CN203747677U - Power supply device suitable for pulse output load - Google Patents

Power supply device suitable for pulse output load Download PDF

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Publication number
CN203747677U
CN203747677U CN201420035412.4U CN201420035412U CN203747677U CN 203747677 U CN203747677 U CN 203747677U CN 201420035412 U CN201420035412 U CN 201420035412U CN 203747677 U CN203747677 U CN 203747677U
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CN
China
Prior art keywords
circuit
voltage
pulse output
connects
input
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Withdrawn - After Issue
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CN201420035412.4U
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Chinese (zh)
Inventor
林磊
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SHANGHAI LASERON CO Ltd
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SHANGHAI LASERON CO Ltd
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Priority to CN201420035412.4U priority Critical patent/CN203747677U/en
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Abstract

The utility model discloses a power supply device suitable for a pulse output load and comprises the power supply device suitable for the pulse output load. The power supply device suitable for the pulse output load comprises an alternating current power supply, a bridge heap rectifying circuit, a voltage amplitude detection control circuit, a stating circuit, a driving circuit, a switch circuit, a current limiting circuit, a first voltage detection circuit, a second voltage detection circuit, an output inductor, an energy storing capacitor and a load. The power supply device suitable for the pulse output load is simple in circuit, use of the capacitor is avoided after rectifying, and starting surge current is avoided; the energy storing capacitor is concentrated at an output end, and electricity is directly taken from the capacitor when the load is driven; as the inner resistance of the capacitor is very low, very high output driving current and well transient response can be obtained. The energy capacitor is concentrated at the output end, the very high driving current and well transient response can be obtained, and the pulse output load can be adapted to; the voltage amplitude detection control circuit is adopted, the starting charging time can be selected, and the pulse interference caused by the surge current is avoided.

Description

A kind of supply unit that adapts to pulse output loading
Technical field
The utility model relates to a kind of supply unit, relates in particular to a kind of supply unit that adapts to pulse output loading.
Background technology
At present, supply unit adopts after the rectification of bridge heap conventionally to capacitor charging energy storage, then by step-down chip, drops to the supply voltage supply load needing.For the load of impulse type large driven current density, need jumbo storage capacitor.But jumbo storage capacitor can produce surge current in the moment of switching on, and fuse and device are caused to heavy current impact, cause switch contact sparking and device tired, reduce useful life; And jumbo storage capacitor, will have jumbo electric capacity at step-down chip output, step-down chip output electric capacity is crossed conference and is caused the unstable of loop.Conventional integrated DC-DC voltage stabilizing chip is withstand voltage generally below 60VDC, and its application scenario is subject to supply voltage restriction.
Utility model content
The purpose of this utility model is to overcome the defect of prior art, and a kind of supply unit that adapts to pulse output loading is provided, and circuit is simple, avoids using electric capacity after rectification, has avoided start surge current; Because the internal resistance of electric capacity is very low, therefore can obtain very high output driving current and good transient response; Storage capacitor concentrates on output, can obtain very high drive current and good transient response, adapts to pulse output loading.
The technical scheme that realizes above-mentioned purpose is:
The utility model discloses a kind of supply unit that adapts to pulse output loading, comprise AC power, bridge heap rectification circuit, voltage inspection width control circuit, start-up circuit, drive circuit, switching circuit, current-limiting circuit, the first voltage detecting circuit, second voltage testing circuit, outputting inductance, storage capacitor and load, wherein: described current-limiting circuit comprises galvanometer circuit and inspection leakage resistance, described switching circuit comprises input, output and control end, wherein:
Described AC power one end connects with first end, the voltage inspection width control circuit of bridge heap rectification circuit simultaneously; The second end, voltage inspection width control circuit that the described AC power other end is relative with bridge heap rectification circuit first end connect;
The 3rd end ground connection of described bridge heap rectification circuit;
The 4th relative end of the 3rd end of described bridge heap rectification circuit connects with inspection leakage resistance one end, the input of galvanometer circuit and the input of start-up circuit simultaneously, and the input of described switching circuit connects with the inspection other end of leakage resistance and the input of galvanometer circuit simultaneously;
The input while of described drive circuit connects with the output of the output of start-up circuit, the first voltage detecting circuit, voltage inspection width control circuit and galvanometer circuit, and the output of described drive circuit connects with the control end of switching circuit;
The input of described start-up circuit also connects with second voltage testing circuit simultaneously;
Described outputting inductance one end connects with the output of switching circuit, and the other end connects with the first voltage detecting circuit, second voltage testing circuit, storage capacitor and load simultaneously, described load ground connection.
The supply unit of above-mentioned adaptation pulse output loading, wherein, described switching circuit is the bipolar transistor of P polarity.
The supply unit of above-mentioned adaptation pulse output loading, wherein, described switching circuit is the field effect transistor of P polarity.
The supply unit of above-mentioned adaptation pulse output loading, wherein, described switching circuit is controllable silicon.
The supply unit of above-mentioned adaptation pulse output loading, wherein, described switching circuit is relay.
The beneficial effects of the utility model are: the utility model provides a kind of supply unit that adapts to pulse output loading, and circuit is simple, avoids using electric capacity after rectification, has avoided start surge current; With a small amount of element, just form high withstand voltage voltage stabilizing circuit and realized the functions such as soft start, current limit, error protection; Storage capacitor concentrates on output, while driving load, directly from electric capacity power taking, because the internal resistance of electric capacity is very low, therefore can obtain very high output driving current and good transient response; Adopt voltage inspection width control circuit, can select to open the charging interval impulse disturbances of having avoided surge current to cause.
Accompanying drawing explanation
Fig. 1 is a kind of circuit diagram that adapts to the supply unit of pulse output loading of the present utility model.
Embodiment
Below in conjunction with accompanying drawing, the utility model is described in further detail.
Refer to Fig. 1, a kind of supply unit that adapts to pulse output loading of the utility model, comprise AC power 1, bridge heap rectification circuit 2, voltage inspection width control circuit 3, start-up circuit 4, drive circuit 5, switching circuit 6, the first voltage detecting circuit 7, second voltage testing circuit 8, outputting inductance L9, storage capacitor C10 and load 11, wherein, current-limiting circuit comprises galvanometer circuit 12 and inspection leakage resistance R13, and switching circuit 6 comprises input 601, output 602 and control end 603.
AC power 1 one end connects with first end, the voltage inspection width control circuit 3 of bridge heap rectification circuit 2 simultaneously; The second end, voltage inspection width control circuit 3 that AC power 1 other end is relative with bridge heap rectification circuit 2 first ends connect.
The 3rd end ground connection of bridge heap rectification circuit 2.
The 4th relative end of the 3rd end of bridge heap rectification circuit 2 connects with inspection leakage resistance R13 one end, the input of galvanometer circuit 12 and the input of start-up circuit 4 simultaneously, and the input of switching circuit 6 connects with the other end of inspection leakage resistance R13 and the input of galvanometer circuit 12 simultaneously.
The input while of drive circuit 5 connects with the output of the output of start-up circuit 4, the first voltage detecting circuit 7, voltage inspection width control circuit 3 and galvanometer circuit 12, and the output of drive circuit 5 connects with the control end of switching circuit 6.
The input of start-up circuit 4 also connects with second voltage testing circuit 8 simultaneously.
Outputting inductance L9 one end connects with the output 602 of switching circuit 6, and the other end connects with the first voltage detecting circuit 7, second voltage testing circuit 8, storage capacitor 10 and load 11 simultaneously, load 11 ground connection.
A kind of supply unit that adapts to pulse output loading of the utility model, comprises cabinet device and filtration system, is directly not adopt capacitance energy storage after bridge heap rectification circuit 2, but by the detection to output voltage values, judges control switch circuit 6.When input power peak value surpasses output voltage, AC power 1 is charged by 6 pairs of output capacitances of switching circuit.Voltage in output capacitance reaches required voltage value, with regard to closing switch circuit 6, stops charging.Because alternating voltage is after the heap rectification circuit 2 of passing a bridge, frequency frequency multiplication is 100Hz, therefore can driving pulse frequency lower than the load of 100Hz.
In circuit, switching circuit 6 can be the bipolar transistor of P polarity, can be the field effect transistor of P polarity, can be controllable silicon, can be relay.Select high withstand voltage device, make that power supply is withstand voltage can reach higher withstand voltage.Inspection leakage resistance R13 and galvanometer circuit 12 form current-limiting circuit, to limit the surge current on circuit, reduce the impact of device.Start-up circuit 5 and second voltage testing circuit 8 form starting up's circuit, start-up circuit 4 turn on-switch circuit 6 when initially powering on.When output voltage is enough to provide the work of output end voltage control circuit, output voltage control automatically switches to the first voltage detecting circuit and controls 7.Start-up circuit 4 adopts soft starting circuit, to avoid the switch rush of current of moment, has avoided switch contact spark phenomenon.Outputting inductance L9 is for reducing switching noise.Voltage inspection width control circuit 3 is the opening time with control switch circuit 6 for detection of input supply voltage, and while having avoided input voltage higher than output capacitance voltage, turn on-switch circuit 6 causes surge current to disturb.
Below embodiment has been described in detail the utility model by reference to the accompanying drawings, and those skilled in the art can make many variations example to the utility model according to the above description.All within spirit of the present utility model and principle, any modification of doing, be equal to replacement, improvement etc., within all should being included in protection range of the present utility model.Thereby some details in embodiment should not form restriction of the present utility model, the utility model will be usingd scope that appended claims defines as protection range of the present utility model.

Claims (5)

1. a supply unit that adapts to pulse output loading, it is characterized in that: the supply unit of described adaptation pulse output loading, comprise AC power, bridge heap rectification circuit, voltage inspection width control circuit, start-up circuit, drive circuit, switching circuit, current-limiting circuit, the first voltage detecting circuit, second voltage testing circuit, outputting inductance, storage capacitor and load, wherein, described current-limiting circuit comprises galvanometer circuit and inspection leakage resistance, described switching circuit comprises input, output and control end, wherein:
Described AC power one end connects with first end, the voltage inspection width control circuit of bridge heap rectification circuit simultaneously; The second end, voltage inspection width control circuit that the described AC power other end is relative with bridge heap rectification circuit first end connect;
The 3rd end ground connection of described bridge heap rectification circuit;
The 4th relative end of the 3rd end of described bridge heap rectification circuit connects with inspection leakage resistance one end, the input of galvanometer circuit and the input of start-up circuit simultaneously, and the input of described switching circuit connects with the inspection other end of leakage resistance and the input of galvanometer circuit simultaneously;
The input while of described drive circuit connects with the output of the output of start-up circuit, the first voltage detecting circuit, voltage inspection width control circuit and galvanometer circuit, and the output of described drive circuit connects with the control end of switching circuit;
The input of described start-up circuit also connects with second voltage testing circuit simultaneously;
Described outputting inductance one end connects with the output of switching circuit, and the other end connects with the first voltage detecting circuit, second voltage testing circuit, storage capacitor and load simultaneously, described load ground connection.
2. the supply unit of adaptation pulse output loading according to claim 1, is characterized in that: described switching circuit is the bipolar transistor of P polarity.
3. the supply unit of adaptation pulse output loading according to claim 1, is characterized in that: described switching circuit is the field effect transistor of P polarity.
4. the supply unit of adaptation pulse output loading according to claim 1, is characterized in that: described switching circuit is controllable silicon.
5. the supply unit of adaptation pulse output loading according to claim 1, is characterized in that: described switching circuit is relay.
CN201420035412.4U 2014-01-21 2014-01-21 Power supply device suitable for pulse output load Withdrawn - After Issue CN203747677U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420035412.4U CN203747677U (en) 2014-01-21 2014-01-21 Power supply device suitable for pulse output load

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420035412.4U CN203747677U (en) 2014-01-21 2014-01-21 Power supply device suitable for pulse output load

Publications (1)

Publication Number Publication Date
CN203747677U true CN203747677U (en) 2014-07-30

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CN201420035412.4U Withdrawn - After Issue CN203747677U (en) 2014-01-21 2014-01-21 Power supply device suitable for pulse output load

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103746571A (en) * 2014-01-21 2014-04-23 上海镭芯微电子有限公司 Power supply device suitable for pulse output load

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103746571A (en) * 2014-01-21 2014-04-23 上海镭芯微电子有限公司 Power supply device suitable for pulse output load
CN103746571B (en) * 2014-01-21 2016-06-08 上海镭芯微电子有限公司 A kind of supply unit adapting to pulse output loading

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

Granted publication date: 20140730

Effective date of abandoning: 20160608

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