9J6691 PIN AS Caterpillar parts
D10R, D11N, D9L
Rating:
Alternative (cross code) number:
CA9J6691
9J-6691
9J6691
CA9J6691
9J-6691
9J6691
Weight: 44 pounds 19 kg.
Information:
PIN LENGTH
326
mm
PIN OUTER DIAMERTER
88.85
mm
PIN PART NUMBER
9J6690
PLATE PART NUMBER
9W6310
LUBE OUTLET
N
MAX. THREAD SIZE
1.25-12
PIN END TYPE
LEAD TAPER
PIN TRANSV HOLE
N
PLATE FIXING HOLES
Y
TRACK-TYPE TRACTOR,
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Information:
Note: This section contains some general information about the engine electronic system and sensors. For more information, refer to the engine's Systems Operation/Testing and Adjusting manual.Electronic System
The Caterpillar Electronic System is a complete electronic control system for gas engines. The following benefits are the most significant advantages of the electronic system:
Air/Fuel ratio control
Extensive system diagnostics
Elimination of parts that are prone to mechanical wear
Precise control of engine operation
Engine protection
Timing control of individual cylinders
Illustration 1 g00527903
Junction box
Most of the functions of the electronic system are provided by the Electronic Control Module (ECM). The ECM is a sealed unit that is located inside a junction box.Five primary functions are supported by the ECM:
Governing of the engine rpm
Control of ignition
Control of the air/fuel ratio
Start/stop control
Monitoring of engine operationGoverning of the Engine RPM
The ECM maintains the desired engine speed through electrical control of the throttle. The throttle regulates the throttle plate.For more information on the desired speed input, see the Systems Operation/Testing and Adjusting manual.Control of Ignition
Each cylinder has an ignition transformer that is located under the valve cover. To initiate combustion in each cylinder, the ECM sends a pulse to the primary coil of the ignition transformer. The transformer increases the voltage which creates a spark across the spark plug electrode.The transformers are grounded through the valve cover. Use caution when a valve cover is removed.Always disconnect the ignition harness from the transformer when a valve cover is removed.An ignition harness connects each transformer to the ECM. The harness is routed inside the engine.Control of Air and Fuel
The ECM determines the desired volume for the flow rates of the air and fuel. The ECM sends information on the desired flow of air and fuel to the fuel metering valve. The ECM fine tunes the signal to the fuel metering valve in order to achieve the desired emissions. The process is repeated continuously during engine operation.Start/Stop Control
The ECM contains the logic and the outputs for controlling the starting and stopping of the engine. The logic for starting and stopping can be programmed by the customer.The engine uses an energize-to-run system. The gas shutoff valve must remain energized in order to supply fuel to the engine. If power is removed from the gas shutoff valve, the fuel is shut off.Monitoring Engine Operation
Sensors are used in order to monitor engine operation. Wiring harnesses connect the sensors to the ECM. The ECM uses information from the sensors in order to monitor the engine. The ECM also uses information from the sensors in order to control the engine. The information is also used to generate event codes, and diagnostic codes.Note: The codes can be read with Caterpillar Electronic Technician (ET). The codes can also be read on the Machine Information Display System (MIDS) panel, if equipped.Event - An event is a result of abnormal engine operation. If abnormal engine operation is detected, the ECM generates an event code. The ECM can generate an alarm or a shutdown for abnormal engine operation. These conditions are some examples of events:
The Caterpillar Electronic System is a complete electronic control system for gas engines. The following benefits are the most significant advantages of the electronic system:
Air/Fuel ratio control
Extensive system diagnostics
Elimination of parts that are prone to mechanical wear
Precise control of engine operation
Engine protection
Timing control of individual cylinders
Illustration 1 g00527903
Junction box
Most of the functions of the electronic system are provided by the Electronic Control Module (ECM). The ECM is a sealed unit that is located inside a junction box.Five primary functions are supported by the ECM:
Governing of the engine rpm
Control of ignition
Control of the air/fuel ratio
Start/stop control
Monitoring of engine operationGoverning of the Engine RPM
The ECM maintains the desired engine speed through electrical control of the throttle. The throttle regulates the throttle plate.For more information on the desired speed input, see the Systems Operation/Testing and Adjusting manual.Control of Ignition
Each cylinder has an ignition transformer that is located under the valve cover. To initiate combustion in each cylinder, the ECM sends a pulse to the primary coil of the ignition transformer. The transformer increases the voltage which creates a spark across the spark plug electrode.The transformers are grounded through the valve cover. Use caution when a valve cover is removed.Always disconnect the ignition harness from the transformer when a valve cover is removed.An ignition harness connects each transformer to the ECM. The harness is routed inside the engine.Control of Air and Fuel
The ECM determines the desired volume for the flow rates of the air and fuel. The ECM sends information on the desired flow of air and fuel to the fuel metering valve. The ECM fine tunes the signal to the fuel metering valve in order to achieve the desired emissions. The process is repeated continuously during engine operation.Start/Stop Control
The ECM contains the logic and the outputs for controlling the starting and stopping of the engine. The logic for starting and stopping can be programmed by the customer.The engine uses an energize-to-run system. The gas shutoff valve must remain energized in order to supply fuel to the engine. If power is removed from the gas shutoff valve, the fuel is shut off.Monitoring Engine Operation
Sensors are used in order to monitor engine operation. Wiring harnesses connect the sensors to the ECM. The ECM uses information from the sensors in order to monitor the engine. The ECM also uses information from the sensors in order to control the engine. The information is also used to generate event codes, and diagnostic codes.Note: The codes can be read with Caterpillar Electronic Technician (ET). The codes can also be read on the Machine Information Display System (MIDS) panel, if equipped.Event - An event is a result of abnormal engine operation. If abnormal engine operation is detected, the ECM generates an event code. The ECM can generate an alarm or a shutdown for abnormal engine operation. These conditions are some examples of events:
Caterpillar parts catalog:
Parts pin Caterpillar catalog:
9J2593
PIN
10S, 854G, 854K, D10, D11N, D11R, D11T
10S, 854G, 854K, D10, D11N, D11R, D11T
3G0500
PIN AS
10, D10, D10N, D11N, D9L, E650
10, D10, D10N, D11N, D9L, E650
9W7007
PIN
D10N, D10R
D10N, D10R
8P9382
PIN
D10N, D10R, D9L
D10N, D10R, D9L
9J6662
PIN
D10N, D10R, D10T, D10T2, D9L
D10N, D10R, D10T, D10T2, D9L
3G8053
PIN
D10N, D10R, D10T, D10T2, D9L
D10N, D10R, D10T, D10T2, D9L
7T4810
PIN
D10N, D10R, D10T, D10T2
D10N, D10R, D10T, D10T2
7T7222
PIN AS
D10N, D10R, D10T, D10T2, D9L
D10N, D10R, D10T, D10T2, D9L
1112106
PIN AS
D10N, D10R, D10T, D10T2
D10N, D10R, D10T, D10T2
7T7303
PIN AS
D10N, D10R, D10T, D10T2
D10N, D10R, D10T, D10T2
1279189
PIN
D10R, D11R, D11T
D10R, D11R, D11T
9G9749
PIN
D9L
D9L
9J3226
PIN AS
10, D10, D11N, D11R
10, D10, D11N, D11R
9J2593
PIN
10S, 854G, 854K, D10, D11N, D11R, D11T
10S, 854G, 854K, D10, D11N, D11R, D11T
6J5985
PIN
814S, 824S, 854G, 854K, D10N, D10R, D10T, D10T2, D11N, D11R, D11T
814S, 824S, 854G, 854K, D10N, D10R, D10T, D10T2, D11N, D11R, D11T
9W2939
PIN
854G, 854K, D10N, D10R, D10T, D10T2, D11N, D11R, D11T
854G, 854K, D10N, D10R, D10T, D10T2, D11N, D11R, D11T
9J2364
PIN
10S, 854G, 854K, D10, D11N, D11R
10S, 854G, 854K, D10, D11N, D11R
9J2366
PIN
10S, 854G, 854K, D10, D11N, D11R, D11T
10S, 854G, 854K, D10, D11N, D11R, D11T
8P6093
PIN
D10N, D9L
D10N, D9L
3T7566
PIN
D10N, D10R, D8L, D9L, D9N, D9R, D9T
D10N, D10R, D8L, D9L, D9N, D9R, D9T
3532600
PIN
D11N, D11R, D11T
D11N, D11R, D11T
3G0500
PIN AS
10, D10, D10N, D11N, D9L, E650
10, D10, D10N, D11N, D9L, E650
8E4651
PIN
D10N, D11N
D10N, D11N
4T3535
PIN AS
D10, D11N, D11R
D10, D11N, D11R