Abstract:
An AC-AC power source conversion device, comprising a rectifier circuit (10), an active power factor correction circuit (20), an automatic charge pumping circuit (30) and an inverter circuit (40), wherein the rectifier circuit is connected to an AC power source (100), receives the electric energy therefrom, and then converts the same into the DC electric energy for output; the active power factor correction circuit is connected to the rectifier circuit, receives the electric energy therefrom, and outputs the same after promoting a power factor; the automatic charging pumping circuit is connected to the active power factor correction circuit, receives the electric energy therefrom, and then adjusts and outputs same; and the inverter circuit is connected to the automatic charge pumping circuit and a load (200), receives the electric energy therefrom, converts same into the AC electric energy, and then outputs same to the load.
Abstract:
An AC-AC voltage transformation device is provide, which includes: a first diode (D1), its positive electrode connects to one end of a (AC) power source; a second diode (D2), its negative electrode connects to the joint of D1 and the power source; a third diode (D3), its positive electrode connects to the other end of the power source; a fourth diode (D4), its negative electrode connects to the joint of D3 and the power source, and its positive electrode connects to the positive electrode of D2; a transformer (10), its primary side has a first coil (N1) and a second coil (N2), wherein N1 connects to the negative electrode of D1, and N2 connects to the negative electrode of D3, and its secondary side connects to a load; an electrode switch (SW), one end thereof connects to the joint of D2 and D4, and the other end thereof connects to the joint of N1 and N2.
Abstract:
A power conversion device is provided, which includes a first inductor (L1), switch assembly (20), diode (D), first capacitor (C1), second inductor (L2) and a second capacitor (C2). One end of the first capacitor is connected to the positive terminal (12) of a DC power source (300). One end of the switch assembly is connected to the other end of the first inductor, and the other end is connected to the negative terminal (14) of the DC power source. The positive electrode of the diode is connected to the switch assembly. One end of the first capacitor is connected to the negative electrode of the diode. The second inductor is connected in parallel with the first capacitor. The second capacitor is connected in parallel with a load (200), one end of the capacitor is connected to the second inductor, and the other end is connected to the negative terminal.
Abstract:
An isolated AC-DC conversion device is provided, which include a rectifier circuit (10), an active power factor correction circuit (20), an isolated transformer (30) and an automatic charge pump circuit (40). The rectifier circuit is connected to an AC power source (100) to receive electrical energy outputted from the AC power source, convert the electrical energy to DC electrical energy and output the DC electrical energy. The active power factor correction circuit is connected to the output terminal of the rectifier circuit to receive the DC electrical energy outputted by the rectifier circuit, increase the power factor, and then output the DC electrical energy. The primary side of the isolation transformer is connected to the active power factor correction circuit. One side of the automatic charge pump circuit is electrically connected to the secondary side of the isolation transformer, and the other side is connected to a load (200).
Abstract:
A power conversion apparatus, which converts power of a DC power supply and provides it to a plurality of loadings, includes a transformer, an electronic switch, a leakage energy recycling circuit, and a plurality of output circuits. The transformer has a plurality of primary windings, which receives the power, and a plurality of secondary windings, which outputs the converted power. One end of the electronic switch is electrically connected to the primary windings; the other end thereof is electrically connected to the DC power supply. The leakage energy recycling circuit is electrically connected to the primary windings, and repeatedly and alternatively outputs the powers of positive and negative voltage. The circuit receives and stores leakage energy of the transformer, and feedbacks it to the transformer. The output circuits are electrically connected to the secondary windings to receive the converted power and to provide it to the loadings.