CN105897015A - PSR constant-current constant-voltage AC/DC chip - Google Patents

PSR constant-current constant-voltage AC/DC chip Download PDF

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Publication number
CN105897015A
CN105897015A CN201610422421.2A CN201610422421A CN105897015A CN 105897015 A CN105897015 A CN 105897015A CN 201610422421 A CN201610422421 A CN 201610422421A CN 105897015 A CN105897015 A CN 105897015A
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CN
China
Prior art keywords
transistor
drain electrode
connects
grid
module
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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
CN201610422421.2A
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Chinese (zh)
Inventor
李迪
陈爽
费春龙
赖睿
董刚
陈韵
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.)
Xidian University
Kunshan Innovation Institute of Xidian University
Original Assignee
Xidian University
Kunshan Innovation Institute of Xidian University
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 Xidian University, Kunshan Innovation Institute of Xidian University filed Critical Xidian University
Priority to CN201610422421.2A priority Critical patent/CN105897015A/en
Publication of CN105897015A publication Critical patent/CN105897015A/en
Pending legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02MAPPARATUS FOR CONVERSION BETWEEN AC AND AC, BETWEEN AC AND DC, OR BETWEEN DC AND DC, AND FOR USE WITH MAINS OR SIMILAR POWER SUPPLY SYSTEMS; CONVERSION OF DC OR AC INPUT POWER INTO SURGE OUTPUT POWER; CONTROL OR REGULATION THEREOF
    • H02M7/00Conversion of ac power input into dc power output; Conversion of dc power input into ac power output
    • H02M7/02Conversion of ac power input into dc power output without possibility of reversal
    • H02M7/04Conversion of ac power input into dc power output without possibility of reversal by static converters
    • H02M7/12Conversion of ac power input into dc power output without possibility of reversal by static converters using discharge tubes with control electrode or semiconductor devices with control electrode
    • H02M7/21Conversion of ac power input into dc power output without possibility of reversal by static converters using discharge tubes with control electrode or semiconductor devices with control electrode using devices of a triode or transistor type requiring continuous application of a control signal
    • H02M7/217Conversion of ac power input into dc power output without possibility of reversal by static converters using discharge tubes with control electrode or semiconductor devices with control electrode using devices of a triode or transistor type requiring continuous application of a control signal using semiconductor devices only
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02MAPPARATUS FOR CONVERSION BETWEEN AC AND AC, BETWEEN AC AND DC, OR BETWEEN DC AND DC, AND FOR USE WITH MAINS OR SIMILAR POWER SUPPLY SYSTEMS; CONVERSION OF DC OR AC INPUT POWER INTO SURGE OUTPUT POWER; CONTROL OR REGULATION THEREOF
    • H02M1/00Details of apparatus for conversion
    • H02M1/08Circuits specially adapted for the generation of control voltages for semiconductor devices incorporated in static converters

Abstract

The invention relates to a PSR constant-current constant-voltage AC/DC chip. The chip comprises a control chip and a PSR flyback type transformer, wherein the control chip comprises a software driving module, a constant-current loop module, a constant-voltage loop module and a soft driving module; the PSR flyback type transformer is connected with the constant-current loop module through a feedback circuit module; the PSR flyback type transformer is connected with the constant-voltage loop module through a sampling circuit module; and the output ends of the constant-current loop module and the constant-voltage loop module are connected with the soft driving module separately. Compared with the prior art, the high-precision constant-current constant-voltage chip design is provided, so that the precision of the output voltage and the output current is greatly improved; and meanwhile, the system has relatively high overall efficiency and stability, so that the chip obtains a relatively high working performance under the coordination and matching of the modules in the chip.

Description

A kind of PSR constant current constant voltage AC/DC chip
Technical field
The present invention relates to constant current constant voltage control chip field, be specifically related to a kind of PSR constant current constant voltage AC/DC chip.
Background technology
In society, daily life and work start increasing use and arrives Electronic equipment.And the function of power management chip is equivalent to " heart " of electronic equipment, it is Electronic equipment plays the conversion to electric energy, distribution, the management function of safety detection and efficient operation. Being developed so far, Switching Power Supply has been widely used in various electronic communication equipments, the most gradually becomes For a kind of key core skill indispensable during hyundai electronics information industry high speed development Art.Along with the development of semiconductor fabrication process technology and updating of integrated circuit technology level, Switch power technology is dry towards high integration, high efficiency, high reliability, low noise and anti-electromagnetism The tradition developing direction such as disturbing and constantly continue development, traditional big electric current rapid charge scheme possesses not Evitable shortcoming: compatible poor, charger cost is high, and volume is big.Quick charge scheme Propose the design of power management chip is proposed new challenge, Switching Power Supply is sent out simultaneously Exhibition has great importance.
Summary of the invention
It is an object of the invention to provide a kind of PSR constant current constant voltage AC/DC chip, it can be effective Solution the problems referred to above, accurately control constant current and the constant voltage precision of output, ensure that system simultaneously Simplification and efficiently.
For achieving the above object, present invention employs techniques below scheme:
A kind of PSR constant current constant voltage AC/DC chip, it is characterised in that: include control chip and PSR flyback transformer, control chip includes software-driven modules, constant current loop module, perseverance Pressure loop module, soft-sphere model module, PSR flyback transformer is by feedback circuit module and perseverance Stream loop module is connected, and SR flyback transformer is by sample circuit module and constant voltage loop Module is connected, the outfan of constant current loop module and constant voltage loop module respectively with floppy drive dynamic model Block is connected.Novel sampling control module and soft-sphere model module, and mistake is also included in chip Press the module such as under-voltage, overheat protector and agitator.
Concrete scheme is: PSR flyback transformer includes by winding NAUX, primary side winding The ancillary coil winding of NP, secondary limit winding NS composition and diode D0, D1;Diode D1 Negative pole divide one end and resistance R3 one end that two-way connects electric capacity C0 respectively, diode D1's The drain electrode of positive pole and primary side winding NP one end equal access power transistor M0, electric capacity C0, electricity The other end of resistance R3 and primary side winding NP is all connected with absorbing circuit, power transistor The grid of M0 connects the G pin of control chip, and the source electrode of power transistor M0 divides two-way respectively Connecting CS pin and one end of resistance RS of control chip, winding NAUX one end connects resistance One end of R1, the other end of resistance R1 is connected with one end of resistance R2, resistance R1, R2 Between the FB pin of contact Access Control chip, resistance RS, resistance R2, winding NAUX The other end all access outer signal;One end of secondary limit winding NS connects the positive pole of diode D0, Diode D0 negative pole divides two-way to connect one end of electric capacity C1, one end of resistance R0 respectively, electricity Hold C1, the other end all other ends with secondary limit winding NS of resistance R0 are connected.Wherein: CS pin feeds back to the shutoff of Current-Limiting Comparator decision power tube for gathering external circuit information, FB pin for feeding back the expression output voltage change after electric resistance partial pressure to control chip Information, G pin is for controlling the power tube M0 of outside.
Sample circuit module includes transistor Vbias, operational amplifier CA, and VDD connects crystal The source electrode of pipe Vbias, the drain electrode of transistor Vbias connects the source electrode of transistor M9, computing The in-phase end of amplifier CA connects the drain electrode of transistor M9, M1, M2, operational amplifier respectively The end of oppisite phase of CA connects the drain electrode of transistor M5, M6, M7, M8 and electric capacity C2's respectively One end, the outfan of operational amplifier CA connects sample information outfan SH, transistor M1 Source electrode divide three tunnels to connect the drain electrode of transistor M3, one end of electric capacity C0, transistor respectively The source electrode of M8, the source electrode of transistor M2 divides three tunnels to connect the source electrode of transistor M7, crystalline substance respectively The drain electrode of body pipe M4 and one end of electric capacity C1, the source electrode of transistor M3, M4, M5, M6 And one end of electric capacity C0, C1, C2 is all connected with junction point A.
Soft-sphere model circuit module includes level switch module, trigger, the two of level switch module Individual drive output connects R, S pin of trigger input respectively, trigger outfan Q pin connects the grid of transistor M1, M3, M5 respectively, the QN pin of trigger outfan Connecting grid and the positive pole of phase inverter CD of transistor M6, M9 respectively, VDD connects crystal The source electrode of pipe M1 and the drain electrode of transistor M4, the drain electrode of transistor M1 connects transistor M2's Source electrode, drain electrode point three tunnels of transistor M2 connect drain electrode and the crystalline substance of transistor M3, M5 respectively The grid of body pipe M4, the source ground of transistor M3, M5, the source electrode of transistor M4 is respectively Connecting drain electrode and one end of resistance R1 of transistor M7, M8, the negative pole of phase inverter CD divides Lian Jie the grid of transistor M7, M8 and the drain electrode of transistor M6, the source of transistor M6 Pole connect VDD, resistance R1 the other end connect resistance R2 one end, transistor M3, M5, M7, The source electrode of M8 and the equal ground connection of the other end of resistance R2, transistor M9, M10, M11, M12 Source electrode connect the grid leak short circuit of VDD, transistor M12, transistor M12 drain electrode point two-way is respectively Connect the drain electrode of transistor M19, M13, the grid leak short circuit of transistor M11, transistor M11 Drain electrode be connected with the drain electrode of transistor M18, the grid of transistor M11 and transistor M10's Grid is connected, and drain electrode point four tunnels of transistor M10 connect the leakage of transistor M15, M16 respectively Pole and the grid of transistor M14, M15, the drain electrode of transistor M9 divides two-way to connect crystalline substance respectively The drain electrode of body pipe M17 and the positive pole of phase inverter CE, the negative pole of phase inverter CE connects transistor The grid of M13, the source electrode of M13 connects the drain electrode of transistor M14, and the negative pole of current source DC is even Meeting VDD, the positive pole of current source DC divides the drain electrode and crystalline substance that four tunnels connect transistor M20 respectively The grid of body pipe M18, M19, M20, the grid of transistor M17 connects feedback voltage V FB, The grid of transistor M16 connect voltage UP, transistor M20, M19, M18, M17, M16, The source grounding of M15, M14.
Level shifting circuit module includes transistor M1, M2, M3, M4 and phase inverter CB, letter Number Driver-logic is respectively connected to positive pole and the grid of transistor M2 of phase inverter CB, instead The negative pole of phase device CB connects the grid of transistor M3, and VCC connects the source of transistor M1, M4 Pole, the source ground of transistor M2, M3, transistor M1 grid, transistor M3, M4 Drain electrode be all connected with DOWN end, transistor M4 grid, transistor M1, M2 drain electrode equal Being connected with UP end, UP end, DOWN end are that the driving signal of this level shifting circuit module is defeated Going out end, signal Driver-logic is drive control signal.
This chip is by the detection demagnetization time thus regulates system operating frequency and realizes one newly The current constant control mode of type, sample circuit module then chooses auxiliary winding demagnetization time interval As the sampled point of feedback voltage at 2/3, and then by error amplifier and design threshold base Accurate error is amplified, and soft-sphere model design includes level switch module, soft-sphere model module and totem pole The grid electrode drive module of structure, is used for reducing switch motion EMI interference and improving efficiency.
The present invention is compared with prior art, it is proposed that a kind of high-precision constant current constant voltage chip designs, The precision making output voltage and output electric current is greatly enhanced.Simultaneity factor has higher whole Engine efficiency, with stable, makes this chip possess higher work under the cooperation of chip inner module Performance.
Accompanying drawing explanation
Fig. 1 is the structural representation of the present invention;
Fig. 2 is the structural representation of flyback transformer;
Fig. 3 is the circuit structure schematic diagram of sample circuit module;
Fig. 4 is the structure principle chart of level shifting circuit module;
Fig. 5 is the structure principle chart of soft-sphere model circuit module.
Detailed description of the invention
In order to make objects and advantages of the present invention clearer, below in conjunction with embodiment to this Invention is specifically described.Should be appreciated that following word is only in order to describe the one of the present invention Or several specific embodiment, the protection domain of not concrete to present invention request is carried out strictly Limit.
The module not being discussed in detail in the present invention, those of ordinary skill in the art can be according to existing The means that technology chips is used are implemented.
Technical scheme that the present invention takes is as it is shown in figure 1, a kind of high accuracy PSR constant current constant voltage AC/DC chip, including PSR flyback transformer, constant current loop module, constant voltage loop module, The modules such as control circuit module, sampling hold circuit module and soft-sphere model.PSR feedback control system Unite by adding ancillary coil winding, utilize feedback voltage and the output voltage of ancillary coil winding Relation output voltage is carried out feedback sample, coordinate the constant current/constant voltage in chip to control loop, Making output have higher precision, the soft start-up process at a slow speed of soft-sphere model ensure that EMI simultaneously, Rapidly switch off design and ensure that work efficiency.
Fig. 2 is flyback transformer, and Controller is the control core that the present invention is to be designed Sheet, control chip has tri-pins of G, FB, CS, CS pin gather external circuit information thus Feed back to Current-Limiting Comparator and determine the shutoff of power tube, what FB pin fed back to chip is through The information representing output voltage change after electric resistance partial pressure, finally from the merit outside the control of G pin Rate pipe M0, electric capacity C0 and resistance R3 are in parallel, and a termination absorbing circuit, another terminates crystal The drain electrode of pipe M0, primary side winding NP mono-terminates absorbing circuit, another termination transistor M0's Drain electrode, the grid of power transistor M0 connects the G pin of control chip, and source electrode connects control chip CS interface, the source electrode of resistance RS mono-termination transistor M0, another terminates outer signal, The positive pole of secondary limit winding NS mono-terminating diode D0, another termination capacitor C0, D0 negative pole connects Electric capacity C0 one end, resistance R0 is in parallel with electric capacity C0, winding NAUX mono-terminating resistor RS's One end, the other end connecting resistance of the other end connecting resistance R2, R2 of other end connecting resistance R1, R1 RS, R1 are connected with the FB end of control chip with the intermediate point of resistance R2.
Fig. 3 is the structure chart of sample circuit, and SH is sample information outfan, and VDD connects transistor The source electrode of Vbias, the drain electrode of Vbias connects the source electrode of transistor M9, the drain electrode of transistor M9 The in-phase end of concatenation operation amplifier CA, the drain electrode of transistor M1 connects the leakage of transistor M9 Pole, its source electrode connects drain electrode and one end of electric capacity C0, the source of transistor M3 of transistor M3 Pole connect electric capacity C0 the other end, transistor M2 drain electrode connect transistor M9 drain electrode and The in-phase end of CA, its source electrode connects source electrode and the drain electrode of transistor M4 of transistor M7, brilliant The source electrode of body pipe M4 connects electric capacity C1 and one end of electric capacity C0, and the other end of electric capacity C1 connects The drain electrode of transistor M4, the source electrode of transistor M8 connects the source electrode of M1, and its drain electrode connects fortune Calculating the end of oppisite phase of amplifier CA, CA end of oppisite phase is also connected with drain electrode and the transistor of transistor M7 The drain electrode of M5, M6, the source electrode of transistor M5 and M6 connects the source electrode of transistor M3 and M4, The two ends of electric capacity C2 connect source electrode and the drain electrode of transistor M5 and M6 respectively.
Fig. 4 is the structure chart of level shifting circuit module, and UP end and DOWN end are this module Driving signal output part, Driver-logic is drive control signal, and VCC connects transistor The source electrode of M1 and M4, transistor M1 grid connects drain electrode and the output down, M1 of transistor M3 The grid of the drain electrode drain electrode and output up, transistor M4 that connect transistor M2 connect M2 Drain electrode, its source electrode connects the drain electrode of transistor M3, and the grid of transistor M2 meets phase inverter CB Positive pole and input signal end, the negative pole of phase inverter CB connects the grid of transistor M3, transistor The source ground of M2 and M3.
Fig. 5 is the structure chart of soft-sphere model circuit, and Driver module is the level conversion in Fig. 4 Module, two drive output connects rest-set flip-flop R and S pin, the source of transistor M1 It is feedback voltage that the drain electrode of pole and transistor M4 meets VDD, VFB, and the grid of transistor M1 connects The Q end of rest-set flip-flop, drain electrode connects the source electrode of transistor M2, and the drain electrode of M2 meets transistor M3 With the drain electrode of M5, the grid of transistor M3 and M5 connects trigger Q end, its source ground Transistor M4 grid connects the drain electrode of M2, and its source electrode connects the drain electrode of transistor M7 and M8, crystal One end of the drain electrode connecting resistance R1 of pipe M7, the other end of resistance R1 connects with resistance R2 one end, The source electrode of transistor M7, M8 and one end ground connection of resistance R2, the grid of transistor M7, M8 Connecing the negative pole of phase inverter CD, phase inverter positive pole connects the QN end of rest-set flip-flop, transistor M6's Source electrode meets VDD, and grid meets QN, and drain electrode connects the negative pole of phase inverter CD, and phase inverter CD positive pole is even Connecing the grid of transistor M9, the source electrode of transistor M9, M10, M11, M12 meets VDD, brilliant The grid leak short circuit of body pipe M12, its drain electrode connects the drain electrode of transistor M19, transistor M19's Grid connects grid and the positive pole of current source DC, the drain electrode of transistor M20 of transistor M20 Connect the positive pole of current source DC, transistor M20, M19, M18, M17, M16, M15, M14 Source ground, the grid leak short circuit of transistor M11, the drain electrode with transistor M18 is connected, brilliant The grid of body pipe M18 connects the positive pole of current source DC, and the grid of transistor M10 connects transistor The grid of M11, its drain electrode connects the drain electrode of transistor M16, and the drain electrode of transistor M9 connects The positive pole of phase inverter CE and the drain electrode of transistor M17, the negative pole of phase inverter CE connects transistor The grid of M13, the drain electrode of M13 connects the drain electrode of transistor M12, and its source electrode connects transistor M14 Drain electrode, the grid of transistor M14, M15 connects the drain electrode of transistor M10, transistor M15 Drain electrode connect transistor M10 and M16 drain electrode.
In a word, the present invention can effectively reduce cost and simplify system design, improves simultaneously The defect that PSR technology is intrinsic, it is achieved that higher constant current accuracy and output voltage precision, Termination is closed cooperating of modules and is achieved a high efficiency constant current constant voltage control chip. The above is only the preferred embodiment of the present invention, it is noted that for the art Those of ordinary skill for, after knowing content described in the present invention, without departing from the present invention On the premise of principle, it is also possible to it is made some equal conversion and replacement, and these convert on an equal basis Also should be regarded as belonging to protection scope of the present invention with substituting.

Claims (6)

1. a PSR constant current constant voltage AC/DC chip, it is characterised in that: include control chip and PSR flyback transformer, control chip includes software-driven modules, constant current loop module, constant voltage Loop module, soft-sphere model module, PSR flyback transformer is by feedback circuit module and constant current ring Road module is connected, and SR flyback transformer is connected with constant voltage loop module by sample circuit module Connecing, constant current loop module is connected with soft-sphere model module respectively with the outfan of constant voltage loop module.
PSR constant current constant voltage AC/DC chip the most according to claim 1, it is characterised in that: PSR flyback transformer includes being made up of winding NAUX, primary side winding NP, secondary limit winding NS Ancillary coil winding and diode D0, D1;The negative pole of diode D1 divides two-way to connect electricity respectively Holding one end and resistance R3 one end of C0, positive pole and primary side winding NP one end of diode D1 all connect Enter the drain electrode of power transistor M0, electric capacity C0, resistance R3 and the other end of primary side winding NP All being connected with absorbing circuit, the grid of power transistor M0 connects the G pin of control chip, The source electrode of power transistor M0 divides CS pin that two-way connects control chip respectively and resistance RS's One end, winding NAUX one end connects one end of resistance R1, the other end of resistance R1 and resistance R2 One end be connected, the FB pin of the contact Access Control chip between resistance R1, R2, resistance RS, resistance R2, the other end of winding NAUX all access outer signal;One end of secondary limit winding NS Connect the positive pole of diode D0, diode D0 negative pole divide one end that two-way connects electric capacity C1 respectively, One end of resistance R0, electric capacity C1, resistance R0 the other end all with the other end of time limit winding NS It is connected.Wherein: CS pin is used for gathering external circuit information and feeds back to Current-Limiting Comparator decision power The shutoff of pipe, FB pin is for feeding back the expression output voltage after electric resistance partial pressure to control chip The information of change, G pin is for controlling the power tube M0 of outside.
PSR constant current constant voltage AC/DC chip the most according to claim 1, it is characterised in that: Sample circuit module includes transistor Vbias, operational amplifier CA, and VDD connects transistor Vbias Source electrode, transistor Vbias drain electrode connect transistor M9 source electrode, operational amplifier CA's In-phase end connects the drain electrode of transistor M9, M1, M2 respectively, and the end of oppisite phase of operational amplifier CA divides Lian Jie the drain electrode of transistor M5, M6, M7, M8 and one end of electric capacity C2, operational amplifier The outfan of CA connects sample information outfan SH, and the source electrode of transistor M1 divides three tunnels to connect respectively The drain electrode of transistor M3, one end of electric capacity C0, the source electrode of transistor M8, the source of transistor M2 Ji Fen tri-tunnel connects the source electrode of transistor M7, the drain electrode of transistor M4 and electric capacity C1's respectively One end, the source electrode of transistor M3, M4, M5, M6 and one end of electric capacity C0, C1, C2 all with Junction point A is connected.
PSR constant current constant voltage AC/DC chip the most according to claim 1, it is characterised in that: Soft-sphere model circuit module includes level switch module, trigger, two drivings of level switch module Outfan connects R, S pin of trigger input respectively, and the Q pin of trigger outfan divides Not Lian Jie the grid of transistor M1, M3, M5, the QN pin of trigger outfan connects crystalline substance respectively The grid of body pipe M6, M9 and the positive pole of phase inverter CD, VDD connect transistor M1 source electrode and The drain electrode of transistor M4, the drain electrode of transistor M1 connects the source electrode of transistor M2, transistor M2 Drain electrode point three tunnels connect drain electrode and the grid of transistor M4 of transistor M3, M5 respectively, brilliant The source ground of body pipe M3, M5, the source electrode of transistor M4 connects transistor M7, M8 respectively Drain electrode and one end of resistance R1, the negative pole of phase inverter CD connects transistor M7, M8 respectively Grid and the drain electrode of transistor M6, the source electrode of transistor M6 connects VDD, the other end of resistance R1 Connect the another of one end of resistance R2, the source electrode of transistor M3, M5, M7, M8 and resistance R2 The equal ground connection in one end, the source electrode of transistor M9, M10, M11, M12 meets VDD, transistor M12's Grid leak short circuit, transistor M12 drain electrode point two-way connects the drain electrode of transistor M19, M13 respectively, The grid leak short circuit of transistor M11, the drain electrode of transistor M11 is connected with the drain electrode of transistor M18, The grid of transistor M11 is connected with the grid of transistor M10, and the drain electrode of transistor M10 divides four tunnels Connect drain electrode and the grid of transistor M14, M15, the transistor of transistor M15, M16 respectively The drain electrode point two-way of M9 connects drain electrode and the positive pole of phase inverter CE of transistor M17 respectively, anti-phase The negative pole of device CE connects the grid of transistor M13, and the source electrode of M13 connects the drain electrode of transistor M14, The negative pole of current source DC connects VDD, and the positive pole of current source DC divides four tunnels to connect transistor M20 respectively Drain electrode and the grid of transistor M18, M19, M20, the grid of transistor M17 connects feedback The grid of voltage VFB, transistor M16 connect voltage UP, transistor M20, M19, M18, M17, The source grounding of M16, M15, M14.
PSR constant current constant voltage AC/DC chip the most according to claim 1, it is characterised in that: Level shifting circuit module includes transistor M1, M2, M3, M4 and phase inverter CB, signal Driver-logic is respectively connected to positive pole and the grid of transistor M2, the phase inverter of phase inverter CB The negative pole of CB connects the grid of transistor M3, and VCC connects the source electrode of transistor M1, M4, crystal The source ground of pipe M2, M3, transistor M1 grid, transistor M3, M4 drain electrode all and DOWN End is connected, and transistor M4 grid, the drain electrode of transistor M1, M2 are all connected with UP end, UP End, DOWN end are the driving signal output part of this level shifting circuit module, signal Driver-logic is drive control signal.
PSR constant current constant voltage AC/DC chip the most according to claim 1, it is characterised in that: Also include over-and under-voltage module, overheat protector module and oscillator module.
CN201610422421.2A 2016-06-13 2016-06-13 PSR constant-current constant-voltage AC/DC chip Pending CN105897015A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201610422421.2A CN105897015A (en) 2016-06-13 2016-06-13 PSR constant-current constant-voltage AC/DC chip

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Application Number Priority Date Filing Date Title
CN201610422421.2A CN105897015A (en) 2016-06-13 2016-06-13 PSR constant-current constant-voltage AC/DC chip

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108196184A (en) * 2018-01-25 2018-06-22 昆明理工大学 A kind of XL series boost chip detection device and method
CN112542954A (en) * 2020-12-16 2021-03-23 南京微盟电子有限公司 Adaptive soft drive control circuit suitable for DCM
CN112564511A (en) * 2020-12-16 2021-03-26 南京微盟电子有限公司 Self-adaptive soft drive control circuit suitable for CCM
CN112737339A (en) * 2020-12-16 2021-04-30 南京微盟电子有限公司 Self-adaptive soft drive control circuit

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CN103840673A (en) * 2012-11-20 2014-06-04 德克萨斯仪器股份有限公司 Flyback power supply regulation apparatus and methods
CN104300792A (en) * 2014-04-22 2015-01-21 上海华力微电子有限公司 A current detection circuit and an electric current loop control circuit comprising the current detection circuit
US20150155704A1 (en) * 2013-12-02 2015-06-04 Rohm Co., Ltd. Switching converter, control circuit thereof, ac/dc converter, power adapter and electronic device

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Publication number Priority date Publication date Assignee Title
CN101795077A (en) * 2010-04-12 2010-08-04 Bcd半导体制造有限公司 A kind of device of control change device output current voltage response
JP2013011446A (en) * 2011-06-28 2013-01-17 Nec Corp Power consumption detection circuit of electronic apparatus and power consumption detection method
CN103840673A (en) * 2012-11-20 2014-06-04 德克萨斯仪器股份有限公司 Flyback power supply regulation apparatus and methods
US20150155704A1 (en) * 2013-12-02 2015-06-04 Rohm Co., Ltd. Switching converter, control circuit thereof, ac/dc converter, power adapter and electronic device
CN104300792A (en) * 2014-04-22 2015-01-21 上海华力微电子有限公司 A current detection circuit and an electric current loop control circuit comprising the current detection circuit

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108196184A (en) * 2018-01-25 2018-06-22 昆明理工大学 A kind of XL series boost chip detection device and method
CN108196184B (en) * 2018-01-25 2023-06-20 昆明理工大学 XL series boost chip detection device and method
CN112542954A (en) * 2020-12-16 2021-03-23 南京微盟电子有限公司 Adaptive soft drive control circuit suitable for DCM
CN112564511A (en) * 2020-12-16 2021-03-26 南京微盟电子有限公司 Self-adaptive soft drive control circuit suitable for CCM
CN112737339A (en) * 2020-12-16 2021-04-30 南京微盟电子有限公司 Self-adaptive soft drive control circuit

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