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Bipolar aluminum electrolytic capacitors (also called Non-Polarized capacitors) contain two anodized aluminium foils, behaving like two capacitors connected in series opposition. Electrolytic capacitors for special applications include motor start capacitors, [22] flashlight capacitors [23] and audio frequency capacitors. [24] Schematic ...
However, a polarized tantalum or electrolytic capacitor may be used in some cases, [2] because the potential (voltage) across capacitor C1 will not change unless the switch is closed long enough for a half cycle of resonance with inductor L2, and by this time the current in inductor L1 could be quite large.
Capacitor-run induction motors have a permanently connected phase-shifting capacitor in series with a second winding. The motor is much like a two-phase induction motor. Motor-starting capacitors are typically non-polarized electrolytic types, while running capacitors are conventional paper or plastic film dielectric types.
To start the motor, a secondary winding is used in series with a non-polarized starting capacitor to introduce a lag in the sinusoidal current through the starting winding. When the secondary winding is placed at an angle with respect to the primary winding, a rotating electric field is created.
Non-polar or bipolar tantalum capacitors are made by effectively connecting two polarized capacitors in series, with the anodes oriented in opposite directions. Tantalum electrolytic capacitors are extensively used in electronic devices that require stable capacitance , low leakage current , and where reliability is crucial. [ 1 ]
Start capacitors usually have ratings above 70 μF, with four major voltage classifications: 125 V, 165 V, 250 V, and 330 V. [1] Start capacitors above 20 μF are always non-polarized aluminium electrolytic capacitors [6] with non solid electrolyte and therefore they are only applicable for the short motor starting time.