DK200300266A - Switch mode power supply has voltage source whose voltage is dependent on voltage of current source - Google Patents

Switch mode power supply has voltage source whose voltage is dependent on voltage of current source Download PDF

Info

Publication number
DK200300266A
DK200300266A DK200300266A DKPA200300266A DK200300266A DK 200300266 A DK200300266 A DK 200300266A DK 200300266 A DK200300266 A DK 200300266A DK PA200300266 A DKPA200300266 A DK PA200300266A DK 200300266 A DK200300266 A DK 200300266A
Authority
DK
Denmark
Prior art keywords
voltage
electronic switching
switching element
power supply
mode power
Prior art date
Application number
DK200300266A
Other languages
Danish (da)
Inventor
Petersen Lars
Original Assignee
Univ Danmarks Tekniske
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Univ Danmarks Tekniske filed Critical Univ Danmarks Tekniske
Priority to DK200300266A priority Critical patent/DK200300266A/en
Priority to AU2003257400A priority patent/AU2003257400A1/en
Priority to PCT/DK2003/000557 priority patent/WO2004075385A1/en
Priority to EP03815943A priority patent/EP1597814A1/en
Priority to US10/546,067 priority patent/US20070035282A1/en
Publication of DK200300266A publication Critical patent/DK200300266A/en

Links

Classifications

    • Y02B70/126

Landscapes

  • Dc-Dc Converters (AREA)

Abstract

The switch mode power supply has a voltage source (E1) provided in a boost converter between an input (V3) and an output (V4) and a current source (E2) provided across the input. The voltage of the voltage source corresponds to the voltage of the current source scaled with a fixed ratio or a ratio varying with time. - An INDEPENDENT CLAIM is included for a method of controlling the switch mode power supply.

Description

PATENTKRAV 1. Switch-mode strømforsyning, som har en indgang (V3), en udgang (V4) og et mellemliggende kredsløb, kendetegnet ved, at der i det mellemliggende kredsløb mellem indgangen (V3) og udgangen (V4) er indskudt en spændingskilde (E,), og at der er indsat en strømkilde (E2) over indgangen (V3), idet spændingskildens (E,) spænding afhænger af strømkildens (E2) spænding. 2. Switch-mode strømforsyning ifølge krav 1, kendetegnet ved, at spændingskildens (E|) spænding enten svarer til strømkildens (E2) spænding skaleret med et fast forhold, eller et i tid varierende forhold. 3. Switch-mode strømforsyning ifølge krav 1 eller 2, kendetegnet ved, at spændingskilden (Ei) omfatter en vikling (Wi), hvis ene ende er forbundet i serie med et elektronisk afbryderelements (S5) indgang, samt en vikling (W2), hvis ene ende er forbundet i serie med et yderligere elektronisk afbryderelements (S6) indgang, idet de to elektroniske afbryderelementers (S5, S6) udgang er forbundet indbyrdes, og de to viklingers (W|, W2) andre ender er forbundet indbyrdes, hvor de to viklinger er placeret på den samme kerne (φ), og hvor spændingskildens (E,) spænding fremkommer mellem de to viklingers (W,, W2) andre ender og de to elektroniske afbryderelementers (S5, S6) udgang. 4. Switch-mode strømforsyning ifølge krav 1 eller 2, kendetegnet ved, at spændingskilden (E,) omfatter et første elektronisk afbryderelement (S7), hvis udgang er forbundet med et andet elektronisk afbryderelements (Sg) indgang, og hvor spændingskilden (E|) yderligere omfatter et tredje elektronisk afbryderelement (S9), hvis udgang er forbundet med et fjerde elektronisk afbryderelements (Si0) indgang, hvor det første elektroniske afbryderelements (S7) indgang er forbundet med det tredje elektroniske afbryderelements (S9) indgang, hvor det andet elektroniske afbryderelements (S8) udgang er forbundet med det fjerde elektroniske afbryderelements (Si0) udgang, og hvor en vikling (W4) er indskudt mellem det andet elektroniske afbryderelements (S7) indgang og det andet elektroniske afbryderelements (S9) indgang, og hvor spændingskildens (E,) spænding fremkommer mellem det første elektroniske afbryderelements (S7) indgang og det andet elektroniske afbryderelements (Sg) udgang. 5. Switch-mode strømforsyning ifølge krav 1 eller 2, kendetegnet ved, at spændingskilden (Ej) omfatter en første diode (Du), hvis katode er forbundet med et første elektronisk afbryderelements (Sn) indgang, hvor spændingskilden (E]) yderligere omfatter en anden diode, hvis katode er forbundet med et andet elektronisk afbryderelements (Sl2) indgang, hvor de elektroniske afbryderelementers (Sn, S|2) udgange er forbundet med hinanden, at en vikling (W7) er forbundet mellem diodemes (DM, D12) anoder, at spændingskildens (E,) spænding fremkommer mellem de elektroniske afbryderelementers (Sn, Si2) udgange og enten den første diodes (D,,) anode eller den anden diodes (D12) anode, og hvor de elektroniske afbryderelementers (Su, S12) udgange er forbundet med udgangens (V4) positive pol, at den første diodes (D, j) anode er forbundet med en første induktors (L2) ene side og et elektronisk afbryderelements (S,3) indgang, at den anden diodes (D12) anode er forbundet med en anden induktors (L3) ene side og et elektronisk afbryderelements (S!4) indgang, at det to induktorers (L2, L3) andre sider er forbundet med hinanden og med indgangens (V3) positive pol, og at de elektroniske afbryderelementers (S13, Su) andre sider er forbundet med hinanden og med indgangens (V3) og udgangens (V4) negative poler. 6. Switch-mode strømforsyning ifølge krav 1 eller 2, kendetegnet ved, at spændingskilden (E|) omfatter en første og en anden underspændingskilde (E3 og E4), at den første underspændingskilde (E3) omfatter en første vikling (W8), hvis ene ende er forbundet med et elektronisk afbryderelements (S15) ene side, og at underspændingskilden (E3) yderligere omfatter en anden vikling (W9), hvis ene ende er forbundet med et andet elektronisk afbryderelements (S|6) ene side, at de elektroniske afbryderelementers (S15 og S16) andre sider er forbundet med hinanden, at viklingernes (Wg, W9) andre ender er forbundet med hinanden, at viklingernes (Wg, W9) priknotation er modsat, at den anden underspændings kilde omfatter en første vikling (W10), hvis ene side er forbundet med et elektronisk afbryderelements (S|7) ene side, at den anden underspændingskilde (E4) yderligere omfatter en anden vikling (W,,), hvis ene ende er forbundet med et andet elektronisk afbryderelements (Sl3) ene side, at de elektroniske afbryderelementers (S17, Si8) andre sider er forbundet med hinanden, at viklingernes (W|0, W,,) andre ender er forbundet med hinanden, at viklingernes (W]0, W,,) priknotation er modsat, at den første underspændingskildes (E3) ene side er forbundetmed en diodes (D13) anode, at den anden underspændingskildes (E4) ene side er forbundet med en diodes (D,4) anode, at diodemes (D,3, D14) katoder er forbundet med hinanden og med udgangens (V4) positive pol, at den første underspændingskildes (E3) anden side er forbundet med en induktors (L4) ene side og et elektronisk afbryderelements (Sn) ene side, at den anden underspændingskildes (E4) anden side er forbundet med en induktors (L5) ene side og et elektronisk afbryderelements (S14) ene side, og at de elektroniske afbryderelementers (S13, S14) anden side er forbundet med hinanden og med udgangens (V4) negative pol. 7. Switch-mode strømforsyning ifølge krav 1 eller 2, kendetegnet ved, at spændingskilden (E,) omfatter en første og en anden underspændingskilde (E3, E4), at den første underspændingskilde (E3) omfatter et første elektronisk afbryderelement (S19), hvis ene side er forbundet med et andet elektronisk afbryderelements (S2o) ene side, at den første underspændingskilde (E3) omfatter et tredje elektronisk afbryderelement (S21), hvis ene side er forbundet med et fjerde elektronisk afbryderelements (S22) ene side, at det første og det tredje elektroniske afbryderelements (Si9, S2[) andre sider er forbundet med hinanden og med en induktors (L4) ene side og et elektronisk afbryderelements (S13) ene side, at det andet og det fjerde elektroniske afbryderelements (S20, S22) andre sider er forbundet med hinanden og med en diodes (D|j) anode, at en vikling (W12) er forbundet mellem forbindelsespunktet mellem det første elektroniske afbryderelement (S]9) og det andet elektroniske afbryderelement (S20) og forbindelsespunktet mellem det tredje elektroniske afbryderelement (S2!) og det fjerde elektroniske afbryderelement (S22), at den anden underspændingskilde (E4) omfatter et første elektronisk afbryderelement (S23), hvis ene side er forbundet med et elektronisk afbryderelements (S24) ene side, at den anden under spændingskilde (E4) ydermere omfatter et elektronisk afbryderelement (S25), hvis ene side er forbundet med et elektronisk afbryderelements (S26) ene side, at det første og det tredje elektroniske afbryderelements (S23, S2J) andre sider er forbundet med hinanden med en induktors (L5) ene side og med et afbryderelements (S14) ene side, at det andet og det fjerde elektroniske afbryderelement (S24, S26) er forbundet med hinanden og med en diodes (D]é) anode, at diodernes (D|5, Dj6) katoder er forbundet med hinanden og med udgangens (V4) positive pol, og at de elektroniske afbryderelementers (S13, Su) andre sider er forbundet med hinanden og med udgangens (V4) negative pol. 8. Switch-mode strømforsyning ifølge krav 6 eller 7, kendetegnet ved, at induktoreme (L4, L5) er placeret på samme kerne. 9. Switch-mode strømforsyning ifølge krav 1 eller 2, kendetegnet ved, at strømkilden (E2) omfatter en første og en anden diode (D5, D6), som er indbyrdes forbundet i serie, hvor den første diodes (D5) katode er forbundet med udgangens (V4) positive pol, og den anden diodes (D6) anode er forbundet med udgangens (V4) negative pol, hvor strømkilden (E2) yderligere omfatter en tredje og en fjerde diode (D7, D8) indbyrdes forbundet i serie og forbundet parallelt med den første og den anden diode (D5, D6), med den tredje diodes (D7) katode forbundet med den første diodes (D5) katode og den fjerde diodes (D8) anode forbundet med den anden diodes (D6) anode, og hvor en vikling (W3) er indskudt mellem den første diodes (D5) anode og den tredje diodes (D7) anode. 10. Switch-mode strømforsyning ifølge krav 1 eller 2, kendetegnet ved, at strømkilden (E2) omfatter en første diode (D9), hvis anode er forbundet med en første viklings (W5) ene ende og en anden diode (D10), hvis anode er forbundet med en anden viklings (W6) ene ende, hvor de to dioders (D9, D10) katoder er indbyrdes forbundet og forbundet med udgangens (V4) positive pol, hvor de to viklingers (W5, W6) andre ender er indbyrdes forbundet med hinanden og med udgangens (V4) negative pol. 11. Switch-mode strømforsyning ifølge et af kravene 1 til 10, kendetegnet ved, at switch-mode strømforsyningens induktorer (Li, L2, L3, L4, Ls) er placeret på den samme kerne som den styrede spændingskildes (E)) og strømkildens (E2) viklinger (W3, W4, W5, W6, Wv, W" W* W10, W," W12, W,3, W14, W15). 12. Switch-mode strømforsyning ifølge krav 1 eller 2, kendetegnet ved, at strømkilden (E2) er forbundet fra udgangens (V4) negative pol og til forbindelsespunktet mellem spændingskilden (E|) og diodens (D,) anode. 13. Switch-mode strømforsyning ifølge krav 12, kendetegnet ved, at den styrede spændingskilde (E,) og strømkilden (E2) omfatter et første elektronisk afbryderelement (S27), som er forbundet med en første viklings (W,4) ene ende, at den styrede spændingskilde (E|) og strømkilden (E2) omfatter et andet elektronisk afbryderelement (S28), som er forbundet med en anden viklings (W,5) ene ende, at de elektroniske afbryderelementers (S27, S2S) andre ender er forbundet med hinanden og med forbindelsespunktet mellem induktoren (L,) og det elektroniske afbryderelement (S,), at den første og den anden viklings (W14, Wl5) andre ender er forbundet med hinanden og med diodens (D,) anode, at den første og den anden viklings (W)4, WJ5) priknotation er modsat, at en første diodes (D,7) katode er forbundet med forbindelsespunktet mellem det første elektroniske afbryderelement (S27) og den første vikling (Wi4), at en anden diodes (D18) katode er forbundet med forbindelsespunktet mellem det andet elektroniske afbryderelement (S28) og den anden vikling (W1S), at den første og den anden diodes (D17, D18) anoder er forbundet med hinanden og med udgangens (V4) negative pol. 14. Switch-mode strømforsyning ifølge krav 12, kendetegnet ved, at en induktors (L,) ene side er forbundet med indgangens (V3) positive pol, at induktorens (L]) anden side er forbundet med henholdsvis et første elektronisk afbryderelements (S|) indgang, et andet elektronisk afbryderelements (S29) indgang og en første kapacitets (C3) ene side, at det andet elektroniske afbryderelements (S29) udgang er forbundet med henholdsvis en første diodes (D20) katode, en anden diodes (Di) anode og en anden induktors (L6) ene side, at den anden induktors (L6) anden side er forbundet med henholdsvis den første kapacitets (C3) anden side og en tredje diodes (D19) anode, at den tredje diodes (D19) katode er forbundet med henholdsvis den anden diodes (D,) katode, en anden kapacitets (C2) ene side og udgangens (V4) positive pol, og at indgangens (V3) negative pol er forbundet med henholdsvis et første elektronisk afbryderelements (S,) udgang, den første diodes (D20) anode, den anden kapacitets (C2) anden side og udgangens (V4) negative pol, og hvor spændingskilden (Et) og strømkilden (E2) udgøres af den første kapacitet (C3), det andet elektroniske afbryderelement (S29), den første diode (D20) og den anden induktor (L6). 15. Switch-mode strømforsyning ifølge ethvert af de foregående krav, kendetegnet ved, at en induktors (L7) ene side er forbundet med en diodes (D30) anode, at induktorens (L7) anden side er forbundet med udgangens (V4) negative pol, at diodens (D30) katode er forbundet med udgangens (V4) positive pol, at induktoren (L7) er vundet på samme kerne som induktoren (L,), og at induktorens (L7) priknotation er den samme som induktoren (L,). 16. Switch-mode strømforsyning ifølge ethvert af de foregående krav, kendetegnet ved, at de elektroniske afbryderelementer, dioder og spændinger har den modsatte polaritet. 17. Fremgangsmåde til styring af en switch-mode strømforsyning ifølge ethvert af de foregående krav, kendetegnet ved, at når forhold mellem indgangsspændingen (V3) og udgangsspændingen (V4) er passende til at sikre switch-mode strømforsyningstypens funktion, er spændingskildens (E2) elektroniske afbryderelementer (S5, S6, S7, S8, S9, Si0, S,i, S12, S i3, S14, S is, S i6, S]7, Sig, S|9, S2o, S2" S22, S23, S24, S25, S26, S27, S2g, S29) tændte, hvorved spændingskildens (Ei) spænding er tilnærmelsesvis nul, mens hvis forholdet mellem indgangsspændingen (V3) og udgangsspændingen (V4) er utilstrækkelig eller uhensigtsmæssig for switch-mode strømforsyningstypens funktion, tændes og slukkes de elektroniske afbryderelementer (S3, S6, S7, Sg, S9, Sio, S] i, Si2, S]3, Si4, Su, Sis, S|7, Sig, S]9) S20, S21, S22, S23, S24, S25, S26, S27, S28, S29) sådan, at spændingen over spændingskilden (E,), set fra switch-mode strømforsyningens indgangsside, lægges til eller trækkes ffa ud gangsspændingen (V4), sådan at det tilsyneladende forhold mellem indgangsspændingen (V3) og udgangsspændingen (V4) kan sikre switch-mode strømforsyningens funktion.PATENT REQUIREMENT 1. Switch-mode power supply having an input (V3), an output (V4) and an intermediate circuit, characterized in that a voltage source is inserted into the intermediate circuit between the input (V3) and the output (V4). E,), and a current source (E2) is inserted above the input (V3), the voltage of the power source (E,) depending on the voltage of the power source (E2). Switch-mode power supply according to claim 1, characterized in that the voltage of the voltage source (E |) either corresponds to the voltage of the power source (E2) scaled with a fixed ratio, or a time-varying ratio. Switch-mode power supply according to claim 1 or 2, characterized in that the voltage source (Ei) comprises a winding (Wi), one end of which is connected in series with an electronic switching element (S5) input, and a winding (W2), one end of which is connected in series with the input of a further electronic switching element (S6), the output of the two electronic switching elements (S5, S6) being interconnected and the other ends of the two winding (W |, W2) two windings are located on the same core (φ) and where the voltage of the voltage source (E,) arises between the other ends of the two windings (W1, W2) and the output of the two electronic switching elements (S5, S6). Switch-mode power supply according to claim 1 or 2, characterized in that the voltage source (E,) comprises a first electronic switching element (S7), the output of which is connected to the input of a second electronic switching element (Sg), and wherein the voltage source (E | ) further comprises a third electronic switching element (S9), the output of which is connected to the input of a fourth electronic switching element (Si0), the input of the first electronic switching element (S7) being connected to the input of the third electronic switching element (S9), wherein the second electronic switching output (S8) output is connected to the output of the fourth electronic switching element (Si0) and a winding (W4) is interposed between the input of the second electronic switching element (S7) and the input of the other electronic switching element (S9), and where the voltage source (E ,) voltage arises between the input of the first electronic switching element (S7) and the output of the second electronic switching element (Sg). Switch-mode power supply according to claim 1 or 2, characterized in that the voltage source (Ej) comprises a first diode (Du), the cathode of which is connected to an input of a first electronic switching element (Sn), the voltage source (E] further comprising a second diode whose cathode is connected to the input of another electronic switching element (S1) where the outputs of the electronic switching elements (Sn, S | 2) are interconnected, that a winding (W7) is connected between the diodes (DM, D12) anodes that the voltage of the voltage source (E,) arises between the outputs of the electronic switching elements (Sn, Si2) and either the anode of the first diode (D ,,) or the second diode (D12), and wherein the electronic switching elements (Su, S12) outputs are connected to the positive pole of the output (V4), that the anode of the first diode (D, j) is connected to one side of a first inductor (L2) and the input of an electronic switching element (S, 3) that the second diode (D12) anode is associated with another inductor rs (L3) one side and the input of an electronic switching element (S! 4), that the other sides of the two inductors (L2, L3) are connected to each other and to the positive pole of the input (V3), and that the electronic switching elements (S13, Su ) other sides are connected to each other and to the negative poles of the input (V3) and the output (V4). Switch-mode power supply according to claim 1 or 2, characterized in that the voltage source (E |) comprises a first and a second voltage source (E3 and E4), said first voltage source (E3) comprising a first winding (W8) if one end is connected to one side of an electronic switching element (S15) and the undervoltage source (E3) further comprises another winding (W9), one end of which is connected to another electronic switching element (S | 6) that the electronic the other sides of the switching elements (S15 and S16) are interconnected, the other ends of the windings (Wg, W9) are interconnected, the dot notation of the windings (Wg, W9) is opposite to the fact that the source of the second undervoltage comprises a first winding (W10) , one side of which is connected to one electronic switching element (S | 7), the other undervoltage source (E4) further comprising another winding (W1), one end of which is connected to another electronic switching element (S1) side that the other sides of the electronic switching elements (S17, Si8) are interconnected, the other ends of the windings (W | 0, W ,,) are interconnected, the dot notation of the windings (W] 0, W ,, one side of the first voltage source (E3) is connected to the anode of a diode (D13), the one side of the second voltage source (E4) is connected to the anode of a diode (D, 4), the cathodes of the diode (D, 3, D14) are connected to each other and with the positive pole of the output (V4) that the other side of the first voltage source (E3) is connected to one side of an inductor (L4) and one side of an electronic switching element (Sn) that the other side of the second voltage source (E4) is connected with one side of an inductor (L5) and one side of an electronic switching element (S14) and the other side of the electronic switching elements (S13, S14) being connected to each other and to the negative pole of the output (V4). Switch-mode power supply according to claim 1 or 2, characterized in that the voltage source (E1) comprises a first and a second voltage source (E3, E4), the first voltage source (E3) comprises a first electronic switching element (S19), if one side is connected to another electronic switching element (S2o) one side, the first undervoltage source (E3) comprises a third electronic switching element (S21), one side of which is connected to one fourth electronic switching element (S22), first and third electronic switching elements (Si9, S2 [) other sides are connected to each other and to one side of an inductor (L4) and to one electronic switching element (S13) that the second and fourth electronic switching elements (S20, S22) other sides are connected to each other and to an anode (D | j) anode, a winding (W12) is connected between the point of connection between the first electronic switching element (S] 9) and the second electronic switch element (S20) and the connection point between the third electronic switching element (S2!) and the fourth electronic switching element (S22), the second voltage source (E4) comprising a first electronic switching element (S23), one side of which is connected to an electronic switching element (S2). S24) one side, that the other under voltage source (E4) further comprises an electronic switching element (S25), one side of which is connected to one side of an electronic switching element (S26), that the first and third electronic switching elements (S23, S2J) other sides are connected to each other by one side of an inductor (L5) and by one side of a switching element (S14), the other and the fourth electronic switching element (S24, S26) are connected to each other and to a diode (D] é) anode that the cathodes of the diodes (D | 5, Dj6) are connected to each other and to the positive pole of the output (V4), and that the other sides of the electronic switching elements (S13, Su) are connected to each other and to the output of the output (V4) gative pol. Switch-mode power supply according to claim 6 or 7, characterized in that the inductors (L4, L5) are located on the same core. Switch-mode power supply according to claim 1 or 2, characterized in that the power source (E2) comprises a first and a second diode (D5, D6) which are connected in series in which the cathode of the first diode (D5) is connected. with the positive pole of the output (V4) and the anode of the second diode (D6) connected to the negative pole of the output (V4), the current source (E2) further comprising a third and a fourth diode (D7, D8) interconnected in series and connected parallel to the first and second diodes (D5, D6), with the cathode of the third diode (D7) connected to the cathode of the first diode (D5) and the fourth diode (D8) anode connected to the anode of the second diode (D6), and wherein a winding (W3) is interposed between the anode of the first diode (D5) and the anode of the third diode (D7). Switch-mode power supply according to claim 1 or 2, characterized in that the power source (E2) comprises a first diode (D9) whose anode is connected to one end of a first winding (W5) and a second diode (D10) if anode is connected to one end of another winding (W6), where the cathodes of the two diodes (D9, D10) are interconnected and connected to the positive pole of the output (V4) where the other ends of the two winding (W5, W6) are interconnected with each other and with the negative pole of the output (V4). Switch-mode power supply according to one of claims 1 to 10, characterized in that the switch-mode power supply inductors (Li, L2, L3, L4, Ls) are located on the same core as the controlled voltage source (E) and the current source. (E2) windings (W3, W4, W5, W6, Wv, W "W * W10, W," W12, W, 3, W14, W15). Switch-mode power supply according to claim 1 or 2, characterized in that the power source (E2) is connected from the negative pole of the output (V4) to the connection point between the voltage source (E |) and the anode of the diode (D,). Switch-mode power supply according to claim 12, characterized in that the controlled voltage source (E1) and current source (E2) comprise a first electronic switching element (S27) connected to one end of a first winding (W, 4). the controlled voltage source (E |) and the power source (E2) comprise another electronic switching element (S28) connected to one end of another winding (W, 5), the other ends of the electronic switching elements (S27, S2S) with each other and with the connection point between the inductor (L,) and the electronic switching element (S,) that the other ends of the first and second winding (W14, W5) are connected to each other and to the anode of the diode (D,) that the first and the second winding (W) 4, WJ5) dot notation is opposed to a first diode (D, 7) cathode being connected to the junction between the first electronic switching element (S27) and the first winding (Wi4) that a second diode ( D18) cathode is connected to the point of connection between it a the electronic switching element (S28) and the second winding (W1S), that the anodes of the first and second diodes (D17, D18) are connected to each other and to the negative pole of the output (V4). Switch-mode power supply according to claim 12, characterized in that one side of an inductor (L) is connected to the positive pole of the input (V3), the other side of the inductor (L] is connected respectively to a first electronic switching element (S). |) input, a second electronic switching element (S29) input and a first capacity (C3) one side, the output of the second electronic switching element (S29) being connected to a first diode (D20) cathode, a second diode (Di) anode, respectively and one side of a second inductor (L6), that the second side of the second inductor (L6) is connected to the second side of the first capacitor (C3), and the anode of the third diode (D19), respectively, to the cathode of the third diode (D19) with the cathode of the second diode (D,), one side of another capacitor (C2) and the positive pole of the output (V4), and the negative pole of the input (V3) being connected to the output of a first electronic switching element (S, respectively), the first diode (D20) anode, second capacity ( C2) the second side and the negative pole of the output (V4), and where the voltage source (Et) and current source (E2) are constituted by the first capacitance (C3), the second electronic switching element (S29), the first diode (D20) and the second inductor (L6). Switch-mode power supply according to any one of the preceding claims, characterized in that one side of an inductor (L7) is connected to anode of a diode (D30), the other side of the inductor (L7) is connected to the negative pole of the output (V4) that the cathode of the diode (D30) is connected to the positive pole of the output (V4), that the inductor (L7) is wound on the same core as the inductor (L,) and that the dot notation of the inductor (L7) is the same as the inductor (L,) . Switch-mode power supply according to any one of the preceding claims, characterized in that the electronic switching elements, diodes and voltages have the opposite polarity. Method for controlling a switch-mode power supply according to any one of the preceding claims, characterized in that when the relationship between the input voltage (V3) and the output voltage (V4) is appropriate to ensure the function of the switch-mode power supply type, the voltage source (E2) is electronic switching elements (S5, S6, S7, S8, S9, Si0, S, i, S12, S i3, S14, S ice, S i6, S] 7, Sig, S | 9, S2o, S2 "S22, S23, S24, S25, S26, S27, S2g, S29) turned on, whereby the voltage source (Ei) voltage is approximately zero, while if the ratio of the input voltage (V3) to the output voltage (V4) is insufficient or inappropriate for the switch-mode power supply type, the electronic switching elements (S3, S6, S7, Sg, S9, Sio, S] i, Si2, S] 3, Si4, Su, Sis, S | 7, Sig, S] 9 are turned off) S20, S21, S22, S23 , S24, S25, S26, S27, S28, S29) such that the voltage across the voltage source (E,), seen from the switch-mode power supply input side, is added or subtracted ff a out the output voltage (V4) so that the apparent relationship between the input voltage (V3) and the output voltage (V4) can ensure the switch-mode power supply function.

DK200300266A 2003-02-21 2003-02-21 Switch mode power supply has voltage source whose voltage is dependent on voltage of current source DK200300266A (en)

Priority Applications (5)

Application Number Priority Date Filing Date Title
DK200300266A DK200300266A (en) 2003-02-21 2003-02-21 Switch mode power supply has voltage source whose voltage is dependent on voltage of current source
AU2003257400A AU2003257400A1 (en) 2003-02-21 2003-08-26 Switch mode power supply and a method of controlling such a power supply
PCT/DK2003/000557 WO2004075385A1 (en) 2003-02-21 2003-08-26 Switch mode power supply and a method of controlling such a power supply
EP03815943A EP1597814A1 (en) 2003-02-21 2003-08-26 Switch mode power supply and a method of controlling such a power supply
US10/546,067 US20070035282A1 (en) 2003-02-21 2003-08-26 Switch mode power supply and a method for controlling such a power supply

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DK200300266A DK200300266A (en) 2003-02-21 2003-02-21 Switch mode power supply has voltage source whose voltage is dependent on voltage of current source

Publications (1)

Publication Number Publication Date
DK200300266A true DK200300266A (en) 2004-08-22

Family

ID=32921524

Family Applications (1)

Application Number Title Priority Date Filing Date
DK200300266A DK200300266A (en) 2003-02-21 2003-02-21 Switch mode power supply has voltage source whose voltage is dependent on voltage of current source

Country Status (1)

Country Link
DK (1) DK200300266A (en)

Similar Documents

Publication Publication Date Title
US9876430B2 (en) Zero voltage switching
EP3282571B1 (en) Power converter with extended hold-up time
WO2013155272A1 (en) Hold-up time enhancement circuit for llc resonant converter
US8379421B2 (en) Power factor correction converter with parallel-connected converter sections
EP2276157A1 (en) Power converter, device and method for interleaving controlling power factor correction circuits
CN110771021B (en) Totem pole bridgeless PFC power supply converter
AU2010276262A1 (en) A zero-voltage-transition soft switching converter
GB2431298A (en) Series resonant dc-dc converter
KR101306096B1 (en) Electronic ballast for at least one lamp
WO2007060129A2 (en) An arrangement for driving led cells
US7944188B1 (en) Power converter circuits having bipolar outputs and bipolar inputs
KR20020079776A (en) Self-driven synchronous rectification circuit for low output voltage dc-dc converters
RU2007105093A (en) METHOD OF OPERATION OF THE DC CONVERTER TO VARIABLE AND DEVICE FOR PERFORMING THE METHOD
SE0001054D0 (en) A zero voltage swith snubber circuit
CN110572040B (en) Half-bridge LLC resonant converter interleaved parallel circuit and current-sharing control method thereof
DK200300266A (en) Switch mode power supply has voltage source whose voltage is dependent on voltage of current source
CN110165886A (en) Based on ZCT PWM bi-directional DC-DC CUK converter, transformation system and method
US7583066B2 (en) Method of operating a DC/DC up/down converter
KR20210127495A (en) ZVS(Zero Voltage Switching) circuit and Converter comprising thereof
KR101195208B1 (en) Power Factor Compensation Circuit for Continuous Current Mode with Zero Voltage and Zero Current Switching
CN217240401U (en) Power supply device
WO1998042065A1 (en) High power dc/dc converter
WO2010006479A1 (en) Dc-dc converter and method of converting a high voltage dc current to a low voltage dc current
CN118117879A (en) Four-switch buck-boost converter topology circuit and control method thereof
KR20010098093A (en) Half Bridge Power Converter

Legal Events

Date Code Title Description
AHS Application shelved for other reasons than non-payment