8N7766 BEARING-MAIN Caterpillar parts
D379B, D398, D398A, D398B, D399, G398, G399
Rating:
Alternative (cross code) number:
CA8N7766
8N-7766
8N7766
CA8N7766
8N-7766
8N7766
Weight: 3 pounds 1 kg.
GAS ENGINE, MARINE ENGINE,
Related part:
8N7766
BEARING-MAIN-YM
4197270
CL
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$107.26
10 Jul 2023
US: Florida-Parts-Z
8N7766 - Bearing-Main for Caterpillar (CAT)
FIRST PRICE PARTS
FIRST PRICE PARTS
$228.68
02 Jun 2021
3.5[1.57] Pounds
US: Highway And Hea
8N7766 | Caterpillar Main Bearing.050
HHP HIGHWAY & HEAVY PARTS HHP provides parts equal or better in quality compared to the OE at a fraction of the cost. || Products are crafted with hard-wearing materials for long-lasting strength and durability. || Parts meet or exceed OEM specifications to ensure proper fit and function. || Image(s) is for illustration purposes only and may not represent the actual part. || Products are only sourced from quality certified manufacturing facilities.
HHP HIGHWAY & HEAVY PARTS HHP provides parts equal or better in quality compared to the OE at a fraction of the cost. || Products are crafted with hard-wearing materials for long-lasting strength and durability. || Parts meet or exceed OEM specifications to ensure proper fit and function. || Image(s) is for illustration purposes only and may not represent the actual part. || Products are only sourced from quality certified manufacturing facilities.
Compatible equipment models: 8N7766:
Information:
EUI Engine
The operation of the engine is controlled by the Engine ECM. Some Electronic Unit Injection (EUI) engines utilize a Common Engine Interface (CEI). In CEI applications, the EMCP 4 may send the engine start and the engine stop information across the CAN data link.Note: For a CEI application, the cooldown timer that is in the ECMP 4 should be set to zero.The Engine ECM controls the engine speed and also enables the fuel injection for the engines. The fuel enable input and the speed input can be configured by using the service tool.The fuel enable input to the ECM can be switched to battery negative, or the input can be transmitted over the primary CAN data link.The desired engine speed is derived from one of the two following inputs:
Input from a converter. The converter converts the analog speed signal of a speed potentiometer into a pulse width modulated signal for delivery over the primary CAN data link.
The ECM uses feedback from the engine speed sensors that are mounted on the engine to control the engine speedThere are primary and secondary throttle inputs. The throttle inputs can be a pulse width modulated signal or the speed inputs can be transmitted over the primary CAN data link.Note: Caterpillar Electronic Technician (Cat ET) is used to configure the throttle inputs as either primary or as secondary.The Engine ECM will acknowledge the failure, generate a diagnostic, and respond to the secondary input if the primary throttle input fails. The engine will default to the idle speed setting if the primary throttle input fails and the secondary input is disabled.The EMCP 4 receives specific information that is used in order to monitor the system for events.Note: The EMCP 4 does not display the parameter name for unsupported parameters.The following information is shown on the display screen of the EMCP 4 if the information is supported by the Engine ECM:
Engine Oil Pressure
Engine Coolant Temperature
Left Exhaust Manifold Temperature
Right Exhaust Manifold Temperature
Intake Manifold Temperature
Oil Temperature
Fuel Pressure
Boost Pressure
Oil Filter Differential Pressure
Fuel Filter Differential Pressure
Air Filter Differential Pressure
Engine Fuel Temperature
Battery Voltage
Engine Speed (rpm)
Engine Hours
Engine State
Service (hrs)/days
Total Crank (Cranks)
Total Start (Starts)
Exhaust Temp
Turbo 1, 2, 3, and 4 Compressor Inlet Temp
Turbine 1, 2, 3, and 4 Inlet Temp
Turbine 1, 2, 3, and 4 Outlet Temp
Cylinder Temps
Crankcase Pressure
Total Fuel
Rate of Fuel Note: Only the values that are supported by other modules, and that are broadcast on one of the CAN data links will be displayed.The EMCP 4 displays the diagnostic trouble codes from the ECM as a convenience to the operator.Reference: For information on the management of diagnostic trouble codes by the EMCP 4 and the ECM, refer to Troubleshooting, "Diagnostic Trouble Code List". Reference: For EMCP 4 settings that are specific to EUI engine applications, refer to the setpoint tables in Testing and Adjusting, "Electronic Control Module (Generator Set) - Configure".
The operation of the engine is controlled by the Engine ECM. Some Electronic Unit Injection (EUI) engines utilize a Common Engine Interface (CEI). In CEI applications, the EMCP 4 may send the engine start and the engine stop information across the CAN data link.Note: For a CEI application, the cooldown timer that is in the ECMP 4 should be set to zero.The Engine ECM controls the engine speed and also enables the fuel injection for the engines. The fuel enable input and the speed input can be configured by using the service tool.The fuel enable input to the ECM can be switched to battery negative, or the input can be transmitted over the primary CAN data link.The desired engine speed is derived from one of the two following inputs:
Input from a converter. The converter converts the analog speed signal of a speed potentiometer into a pulse width modulated signal for delivery over the primary CAN data link.
The ECM uses feedback from the engine speed sensors that are mounted on the engine to control the engine speedThere are primary and secondary throttle inputs. The throttle inputs can be a pulse width modulated signal or the speed inputs can be transmitted over the primary CAN data link.Note: Caterpillar Electronic Technician (Cat ET) is used to configure the throttle inputs as either primary or as secondary.The Engine ECM will acknowledge the failure, generate a diagnostic, and respond to the secondary input if the primary throttle input fails. The engine will default to the idle speed setting if the primary throttle input fails and the secondary input is disabled.The EMCP 4 receives specific information that is used in order to monitor the system for events.Note: The EMCP 4 does not display the parameter name for unsupported parameters.The following information is shown on the display screen of the EMCP 4 if the information is supported by the Engine ECM:
Engine Oil Pressure
Engine Coolant Temperature
Left Exhaust Manifold Temperature
Right Exhaust Manifold Temperature
Intake Manifold Temperature
Oil Temperature
Fuel Pressure
Boost Pressure
Oil Filter Differential Pressure
Fuel Filter Differential Pressure
Air Filter Differential Pressure
Engine Fuel Temperature
Battery Voltage
Engine Speed (rpm)
Engine Hours
Engine State
Service (hrs)/days
Total Crank (Cranks)
Total Start (Starts)
Exhaust Temp
Turbo 1, 2, 3, and 4 Compressor Inlet Temp
Turbine 1, 2, 3, and 4 Inlet Temp
Turbine 1, 2, 3, and 4 Outlet Temp
Cylinder Temps
Crankcase Pressure
Total Fuel
Rate of Fuel Note: Only the values that are supported by other modules, and that are broadcast on one of the CAN data links will be displayed.The EMCP 4 displays the diagnostic trouble codes from the ECM as a convenience to the operator.Reference: For information on the management of diagnostic trouble codes by the EMCP 4 and the ECM, refer to Troubleshooting, "Diagnostic Trouble Code List". Reference: For EMCP 4 settings that are specific to EUI engine applications, refer to the setpoint tables in Testing and Adjusting, "Electronic Control Module (Generator Set) - Configure".
Caterpillar parts catalog:
Parts bearing Caterpillar catalog:
8N7768
BEARING-MAIN
D379B, D398, D398A, D398B, D399, G398, G399
D379B, D398, D398A, D398B, D399, G398, G399
5N6165
BEARING ASSEM.
D399, G379, G398, G399
D399, G379, G398, G399
3S4006
BEARING (plain)
641B, 657, 955H, D330A, D333A, D353C, D379, D379A, D398, D398A, D399
641B, 657, 955H, D330A, D333A, D353C, D379, D379A, D398, D398A, D399
8N7774
BEARING
D379B, G398, G399
D379B, G398, G399
8N7771
BEARING
D379B, G398, G399
D379B, G398, G399
8N7772
BEARING
D379B, G398, G399
D379B, G398, G399
8N7770
BEARING
D379, D379B, D398B, G379, G398, G399
D379, D379B, D398B, G379, G398, G399
2L4444
BEARING
3508, 3508B, 3512, 3512B, 3516, 3516B, D379, D398, D398A, G3512, G3516, G3516B, G3520C, G398, G399, PM3516, SR4, SR4B
3508, 3508B, 3512, 3512B, 3516, 3516B, D379, D398, D398A, G3512, G3516, G3516B, G3520C, G398, G399, PM3516, SR4, SR4B
5S9587
BEARING AS
3412, 3412C, 3412E, 3508, 3512, D398, D398B, G3412, G3516, G399
3412, 3412C, 3412E, 3508, 3512, D398, D398B, G3412, G3516, G399
5L3291
BEARING AS-BALL
3612, D342, D379, D398, G342C, G3508, G3512, G3516, G3606, G3606B, G3608, G3612, G3616, G379, G398, G399
3612, D342, D379, D398, G342C, G3508, G3512, G3516, G3606, G3606B, G3608, G3612, G3616, G379, G398, G399
8N7773
BEARING
D379B, G398, G399
D379B, G398, G399
6B5163
BEARING
561B, 561C, 977D, 977K, 977L, D379, D398, D5, D5B, D6C, D6D, D9E
561B, 561C, 977D, 977K, 977L, D379, D398, D5, D5B, D6C, D6D, D9E
8N7765
BEARING-MAIN
D379B, D398, D398A, D398B, D399, G398, G399
D379B, D398, D398A, D398B, D399, G398, G399
8N5622
BEARING (main)
641B, 772, D10, D348, D349
641B, 772, D10, D348, D349
8N5489
BEARING
1673C, 3304, 3306
1673C, 3304, 3306
5N7495
BEARING
3408
3408
8N0703
BEARING
1673C, 3306, 571G, 621R, 637D, D7F, D7G
1673C, 3306, 571G, 621R, 637D, D7F, D7G
8S4994
BEARING
D353C, D9G
D353C, D9G
8N5425
BEARING .025 in. oversize .025 in. undersize
245, 3406, 3408, 621B, 639D, 772B, 773B, 980C
245, 3406, 3408, 621B, 639D, 772B, 773B, 980C
8N5424
BEARING .025 in. oversize
245, 3406, 3408, 621B, 639D, 772B, 773B, 980C
245, 3406, 3408, 621B, 639D, 772B, 773B, 980C
8N5423
BEARING .050 in. undersize
245, 3406, 3408, 621B, 639D, 772B, 773B, 980C
245, 3406, 3408, 621B, 639D, 772B, 773B, 980C
8N5422
BEARING .025 in. undersize
245, 3406, 3408, 621B, 639D, 772B, 773B, 980C
245, 3406, 3408, 621B, 639D, 772B, 773B, 980C
8N7768
BEARING-MAIN
D379B, D398, D398A, D398B, D399, G398, G399
D379B, D398, D398A, D398B, D399, G398, G399
8N7767
BEARING-MAIN
D379B, D398, D398A, D398B, D399, G398, G399
D379B, D398, D398A, D398B, D399, G398, G399