09140-03002 Suzuki Nut


09140-03002 Nut Suzuki DT50, DT50, DT50ELB, DT50ELC, DT50ELN, DT50ESB, DT50ESC, DT50ESN, DT50M, DT50MLC, DT50MLN, DT50MSC, DT50MSN, DT50W, DT65, DT65, DT65ELC, DT65ELN, DT65ESC, DT65ESN, DT85ELT, DT85TCLT, DT85TCLX, DT85TCLZ, DT85TELT Nut
09140-03002 Nut Suzuki
Rating:
103

Buy Nut 09140-03002 Suzuki genuine, new aftermarket parts with delivery
Number on catalog scheme: 28
 

Suzuki entire parts catalog list:

DT50 1980,1981,1982
DT50 1983
DT50ELB 1977
DT50ELC 1978
DT50ELN 1979
DT50ESB 1977
DT50ESC 1978
DT50ESN 1979
DT50M 1980,1981,1982
DT50MLC 1978
DT50MLN 1979
DT50MSC 1978
DT50MSN 1979
DT50W 1980,1981,1982
DT65 1980,1980,1981,1981,1982,1982
DT65 1980,1980,1981,1981,1982,1982
DT65ELC 1978
DT65ELN 1979
DT65ESC 1978
DT65ESN 1979
DT85ELT 1980
DT85TCLT 1980
DT85TCLX 1981
DT85TCLZ 1982
DT85TELT 1980

Information:


Illustration 1 g00721067
Test Step 1. Check for Connector Damage.
Turn the ECS to the OFF/RESET position.
Turn the battery disconnect switch to the OFF position.
Thoroughly inspect the ECM connectors J1/P1 and J2/P2. Inspect all of the other connectors. Refer to the diagnostic functional test Troubleshooting, "Inspecting Electrical Connectors" for details.
Perform a 45 N (10 lb) pull test on each of the wires in the ECM connector that are associated with the circuit.
Check the ECM connector (allen head screw) for the proper torque of 2.25 0.25 N m (20 2 lb in).
Check the customer connector (allen head screw) for the proper torque of 2.25 0.25 N m (20 2 lb in).
Check the harness and the wiring for abrasion and for pinch points.Expected Result:All connectors, pins, and sockets are coupled and/or inserted. The harness and wiring should be free of corrosion, of abrasion or of pinch points.Results:
OK - The connectors and wiring are okay. Proceed to Test Step 2.
Not OK - The connectors and/or wiring are not okay.Repair: Repair the connectors or wiring and/or replace the connectors or wiring.STOPTest Step 2. Check for "ACTIVE" Diagnostic Codes.
Connect the Caterpillar Electronic Technician (ET) to the ECM through the service tool connector.
Turn the battery disconnect switch to the ON position.
Turn the ECS to the STOP position. The engine should be off.
Wait for 15 seconds for the CID-FMI.Expected Result:Determine the failure mode identifier (FMI). Determine if the diagnostic codes 262-03 5 Volt Sensor DC Power Supply short to +batt or 262-04 5 Volt Sensor DC Power Supply short to ground are present. Determine if the diagnostic codes 263-03 Digital Sensor Supply short to +batt or 263-04 Digital Sensor Supply short to ground are present.Results:
FMI 03 - A diagnostic code with a FMI of 03 is present. Proceed to Test Step 3.
FMI 04 - A diagnostic code with a FMI of 04 is present. Proceed to Test Step 4.
FMI 00 or 08 - A diagnostic code with a FMI of 00 or of 08 is present. Proceed to Test Step 11.
262-03 or 262-04 Active Code - A diagnostic code of 262-03 or of 262-04 is present.Repair: Perform the diagnostic functional test Troubleshooting, "Analog Sensor Supply".STOP
263-03 or 263-04 Active Code - A diagnostic code of 263-03 or 263-04 is present.Repair: Perform the diagnostic functional test Troubleshooting, "Digital Sensor Supply".STOPTest Step 3. Check the Sensor Supply Voltage at the Sensor Connector if the Diagnostic Code FMI-03 is Present.
Turn the ECS to the OFF/RESET position.
Disconnect the suspect sensor.Note: Disconnecting the sensor will generate an open circuit diagnostic code for any sensor that is disconnected. Troubleshoot the original diagnostic code. Reset the system. Delete the logged diagnostic codes when you are finished.
Turn the ECS to the STOP position. The engine should be off.
Measure the voltage on the ECM side of the sensor connector between pin A and pin B for the suspect sensor.Expected Result:The supply voltage should be 5.0 0.2 VDC for all analog sensors and 8.0 0.4 VDC for all digital sensors.Results:
OK - The voltage is 5.0 0.2 VDC for all analog sensors and 8.0 0.4 VDC for all digital sensors. Proceed to Test Step 5.
Not OK - The voltage is not 5.0 0.2 VDC for all analog sensors and 8.0 0.4 VDC for all digital sensors. Proceed to Test Step 7.Test Step 4. Check the Sensor Supply Voltage at the Sensor Connector if the Diagnostic Code FMI-04 is Present.
Turn the ECS to the OFF/RESET position.
Disconnect the suspect sensor.Note: Disconnecting the sensor will generate an open circuit diagnostic code for any sensor that is disconnected. Troubleshoot the original diagnostic code. Reset the system. Delete the logged diagnostic codes when you are finished.
Turn the ECS to the STOP position. The engine should be off.
Measure the voltage on the ECM side of the sensor connector between pin A and pin B for the suspect sensor.Expected Result:The supply voltage should be 5.0 0.2 VDC for all analog sensors and 8.0 0.4 VDC for all digital sensors.Results:
OK - The voltage is 5.0 0.2 VDC for all analog sensors and 8.0 0.4 VDC for all digital sensors. Proceed to Test Step 8.
Not OK - The voltage is not 5.0 0.2 VDC for all analog sensors and 8.0 0.4 VDC for all digital sensors. Proceed to Test Step 7.Test Step 5. Check for a Short to the + Battery.
Turn the ECS to the OFF/RESET position.
Disconnect the suspect sensor.Note: Disconnecting the sensor will generate an open circuit diagnostic code for any sensor that is disconnected. Troubleshoot the original diagnostic code. Reset the system. Delete the logged diagnostic codes when you are finished.
Turn the ECS to the STOP position. The engine should be off.
Measure the voltage on the ECM side of the sensor connector between pin B and the engine ground.
Measure the voltage on the ECM side of the sensor connector between pin C and the engine ground.
Turn the ECS to the OFF/RESET position.Expected Result:The voltage will measure 24 3 VDC when a short to the + Battery is present.Results:
OK - The voltage measures 24 3 VDC. A short to the + Battery is present.Repair: Repair the connectors or wiring and/or replace the connectors or wiring.STOP
Not OK - The voltage on pin B should measure 0 VDC. The voltage on pin C may measure approximately 6.5 VDC. The voltage on pin C is a pull up voltage. The ECM provides the pull up voltage to the signal input when the ECM senses an open circuit in the incoming input signal. Frequency sensors do not receive a pull up voltage. The sensor common and signal wire are not shorted to the + Battery. Proceed to Test Step 6.Test Step 6. Create a Short at the Sensor Connector.
Turn the ECS to the OFF/RESET position.
Use a wire jumper to connect pin B and pin C together on the sensor connector.
Turn the ECS to the STOP position. The engine should be off.
Check if the CID-FMI has changed from 03 to 04.
Turn the ECS to the


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08310-11068
 
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08310-12108
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08310-12108 Nut
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13582-95216
 
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13599-95212
 
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13599-95211
 
13599-95211 Nut
DT50, DT50, DT50ELB, DT50ELC, DT50ELN, DT50ESB, DT50ESC, DT50ESN, DT50M, DT50MLC, DT50MLN, DT50MSC, DT50MSN, DT50W, DT60CLE, DT65, DT65, DT65ELC, DT65ELN, DT65ESC, DT65ESN
09159-18004
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09159-18004 Nut
DT115, DT140, DT35CRLH, DT35CRLJ, DT35CRLK, DT35CRSH, DT35CRSJ, DT35CRSK, DT35ELT, DT35ELX, DT35ELZ, DT35EST, DT35ESX, DT35ESZ, DT35MCLH, DT35MCLJ, DT35MCLK, DT35MCSH, DT35MCSJ, DT35MCSK, DT35MLT, DT35MLX, DT35MLZ, DT35MST, DT35MSX, DT35MSZ, DT35TCLH
08310-12188
 
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09152-20001
 
09152-20001 Nut
DT85ELT, DT85TCLT, DT85TCLX, DT85TCLZ, DT85TELN, DT85TELT
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