67320-95730 Suzuki Cable Assembly, Clutch


67320-95730 Cable Assembly, Clutch Suzuki 20ELB, 20ELC, 20ELN, 25ELB, 25ELC, 25ELN, 25ELT, 25ELX, DT14C, DT14D, DT14F, DT16LB, DT16LC, DT16LN, DT16LT, DT16LT, DT16LT, DT16SB, DT16SC, DT16SN, DT16ST, DT16ST, DT16ST, DT20ESB, DT20ESC, DT20ESN, DT20MLB, DT20MLC, DT20MLN, DT20MSB, DT20MSC, DT20M Cable
67320-95730 Cable Assembly, Clutch Suzuki
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Buy Cable Assembly, Clutch 67320-95730 Suzuki genuine, new aftermarket parts with delivery
Number on catalog scheme: 25
 

Suzuki entire parts catalog list:

20ELB 1977
20ELC 1978
20ELN 1979
25ELB 1977
25ELC 1978
25ELN 1979
25ELT 1980
25ELX 1981
DT14C 1977
DT14D 1978
DT14F 1979
DT16LB 1977
DT16LC 1978
DT16LN 1979
DT16LT 1980
DT16LT 1981
DT16LT 1982
DT16SB 1977
DT16SC 1978
DT16SN 1979
DT16ST 1980
DT16ST 1981
DT16ST 1982
DT20ESB 1977
DT20ESC 1978
DT20ESN 1979
DT20MLB 1977
DT20MLC 1978
DT20MLN 1979
DT20MSB 1977
DT20MSC 1978
DT20MSN 1979
DT25ELZ 1982
DT25ESB 1977
DT25ESC 1978
DT25ESN 1979
DT25EST 1980
DT25ESX 1981
DT25ESZ 1982
DT25MLB 1977
DT25MLC 1978
DT25MLN 1979
DT25MLT 1980
DT25MLX 1981
DT25MLZ 1982
DT25MSB 1977
DT25MSC 1978
DT25MSN 1979
DT25MST 1980
DT25MSX 1981
DT25MSZ 1982
DT28F 1979
DT28G 1980
DT28J 1981
DT28Z 1982
DT35ELT 1980
DT35ELX 1981
DT35ELZ 1982
DT35EST 1980
DT35ESX 1981
DT35ESZ 1982
DT35MLT 1980
DT35MLX 1981
DT35MLZ 1982
DT35MST 1980
DT35MSX 1981
DT35MSZ 1982
DT40ELT 1980
DT40ELX 1981
DT40ELZ 1982
DT40EST 1980
DT40ESX 1981
DT40ESZ 1982

Information:


Table 1
Diagnostic Trouble Codes for High Intake Manifold Air Temperature
J1939 Code CDL Code Code Description
(Code descriptions may vary) Comments
105-15 E539 (1) Engine Intake Manifold #1 Temperature : High - least severe (1) The engine has been running for 3 minutes.
No other 105 (172) codes are active.
168 codes are not active.
Code 412-16 (E1092-2) is not active.
The intake manifold air temperature exceeds the value that is programmed into the ECM for 8 seconds. The code is logged.
This code will be reset when the temperature is less than 122° C (252° F) for 4 seconds.
105-16 E539 (2) Engine Intake Manifold #1 Temperature : High - Moderate Severity (2) The engine has been running for 3 minutes.
No other 105 (172) codes are active.
168 codes are not active.
Code 412-16 (E1092-2) is not active.
The intake manifold air temperature exceeds the value that is programmed into the ECM for 8 seconds. The engine will be derated. The code is logged.
This code will be reset when the temperature is less than 124° C (255° F) for 20 seconds.
105-0 E539 (3) Engine Intake Manifold #1 Temperature : High - Most Severe (3) The engine has been running for 3 minutes.
No other 105 (172) codes are active.
168 codes are not active.
Code 412-16 (E1092-2) is not active.
The intake manifold air temperature exceeds the value that is programmed into the ECM for 8 seconds. The engine will be derated. The code is logged.
This code will be reset when the temperature is less than 126° C (259° F) for 20 seconds. Probable Causes
Coolant level
Air-to-air aftercooler (ATAAC)
Cooling fan
Air inlet and exhaust system
Exhaust Back Pressure Regulator (EBPR) or NOx Reduction System (NRS) valve
Ambient temperature
Altitude
Running conditionRecommended Actions
Note: The procedures have been listed in order of probability. Complete the procedures in order.
Table 2
Troubleshooting Test Steps Values Results
1. Coolant Level
A. Check that the coolant is filled to the correct level.
Note: If the coolant level is too low, air will get into the cooling system. Air in the cooling system will cause a reduction in coolant flow.
Coolant
Result: The coolant level is low.
Repair: Fill the coolant system to the correct level. Refer to the Operation and Maintenance Manual, "Coolant Level - Check".
Result: The coolant level is OK.
Proceed to Test Step 2.
2. Air-to-Air Aftercooler (ATAAC)
A. Check the ATAAC for debris or damage.
Note: Debris between the fins of the ATAAC core restricts air flow through the core.
ATAAC
Result: The ATAAC has excessive debris or is damaged.
Repair: Clear the debris from the ATAAC or replace the ATAAC.
Result: The ATAAC is OK.
Proceed to Test Step 3.
3. Cooling Fan
A. Check the operation of the cooling fan.
Note: A fan that is not turning at the correct speed can result in insufficient airflow through the aftercooler core.
Cooling fan
Result: The cooling fan is not operating correctly.
Repair: Investigate the cause of the incorrect fan operation
Result: The cooling fan is operating correctly.
Proceed to Test Step 4.
4. Air Intake and Exhaust System
A. Check the air intake and exhaust system for the following defects:
Blockages
Restrictions
Damage to the air intake ducts and hoses
Loose connections and air leaks
Air intake and exhaust
Result: The air intake or exhaust system is blocked, restricted, damaged, or loose.
Repair: Make all necessary repairs to the air intake system.
Result: The air intake and exhaust system is OK.
Proceed to Test Step 5.
5. EBPR or NRS Valve
A. Use the electronic service tool to perform the "Air System Motor Valve Verification Test".
Pass
Result: The "Air System Motor Valve Verification Test" failed.
Repair: Troubleshoot active diagnostic codes generated as a result of the test.
Result: The "Air System Motor Valve Verification Test" passed.
Proceed to Test Step 6.
6. Ambient Temperature
A. Check for a high ambient temperature.
Note: When outside temperatures are too high, there is insufficient temperature difference between the outside air and the intake air.
Ambient Temperature
Result: The ambient air temperature is high.
Repair: Operate the engine at reduced speed or reduced power.
Result: The ambient air temperature is OK.
Proceed to Test Step 7.
7. Altitude
A. Check for operation at high altitude.
Note: The cooling capacity of the ATAAC is reduced as the engine is operated at higher altitudes.
Altitude
Result: The engine is being operated at high altitude.
Repair: Operate the engine at reduced speed or reduced power.
Result: The engine is not being operated at high altitude.
Proceed to Test Step 8.
8. Running Condition
A. Check that the engine is not operating in the lug condition.
Note: When the load that is applied to the engine is too large, the engine will run in the lug condition. When the engine is running in the lug condition, engine rpm does not increase with an increase of fuel. This lower engine rpm causes a reduction in coolant flow through the system.
Running condition
Result: The engine is operating in the lug condition.
Repair: Reduce the load on the engine or, if possible, increase the power rating of the engine.
Result: The engine is not operating in the lug condition.
Contact the Dealer Solutions Network (DSN).


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