0314248 SCREW,Filter cap JOHNSON
10E74G, 10E75C, 10E76G, 10E77A, 10E78M, 10EL79B, 15E74G, 15E75C, 15E76A, 15E77M, 15E78B, 15E79E, 20R69B, 20R70C, 20R71S, 20R72R, 20R73A, 25E72R, 25E73A, 25E74M, 25E75B, 25E76E, 25R69B, 25R70C, 25R71S, 4R69B, 4R70E, 4R71D, 4R72S, 4R73C, 4R74R, 4R75A,
SCREW
Price: query
Rating:
Compatible models:
10E74G
10E75C
10E76G
10E77A
10E78M
10EL79B
15E74G
15E75C
15E76A
15E77M
15E78B
15E79E
20R69B
20R70C
20R71S
20R72R
20R73A
25E72R
25E73A
25E74M
25E75B
25E76E
25R69B
25R70C
25R71S
4R69B
4R70E
4R71D
4R72S
4R73C
4R74R
4R75A
4R76M
4R77B
4R78E
6R69M
6R70B
6R71E
6R72D
6R73S
6R74C
6R75R
6R76A
6R77M
6R78B
6R79E
9R69S
9R70A
9R71R
9R72M
9R73B
CD-25A
FD-22A
J10ECOM
J10ECSE
J10ELCID
J10ELCNS
J10ELCRA
J10ELCTC
J15ECIS
J15ECNC
J15ECOB
J15ECRM
J15ECSD
J15ECTR
J4BRCIC
J4BRHCNR
J4BRHCOB
J4BRHCRM
J4BRHCTA
J4WCNR
J5RCIC
J5RCSS
J5RHCNR
J5RHCTA
J6RCRM
J8RCIC
J8RCNR
J8RCRM
J8RCSS
J8RCTA
JH-23A
LD-13B
MQ-14D
JOHNSON
BRP JOHNSON entire parts catalog list:
- FUEL PUMP » 0314248
10E76G, 10E76H, 10E76R, 10EL76G, 10EL76H, 10EL76R, 10R76G, 10R76H, 10R76R, 10RL76G, 10RL76H, 10RL76R 1976
10E77A, 10EL77A, 10R77A, 10RL77A 1977
10E78M, 10EL78M, 10R78M, 10RL78M, 10SEL78M 1978
10EL79B, 10R79B, 10RL79B, 10SEL79B 1979
15E74G, 15E74S, 15EL74G, 15EL74S, 15R74G, 15R74S, 15RL74G, 15RL74S 1974
15E75C, 15EL75C, 15R75C, 15RL75C 1975
15E76A, 15E76R, 15EL76A, 15EL76R, 15R76A, 15R76R, 15RL76A, 15RL76R 1976
15E77M, 15EL77M, 15R77M, 15RL77M 1977
15E78B, 15EL78B, 15R78B, 15RL78B 1978
15E79E, 15EL79E, 15R79E, 15RL79E 1979
20R69B, 20R69D, 20RL69B, 20RL69D 1969
20R70C, 20R70E, 20RL70C, 20RL70E 1970
20R71S, 20RL71S 1971
20R72R, 20RL72R 1972
20R73A, 20RL73A 1973
25E72R, 25EL72R, 25R72R, 25RL72R 1972
25E73A, 25EL73A, 25R73A, 25RL73A 1973
25E74M, 25EL74M, 25R74M, 25RL74M 1974
25E75B, 25EL75B, 25R75B, 25RL75B 1975
25E76E, 25EL76E, 25R76E, 25RL76E 1976
25R69B, 25R69D, 25RL69B, 25RL69D 1969
25R70C, 25R70E, 25RL70C, 25RL70E 1970
25R71S, 25RL71S 1971
4R69B, 4W69B, 4WF69B 1969
4R70E, 4RL70E, 4W70E, 4WL70E 1970
4R71D, 4RL71D, 4W71D, 4WL71D 1971
4R72S, 4W72S 1972
4R73C, 4W73C 1973
4R74R, 4W74R 1974
4R75A, 4W75A 1975
4R76M, 4W76M 1976
4R77B, 4W77B 1977
4R78E, 4RL78E, 4W78E 1978
6R69M, 6RL69M 1969
6R70B, 6RL70B 1970
6R71E, 6R71G, 6RL71E, 6RL71G 1971
6R72D, 6RL72 1972
6R73S, 6RL73S 1973
6R74C, 6RL74C 1974
6R75R, 6RL75R 1975
6R76A, 6RL76A 1976
6R77M, 6RL77M 1977
6R78B, 6RL78B 1978
6R79E, 6RL79E 1979
9R69S, 9RL69S 1969
9R70A, 9R70C, 9RL70A, 9RL70C 1970
9R71R, 9RL71R 1971
9R72M, 9RL72M 1972
9R73B, 9RL73B 1973
CD-25A, CD-25C, CD-25R, CDL-25A, CDL-25C, CDL-25R 1968
FD-22A, FD-22E, FD-22M, FDL-22A, FDL-22E, FDL-22M 1968
J10ECOM, J10ELCOM, J10RCOM, J10RLCOM, J10SELCOM 1985
J10ECSE, J10ELCSE, J10RCSE, J10RLCSE, J10SELCSE 1980
J10ELCID, J10RCID, J10RLCID, J10SELCID 1981
J10ELCNS, J10RCNS, J10RLCNS, J10SELCNS 1982
J10ELCRA, J10RCRA, J10RLCRA, J10SELCRA 1984
J10ELCTC, J10RCTC, J10RCTR, J10RLCTC, J10RLCTR, J10SELCTC 1983
J15ECIS, J15RCIS, J15RLCIS 1981
J15ECNC, J15RCNC, J15RLCNC 1982
J15ECOB, J15ELCOB, J15RCOB, J15RLCOB 1985
J15ECRM, J15ELCRM, J15RCRM, J15RLCRM 1984
J15ECSD, J15ELCSD, J15RCSD, J15RLCSD 1980
J15ECTR, J15ELCTR, J15RCTA, J15RCTR, J15RLCTA, J15RLCTR 1983
J4BRCIC, J4BRLCIC 1981
J4BRHCNR, J4BRHLCNR 1982
J4BRHCOB, J4BRHLCOB 1985
J4BRHCRM, J4BRHLCRM 1984
J4BRHCTA, J4BRHLCTA 1983
J4WCNR 1982
J5RCIC, J5RHCIC, J5RHLCIC, J5RLCIC 1981
J5RCSS, J5RHCSS, J5RHLCSS, J5RLCSS 1980
J5RHCNR, J5RHLCNR 1982
J5RHCTA, J5RHLCTA 1983
J6RCRM, J6RLCRM, J6SLCRM 1984
J8RCIC, J8RLCIC 1981
J8RCNR, J8RLCNR, J8SRLCNR 1982
J8RCRM, J8RLCRM, J8SRLCRM 1984
J8RCSS, J8RLCSS 1980
J8RCTA, J8RLCTA, J8SRLCTA 1983
JH-23A, JH-23M, JHF-23A, JHF-23M, JHFL-23A, JHFL-23M, JHL-23A, JHL-23M, JW-23A, JW-23M, JWF-23A, JWF-23M, JWFL-23A, JWFL-23M, JWL-23A, JWL-23M 1968
LD-13B, LD-13E, LD-13M, LDL-13B, LDL-13E, LDL-13M 1968
MQ-14D, MQ-14E, MQL-14D, MQL-14E 1968
Information:
ECM Identification Parameters
Equipment ID
The customer can assign an "Equipment ID" for identification for the engine application.Engine Serial Number
The engine serial number is programmed into the ECM at the factory. The number is stamped on the engine information plate.Timing Control
These parameters allow the customer to program the ignition timing electronically in order to meet the needs for specific applications and installations.Note: The actual ignition timing at a given instance may vary from the desired timing value. This variance is due to variations in the engine speed, engine load, or detonation.First Desired Timing
The "First Desired Timing" is determined with the methane number of the primary fuel that is used. Use the Engine Performance Sheet, "Fuel Usage Guide". The ECM selects the "First Desired Timing" when the timing select switch creates an open circuit for terminal J1-20 at the engine ECM.Note: Determine the desired timing by using the Caterpillar Software, LEKQ6378, "Methane Number Program" with the results that are from the fuel analysis. Use of only the data from the gas analysis can result in incorrect settings.Second Desired Timing
The "Second Desired Timing" is determined with the methane number of the alternate fuel that is used and the Engine Performance Sheet, "Fuel Usage Guide". The ECM selects the "Second Desired Timing" when the timing select switch creates a short circuit to ground for terminal J1-20 at the engine ECM.If an alternate fuel is not used, enter the same timing value for the "Second Desired Timing" parameter that is entered in the "First Desired Timing" parameter.Global Timing Offset
The feature offsets the engine ignition timing in order to compensate for timing errors. The errors can be due to resistances in the electrical circuitry and the stackup of mechanical tolerances.This parameter provides a manual method that will allow additional timing adjustment to be performed after calibration of the speed/timing sensor. Perform a negative adjustment to this parameter for retardation of the engine timing. Perform a positive adjustment to this parameter in order to advance the engine timing. Only perform an adjustment to this parameter if engine operating indicators and measured data indicate that an adjustment is required.Air/Fuel Ratio Control
Before the initial start-up, a current gas analysis is required. Periodic gas analyses are also recommended. Use the Caterpillar Software, LEKQ6378, "Methane Number Program" in order to calculate the parameters for air/fuel ratio control for Caterpillar Gas Engines. The results are programmed into the ECM.Note: Use the Caterpillar Software, LEKQ6378, "Methane Number Program". The improper programming of the air/fuel ratio control can result in damage to the engine.The Caterpillar Software, LEKQ6378, "Methane Number Program" is also contained in Caterpillar Software, LERW4485, "GAS ENGINE RATING PRO - VERSION 3.01". This software also contains information that is related to engine performance.Fuel Quality
Low Heat Value (LHV) is the fuel quality. The air/fuel ratio control of the ECM will compensate for some inaccuracy in this setting. The ECM derives a corrected value that is multiplied by the "Fuel Correction Factor". The status of the parameter can be viewed with Cat ET.The "Fuel Quality" parameter can be used to change the air/fuel ratio when the engine is operating in the open loop mode. To richen the air/fuel mixture, reduce the value. The calculation will compensate for the reduced LHV by increasing the fuel flow. To lean the air/fuel mixture, increase the value. The calculation will compensate for the increased LHV by reducing the fuel flow.Gas Specific Gravity
This parameter is the fuel-specific gravity in relation to the specific gravity of air. The ECM does not use this information. The ECM provides the information to the fuel metering valve via the CAN data link. Some fuel metering valves require an input for the "Gas Specific Gravity" in order to precisely meter the fuel flow.Fuel Specific Heat Ratio
This ratio is the fuel-specific heat at a constant pressure and at a constant volume. The ratio is also known as "k". The ratio is related to the expansion of the gas across the fuel metering valve. The ECM does not use this information. The ECM provides the information to the fuel metering valve via the CAN data link. Some fuel metering valves require an input for the "Fuel Specific Heat Ratio" in order to precisely meter the fuel flow.Emissions Feedback Mode Configuration
The "Emissions Feedback Mode configuration" can be set to "NOx Feedback" or to "Feedback Disabled". This feature allows the feedback mode to be disabled in order to troubleshoot the engine. The disabling of this feature can help determine whether the air/fuel ratio control is the cause of a problem with instability.If the signal from the NOX sensor is not available, the control system does not have information for maintaining desired exhaust emissions.If there is a problem with the NOX sensor, this parameter can be set to "Feedback Disabled". "Feedback Disabled" allows the engine to run in the open loop mode until a new sensor is obtained. During operation in this mode, an emissions analyzer must be used to verify the emissions level. The "Fuel Quality" parameter is adjusted in order to change the air/fuel mixture for the engine.When the "Emissions Feedback Mode configuration" is set to "NOx Feedback", adjustment of the "Fuel Quality" parameter does not affect the air/fuel ratio. Do not adjust the "Fuel Quality" parameter when the "Emissions Feedback Mode configuration" is set to "NOx Feedback".Note: Do not operate an engine that is unattended in the open loop mode if the fuel has an LHV that is changing. The engine risks a shutdown due to lean misfire or to detonation.Desired Engine Exhaust NOx Level Setting
The ECM contains a control map for the NOX emissions that is programmed at the factory. The "Desired Engine Exhaust NOx Level Setting" parameter is used to trim this control map when the engine is in "NOx Feedback" mode. If the measured NOX emissions are not the required value, decrease the "Desired Engine Exhaust NOx Level Setting" parameter. Adjust this parameter in order to
Equipment ID
The customer can assign an "Equipment ID" for identification for the engine application.Engine Serial Number
The engine serial number is programmed into the ECM at the factory. The number is stamped on the engine information plate.Timing Control
These parameters allow the customer to program the ignition timing electronically in order to meet the needs for specific applications and installations.Note: The actual ignition timing at a given instance may vary from the desired timing value. This variance is due to variations in the engine speed, engine load, or detonation.First Desired Timing
The "First Desired Timing" is determined with the methane number of the primary fuel that is used. Use the Engine Performance Sheet, "Fuel Usage Guide". The ECM selects the "First Desired Timing" when the timing select switch creates an open circuit for terminal J1-20 at the engine ECM.Note: Determine the desired timing by using the Caterpillar Software, LEKQ6378, "Methane Number Program" with the results that are from the fuel analysis. Use of only the data from the gas analysis can result in incorrect settings.Second Desired Timing
The "Second Desired Timing" is determined with the methane number of the alternate fuel that is used and the Engine Performance Sheet, "Fuel Usage Guide". The ECM selects the "Second Desired Timing" when the timing select switch creates a short circuit to ground for terminal J1-20 at the engine ECM.If an alternate fuel is not used, enter the same timing value for the "Second Desired Timing" parameter that is entered in the "First Desired Timing" parameter.Global Timing Offset
The feature offsets the engine ignition timing in order to compensate for timing errors. The errors can be due to resistances in the electrical circuitry and the stackup of mechanical tolerances.This parameter provides a manual method that will allow additional timing adjustment to be performed after calibration of the speed/timing sensor. Perform a negative adjustment to this parameter for retardation of the engine timing. Perform a positive adjustment to this parameter in order to advance the engine timing. Only perform an adjustment to this parameter if engine operating indicators and measured data indicate that an adjustment is required.Air/Fuel Ratio Control
Before the initial start-up, a current gas analysis is required. Periodic gas analyses are also recommended. Use the Caterpillar Software, LEKQ6378, "Methane Number Program" in order to calculate the parameters for air/fuel ratio control for Caterpillar Gas Engines. The results are programmed into the ECM.Note: Use the Caterpillar Software, LEKQ6378, "Methane Number Program". The improper programming of the air/fuel ratio control can result in damage to the engine.The Caterpillar Software, LEKQ6378, "Methane Number Program" is also contained in Caterpillar Software, LERW4485, "GAS ENGINE RATING PRO - VERSION 3.01". This software also contains information that is related to engine performance.Fuel Quality
Low Heat Value (LHV) is the fuel quality. The air/fuel ratio control of the ECM will compensate for some inaccuracy in this setting. The ECM derives a corrected value that is multiplied by the "Fuel Correction Factor". The status of the parameter can be viewed with Cat ET.The "Fuel Quality" parameter can be used to change the air/fuel ratio when the engine is operating in the open loop mode. To richen the air/fuel mixture, reduce the value. The calculation will compensate for the reduced LHV by increasing the fuel flow. To lean the air/fuel mixture, increase the value. The calculation will compensate for the increased LHV by reducing the fuel flow.Gas Specific Gravity
This parameter is the fuel-specific gravity in relation to the specific gravity of air. The ECM does not use this information. The ECM provides the information to the fuel metering valve via the CAN data link. Some fuel metering valves require an input for the "Gas Specific Gravity" in order to precisely meter the fuel flow.Fuel Specific Heat Ratio
This ratio is the fuel-specific heat at a constant pressure and at a constant volume. The ratio is also known as "k". The ratio is related to the expansion of the gas across the fuel metering valve. The ECM does not use this information. The ECM provides the information to the fuel metering valve via the CAN data link. Some fuel metering valves require an input for the "Fuel Specific Heat Ratio" in order to precisely meter the fuel flow.Emissions Feedback Mode Configuration
The "Emissions Feedback Mode configuration" can be set to "NOx Feedback" or to "Feedback Disabled". This feature allows the feedback mode to be disabled in order to troubleshoot the engine. The disabling of this feature can help determine whether the air/fuel ratio control is the cause of a problem with instability.If the signal from the NOX sensor is not available, the control system does not have information for maintaining desired exhaust emissions.If there is a problem with the NOX sensor, this parameter can be set to "Feedback Disabled". "Feedback Disabled" allows the engine to run in the open loop mode until a new sensor is obtained. During operation in this mode, an emissions analyzer must be used to verify the emissions level. The "Fuel Quality" parameter is adjusted in order to change the air/fuel mixture for the engine.When the "Emissions Feedback Mode configuration" is set to "NOx Feedback", adjustment of the "Fuel Quality" parameter does not affect the air/fuel ratio. Do not adjust the "Fuel Quality" parameter when the "Emissions Feedback Mode configuration" is set to "NOx Feedback".Note: Do not operate an engine that is unattended in the open loop mode if the fuel has an LHV that is changing. The engine risks a shutdown due to lean misfire or to detonation.Desired Engine Exhaust NOx Level Setting
The ECM contains a control map for the NOX emissions that is programmed at the factory. The "Desired Engine Exhaust NOx Level Setting" parameter is used to trim this control map when the engine is in "NOx Feedback" mode. If the measured NOX emissions are not the required value, decrease the "Desired Engine Exhaust NOx Level Setting" parameter. Adjust this parameter in order to
Parts screw JOHNSON:
0312852
0312852 SCREW,Throttle and choke valve
100ESL71A, 100ESL72R, 10E74G, 10E75C, 10E76G, 10E77A, 115EL77S, 115ESL69E, 115ESL70D, 115ESL73M, 115ESL74B, 115ESL75E, 115TXL77S, 125ESL71C, 125ESL72R, 135ESL73M, 135ESL74B, 135ESL75E, 140ML77S, 15E74G, 15E75C, 15E76A, 15E77M, 175TL77S, 1R69C, 1R70R,
0510193
0510193 SCREW,Sems
100ML79S, 10E74G, 10E75C, 10E76G, 10E77A, 10E78M, 10EL79B, 115ESL70D, 115ML79R, 140ML79R, 150TL78S, 150TL79C, 15E74G, 15E75C, 15E76A, 15E77M, 15E78B, 15E79E, 175TL77S, 175TL78C, 175TL79R, 1R69C, 1R70R, 200TL76S, 200TL77C, 200TL78R, 200TL79A, 20R69B,
0306408
0306408 SCREW,Short
40E69R, 40E70A, 40ES69R, 40ES70A, 40R69R, 40R70A, 4R69B, 4R70E, 4R71D, 4R72S, 4R73C, 4R74R, 4R75A, 4R76M, 4R79D, J3BRCEC, J3BRESR, J4BRCIC, J4BRHCCS, J4BRHCDE, J4BRHCNR, J4BRHCOB, J4BRHCRM, J4BRHCTA, J4BRHCUD, J4RLCSS, J4WCIC, J4WCNR, JH-23A, RD-30A,
0305284
0305284 SCREW
100ESL71A, 100ESL72R, 100ML79S, 115EL77S, 115ESL69E, 115ESL70D, 115ESL73M, 115ESL74B, 115ESL75E, 115ETZ78C, 115ML79R, 115TXL77S, 125ESL71C, 125ESL72R, 135ESL73M, 135ESL74B, 135ESL75E, 140ML77S, 140ML78C, 140ML79R, 150TL78S, 175TL77S, 175TL78C, 200TL7
0310849
0310849 SCREW, Indicator support
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
0303078
0303078 SCREW
20R69B, 20R70C, 20R71S, 20R72R, 20R73A, 25E72R, 25E73A, 25E74M, 25E75B, 25E76E, 25E77S, 25E78C, 25E79R, 25R69B, 25R70C, 25R71S, 35E76G, 35E77C, 35E78R, 35E79A, 6R69M, 6R70B, 6R71E, 6R72D, 6R73S, 6R74C, 6R75R, 6R76A, 6R77M, 6R78B, 6R79E, CD-25A, FD-22
0302510
0302510 SCREW,Housing to powerhead
100ESL71A, 100ESL72R, 115EL77S, 115ESL69E, 115ESL70D, 115ESL73M, 115ESL74B, 115ESL75E, 125ESL71C, 125ESL72R, 135ESL73M, 135ESL74B, 135ESL75E, 50ES71S, 50ES72C, 50ES73R, 50ES74M, 50ES75B, 50R79C, 55E76E, 55E77D, 55E78S, 55E79C, 55ES69A, 60ES70B, 60ES7
0312139