETB 1993
J8REUC, J8RLEUC, J8SRLEUC 1997
J8RLSIE, J8RLVSIE, J8RLXSIE, J8RSIE, J8RVSIE, J8RXSIE 2001
J8RLSOR, J8RSOR 2005
J8RLSRC, J8RSRC 2004
J8RLSSB, J8RSSB, J8RXSSB 2000
J8RLSTS, J8RSTD 2003
J8WREES, J8WRLEES 1999
J8WRLSIR, J8WRSIR 2001
J8WRLSSC, J8WRSSC 2000
Information:
Illustration 1 g01913607
Typical view of the ECM
(1) J1/P1 ECM connector
(2) J2/P2 ECM connector The ECM has two connectors. The J1/P1 connector (1) and the J2/P2 connector (2) are 64-pin connectors. Each pin provides a connection point for a signal interface for the ECM.Overview of the Electronic Control System
The electronic control system is designed to control the engine operation for optimum performance with minimal emissions.The ECM is the engine control computer for the electronic control system. The ECM provides the capacity for the input/output functions, the control functions, the data link communications, and the computational functionality for the system. This functionality is detailed below:Input/Output Functions
The ECM relies on several different types of input devices in order to gather information that is related to the current state of engine operation. The ECM receives the status information from the input devices. The information is used to calculate the correct output action that is needed in order to control engine operation. These output actions are based on calculations that are made on cumulative data from other system components, software parameters, and information. The actions taken by the ECM are related to desired operation. The ECM utilizes switch inputs, sensor inputs, and data link communications to provide input information from the engine components.The ECM provides the following output functions:
Power supply control for related components
Controller circuits for engine operation
Communications ports for the communication mediumThe ECM utilizes outputs as power supplies, high side ECM drivers (switch to battery circuits), and low side ECM drivers (switch to ground circuits). the ECM also utilizes data link communications to output command signals to other engine controllers.Control Functions
Control functions are typically commands that are derived internally to the ECM circuitry. Control functions are used in order to calculate the necessary effect on the signal status for the output circuits that control the engine operation. The ECM utilizes the output drivers and data link communications to implement control over engine operation.Data Link Communications
The ECM utilizes the CAN data link exclusively for communications on this engine. This data link adheres to SAE J1939 communication protocols for all data link communications. The CAN data link is used for communications between the ECM, controllers, and displays. The CAN data link is also used for communications with an electronic service tool.Computational Functionality
The computational functionality of the ECM is dedicated to all aspects of engine operation and engine monitoring. The ECM is continuously evaluating the current state of operation. The results are compared by the ECM to the desired state of operation. The ECM evaluates the difference between these two states in order to calculate the necessary control command signals. The ECM then modifies output signals in order to bring the current state of operation closer to the desired state of operation. The ECM also compares the current state of operation to an acceptable range of operation. If the status of any parameter is not within the acceptable range of operation, the ECM communicates the adverse condition to the operator.Emissions Control System
The G3300B Engine is designed to operate within regulated emissions levels under all engine operating conditions. The electronic control system provides for monitoring and control of the engine emissions levels.Note: From the prospective of air/fuel control, the carburetor on the engine is used to mix the inlet air with a metered gas quantity. The load control valve for the carburetor must be adjusted to the full open (fully rich) position.The fuel actuator is used to control the air/fuel ratio by controlling the amount of fuel that is mixed with the air entering the carburetor. Two oxygen sensors are mounted in the engine exhaust piping in order that the ECM can continuously monitor emissions levels. A throttle actuator is utilized by the ECM to control engine speed.Note: The correct regulator output gas pressure must be established prior to operating the engine. Refer to Testing and Adjusting, "Gas Pressure - Check and Adjust" for information relating to the differential pressure setting for the correct air/fuel ratio. Correctly setting the gas pressure regulator for the engine allows for optimum engine start-up and stable engine operation with no engine load.Closed Loop Fuel Control
Emissions control is provided by continuously monitoring engine exhaust and adjusting the air/fuel ratio. This control strategy is called a closed loop control system. In this system, the ECM utilizes a feedback loop to determine air/fuel ratio. The ECM monitors the exhaust oxygen sensors, the exhaust temperature sensors, and other engine operating conditions to determine the current emissions. The ECM then uses this information to calculate a desired fuel valve position in order to adjust or maintain the emission levels. If the ECM is unable to establish an acceptable level of emissions for the engine, a diagnostic trouble code is activated. If the condition is severe, the engine may be shut down.Control System Components
The following control system components provide for monitoring and control of engine emissions:Electronic Control Module (ECM) - The ECM monitors engine sensors, compares data, and adjusts the actuator valve signals in order to maintain engine emissions. Sensor input data is collected used to compare current operating conditions to the desired operating conditions. Output control for the various actuators and ignition transformers is initiated in order to maintain the desired emissions level.Oxygen Level Sensors - The oxygen level sensors are monitored by the ECM in order to determine the emissions output of the engine and catalytic convertor performance. The ECM uses the data that is collected from these sensors to help calculate air/fuel ratio control and determine desired control strategy. The ECM also uses the oxygen sensors to monitor the performance of the catalytic convertor.Fuel Valve Actuator - The fuel valve actuator is used to control the amount of fuel that is allowed to mix with the inlet air. The fuel valve actuator operates a mechanical butterfly valve in the fuel piping to the engine. As the fuel actuator reacts to the control signal from the ECM, the butterfly valve is adjusted to modify fuel delivery to the engine. The air/fuel ratio for the engine
Parts gasket JOHNSON:
0301996
0301996 GASKET
100ESL71A, 100ESL72R, 100ML79S, 10E74G, 10E75C, 10E76G, 10E77A, 10E78M, 10EL79B, 115EL77S, 115ESL69E, 115ESL70D, 115ESL73M, 115ESL74B, 115ESL75E, 115ETZ78C, 115ML79R, 115TXL77S, 125ESL71C, 125ESL72R, 135ESL73M, 135ESL74B, 135ESL75E, 140ML77S, 140ML78
0319011
0319011 GASKET, Float bowl
10E74G, 10E75C, 10E76G, 10E77A, 10E78M, 10EL79B, 15E74G, 15E75C, 15E76A, 15E77M, 15E78B, 15E79E, 4R78E, 4R79D, J10ECDB, J10ECOM, J10ECSE, J10ELCID, J10ELCNS, J10ELCRA, J10ELCTC, J15ECDE, J15ECIS, J15ECNC, J15ECOB, J15ECRM, J15ECSD, J15ECTR, J4BRHCNR,
0318932
0318932 GASKET, Carburetor to manifold
10E74G, 10E75C, 10E76G, 10E77A, 10E78M, 10EL79B, 15E74G, 15E75C, 15E76A, 15E77M, 15E78B, 15E79E, BJ10FAEDC, BJ10FAEUR, BJ10FDLECM, BJ10FDLEDR, BJ10FDLEUA, BJ15FAEDR, BJ15FAEUA, BJ15FDLECM, BJ20SREUM, BJ25BAEUA, BJ30BAEUD, BJ5DREDS, BJ5DREUC, BJ5FRBEC
0325273
0325273 GASKET,Cylinder head
BJ5DREDS, BJ5DREUC, BJ6DRECR, BJ6DREDS, BJ6DREUC, BJ8RCB, BJ8RCH, BJ8RCLT, BJ8REDS, J5DRECR, J5RCIC, J5RCSS, J5RHCNR, J5RHCTA, J6RCCS, J6RCDE, J6RCEC, J6RCOB, J6RCRM, J6RCUD, J6REEA, J6REIA, J6RENM, J6REOD, J6RERE, J6RESR, J6RETB, J6RLSIB, J6RLSOC, J
0325287
0325287 GASKET,Exhaust housing
J5RCIC, J5RCSS, J5RHCNR, J5RHCTA, J6RCRM, J8RCIC, J8RCNR, J8RCRM, J8RCSS, J8RCTA
0330564
0330564 GASKET, Exhaust housing
J6RCCS, J6RCDE, J6RCEC, J6RCOB, J6RCUD, J6RESR, J8RCCS, J8RCDE, J8RCEC, J8RCOB, J8RCUD, J8RESR
0331750
0331750 GASKET, Cover
J10ECCD, J10ECUE, J15ECCS, J15ECUD, J6RCCS, J6RCDE, J6RCUD, J8RCCS, J8RCDE, J8RCUD
0338882
0338882 GASKET, Bowl
BJ10EEDD, BJ10FAEDC, BJ10FAEUR, BJ10FDLECM, BJ10FDLEUA, BJ10RELEUS, BJ10RHLSDA, BJ10RHLSOR, BJ10RHLSRC, BJ10RHLSTS, BJ15EEDS, BJ15FAEUA, BJ15FDLECM, BJ15RELEUC, BJ20SREUM, BJ25ARECA, BJ25AREDC, BJ25AREUR, BJ25BAEUA, BJ25PL3EEM, BJ25PL3SIE, BJ25PL3SSB