7W4154 ROTOR Caterpillar parts
3516, 3516B, 3516C, 3606, 3608, 3612, 3616, 3618, C280-12, C280-16, C280-6, C280-8, G3516, G3516B, G3520B, G3606, G3606B, G3608, G3612, G3616
Rating:
Alternative (cross code) number:
CA7W4154
7W-4154
7W4154
CA7W4154
7W-4154
7W4154
Weight: 18 pounds 8 kg.
GAS ENGINE, PETROLEUM ENGINE,
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$741.47
10 Jul 2022
18.7392[8.43] Pounds
US: ProperBuy
CTP Caterpillar Rotor (7w4154) Aftermarket
CTP
CTP
This part in 5 request:
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2024-10-10
2024-10-10
2024-10-08
2019-05-20
2018-03-26
Compatible equipment models: 7W4154:
GEN SET-MILITARY
3608
Information:
The parameters that are related to voltage regulation with "Cross Current Compensation" (CCC) are listed below.
Rated generator voltage
Generator PT primary voltage rating
Generator PT secondary voltage rating
Voltage set point
Generator frequency
Knee frequency
Integral gain
Derivative gain
Proportional gain
Loop gain
Generator CT current primary rating
Generator CT current secondary rating
Load compensation mode
Droop percentage
Rated generator currentCross current compensation is often used in order to minimize circulating current flow between the generators that are connected in parallel. The advantage of this operating mode is that all generators contribute in order to establish the same output voltage to the load. Cross current compensation is only used for paralleling multiple generator sets. Cross current compensation is not used when paralleling with a utility.Cross current compensation operation is similar to the reactive voltage droop mode. There is a difference from CCC to the droop mode. For CCC, the secondary circuits of the current transformers of all generators are interconnected in a series string. Each generator is initially adjusted in order to provide the same output voltage.When all generators share the same current, in magnitude and phase, there will be no significant current output on the secondary of any generator CT.Note: The magnitude and phase are according to the CT ratio.A net difference current signal will be created in the CT for a generator if any of the following are true.
One generator carries more current
The current is lagging relative to the others
The current is leading relative to the othersIf one generator is supplying more reactive (lagging) current than other generators, a slight decrease in the generated voltage will occur. The increased reactive (lagging) current causes a change in the phase polarity and magnitude of the signal returned to the DVR. Less reactive (or more leading) current will cause the generator voltage to rise.One goal is to trim the generated voltage and output current of each generator. The desire is to configure the system where all generators will share the same load current.The load current is in proportion to the CT ratio. Another goal is to prevent circulating current between the generators. Droop percentage controls the amount of individual generator voltage droop (or rise) for a given amount of CT signal.The CT secondary circuits are all interconnected. The CT signal seen by any individual regulator is not representative of the actual current flowing in that particular generator. Any display or calculations that might use that signal as if the signal were the actual generator current will provide erroneous results.Reactive voltage-droop must to be selected. An enable contact must be closed in order to enable cross current compensation. Refer to the Testing and Adjusting, RENR7941, "Wiring Diagrams" section for a wiring diagram of the cross current compensation circuit.
Rated generator voltage
Generator PT primary voltage rating
Generator PT secondary voltage rating
Voltage set point
Generator frequency
Knee frequency
Integral gain
Derivative gain
Proportional gain
Loop gain
Generator CT current primary rating
Generator CT current secondary rating
Load compensation mode
Droop percentage
Rated generator currentCross current compensation is often used in order to minimize circulating current flow between the generators that are connected in parallel. The advantage of this operating mode is that all generators contribute in order to establish the same output voltage to the load. Cross current compensation is only used for paralleling multiple generator sets. Cross current compensation is not used when paralleling with a utility.Cross current compensation operation is similar to the reactive voltage droop mode. There is a difference from CCC to the droop mode. For CCC, the secondary circuits of the current transformers of all generators are interconnected in a series string. Each generator is initially adjusted in order to provide the same output voltage.When all generators share the same current, in magnitude and phase, there will be no significant current output on the secondary of any generator CT.Note: The magnitude and phase are according to the CT ratio.A net difference current signal will be created in the CT for a generator if any of the following are true.
One generator carries more current
The current is lagging relative to the others
The current is leading relative to the othersIf one generator is supplying more reactive (lagging) current than other generators, a slight decrease in the generated voltage will occur. The increased reactive (lagging) current causes a change in the phase polarity and magnitude of the signal returned to the DVR. Less reactive (or more leading) current will cause the generator voltage to rise.One goal is to trim the generated voltage and output current of each generator. The desire is to configure the system where all generators will share the same load current.The load current is in proportion to the CT ratio. Another goal is to prevent circulating current between the generators. Droop percentage controls the amount of individual generator voltage droop (or rise) for a given amount of CT signal.The CT secondary circuits are all interconnected. The CT signal seen by any individual regulator is not representative of the actual current flowing in that particular generator. Any display or calculations that might use that signal as if the signal were the actual generator current will provide erroneous results.Reactive voltage-droop must to be selected. An enable contact must be closed in order to enable cross current compensation. Refer to the Testing and Adjusting, RENR7941, "Wiring Diagrams" section for a wiring diagram of the cross current compensation circuit.
Cat SIS web machinery list:
Parts rotor Caterpillar catalog:
9S2302
ROTOR AS
120G, 120H, 120H ES, 120H NA, 12G, 12H, 12H ES, 12H NA, 130G, 135H, 135H NA, 140G, 140H, 140H ES, 140H NA, 143H, 14G, 14H, 14H NA, 160G, 160H, 160H ES, 160H NA, 163H, 163H NA, 16G, 16H, 16H NA, 235, 2...
120G, 120H, 120H ES, 120H NA, 12G, 12H, 12H ES, 12H NA, 130G, 135H, 135H NA, 140G, 140H, 140H ES, 140H NA, 143H, 14G, 14H, 14H NA, 160G, 160H, 160H ES, 160H NA, 163H, 163H NA, 16G, 16H, 16H NA, 235, 2...
7N7800
ROTOR AS
120H, 120H NA, 12H, 12H NA, 135H, 135H NA, 140H, 140H NA, 140K, 14H NA, 160H, 160H NA, 160K, 215B, 235, 3116, 3126, 3126B, 3176B, 3176C, 3196, 3208, 3304, 3304B, 3306, 3306B, 3406, 3406B, 3406C, 3406E...
120H, 120H NA, 12H, 12H NA, 135H, 135H NA, 140H, 140H NA, 140K, 14H NA, 160H, 160H NA, 160K, 215B, 235, 3116, 3126, 3126B, 3176B, 3176C, 3196, 3208, 3304, 3304B, 3306, 3306B, 3406, 3406B, 3406C, 3406E...
7T2790
ROTOR AS
120G, 120H, 120H ES, 120H NA, 12G, 12H, 12H ES, 12H NA, 130G, 135H, 135H NA, 140G, 140H, 140H ES, 140H NA, 143H, 14G, 14H NA, 160G, 160H, 160H ES, 160H NA, 163H NA, 16G, 16H NA, 235, 245, 3114, 3116, ...
120G, 120H, 120H ES, 120H NA, 12G, 12H, 12H ES, 12H NA, 130G, 135H, 135H NA, 140G, 140H, 140H ES, 140H NA, 143H, 14G, 14H NA, 160G, 160H, 160H ES, 160H NA, 163H NA, 16G, 16H NA, 235, 245, 3114, 3116, ...
9G7560
ROTOR AS
120G, 120H, 120H ES, 120H NA, 12G, 12H, 12H ES, 12H NA, 130G, 135H, 135H NA, 140G, 140H, 140H ES, 140H NA, 143H, 14G, 14H NA, 160G, 160H, 160H ES, 160H NA, 163H NA, 16G, 16H NA, 235, 245, 3114, 3116, ...
120G, 120H, 120H ES, 120H NA, 12G, 12H, 12H ES, 12H NA, 130G, 135H, 135H NA, 140G, 140H, 140H ES, 140H NA, 143H, 14G, 14H NA, 160G, 160H, 160H ES, 160H NA, 163H NA, 16G, 16H NA, 235, 245, 3114, 3116, ...
1852650
ROTOR AS
1090, 1190, 1190T, 120H, 120H ES, 120H NA, 120K, 120K 2, 120M, 1290T, 12G, 12H, 12H ES, 12H NA, 12K, 12M, 135H, 135H NA, 1390, 140G, 140H, 140H ES, 140H NA, 140K, 140K 2, 140M, 143H, 14H, 14H NA, 14M,...
1090, 1190, 1190T, 120H, 120H ES, 120H NA, 120K, 120K 2, 120M, 1290T, 12G, 12H, 12H ES, 12H NA, 12K, 12M, 135H, 135H NA, 1390, 140G, 140H, 140H ES, 140H NA, 140K, 140K 2, 140M, 143H, 14H, 14H NA, 14M,...
5N8388
ROTOR
3412, 3412C, 3412D, 3412E, 3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, 5230, 5230B, 776C, 776D, 777D, 784B, 784C, 785, 785B, 785C, 785D, 789B, 789C, 793B, 793C, 793D, 797, 797B, 994, 9...
3412, 3412C, 3412D, 3412E, 3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, 5230, 5230B, 776C, 776D, 777D, 784B, 784C, 785, 785B, 785C, 785D, 789B, 789C, 793B, 793C, 793D, 797, 797B, 994, 9...
2800142
ROTOR GP-GENERATOR
3512, 3512B, 3512C, 3516, 3516B, 3516C
3512, 3512B, 3512C, 3516, 3516B, 3516C
3723077
ROTOR AS
3516B, 3516C, C175-16
3516B, 3516C, C175-16
2548717
ROTOR AS
3516B, 3516C, C175-16
3516B, 3516C, C175-16
3723076
ROTOR AS
3516B, 3516C, C175-16
3516B, 3516C, C175-16
4511464
ROTOR AS
3516, 3516B, 3516C, C175-16, XQC1600
3516, 3516B, 3516C, C175-16, XQC1600
6N1226
ROTOR ASSEM.
120G, 245, 3208, 3406, 3408, 3508, 3512, 3516, 814, 951B, 966C, D5, D8K, D9H
120G, 245, 3208, 3406, 3408, 3508, 3512, 3516, 814, 951B, 966C, D5, D8K, D9H
6N5595
ROTOR
3508, 3508B, 3512, 3512B, 3512C, 3516, 3516B, 3516C, C175-16, C175-20, D399, G3512, G3516, G3516B, PM3516, PP3516
3508, 3508B, 3512, 3512B, 3512C, 3516, 3516B, 3516C, C175-16, C175-20, D399, G3512, G3516, G3516B, PM3516, PP3516
7N0036
ROTOR
3512, 3516, 3606, 3608, 3612, 3616, D399, G3606, G3608, G3612, G3616
3512, 3516, 3606, 3608, 3612, 3616, D399, G3606, G3608, G3612, G3616
2N7519
ROTOR
3512, 3516, 3606, 3608, 3612, 3616, D300B, D399, G3606, G3608, G3612, G3616
3512, 3516, 3606, 3608, 3612, 3616, D300B, D399, G3606, G3608, G3612, G3616
3N1285
ROTOR
3208, 3512, 3512B, 3516, 3516B, 3516C, 3606, 3608, 3612, 3616, C175-16, C175-20, C280-12, C280-16, C280-6, C280-8, D399, G3508, G3508B, G3512, G3512B, G3516, G3516B, G3520B, G3606, G3606B, G3608, G361...
3208, 3512, 3512B, 3516, 3516B, 3516C, 3606, 3608, 3612, 3616, C175-16, C175-20, C280-12, C280-16, C280-6, C280-8, D399, G3508, G3508B, G3512, G3512B, G3516, G3516B, G3520B, G3606, G3606B, G3608, G361...
7C4420
ROTOR AS
3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, 3606, 3608, 3612, 3616, 3618, C280-12, C280-16, C280-6, C280-8
3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, 3606, 3608, 3612, 3616, 3618, C280-12, C280-16, C280-6, C280-8
5N8388
ROTOR
3412, 3412C, 3412D, 3412E, 3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, 5230, 5230B, 776C, 776D, 777D, 784B, 784C, 785, 785B, 785C, 785D, 789B, 789C, 793B, 793C, 793D, 797, 797B, 994, 9...
3412, 3412C, 3412D, 3412E, 3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, 5230, 5230B, 776C, 776D, 777D, 784B, 784C, 785, 785B, 785C, 785D, 789B, 789C, 793B, 793C, 793D, 797, 797B, 994, 9...
4P3152
ROTOR-EXCITER
3306, 3306B, 3406B, 3406C, 3456, C13 XQ350, C15, C18, C9, G3306, G3306B, G3406
3306, 3306B, 3406B, 3406C, 3456, C13 XQ350, C15, C18, C9, G3306, G3306B, G3406
4P3468
ROTOR-EXCITER
3208, 3304B, 3306, 3306B
3208, 3304B, 3306, 3306B
2066224
ROTOR-EXCITER
3306B, 3508, 3508B, 3512, 3512B, 3512C, 3516, 3516B, 3516C, C15, C18, C27, C32, G3508, G3512, G3512E, G3516, G3516B, G3516C, G3516E, G3520B, G3520C, G3520E, PM3508, PM3512, PM3516, PMG3516, PP3516, SR...
3306B, 3508, 3508B, 3512, 3512B, 3512C, 3516, 3516B, 3516C, C15, C18, C27, C32, G3508, G3512, G3512E, G3516, G3516B, G3516C, G3516E, G3520B, G3520C, G3520E, PM3508, PM3512, PM3516, PMG3516, PP3516, SR...
1085749
ROTOR
3306B, 3412, 3412C, 3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, C15, C175-16, C175-20, C18, C27, C32, G3508, G3512, G3512E, G3516, G3516B, G3516C, G3516E, G3516H, G3520B, G3520C, G3520...
3306B, 3412, 3412C, 3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, C15, C175-16, C175-20, C18, C27, C32, G3508, G3512, G3512E, G3516, G3516B, G3516C, G3516E, G3516H, G3520B, G3520C, G3520...
9Y5175
ROTOR AS-PUMP
3208, PR-1000
3208, PR-1000
9N5569
ROTOR AS-PUMP
225, 3208, 613B, 613C, CS-551, FB221, PR-1000, PS-500
225, 3208, 613B, 613C, CS-551, FB221, PR-1000, PS-500