CN204089593U - A kind of high step-down non-isolation type DC/DC converter - Google Patents

A kind of high step-down non-isolation type DC/DC converter Download PDF

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Publication number
CN204089593U
CN204089593U CN201420557942.5U CN201420557942U CN204089593U CN 204089593 U CN204089593 U CN 204089593U CN 201420557942 U CN201420557942 U CN 201420557942U CN 204089593 U CN204089593 U CN 204089593U
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China
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port
submodule
inductance
pressure unit
switching tube
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Withdrawn - After Issue
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CN201420557942.5U
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邾玢鑫
任路路
杨玉良
黄悦华
谭超
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China Three Gorges University CTGU
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China Three Gorges University CTGU
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Abstract

A kind of high step-down non-isolation type DC/DC converter, comprises inductance L 1, L 2, diode D 1, D 2, switching tube S a, S bwith a pressure unit; Switching tube S a, S bcollector electrode meet input power u simultaneously inpositive pole, wherein switching tube S aemitter connect the first port of pressure unit, switching tube S bemitter connect the second port of pressure unit; 3rd port and the 4th port of pressure unit connect the first inductance L respectively 1one end, the second inductance L 2one end, simultaneously in the 3rd port and first inductance L of pressure unit 1contact place also connect the first diode D 1negative electrode; In the 4th port and second inductance L of pressure unit 2contact place also connect the second diode D 2negative electrode; First inductance L 1the other end, the second inductance L 2the other end meet output filter capacitor C simultaneously opositive pole.The utility model DC/DC converter, not only can realize high decompression transformation, and pressure unit Neutron module number can regulate according to the needs of practical application, applied range.

Description

A kind of high step-down non-isolation type DC/DC converter
Technical field
The utility model relates to a kind of DC-DC converter, is a kind of high step-down non-isolation type DC/DC converter specifically.
Background technology
In prior art, basic Buck buck converter differs larger occasion in application with input and output voltage amplitude, as: the power supply of CPU in computer, underwater vehicle DC power-supply system etc.There will be device voltage, current stress be large, switching loss loss is large, conversion efficiency is low, dv/dt is large, EMI is serious, the problem such as anti-input voltage disturbance ability and bad dynamic performance.Solution common at present has two kinds usually: 1., by means of transformer: as anti exciting converter, single-ended forward converter, half-bridge converter, full-bridge converter etc., but compared with Buck converter, not only topological structure is complicated, cost is higher, and transformer leakage inductance also can cause the problems such as stresses of parts increases, electromagnetic interference is serious; Simultaneously due to isolated DC-DC converter power conversion often, operating efficiency is not high yet.2., utilize coupling inductance: this kind of scheme has the simple advantage of topological structure compared to isolated converter, but due to the existence of leakage inductance, the problems such as stresses of parts is large, electromagnetic interference is serious can be caused equally.
Summary of the invention
For prior art above shortcomings, the utility model solves existing non-isolation type buck converter, and to there is step-down ability in high step-down occasion inadequate, the problems such as operating efficiency and power density are not high, provide a kind of non-isolation type direct-current-DC converter possessing high step-down ability.
Solve the problems of the technologies described above, the utility model adopts following technical scheme:
A kind of high step-down non-isolation type DC/DC converter, comprises inductance L 1, L 2, diode D 1, D 2, switching tube S a, S bwith a pressure unit.Switching tube S a, S bcollector electrode meet input power u simultaneously inpositive pole, wherein switching tube S aemitter connect the first port of pressure unit, switching tube S bemitter connect the second port of pressure unit;
3rd port and the 4th port of pressure unit connect the first inductance L respectively 1one end, the second inductance L 2one end, simultaneously in the 3rd port and first inductance L of pressure unit 1contact place also connect the first diode D 1negative electrode; In the 4th port and second inductance L of pressure unit 2contact place also connect the second diode D 2negative electrode; First inductance L 1the other end, the second inductance L 2the other end meet output filter capacitor C simultaneously opositive pole, output filter capacitor C onegative pole, the first diode D 1, and the second diode D 2anode and input power u innegative pole be connected.
Switching tube S agrid connect controller.
Described pressure unit is made up of multiple submodule, its order of connection is, 3rd port of first submodule is connected with the first port of second submodule, 4th port of first submodule is connected with the second port of second submodule, the like, 3rd port of (n-1)th submodule is connected with the first port of the n-th submodule, and the 4th port of (n-1)th submodule is connected with the Two-port netwerk of the n-th submodule; Meanwhile, the first port of first submodule and the second port are respectively as the first port of pressure unit and the second port, and the 3rd port of the n-th submodule and the 4th port are respectively as the 3rd port of pressure unit and the 4th port.
Described submodule is by two switching tube S 1, S 2with two electric capacity C 1, C 2four port topology formed, wherein below electric capacity C 1one end and lower switch pipe S 1emitter be connected as this submodule the first port 1., electric capacity C 1the other end and upper switch pipe S 2collector electrode be connected node, as this submodule the 3rd port 3., top electric capacity C 2one end and upper switch pipe S 2emitter be connected, as this submodule the second port 2., top electric capacity C 2the other end and lower switch pipe S 1collector electrode be connected, as this submodule the 4th port 4..
The grid of described each power switch connects respective controller respectively.
Its control mode is: odd even time power switch adopts Interleaved control strategy; Difference 180 between the switch drive phase place of i.e. sequence number to be the switch of odd number and sequence number be even number o.
Compared to existing technology, a kind of high step-down non-isolation type DC/DC converter of the utility model, has following beneficial effect:
1), pressure unit that the utility model is carried not only can realize high decompression transformation, and pressure unit Neutron module number can regulate according to the needs of practical application, applied range.
2), the voltage stress of switching device is low, and the voltage stress of all switches, diode is all consistent, is conducive to alternative costs low, the low withstand voltage switching device that switch performance is good.
3), not containing transformer and coupling inductance, EMI characteristic is good.
Accompanying drawing explanation
Fig. 1 is the circuit theory diagrams of the utility model non-isolation type high step-down ratio DC converter embodiment.
Fig. 2 is pressure unit circuit diagram described in the utility model.
Fig. 3 is the submodule topological diagram in pressure unit described in the utility model.
Embodiment
As shown in Figure 1, a kind of high step-down non-isolation type DC/DC converter, is made up of high input voltage power supply and DC/DC reduction voltage circuit; This converter comprises two inductance L 1, L 2, two diode D 1, D 2, two switching tube S a, S bwith a pressure unit.A pressure unit is by 4 switching tube S 1, S 2, S 3, S 4; And 4 electric capacity C 1, C 2, C 3, C 4form.Switching tube S a, S bcollector electrode meet input power u simultaneously inpositive pole, wherein switching tube S aemitter connect the first port of pressure unit 1., switching tube S bemitter connect the second port of pressure unit 2..4. 3rd port the 3. with four port of pressure unit connects the first inductance L respectively 1one end and the second inductance L 2one end, simultaneously in the 3rd port 3. with the first inductance L of pressure unit 1contact place also connect the first diode D 1negative electrode, in the 4th port 4. with the second inductance L of pressure unit 2contact place also connect the second diode D 2negative electrode.First inductance L 1the other end and the second inductance L 2the other end meet output filter capacitor C simultaneously opositive pole, output filter capacitor C onegative pole, the first diode D 1with the second diode D 2anode and input power u innegative pole be connected.
Wherein pressure unit is made up of two submodules, and its order of connection is, 1. 3. the 3rd port of first submodule be connected with the first port of second submodule, and 2. 4. the 4th port of first submodule be connected with the second port of second submodule; Simultaneously, first port 1. with the second port of first submodule 2. respectively as pressure unit the first port 1. with the second port 2., the 3rd port the 3. with four port of second submodule 4. respectively as pressure unit the 3rd port the 3. with four port 4..
Described submodule is by two switching tube S 1, S 2with two electric capacity C 1, C 2four port topology formed, wherein below electric capacity C 1one end and lower switch pipe S 1emitter be connected as this submodule the first port 1., electric capacity C 1the other end and upper switch pipe S 2collector electrode be connected node, as this submodule the 3rd port 3., top electric capacity C 2one end and upper switch pipe S 2emitter be connected, as this submodule the second port 2., top electric capacity C 2the other end and lower switch pipe S 1collector electrode be connected, as this submodule the 4th port 4., as shown in Figure 3.
The grid of each power switch connects respective controller respectively.
A kind of high step-down non-isolation type DC/DC converter of the utility model, has the step-down ratio of 3 times compared to traditional B uck converter.This converter input connects high tension voltage feeder ear, and output voltage is controlled low-voltage DC.
According to the difference of power switch state, circuit can be divided into 3 kinds of operating states:
(1), controller controls power switch S a, S 2, S 4conducting, power switch S b, S 1, S 3turn off, now input power u inby power switch S a, to electric capacity C 1, C 3, inductance L 1and output filter capacitor C ocharging, also powers to load R simultaneously; Electric capacity C 2, C 4by power switch S 2and diode D 2, to electric capacity C 3, inductance L 1and output filter capacitor C ocharging, also powers to load R simultaneously; Electric capacity C 4by power switch S 4and diode D 2, to inductance L 1and output filter capacitor C ocharging, also powers to load R simultaneously; Inductance L 2by diode D 2afterflow, simultaneously to output filter capacitor C opower with load R; In this process, electric capacity C 1, C 3and inductance L 1be in charged state, electric capacity C 2, C 4and inductance L 2be in discharge condition, diode D 1be in off state.
(2) controller controls power switch S b, S 1, S 3conducting, power switch S a, S 2, S 4turn off, now input power u inby power switch S b, to electric capacity C 2, C 4, inductance L 2and output filter capacitor C ocharging, also powers to load R simultaneously; Electric capacity C 1, C 3by power switch S 1and diode D 1, to electric capacity C 4, inductance L 2and output filter capacitor C ocharging, also powers to load R simultaneously; Electric capacity C 3by power switch S 3and diode D 1, to inductance L 2and output filter capacitor C ocharging, also powers to load R simultaneously; Inductance L 1by diode D 1afterflow, simultaneously to output filter capacitor C opower with load R; In this process, electric capacity C 2, C 4and inductance L 2be in charged state, electric capacity C 1, C 3and inductance L 1be in discharge condition, diode D 2be in off state.
(3), power switch all turns off, now inductance L 1by diode D 1afterflow, inductance L 2by diode D 2afterflow, and simultaneously to output filter capacitor C opower with load R; Power switch S a, S b, S 1, S 2, S 3, S 4all turn off, input power and electric capacity C 1, C 2, C 3, C 4on all do not have electric current to flow through.
In embodiment of the present utility model, the device of different voltage stress selected by power switch and diode according to the quantity of submodule in the input voltage in real system and pressure unit, compare traditional scheme and have the low feature of voltage stress.
The power switch that the utility model uses is switching device, the open and close of power switch are under control of the controller, above-mentioned have 3 times to the DC converter of traditional B uck converter step-down ability, control odd even time power switch by controller and adopt Interleaved control strategy, be i.e. difference 180 between the switch drive phase place of sequence number to be the switch of odd number and sequence number be even number o, wherein switching tube S acontrol signal consistent with the control signal of even switch, switching tube S bcontrol signal consistent with the control signal of odd switch, duty ratio size determines according to input/output relation.
In sum, this circuit step-down ability is strong, and switching device voltage stress is low, is applicable to being applied to the larger application scenario of some input and output voltage differences.This take only IGBT as example again, also can select other wholly-controled device.
Above-mentioned enforcement example of the present utility model is only for the utility model example is described, and is not the restriction to execution mode of the present utility model.For those of ordinary skill in the field, other multi-form change and variations can also be made on the basis of the above description.Here cannot give exhaustive to all execution modes.Every belong to the technical solution of the utility model the apparent change of amplifying out or variation be still in the row of protection range of the present utility model.

Claims (4)

1. a high step-down non-isolation type DC/DC converter, comprises inductance L 1, L 2, diode D 1, D 2, switching tube S a, S bwith a pressure unit; It is characterized in that, switching tube S a, S bcollector electrode meet input power u simultaneously inpositive pole, wherein switching tube S aemitter connect the first port of pressure unit, switching tube S bemitter connect the second port of pressure unit;
3rd port and the 4th port of pressure unit connect the first inductance L respectively 1one end, the second inductance L 2one end, simultaneously in the 3rd port and first inductance L of pressure unit 1contact place also connect the first diode D 1negative electrode; In the 4th port and second inductance L of pressure unit 2contact place also connect the second diode D 2negative electrode; First inductance L 1the other end, the second inductance L 2the other end meet output filter capacitor C simultaneously opositive pole, output filter capacitor C onegative pole, the first diode D 1, and the second diode D 2anode and input power u innegative pole be connected;
Switching tube S agrid connect controller.
2. a kind of high step-down non-isolation type DC/DC converter according to claim 1, it is characterized in that, pressure unit is made up of multiple submodule, its order of connection is, 3rd port of first submodule is connected with the first port of second submodule, 4th port of first submodule is connected with the second port of second submodule, the like, 3rd port of (n-1)th submodule is connected with the first port of the n-th submodule, and the 4th port of (n-1)th submodule is connected with the Two-port netwerk of the n-th submodule; Meanwhile, the first port of first submodule and the second port are respectively as the first port of pressure unit and the second port, and the 3rd port of the n-th submodule and the 4th port are respectively as the 3rd port of pressure unit and the 4th port.
3. a kind of high step-down non-isolation type DC/DC converter according to claim 1 or 2, it is characterized in that, described submodule is by two switching tube S 1, S 2with two electric capacity C 1, C 2four port topology formed, wherein below electric capacity C 1one end and lower switch pipe S 1emitter be connected as first port (1.) of this submodule, electric capacity C 1the other end and upper switch pipe S 2the node that collector electrode is connected, as the 3rd port (3.) of this submodule, top electric capacity C 2one end and upper switch pipe S 2emitter be connected, as second port (2.) of this submodule, top electric capacity C 2the other end and lower switch pipe S 1collector electrode be connected, as the 4th port (4.) of this submodule.
4. a kind of high step-down non-isolation type DC/DC converter according to claim 3, it is characterized in that, the grid of switching tube connects respective controller respectively.
CN201420557942.5U 2014-09-26 2014-09-26 A kind of high step-down non-isolation type DC/DC converter Withdrawn - After Issue CN204089593U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110165892A (en) * 2019-06-14 2019-08-23 上海南芯半导体科技有限公司 A kind of mixing capacitor and inductor step-down conversion circuit and implementation method
CN111509980A (en) * 2019-01-31 2020-08-07 台达电子工业股份有限公司 Power converter

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111509980A (en) * 2019-01-31 2020-08-07 台达电子工业股份有限公司 Power converter
CN111509980B (en) * 2019-01-31 2021-04-13 台达电子工业股份有限公司 Power converter
US11088611B2 (en) 2019-01-31 2021-08-10 Delta Electronics, Inc. Power converter
CN110165892A (en) * 2019-06-14 2019-08-23 上海南芯半导体科技有限公司 A kind of mixing capacitor and inductor step-down conversion circuit and implementation method

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20150107

Effective date of abandoning: 20160615

C25 Abandonment of patent right or utility model to avoid double patenting