Explore Module

Basic Level

From the junction to the circuit: current and voltage

When sunlight illuminates the cell, continuous photon absorption generates a steady supply of electron-hole pairs. The junction's electric field continuously separates these charges, driving electrons toward the N-side and holes toward the P-side.

When metal contacts are attached and connected through an external circuit, electrons flow from the N-side, through the circuit (powering a load), and return to the P-side to recombine with holes. This flow constitutes photovoltaic current.

The voltage produced by a single silicon cell is approximately 0.5–0.6 volts, determined by the bandgap energy and junction characteristics. Current depends on light intensity and cell area: more photons → more electron-hole pairs → higher current.

If a single cell produces only ~0.5V, how do solar panels generate useful voltages?
Multiple cells are connected in series (positive terminal of one to negative terminal of the next) to add voltages. A typical panel contains 60–72 cells in series, producing 30–40 volts under standard conditions.