CN1877944A - Reverse current protective circuit for switching power supply - Google Patents

Reverse current protective circuit for switching power supply Download PDF

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Publication number
CN1877944A
CN1877944A CN 200510075984 CN200510075984A CN1877944A CN 1877944 A CN1877944 A CN 1877944A CN 200510075984 CN200510075984 CN 200510075984 CN 200510075984 A CN200510075984 A CN 200510075984A CN 1877944 A CN1877944 A CN 1877944A
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CN
China
Prior art keywords
power supply
input
coupled
transistor switch
current
Prior art date
Legal status (The legal status 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 status listed.)
Pending
Application number
CN 200510075984
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Chinese (zh)
Inventor
亚隆恭·萨西统瓦那库
王为龙
韩永良
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
TAISHANG TAIDA ELECTRONIC Co
Delta Electronics Inc
Delta Optoelectronics Inc
Original Assignee
TAISHANG TAIDA ELECTRONIC Co
Delta Optoelectronics Inc
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 TAISHANG TAIDA ELECTRONIC Co, Delta Optoelectronics Inc filed Critical TAISHANG TAIDA ELECTRONIC Co
Priority to CN 200510075984 priority Critical patent/CN1877944A/en
Publication of CN1877944A publication Critical patent/CN1877944A/en
Pending legal-status Critical Current

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Abstract

The invention discloses an inversed-current protecting circuit in the exchanging battery supplier, which comprises the following parts: input power, electromagnetic interference filter, input filter capacitance, DC-DC transducer, switch device and inversed-current protecting circuit, wherein the inversed-current protecting circuit contains transistor switch, which couples input power with a control end and at least two current conductive ends; one monitor device couples the transistor switch, which monitors voltage polarity changing of current conductive end to generate a driving signal; one signal coupler is coupled between transistor switch and monitor device, which makes driving signal couple the control end to end the transistor switch and blocks the discharging circuit of inversed-current. The invention can protect inner circuit component in the inputting time of short-circuit, which avoids danger of exchanging battery supplier.

Description

The reverse current protective circuit that is used for switched power supplier
Technical field
The present invention relates to a kind of reverse current protective circuit; and relate in particular to a kind of reverse current protective circuit; it can be when the input short circuit of switched power supplier the time; protection switched power supplier internal circuit unit avoids suffering the injury that backward current caused of sending from input filter capacitor.
Background technology
Fig. 1 shows the typical representative graph according to the switched power supplier of prior art.Switched power supplier 100 shown in Figure 1 is made up of an input power supply 101 (being generally a direct current voltage), an Electromagnetic interference filter (EMI filter) 102, one input filter capacitor 103, a polarity detector (polarity detector) 104, one burst current limiter (inrush current limiter) 105, one switching device 106 and 107 of DC-DC converters (DC-DC converter).Electromagnetic interference filter 102 is coupled to input power supply 101 and it is used for eliminating formed differential mode noise of circuit (differential mode noise) or common mode noise (common mode noise).Input filter capacitor 103 is coupled to Electromagnetic interference filter 102 and it is used for the input direct voltage that smooth-going (smooth) provided by input power supply 10.Switching device 106 is coupled to input filter capacitor 103 and is finished by a tandem switching transistor circuit (cascaded switching transistor circuit) usually, and it is used in the mode that replaces input direct voltage being coupled to DC-DC converter 107.DC-DC converter 107 is coupled to switching device 106 and is used for converting input direct voltage to one or more predetermined direct voltages to meet a series of specification requirement.The polarity that polarity detector 104 is used for detecting the reversing of input direct voltage and prevents input direct voltage is by reversal connection.Burst current limiter 105 is used for avoiding the surge of burst current (inrush current).
When operate as normal, input filter capacitor 103 can be charged fully so that remove high-frequency harmonic (high-frequency harmonics) in the input direct voltage.Yet, if the input short circuit of switched power supplier, input filter capacitor 103 just can discharge stored energy, and at the huge backward current of input filter capacitor 103 to the input direction of switched power supplier, just can flow and come via being positioned near the input internal circuit unit, for example Electromagnetic interference filter 102, polarity detector 104, burst current limiter 105 and switching device 106.These internal circuit units quite are difficult to resist for the impact surge of backward current, and if the discharge loop of backward current can't cut off at once, these internal circuit units will burn.
Therefore, under the situation that input is short-circuited, be stored in the input side that energy in the input filter capacitor just can be released into switched power supplier, and internal circuit unit will fault under the protection that does not have safety device.
In view of this, along its trend development a kind of reverse current protective circuit, it can protect the internal circuit unit of switched power supplier when the input short circuit, avoid being originated from the caused injury of backward current of input filter capacitor.
Summary of the invention
A purpose of the present invention is to provide a reverse current protective circuit, when the input short circuit time, avoids suffering the caused injury of backward current that is discharged by input filter capacitor in order to the internal circuit unit of protection switched power supplier.
Another object of the present invention is to provide a switched power supplier, it uses a reverse current protective circuit to protect internal circuit unit to avoid suffering because the caused injury of input of short circuit.
For achieving the above object,, propose a kind of switched power supplier, comprise an input power supply, in order to an input electric power to be provided according to main aspect of the present invention; One Electromagnetic interference filter retains in differential mode noise or common mode noise in the circuit in order to elimination; One input filter capacitor should be imported electric power in order to smooth-going; One DC-to-DC converter becomes one or more predetermined voltage levels in order to will import power conversions; One switching device is used for will importing electric power in the mode that replaces and is coupled to DC-DC converter; And a reverse current protective circuit, avoid suffering the caused injury of backward current that discharges by this input filter capacitor in order to the protection internal circuit unit.This reverse current protective circuit comprises a transistor switch, is coupled to this input power supply and has a control end (control terminal) and at least two conduction of current ends (current-conducting terminals); One supervising device is coupled to this transistor switch, in order to the change of the polarity of voltage that monitors this conduction of current end of cross-over connection, and answers the polarity of voltage of this conduction of current end of cross-over connection to change to produce a drive signal; And a signal coupler, be coupled between this transistor switch and this supervising device, in order to this drive signal is coupled to this control end so that this transistor switch is ended, and block the discharge loop of this backward current by this.
Specifically, a kind of reverse current protective circuit, in order to protect the internal circuit unit of a power supply unit, when an input short circuit of this power supply unit, make it avoid suffering the injury of a backward current, it comprises: a transistor switch is coupled to this input and has a control end and at least two conduction of current ends; One supervising device, be coupled to this transistor switch, in order to monitoring the change of the polarity of voltage of cross-over connection on these two conduction of current ends, and, produce a drive signal and come by this transistor switch in response to the change of the polarity of voltage of cross-over connection on these two conduction of current ends; And a signal coupler, be coupled between this transistor switch and this supervising device, in order to this drive signal is coupled to this control end.
This power supply unit is a switched power supplier.This transistor switch is formed by a single N type MOSFET or a tandem N type MOSFET circuit.This supervising device is made up of a voltage comparator, and this signal coupler is made up of a positive-negative-positive bipolar junction transistor.
A kind of switched power supplier comprises: an input power supply, in order to an input electric power to be provided; One input filter capacitor is coupled to this input power supply, should import electric power in order to smooth-going; An and reverse current protective circuit; be coupled between this input power supply and this input filter capacitor; when the input short circuit of this power supply unit, avoid suffering the injury of the backward current that discharges by this input filter capacitor in order to the internal circuit unit of protecting this switched power supplier.
This input power supply is a direct current voltage.Described switched power supplier also comprises: an Electromagnetic interference filter, be coupled to this input power supply, and retain in differential mode noise or common mode noise in this switched power supplier in order to elimination; One power supply changeover device becomes at least one predetermined voltage level in order to will import power conversions; And a switching device, be coupled to this power supply changeover device, be used for should importing electric power and be coupled to this power supply changeover device in the mode that replaces.This power supply changeover device is a DC-to-DC converter.
This reverse current protective circuit also comprises: a transistor switch is coupled to this input power supply and has a control end and at least two conduction of current ends; One supervising device, be coupled to this transistor switch, in order to monitoring the change of the polarity of voltage of cross-over connection on these two conduction of current ends, and, produce a drive signal and come by this transistor switch in response to the change of the polarity of voltage of cross-over connection on these two conduction of current ends; And a signal coupler, be coupled between this transistor switch and this supervising device, in order to this drive signal is coupled to this control end.
This transistor switch is formed by a single N type MOSFET or a tandem N type MOSFET circuit.This supervising device is made up of a voltage comparator, and this signal coupler system is made up of a positive-negative-positive bipolar junction transistor.
From above we as can be seen; reverse current protective circuit; can in order to the protection switched power supplier internal circuit unit when the input short circuit time; when a switched power supplier includes reverse current protective circuit; use the reverse current protective circuit can be the time when the input short circuit of switched power supplier; protection switched power supplier internal circuit unit avoids suffering the injury that backward current caused of sending from input filter capacitor.
Above-mentioned and further feature of the present invention and advantage can obtain best understanding by following description and with reference to accompanying drawing.
Description of drawings
Fig. 1 is the circuit diagram of the typical exchange formula power supply unit of prior art;
Fig. 2 has a preferred embodiment of the switched power supplier of reverse-current protection circuit for the present invention.
Wherein, description of reference numerals is as follows:
100,200 switched power suppliers
101,201 input power supplys
102,202 Electromagnetic interference filter (electromagnetic interface filter)
103,203 input filter capacitors
104 polarity detectors
105,204 burst current limiters
106,205 switching devices
107,206 DC-to-DC converter
207 reverse current protective circuits
31 transistor switches
32 supervising devices
33 signal couplers
Embodiment
See also Fig. 2, Fig. 2 has the circuit diagram of one of preferred embodiment of the switched power supplier of reverse current protective circuit for the present invention.
As shown in Figure 2, switched power supplier 200 comprises input power supply (being generally a direct current voltage) 201, one Electromagnetic interference filter (EMI filter) 202, one input filter capacitor 203, a burst current limiter 204, a switching device 205, a DC-to-DC converter 206 and a reverse current protective circuit 207.The function of input power supply 201, Electromagnetic interference filter 202, input filter capacitor 203, burst current limiter 204, switching device 205 and DC-to-DC converter 206 and operating principle are all similar with the function and the operating principle of the corresponding thing of Fig. 1, and are omitted in this explanation with them.
It should be noted that switched power supplier 200 comprises the reverse current protective circuit 207 between input power supply 201 and input filter capacitor 203.This reverse current protective circuit 207 mainly is made up of a transistor switch 31, a supervising device 32 and a signal coupler 33.Transistor switch 31 generally is made up of a single N type MOSFET or a tandem N type MOSFET circuit (cascaded N-channel MOSFET circuit), and it is coupled to input power supply 201.Supervising device 32 is coupled to transistor switch 31 and the preferably is finished by a voltage comparator, and wherein a reverse input end of the voltage comparator non-inverting input that is coupled to a conduction of current end (the current-conducting terminal) 311 of transistor switch 31 and voltage comparator is coupled to another conduction of current end 312 of transistor switch 31.Supervising device 32 is used for monitoring the change of the polarity of voltage of cross-over connection on conduction of current end 311 and 312, and answers the change of the polarity of voltage of cross-over connection on conduction of current end 311 and 312 to produce a drive signal.Signal coupler 33 is coupled between transistor switch 31 and the supervising device 32, and the preferably is finished by the bipolar junction transistor of a positive-negative-positive (PNP-type BJT).The drive signal that signal coupler 33 is used for being exported by supervising device 32 is coupled to the control end of transistor switch 31 so that the ON/OFF of oxide-semiconductor control transistors switch 31.Function and operating principle about according to a preferred embodiment of the present invention reverse current protective circuit 207 will be described in detail as follows.
When normal running, input current flows to negative input end 212 by the positive input terminal 211 of input power supply 201, and transistor switch 31 is understood conductings (turn on) and gone up conduction current in forward direction (forward direction).That is to say that electric current is flowed to the source terminal 311 of transistor switch 31 by the drain electrode end 312 of transistor switch 31.At this moment, the drain voltage of transistor switch 31 is greater than the source voltage of transistor switch 31, and therefore HIGH signal of voltage comparator 32 outputs is to positive-negative-positive bipolar junction transistor 33, and this positive-negative-positive bipolar junction transistor 33 then can end (turn off).Yet, if during the input short circuit of switched power supplier 200, just input filter capacitor 203 discharges its energy stored by inducing a backward current opposite with the input current flow direction.Therefore, transistor switch 31 is understood conductings (turn on) and is gone up conduction current in reverse direction (reverse direction), and the source voltage of transistor switch 31 is greater than the drain voltage of transistor switch 31.Therefore, the polarity of voltage of cross-over connection on the conduction of current end of transistor switch 31 just can change, and LOW signal of voltage comparator 32 output as a drive signal to positive-negative-positive bipolar junction transistor 33.So bipolar junction transistor 33 just can conducting, and by this drive signal (LOW signal) is coupled to the gate terminal of transistor switch 31.Therefore, transistor switch 31 can be driven signal and drives and end at once.Therefore, originate from the discharge loop of the backward current of input filter capacitor 203 and just can be blocked, and the internal circuit unit of switched power supplier just can avoid because the caused injury of surge of backward current by the transistor switch 31 that ends.
Even if the present invention has been described in detail by the above embodiments can by those skilled in the art appoint execute that the craftsman thinks and all as modify, yet the scope of neither disengaging institute of the present invention desire protection.

Claims (11)

1. a reverse current protective circuit in order to protect the internal circuit unit of a power supply unit, when an input short circuit of this power supply unit, makes it avoid suffering the injury of a backward current, and it comprises:
One transistor switch is coupled to this input and has a control end and at least two conduction of current ends;
One supervising device, be coupled to this transistor switch, in order to monitoring the change of the polarity of voltage of cross-over connection on these two conduction of current ends, and, produce a drive signal and come by this transistor switch in response to the change of the polarity of voltage of cross-over connection on these two conduction of current ends; And
One signal coupler is coupled between this transistor switch and this supervising device, in order to this drive signal is coupled to this control end.
2. reverse current protective circuit as claimed in claim 1 is characterized in that, this power supply unit is a switched power supplier.
3. reverse current protective circuit as claimed in claim 1 is characterized in that, this transistor switch is formed by a single N type MOSFET or a tandem N type MOSFET circuit.
4. reverse current protective circuit as claimed in claim 1 is characterized in that this supervising device is made up of a voltage comparator, and this signal coupler is made up of a positive-negative-positive bipolar junction transistor.
5. a switched power supplier is characterized in that, comprises:
One input power supply is in order to provide an input electric power;
One input filter capacitor is coupled to this input power supply, should import electric power in order to smooth-going; And
One reverse current protective circuit; be coupled between this input power supply and this input filter capacitor; when the input short circuit of this power supply unit, avoid suffering the injury of the backward current that discharges by this input filter capacitor in order to the internal circuit unit of protecting this switched power supplier.
6. switched power supplier as claimed in claim 5 is characterized in that, this input power supply is a direct current voltage.
7. switched power supplier as claimed in claim 5 is characterized in that, also comprises:
One Electromagnetic interference filter is coupled to this input power supply, retains in differential mode noise or common mode noise in this switched power supplier in order to elimination;
One power supply changeover device becomes at least one predetermined voltage level in order to will import power conversions; And
One switching device is coupled to this power supply changeover device, is used for should importing electric power in the mode that replaces and is coupled to this power supply changeover device.
8. switched power supplier as claimed in claim 7 is characterized in that, this power supply changeover device is a DC-to-DC converter.
9. switched power supplier as claimed in claim 5 is characterized in that, this reverse current protective circuit also comprises:
One transistor switch is coupled to this input power supply and has a control end and at least two conduction of current ends;
One supervising device, be coupled to this transistor switch, in order to monitoring the change of the polarity of voltage of cross-over connection on these two conduction of current ends, and, produce a drive signal and come by this transistor switch in response to the change of the polarity of voltage of cross-over connection on these two conduction of current ends; And
One signal coupler is coupled between this transistor switch and this supervising device, in order to this drive signal is coupled to this control end.
10. switched power supplier as claimed in claim 9 is characterized in that, this transistor switch is formed by a single N type MOSFET or a tandem N type MOSFET circuit.
11. switched power supplier as claimed in claim 9 is characterized in that, this supervising device is made up of a voltage comparator, and this signal coupler is made up of a positive-negative-positive bipolar junction transistor.
CN 200510075984 2005-06-07 2005-06-07 Reverse current protective circuit for switching power supply Pending CN1877944A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200510075984 CN1877944A (en) 2005-06-07 2005-06-07 Reverse current protective circuit for switching power supply

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200510075984 CN1877944A (en) 2005-06-07 2005-06-07 Reverse current protective circuit for switching power supply

Publications (1)

Publication Number Publication Date
CN1877944A true CN1877944A (en) 2006-12-13

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ID=37510286

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 200510075984 Pending CN1877944A (en) 2005-06-07 2005-06-07 Reverse current protective circuit for switching power supply

Country Status (1)

Country Link
CN (1) CN1877944A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101656418B (en) * 2008-08-20 2012-12-12 台达电子工业股份有限公司 Fan system and power reverse protection device thereof
CN113644624A (en) * 2020-05-11 2021-11-12 台达电子工业股份有限公司 Transmission and distribution system with electric shock protection function and operation method thereof

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101656418B (en) * 2008-08-20 2012-12-12 台达电子工业股份有限公司 Fan system and power reverse protection device thereof
CN113644624A (en) * 2020-05-11 2021-11-12 台达电子工业股份有限公司 Transmission and distribution system with electric shock protection function and operation method thereof
CN113644624B (en) * 2020-05-11 2024-03-01 台达电子工业股份有限公司 Transmission and distribution system with electric shock protection function and operation method thereof

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