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| Earth Care module PVX Top - for charging the 36/48Volt Battery Array“Power measured in Watts can be determined by multiplying the operational Voltage, typically either 36V or 48V based on your cart battery array, with the Current supplied by the panel in Amps. The Open Circuit Voltage is regulated down by the charge controller to supply the appropriate voltage to your battery array.” |
36 V-PVX TOP
| Watts=Voltage X Amps | |
| Operating Current | 5 85 amps |
| Operating Voltage | 15 V |
| Break Through Technology /Smart Controller Changes 15.5 Volts to 36 or 48 |
48 Volt System Maintained by 56.4 Volts
|
| Constant | 42.3 Volts |
| Nominal Operating Cell Temp | 140°F |
| Cell Technology | Thin Film Amorphous Silicon |
| Overall Dimensions | 38.2″ x 86.1″ |
| Solar Panel Weight | 4.75 lbs. |
Amps, Volts, Watts, Ohms
ohm … watt amp volts?
Watts = Volts x Amps
Watts is a unit of power having the dimensions (energy per unit time):
M L2 / T2 divided by T = M L 2 / T 3
Note: A kilowatt-hour is a 1000 watts times one hour = an energy unit.
Volt is a unit of force (F=ma):
ML / T2
So that Amps have the dimensions:
L / T
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| Earth Care module PVX Top - for charging the 36/48Volt Battery Array“Power measured in Watts can be determined by multiplying the operational Voltage, typically either 36V or 48V based on your cart battery array, with the Current supplied by the panel in Amps. The Open Circuit Voltage is regulated down by the charge controller to supply the appropriate voltage to your battery array.” |
48 V-PVX TOP
| Watts=Voltage X Amps | |
| Operating Current | 5 85 amps |
| Operating Voltage | 15 V |
| Break Through Technology /Smart Controller Changes 15.5 Volts to 36 or 48 |
48 Volt System Maintained by 56.4 Volts
|
| Constant | 56.4 Volts |
| Nominal Operating Cell Temp | 140°F |
| Cell Technology | Thin Film Amorphous Silicon |
| Overall Dimensions | 38.2″ x 86.1″ |
| Solar Panel Weight | 4.75 lbs. |
Amps, Volts, Watts, Ohms
ohm … watt amp volts?
Watts = Volts x Amps
Watts is a unit of power having the dimensions (energy per unit time):
M L2 / T2 divided by T = M L 2 / T 3
Note: A kilowatt-hour is a 1000 watts times one hour = an energy unit.
Volt is a unit of force (F=ma):
ML / T2
So that Amps have the dimensions:
L / T
