0875871 HEATER GP-CAB Caterpillar parts
311, 312, 315, 320, 320 L, 320N, 322, 325, 325 L, 325 LN, 330, 330 FM L, 330 L, 350, 375
Rating:
Alternative (cross code) number:
CA0875871
087-5871
0875871
CA0875871
087-5871
0875871
EXCAVATOR,
Compatible equipment models: 0875871:
Information:
Ohm's Law
E = IRwhere E = voltage in voltsI = current in amperesR = resistance in ohmsBy simple algebra this equation may be written:Power
P = IEwhere P = power in wattsI = current in amperesE = voltage in voltsThis equation for power may also be transposed to:From Ohm's law it is known that E = IR. If this expression for voltage is substituted in the power law, we can derive the additional equation: P = I2RIf we use the equation for current from Ohm's law, I = E/R, the equation for power becomes:*See "Ugly's Electrical Reference" (SEBD0983) for additional information.Resistance
Series Circuits RT = R1 + R2 + R3 + ... RNwhere RN = resistance in the individual resistorsRT = total resistance in circuitReactance
XL = 2 π f Lwhere XL = inductive reactance in ohms f = frequency in hertzL = inductance in henriesπ = 3.1416where XC = capacitive reactance in ohms f = frequency in hertzC = capacitance in faradsπ = 3.1416Impedance
where Z = impedance in ohms R = resistance in ohmsXL = inductive reactance in ohmsXC = capacitive reactance in ohmsNote that the impendance will vary with frequency, since both XC and XL are frequency dependent. In practical AC power circuits, XC is often small and can be neglected. In that case, the formula above simplifies to:Transformer Voltage Conversion
where VS = secondary voltage VP = primary voltageNS = number of secondary turnsNP = number of primary turnsPower Factor
In mathematical terms, the power factor is equal to the cosine of the angle by which the current leads or lags the voltage. If the current lags the voltage in an inductive circuit by 60 degrees, the power factor will be 0.5, the value of the cosine function at 60 degrees. If the phase of the current in a load leads the phase of the voltage, the load is said to have a leading power factor; if it lags, a lagging power factor. If the voltage and current are in phase, the circuit has a unity power factor.Equation Summary Diagram
Three Phase Connection Systems:
Electrical Enclosure Protection = IEC
The degrees of protection provided within an electrical enclosure is expressed in terms of the letters IP followed by two numerals. Mechanical protection against impact damage is defined by an optional third numeral.Example: An IP55 enclosure protects its contents against dust and spray from water jets.Reference: DIN 40050 of July 1980, IEC 144 of 1963, IEC 529 of 1976, NF C 20-010 of April 1977Electrical Enclosure Protection - NEMA
Electrical Tables
Table 1 Electrical FormulaeTable 2 KV A of AC CircuitsTable 3 Copper Wire CharacteristicsTable 4 Single-Phase AC Motors Full Load Currents in AmperesTable 5 Three-Phase AC Motors - 80% Power Factor Full Load Current in Amperes - Induction-Type, Squirrel Cage and Wound RotorTable 6 Direct Current Motors Full Load Current in AmperesTable 7 Conduit Sizes for ConductorsTable 8 Allowable Current-Carrying Capacities of Insulated Copper ConductorsTable 9 Code Letters Usually Applied to Ratings of Motors Normally Started on Full VoltageTable 10 Identifying Code Letters on AC
E = IRwhere E = voltage in voltsI = current in amperesR = resistance in ohmsBy simple algebra this equation may be written:Power
P = IEwhere P = power in wattsI = current in amperesE = voltage in voltsThis equation for power may also be transposed to:From Ohm's law it is known that E = IR. If this expression for voltage is substituted in the power law, we can derive the additional equation: P = I2RIf we use the equation for current from Ohm's law, I = E/R, the equation for power becomes:*See "Ugly's Electrical Reference" (SEBD0983) for additional information.Resistance
Series Circuits RT = R1 + R2 + R3 + ... RNwhere RN = resistance in the individual resistorsRT = total resistance in circuitReactance
XL = 2 π f Lwhere XL = inductive reactance in ohms f = frequency in hertzL = inductance in henriesπ = 3.1416where XC = capacitive reactance in ohms f = frequency in hertzC = capacitance in faradsπ = 3.1416Impedance
where Z = impedance in ohms R = resistance in ohmsXL = inductive reactance in ohmsXC = capacitive reactance in ohmsNote that the impendance will vary with frequency, since both XC and XL are frequency dependent. In practical AC power circuits, XC is often small and can be neglected. In that case, the formula above simplifies to:Transformer Voltage Conversion
where VS = secondary voltage VP = primary voltageNS = number of secondary turnsNP = number of primary turnsPower Factor
In mathematical terms, the power factor is equal to the cosine of the angle by which the current leads or lags the voltage. If the current lags the voltage in an inductive circuit by 60 degrees, the power factor will be 0.5, the value of the cosine function at 60 degrees. If the phase of the current in a load leads the phase of the voltage, the load is said to have a leading power factor; if it lags, a lagging power factor. If the voltage and current are in phase, the circuit has a unity power factor.Equation Summary Diagram
Three Phase Connection Systems:
Electrical Enclosure Protection = IEC
The degrees of protection provided within an electrical enclosure is expressed in terms of the letters IP followed by two numerals. Mechanical protection against impact damage is defined by an optional third numeral.Example: An IP55 enclosure protects its contents against dust and spray from water jets.Reference: DIN 40050 of July 1980, IEC 144 of 1963, IEC 529 of 1976, NF C 20-010 of April 1977Electrical Enclosure Protection - NEMA
Electrical Tables
Table 1 Electrical FormulaeTable 2 KV A of AC CircuitsTable 3 Copper Wire CharacteristicsTable 4 Single-Phase AC Motors Full Load Currents in AmperesTable 5 Three-Phase AC Motors - 80% Power Factor Full Load Current in Amperes - Induction-Type, Squirrel Cage and Wound RotorTable 6 Direct Current Motors Full Load Current in AmperesTable 7 Conduit Sizes for ConductorsTable 8 Allowable Current-Carrying Capacities of Insulated Copper ConductorsTable 9 Code Letters Usually Applied to Ratings of Motors Normally Started on Full VoltageTable 10 Identifying Code Letters on AC
Caterpillar SIS machinery equipment:
Caterpillar SIS
325, 325L, 325LN EXCAVATORS 2SK00001-UP (MACHINE) POWERED BY 3116 ENGINE »
087-5871
HEATER GP-CAB
325, 325L EXCAVATOR 2JK00001-UP (MACHINE) »
087-5871
HEATER GP-CAB
320, 320L & 320N EXCAVATORS 3XK00001-00821 (MACHINE) »
087-5871
HEATER GP-CAB
330, 330L EXCAVATORS 8FK00001-UP (MACHINE) POWERED BY 3306 ENGINE »
087-5871
HEATER GP-CAB
325, 325L EXCAVATOR 8NK00001-UP (MACHINE) POWERED BY 3116 ENGINE »
087-5871
HEATER GP-CAB
325, 325 L AND 325 LN EXCAVATORS 2SL00001-UP (MACHINE) POWERED BY 3116 ENGINE »
087-5871
HEATER GP-CAB
330, 330 L AND 330 LN EXCAVATORS 2EL00001-UP (MACHINE) POWERED BY 3306 ENGINE »
087-5871
HEATER GP-CAB
320, 320 L, 320 N AND 320 S EXCAVATORS 3XK00822-UP (MACHINE) POWERED BY 3116 ENGINE »
087-5871
HEATER GP-CAB
375 and 375 L Excavators 6NK00001-UP (MACHINE) POWERED BY 3406 Engine »
087-5871
HEATER & MTG GP-CAB
350 & 350 L Excavators 8HK00001-UP (MACHINE) POWERED BY 3306 Engine »
087-5871
HEATER & MTG GP-CAB
325, 325L TRACK TYPE EXCAVATORS 5WK00001-UP (MACHINE) POWERED BY 3116 ENGINE »
087-5871
HEATER GP
330, 330L TRACK-TYPE EXCAVATORS 6SK00001-UP (MACHINE) POWERED BY 3306 ENGINE »
087-5871
HEATER GP
320, 320L TRACK-TYPE EXCAVATORS 1KL00001-UP (MACHINE) POWERED BY 3066 ENGINE »
087-5871
HEATER GP
320, 320L TRACK-TYPE EXCAVATORS 1TL00001-UP (MACHINE) POWERED BY 3116 ENGINE »
087-5871
HEATER GP
320, 320L TRACK-TYPE EXCAVATORS 2DL00001-00213 (MACHINE) POWERED BY 3066 ENGINE »
087-5871
HEATER GP
320L SUPPLEMENT FOR TRACK-TYPE EXCAVATOR /FELLER BUNCHER PKG./ 9KK00001-UP (MACHINE) »
087-5871
HEATER GP
311 TRACK-TYPE EXCAVATOR 9LJ00001-UP (MACHINE) POWERED BY 3064 ENGINE »
087-5871
HEATER GP
312 TRACK-TYPE EXCAVATOR 6GK00001-UP (MACHINE) POWERED BY 3064 ENGINE »
087-5871
HEATER GP
SUPPLEMENT #14 FOR 320L TRACK-TYPE EXCAVATOR 9KK00001-UP (MACHINE) »
087-5871
HEATER GP
322 322L TRACK-TYPE EXCAVATORS 7WL00001-UP (MACHINE) POWERED BY 3116 ENGINE »
087-5871
HEATER GP
320L SUPPLEMENT FOR TRACK-TYPE EXCAVATOR /FELLER BUNCHER PKG 1/ 9KK01359-UP (MACHINE) »
087-5871
HEATER GP
315 315L TRACK-TYPE EXCAVATOR 4YM00001-UP (MACHINE) POWERED BY 3046 ENGINE »
087-5871
HEATER GP
311 TRACK-TYPE EXCAVATOR 9LJ00262-UP (MACHINE) POWERED BY 3064 ENGINE »
087-5871
HEATER GP
312 TRACK-TYPE EXCAVATOR 6GK00393-UP (MACHINE) POWERED BY 3064 ENGINE »
087-5871
HEATER GP
320, 320L & 320N TRACK-TYPE EXCAVATORS 1XM00001-UP (MACHINE) POWERED BY 3066 ENGINE »
087-5871
HEATER GP
330, 330L TRACK-TYPE EXCAVATORS 8RL00001-UP (MACHINE) POWERED BY 3306 ENGINE »
087-5871
HEATER GP
Caterpillar parts catalog:
Parts heater Caterpillar catalog:
0875870
HEATER GP-CAB
320 L, 325, 325 LN, 330 L
320 L, 325, 325 LN, 330 L
1187421
HEATER & MTG GP-CAB
350, 375, 5080
350, 375, 5080
6C8819
HEATER AR-CAB
350, 375
350, 375
1152040
HEATER AR-CAB
350, 375, 5080
350, 375, 5080
4I1275
HEATER GP
311, 312, 315, 320, 320 L, 320N, 322, 325, 325 L, 325 LN, 330, 330 FM L, 330 L, 350, 375
311, 312, 315, 320, 320 L, 320N, 322, 325, 325 L, 325 LN, 330, 330 FM L, 330 L, 350, 375
7I0261
HEATER GP-CAB
311, 312, 315, 320, 320 L, 320N, 322, 325, 325 L, 330, 330 FM L
311, 312, 315, 320, 320 L, 320N, 322, 325, 325 L, 330, 330 FM L
6C8711
HEATER GP-CAB
320 L, 325 L, 330 L
320 L, 325 L, 330 L
1131190
HEATER GP
320 L, 322 LN, 330 L
320 L, 322 LN, 330 L
1107957
HEATER GP-CAB
320 L, 322 LN, 330 L
320 L, 322 LN, 330 L
1097632
HEATER GP-JACKET WATER
320, 320 L
320, 320 L
5I7746
HEATER AS
311, 311B, 311C, 312, 312B, 312C L, 320 L, 320B, 320C, 320C FM, 320N
311, 311B, 311C, 312, 312B, 312C L, 320 L, 320B, 320C, 320C FM, 320N
1097598
HEATER
320 L
320 L
3W2043
HEATER AR
973
973
7E6250
HEATER GP-JACKET WATER
3126, 3208
3126, 3208
1724446
HEATER GP-JACKET WATER
216, 216B, 216B3, 226B, 226B3, 232B, 242B, 247B, 247B3, 257B, 902
216, 216B, 216B3, 226B, 226B3, 232B, 242B, 247B, 247B3, 257B, 902
3P3583
HEATER GROUP
D7F, D8H, D9G, D9H
D7F, D8H, D9G, D9H
3170098
HEATER GP-JACKET WATER
735, 740
735, 740
7K3688
HEATER AS
920, 930
920, 930
7K2785
HEATER GP
120, 12F, 140, 14E, 16, 215, 225, 235, 245, 814, 815, 816, 950, 966C, 980, 980B
120, 12F, 140, 14E, 16, 215, 225, 235, 245, 814, 815, 816, 950, 966C, 980, 980B
3767024
HEATER GP-JACKET WATER
PL83, PL87
PL83, PL87
8G0960
HEATER AR-CAB
943, 953
943, 953
9W1391
HEATER GP-CAB
120G, 12G, 130G, 140G, 14G, 16G
120G, 12G, 130G, 140G, 14G, 16G