9M2028 GEAR-SUN Caterpillar parts
572G, D6C, D6D, D6E, D6G, D6G2 LGP, D6G2 XL, D7F, D7G, D7G2
Rating:
Alternative (cross code) number:
CA9M2028
9M-2028
9M2028
CA9M2028
9M-2028
9M2028
Weight: 9 pounds 4 kg.
PIPELAYER, TRACK-TYPE TRACTOR,
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$134.95
20 Aug 2022
Amazon.com
9M2028 Gear CGR Ghinassi - Made in Italy
CGR Compatible Models - D7G-D6G-D7F || Related Items - 9M2008 || TORQUE CONVERTER GP
CGR Compatible Models - D7G-D6G-D7F || Related Items - 9M2008 || TORQUE CONVERTER GP
$120.56
30 Jun 2022
Amazon.com
9M2028 Gear CGR Ghinassi - Made in Italy
CGR Compatible Models - D7G-D6G-D7F || Related Items - 9M2008 || TORQUE CONVERTER GP
CGR Compatible Models - D7G-D6G-D7F || Related Items - 9M2008 || TORQUE CONVERTER GP
This part in 2 request:
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This information for suppliers only!
2025-04-11
2024-02-05
Compatible equipment models: 9M2028:
Information:
These Caterpillar Engines provide the following features:
Electronic engine control
Direct injection fuel system
Mechanically actuated electronic unit injectors
Turbocharged
Air-to-air aftercooledElectronic Engine Features
These Caterpillar Engines are specifically designed for electronic controls. These engines have an integral on board computer that is called an Electronic Control Module (ECM). The ECM monitors current engine conditions and power requirements. The optimum engine response is calculated and instructions are sent to the engine control systems. The systems respond and the engine responds accordingly. Total engine control is realized through the control of the fuel system and the engine speed/timing system. The electronic engine control system provides the following features:
Engine speed governing
Injection timing control
Automatic air/fuel ratio control
Torque rise shaping
Engine monitoring and protectionThe ECM provides the electronic governing of fuel delivery in order to dictate the following engine controls: engine speed setpoint, engine timing accuracy, air/fuel ratio control and torque rise fuel setting.Electronically controlled, mechanically actuated unit injectors combine the pumping, electronic fuel metering (duration and timing), and injecting elements of the fuel system into a single unit. Each cylinder has an independent unit injector.Fuel metering is controlled by an electrical signal that is sent to the injector solenoid from the ECM. High fuel injection pressures are produced by the unit injector pump. High injection pressures and accurate fuel metering ensure good fuel atomization and thorough combustion. This state-of-the-art technology provides the engine with the following benefits: reduced fuel consumption, controlled smoke emissions and electronically controlled acceleration ramp rates.The engine timing control and speed control are provided by the ECM. The speed/timing circuit consists of two speed/timing sensors. During engine cranking, the ECM uses the timing signal from the secondary speed/timing sensor. The timing signal from the primary speed/timing sensor is used by the ECM while the engine speed is greater than cranking speed. Utilizing two sensors for this circuit has several advantages. Each of the speed/timing sensors is treated as a discrete component by the ECM. If the signal from one of the sensors becomes suspect the ECM will use the signal from the other sensor in order to keep the engine operational.Injection duration is also managed by the ECM. The duration of the fuel injection cycle determines the engine speed. The placement of the injection cycle in relation to the crankshaft position will determine the timing advance. The speed/timing circuit provides information to the fuel cooled ECM for detection of crankshaft position and engine speed. This information is utilized by the ECM in order to control desired engine speed and engine timing.The ECM changes injection timing according to engine operating conditions and demand. Improved timing control results in improved performance. Improvements in several aspects of engine operation will be realized: better engine starting ability, shorter response times, reduced emissions, reduced noise and optimized fuel consumption.Engine monitoring and interactive diagnostics are also provided by the ECM. Essential engine operating conditions and diagnostic information are monitored and recorded in the ECM memory. The ECM quantifies the information. The information is then compared to an acceptable range of values.
Electronic engine control
Direct injection fuel system
Mechanically actuated electronic unit injectors
Turbocharged
Air-to-air aftercooledElectronic Engine Features
These Caterpillar Engines are specifically designed for electronic controls. These engines have an integral on board computer that is called an Electronic Control Module (ECM). The ECM monitors current engine conditions and power requirements. The optimum engine response is calculated and instructions are sent to the engine control systems. The systems respond and the engine responds accordingly. Total engine control is realized through the control of the fuel system and the engine speed/timing system. The electronic engine control system provides the following features:
Engine speed governing
Injection timing control
Automatic air/fuel ratio control
Torque rise shaping
Engine monitoring and protectionThe ECM provides the electronic governing of fuel delivery in order to dictate the following engine controls: engine speed setpoint, engine timing accuracy, air/fuel ratio control and torque rise fuel setting.Electronically controlled, mechanically actuated unit injectors combine the pumping, electronic fuel metering (duration and timing), and injecting elements of the fuel system into a single unit. Each cylinder has an independent unit injector.Fuel metering is controlled by an electrical signal that is sent to the injector solenoid from the ECM. High fuel injection pressures are produced by the unit injector pump. High injection pressures and accurate fuel metering ensure good fuel atomization and thorough combustion. This state-of-the-art technology provides the engine with the following benefits: reduced fuel consumption, controlled smoke emissions and electronically controlled acceleration ramp rates.The engine timing control and speed control are provided by the ECM. The speed/timing circuit consists of two speed/timing sensors. During engine cranking, the ECM uses the timing signal from the secondary speed/timing sensor. The timing signal from the primary speed/timing sensor is used by the ECM while the engine speed is greater than cranking speed. Utilizing two sensors for this circuit has several advantages. Each of the speed/timing sensors is treated as a discrete component by the ECM. If the signal from one of the sensors becomes suspect the ECM will use the signal from the other sensor in order to keep the engine operational.Injection duration is also managed by the ECM. The duration of the fuel injection cycle determines the engine speed. The placement of the injection cycle in relation to the crankshaft position will determine the timing advance. The speed/timing circuit provides information to the fuel cooled ECM for detection of crankshaft position and engine speed. This information is utilized by the ECM in order to control desired engine speed and engine timing.The ECM changes injection timing according to engine operating conditions and demand. Improved timing control results in improved performance. Improvements in several aspects of engine operation will be realized: better engine starting ability, shorter response times, reduced emissions, reduced noise and optimized fuel consumption.Engine monitoring and interactive diagnostics are also provided by the ECM. Essential engine operating conditions and diagnostic information are monitored and recorded in the ECM memory. The ECM quantifies the information. The information is then compared to an acceptable range of values.
Caterpillar parts catalog:
Parts gear Caterpillar catalog:
4M7100
GEAR (108T.&94T.)
983, D7F
983, D7F
1M0598
GEAR (53T. & 28T.)
983, D7F
983, D7F
7S6773
GEAR (36 Teeth)
518, 627, 920, 930, 950, 966C, 980B, D7F
518, 627, 920, 930, 950, 966C, 980B, D7F
7G2486
GEAR-PLANETARY
824C, 824G, 824G II, 824H, 824K, 825G, 825G II, 825H, 825K, 826C, 826G, 826G II, 826H, 826K, 834B, 834G, 834H, 834K, 836, 836G, 836H, 836K, 980C, 980F, 980F II, 980G, 980G II, 980H, 980K, 980K HLG, 98...
824C, 824G, 824G II, 824H, 824K, 825G, 825G II, 825H, 825K, 826C, 826G, 826G II, 826H, 826K, 834B, 834G, 834H, 834K, 836, 836G, 836H, 836K, 980C, 980F, 980F II, 980G, 980G II, 980H, 980K, 980K HLG, 98...
1144682
GEAR AS-OIL PUMP
980F, 980F II, D7G, D7G2
980F, 980F II, D7G, D7G2
1144680
GEAR AS-OIL PUMP
D7G, D7G2
D7G, D7G2
7G2474
GEAR-PLANETARY
572G, D6D, D6E, D6G, D6G2 LGP, D6G2 XL, D7F, D7G, D7G2
572G, D6D, D6E, D6G, D6G2 LGP, D6G2 XL, D7F, D7G, D7G2
5M6208
GEAR-RING
572G, D6C, D6D, D6E, D6G, D6G2 LGP, D6G2 XL, D7F, D7G, D7G2
572G, D6C, D6D, D6E, D6G, D6G2 LGP, D6G2 XL, D7F, D7G, D7G2
5M5822
GEAR-PUMP DRIVE
572G, 977K, 983, 983B, D6C, D6D, D6E, D6G, D6G2 LGP, D6G2 XL, D7F, D7G, D7G2
572G, 977K, 983, 983B, D6C, D6D, D6E, D6G, D6G2 LGP, D6G2 XL, D7F, D7G, D7G2
1T0436
GEAR-PUMP DRIVE
572G, D6C, D6D, D6E, D6G, D6G2 LGP, D6G2 XL, D7F, D7G, D7G2
572G, D6C, D6D, D6E, D6G, D6G2 LGP, D6G2 XL, D7F, D7G, D7G2
9S9385
GEAR AS-PUMP
D6C, D6D, D6E, D6G, D6G2 LGP, D6G2 XL
D6C, D6D, D6E, D6G, D6G2 LGP, D6G2 XL
4M0503
GEAR AS
983B, 988B, D6C, D6D, D6E, D6G, D6G2 LGP, D6G2 XL, D8H
983B, 988B, D6C, D6D, D6E, D6G, D6G2 LGP, D6G2 XL, D8H
1276329
GEAR-INPUT
963C
963C
8Y6112
GEAR
963C
963C
1745208
GEAR
953C, 963C, 973C
953C, 963C, 973C
1745207
GEAR
953C, 963C, 973C
953C, 963C, 973C
1275009
GEAR
963C
963C
5M7740
GEAR
977K, 977L, D6C, D6D, D6E, D6G, D6G2 LGP, D6G2 XL
977K, 977L, D6C, D6D, D6E, D6G, D6G2 LGP, D6G2 XL