CN201966803U - High-voltage pulse power of constant current during the short circuit - Google Patents

High-voltage pulse power of constant current during the short circuit Download PDF

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Publication number
CN201966803U
CN201966803U CN2010206203524U CN201020620352U CN201966803U CN 201966803 U CN201966803 U CN 201966803U CN 2010206203524 U CN2010206203524 U CN 2010206203524U CN 201020620352 U CN201020620352 U CN 201020620352U CN 201966803 U CN201966803 U CN 201966803U
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diode
power supply
pulse
voltage
resistance
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汪孟金
朱亮
李玮
孙浙胜
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BEIJING MNTC POWER SCIENCE AND TECHNOLOGY CO., LTD.
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Ningbo Zhenhai Huatai Electric Factory
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Abstract

The invention discloses a high-voltage pulse power of constant current during a short circuit, it is connected, the positive electrode of plasma generator, is connect the negative electrode of the earth to form by step-down and current-limiting circuit, major loop direct-current power supply, pulse unit direct-current power supply, impulse generator, high-pressure package, FET, electric porcelain. This utility model is owing to being equipped with '' stepping down and the current-limiting circuit '', the feedback circuit that is equipped with execution negative feedback step in major loop and pulse unit respectively that has short circuit current-limiting function at AC220V power input end, consequently, the short circuit in the high-pressure indefinite duration of output enable end is and the short circuit current value during high-pressure short circuit is the constant current value that the device in the system can bear.

Description

The high-voltage pulse power source of constant current during short circuit
Technical field
The utility model relates to technical field of plasma, relates in particular to " high-voltage pulse power source of constant current during short circuit " that a kind of plasma apparatus is used.
Background technology
Because have quick, efficient, energy-saving advantages, so plasma apparatus is particularly having a wide range of applications aspect the processing industrial waste gas in the environmental protection field.
Structure such as Fig. 1 of the core component-high-voltage pulse power source of the described plasma apparatus that is used to handle industrial waste gas, among the figure 101 for DC power supply, 102 for pulse power major loop and pulse generation unit (hereinafter to be referred as clock), T be pulse transformer, D be high voltage silicon stack (following T and D are collectively referred to as high voltage package), 10 for insulation porcelain joint, A be that positive electrode, the K of plasma generator is the negative electrode that connects the earth.
When described plasma apparatus operate as normal, pulse voltage U between positive electrode A and the negative electrode K is in the scope of 50-100KV, space between positive electrode A and the negative electrode K produces corona discharge (representing with the fan-shaped arrow of two bundles among the figure), and discharging current is pulse current I.
After plasma apparatus operate as normal a period of time, can be infected with materials such as the mist vapour that carried by waste gas, dust on the insulation porcelain joint 10 unavoidably, these materials are exactly " good conductor " for the high voltage pulse U of 50-100KV! High voltage pulse U arrives ground no longer by the space corona discharge between A and the K but pass through insulation porcelain joint 10 direct " short circuit ".These materials that the process of this " short circuit "-directly last till is infected with on the insulation porcelain joint 10 by pulse energy burn, come off, till the insulation porcelain joint recovers the High-Voltage Insulation performance again.This process is called insulation porcelain joint " self-cleaning " process, article on plasma body equipment, and this is necessary process, otherwise it can't continuous firing.
In described " self-cleaning " process, the high voltage pulse U among Fig. 1 is similar to short circuit, and the equivalent phenomenon that is reflected to the input of clock 102 is: the input impedance Rab between A, B is very little, the electric current I of DC power supply 101 outputs 1Greatly.In the case, the selection to described DC power supply 101 has brought a difficult problem:
1, if select the scheme of Industrial Frequency Transformer step-down, rectification, filtering, if selected Industrial Frequency Transformer capacity is little, when 10 short circuits of insulation porcelain joint were self-cleaning, it burnt overload; If selected Industrial Frequency Transformer capacity is big, when 10 short circuits of insulation porcelain joint were self-cleaning, it can be safe and sound, but electric current I excessive burn of devices such as the coil of described high voltage package and high voltage silicon stack will be because of short circuit the time.
2, if the selector switch stabilized voltage power supply, capacity is little and do not have overcurrent protection function, and when 10 short circuits of insulation porcelain joint were self-cleaning, it burnt overload; Capacity is little but overcurrent protection function is arranged, and it is with " overcurrent protection " and no current output, and it is safe and sound, but the self-cleaning function of insulation porcelain joint 10 short circuits just can't realize; If select switching power supply capacious, when 10 short circuits of insulation porcelain joint were self-cleaning, it can be safe and sound, but electric current I excessive burn of devices such as the coil of described high voltage package and high voltage silicon stack will be because of short circuit the time.
In sum, the discharging current I of plasma apparatus should have the represented performance of Fig. 2: promptly arrive t=t at t=0 1In the time of plasma apparatus operate as normal, its value is the corona discharge current I between positive electrode A and the negative electrode K 01At the self-cleaning t=t of insulation porcelain joint 10 short circuits 1To t=t 2During this period of time, its value is constant current I 02, and should be the corresponding I that devices such as high voltage package can bear 02
The power supply of existing Industrial Frequency Transformer step-down, rectification, filtering or switching power supply all do not have can satisfy the desired respective type of discharging current I.
Existing high-voltage pulse power source does not more have can satisfy discharging current I desired " high-voltage pulse power source of constant current during short circuit ".
In sum, the high-voltage pulse power source of constant current output is the core component that plasma apparatus is badly in need of when the high voltage short circuit of permission output, short circuit, also is the technical task that needs to be resolved hurrily.
In addition, handle big flow (40000m for example 3The plasma apparatus that/h) industrial waste gas is used need this with 100 polyliths " high-voltage pulse power source of constant current during short circuit ", and therefore, these " high-voltage pulse power sources of constant current during short circuit " are must volume little, in light weight, cost is low, and Practical significance is just arranged.
Summary of the invention
The purpose of this utility model remedies the deficiencies in the prior art exactly, designs a kind of " high-voltage pulse power source of constant current during short circuit " that can realize that the short circuit of insulation porcelain joint is self-cleaning and volume is little, plasma apparatus in light weight, that cost is low is used.
The utility model realizes that the above-mentioned purpose technical scheme is: the high-voltage pulse power source of constant current during a kind of short circuit, and its positive electrode A by step-down and current-limiting circuit, major loop DC power supply, pulse unit DC power supply, pulse generator, high voltage package T, field effect transistor FET, insulation porcelain joint 10, plasma generator, the negative electrode K that connects the earth form; 1 termination major loop DC power supply of AC220V (or AC380V, AC110V) input and pulse unit DC power supply, the other end 2 termination step-down and current-limiting circuits, the output termination major loop DC power supply and the pulse unit DC power supply of step-down and current-limiting circuit, one end of the primary coil of the output termination high voltage package T of major loop DC power supply, the drain D of another termination field effect transistor FET of the primary coil of high voltage package T, the positive electrode A of the positive termination plasma generator of the high voltage pulse U of high voltage package T output, negative terminal meets negative electrode K; The output termination pulse generator of pulse unit DC power supply, the grid G of the output termination field effect transistor FET of pulse generator; The equal connection circuit plate of the source S ground of described major loop DC power supply, pulse unit DC power supply, pulse generator, field effect transistor FET.
For easy narration, being called for short the utility model below is " system ".
Operation principle of the present utility model is: the alternating voltage u of AC220V after step-down and current-limiting circuit step-down 0Be divided into two tunnel: one tunnel input major loop, another input pulse unit, road.
Described major loop is made up of the primary coil of major loop DC power supply, high voltage package T, the field effect transistor FET that uses as switching tube.The alternating voltage u of input 0After the rectification of major loop DC power supply circuit, filtering, for major loop provides direct voltage U1.
Described pulse unit is made up of pulse unit DC power supply, pulse generator.The alternating voltage u of input 0After step-down and the rectification once more of pulse unit DC power supply, filtering, voltage stabilizing, for pulse generator provides direct voltage U2.
It is that 4~30KHz (adjustable), voltage amplitude are the pulse train of U3 that pulse generator produces repetition rate, is applied between the grid G and source S of field effect transistor FET.When pulse arrives, the drain D of field effect transistor FET and the raceway groove conducting between the source S, the electric current I of major loop DCirculation, high voltage package produces high voltage pulse U; When end-of-pulsing, the drain D of field effect transistor FET and the blocking-up of the raceway groove between the source S, the electric current I of major loop D=0, high voltage pulse U=0.So go round and begin again, can constantly provide high voltage pulse U for system.
When the plasma apparatus operate as normal, under the driving of described high voltage pulse U, the pulse current of corona discharge is I between positive electrode A and the negative electrode K; When insulation porcelain joint 10 short circuits of plasma apparatus are self-cleaning, pulse current I will rise to I Short circuitIt is, apparent that you easily see I Short circuit>>I
In order to realize following two purposes: 1, system can guarantee that the 10 implementation short circuits of insulation porcelain joint are self-cleaning; 2, reduce the pulse current I of insulation porcelain joint 10 short circuits when self-cleaning as far as possible Short circuit, in order to avoid because of I Short circuitExcessive and damage for example high voltage package etc. of related device, the utility model has also been taked following technical measures:
1, adopt " step-down and current-limiting circuit " with short circuit current limitation function to replace DC power supply 101 among Fig. 1.Preferably: described step-down and current-limiting circuit adopt R, C step-down scheme, promptly adopt the method for polarity free capacitor step-down, current limliting.
2, system is respectively equipped with the feedback circuit of carrying out the negative feedback step in major loop and pulse unit, strangulation the pulse current Is of insulation porcelain joint 10 short circuits when self-cleaning Short circuitValue.
Therefore the utility model has realized that " it is self-cleaning to guarantee that insulation porcelain joint 10 is carried out short circuit " promptly " allows the high voltage short circuit of output ", " electric current I when 10 short circuits of insulation porcelain joint are self-cleaning owing to reasonably designed circuit system and taked above technical measures Short circuitThe constant current value that can bear for the device in the system " i.e. " constant current output during short circuit " two purposes.
Use the utility model, can obtain following beneficial effect:
1, solved " allowing the high voltage short circuit of output ", the technical task that needs to be resolved hurrily of " constant current output during short circuit " that high-voltage pulse power source ran into.
2, the cost of foregoing " step-down and current-limiting circuit " with short circuit current limitation function is only about 10 yuan, Industrial Frequency Transformer or switching power supply that the value that the utility model has replaced former usefulness with this " step-down and current-limiting circuit " surpasses hundred yuan.To handling big flow (40000m for example 3The plasma apparatus that/h) industrial waste gas is used, only this is with regard to escapable cost units up to ten thousand.And behind application the utility model, the volume of plasma apparatus reduces, weight saving, also can further reduce the cost of making and installing.
The power supply of 3, transformer step-down, rectification, filtering or switching power supply all consume partly electric energy inevitably, and the former exists copper loss, iron loss, make its heating power consumption; The power consumption of also generating heat of the latter's a pair of raising frequency oscillating tube that is added with radiator.And the non-polar condenser that " step-down and current-limiting circuit " of the present utility model adopted is the well-known device that does not consume energy.To handling big flow (40000m for example 3The plasma apparatus that/h) industrial waste gas is used, only this just can reduce near kilowatt of power consumption.From then on angle is seen, the utility model is the energy-conserving product of low-carbon (LC).
4, as everyone knows, the electrical appliance in the enterprise is most for motor one class is perceptual electrical load, and for saves energy, people often adopt the method that building-out capacitor, raising power factor (PF) are installed to reach the purpose of economize on electricity.The utility model is the electrical load that is capacitive from the AC220V power input, and exactly " on the spot " compensated the perception of motor (for example exhaust-gas treatment use a high-power blower) class electrical load, the power factor (PF) that is improved, the windfall of saves energy.From then on angle is seen, the utility model also unexpectedly becomes the energy-conserving product of low-carbon (LC).
5, the insider generally acknowledges: high-voltage pulse power source is the core component of plasma apparatus.After adopting the utility model of " high voltage short circuit that allows output ", " constant current output during short circuit ", the reliability of plasma apparatus will get a promotion significantly.
Description of drawings
Fig. 1 is the structural representation of high-voltage pulse power source.
Fig. 2 is the schematic diagram of the discharging current I of plasma apparatus requirement.
Fig. 3 is the composition and the fundamental diagram of step-down and current-limiting circuit 201 among Fig. 4.
Fig. 4 is the technical solution of the utility model figure, and among the figure: 201 is that step-down and current-limiting circuit, 202 are that major loop DC power supply, 203 is that pulse unit DC power supply, 204 is pulse generator.
Fig. 5 is the circuit theory diagrams of the utility model preferred embodiment.
Embodiment
Below, in conjunction with the accompanying drawings, the utility model is further described.
In conjunction with Fig. 4: the high-voltage pulse power source of constant current during a kind of short circuit, its positive electrode A by step-down and current-limiting circuit 201, major loop DC power supply 202, pulse unit DC power supply 203, pulse generator 204, high voltage package T, field effect transistor FET, insulation porcelain joint 10, plasma generator, the negative electrode K that connects the earth form; 1 termination major loop DC power supply 202 and pulse unit DC power supply 203, the other end 2 termination step-downs and the current-limiting circuit 201 of AC220V (or AC380V, AC110V) input, the output termination major loop DC power supply 202 and the pulse unit DC power supply 203 of step-down and current-limiting circuit 201, one end of the primary coil of the output termination high voltage package T of major loop DC power supply 202, the drain D of another termination field effect transistor FET of the primary coil of high voltage package T, the positive electrode A of the positive termination gas ions generator of the high voltage pulse U of high voltage package T output, negative terminal meets negative electrode K; The output termination pulse generator 204 of pulse unit DC power supply 203, the grid G of the output termination field effect transistor FET of pulse generator 204; The equal connection circuit plate of the source S ground of described major loop DC power supply 202, pulse unit DC power supply 203, pulse generator 204, field effect transistor FET.
Need to prove: the negative terminal of high voltage pulse U meets the earth, anode receiving electrode A among Fig. 4, is the positive high voltage connection; Also can adopt:, become the positive termination grounding electrode K of U, the negative high voltage connection of negative terminal receiving electrode A the polarity reversal (polarity of high voltage pulse U is also switched) of high voltage silicon stack D thereupon.The operation principle of two kinds of connections is identical.
Before setting forth the course of work of the present utility model, at first set forth the composition and the operation principle of step-down and current-limiting circuit 201, Fig. 3 forms and the operation principle schematic diagram for it.
In conjunction with Fig. 3, Fig. 4: r AbBe the equiva lent impedance of eyeing right between a, b among Fig. 4, when the plasma apparatus operate as normal, the impedance that presents between a, b is r AbWhen plasma apparatus " self-cleaning ", r AbVery little but r Ab≠ 0, " current limliting " process of step-down and current-limiting circuit 201 is established r this moment for convenience of explanation Ab≈ 0
In conjunction with Fig. 3, described step-down and current-limiting circuit 201 are by decompression capacitor C 0With discharge resistance R 0Back in parallel is formed, wherein discharge resistance R 0Be the big resistance resistance of M Ω level, its effect is: input power supply AC220V (or AC380V, AC110V) closes to have no progeny and is decompression capacitor C 0Discharge, it is to input current i 0Almost there is not influence, so in the following analysis, can slightly not disregard.
The equivalent input impedance Z=r that sees from the AC220V input towards system Ab-jX C0
X in the following formula C0Be decompression capacitor C 0Capacitor value.X C0=1/ ω C 0=1/2 л F C 0F is an angular frequency for frequency, the ω of input power supply in the formula, and ω=2 л F.
When the plasma apparatus operate as normal: Z=r Ab-jX C0=r Ab+ 1/j2 л F C 0
When plasma apparatus " self-cleaning ": Z Short circuit≈ 1/j2 л F C 0, establish the input current i of system at this moment 0Be i Short circuitThen:
i Short circuit≈ 220/Z Short circuit≈ 220/1/j2 л F C 0=j2202 л F C 0In (when supply voltage is 220V) following formula, alphabetical j represents i Short circuit90 ° of leading voltages.Following formula explanation: when plasma apparatus " self-cleaning ", i Short circuitBe finite value, its size is by the frequency F and the capacitor C of input power supply 0Amount of capacity decision.When power supply AC220V frequency is power frequency 50Hz, C 0During=30 μ F: Z Short circuit≈ 1/j2 л F C 0=-j106 Ω i Short circuit≈ j2.07A
So far, can reach a conclusion: at system short-circuit, r AbUnder the extreme case of ≈ 0, because decompression capacitor C 0Effect, the input current i of system 0Value i Short circuitBe finite value 2.07A, i.e. step-down and current-limiting circuit 201 have the function of short circuit current limitation.Power supply and switching power supply that this characteristic has embodied step-down of the present utility model and current-limiting circuit 201 and common Industrial Frequency Transformer step-down, rectification, filtering have huge difference, and the function of the latter two no short circuit current limitations is as plasma apparatus " self-cleaning ", r Ab→ 0 o'clock, input current i 0Not finite value, but → ∞
Return from a digression, set forth the course of work of the present utility model below again.In conjunction with Fig. 4, the alternating voltage u of AC220V after step-down and current-limiting circuit 201 step-downs 0, be divided into two tunnel: one tunnel input major loop, another input pulse unit, road.
Described major loop is made up of the primary coil of major loop DC power supply 202, high voltage package T, the field effect transistor FET that uses as switching tube.The alternating voltage u of input 0After 202 rectifications of major loop DC power supply circuit, filtering, for major loop provides direct voltage U 1
Described pulse unit is made up of pulse unit DC power supply 203, pulse generator 204.The alternating voltage u of input 0After pulse unit DC power supply 203 step-down and rectification once more, filtering, voltage stabilizing, for pulse generator 204 provides direct voltage U2.
It is that 4~30KHz (adjustable), voltage amplitude are the pulse train of U3 that pulse generator 204 produces repetition rate, is applied between the grid G and source S of field effect transistor FET.When pulse arrives, the drain D of field effect transistor FET and the raceway groove conducting between the source S, the electric current I of major loop DCirculation, high voltage package produces high voltage pulse U; When end-of-pulsing, the drain D of field effect transistor FET and the blocking-up of the raceway groove between the source S, the electric current I of major loop D=0, high voltage pulse U=0.So go round and begin again, can constantly provide high voltage pulse U for system.
When the plasma apparatus operate as normal, under the driving of described high voltage pulse U, the pulse current of corona discharge is I between positive electrode A and the negative electrode K; When insulation porcelain joint 10 short circuits of plasma apparatus are self-cleaning, pulse current I will rise to I Short circuitIt is, apparent that you easily see I Short circuit>>I
In order to realize following two purposes: 1, system can guarantee that the 10 implementation short circuits of insulation porcelain joint are self-cleaning; 2, reduce the electric current I of insulation porcelain joint 10 short circuits when self-cleaning as far as possible Short circuit, in order to avoid because of I Short circuitExcessive and damage for example high voltage package etc. of related device, the utility model has been taked following technical measures:
1, adopts aforesaid " step-down and current-limiting circuit 201 ", even r occurs with short circuit current limitation function AbThe extreme case of ≈ 0, the input current i of system 0Also be limited in i Short circuit≈ j2202 л F C 0Limited range in and unlimited increase → ∞ not
2, system is respectively equipped with the feedback circuit of carrying out following negative feedback step in major loop and pulse unit, strangulation the electric current I of insulation porcelain joint 10 (in the practical application, this porcelain connector has many, and one in picture is illustrated among the figure) when short circuit is self-cleaning Short circuitValue:
(1), 10 short circuits of insulation porcelain joint self-cleaning → the impedance r that presents between a, b Ab↓ → input current i 0The pressure drop u at ↑ → step-down and current-limiting circuit 201 two ends cVoltage u after ↑ → step-down and current-limiting circuit 201 step-downs 0↓ → major loop direct voltage U1 ↓ → electric current I of the major loop of the field effect transistor of flowing through FET DElectric current I when 10 short circuits of ↓ → insulation porcelain joint are self-cleaning Short circuit↓;
(2), 10 short circuits of insulation porcelain joint self-cleaning → the impedance r that presents between a, b Ab↓ → input current i 0The pressure drop u at ↑ → step-down and current-limiting circuit 201 two ends cVoltage u after ↑ → step-down and current-limiting circuit 201 step-downs 0The direct voltage U2 of ↓ → pulse unit ↓ → the pulse voltage amplitude U3 of pulse generator 204 output ↓ → drain D of field effect transistor FET and the channel resistance R between the source S DSThe electric current I of the major loop of ↑ → flow through field effect transistor FET DElectric current I when 10 short circuits of ↓ → insulation porcelain joint are self-cleaning Short circuit↓;
Preferably: the feedback circuit of described major loop is made up of step-down and current-limiting circuit 201, major loop DC power supply 202, high voltage package T, field effect transistor FET; The feedback circuit of described pulse unit is made up of step-down and current-limiting circuit 201, pulse unit DC power supply 203, pulse generator 204, field effect transistor FET.
Owing to taked above technical measures, be AC220V, decompression capacitor C at input voltage 0Detection system under the condition of=30 μ F has reached following actual effect:
1, during operate as normal, the pulse current I=4.2mA of corona discharge between positive electrode A (in the practical application, this positive electrode has multi-disc, draws a slice among the figure and illustrates) and the negative electrode K;
2, will use the lead short circuit between positive electrode A and the negative electrode K, the short circuit pulse electric current I Short circuit=9.1mA;
3, use lead sequential short circuit 24 hours, the equal operate as normal of system, short circuit pulse electric current I between positive electrode A and the negative electrode K Short circuitAll be maintained constant current 9.1mA, the design object of constant current when having reached short circuit.
Fig. 5 is the circuit theory diagrams of the utility model preferred embodiment, among the figure:
Decompression capacitor C 0And discharge resistance R 0Formed step-down and current-limiting circuit 201, and, described decompression capacitor C 0With described discharge resistance R 0After the parallel connection, an end is connected with 2 ends of AC220V input, and the other end is connected with major loop DC power supply circuit 202 and pulse unit DC power supply 203.
The first diode D1, the second diode D2, the 3rd diode D3, the 4th diode D4, first capacitor C 1, the second resistance C2, the 3rd resistance C3, the 9th resistance C9 and inductance L have been formed major loop DC power supply 202; Wherein: the first diode D1, the second diode D2, the 3rd diode D3, the 4th diode D4 have formed bridge rectifier, and first capacitor C 1, second capacitor C 2, the 3rd capacitor C 3, the 9th capacitor C 9, inductance L have been formed the ∏ mode filter; And the anodal of the negative pole of the second diode D2, the 4th diode D4 all is connected with current-limiting circuit 201 with step-down; The anodal of the negative pole of the first diode D1, the 3rd diode D3 all is connected with 1 end of AC220V input; The negative pole of the negative pole of the 3rd diode D3, the 4th diode D4, first capacitor C 1, second capacitor C 2 end separately all are connected with an end of inductance L; The other end of inductance L, the 3rd, the 9th capacitor C 3, a C9 end separately all connect the anode of the direct voltage U1 of this " major loop DC power supply 202 " output; Separately negative pole of separately the other end of separately positive pole of the first diode D1, the second diode D2, first capacitor C 1, the 3rd capacitor C 3, second capacitor C 2, the 9th capacitor C 9, the negative terminal of direct voltage U1 all are connected with circuit board ground.
The primary coil of major loop DC power supply 202, high voltage package T, the field effect transistor FET (IRFP460 or IRFP450) that uses as switching tube have formed major loop; And, 4 ends of the primary coil of the positive termination high voltage package T of the direct voltage U1 of major loop DC power supply 202 outputs, the drain D of 3 termination field effect transistor FET of the primary coil of high voltage package T, the source S connection circuit plate ground of field effect transistor FET.
The 4th capacitor C 4, the 5th capacitor C 5, the 6th capacitor C 6, the 7th capacitor C 7, the 5th diode D5, the 6th diode D6, the 7th diode D7, the 8th diode D8, first resistance R 1, second resistance R 2, the 3rd resistance R 3, voltage stabilizing didoe DW has formed pulse unit DC power supply 203; Wherein: second resistance R 2 is 4 in parallel with the 4th capacitor C, first resistance R 1 and the 5th capacitor C 5 have composed in parallel symmetrical reduction voltage circuit; The 5th diode D5, the 6th diode D6, the 7th diode D7, the 8th diode D8 have formed bridge rectifier; The 6th capacitor C 6, the 7th capacitor C 7, voltage stabilizing didoe DW, the 3rd resistance R 3 have been formed filter regulator circuit; And second resistance R 2 is with after the 4th capacitor C 4 is in parallel, and an end is connected with current-limiting circuit 201 with step-down, and the other end is connected with the negative pole of the 6th diode D6 and the positive pole of the 8th diode D8; First resistance R 1 is with after the 5th capacitor C 5 is in parallel, and an end is connected with 1 end of AC220V input, and the other end is connected with the negative pole of the 5th diode D5 and the positive pole of the 7th diode D7; The negative pole of the 7th diode D7, the 8th diode D8, an end of the 6th capacitor C 6, the 3rd resistance R 3, the positive pole of the 7th capacitor C 7 all connect the anode of the direct voltage U2 of this " pulse unit DC power supply 203 " output; The negative pole of another termination voltage stabilizing didoe DW of the 3rd resistance R 3; The positive pole of the other end of the negative pole of the positive pole of voltage stabilizing didoe DW, the 7th capacitor C 7, the 6th capacitor C 6, the 5th diode D5, the 6th diode D6, the negative terminal of direct voltage U2 all are connected with circuit board ground.
Further: when system's operate as normal, the voltage stabilizing state that described voltage stabilizing didoe DW is a reverse breakdown; When system " self-cleaning " is porcelain connector 10 short circuits when self-cleaning, the voltage at described voltage stabilizing didoe DW two ends is less than the magnitude of voltage of its reverse breakdown, and it is approximate open-circuit condition, and at this moment, it does not have pressure stabilization function to direct voltage U2.
The 4th resistance R 4, the 5th resistance R 5, the 6th resistance R 6, the 9th diode D9, the tenth diode D10, the first potentiometer VR1, the second potentiometer VR2, the 8th capacitor C 8, ambipolar transient voltage suppresses diode VD, and integrated transporting discharging IC1 (LM393) has formed pulse generator 204; It is characterized in that: the anode of the 5th resistance R 5-termination direct voltage U2, an end of another termination the 4th resistance R 4 and in-phase input end 3 pin of integrated transporting discharging IC1; The other end connection circuit plate ground of the 4th resistance R 4; One end of the end of the first potentiometer VR1, the second potentiometer VR2, the 8th capacitor C 8 all is connected with inverting input 2 pin of integrated transporting discharging IC1; The other end connection circuit plate ground of the 8th capacitor C 8; The positive pole of another termination the 9th diode D9 of the first potentiometer VR1; The negative pole of another termination the tenth diode D10 of the second potentiometer VR2; The end that the Gate utmost point G of the positive pole of the negative pole of the 9th diode D9, the tenth diode D10, field effect transistor FET, the 6th resistance R 6 and ambipolar transient voltage suppress diode VD all is connected with output 1 pin of integrated transporting discharging IC1; The anode of another termination direct voltage U2 of the 6th resistance R 6; 8 pin of integrated transporting discharging IC1 also connect the anode of direct voltage U2; 4 pin of integrated transporting discharging IC1, ambipolar transient voltage suppress the also equal connection circuit plate ground of the other end of diode VD.
In the present embodiment, the positive termination positive electrode A of high voltage pulse U, negative terminal meets negative electrode K, and negative electrode K connects the earth, is the positive high voltage connection; Also can adopt:, become the positive termination grounding electrode K of U, the negative high voltage connection of negative terminal receiving electrode A the polarity reversal (polarity of high voltage pulse U is also switched) of high voltage silicon stack D thereupon.The operation principle of these two kinds of connections is identical.
In conjunction with Fig. 5, present embodiment has following technical characterictic:
One, is provided with in the described pulse unit DC power supply 203 by the 4th capacitor C 4 and second resistance R, 2 in parallel, the 5th capacitor C 5 and first resistance R, the 1 symmetrical reduction voltage circuit of forming in parallel.Its course of work is:
Input 2 ends at AC220V are that high level, 1 end are that low level AC220V exchanges positive half cycle: the direct current Ip of pulse unit DC power supply 203 outputs is logical by following path flow:
Figure DEST_PATH_GSB00000517978400121
Input 2 ends at AC220V are that low level, 1 end are the AC220V interchange negative half period of high level: the direct current Ip of pulse unit DC power supply 203 outputs presses following road through circulating:
Contrast direct current Ip exchanges positive half cycle at AC220V, AC220V exchanges the circulation flow path warp under the negative half period two states, be not difficult to find: the impedance phase that direct current Ip is subjected under this two states is same, so it equates in the value that AC220V exchanges under positive half cycle, the AC220V interchange negative half period two states.This result establishes the advantage that symmetrical reduction voltage circuit brings in the pulse unit DC power supply 203.
Two, pulsewidth, duty ratio, the repetition rate of the pulse train just can regulating impulse generator 204 exported of the value of regulating the first potentiometer VR1, the second potentiometer VR2.
It is the voltage comparator of core that described pulse generator 204 can be understood as with integrated transporting discharging IC1, and its course of work is:
System boot produces reference voltage U31 on 3 pin of IC1 and since this moment the 8th capacitor C 8 two ends voltage be the reference voltage U31 that voltage U 21 on 2 pin of IC1 is lower than 3 pin, therefore, 1 pin of IC1 output high level (being pulse voltage amplitude U3); To 8 chargings of the 8th capacitor C, voltage U 21 therefore and progressively raises this high level by the tenth diode D10 and the second potentiometer VR2, when U21>U31, and the 1 pin output low level of IC1 (at this moment, 1 pin is by the internal circuit and the connection of circuit board ground of IC1); Cause the 8th capacitor C 8 therefore and progressively to reduce by the 9th diode D9 and first potentiometer VR1 discharge, voltage U 21, when U21<U31,1 pin of IC1 is exported high level once more.So go round and begin again, pulse generator 204 is with regard to the required pulse train of output system work.
By observing the course of work of pulse generator 204, just be not difficult to draw the conclusion of " pulsewidth, duty ratio, the repetition rate of the pulse train that the value of regulating first, second potentiometer VR1, VR2 just can regulating impulse generator 204 be exported ".
Three, system design following two negative feedback steps, strangulation the electric current I of insulation porcelain joint 10 short circuits when self-cleaning Short circuitValue:
A, 10 short circuits of insulation porcelain joint be self-cleaning → i 0↑ → decompression capacitor C 0The pressure drop u at two ends cAlternating voltage u after ↑ → step-down and current-limiting circuit 201 step-downs 0↓ → major loop direct voltage U1 ↓ → electric current I of major loop D↓ → I Short circuit
B, 10 short circuits of insulation porcelain joint be self-cleaning → i 0↑ → u c↑ → u 0The direct voltage U2 of ↓ → pulse unit ↓ → the pulse voltage amplitude U3 of pulse generator 204 output ↓ → drain D of field effect transistor FET and the channel resistance RDS between the source S ↑ → I D↓ → I Short circuit
Four, the two ends of the Gate utmost point G of field effect transistor FET, source S and be connected to ambipolar transient voltage and suppress diode VD can prevent that strong jamming from damaging field effect transistor FET.
Need to prove: above-described ambipolar transient voltage suppresses diode, also can replace with piezo-resistance.
In conjunction with Fig. 5, the course of work of present embodiment is again: the voltage u of AC220V (or AC110V, AC380V) after step-down and current-limiting circuit 201 step-downs 0Be divided into two the tunnel, the one tunnel through 202 rectifications of major loop DC power supply, filtering, exported direct voltage U1; Direct voltage U1 has been exported through pulse unit DC power supply 203 step-down and rectification once more, filtering, voltage stabilizing in another road.Pulse generator 204 generation amplitudes are the pulse of U3, and this pulse is applied on the Gate utmost point G of field effect transistor FET, and major loop has just produced pulse current I D, this pulse current I DFlow into the primary coil of high voltage package T, high voltage package has just produced the high voltage pulse U between the negative electrode K that is applied to positive electrode A and connects the earth.Again in conjunction with Fig. 2, when system's operate as normal, positive electrode A and connect corona discharge between the negative electrode K of the earth, discharging current is pulse current I 01When system " self-cleaning " is porcelain connector 10 short circuits when self-cleaning, short circuit current I Short circuitBe pulse current I 02

Claims (5)

1. the high-voltage pulse power source of constant current during a short circuit, its positive electrode (A) by step-down and current-limiting circuit (201), major loop DC power supply (202), pulse unit DC power supply (203), pulse generator (204), high voltage package (T), field effect transistor (FET), insulation porcelain joint (10), plasma generator, the negative electrode (K) that connects the earth are formed; It is characterized in that: the 1 termination major loop DC power supply (202) and the pulse unit DC power supply (203) of AC220V input, the other end 2 termination step-downs and current-limiting circuit (201), the output termination major loop DC power supply (202) of step-down and current-limiting circuit (201) and pulse unit DC power supply (203), one end of the primary coil of the output termination high voltage package (T) of major loop DC power supply (202), the drain D of another termination field effect transistor (FET) of the primary coil of high voltage package (T), the positive electrode (A) of the positive termination gas ions generator of the high voltage pulse U of high voltage package (T) output, negative terminal connects negative electrode (K); The output termination pulse generator (204) of pulse unit DC power supply (203), the grid G of the output termination field effect transistor (FET) of pulse generator (204); The equal connection circuit plate of the source S ground of described major loop DC power supply (202), pulse unit DC power supply (203), pulse generator (204), field effect transistor (FET).
2. the high-voltage pulse power source of constant current is characterized in that: the alternating voltage (u of AC220V after step-down and current-limiting circuit (201) step-down during short circuit as claimed in claim 1 0) be divided into two tunnel: one tunnel input major loop, another input pulse unit, road; Described major loop is made up of primary coil, the field effect transistor (FET) of major loop DC power supply (202), high voltage package (T); Described pulse unit is made up of pulse unit DC power supply (203), pulse generator (204).
3. the high-voltage pulse power source of constant current is characterized in that: decompression capacitor (C during short circuit as claimed in claim 1 0) and discharge resistance (R 0) formed step-down and current-limiting circuit (201), and, described decompression capacitor (C 0) and described discharge resistance (R 0) after the parallel connection, an end is connected with 2 ends of AC220V input, the other end is connected with major loop DC power supply (202) and pulse unit DC power supply (203).
4. the high-voltage pulse power source of constant current during short circuit as claimed in claim 1, it is characterized in that: the 4th electric capacity (C4), the 5th electric capacity (C5), the 6th electric capacity (C6), the 7th electric capacity (C7), the 5th diode (D5), the 6th diode (D6), the 7th diode (D7), the 8th diode (D8), first resistance (R1), second resistance (R2), the 3rd resistance (R3), voltage stabilizing didoe (DW) has been formed pulse unit DC power supply (203); Wherein: second resistance (R2) is in parallel with the 4th electric capacity (C4), first resistance (R1) has composed in parallel symmetrical reduction voltage circuit with the 5th electric capacity (C5); The 5th diode (D5), the 6th diode (D6), the 7th diode (D7), the 8th diode (D8) have been formed bridge rectifier; The 6th electric capacity (C6), the 7th electric capacity (C7), voltage stabilizing didoe (DW), the 3rd resistance (R3) have been formed filter regulator circuit; And second resistance (R2) is with after the 4th electric capacity (C4) is in parallel, and an end is connected with current-limiting circuit (201) with step-down, and the other end is connected with the negative pole of the 6th diode (D6) and the positive pole of the 8th diode (D8); First resistance (R1) is with after the 5th electric capacity (C5) is in parallel, and an end is connected with 1 end of AC220V input, and the other end is connected with the negative pole of the 5th diode (D5) and the positive pole of the 7th diode (D7); The negative pole of the 7th diode (D7), the 8th diode (D8), an end of the 6th electric capacity (C6), the 3rd resistance (R3), the positive pole of the 7th electric capacity (C7) all connect the anode of the direct voltage (U2) of these " pulse unit DC power supply (203) " output; The negative pole of another termination voltage stabilizing didoe (DW) of the 3rd resistance (R3); The positive pole of the other end of the negative pole of the positive pole of voltage stabilizing didoe (DW), the 7th electric capacity (C7), the 6th electric capacity (C6), the 5th diode (D5), the 6th diode (D6), the negative terminal of direct voltage (U2) all are connected with circuit board ground.
5. the high-voltage pulse power source of constant current during short circuit as claimed in claim 1, it is characterized in that: the 4th resistance (R4), the 5th resistance (R5), the 6th resistance (R6), the 9th diode (D9), the tenth diode (D10), first potentiometer (VR1), second potentiometer (VR2), the 8th electric capacity (C8), ambipolar transient voltage suppresses diode (VD), and integrated transporting discharging (IC1) has been formed pulse generator (204); And: in-phase input end 3 pin of the anode of the 5th resistance (R5) termination direct voltage (U2), an end of another termination the 4th resistance (R4) and integrated transporting discharging (IC1); The other end connection circuit plate ground of the 4th resistance (R4); One end of one end of first potentiometer (VR1), second potentiometer (VR2), the 8th electric capacity (C8) all is connected with inverting input 2 pin of integrated transporting discharging IC1; The other end connection circuit plate ground of the 8th electric capacity (C8); The positive pole of another termination the 9th diode (D9) of first potentiometer (VR1); The negative pole of another termination the tenth diode (D10) of second potentiometer (VR2); The end that the Gate utmost point G of the positive pole of the negative pole of the 9th diode (D9), the tenth diode (D10), field effect transistor (FET), the 6th resistance (R6) and ambipolar transient voltage suppress diode VD all is connected with output 1 pin of integrated transporting discharging (IC1); The anode of another termination direct voltage (U2) of the 6th resistance (R6); 8 pin of integrated transporting discharging (IC1) also connect the anode of direct voltage (U2); 4 pin of integrated transporting discharging (IC1), ambipolar transient voltage suppress the also equal connection circuit plate ground of the other end of diode (VD).
CN2010206203524U 2010-11-13 2010-11-13 High-voltage pulse power of constant current during the short circuit Expired - Fee Related CN201966803U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102130591A (en) * 2010-11-13 2011-07-20 宁波市镇海华泰电器厂 High-voltage pulse power supply capable of keeping current constant at short circuit
CN102695356A (en) * 2012-03-30 2012-09-26 马鞍山市同力液压设备制造有限公司 Plasma ignition gun ignited by both pulse and radio frequency
CN109889064A (en) * 2019-04-25 2019-06-14 宁波市镇海华泰电器有限公司 Allow the pulsed high voltage generator of load short circuits

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102130591A (en) * 2010-11-13 2011-07-20 宁波市镇海华泰电器厂 High-voltage pulse power supply capable of keeping current constant at short circuit
CN102130591B (en) * 2010-11-13 2013-04-03 宁波市镇海华泰电器厂 High-voltage pulse power supply capable of keeping current constant at short circuit
CN102695356A (en) * 2012-03-30 2012-09-26 马鞍山市同力液压设备制造有限公司 Plasma ignition gun ignited by both pulse and radio frequency
CN102695356B (en) * 2012-03-30 2014-10-29 马鞍山市同力液压设备制造有限公司 Plasma ignition gun ignited by both pulse and radio frequency
CN109889064A (en) * 2019-04-25 2019-06-14 宁波市镇海华泰电器有限公司 Allow the pulsed high voltage generator of load short circuits

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