0391059 LEVER, Fast idle EVINRUDE
E115MLCNB, E115MLCTE, E140MLCNB, E140MLCTE, E150TRLCNM, E150TRLCTB, E175TRLCNB, E175TRLCTD, E200TRLCNE, E200TRLCTD, E235TRLCNE, E235TRLCTD, E25CNE, E25ECTD, E35ECND, E35ECTS, E50BECNR, E50BECTA, E60ECNM, E60ECTB, E70ELCNB, E70ELCTE, E75ERCNB, E75ERCT
LEVER
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O'Neal Matrix V.24 Glove Mens Voltage Black/Red 9
O'Neal Vented mesh top for increased airflow and cooling || Adjustable wrist with Velcro closure for a secure fit || Stretch Lycra side panels for added comfort and flexibility || Ergonomic padding and stitching on palm for increased comfort and dexterity || Pre-curved tailoring for the best fit possible and helps to eliminate arm pump
O'Neal Vented mesh top for increased airflow and cooling || Adjustable wrist with Velcro closure for a secure fit || Stretch Lycra side panels for added comfort and flexibility || Ergonomic padding and stitching on palm for increased comfort and dexterity || Pre-curved tailoring for the best fit possible and helps to eliminate arm pump
Compatible models:
BRP EVINRUDE entire parts catalog list:
- REMOTE CONTROL » 0391059
E140MLCNB, E140TRLCNB, E140TRXCNB 1982
E140MLCTE, E140TRLCTE, E140TRXCTE 1983
E150TRLCNM, E150TRXCNM 1982
E150TRLCTB, E150TRLCTE, E150TRXCTB, E150TRXCTE 1983
E175TRLCNB, E175TRXCNB 1982
E175TRLCTD, E175TRLCTE, E175TRXCTD, E175TRXCTE 1983
E200TRLCNE, E200TRXCNE 1982
E200TRLCTD, E200TRLCTS, E200TRXCTD, E200TRXCTS 1983
E235TRLCNE, E235TRXCNE 1982
E235TRLCTD, E235TRLCTS, E235TRXCTD, E235TRXCTS 1983
E25CNE, E25ELCNE, E25RCNB, E25RLCNB, E25TECNB, E25TELCNB 1982
E25ECTD, E25ELCTD, E25RCTE, E25RLCTE, E25TECTE, E25TELCTE 1983
E35ECND, E35ELCND, E35RCND, E35RLCND, E35TELCNB 1982
E35ECTS, E35ELCTS, E35RCTS, E35RLCTS, E35TELCTS 1983
E50BECNR, E50BELCNR 1982
E50BECTA, E50BELCTA, E50TELCTA 1983
E60ECNM, E60ELCNM, E60TLCNM 1982
E60ECTB, E60ELCTB, E60TLCTB 1983
E70ELCNB, E70TLCNB 1982
E70ELCTE, E70TLCTE 1983
E75ERCNB, E75ERLCNB, E75TRLCNB 1982
E75ERCTE, E75ERLCTE, E75TRLCTE 1983
E90MLCNB, E90TLCNB, E90TXCNB 1982
E90MLCTE, E90TLCTE, E90TXCTE 1983
Information:
Table 1
J1939 Code and Description CDL Code and Description Comments
1180-3
Engine Turbocharger 1 Turbine Inlet Temperature : Voltage Above Normal 3908-3
Engine Turbocharger #1 Turbine Intake Temperature Sensor : Voltage Above Normal If the signal from the other exhaust temperature sensor is OK, the signal from that sensor is used. If the signal from the other exhaust temperature sensor is not OK, a default value of 0 °C (32 °F) is used.
The code is logged.
1180-4
Engine Turbocharger 1 Turbine Inlet Temperature : Voltage Below Normal 3908-4
Engine Turbocharger #1 Turbine Intake Temperature Sensor : Voltage Below Normal If the signal from the other exhaust temperature sensor is OK, the signal from that sensor is used. If the signal from the other exhaust temperature sensor is not OK, a default value of 0 °C (32 °F) is used.
The code is logged.
1180-8
Engine Turbocharger 1 Turbine Inlet Temperature : Abnormal Frequency, Pulse Width, or Period 3908-8
Engine Turbocharger #1 Turbine Intake Temperature Sensor : Abnormal Frequency, Pulse Width, or Period If the signal from the other exhaust temperature sensor is OK, the signal from that sensor is used. If the signal from the other exhaust temperature sensor is not OK, a default value of 0 °C (32 °F) is used.
The code is logged.
1181-3
Engine Turbocharger 2 Turbine Inlet Temperature : Voltage Above Normal 3909-3
Engine Turbocharger #2 Turbine Intake Temperature Sensor : Voltage Above Normal If the signal from the other exhaust temperature sensor is OK, the signal from that sensor is used. If the signal from the other exhaust temperature sensor is not OK, a default value of 0 °C (32 °F) is used.
The code is logged.
1181-4
Engine Turbocharger 2 Turbine Inlet Temperature : Voltage Below Normal 3909-4
Engine Turbocharger #2 Turbine Intake Temperature Sensor : Voltage Below Normal If the signal from the other exhaust temperature sensor is OK, the signal from that sensor is used. If the signal from the other exhaust temperature sensor is not OK, a default value of 0 °C (32 °F) is used.
The code is logged.
1181-8
Engine Turbocharger 2 Turbine Inlet Temperature : Abnormal Frequency, Pulse Width, or Period 3909-8
Engine Turbocharger #2 Turbine Intake Temperature Sensor : Abnormal Frequency, Pulse Width, or Period If the signal from the other exhaust temperature sensor is OK, the signal from that sensor is used. If the signal from the other exhaust temperature sensor is not OK, a default value of 0 °C (32 °F) is used.
The code is logged.
Illustration 1 g06343905
Table 2
Troubleshooting Test Steps Values Results
1. Check for Codes
A. Connect Cat® Electronic Technician (ET) to the service tool connector.
B. Determine if a code is active or logged.
Codes
Result: A -3 code is active or logged.
Proceed to Test Step 2.
Result: A -4 code is active or logged.
Proceed to Test Step 3.
Result: A -8 code is active or logged.
Proceed to Test Step 5.
2. Create a Short at the Sensor Connector
A. Turn the keyswitch to the OFF position.
B. Disconnect the sensor with the active -3 code.
C. Install the jumper wire between the following terminals at the sensor connector:
- Pin 2 (sensor return) and Pin 3 (sensor signal)
D. Connect Cat ET.
E. Use Cat ET to monitor the following:
- -4 code
F. Turn the keyswitch to the OFF position.
Create a Short
Result: A -4 code became active.
Repair: The wiring harness is OK. Replace the sensor.
Verify that the repair eliminated the problem.
Result: A -4 code did not become active.
Proceed to Test Step 4.
3. Create an Open at the Sensor Connector
A. Turn the keyswitch to the OFF position.
B. Disconnect the sensor with the active -4 code.
C. Connect Cat ET.
D. Use Cat ET to monitor the following:
- -3 code
E. Turn the keyswitch to the OFF position.
Create an Open
Result: A -3 code became active.
Repair: The wiring harness is OK. Replace the sensor.
Verify that the repair eliminated the problem.
Result: A -3 code did not become active.
Proceed to Test Step 4.
4. Check the 8 VDC Supply Voltage at the Sensor Connector
A. Turn the keyswitch to the ON position.
B. Measure the voltage at the following pin locations of the affected sensor connector:
- Pin 1 and Pin 2
C. Reconnect the sensor.
Supply Voltage
Result: The supply voltage is approximately 8.0 0.2 VDC.
Proceed to Test Step 8.
Result: The supply voltage is not approximately 8.0 0.2 VDC.
Repair: There is a short in the wiring harness to the battery. Repair or replace the wiring harness.
If the problem is not resolved, proceed to Test Step 5.
5. Check the PWM Circuit for an Open
A. Turn the keyswitch to the OFF position.
B. Disconnect the sensor with the active -8 code.
C. Disconnect the J2 connector at the ECM.
D. Measure the resistance between the following locations for the sensor:
- Pin 3 (sensor connector) and the appropriate PWM signal wire on the ECM connector.
Open Circuit
Result: Less than 10 ohms of resistance between the sensor connector and the ECM connector.
Proceed to Test Step 6.
Result: More than 10 ohms of resistance between the sensor connector and the ECM connector.
Repair: There is an open circuit in the wiring harness. Repair or replace the wiring harness.
If the problem is not resolved, proceed to Test Step 6.
6. Check the PWM Circuit for a Short Circuit
A. Turn the keyswitch to the OFF position.
B. Disconnect the sensor with the active -8 code.
C. Disconnect the J2 connector at the ECM.
D. Measure the resistance between the following locations for the sensor:
- Pin 3 (sensor connector) and Engine ground
Short Circuit
Result: There were more than 100 K ohms of resistance between pin 3 and engine ground.
Proceed to Test Step 7.
Result: There were less than 100 K ohms of resistance between pin 3 and engine ground.
Repair: There is a short circuit in the wiring harness. Repair or replace the wiring harness.
If the problem is not resolved, proceed to Test Step 7.
7. Check the PWM Circuit for a Pin to Pin Short Circuit
A. Turn the keyswitch to the OFF position.
B. Disconnect the sensor with the active -8 code.
C. Disconnect the J2 connector at the ECM.
D. Measure the resistance between the following locations for the sensor:
- Pin 3 (sensor connector) and all ECM connector pins
Short Circuit
Result: There were more than 100 K ohms of resistance between the signal
Parts lever EVINRUDE:
0315236
0315236 LEVER, Choke
18102S, 18202R, 18304A, 25102S, 25202R, 25302A, 25402M, 25502B, 25602E, 25702H, 25802C, 25904R, 35602G, E25CNE, E25ECIB, E25ECTD, E25RCSA, E25RSA, E25RSLS, E35ECIG, E35ECND, E35ECSM, E35ECTS
0386651
0386651 LEVER, Rod & Bellcrank pkg.
50442M, 50542B, 50902C, E50BECIC, E50BECNR, E50ECSR, E55RCIM, E55RLCSA, E60ECIA, E60ECNM, E60ECSR
0322177
0322177 LEVER,Shift rod
25702H, 25802C, 25904R, E25CNE, E25ECIB, E25ECRS, E25ECTD, E25RCSA, E25RSA, E25RSLS, E25RWCDC, E25RWCOS, E25RWCRD, E28ELCDS, E28ELCDS, E35ECSM
0389123
0389123 LEVER, Throttle control
50902C, 55874S, E35AELCDE, E35AELCUD, E40AELCCS, E40ECDE, E40ECOB, E40ECRM, E40ECUD, E45RCE, E45RCEIA, E45RCENM, E45RCESR, E48ESLCCC, E48ESLCCC, E48ESLCUS, E48ESLCUS, E50BECCS, E50BECDE, E50BECIC, E50BECNR, E50BECOB, E50BECRM, E50BECUD, E50ECSR, E55R
0326644
0326644 LEVER,Shift rod
BE130TLECE, BE130TLEDM, BE130TLEUB, BE250CXECB, BE250CXEDA, BE250CXEUM, C155WTLM, CE275TLCDC, CE275TLCOS, CE300TLCDC, CE300TLCOS, E120TLCCA, E120TLCDC, E120TLCEM, E120TLCOS, E120TLCUR, E120TLEIE, E120TLEND, E120TLERC, E120TLESB, E120TLETF, E125ESXENR
0325589
0325589 LEVER, Starter lockout
B25JREUR, BE20SRECB, BE20SREDA, BE20SREUM, BE25BAECM, BE25BAEDR, BE30BAECS, BE30BAEDE, BE30BAEEC, BE30BAEUD, BE30BASIA, BE30BASSR, E20CRCCA, E20CRCDC, E20CRCEM, E20CRCOS, E20CRCUR, E20CREDA, E20CREIE, E20CREND, E20CREOR, E20CRERC, E20CRESB, E20CRETS,
0325587
0325587 LEVER, Neutral shift lockout
E20CRCCA, E20CRCOS, E25CNE, E25ECCM, E25ECIB, E25ECOC, E25ECRS, E25ECTD, E25RSA, E25RSLS, E25RWCOS, E25RWCRD, E30ECOA, E30ECRR, E35ECIG, E35ECND, E35ECRR, E35ECTS
0326817