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DC convertor

A technology of DC converters and switching devices, applied in the direction of converting DC power input to DC power output, without intermediate conversion to AC conversion equipment, output power conversion devices, etc., can solve the problem of slow load response, reduced conversion efficiency, The dynamic response is not very good, etc., to achieve the effect of good anti-noise ability and small ripple

Active Publication Date: 2014-05-14
CHENGDU MONOLITHIC POWER SYST
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, when the circuit 50 is running, at least three switching tubes are working at the same time, which increases the switching loss and conduction loss, thereby reducing the conversion efficiency
Moreover, when the output needs to be boosted, that is, when the circuit 50 operates in the boost mode, like the traditional boost circuit, its transfer function has a zero point in the right half plane, the dynamic response is not very good, and the load response speed is slow

Method used

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Examples

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no. 1 example

[0030] like Figure 4 Shown is an improved new voltage converter circuit 100 according to the present invention, which is the first embodiment of the present invention. As shown in the figure, the circuit 100 includes an input part, a first switching device S 1 , the second switching device S 2 , the third switching device S 3 , the first capacitance C 1 , the second capacitance C 2 , inductance L 1 and load R L . The first terminal of the input section is connected to the first switching device S 1 The first terminal and the third switching device S 3 The first end of the first switching device S 1 The second terminal is connected to the first capacitor C 1 The first terminal and the second switching device S 2 The first end of the third switching device S 3 The second terminal is connected to the first capacitor C 1 of the second terminal and the inductor L 1 The first terminal, the inductor L 1 The second terminal is connected to the second capacitor C 2 of ...

no. 2 example

[0035] like Figure 5 Shown is an improved novel voltage converter circuit 200 according to the present invention, which is the second embodiment of the present invention. circuit 200 with Figure 4 The same parts use the same reference numerals, as in the first embodiment Figure 4 The difference of the circuit 100 is that the circuit 200 also includes a third switching device S connected to 3 between the second terminal of the fourth switching device S and ground 4 , the fourth switching device S 4 The first terminal of is connected to the third switching device S 3 The second terminal of the fourth switching device S 4 The second end of the ground. Those skilled in the art should realize that the fourth switching device S 4 It may be a switching device such as a diode, a triode, a MOSFET, and an IGBT.

[0036] When the output voltage V O The requirement is between 0~V IN range, it is possible to make the first switching device S 1 and the second switching device ...

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PUM

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Abstract

Power converters and associated methods of operation are disclosed herein. In one embodiment, a power converter includes a first switch and a second switch electrically coupled to the first switch in series. The first switch is electrically coupled to a first node and to a second node via the second switch. The power converter further includes a capacitor and a third switch electrically coupled to the first node and to the second node via the capacitor and the second switch. The third switch has a linear-active region of operation.

Description

technical field [0001] The invention relates to a DC-DC converter, in particular to a non-isolated DC-DC voltage converter. Background technique [0002] Nowadays, in many consumer electronics, communication equipment and computer power supplies, it is often necessary to convert a given voltage, especially in portable communication systems, such as MP3, Bluetooth devices, etc. In these applications, control of output voltage ripple and noise is very important. Although the traditional boost circuit has small output voltage ripple and good anti-noise ability, but because there is a zero point in the right half plane of the transfer function, the dynamic response is not very good, and the load response speed is slow. In the prior art, many circuit topologies have been improved to meet these requirements. Among them, the paper published at the APEC'07 conference - "A Novel Voltage-boosting Converter: KY Converter" (a new type of voltage-boosting converter: KY Converter ) The ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02M3/07
CPCH02M3/158
Inventor 欧阳茜
Owner CHENGDU MONOLITHIC POWER SYST
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