0325600 GROUND STRAP, Safety switch JOHNSON
HJ25TELEDA, J20CRCCA, J20CRCDC, J20CRCOS, J20CRCUR, J25ECCM, J25ECDR, J25ECIB, J25ECNE, J25ECOC, J25ECRS, J25ECTD, J25ECUA, J25GTESOC, J25GTESRS, J25TECEM, J25TEECB, J25TEEEE, J25TEEIE, J25TEEND, J25TEEOR, J25TEERC, J25TEESB, J25TEETS, J25TEEUM, J25T
GROUND
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Compatible models:
HJ25TELEDA
J20CRCCA
J20CRCDC
J20CRCOS
J20CRCUR
J25ECCM
J25ECDR
J25ECIB
J25ECNE
J25ECOC
J25ECRS
J25ECTD
J25ECUA
J25GTESOC
J25GTESRS
J25TECEM
J25TEECB
J25TEEEE
J25TEEIE
J25TEEND
J25TEEOR
J25TEERC
J25TEESB
J25TEETS
J25TEEUM
J25TELERC
J25TELSIS
J25TELSNF
J25TELSSD
J25TELSTR
J30ECCE
J30ECDM
J30ECOA
J30ECRR
J30ECUB
J30TECED
J30TEECS
J30TEEDE
J30TEEIC
J30TEENR
J30TEEOB
J30TEERM
J30TEESS
J30TEETA
J30TEEUD
J35ECIG
J35ECND
J35ECRR
J35ECTS
J35RCCE
J35RCDM
J35RCUB
JOHNSON
BRP JOHNSON entire parts catalog list:
- CYLINDER & CRANKCASE » 0325600
J20CRCDC, J20CRLCDC, J20ECDC, J20ELCDC, J20TECDC 1986
J20CRCOS, J20CRLCOS, J20ECOS, J20ELCOS 1985
J20CRCUR, J20CRLCUR, J20ECUR, J20ELCUR 1987
J25ECCM, J25ELCCM, J25RCCA, J25RLCCA, J25TECCA, J25TELCCA 1988
J25ECDR, J25ELCDR, J25RCDC, J25RDC, J25RLCDC, J25TECDC, J25TELCDC 1986
J25ECIB, J25ECIM, J25ELCIB, J25ELCIM, J25RCIM, J25RLCIM, J25TECIM, J25TELCIM 1981
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
J25GTESOC, J25TELSOM, J25TESOM 2005
J25GTESRS, J25TELSRA, J25TESRA 2004
J25TECEM, J25TELCEM 1989
J25TEECB, J25TELECB 1998
J25TEEEE, J25TEEEN, J25TELEEE, J25TELEEN 1999
J25TEEIE, J25TELEIE 1991
J25TEEND, J25TELEND 1992
J25TEEOR, J25TELEOR 1995
J25TEERC 1994
J25TEESB, J25TELESB 1990
J25TEETS, J25TELETS 1993
J25TEEUM, J25TELEUM, SJ25TEEUM 1997
J25TELERC 1994
J25TELSIS, J25TESIS, J25TVLSIS, J25TVSIS 2001
J25TELSNF, J25TESNF 2002
J25TELSSD, J25TESSD 2000
J25TELSTR, J25TESTR 2003
J30ECCE, J30ELCCE, J30RCCE, J30RLCCE, J30TECCE, J30TELCCE 1988
J30ECDM, J30ELCDM, J30RCDM, J30RLCDM, J30TECDM, J30TELCDM 1986
J30ECOA, J30ELCOA, J30RCOA, J30RLCOA, J30TECOA, J30TELCOA 1985
J30ECRR, J30ELCRR 1984
J30ECUB, J30ELCUB, J30RCUB, J30RLCUB, J30TECUB, J30TELCUB 1987
J30TECED, J30TELCED 1989
J30TEECS, J30TELECS 1998
J30TEEDE, J30TELEDE 1996
J30TEEIC, J30TELEIC 1991
J30TEENR, J30TELENR 1992
J30TEEOB, J30TELEOB 1995
J30TEERM, J30TELERM 1994
J30TEESS, J30TELESS 1990
J30TEETA, J30TELETA 1993
J30TEEUD, J30TELEUD, SJ30TEEUD 1997
J35ECIG, J35ELCIG, J35RCIG, J35RLCIG 1981
J35ECND, J35ELCND, J35RCND, J35RLCND, J35TELCNB 1982
J35ECRR, J35ELCRR, J35RCRR, J35RLCRR, J35TELCRR 1984
J35ECTS, J35ELCTS, J35RCTS, J35RLCTS, J35TELCTS 1983
J35RCCE, J35RLCCE 1988
J35RCDM, J35RLCDM 1986
J35RCUB, J35RLCUB 1987
Information:
Illustration 1 g06280197
Left Side Front
(1) Engine oil pressure sensor
(2) Thermowell
(3) Barometric pressure sensor
(4) Crank case pressure sensor
(5) Crank speed/timing sensor
Illustration 2 g06280206
Top View Front
(6) Fuel pressure sensor
(7) Fuel temperature sensor
Illustration 3 g06280266
Front Right Side View
(8) Engine Cam Speed SensorThe electronic control system is integrally designed into the engines fuel system and the engines air inlet and exhaust system to electronically control the fuel delivery. The electronic control system provides better timing control and fuel air ratio control in comparison to conventional mechanical engines. Injection timing is achieved by the precise control of the fuel injectors. Engine speed is controlled by adjusting the injection duration. The Electronic Control Module (ECM) energizes the unit injector solenoids to start the injection of fuel. Also, the ECM de-energizes the unit injector solenoids to stop the injection of fuel.Refer to Systems Operation/Testing And Adjusting, "Fuel System" for a complete explanation of the fuel injection process.The engine uses the following three types of electronic components:
Input component
Control component
Output componentAn input component is one that sends an electrical signal to the ECM. The signal that is sent varies in either of the following ways:
Voltage
Frequency
Pulse widthThe variation of the signal is in response to a change in some specific system of the engine. Some specific examples of an input component are the engine speed-timing sensors, and the coolant temperature sensor. The ECM interprets the signal from the input component as information about the condition, environment, or operation of the engine.An ECM receives the input signals from the input components. Electronic circuits inside the control component evaluate the signals from the input components. These electronic circuits also supply electrical energy to the output components of the system. The electrical energy that is supplied to the output components is based on predetermined combinations of input signal values.An output component is one that is operated by a control module. The output component receives electrical energy from the control group. The output component uses electrical energy to make an adjustment in one of the engines systems. An output component may also provide information to the operator.As an example, a moving solenoid plunger will perform work. By performing work, the component has functioned to regulate the engine.As an example, a control panel light or an alarm will provide information to the operator of the engine.These electronic components provide the ability to electronically control the engine operation. Engines with electronic controls offer the following advantages:
Improvement in performance
Improvement in fuel consumption
Reduction in emissions levelsVarious sensors feed data to the ECM. The following sensors are used by the ECM for data:
Engine coolant temperature
Engine oil pressure
Engine speed
Inlet air pressure
Injection actuation pressure
Fuel temperature
Fuel pressure
Inlet air temperatureThe ECM processes the data. Then, the ECM sends an electronic signal to the fuel injector. The signal will control the amount of fuel that is injected into the cylinder. This will optimize the efficiency and the performance of the engine.Data Link
A data link is used for the following items:
Communicate engine information.
Communicate with Caterpillar Electronic Technician (ET).
Calibrate the electronic engine control system.
Troubleshoot the electronic engine control system.
Program the electronic engine control system.The data link is used to communicate engine information to other electronic control systems. Also, the data link can interface with Cat ET.Cat ET can be used to program the customer specified parameters. The tool is plugged into the data link connector. This allows Cat ET to communicate with the ECM. Also, Cat ET can be used to display the real-time values of all the information that is available on the data link. This will help diagnose engine problems.Electronic Control Module (ECM)
Illustration 4 g01118503
Electronic Control Module (ECM)
The engine uses an ECM. The ECM is a microprocessor-based device. The ECM is mounted over the aftercooler in the valley.The inputs and the outputs to the ECM are designed to withstand short circuits without damage to the control module. The electronic engine control system has the following features that are designed into the system.
Resistance to radio frequency
Resistance to electromagnetic interferenceThe system has passed tests for interference by two-way radios and by switching noise.The ECM power supply provides electrical power to all engine-mounted sensors and actuators. The following precautions have been designed into the ECM.
Reverse voltage polarity protection
Swings or surges of the voltage in the power system due to sudden alternator loadThe ECM also monitors all sensor inputs and the ECM provides the correct outputs in addition to acting as a power supply. Also, the ECM ensures the desired engine operation.The ECM is programmed with a selected factory engine rating. The ECM memory contains a personality module identification code. This code is used to avoid unauthorized tampering or switching of personality modules and other pertinent manufacturing information.The wiring harness provides communications to the following areas:
ECM
Various sensors
Data link connector
Engine connectorsThe ECM is programmed to perform the following functions:
Diagnostic tests on all inputs
Diagnostic tests on all outputs
Identify a faulty circuit.Once a fault is detected, the fault can be displayed on a diagnostic lamp. The diagnostic code can be read by using Cat ET. A multimeter can be used to check most problems. Also, a multimeter can be used to troubleshoot most problems. The ECM will record most diagnostic codes that are generated during engine operation. These logged codes or intermittent codes can be read by Cat ET.
Parts ground JOHNSON:
0583051
0583051 GROUND LEAD, Bracket to hsg.
D25RWA, J105WELEEN, J105WELSIF, J105WELSSC, J10ECCD, J10ECDB, J10ECES, J10ECOM, J10ECUE, J15ECCS, J15ECDE, J15ECEC, J15ECOB, J15ECUD, J20CRCCA, J20CRCEM, J20CRCUR, J20CREIE, J20CRESB, J20ECEM, J20EEIE, J20EESB, J25ECCM, J25ECEB, J25ECUA, J25EEID, J25