3E7279 SWITCH GP-MAGNETIC Caterpillar parts
120H, 120H ES, 120H NA, 12H, 12H ES, 12H NA, 135H, 135H NA, 140H, 140H ES, 140H NA, 143H, 14H NA, 160H, 160H ES, 160H NA, 163H NA, 16H NA, 3208, 611, 613C II, 615C, 621F, 623E, 623F, 627F, 768C, 769C,...
Rating:
Alternative (cross code) number:
CA3E7279
3E-7279
3E7279
CA3E7279
3E-7279
3E7279
Weight: 0.40 pounds 0 kg.
GEN SET ENGINE, WHEEL TRACTOR,
Compatible equipment models: 3E7279:
Information:
Series-Parallel Circuits
Illustration 6 g01070324
A series-parallel circuit is composed of a series section and a parallel section. All of the rules previously discussed regarding series circuits and parallel circuits are applicable in solving for unknown circuit values.Although some series-parallel circuits appear to be very complex, the series parallel circuits are solved quite easily by using a logical approach. The following tips will make solving series-parallel circuits less complicated:
Examine the circuit carefully. Then determine the path or paths that current may flow through the circuit before returning to the source.
Redraw a complex circuit to simplify the appearance.
When you simplify a series parallel circuit, begin at the farthest point from the voltage source. Replace the parallel resistor combinations one step at a time.
A correctly redrawn series parallel (equivalent) circuit will contain only ONE series resistor in the end.
Apply the simple series rules for determining the unknown values.
Return to the original circuit and plug in the known values. Use Ohm's Law to solve the remaining values.Solving a Series-Parallel Problem
Illustration 7 g01070325
The series parallel circuit, as shown in Illustration 7, shows a 2Ohms resistor in series with a parallel branch that contains a 6Ohms resistor and a 3Ohms resistor. To solve this problem it is necessary to determine the equivalent resistance for the parallel branch. Using the following equation, solve for the parallel equivalent (Re) resistance:1/Re = 1/R2 + 1/R31/Re = 1/6 + 1/3 or1/Re = .1666 +.3333 = .50 or1/Re = 1/.50 or Re = 2 ohmsIllustration 7 has been redrawn (See Illustration 8) with the equivalent resistance for the parallel branch. Solve circuit totals by using simple Ohm's Law rules for series circuits.
Illustration 8 g01070328
Using the rules for series circuits, the total circuit resistance can now be calculated by using the equation Rt = R1 + Re or Rt = 2 + 2 or 4 ohms.The remaining value that is unknown is current. Again, using Ohm's Law Circle, current can be calculated by the equation:I = E/R orI = 12/4 orI = 3 ampIllustration 9 shows all the known values.
Illustration 9 g01070330
Circuit calculations indicate that the total current flow in the circuit is 3 amps. Since all current flow that leaves the source must return, you know that the 3 amps must flow through R1. It is now possible to calculate the voltage drop across R1 by using the equation E = I × R, or E = 3A × 2Ohms, or E1 = 6 volts.If 6 volts is consumed by resistor R1, the remaining source voltage (6V) is applied to both parallel branches. Using Ohm's Law for the parallel branch reveals that 1 amp flows through R2 and 2 amps flow through R3 before combining into the total circuit current of 3 amps returning to the negative side of the power source.Other Methods and Tips for Solving Complex Series Parallel Circuits
As stated earlier, complex circuits can be easily solved by carefully examining the path for current flow and then draw the circuit again. No matter how complex a circuit appears, drawing an equivalent circuit
Illustration 6 g01070324
A series-parallel circuit is composed of a series section and a parallel section. All of the rules previously discussed regarding series circuits and parallel circuits are applicable in solving for unknown circuit values.Although some series-parallel circuits appear to be very complex, the series parallel circuits are solved quite easily by using a logical approach. The following tips will make solving series-parallel circuits less complicated:
Examine the circuit carefully. Then determine the path or paths that current may flow through the circuit before returning to the source.
Redraw a complex circuit to simplify the appearance.
When you simplify a series parallel circuit, begin at the farthest point from the voltage source. Replace the parallel resistor combinations one step at a time.
A correctly redrawn series parallel (equivalent) circuit will contain only ONE series resistor in the end.
Apply the simple series rules for determining the unknown values.
Return to the original circuit and plug in the known values. Use Ohm's Law to solve the remaining values.Solving a Series-Parallel Problem
Illustration 7 g01070325
The series parallel circuit, as shown in Illustration 7, shows a 2Ohms resistor in series with a parallel branch that contains a 6Ohms resistor and a 3Ohms resistor. To solve this problem it is necessary to determine the equivalent resistance for the parallel branch. Using the following equation, solve for the parallel equivalent (Re) resistance:1/Re = 1/R2 + 1/R31/Re = 1/6 + 1/3 or1/Re = .1666 +.3333 = .50 or1/Re = 1/.50 or Re = 2 ohmsIllustration 7 has been redrawn (See Illustration 8) with the equivalent resistance for the parallel branch. Solve circuit totals by using simple Ohm's Law rules for series circuits.
Illustration 8 g01070328
Using the rules for series circuits, the total circuit resistance can now be calculated by using the equation Rt = R1 + Re or Rt = 2 + 2 or 4 ohms.The remaining value that is unknown is current. Again, using Ohm's Law Circle, current can be calculated by the equation:I = E/R orI = 12/4 orI = 3 ampIllustration 9 shows all the known values.
Illustration 9 g01070330
Circuit calculations indicate that the total current flow in the circuit is 3 amps. Since all current flow that leaves the source must return, you know that the 3 amps must flow through R1. It is now possible to calculate the voltage drop across R1 by using the equation E = I × R, or E = 3A × 2Ohms, or E1 = 6 volts.If 6 volts is consumed by resistor R1, the remaining source voltage (6V) is applied to both parallel branches. Using Ohm's Law for the parallel branch reveals that 1 amp flows through R2 and 2 amps flow through R3 before combining into the total circuit current of 3 amps returning to the negative side of the power source.Other Methods and Tips for Solving Complex Series Parallel Circuits
As stated earlier, complex circuits can be easily solved by carefully examining the path for current flow and then draw the circuit again. No matter how complex a circuit appears, drawing an equivalent circuit
Caterpillar SIS machinery equipment:
Caterpillar SIS
777C Truck 776C Tractor 2TK00001-UP (MACHINE) POWERED BY 3508 Engine »
3E-7279
SWITCH GP-MAGNETIC
3208 Generator Set Engine 30A05100-UP »
3E-7279
SWITCH GP-MAGNETIC
615C Series II Wheel Tractor-Scraper 2XG00898-UP (MACHINE) POWERED BY 3306 Engine »
3E-7279
SWITCH GP-MAGNETIC
140H NA Motor Grader 2ZK00001-UP (MACHINE) POWERED BY 3306 Engine »
3E-7279
SWITCH GP-MAGNETIC
160H Motor Grader 9EJ00001-UP (MACHINE) POWERED BY 3306 Engine »
3E-7279
SWITCH GP-MAGNETIC
12H Motor Grader 4XM00001-UP (MACHINE) POWERED BY 3306B Engine »
3E-7279
SWITCH GP-MAGNETIC
12H Motor Grader 2LR00001-UP (MACHINE) POWERED BY 3306 Engine »
3E-7279
SWITCH GP-MAGNETIC
14H Motor Grader 7WJ00001-UP (MACHINE) POWERED BY 3306 Engine »
3E-7279
SWITCH GP-MAGNETIC
140H Motor Grader 8KM00001-UP (MACHINE) POWERED BY 3306 Engine »
3E-7279
SWITCH GP-MAGNETIC
Cat SIS web machinery list:
Parts switch Caterpillar catalog:
3E2024
SWITCH AS-PRESSURE
583R, 587R, 627F, 637E, D8R
583R, 587R, 627F, 637E, D8R
4Y0346
SWITCH ASSEM.
572G, 920, 926, 936, 936F, 953, 966F, 973, 980C, D4E, G936
572G, 920, 926, 936, 936F, 953, 966F, 973, 980C, D4E, G936
9G8009
SWITCH AS-PRESSURE
120G, 12G, 130G, 140G, 14G, 160G, 16G, 613C, 615, 621E, 623E, 627E, 631E, 637E, 651E, 657E, 773B, 777, 777B, 784B, 785, 785B, 789, 789B, 793B, 814B, 815B, 824C, 825C, 826C, 916, 926, 926A, 936, 936F, ...
120G, 12G, 130G, 140G, 14G, 160G, 16G, 613C, 615, 621E, 623E, 627E, 631E, 637E, 651E, 657E, 773B, 777, 777B, 784B, 785, 785B, 789, 789B, 793B, 814B, 815B, 824C, 825C, 826C, 916, 926, 926A, 936, 936F, ...
2M9346
SWITCH AS-PRESSURE
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, 613C, 613C II, 615, 61...
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, 613C, 613C II, 615, 61...
7V5647
SWITCH AS-LIMIT
613C, 69D, 769C, 769D, 771C, 771D, 772B, 773B, 773D, 773E, 775B, 775D, 775E, 776C, 776D, 777B, 777D, 784B, 784C, 785B, 785C, 785D, 789B, 789C, 789D, 793B, 793C, 793D, 814B, 815B, 824C, 825C, 826C, 916...
613C, 69D, 769C, 769D, 771C, 771D, 772B, 773B, 773D, 773E, 775B, 775D, 775E, 776C, 776D, 777B, 777D, 784B, 784C, 785B, 785C, 785D, 789B, 789C, 789D, 793B, 793C, 793D, 814B, 815B, 824C, 825C, 826C, 916...
3E2034
SWITCH AS-PRESSURE
621G, 623G, 627G, 631E, 631G, 633E II, 637E, 637G, 651E, 657E, 69D, 768C, 769C, 769D, 771C, 771D, 772B, 773B, 773D, 773E, 775B, 775D, 775E, 776C, 776D, 777D, 784B, 784C, 785B, 785C, 785D, 789B, 789C, ...
621G, 623G, 627G, 631E, 631G, 633E II, 637E, 637G, 651E, 657E, 69D, 768C, 769C, 769D, 771C, 771D, 772B, 773B, 773D, 773E, 775B, 775D, 775E, 776C, 776D, 777D, 784B, 784C, 785B, 785C, 785D, 789B, 789C, ...
6T3989
SWITCH AS-ROCKER
768C, 769C, 771C, 772B, 773B, 775B, 776C, 784B, 785, 785B, 789, 789B, 793B, 793C, 910E, 918F, 924F, 928F, 936F, 938F, 950F, 950F II, 960F, 966F, 966F II, 970F, 980F, 980F II, IT12B, IT14F, IT18F, IT24...
768C, 769C, 771C, 772B, 773B, 775B, 776C, 784B, 785, 785B, 789, 789B, 793B, 793C, 910E, 918F, 924F, 928F, 936F, 938F, 950F, 950F II, 960F, 966F, 966F II, 970F, 980F, 980F II, IT12B, IT14F, IT18F, IT24...
1259352
SWITCH AS-PRESSURE
120H, 120H ES, 120H NA, 12H, 12H ES, 12H NA, 135H, 135H NA, 140H, 140H ES, 140H NA, 143H, 14H NA, 160H, 160H ES, 160H NA, 163H NA, 16H NA, 611, 613C II, 615C, 621F, 621G, 623E, 623F, 623G, 627F, 627G,...
120H, 120H ES, 120H NA, 12H, 12H ES, 12H NA, 135H, 135H NA, 140H, 140H ES, 140H NA, 143H, 14H NA, 160H, 160H ES, 160H NA, 163H NA, 16H NA, 611, 613C II, 615C, 621F, 621G, 623E, 623F, 623G, 627F, 627G,...
1718711
SWITCH GP-FLOW
627F, 637E
627F, 637E
1169933
SWITCH AS-PRESSURE
5130, 5130B, 5230, 5230B, 651E, 657E, 776C, 776D, 777D, 784B, 785, 785B, 789B, 793B, 793C, 854G, 992G, 994F, 994H, D11N
5130, 5130B, 5230, 5230B, 651E, 657E, 776C, 776D, 777D, 784B, 785, 785B, 789B, 793B, 793C, 854G, 992G, 994F, 994H, D11N
1744058
SWITCH AS-PRESSURE
120H ES, 120H NA, 12H ES, 12H NA, 135H, 135H NA, 140H ES, 140H NA, 143H, 14H NA, 160H ES, 160H NA, 163H NA, 16H NA, 814F, 815F, 816F, 966F II, 966G, 972G, D8R
120H ES, 120H NA, 12H ES, 12H NA, 135H, 135H NA, 140H ES, 140H NA, 143H, 14H NA, 160H ES, 160H NA, 163H NA, 16H NA, 814F, 815F, 816F, 966F II, 966G, 972G, D8R
3T3195
SWITCH AS-PRESSURE
769C, 772B, 773B, 776C, 777, 777B, 784B, 785, 785B, 789, 789B, 793B
769C, 772B, 773B, 776C, 777, 777B, 784B, 785, 785B, 789, 789B, 793B
1584565
SWITCH GP-ENGINE BRAKE
3306, 3406B, 3406C, D350E, D400E
3306, 3406B, 3406C, D350E, D400E
8U5836
SWITCH GP-ROTOR
206B, 212B
206B, 212B
8U6095
SWITCH GP
206B, 212B
206B, 212B
2T3512
SWITCH GP-DISCONNECT
613C II
613C II
6I1806
SWITCH GP-START
3408B, 3412, 3412E
3408B, 3412, 3412E
4E4456
SWITCH GP-PRESSURE
988F, 992D
988F, 992D
1566319
SWITCH GP-ENGINE BRAKE
3176, 3406B
3176, 3406B
1436503
SWITCH GP-ENGINE BRAKE
3306, 3306C
3306, 3306C
3E7341
SWITCH AS-START
416B, 426B, 428B, 436B, 438B
416B, 426B, 428B, 436B, 438B