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Technical data


Voltage and current of a solar cell - influence of area and illuminance with ADM3

Article no: P9502100

Principle

Solar cells convert solar energy into electrical energy. The maximum achievable voltage or current determines their possible applications. The maximum voltage of a solar cell is the open circuit voltage U0 at which there is no resistance in the circuit (resistance = ∞). The maximum current is the short-circuit current IK. It is reached when the resistance is zero, i.e. there is only one lead wire ("short circuit") in the circuit. In the experiment, the open-circuit voltage and short-circuit current strength are first examined as a function of the illuminated area of a solar cell. Then the solar cell is moved on the panel to change the light intensity and then these two quantities are also determined.

Benefits

  • Part of a system solution - easily expandable for further experiments
  • Simple teaching by using the demo board physics
  • Clear test execution by using ADM3 multimeters

Learning objectives

  • The students investigate the electrical power and work on energy conversion on a solar cell.
  • The students observe the loss of power on solar cells that heat up.

Scope of delivery

Junction, module DB 09401-10 2
Solar cell (2.5x5)cm,module DB 09470-00 1
Scale for demonstration board 02153-00 1
Clamp on holder 02164-00 1
Cardboards 200x300 mm, black, 10 pieces 06306-01 1
PHYWE Demo Physics board with stand 02150-00 1
Stand rods, stainless steel, various sizes 02033-00 1
Ceramic lamp socket E27, with reflector, switch and security plug 06751-01 1
Filament lamp, 220V/120W, with reflector 06759-93 1
Connecting cable, 32 A, red, various lengths 07361-01 1
Connecting cable, 32 A, blue, various lengths 07361-04 1
Connecting cable, 32 A, yellow, various lengths 07361-02 1
PHYWE Demo Multimeter ADM 3: current, voltage, resistance, temperature 13840-00 2

PHYWE Systeme GmbH & Co. KG
Robert-Bosch-Breite 10 – 37079 Göttingen – Germany
www.phywe.com