31131-95310 Suzuki Bush +


31131-95310 Bush + Suzuki DT115, DT140, DT150, DT150SSH, DT150SSJ, DT150SSK, DT150SSL, DT150SSM, DT150SSN, DT150STCLP, DT150STCLR, DT150STCLS, DT150STCLT, DT150TCLH, DT150TCLJ, DT150TCLK, DT150TCLL, DT150TCLM, DT150TCLN, DT150TCLP, DT150TCLR, DT150TCXGM, DT150TCXGN, DT150TCXG Bush
31131-95310 Bush + Suzuki
Rating:
33

Buy Bush + 31131-95310 Suzuki genuine, new aftermarket parts with delivery
Number on catalog scheme: 8
 

Compatible models:

DT115   DT140   DT150   DT150SSH   DT150SSJ   DT150SSK   DT150SSL   DT150SSM   DT150SSN   DT150STCLP   DT150STCLR   DT150STCLS   DT150STCLT   DT150TCLH   DT150TCLJ   DT150TCLK   DT150TCLL   DT150TCLM   DT150TCLN   DT150TCLP   DT150TCLR   DT150TCXGM   DT150TCXGN   DT150TCXGP   DT150TCXGR   DT150TCXGS   DT150TCXGT   DT150TCXH   DT150TCXJ   DT150TCXK   DT150TCXL   DT150TCXM   DT150TCXN   DT150TCXP   DT150TCXR   DT150TCXS   DT150TCXT   DT200   DT225   DT50ECLE   DT50ELB   DT50ELC   DT50ELN   DT50ESB   DT50ESC   DT50ESN   DT50MCLE   DT50MLC   DT50MLN   DT50MSC   DT50MSN   DT55CLF   DT55CRLG   DT55CRLJ   DT55CRLK   DT55CRLL   DT55CRSG   DT55CRSH   DT55HTCLH   DT55HTCLJ   DT55HTCLK   DT55HTCLL   DT55TCLG   DT55TCLH   DT55TCLJ   DT55TCLK   DT55TCLL   DT55TCLM   DT55TCLN   DT55TCLP   DT55TCLR   DT55TCLS   DT55TCLT   DT55TCLV   DT55TCSG   DT55TCSH   DT60CLE   DT65CRLG   DT65CRLH   DT65CRLJ   DT65CRLK   DT65CRLL   DT65CRSG   DT65CRSH   DT65ELC   DT65ELN   DT65ESC   DT65ESN   DT65HTCLK   DT65HTCLL   DT65TCLF   DT65TCLG   DT65TCLH   DT65TCLJ   DT65TCLK   DT65TCLL   DT65TCLM   DT65TCLN   DT65TCLP   DT65TCLR   DT65TCLS   DT65TCLT   DT65TCLV   DT65TCSG   DT65TCSH   DT75TCLG   DT75TCLH   DT75TCLJ   DT75TCLK   DT75TCLL   DT75TCLM   DT75TCLN   DT75TCLP   DT75TCLR   DT75TCLS   DT75TCLT   DT75TCLV   DT85TCLE   DT85TCLF   DT85TCLJ   DT85TCLK   DT85TCLL   DT85TCLM   DT85TCLN   DT85TCLP   DT85TCLR   DT85TCLS   DT85TCLT   DT85TCLV   DT85TCLW   DT85TCLX   DT85TCLY   Suzuki

Suzuki entire parts catalog list:

DT115 1986,1987,1988,1989,1990,1991,1992,1993,1994,1995,1996,1997,1998,1999,2000,2001
DT140 1986,1987,1988,1989,1990,1991,1992,1993,1994,1995,1996,1997,1998,1999,2000,2001
DT150 1998,1999,2000,2001,2002,2003
DT150SSH 1987
DT150SSJ 1988
DT150SSK 1989
DT150SSL 1990
DT150SSM 1991
DT150SSN 1992
DT150STCLP 1993
DT150STCLR 1994
DT150STCLS 1995
DT150STCLT 1996
DT150TCLH 1987
DT150TCLJ 1988
DT150TCLK 1989
DT150TCLL 1990
DT150TCLM 1991
DT150TCLN 1992
DT150TCLP 1993
DT150TCLR 1994
DT150TCXGM 1991
DT150TCXGN 1992
DT150TCXGP 1993
DT150TCXGR 1994
DT150TCXGS 1995
DT150TCXGT 1996
DT150TCXH 1987
DT150TCXJ 1988
DT150TCXK 1989
DT150TCXL 1990
DT150TCXM 1991
DT150TCXN 1992
DT150TCXP 1993
DT150TCXR 1994
DT150TCXS 1995
DT150TCXT 1996
DT200 1998,1999,2000,2001,2002,2003
DT225 1998,1999,2000,2001,2002,2003
DT50ECLE 1984
DT50ELB 1977
DT50ELC 1978
DT50ELN 1979
DT50ESB 1977
DT50ESC 1978
DT50ESN 1979
DT50MCLE 1984
DT50MLC 1978
DT50MLN 1979
DT50MSC 1978
DT50MSN 1979
DT55CLF 1985
DT55CRLG 1986,1987
DT55CRLJ 1988
DT55CRLK 1989
DT55CRLL 1990
DT55CRSG 1986
DT55CRSH 1987
DT55HTCLH 1987
DT55HTCLJ 1988
DT55HTCLK 1989
DT55HTCLL 1990
DT55TCLG 1986
DT55TCLH 1987
DT55TCLJ 1988
DT55TCLK 1989
DT55TCLL 1990
DT55TCLM 1991
DT55TCLN 1992
DT55TCLP 1993
DT55TCLR 1994
DT55TCLS 1995
DT55TCLT 1996
DT55TCLV 1997
DT55TCSG 1986
DT55TCSH 1987
DT60CLE 1984
DT65CRLG 1986
DT65CRLH 1987
DT65CRLJ 1988
DT65CRLK 1989
DT65CRLL 1990
DT65CRSG 1986
DT65CRSH 1987
DT65ELC 1978
DT65ELN 1979
DT65ESC 1978
DT65ESN 1979
DT65HTCLK 1989
DT65HTCLL 1990
DT65TCLF 1985
DT65TCLG 1986
DT65TCLH 1987
DT65TCLJ 1988
DT65TCLK 1989
DT65TCLL 1990
DT65TCLM 1991
DT65TCLN 1992
DT65TCLP 1993
DT65TCLR 1994
DT65TCLS 1995
DT65TCLT 1996
DT65TCLV 1997
DT65TCSG 1986
DT65TCSH 1987
DT75TCLG 1986
DT75TCLH 1987
DT75TCLJ 1988
DT75TCLK 1989
DT75TCLL 1990
DT75TCLM 1991
DT75TCLN 1992
DT75TCLP 1993
DT75TCLR 1994
DT75TCLS 1995

Information:


Illustration 1 g00951975
Arrangement of the detonation sensorsThe master Electronic Control Module (ECM) and the slave ECM supply 8 VDC in order to power the sensors. The detonation sensors provide electrical signals to the modules that indicate mechanical engine vibrations. Each sensor outputs an electrical signal. The signal is amplified and the signal is filtered. The frequency of the signal corresponds to the mechanical frequency of the vibrations. The amplitude of the signal is proportional to the intensity of the vibrations.The master ECM monitors the detonation sensors on the left side of the engine. The slave ECM monitors the detonation sensors on the right side of the engine. Each ECM monitors the signals in order to determine the presence and the severity of the detonation. The master ECM can retard the timing of the cylinders on the left side of the engine in order to limit detonation levels. The slave ECM can retard the timing of the cylinders on the right side of the engine in order to limit detonation levels. The timing may be retarded for a single cylinder or for more than one cylinder. The timing may be retarded for all of the cylinders, if necessary. If retardation of the timing does not sufficiently limit the detonation, the master ECM will shut down the engine.An ECM can retard timing by as few as three degrees for light detonation levels. The timing can be retarded up to six degrees for severe detonation. For most applications, the minimum allowable actual timing is ten degrees BTC (five degrees BTC for propane operation). A proportional strategy is used for advancing the timing after the timing has been retarded. The rate of advance is based upon the level of detonation. The rate is faster for lighter detonation. The fastest rate of proportional timing advance is one degree per minute.Each ECM will diagnose the detonation sensors for a signal that is shorted to the −Battery side, to the +Battery side, or for an open circuit. To avoid detecting vibrations that are not related to detonation, each ECM only monitors a detonation sensor when one of the pistons that is monitored by that sensor is between top center and 40 degrees after top center on the power stroke. Therefore, the "Block Tap" method of testing the detonation sensors does not work for the G3500C/E Engine.An input from a detonation sensor that is diagnosed by an ECM as "open/shorted to +battery" may measure 0 VDC on a voltmeter. This is caused by the lack of pull up resistors in the detonation sensor's circuits inside the ECM.Each ECM also supports related event codes when the levels of detonation warrant a reaction from the ECM. If the timing has been retarded by the maximum amount and the level of detonation remains high, the master ECM will shut down the engine. Detonation protection is disabled when the engine speed is less than 250 rpm.Logged diagnostic codes provide a historical record. Before you begin this procedure, use Caterpillar Electronic Technician (ET) to print the logged codes to a file.The most likely causes of the diagnostic code are a poor connection or a problem in a wiring harness. The next likely cause is a problem with a sensor. The least likely cause is a problem with an ECM.The troubleshooting procedure may generate additional diagnostic codes. Keep your mind on correcting the cause of the original diagnostic code. Clear the diagnostic codes after the problem is resolved.
Illustration 2 g01114170
Schematic for the detonation sensorsTest Step 1. Inspect the Electrical Connectors and Wiring
Remove the electrical power from the engine.Note: For the following steps, refer to Troubleshooting, "Electrical Connectors - Inspect".
Thoroughly inspect each of the following connectors:
J2/P2 connectors
J8/P8 connectors
J4/P4 connectors
Connectors for each of the detonation sensors
Check the torque of the allen head screw for the ECM connectors.
Perform a 45 N (10 lb) pull test on each of the wires that are associated with the circuit for the detonation sensors.
Illustration 3 g00929792
Detonation sensors
Check the harness and wiring for abrasion and for pinch points from the detonation sensors to each ECM.
Make sure that the detonation sensors are properly installed according to the torque in Specifications, "Detonation Sensors".Expected Result:All connectors, pins, and sockets are connected properly. The connectors and the wiring do not have corrosion, abrasion, or pinch points. All of the detonation sensors are properly installed.Results:
OK - The components are in good condition with proper connections. Proceed to Test Step 2.
Not OK - The components are not in good condition and/or at least one connection is improper.Repair: Perform the necessary repairs and/or replace parts, if necessary.STOPTest Step 2. Check for Diagnostic Codes for the 8 Volt DC Supply
Connect Cat ET to the service tool connector. Refer to Troubleshooting, "Electronic Service Tools".
Switch the 35 amp circuit breaker ON. Set the engine control to the STOP mode.
Observe the "Active Diagnostic" screen of Cat ET. Wait at least 30 seconds so that any codes may become activated. Look for these codes:
41-3 8 Volt DC Supply : Voltage Above Normal
41-4 8 Volt DC Supply : Voltage Below NormalExpected Result:Neither of the diagnostic codes are active.Results:
OK - Neither of the diagnostic codes are active. Proceed to Test Step 3.
Not OK - At least one of the diagnostic codes is active.Repair: The diagnostic code for the 8 volt supply must be resolved before you can proceed with this functional test.Exit this procedure and refer to Troubleshooting, "Sensor Supply - Test".If necessary, return to this functional test in order to troubleshoot the detonation sensor after the diagnostic code for the 8 volt supply has been resolved.STOPTest Step 3. Check for Active Diagnostic Codes for the Detonation SensorsNote: The run relay and the crank terminate relay must be energized before a diagnostic code for a detonation sensor can be generated. Therefore, the engine must be running. The engine will shut down soon after the diagnostic code for the detonation sensor is activated.
Start the engine and run the engine.
Allow a minimum of 30 seconds for any diagnostic codes to become active. Observe the "Active Diagnostic" screen of Cat


Parts bush Suzuki:

09306-10007
 
09306-10007 Bush
20ELB, 20ELC, 25ELB, 25ELC, DT20ESB, DT20ESC, DT20MLB, DT20MLC, DT20MSB, DT20MSC, DT25ESB, DT25ESC, DT25MLB, DT25MLC, DT25MSB, DT25MSC, DT55CRLJ, DT55CRLK, DT55CRLL, DT55HTCLJ, DT55HTCLK, DT55HTCLL, DT55TCLJ, DT55TCLK, DT55TCLL, DT55TCLM, DT55TCLN, D
09306-08003
 
09306-08003 Bush
DF4, DF4, DF46, DF4L, DF6, DF6, DF6L, DT15 MLE, DT15C, DT15ELD, DT15ELE, DT15ELF, DT15ELG, DT15ELH, DT15ELJ, DT15ESD, DT15ESE, DT15ESF, DT15ESG, DT15ESH, DT15ESJ, DT15MLD, DT15MLF, DT15MLG, DT15MLH, DT15MLJ, DT15MSD, DT15MSE, DT15MSF, DT15MSG, DT15MS
58120-96313
Bush
58120-96313 Bush
30ELE, 30ESE, 30MLE, DT20ELG, DT20ELH, DT20ELJ, DT20ESG, DT20ESH, DT20ESJ, DT20MLG, DT20MLH, DT20MLJ, DT20MSG, DT20MSH, DT20MSJ, DT25ELF, DT25ELG, DT25ELH, DT25ELJ, DT25ESG, DT25ESH, DT25ESJ, DT25MLD, DT25MLE, DT25MLF, DT25MLG, DT25MLH, DT25MLJ, DT25
67232-95610
 
67232-95610 Bush
30ELE, 30ESE, 30MLE, DT115, DT140, DT150SSH, DT150SSJ, DT150SSK, DT150SSL, DT150SSM, DT150SSN, DT150STCLP, DT150STCLR, DT150STCLS, DT150STCLT, DT150TCLH, DT150TCLJ, DT150TCLK, DT150TCLL, DT150TCLM, DT150TCLN, DT150TCLP, DT150TCLR, DT150TCXGM, DT150TC
67252-95600
 
67252-95600 Bush
30ELE, 30ESE, 30MLE, DF15, DF15, DF15, DF150, DF150, DF150, DF150TX, DF150ZX, DF15A, DF15S, DF175, DF175, DF175, DF175TX, DF175ZX, DF200, DF200, DF200, DF200T, DF200Z, DF20A, DF225, DF225, DF225, DF225T, DF225Z, DF25, DF25(R)S, DF250, DF250, DF250, D
67243-95600
 
67243-95600 Bush
30ELE, 30ESE, 30MLE, DF15, DF15, DF15, DF150, DF150, DF150, DF150TX, DF150ZX, DF15A, DF15S, DF175, DF175, DF175, DF175TX, DF175ZX, DF200, DF200, DF200, DF200T, DF200Z, DF20A, DF225, DF225, DF225, DF225T, DF225Z, DF25, DF25(R)S, DF250, DF250, DF250, D
09306-36002
 
09306-36002 BUSH
DT115, DT140
41224-95E01
BUSH, TILT STOPPER ROD
41224-95E01 BUSH, TILT STOPPER ROD
DF100, DF100, DF100, DF100A, DF115, DF115, DF115, DF115A, DF115TL, DF140, DF140, DF140, DF140A, DF140T, DF140T, DF140Z, DF140Z, DF140Z, DF140Z, DF150, DF150, DF150, DF150TX, DF150ZX, DF175, DF175, DF175, DF175TX, DF175ZX, DF200, DF200, DF200, DF200T,
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