346-01216-0 Tohatsu O-RING, 1.7 - 59


346-01216-0 O-RING, 1.7 - 59 Tohatsu M25C3, M30A4, M40D2, M40D2, M40D2, M50D2, MD40A, MD40B, MD40B, MD40B2, MD40B2, MD50A, MD50B, MD50B, MD50B, MD50B2, MD50B2 O
346-01216-0 O-RING, 1.7 - 59 Tohatsu
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Buy O-RING, 1.7 - 59 346-01216-0 Tohatsu genuine, new aftermarket parts with delivery
Number on catalog scheme: 4
 

Compatible models:

Tohatsu entire parts catalog list:

M25C3 2003,2005
M30A4 2003
M40D2 2003
M40D2 2004
M40D2 2005
M50D2 2003
MD40A 2003
MD40B 2003,2004,2005,2007,2008,2009,2010,2011
MD40B 2006
MD40B2 2010
MD40B2 2011,2012,2013,2014
MD50A 2003
MD50B 2003
MD50B 2004,2005,2007,2008,2009,2010,2011
MD50B 2006
MD50B2 2010
MD50B2 2011,2012,2013,2014

Information:


Table 1
Diagnostic Codes Table
Code and Description Conditions which Generate this Code System Response
41-3 8 Volt DC Supply : Voltage Above Normal The digital sensor supply voltage is above normal for one second. The code is logged.
All sensors are set to default values.
41-4 8 Volt DC Supply : Voltage Below Normal The digital sensor supply voltage is below normal for one second.
262-3 5 Volt Sensor DC Power Supply : Voltage Above Normal The analog sensor supply voltage is above normal for one second. The code is logged.
All sensors are set to default values.
262-4 5 Volt Sensor DC Power Supply : Voltage Below Normal The analog sensor supply voltage is below normal for one second.
2131-3 5 Volt Sensor DC Power Supply #2 : Voltage Above Normal The analog sensor supply voltage is above normal for one second The code is logged.
Engine power may be derated.
2131-4 5 Volt Sensor DC Power Supply #2 : Voltage Below Normal The analog sensor supply voltage is below normal for one second. Note: The 262 diagnostic codes indicate a problem with the 5 V power supply on the J2 ECM connector. The 2131 diagnostic codes indicate a problem with the 5 V power supply on the J1 ECM connector.System OperationThe Electronic Control Module (ECM) supplies a regulated voltage of 5.0 0.2 VDC to the following sensors:
Fuel pressure sensor
Engine oil pressure sensor
Atmospheric pressure sensor
Turbocharger inlet pressure sensor
Intake manifold pressure sensor
Crankcase pressure sensorThe ECM supplies a regulated voltage of 8.0 0.4 VDC to the following sensor:
Sensor for the left turbocharger turbine inlet temperature
Sensor for the right turbocharger turbine inlet temperatureThe supply voltage for the sensors is routed from the ECM to terminal A of each sensor connector. The sensor return for the sensors is routed from the ECM to terminal B of each sensor connector. The ECM provides short circuit protection for the internal power supply. A short circuit to the battery will not damage the internal power supply.Note: The sensors are not protected from overvoltage. A short from the supply line to the +Battery may damage the sensors. If any of the 3 diagnostic codes are active, it is possible that a sensor has been damaged. Repair the sensor supply and check for any active sensor diagnostic codes in order to determine if a sensor has failed.
Illustration 1 g02722071
Typical schematic
Illustration 2 g02791987
Typical schematic 8V
Illustration 3 g02743076
Location of ECM connectors
(1) J1 ECM connector
(2) J2 ECM connector
Illustration 4 g02792225
P1 ECM connector
(P1-2) 5 V Sensor supply
(P1-3) Analog sensor return
Illustration 5 g02792227
P2 ECM connector
(P2-17) Sensor return
(P2-29) 5 V Sensor supply
(P2-30) Sensor return
(P2-54) Sensor return
(P2-72) 5 V Sensor supply
(P2-80) 5 V Sensor supply
(P2-81) 5 V Sensor supply
(P2-82) 5 V Sensor supply
(P2-83) Sensor return
(P2-92) Sensor return
Illustration 6 g01159881
Sensor connector
(A) 5 V or 8 V sensor supply
(B) Sensor return
(C) Signal Test Step 1. INSPECT ELECTRICAL CONNECTORS AND WIRING
Remove electrical power from the ECM.
Thoroughly inspect the J1/P1 ECM connector and the J2/P2 ECM connector. Inspect all of the connectors that are associated with the circuit. Refer to Troubleshooting, "Electrical Connectors - Inspect" for details.
Perform a 45 N (10 lb) pull test on each of the wires in the ECM connectors that are associated with the circuit.
Check the ECM connector (allen head screw) for the proper torque. Refer to Troubleshooting, "Electrical Connectors - Inspect" for details.
Check the harness and wiring for abrasion and for pinch points from the sensors back to the ECM. Expected Result:All connectors, pins, and sockets are coupled and/or inserted and the harness and wiring are free of corrosion, of abrasion and of pinch points.Results:
OK - The harness and connectors appear to be OK. Proceed to Test Step 2.
Not OK - There is a problem with the connectors and/or wiring.Repair: Repair the connectors or wiring and/or replace the connectors or wiring. Ensure that all of the seals are properly in place and ensure that the connectors are coupled.Verify that the repair eliminates the problem.STOPTest Step 2. CHECK FOR ACTIVE DIAGNOSTIC CODES
Connect Caterpillar Electronic Technician (ET) to the service tool connector.
Restore electrical power to the ECM.
Monitor the active diagnostic code screen on Cat ET. Check and record any active diagnostic codes. Look for the following diagnostic codes:
41-3
41-4
262-3
262-4
2131-3
2131-4 Note: Wait at least 30 seconds in order for the diagnostic codes to become active.Expected Result:No diagnostic codes are active.Results:
OK - No diagnostic code is active.Repair: The problem is no longer present. If the problem is intermittent, refer to Troubleshooting, "Electrical Connectors - Inspect".STOP
Not OK - A 262-3, 262-4, 2131-3 or 2131-4 diagnostic code is active at this time. Proceed to Test Step 3.
Not OK - A 41-3 or 41-4 diagnostic code is active at this time. Proceed to Test Step 5.Test Step 3. DISCONNECT THE 5 VOLT SENSORS WHILE YOU MONITOR THE ACTIVE DIAGNOSTIC CODES
Use this procedure for any 262 diagnostic codes.
Monitor the active diagnostic code screen on Cat ET while you disconnect each 5 Volt sensor at the sensor connector. Check for an active 262-3 code or an active 262-4 code. Note:


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