0336089 JOHNSON GASKET, Housing to cylinder


0336089 GASKET, Housing to cylinder JOHNSON BJ3REDS, BJ4BREDS, BJ4BREUC, J3REIA, J3RENM, J3REOD, J3RERE, J3RETB, J3REUC, J4BRECRJ, J4REEA, J4REIA, J4RENM, J4REOD, J4RERE, J4RETB, J4RLSIB, J4RLSSM GASKET
0336089 GASKET, Housing to cylinder JOHNSON
Rating:
103

Buy GASKET, Housing to cylinder 0336089 JOHNSON genuine, new aftermarket parts with delivery
Number on catalog scheme: 7
 

BRP JOHNSON entire parts catalog list:

BJ3REDS, SJ3REDS 1996
BJ4BREDS, BJ4BRLEDS, BJ4REDS, BJ4RLEDS, J4REDS, J4RLEDS, SJ4REDS, SJ4RLEDS 1996
BJ4BREUC, BJ4BRLEUC, J4REUC, J4RLEUC 1997
J3REIA 1991
J3RENM 1992
J3REOD 1995
J3RERE 1994
J3RETB 1993
J3REUC 1997
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

Information:


Illustration 1 g06597864
Schematic of the air/fuel ratio control
(1) ECM in a remote panel
(2) Manifold air pressure sensor
(3) Oxygen buffer
(4) Oxygen sensor
(5) Inlet manifold temperature sensor
(6) Actuator
(7) Fuel valve
(8) Caterpillar Electronic Technician ( ET)ECM (1) is the main component of the system. For the air/fuel ratio control, three inputs are provided to the ECM by sensors on the engine: inlet manifold air pressure, inlet manifold air temperature and exhaust oxygen level. The ECM uses the inputs to calculate the desired fuel flow.Manifold air pressure sensor (2) is mounted on the engine. The sensor measures the inlet manifold air pressure (absolute pressure) of the engine. The ECM uses the information to calculate the engine load.Oxygen buffer (3) is mounted on the engine. The buffer provides an interface between oxygen sensor (4) and the ECM. The buffer controls the sensor heater and the supply of voltage to the sensor. The buffer also converts the sensor output current into a signal that is sent to the ECM. The ECM converts the duty cycle into a percent of oxygen.Oxygen sensor (4) is mounted in an adapter ring on the exhaust elbow. The sensor measures the percent of oxygen in the engine exhaust. The exhaust oxygen level is an indication of the exhaust emissions. The sensor has a heater that is used during calibration. Voltage is input to the sensor and a current signal is output by the sensor to the oxygen buffer.The ECM is programmed with a map of desired exhaust oxygen versus the inlet manifold air pressure. The map is used to adjust the percent of desired exhaust oxygen according to the calculated engine load.Inlet manifold temperature sensor (5) monitors the temperature of the air/fuel mixture after the aftercooler. The ECM compares information from the inlet manifold temperature sensor to a programmed map. The map is used to offset the percent of desired exhaust oxygen for various inlet manifold temperatures to maintain a constant level of NOx.For example, the desired exhaust oxygen can be increased by 0.016 percent for each 1 °C (1.8 °F) of temperature that is greater than 45 °C (113 °F). The desired exhaust oxygen can be decreased by 0.016 percent for each 1 °C (1.8 °F) of temperature less than 45 °C (113 °F). In either case, the maximum adjustment is approximately 0.7 percent.The ECM sends a command to actuator (6) to move fuel valve (7). The fuel valve is located between the gas pressure regulator outlet and the carburetor fuel inlet. The quantity of fuel that is delivered to the carburetor is determined by the position of the fuel valve. The actuator sends a signal to the ECM for the ECM to monitor the position of the actuator.The ECM monitors the electrical systems of each component. The ECM will generate a diagnostic code and a warning if there is a problem with an electrical circuit. The warning is indicated by an LED on the display of the ECM.The diagnostic code can be read on the ECM or with either of these electronic service tools: Cat ET (8) .The signal of the oxygen sensor duty cycle must be calibrated for the ECM to monitor the actual percent of oxygen in the exhaust. The Cat ET is used for calibration of the oxygen sensor. The desired percent of exhaust oxygen can be programmed with electronic service tool.The air/fuel ratio control is a closed loop system. The inlet manifold air pressure, the inlet manifold air temperature, and the exhaust oxygen are continuously monitored. The information is compared to the programmed map of desired oxygen versus inlet manifold air pressure. The map is offset by the map for the inlet manifold temperature. The flow of fuel is controlled to maintain the desired exhaust emissions. The system maintains a consistent level of NOx under various operating conditions.Generally, as the air/fuel mixture becomes more lean the exhaust emissions and temperatures are reduced. The fuel consumption can increase slightly.As the air/fuel mixture is rich, the exhaust emissions, temperatures, and power are increased. If the air/fuel mixture is too rich, detonation can occur.A change in the fuel energy content requires changes in the air/fuel mixture to maintain the desired exhaust oxygen. If the fuel energy content becomes greater, the air/fuel ratio control will move the fuel valve to maintain the desired exhaust emissions.


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
0323452
 
0323452 GASKET
4R78E, 4R79D, BJ3REDS, BJ4BREDS, BJ4BREUC, BJ4RDHEDS, J3BRCEC, J3BRESR, J3RCCM, J3RCUA, J3REIA, J3RENM, J3REOD, J3RERE, J3RETB, J3REUC, J4BRCIC, J4BRECRJ, J4BRHCCS, J4BRHCDE, J4BRHCNR, J4BRHCOB, J4BRHCRM, J4BRHCTA, J4BRHCUD, J4RCCS, J4RCEC, J4RCUD, J
0323445
 
0323445 GASKET, Cover plate
4R78E, 4R79D, BJ3REDS, BJ4BREDS, BJ4BREUC, BJ4RDHEDS, J3BRCEC, J3BRESR, J3REIA, J3RENM, J3REOD, J3RERE, J3RETB, J3REUC, J4BRCIC, J4BRECRJ, J4BRHCCS, J4BRHCDE, J4BRHCNR, J4BRHCOB, J4BRHCRM, J4BRHCTA, J4BRHCUD, J4RDHCCS, J4RDHCDE, J4RDHCEC, J4RDHCUD, J
0123231
GASKET,Cap
0123231 GASKET,Cap
BJ10EEDD, BJ10FAEDC, BJ10FDLEDR, BJ15EEDS, BJ15FAEDR, BJ20SEEDA, BJ20SREDA, BJ25BAEDR, BJ25EEDM, BJ30BAEDE, BJ30EEDE, BJ40EEDS, BJ50BEEDS, BJ50DTLEDC, BJ5FRBEUS, BJ60ELEDR, BJ70ELEDA, BJ8FRBEDC, D25RWA, HJ15KCF, HJ15KCLN, HJ15KCLO, HJ20CREDA, HJ25FPO
0332010
 
0332010 GASKET, Cylinder head
BJ3REDS, BJ4BREDS, BJ4BREUC, BJ4RDHEDS, J3BRCEC, J3BRESR, J3RCCM, J3RCUA, J3REIA, J3RENM, J3REOD, J3RERE, J3RETB, J3REUC, J4BRECRJ, J4BRHCCS, J4BRHCUD, J4RCCS, J4RCEC, J4RCUD, J4RDHCCS, J4RDHCDE, J4RDHCEC, J4RDHCUD, J4RDHEIA, J4RDHENM, J4RDHEOD, J4RD
0331477
 
0331477 GASKET, Float chamber
J3BRCEC, J3BRESR, J3RCCM, J3RCUA, J3REIA, J3RENM, J4BRHCCS, J4RCCS, J4RCEC, J4RCUD, J4REIA, J4RENM, J4RESR
0331499
 
0331499 GASKET
J10ECCD, J10ECUE, J15ECCS, J15ECUD, J3REIA, J3RENM, J4BRHCCS, J4BRHCUD, J4RDHCCS, J4RDHCEC, J4RDHCUD, J4RDHEIA, J4RDHENM, J4RDHESR, J4REIA, J4RENM, VJ14RCCS, VJ14RCCS
0125530
GASKET, Housing to tank
0125530 GASKET, Housing to tank
BJ10EEDD, BJ10FAEDC, BJ10FDLEDR, BJ15EEDS, BJ15FAEDR, BJ20SEEDA, BJ20SREDA, BJ25BAEDR, BJ25EEDM, BJ30BAEDE, BJ30EEDE, BJ40EEDS, BJ50BEEDS, BJ50DTLEDC, BJ5FRBEUS, BJ60ELEDR, BJ70ELEDA, BJ8FRBEDC, HJ15KCF, HJ15KCLN, HJ15KCLO, HJ20CREDA, HJ25FPO, HJ25RL
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