09404-10405 Suzuki Clamp, PTT cable


09404-10405 Clamp, PTT cable Suzuki DT75TCLD, DT75TCLE, DT75TCLF, DT75TCLG, DT75TCLH, DT85ELT, DT85TCLD, DT85TCLE, DT85TCLF, DT85TCLT, DT85TCLX, DT85TCLZ, DT85TELT Clamp
09404-10405 Clamp, PTT cable Suzuki
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Buy Clamp, PTT cable 09404-10405 Suzuki genuine, new aftermarket parts with delivery
Number on catalog scheme: 35
 

Suzuki entire parts catalog list:

DT75TCLD 1983
DT75TCLE 1984
DT75TCLF 1985
DT75TCLG 1986
DT75TCLH 1987
DT85ELT 1980
DT85TCLD 1983
DT85TCLE 1984
DT85TCLF 1985
DT85TCLT 1980
DT85TCLX 1981
DT85TCLZ 1982
DT85TELT 1980

Information:


Table 1
Diagnostic Trouble Codes for the CAN Data Link Circuit
J1939 Code CDL Code Code Description Comments
639-9 247-9 J1939 Network #1 : Abnormal Update Rate Another controller has incorrectly stopped transmitting a J1939 speed request (TSC1) or another controller has incorrectly started transmitting a J1939 speed request.
The ECM will log the diagnostic code.
The engine will not start.
1231-9 2348-9 J1939 Network #2 : Abnormal Update Rate An OEM unit has incorrectly stopped transmitting data or the soot sensor has incorrectly started transmitting a data request.
The ECM will log the diagnostic code.
The engine will not start.
1235-9 5856-9 J1939 Network #3 : Abnormal Update Rate The Pump, Electronics, and Tank Unit (PETU), the soot sensor, or a NOx sensor has incorrectly stopped or started transmitting a data request.
The ECM will log the diagnostic code. The following background information is related to this procedure:The CAN data links are also known as J1939 data links. A data link is an industry standard for sending data between different devices in the same application.High-speed data is transferred via the data links. The data links cannot be accurately tested without complicated equipment. The data links require a resistance of 60 Ohms between the two wires to transmit the data correctly. This resistance is made up of two 120 Ohm resistors. The two resistors are known as "Terminating Resistors". The terminating resistors should be at opposite ends of a data link circuit. If this resistance is not present, then the data will be intermittent or unreadable.Note: The wiring for a J1939 data link is a shielded twisted-pair cable. If the wiring is damaged, the replacement type must be shielded twisted-pair cable.-9 Detected Problems:ECM 1 is unable to communicate on the data link.
ECM 1 cannot communicate with other ECM's on the data link, but can communicate with the service tool. This situation indicates a problem with the data link wiring.ECM 1 is unable to communicate with ECM 2 on the data link.
ECM 1 cannot communicate with ECM 2, indicating a problem with the data link wiring, power or ground circuit, or ECM 2.
Illustration 1 g06208024
Typical example of the schematic for the CAN A data link
Illustration 2 g03810547
Typical example of the schematic for the CAN B data link
Illustration 3 g06208032
Typical example of the schematic for the CAN C data link
Illustration 4 g03132596
Typical view of the pin locations on the P1 connector
(13) CAN B+
(17) CAN C+
(18) CAN C-
(21) CAN B-
(25) CAN A+
(26) CAN A-Complete the procedure in the order in which the steps are listed.
Table 2
Troubleshooting Test Steps Values Results
1. Check for Associated Diagnostic Trouble Codes
A. Establish communication between the electronic service tool and the ECM. Refer to Troubleshooting, "Electronic Service Tools", if necessary.
B. Troubleshoot any associated diagnostic codes that are present before continuing with this procedure.
Associated Codes
Result: Another diagnostic trouble code is not active or logged.
Proceed to Test Step 2.
Result: Another code is active or logged.
Repair: Troubleshoot the other codes before continuing with this procedure.
Refer to Troubleshooting, "Diagnostic Trouble Codes" to troubleshoot the other diagnostic code.
2. Use the "System Communication Status" to Determine the Communication Issue
A. In the electronic service tool, click the "Diagnostics" tab on the tool bar.
B. Select the "System Communication Status" option from the drop-down list.
Note: The Aftertreatment #1 Intake NOx Level Sensor is displayed as Aftertreatment #1 Information #1 in some versions of software.
Component Identified
Result: A -9 or -2 code is active.
Repair: Refer to the above -9 detected problems for more information.
Proceed to Test Step 3.
3. Use the System Communication Status to Determine the Cause
A. Determine if both ECM 1 and ECM 2 are present in the "ECMs" column (1) within the "System Communication Status" screen.
Note: The Aftertreatment #1 Intake NOx Level Sensor is displayed as Aftertreatment #1 Information #1 in some versions of software.
Component Identified
Result: ECM 1 and ECM 2 are both present.
Record the devices identified as ECM 1 and ECM 2 in column 1.
Proceed to Test Step 4.
Result: Only ECM 1 is present.
Record the device identified as ECM 1 in column 1.
Proceed to Test Step 5.
4. Check the Resistance of the Data link
A. Turn the keyswitch to the OFF position.
B. Measure the resistance of the datalink between ECM 2 datalink (+) wire and the datalink (-) wire on the wiring harness connector of ECM 2. Refer to the appropriate wiring diagram.
60+/-10 Ohms
Result: The resistance is less than 50 Ohms.
There are more than two terminating resistors installed in the wiring harness or a short circuit has been detected.
Repair: Repair or replace parts as necessary.
Proceed to Test Step 7.
Result: The resistance is 60 10 Ohms.
The terminating resistors are OK.
Proceed to Test Step 5.
Result: The resistance is 120 10 Ohms.
There is a problem with a terminating resistor.
Repair: Check the resistance on each terminating resistor. Replace the failed terminating resistor.
Proceed to Test Step 7.
Result: The resistance is greater than 130 Ohms.
There is a problem with both terminating resistors or an open circuit has been detected.
Repair: Determine the cause of the problem. Repair the problem, when possible. Replace parts, if necessary. Verify that the problem is resolved.
Proceed to Test Step 7.
5. Check the Power and Ground to ECM 2
A. Turn the keyswitch to the ON position.
B. Measure the voltage between the battery (+) and battery (-) terminals on the wiring harness connector of ECM 2. Refer to the appropriate wiring diagram.
Battery Voltage Result: The voltage is not equal to battery volta


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30ELE, 30ESE, 30MLE, DT15 MLE, DT15C, DT15ELD, DT15ELE, DT15ELF, DT15ELG, DT15ELH, DT15ELJ, DT15ESD, DT15ESE, DT15ESF, DT15ESG, DT15ESH, DT15ESJ, DT15MLD, DT15MLF, DT15MLG, DT15MLH, DT15MLJ, DT15MSD, DT15MSE, DT15MSF, DT15MSG, DT15MSH, DT15MSJ, DT16L
36632-95500
 
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09404-10403
 
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09404-06202
 
09404-06202 Clamp
DT4LF, DT4LG, DT4LH, DT4SF, DT4SG, DT4SH, DT50ECLE, DT50MCLE, DT6LE, DT6LF, DT6SE, DT6SF, DT75TCLD, DT75TCLE, DT75TCLF, DT75TCLG, DT75TCLH
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