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Phase-shifted full-bridge converter light load control method

A technology of phase-shifting full bridge and control method, which is applied in the direction of output power conversion devices and electrical components, and can solve problems such as no energy resonance

Active Publication Date: 2015-04-29
CHICONY POWER TECH CO LTD
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0006] In addition, there are the following two situations in the light-load control operation of the existing phase-shifted full-bridge converter: 1. When the output inductor current is in continuous conduction mode (CCM), due to the current value of the two resonance points Very small, so there is not enough energy to resonate; 2. When the output inductor current is in discontinuous conduction mode (DCM), since the current value of the two resonance points is zero, there is no energy resonance

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  • Phase-shifted full-bridge converter light load control method
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  • Phase-shifted full-bridge converter light load control method

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Embodiment Construction

[0047] Hereby, the technical content and detailed description of the present invention are described as follows in conjunction with the accompanying drawings:

[0048] See figure 1 It is a circuit diagram of a phase-shifted full-bridge converter of the present invention. The phase-shifted full-bridge converter is electrically connected to a DC input voltage Vin, so as to transmit the energy provided by the DC input voltage Vin to a load R supplied by the rear end. L . The phase-shifted full-bridge converter mainly includes a full-bridge switching circuit 10 , a transformer 20 , a synchronous rectification circuit 30 and a filter circuit 40 .

[0049] The full-bridge switching circuit 10 includes four power switching elements, namely a first power switching element Q1, a second power switching element Q2, a third power switching element Q3 and a fourth power switching element Q4, It is used to switch the DC input voltage Vin into a square wave voltage. Wherein, each power s...

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Abstract

The invention provides a phase-shifted full-bridge converter light load control method. According to the phase-shifted full-bridge converter light load control method, a control mode of a phase-shifted full-bridge converter is switched by detecting magnetization current magnitude of a transformer of the phase-shifted full-bridge converter. The phase-shifted full-bridge converter light load control method comprises the following steps: firstly, when the magnetization current of the transformer is larger, operating the phase-shifted full-bridge converter to be in an extended phase-shifted full-bridge control mode; secondly, when the magnetization current continues to decrease till the charge loaded by residual magnetization current is close to or less than half of a direct current input voltage, operating the phase-shifted full-bridge converter to be in a modified phase-shifted full-bridge control mode; lastly, allowing the phase-shifted full-bridge converter to achieve the greatest soft driving when the operation is under the modified phase-shifted full-bridge control mode. According to the method, the greatest soft driving of a switch element is realized, the overall efficiency is improved, the heating loss is reduced, and electromagnetic compatibility is realized.

Description

technical field [0001] The invention relates to a control method of a phase-shifting full-bridge converter, in particular to a light-load control method of a phase-shifting full-bridge converter. Background technique [0002] Due to the increasingly vigorous development of semiconductor technology, many electronic products are developing towards the trend of being light, thin, short and small. With the development of power electronic products in recent years, in order to effectively reduce the volume and weight of switching power converters, the switching frequency of the converters has been continuously increased. However, once the switching frequency increases, the power switching elements of the power converter must bear greater switching stress and switching loss during switching, thereby reducing the conversion efficiency of the switching power converter. . [0003] Generally, switching power converters adopt traditional hard switching. If the operating frequency incr...

Claims

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Application Information

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IPC IPC(8): H02M1/08
CPCH02M1/088
Inventor 吴臻员梁添祥
Owner CHICONY POWER TECH CO LTD
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