5032562 JOHNSON SHIM (T:0.60mm)


5032562 SHIM (T:0.60mm) JOHNSON BJ115L4SDA, BJ115L4SRC, BJ115L4STS, BJ60PL4SDM, BJ60PL4SOA, BJ60PL4SRR, BJ60PL4STC, BJ70PL4SDM, BJ70PL4SOA, BJ70PL4SRR, BJ70PL4STC, BJ90PL4SDA, BJ90PL4SRC, BJ90PL4STS, J115PL4SOR, J60PL4SNF, J70PL4SNF, J90PL4SOR SHIM
5032562 SHIM (T:0.60mm) JOHNSON
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$41.66
 

04-06-2020
4.40924524[1.80] Pounds
-: -
Connected Essentials 5032562 Grey with Black Trim Tailored Heavy Duty Custom Fit Car Mats Audi Q3 (2011
Complete set of 4 tailored custom fit car mats - designed and manufactured specifically for Audi Q3 (2011-) || Supplied with clips (as applicable) for security || Driver's mat with heel pad of the same thickness as the mat itself - to reduce wear and protect footwear || Manufactured from 650gram automotive quality carpet - for strength and durability || Images shown are for example only. Mats supplied will be the specific fit for your make & model - see actual template (in images) for this vehicle model.
£20.44
 

18-09-2017

SBS Deutsc: SBS Deutschland GmbH
Nk 5032562 Axial Joint, Tie Rod
Number on catalog scheme: 12
 

BRP JOHNSON entire parts catalog list:

BJ115L4SDA, BJ115PX4SDA, J115PL4SDA, J115PX4SDA 2006
BJ115L4SRC, BJ115X4SRC, J115PL4SRC, J115PX4SRC 2004
BJ115L4STS, BJ115X4STS, J115PL4STS, J115PX4STS 2003
BJ60PL4SDM, J60PL4SDM 2006
BJ60PL4SOA, J60PL4SOA 2005
BJ60PL4SRR, J60PL4SRR 2004
BJ60PL4STC, J60PL4STC 2003
BJ70PL4SDM, J70PL4SDM 2006
BJ70PL4SOA, J70PL4SOA 2005
BJ70PL4SRR, J70PL4SRR 2004
BJ70PL4STC, J70PL4STC 2003
BJ90PL4SDA, BJ90PX4SDA, J90PL4SDA, J90PX4SDA 2006
BJ90PL4SRC, BJ90PX4SRC, J90PL4SRC, J90PX4SRC 2004
BJ90PL4STS, BJ90PX4STS, J90PL4STS, J90PX4STS 2003
J115PL4SOR, J115PX4SOR 2005
J60PL4SNF 2002
J70PL4SNF 2002
J90PL4SOR, J90PX4SOR 2005

Information:


Table 1
Diagnostic Codes Table
Code and Description Conditions which Generate this Code System Response
110-3 Engine Coolant Temperature Sensor voltage above normal The engine's Electronic Control Module (ECM) detects signal voltage that is more than 4.95 VDC for eight seconds.
The ECM has been powered for at least two seconds. The code is logged if the engine has been running for more than seven minutes. The ECM uses the last valid engine coolant temperature. If the diagnostic code is active at start-up the ECM will use intake manifold temperature. If intake manifold air temperature is not valid, the ECM will default to 90 °C (194 °F) for engine coolant temperature. The ECM will activate the cooling fan after this code has been active for more than eight seconds.
110-4 Engine Coolant Temperature Sensor voltage below normal The ECM detects signal voltage that is less than 0.2 VDC for eight seconds.
The ECM has been powered for at least two seconds.
172-3 Intake Manifold Air Temperature Sensor voltage above normal The engine's ECM detects signal voltage that is more than 4.95 VDC for eight seconds.
The ECM has been powered for at least two seconds. The ECM will log the diagnostic code. The ECM will flag the intake manifold air temperature as invalid data and the intake manifold air temperature is set to a default value of 40 °C (104 °F).
172-4 Intake Manifold Air Temperature Sensor voltage below normal The ECM detects signal voltage that is less than 0.2 VDC for eight seconds.
The ECM has been powered for at least two seconds.
174-3 Fuel Temperature Sensor voltage above normal The engine's Electronic Control Module (ECM) detects signal voltage that is more than 4.95 VDC for eight seconds.
The ECM has been powered for at least two seconds. The code is logged. The ECM will flag the fuel temperature as invalid data and the fuel temperature is set to a default value of 40 °C (104 °F).
174-4 Fuel Temperature Sensor voltage below normal The ECM detects signal voltage that is less than 0.2 VDC for two seconds.
The ECM has been powered for at least two seconds. System OperationUse this procedure to troubleshoot any suspect problems with the following sensors:
Coolant temperature sensor
Intake manifold air temperature sensor
Fuel temperature sensorThe sensor signal for the passive sensor is routed from the ECM to terminal 1 of each sensor connector. The sensor return for the passive sensors is routed from the ECM to terminal 2 of each sensor connector.
Illustration 1 g01303228
Typical schematic
Illustration 2 g01193814
P2 ECM connector
(P2-13) Engine coolant temperature
(P2-30) Sensor return
(P2-56) Intake manifold air temperature
(P2-62) Fuel temperature
Illustration 3 g01155187
Connector for the temperature sensors
(1) Sensor signal
(2) Sensor return
Illustration 4 g01200241
Sensor locations (typical left side engine view)
(1) Engine coolant temperature sensor
(2) Intake manifold air temperature sensor
(3) Fuel temperature sensor Test Step 1. Check for "Active" or "Logged" Diagnostic Codes
Connect Caterpillar Electronic Technician (ET) to the service tool connector.
Restore electrical power to the ECM.
Monitor the diagnostic codes on Cat ET. Check and record any diagnostic codes. Note: Wait at least 30 seconds in order for the diagnostic codes to become active.
Determine if a diagnostic code has occurred several times. Note: A diagnostic code that is logged several times is an indication of an intermittent problem. Most intermittent problems are the result of a poor connection between a socket and a pin in a connector or of a poor connection between a wire and a terminal.
Determine if the problem is active and related to one of the following diagnostic codes:
3
4Expected Result:A diagnostic code is not active.Results:
OK - A diagnostic code is not active.Repair: The problem may be intermittent. If the problem is intermittent, refer to Troubleshooting, "Electrical Connectors - Inspect".STOP
Not OK - An active 3 diagnostic code is present. Proceed to Test Step 2.
Not OK - An active 4 diagnostic code is present. Proceed to Test Step 4.Test Step 2. Check for Battery Voltage on the Signal Wire
Measure the voltage on the harness side of the sensor connector between pin 1 and engine ground for the suspect sensor(s). Expected Result:The signal voltage is less than battery voltage.Results:
OK - The signal voltage is less than battery voltage. Proceed to Test Step 3.
Not OK - The signal voltage is equal to battery voltage.Repair: There is a short in the harness to the Battery. Repair the wiring.STOPTest Step 3. Create a Short at the Sensor Connector
Remove electrical power from the ECM.
Disconnect the suspect sensor.
Use a wire jumper in order to create a short between terminal 1 (signal) and terminal 2 (sensor return) at the sensor connector.
Restore electrical power to the ECM.
Access the "Active Diagnostic Code" screen on Cat ET. Check for an active 4 diagnostic code for the suspect sensor.
Remove power from the ECM. Expected Result:A 4 diagnostic code is now active for the suspect sensor(s).Results:
OK - A 3 diagnostic code was active before creating the short at the sensor connector. A 4 diagnostic code became active after creating the short at the sensor connector. The wiring between the ECM and the sensor connector is OK.Repair: Temporarily connect a new sensor to the harness, but do not install the new sensor in the engine. Verify that there are no active diagnostic codes for the sensor. If there are no active diagnostic codes for the sensor, permanently install the new sensor. Clear any logged diagnostic codes.STOP
Not OK - A 3 diagnostic code is still active for the suspect sensor(s). There is an open circuit between the sensor connector and the ECM. Leave the sensor disconnected. Proceed to Test Step 5.Test Step 4. Create an Open at the Suspect Sensor Connector
Remove electrical power from the ECM.
Disconnect the sensor connector of the suspect sensor(s) with the active 4 diagnostic code.
Restore electrical power to the ECM. Wait at least 30 seconds for activation of the diagnostic codes.
Access the "Active Diagnostic Code" screen on Cat ET. Check for an active 3 diagnostic code.
Remove electrical power from the ECM. Expected Result:A 3 diagnostic code is now active for the suspect sensor(s).Results:
OK - A 4 diagnostic code was active before disconnecting the sensor. A 3 diagnostic code became active after disconnecting the


Parts shim JOHNSON:

5030975
 
5030975 SHIM KIT, Driveshaft
BJ115L4SDA, BJ115L4SRC, BJ115L4STS, BJ140CX4DR, BJ140CX4SRS, BJ140L4SDR, BJ140PL4SRS, BJ60PL4SDM, BJ60PL4SRR, BJ60PL4STC, BJ70PL4SDM, BJ70PL4SRR, BJ70PL4STC, BJ90PL4SDA, BJ90PL4SRC, BJ90PL4STS, J140CX4STS, J140PL4STS, J60PL4SNF, J70FLTLECS, J70PL4SNF
5030491
 
5030491 SHIM, (0.75mm)
BJ115L4SDA, BJ115L4SRC, BJ115L4STS, BJ140CX4DR, BJ140CX4SRS, BJ140L4SDR, BJ140PL4SRS, BJ60PL4SDM, BJ60PL4SOA, BJ60PL4SRR, BJ60PL4STC, BJ70PL4SDM, BJ70PL4SOA, BJ70PL4SRR, BJ70PL4STC, BJ90PL4SDA, BJ90PL4SRC, BJ90PL4STS, J115PL4SOR, J140CX4SOR, J140CX4S
5032567
SHIM (T:0.85mm)
5032567 SHIM (T:0.85mm)
BJ115L4SDA, BJ115L4SRC, BJ115L4STS, BJ60PL4SDM, BJ60PL4SOA, BJ60PL4SRR, BJ60PL4STC, BJ70PL4SDM, BJ70PL4SOA, BJ70PL4SRR, BJ70PL4STC, BJ90PL4SDA, BJ90PL4SRC, BJ90PL4STS, J115PL4SOR, J60PL4SNF, J70PL4SNF, J90PL4SOR
5032559
 
5032559 SHIM (T:0.45mm)
BJ115L4SDA, BJ115L4SRC, BJ115L4STS, BJ60PL4SDM, BJ60PL4SOA, BJ60PL4SRR, BJ60PL4STC, BJ70PL4SDM, BJ70PL4SOA, BJ70PL4SRR, BJ70PL4STC, BJ90PL4SDA, BJ90PL4SRC, BJ90PL4STS, J115PL4SOR, J60PL4SNF, J70PL4SNF, J90PL4SOR
5032575
SHIM (T:1.6mm)
5032575 SHIM (T:1.6mm)
BJ115L4SDA, BJ115L4SRC, BJ115L4STS, BJ140L4SDR, BJ140PL4SRS, BJ60PL4SDM, BJ60PL4SOA, BJ60PL4SRR, BJ60PL4STC, BJ70PL4SDM, BJ70PL4SOA, BJ70PL4SRR, BJ70PL4STC, BJ90PL4SDA, BJ90PL4SRC, BJ90PL4STS, J115PL4SOR, J140PL4SOR, J140PL4STS, J140PX4SOR, J60PL4SNF
5032578
 
5032578 SHIM (T:1.2mm)
BJ115L4SDA, BJ115L4SRC, BJ115L4STS, BJ60PL4SDM, BJ60PL4SOA, BJ60PL4SRR, BJ60PL4STC, BJ70PL4SDM, BJ70PL4SOA, BJ70PL4SRR, BJ70PL4STC, BJ90PL4SDA, BJ90PL4SRC, BJ90PL4STS, J115PL4SOR, J60PL4SNF, J70PL4SNF, J90PL4SOR
5033878
 
5033878 SHIM, TAPPET (T:2.68mm)
BJ115L4SDA, BJ115L4SRC, BJ115L4STS, BJ140CX4DR, BJ140CX4SRS, BJ140L4SDR, BJ140PL4SRS, BJ90PL4SDA, BJ90PL4SRC, BJ90PL4STS, J115PL4SOR, J140CX4SOR, J140CX4STS, J140PL4SOR, J140PL4STS, J140PX4SOR, J90PL4SOR
5033671
 
5033671 SHIM, TAPPET (T:2.20mm)
BJ115L4SDA, BJ115L4SRC, BJ115L4STS, BJ140CX4DR, BJ140CX4SRS, BJ140L4SDR, BJ140PL4SRS, BJ90PL4SDA, BJ90PL4SRC, BJ90PL4STS, J115PL4SOR, J140CX4SOR, J140CX4STS, J140PL4SOR, J140PL4STS, J140PX4SOR, J90PL4SOR
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