0388347 CLAMPSCREW ASSY. JOHNSON
10E77A, 10E78M, 10EL79B, 15E77M, 15E78B, 15E79E, 25E77S, 25E78C, 25E79R, 35E77C, 35E78R, 35E79A, J10ECCD, J10ECDB, J10ECES, J10ECOM, J10ECSE, J10ECUE, J10ELCNS, J10ELCRA, J10ELCTC, J15ECCS, J15ECDE, J15ECEC, J15ECNC, J15ECOB, J15ECRM, J15ECSD, J15ECT
CLAMPSCREW
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Rating:
Compatible models:
10E77A
10E78M
10EL79B
15E77M
15E78B
15E79E
25E77S
25E78C
25E79R
35E77C
35E78R
35E79A
J10ECCD
J10ECDB
J10ECES
J10ECOM
J10ECSE
J10ECUE
J10ELCNS
J10ELCRA
J10ELCTC
J15ECCS
J15ECDE
J15ECEC
J15ECNC
J15ECOB
J15ECRM
J15ECSD
J15ECTR
J15ECUD
J20CRCDC
J20CRCEM
J20CRCOS
J20CRCUR
J20ECEM
J25ECDR
J25ECEB
J25ECNE
J25ECOC
J25ECRS
J25ECTD
J25ECUA
J25RCEM
J25RCSA
J25RSLS
J25RWCDC
J25RWCOS
J25RWCRD
J25RWCUR
J25TECEM
J28ESLCCR
J28ESLCEA
J28ESLCUC
J30ECCE
J30ECDM
J30ECED
J30ECOA
J30ECRR
J30ECUB
J30RCED
J30TECED
J35ECIG
J35ECND
J35ECRR
J35ECSM
J35ECTS
J35RCCE
J35RCDM
J35RCED
J35RCUB
J3BRCEC
J3RCCM
J3RCUA
J4BRHCCS
J4BRHCDE
J4BRHCUD
J4RCCS
J4RCEC
J4RCUD
J4RDHCCS
J4RDHCDE
J4RDHCEC
J4RDHCUD
J5RCSS
J5RHCNR
J5RHCTA
J6RCCS
J6RCDE
J6RCEC
J6RCOB
J6RCRM
J6RCUD
J8RCCS
J8RCDE
J8RCEC
J8RCNR
J8RCOB
J8RCRM
J8RCSS
J8RCTA
J8RCUD
JCO-CCM
JCO-CEB
JOHNSON
BRP JOHNSON entire parts catalog list:
- EXHAUST HOUSING » 0388347
10EL79B, 10R79B, 10RL79B, 10SEL79B 1979
15E77M, 15EL77M, 15R77M, 15RL77M 1977
15E78B, 15EL78B, 15R78B, 15RL78B 1978
15E79E, 15EL79E, 15R79E, 15RL79E 1979
25E77S, 25EL77H, 25EL77S, 25R77H, 25R77S, 25RL77H, 25RL77S 1977
25E78C, 25EL78C, 25R78C, 25RL78C 1978
25E79R, 25EL79R, 25R79R, 25RL79R 1979
35E77C, 35E77H, 35EL77C, 35EL77H, 35R77C, 35R77H, 35RL77C, 35RL77H 1977
35E78R, 35EL78R, 35R78R, 35RL78R 1978
35E79A, 35EL79A, 35R79A, 35RL79A 1979
J10ECCD, J10ELCCD, J10RCCD, J10RLCCD, J10SELCCD 1988
J10ECDB, J10ELCDB, J10RCDB, J10RLCDB, J10SELCDB 1986
J10ECES, J10ELCES, J10RCES, J10RLCES, J10SELCES, TJ10ELCES, TJ10RLCES 1989
J10ECOM, J10ELCOM, J10RCOM, J10RLCOM, J10SELCOM 1985
J10ECSE, J10ELCSE, J10RCSE, J10RLCSE, J10SELCSE 1980
J10ECUE, J10ELCUE, J10RCUE, J10RLCUE, J10SELCUE 1987
J10ELCNS, J10RCNS, J10RLCNS, J10SELCNS 1982
J10ELCRA, J10RCRA, J10RLCRA, J10SELCRA 1984
J10ELCTC, J10RCTC, J10RCTR, J10RLCTC, J10RLCTR, J10SELCTC 1983
- EXHAUST HOUSING 9.9 "R" MODELS,15 ELECT START & "A" MODELS
- EXHAUST HOUSING-9.9"C" MODELS,15 ROPE "R" MODELS
J15ECDE, J15ELCDE, J15RCDE, J15RLCDE 1986
J15ECEC, J15ELCEC, J15RCEC, J15RLCEC, TJ15RLCEC 1989
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
- EXHAUST HOUSING-9.9"C" MODELS,15 ROPE "R" MODELS
- EXHAUST HOUSING 9.9 "R" MODELS,15 ELECT START & "A" MODELS
J20CRCDC, J20CRLCDC, J20ECDC, J20ELCDC, J20TECDC 1986
J20CRCEM, J20CRLCEM, TJ20CRCEM, TJ20CRLCEM, TJ20CRLESF 1989
J20CRCOS, J20CRLCOS, J20ECOS, J20ELCOS 1985
J20CRCUR, J20CRLCUR, J20ECUR, J20ELCUR 1987
J20ECEM, J20ELCEM 1989
J25ECDR, J25ELCDR, J25RCDC, J25RDC, J25RLCDC, J25TECDC, J25TELCDC 1986
J25ECEB, J25ELCEB, TJ25ELCEB, TJ25ELESF 1989
J25ECNE, J25ELCNE, J25RCNB, J25RELCNB, J25RLCNB, J25TECNB 1982
J25ECOC, J25ELCOC, J25RCOS, J25RLCOS, J25TECOS, J25TELCOS 1985
J25ECRS, J25ELCRS, J25RCRD, J25RLCRD, J25TECRD, J25TELCRD 1984
J25ECTD, J25ELCTD, J25RCTE, J25RLCTE, J25TECTE, J25TELCTE 1983
J25ECUA, J25ELCUA, J25RCUR, J25RLCUR, J25TECUR, J25TELCUR 1987
J25RCEM, J25RLCEM 1989
J25RCSA, J25RLCSA, J25TECSA, J25TELCSA 1980
J25RSLS, J25RSS, J25RWCTE, J25RWLCTE 1983
J25RWCDC, J25RWLCDC 1986
J25RWCOS, J25RWLCOS 1985
J25RWCRD, J25RWLCRD 1984
J25RWCUR, J25RWLCUR 1987
J25TECEM, J25TELCEM 1989
J28ESLCCR, VJ28ESLCCR 1988
J28ESLCCR, VJ28ESLCCR 1988
J28ESLCEA, VJ28ESLCEA 1989
J28ESLCEA, VJ28ESLCEA 1989
J28ESLCUC 1987
J28ESLCUC 1987
J30ECCE, J30ELCCE, J30RCCE, J30RLCCE, J30TECCE, J30TELCCE 1988
J30ECDM, J30ELCDM, J30RCDM, J30RLCDM, J30TECDM, J30TELCDM 1986
J30ECED, J30ELCED, TJ30ELCED, TJ30ELESF 1989
J30ECOA, J30ELCOA, J30RCOA, J30RLCOA, J30TECOA, J30TELCOA 1985
J30ECRR, J30ELCRR 1984
J30ECUB, J30ELCUB, J30RCUB, J30RLCUB, J30TECUB, J30TELCUB 1987
J30RCED, J30RLCED 1989
J30TECED, J30TELCED 1989
J35ECIG, J35ELCIG, J35RCIG, J35RLCIG 1981
J35ECND, J35ELCND, J35RCND, J35RLCND, J35TELCNB 1982
J35ECRR, J35ELCRR, J35RCRR, J35RLCRR, J35TELCRR 1984
J35ECSM, J35ELCSM, J35RCSM, J35RLCSM 1980
J35ECTS, J35ELCTS, J35RCTS, J35RLCTS, J35TELCTS 1983
J35RCCE, J35RLCCE 1988
J35RCDM, J35RLCDM 1986
J35RCED, J35RLCED 1989
J35RCUB, J35RLCUB 1987
J3BRCEC 1989
J3RCCM 1988
J3RCUA 1987
J4BRHCCS, J4BRHLCCS 1988
J4BRHCDE, J4BRHLCDE 1986
J4BRHCUD, J4BRHLCUD 1987
J4RCCS, J4RLCCS 1988
J4RCEC, J4RLCEC 1989
J4RCUD, J4RLCUD 1987
Information:
Idling
Idle speed is adjustable on Caterpillar electronic engines. Consult your Caterpillar dealer for information. The idle rpm is preset between 700 and 750 rpm.Avoid excess idling. If the vehicle is parked for more than five minutes, stop the engine. An engine can burn from 2.8 L (.7 US gal) to 5.7 L (1.5 US gal) of fuel per hour while the engine is idling. Excessive idling can cause carbon buildup and/or excessive idling can cause the engine to slobber. This is harmful to the engine.If extended idle time is required, control the engine rpm to 1000 rpm or above 1000 rpm. Ensure that the coolant temperature exceeds 82° C (180° F). Consult your Caterpillar dealer for assistance.Fast idle can be programmed within the range of 700 rpm to the top engine limit. Fast idle requires an "ON/OFF" switch on the dashboard. Consult your Caterpillar dealer for assistance.Idle Shutdown Timer
The idle shutdown timer can be programmed in order to shut down the engine after a specific time period of idling. The idle time can be programmed from three minutes to 1440 minutes (24 hours). If the idle shutdown timer is set to 0 minutes, the idle shutdown feature is disabled. If the setting of the timer is unknown, allow the engine to idle. Observe the time that elapses before the engine shuts down. The following conditions must be met in order to activate the idle shutdown timer:
The idle shutdown feature must be selected.
No vehicle speed is detected by the Electronic Control Module (ECM).
The engine is not under load.
The engine is at operating temperature. The engine is not in Cold Mode.After the vehicle is stationary, the idle shutdown timer begins. The engine can be operating at low idle or at an idle rpm that is selected by the idle governor. The "CHECK ENGINE/DIAGNOSTIC" lamp will flash rapidly for 90 seconds prior to shutdown. Movement of the vehicle automatically resets the idle shutdown timer to the programmed setting.The following conditions must be met in order to override the idle shutdown timer:
Program the "ALLOW IDLE SHUTDOWN OVERRIDE" to "YES".
The "CHECK ENGINE/DIAGNOSTIC" lamp will flash rapidly for 90 seconds prior to shutdown. Depress the service brake or the clutch pedal during the 90 seconds when the "CHECK ENGINE/DIAGNOSTIC" lamp flashes. After an idle shutdown, the engine can be restarted without turning the ignition switch to the OFF position.The override function is disabled if the "ALLOW IDLE SHUTDOWN OVERRIDE" is programmed to "NO".Cold Mode Operation
Cold mode is initiated if the coolant temperature is below 28° C (82° F). Engine power is decreased until the coolant temperature reaches the above value. In cold mode, the idle is 800 rpm for the C-10 and the C-12. In cold mode, the idle is 600 rpm for the 3406E, C-15, and C-16. The strategy for cold mode provides reduced smoke emission and faster warm-up time.After the cold mode is completed, the engine should be operated at low rpm and low load until normal operating temperature is reached. The engine will reach normal operating temperature faster when the engine is operated at low rpm and low power demand. This method is faster than trying to reach operating temperature by idling with no load.
It is not recommended that the vehicle be moved until the engine is out of cold mode. Power may be noticeably reduced if the vehicle is operated while the engine is in cold mode. At a speed above 8 km/h (5 mph), the low idle speed will be reduced to the customer programmed low idle speed. The power will still be reduced.
Cold mode is disabled if the throttle, the service brake, or the clutch (if equipped) is depressed. The rpm for cold mode operation drops to the programmed low idle speed in order to allow the transmission to be put into gear.Getting Started
Caterpillar electronic engines do not require long warm-up periods that needlessly waste fuel. Typically, the engine should be at normal operating temperature in a few minutes. Begin operating the engine at low load. After normal oil pressure is reached and the temperature gauges begin to rise, the engine may be operated at full load.To get the vehicle in motion, use a gear that will result in a smooth start. Move the load without increasing the engine rpm above low idle or without slipping the clutch. Engage the clutch smoothly. Slipping the clutch and engaging the clutch can cause stress to occur on the drive train. This can also cause fuel to be wasted.Use progressive shifting techniques. Progressive shifting is using only the rpm that is required in order to upshift into the next gear. Progressive shifting improves fuel economy.
Keep the engine rpm to a minimum. Use an rpm that is from 1200 to 1600 rpm.
Use only enough rpm to pick up the next gear.Progressive shifting also reduces the acceleration rate. Top gear is reached sooner because less time is needed to synchronize the gears during shifting. In addition, the engine is operating at the highest range of torque.The amount of rpm that is required to upshift increases as the vehicle speed increases, unless upshifts are made on upgrades. Experience with the vehicle will show the amount of rpm that is required to upshift under various conditions.Note: These engines may be programmed to encourage progressive shifting. The acceleration rate may slow down at certain rpm in lower gears. If this occurs, progressive shift parameters may have been programmed into the ECM. Progressive shift parameters will limit the rpm when the vehicle is driven in higher gears. These parameters are protected by customer passwords. If the vehicle can be operated in a higher gear at a vehicle speed that is desired, select the highest gear that is available to pull the load. This recommendation will help to obtain fuel economy. The engine will be operating at the lowest rpm that is required to pull the load.Vehicle Efficiency
An efficient vehicle performs the desired amount of work while the power demand on the engine is minimized. The following factors
Idle speed is adjustable on Caterpillar electronic engines. Consult your Caterpillar dealer for information. The idle rpm is preset between 700 and 750 rpm.Avoid excess idling. If the vehicle is parked for more than five minutes, stop the engine. An engine can burn from 2.8 L (.7 US gal) to 5.7 L (1.5 US gal) of fuel per hour while the engine is idling. Excessive idling can cause carbon buildup and/or excessive idling can cause the engine to slobber. This is harmful to the engine.If extended idle time is required, control the engine rpm to 1000 rpm or above 1000 rpm. Ensure that the coolant temperature exceeds 82° C (180° F). Consult your Caterpillar dealer for assistance.Fast idle can be programmed within the range of 700 rpm to the top engine limit. Fast idle requires an "ON/OFF" switch on the dashboard. Consult your Caterpillar dealer for assistance.Idle Shutdown Timer
The idle shutdown timer can be programmed in order to shut down the engine after a specific time period of idling. The idle time can be programmed from three minutes to 1440 minutes (24 hours). If the idle shutdown timer is set to 0 minutes, the idle shutdown feature is disabled. If the setting of the timer is unknown, allow the engine to idle. Observe the time that elapses before the engine shuts down. The following conditions must be met in order to activate the idle shutdown timer:
The idle shutdown feature must be selected.
No vehicle speed is detected by the Electronic Control Module (ECM).
The engine is not under load.
The engine is at operating temperature. The engine is not in Cold Mode.After the vehicle is stationary, the idle shutdown timer begins. The engine can be operating at low idle or at an idle rpm that is selected by the idle governor. The "CHECK ENGINE/DIAGNOSTIC" lamp will flash rapidly for 90 seconds prior to shutdown. Movement of the vehicle automatically resets the idle shutdown timer to the programmed setting.The following conditions must be met in order to override the idle shutdown timer:
Program the "ALLOW IDLE SHUTDOWN OVERRIDE" to "YES".
The "CHECK ENGINE/DIAGNOSTIC" lamp will flash rapidly for 90 seconds prior to shutdown. Depress the service brake or the clutch pedal during the 90 seconds when the "CHECK ENGINE/DIAGNOSTIC" lamp flashes. After an idle shutdown, the engine can be restarted without turning the ignition switch to the OFF position.The override function is disabled if the "ALLOW IDLE SHUTDOWN OVERRIDE" is programmed to "NO".Cold Mode Operation
Cold mode is initiated if the coolant temperature is below 28° C (82° F). Engine power is decreased until the coolant temperature reaches the above value. In cold mode, the idle is 800 rpm for the C-10 and the C-12. In cold mode, the idle is 600 rpm for the 3406E, C-15, and C-16. The strategy for cold mode provides reduced smoke emission and faster warm-up time.After the cold mode is completed, the engine should be operated at low rpm and low load until normal operating temperature is reached. The engine will reach normal operating temperature faster when the engine is operated at low rpm and low power demand. This method is faster than trying to reach operating temperature by idling with no load.
It is not recommended that the vehicle be moved until the engine is out of cold mode. Power may be noticeably reduced if the vehicle is operated while the engine is in cold mode. At a speed above 8 km/h (5 mph), the low idle speed will be reduced to the customer programmed low idle speed. The power will still be reduced.
Cold mode is disabled if the throttle, the service brake, or the clutch (if equipped) is depressed. The rpm for cold mode operation drops to the programmed low idle speed in order to allow the transmission to be put into gear.Getting Started
Caterpillar electronic engines do not require long warm-up periods that needlessly waste fuel. Typically, the engine should be at normal operating temperature in a few minutes. Begin operating the engine at low load. After normal oil pressure is reached and the temperature gauges begin to rise, the engine may be operated at full load.To get the vehicle in motion, use a gear that will result in a smooth start. Move the load without increasing the engine rpm above low idle or without slipping the clutch. Engage the clutch smoothly. Slipping the clutch and engaging the clutch can cause stress to occur on the drive train. This can also cause fuel to be wasted.Use progressive shifting techniques. Progressive shifting is using only the rpm that is required in order to upshift into the next gear. Progressive shifting improves fuel economy.
Keep the engine rpm to a minimum. Use an rpm that is from 1200 to 1600 rpm.
Use only enough rpm to pick up the next gear.Progressive shifting also reduces the acceleration rate. Top gear is reached sooner because less time is needed to synchronize the gears during shifting. In addition, the engine is operating at the highest range of torque.The amount of rpm that is required to upshift increases as the vehicle speed increases, unless upshifts are made on upgrades. Experience with the vehicle will show the amount of rpm that is required to upshift under various conditions.Note: These engines may be programmed to encourage progressive shifting. The acceleration rate may slow down at certain rpm in lower gears. If this occurs, progressive shift parameters may have been programmed into the ECM. Progressive shift parameters will limit the rpm when the vehicle is driven in higher gears. These parameters are protected by customer passwords. If the vehicle can be operated in a higher gear at a vehicle speed that is desired, select the highest gear that is available to pull the load. This recommendation will help to obtain fuel economy. The engine will be operating at the lowest rpm that is required to pull the load.Vehicle Efficiency
An efficient vehicle performs the desired amount of work while the power demand on the engine is minimized. The following factors