5036178 JOHNSON BASE, STATOR


5036178 BASE, STATOR JOHNSON J10BL4SUM, J10EL4SDA, J10EL4SOR, J10R4SDM, J10R4SUB, J10RL4SDM, J10TBL4SDE, J10TBL4SUD, J10TE4SDM, J15EL4SDC, J15EL4SOS, J15EL4SUR, J15R4SDM, J15R4SUB, J15RL4SDM, J15TE4SDM, J15TE4SUB BASE
5036178 BASE, STATOR JOHNSON
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23-08-2024

US: Super Brakes
Brake X Front and Rear Brake Pads and Rotors Kit replacement for 2017-2019 KIA SPORTAGE | AEGIS GEOMET Coated Rotors and Alpha Ceramic Brake Pads
Brake X Get The Right Fit: The front and rear replacement brakes and rotors kit are built for 2017 2018 2019 SPORTAGE Turbo, 320mm Front Disc, Manual Parking Brake, FWD || 12 Piece Brake Kit Replacement: Our replacement brake kit comes with 4 heavy duty brake rotors for the front and back along with 8 automotive replacement brake pads that are built to exceed OEM Specification using quality materials for performance and long term use. || Quality That Matters: Our rotors and brake pads kit are engineered in Canada for the toughest environments with exact or more vane counts to meet OEM Specifications. They are backed by our satisfaction guarantee for any manufacturing defects so you know we have your back as you make every turns. || GEOMET Protected: Our front and rear automotive replacement brake kits are made using heavy duty G3000 grade cast iron with a GEOMET coating to offer just the right balance of performance, quality and durability. It?€?s resistant to rust and corrosion, built to exceed OEM specifications, and can be installed without any modifications. || No Noise And Low Dust: We use a ceramic formula for our brake pads, they are shimmed, chamfered and slotted to ensure smoother, quieter braking and reduce braking noise. Our automotive replacement brake rotors are double disc smoothened and mill balanced to help prevent cracking and build up. The Brake X rotors and brakes are engineered to elevate your driving experience.
Number on catalog scheme: 1
 

BRP JOHNSON entire parts catalog list:

J10BL4SUM, J10EL4SUM 2007
J10EL4SDA 2006
J10EL4SOR, J10R4SOA, J10RL4SOA, J10TBL4SOB, J10TE4SOA, J10TEL4SOA 2005
J10R4SDM 2006
J10R4SUB, J10RL4SUB 2007
J10RL4SDM 2006
J10TBL4SDE 2006
J10TBL4SUD, J10TE4SUB, J10TEL4SUB 2007
J10TE4SDM, J10TEL4SDM 2006
J15EL4SDC 2006
J15EL4SOS, J15R4SOA, J15RL4SOA, J15TE4SOA, J15TEL4SOA 2005
J15EL4SUR 2007
J15R4SDM 2006
J15R4SUB, J15RL4SUB 2007
J15RL4SDM 2006
J15TE4SDM, J15TEL4SDM 2006
J15TE4SUB, J15TEL4SUB 2007

Information:


Table 1
Troubleshooting Test Steps Values Results
1. Inspection of the Batteries and Battery Cables
A. Inspect the main power switch, battery posts, and battery cables for loose connections and for corrosion. If the battery cables are corroded, remove the battery cables and clean the battery cables. Tighten any loose connections.
B. Inspect the batteries.
C. Charge the batteries. Refer to Special Instruction, SEHS7633, "Battery Test Procedure".
Test the batteries. Refer to Special Instruction, SEHS9249, "Use of 4C-4911 Battery Load Tester for 6 v, 8 v, and 12 v Lead Acid Batteries".
Batteries
Result The batteries and cables are OK.
Proceed to Test Step 2.
Result The batteries and cables are not OK.
Repair: Make the necessary repairs.
2. Machine Security System (MSS)
A. Check that the correct ignition key is being used.
B. Check that the CAN Data Link is operating correctly. Refer to Troubleshooting, "CAN Data Link - Test".
MSS
Result: An incorrect ignition key is being used.
Repair: Obtain the correct key and confirm that the engine starts.
Result: A fault is identified on the CAN data link.
Repair: Make the necessary repairs.
Result: The correct ignition key is being used and the CAN data link is OK.
Proceed to Test Step 3.
3. Switches and/or Circuit Breakers (if applicable)
A. Check any switches and/or circuit breakers that may prevent engine cranking. For additional information, refer to the machine electrical schematic.
Switches and/or circuit breakers
Result: The switches and/or circuit breakers are OK.
Proceed to Test Step 4.
Result: The switches and/or circuit breakers are not OK.
Repair: Make the necessary repairs.
4. Starting Motor Solenoid and Starting Circuit
A. Test the operation of the starting motor circuit. Refer to Systems Operation, Testing, and Adjusting, "Electrical System" for additional information.
Starting motor solenoid and circuit
Result: The starting motor solenoid and circuit are OK.
Proceed to Test Step 5.
Result: The starting motor solenoid and circuit are not OK.
Repair: Make the necessary repairs.
5. Inspect the Starter Pinion and Flywheel Ring Gear
A. Test the operation of the starting motor.
B. Check the pinion clearance. Inspect the pinion and the flywheel ring gear for damage. Refer to Systems Operation, Testing, and Adjusting, "Electrical System" for additional information.
Starter pinion and flywheel ring gear
Result: The starter pinion and flywheel ring gear are OK.
Proceed to Test Step 6.
Result: The starter pinion and flywheel ring gear are not OK.
Repair: Make the necessary repairs.
6. Inspect Engine Accessories and the Transmission (if applicable)
A. Ensure free movement of the driveline.
B. Remove and inspect any engine accessories that may lock up the engine.
The following list identifies engine accessories that may lock up the engine:
Hydraulic pump that is driven from the rear gear group
Air compressor
Engine oil pump
Other components that are driven by the engine
Engine accessories and transmission
Result: The engine accessories and transmission are OK.
Proceed to Test Step 7.
Result: The engine accessories and transmission are not OK.
Repair: Make the necessary repairs.
7. Hydraulic Cylinder Lock
A. If an injector has been replaced, evacuate any fluids from the cylinder and attempt to start the engine. Fuel will flow from the cylinder head into the cylinders when a unit injector is removed.
B. If the engine will not start, check for fluid in the cylinders (hydraulic cylinder lock) by removing the individual unit injectors. Check for damaged seals. Determine the type of fluid that locked up the cylinder.
C. If there was a coolant leak, determine the cause of the leak. Check the exhaust (NRS) cooler for leaks. Refer to Testing and Adjusting, "Exhaust Cooler (NRS) - Test".
D. If there was excessive fuel in the cylinder, replace the seals and reinstall the injector. Drain any excess fuel from the cylinder head.
E. If a mechanical problem is suspected, disassemble the engine. Refer to the Disassembly and Assembly manual. Inspect the internal components for the following conditions:
Seizure
Broken components
Bent components
Hydraulic cylinder lock
Result: The engine has a hydraulic cylinder lock.
Repair: Make the necessary repairs.
Result: The engine does not have a hydraulic cylinder lock.
Contact the Dealer Solutions Network (DSN).


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