CN107702298A - It is provided with the air cooler intelligent power supply control system of triggering enhancing circuit - Google Patents

It is provided with the air cooler intelligent power supply control system of triggering enhancing circuit Download PDF

Info

Publication number
CN107702298A
CN107702298A CN201711076528.7A CN201711076528A CN107702298A CN 107702298 A CN107702298 A CN 107702298A CN 201711076528 A CN201711076528 A CN 201711076528A CN 107702298 A CN107702298 A CN 107702298A
Authority
CN
China
Prior art keywords
electric capacity
triode
resistance
pole
negative pole
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201711076528.7A
Other languages
Chinese (zh)
Inventor
王丹
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.)
Chengdu Jiesheng Technology Co Ltd
Original Assignee
Chengdu Jiesheng Technology Co Ltd
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 Chengdu Jiesheng Technology Co Ltd filed Critical Chengdu Jiesheng Technology Co Ltd
Priority to CN201711076528.7A priority Critical patent/CN107702298A/en
Publication of CN107702298A publication Critical patent/CN107702298A/en
Pending legal-status Critical Current

Links

Abstract

The invention discloses a kind of air cooler intelligent power supply control system for being provided with triggering enhancing circuit, by chip U1, resistance R4, electric capacity C2, temperature decision circuitry, intelligent control circuit, driving enhancing circuit, duplex feeding circuit, and triggering enhancing circuit composition.The present invention provides a kind of air cooler intelligent power supply control system for being provided with triggering enhancing circuit, it can be good at ensureing that product can not automatically switch to stand-by power supply to complete to power in main electricity during normal power supply, the startup and closing of equipment can also be realized automatically according to the temperature change of external environment so that the use of equipment more intelligence with conveniently.

Description

It is provided with the air cooler intelligent power supply control system of triggering enhancing circuit
Technical field
The invention belongs to smart home field, in particular to a kind of air cooler intelligent power supply for being provided with triggering enhancing circuit Control system.
Background technology
The advantages of air cooler is a kind of household electrical appliance, and air cooler combines air-conditioning and electric fan, for example air-conditioning blowout is machine Device wind, and need in the environment of a closing, easily allow people to have the sensation of discomfort, but air cooler can but be opened at one Used in the environment put;Although electric fan is natural wind, but if the wind of that very dirty blowout of residing environment is same very dirty, but It is that most air cooler has basket strainer to cross air filtering, if there is one layer of photocatalyst to play sterilization on basket strainer again Effect, so not have fan so harsh for the requirement to environment.Meanwhile air cooler only has 60-80W's when starting and freezing Power, its watt level is approximate with refrigerator, so not power-consuming using air cooler.
Based on above-mentioned every advantage so that air cooler is gradually received by people, the increase of its usage amount also progressively. But existing air cooler is intelligent not high, equipment can not judge to the temperature of external environment when in use, it is impossible to Intelligence adjusts the operation of itself according to external temperature environment.
The content of the invention
It is an object of the invention to overcome above mentioned problem, there is provided a kind of air cooler for being provided with triggering enhancing circuit intelligently supplies Electric control system, it can be good at ensureing that product can not automatically switch to stand-by power supply with complete in main electricity during normal power supply Into power supply, additionally it is possible to realize the startup and closing of equipment automatically according to the temperature change of external environment so that the use of equipment is more Add intelligence with conveniently.
The purpose of the present invention is achieved through the following technical solutions:
The air cooler intelligent power supply control system of triggering enhancing circuit is provided with, by chip U1, one end is with chip U1's The resistance R4 that TRIG pins are connected, the other end is connected with chip U1 GND pins, the CONT pin phases of positive pole and chip U1 Connection, the electric capacity C2 that is connected with chip U1 GND pins of negative pole, at the same with chip U1 VCC pins, THRES pins and GND The temperature decision circuitry that pin is connected, while the intelligence being connected with chip U1 VCC pins phase, OUT pins and GND pins Control circuit, while the driving enhancing circuit being connected with temperature decision circuitry and intelligent control circuit, with intelligent control circuit The duplex feeding circuit being connected, and the triggering enhancing being connected simultaneously with chip U1 VCC pins and temperature decision circuitry Circuit forms;Wherein, chip U1 model NE555, chip U1 RESET pins are connected with VCC pins, chip U1's THRES pins are connected with TRIG pins;By triode VT101, positive pole enters after resistance R101 with three the duplex feeding circuit The electric capacity C102 that pole pipe VT101 emitter stage is connected, negative pole is connected after resistance R106 with triode VT101 base stage, The electric capacity C103 that positive pole is connected with electric capacity C102 negative pole, negative pole is connected after resistance R102 with electric capacity C102 positive pole, Positive pole is connected with triode VT101 emitter stage, negative pole is sequentially after resistance R105 and diode D102 with resistance R103's It is steady that electric capacity C101, the N pole that positive pole is connected is connected with electric capacity C103 negative pole, P poles are connected with electric capacity C101 negative pole Pressure diode D101, N pole is connected with electric capacity C102 negative pole, negative pole of the P poles with electric capacity C101 after resistance R107 is connected Voltage-regulator diode D103, positive pole is connected with electric capacity C102 negative pole, collection of the negative pole after resistance R108 with triode VT101 The electric capacity C105 that electrode is connected, one end is connected with electric capacity C105 negative pole, the other end after resistance R109 with electric capacity C101 Negative pole be connected, the slide rheostat RP101 that sliding end is connected after resistance R104 with electric capacity C103 negative pole, positive pole with The electric capacity C104 that electric capacity C101 negative pole is connected, negative pole is connected after diode D104 with triode VT101 colelctor electrode, And the diode D105 compositions that N poles are connected after relay K101 with electric capacity C104 negative pole;Wherein, diode D102 N poles are connected with electric capacity C102 negative pole, and diode D104 N poles are connected with electric capacity C4 negative pole, diode D105 P poles The first power input of the duplex feeding circuit is formed with electric capacity C104 positive pole, electric capacity C101 positive pole is through relay K101 Normally-closed contact K101-1 and electric capacity C101 normally-closed contact K101-2 of the negative pole through relay K101 form duplex feeding electricity The second source input on road, the power supply that electric capacity C104 negative pole forms the duplex feeding circuit with electric capacity C104 positive pole export Hold and be connected with intelligent control circuit.
Preferably, the temperature decision circuitry is by triode VT1, triode VT2, unidirectional thyristor VS1, one end and three The thermo-sensitive resistor RT1 that pole pipe VT2 colelctor electrode is connected, the other end is connected with unidirectional thyristor VS1 control pole, is serially connected in Resistance R1 between unidirectional thyristor VS1 control pole and anode, one end are connected with unidirectional thyristor VS1 anode, are another End is connected with triode VT1 colelctor electrode, the slide rheostat RP1 that sliding end is connected with triode VT1 base stage, one end Be connected with triode VT2 emitter stage, the resistance R3 that the other end is connected with triode VT1 emitter stage, and one end with The resistance R2 compositions that triode VT1 colelctor electrode is connected, the other end is connected with chip U1 GND pins;Wherein, it is unidirectional brilliant Brake tube VS1 negative electrode is connected with triode VT2 base stage, and triode VT2 colelctor electrode is connected with chip U1 VCC pins Connect, triode VT2 emitter stage is connected with chip U2 THRES pins.
Preferably, base stage phase of Intelligent control electric route triode VT3, the N pole after resistance R7 with triode VT3 The diode D1 that connection, P poles are connected with chip U1 OUT pins, colelctor electrode phase of the positive pole after resistance R8 with triode VT3 Electric capacity C1, the N pole that connection, negative pole are connected with diode D1 P poles is connected with triode VT3 emitter stage, P poles are through resistance The diode D2 being connected after R9 with electric capacity C2 negative pole, and the relay K compositions being arranged in parallel with diode D2;Wherein, Electric capacity C1 positive pole is connected with chip U1 VCC pins, and electric capacity C1 positive pole forms the intelligent control with diode D2 P poles The input of system.
Preferably, the driving enhancing circuit is by triode VT4, metal-oxide-semiconductor Q1, one end and triode VT4 base stage phase Connection, the resistance R13 that is sequentially connected after inductance L1, resistance R6 and resistance R5 with electric capacity C1 positive pole of the other end, positive pole with The electric capacity C4 that electric capacity C2 negative pole is connected, negative pole is connected with resistance R13 and inductance L1 tie point, one end is with electric capacity C4's The slide rheostat that negative pole is connected, the other end is grounded after electric capacity C5, sliding end is connected with triode VT4 colelctor electrode RP3, P pole are connected with diode D2 P poles, the diode that N poles are connected with electric capacity C5 and slide rheostat RP3 tie point D3, the resistance R14 that one end is connected with triode VT4 emitter stage, the other end is connected with electric capacity C5 earth terminal, one end with The resistance R10 that triode VT1 emitter stage is connected, the other end is connected with metal-oxide-semiconductor Q1 grid, positive pole is with metal-oxide-semiconductor Q1's The electric capacity C3 that source electrode is connected, negative pole is connected after resistance R11 with metal-oxide-semiconductor Q1 grid, and one end and electric capacity C3's are negative Pole is connected, the other end is connected with triode VT4 base stage, source electrode of the sliding end with metal-oxide-semiconductor Q1 after resistance R12 is connected Slide rheostat RP2 composition;Wherein, electric capacity C5 negative pole ground connection, metal-oxide-semiconductor Q1 drain electrode are connected with chip U1 GND pins Connect, electric capacity C1 positive pole forms the output of the intelligence control system after relay K normally-closed contact K-1 with electric capacity C5 positive pole End.
Further, the triggering enhancing circuit is serially connected in triode VT5 base stage by triode VT5, triode VT6 Resistance R15 between colelctor electrode, the resistance R16 that one end is connected with triode VT5 base stage, one end is with triode VT5's The resistance R17 that base stage is connected, the other end is connected with triode VT6 base stage, one end are connected with triode VT5 base stage Connect, the slide rheostat that the other end is connected with triode VT6 emitter stage, sliding end is connected with triode VT6 base stage RP4, P pole are connected after resistance R21 with triode VT6 emitter stage, base stage phase of the N poles after resistance R20 with triode VT5 Diode D4, the N pole of connection is connected with diode D4 N poles, the diode D5 of P poles ground connection, and positive pole is after resistance R18 with three The electric capacity C6 that pole pipe VT5 emitter stage is connected, negative pole is connected with diode D5 P poles, and one end and diode D4 N The resistance R19 compositions that pole is connected, the other end is connected with electric capacity C6 positive pole;Wherein, triode VT5 base stage and triode VT6 colelctor electrode is connected, and the resistance R16 other end strengthens the input of circuit, diode D4 P poles conduct as the triggering The triggering strengthens the output end of circuit, and triode VT5 base stage is connected after resistance R16 with chip U1 VCC pins, two poles Pipe D4 P poles are connected with triode VT1 base stage.
The present invention compared with prior art, has advantages below and beneficial effect:
(1) present invention is provided with duplex feeding circuit, can be good at ensuring that product when in use will not be because of main power supply electricity Path loss is bad and is affected, and can be very good to improve the working effect and job stability of product, expands the adaptability of product, more Good receives liking for consumer.
(2) present invention can be voluntarily turned on disconnecting the power supply to air cooler according to the temperature in the external world, improve equipment It is intelligent, while power supply is disconnected when temperature is less than preset value, avoid user from being caught a cold when temperature is too low, preferably protect The health of user;Triggering enhancing circuit is set further to ensure the intensity of signal triggering in systems in addition, Improve the reaction speed of system so that equipment is run more accurate, further increases the using effect of system.
Brief description of the drawings
Fig. 1 is the circuit structure diagram of the intelligence control system of the present invention.
Fig. 2 is the circuit structure diagram of the triggering enhancing circuit of the present invention.
Fig. 3 is the circuit structure diagram of the circuit that supplies power with double circuit of the present invention.
Embodiment
With reference to embodiment, the present invention is described in further detail, but the implementation of the present invention is not limited to this.
Embodiment
As shown in figure 1, be provided with the air cooler intelligent power supply control system of triggering enhancing circuit, by chip U1, one end with The resistance R4 that chip U1 TRIG pins are connected, the other end is connected with chip U1 GND pins, positive pole is with chip U1's The electric capacity C2 that CONT pins are connected, negative pole is connected with chip U1 GND pins, while VCC pins with chip U1, The temperature decision circuitry that THRES pins are connected with GND pins, while VCC pins phase, OUT pins and GND pipes with chip U1 The intelligent control circuit that pin is connected, while the driving enhancing circuit being connected with temperature decision circuitry and intelligent control circuit, The duplex feeding circuit being connected with intelligent control circuit, and the VCC pins and temperature decision circuitry phase with chip U1 simultaneously The triggering enhancing circuit composition of connection.
As shown in figure 3, the duplex feeding circuit is by triode VT101, relay K101, resistance R101, resistance R102, Resistance R103, resistance R104, resistance R105, resistance R106, resistance R107, resistance R108, resistance R109, voltage-regulator diode D101, diode D102, voltage-regulator diode D103, diode D104, diode D105, slide rheostat RP101, electric capacity C101, electric capacity C102, electric capacity C103, electric capacity C104, electric capacity C105 compositions.
During connection, electric capacity C102 positive pole is connected after entering resistance R101 with triode VT101 emitter stage, negative pole is through electricity It is connected after resistance R106 with triode VT101 base stage, electric capacity C103 positive pole is connected with electric capacity C102 negative pole, negative pole passes through Positive pole after resistance R102 with electric capacity C102 is connected, and electric capacity C101 positive pole is connected with triode VT101 emitter stage, born Pole is sequentially connected after resistance R105 and diode D102 with resistance R103 positive pole, voltage-regulator diode D101 N poles and electricity Appearance C103 negative pole is connected, P poles are connected with electric capacity C101 negative pole, and voltage-regulator diode D103 N poles are with electric capacity C102's Negative pole is connected, negative pole of the P poles with electric capacity C101 after resistance R107 is connected, electric capacity C105 positive pole and bearing for electric capacity C102 Pole is connected, colelctor electrode of the negative pole with triode VT101 after resistance R108 is connected, slide rheostat RP101 one end with Electric capacity C105 negative pole is connected, the other end is connected after resistance R109 with electric capacity C101 negative pole, sliding end is through resistance Negative pole after R104 with electric capacity C103 is connected, and electric capacity C104 positive pole is connected with electric capacity C101 negative pole, negative pole is through two poles Colelctor electrode after pipe D104 with triode VT101 is connected, and diode D105 N poles are after relay K101 with electric capacity C104's Negative pole is connected.
Wherein, diode D102 N poles are connected with electric capacity C102 negative pole, and diode D104 N poles are with electric capacity C4's Negative pole is connected, and diode D105 P poles form the first power input of the duplex feeding circuit with electric capacity C104 positive pole, The electric capacity C101 positive pole normally-closed contact K101-1 through relay K101 and electric capacity C101 negative pole is through the normally closed of relay K101 Contact K101-2 forms the second source input of the duplex feeding circuit, electric capacity C104 negative pole and electric capacity C104 positive pole group Into the duplex feeding circuit power output end and be connected with intelligent control circuit.
Duplex feeding circuit can automatically switch power supply when main power source powers off or damages and can not carry out normal power supply Power supply, to ensure the normal operation of system, the operation stability of system is substantially increased, while can also support to produce after a loss of power The normal use of product, the emergency capability of product is substantially increased, improve the feature of product.First power input typically with Mains supply is connected, and second source input is then attached with the battery built in air cooler, so can be with fine Two power inputs of guarantee will not power off simultaneously.
Wherein, chip U1 model NE555, chip U1 RESET pins are connected with VCC pins, chip U1's THRES pins are connected with TRIG pins.
Temperature decision circuitry is by triode VT1, triode VT2, unidirectional thyristor VS1, thermo-sensitive resistor RT1, resistance R1, electricity Hinder R2, resistance R3, and slide rheostat RP1 composition.
During connection, thermo-sensitive resistor RT1 one end is connected with triode VT2 colelctor electrode, the other end and unidirectional thyristor VS1 control pole is connected, and resistance R1 is serially connected between unidirectional thyristor VS1 control pole and anode, slide rheostat RP1's One end is connected with unidirectional thyristor VS1 anode, the other end is connected with triode VT1 colelctor electrode, sliding end and three poles Pipe VT1 base stage is connected, and resistance R3 one end is connected with triode VT2 emitter stage, the other end and triode VT1 hair Emitter-base bandgap grading is connected, and resistance R2 one end is connected with triode VT1 colelctor electrode, the other end is connected with chip U1 GND pins Connect.
Wherein, unidirectional thyristor VS1 negative electrode is connected with triode VT2 base stage, triode VT2 colelctor electrode and core Piece U1 VCC pins are connected, and triode VT2 emitter stage is connected with chip U2 THRES pins.
Intelligent control electric route triode VT3, electric capacity C1, resistance R7, resistance R8, resistance R9, diode D1, diode D2, and relay K compositions.
During connection, diode D1 N poles are connected after resistance R7 with triode VT3 base stage, P poles are with chip U1's OUT pins are connected, and electric capacity C1 positive pole is connected after resistance R8 with triode VT3 colelctor electrode, negative pole and diode D1 P poles be connected, diode D2 N poles are connected with triode VT3 emitter stage, P poles are negative with electric capacity C2 after resistance R9 Pole is connected, and relay K is arranged in parallel with diode D2.
Wherein, electric capacity C1 positive pole is connected with chip U1 VCC pins, electric capacity C1 positive pole and diode D2 P poles Form the input of the intelligence control system.
Driving enhancing circuit by triode VT4, metal-oxide-semiconductor Q1, inductance L1, resistance R5, resistance R6, resistance R10, resistance R11, Resistance R12, resistance R13, resistance R14, diode D3, slide rheostat RP2, slide rheostat RP3, electric capacity C3, electric capacity C4, with And electric capacity C5 compositions.
During connection, resistance R13 one end is connected with triode VT4 base stage, the other end is sequentially through inductance L1, resistance R6 It is connected with the positive pole after resistance R5 with electric capacity C1, electric capacity C4 positive pole is connected with electric capacity C2 negative pole, negative pole and resistance R13 It is connected with inductance L1 tie point, slide rheostat RP3 one end is connected with electric capacity C4 negative pole, the other end is through electric capacity C5 Ground connection, sliding end are connected with triode VT4 colelctor electrode afterwards, and diode D3 P poles are connected with diode D2 P poles, N poles It is connected with electric capacity C5 and slide rheostat RP3 tie point, resistance R14 one end is connected with triode VT4 emitter stage, The other end is connected with electric capacity C5 earth terminal, resistance R10 one end is connected with triode VT1 emitter stage, the other end with Metal-oxide-semiconductor Q1 grid is connected, electric capacity C3 positive pole is connected with metal-oxide-semiconductor Q1 source electrode, negative pole after resistance R11 with metal-oxide-semiconductor Q1 grid is connected, and slide rheostat RP2 one end is connected with electric capacity C3 negative pole, the other end and triode VT4 base Pole is connected, source electrode of the sliding end with metal-oxide-semiconductor Q1 after resistance R12 is connected.
Wherein, electric capacity C5 negative pole ground connection, metal-oxide-semiconductor Q1 drain electrode are connected with chip U1 GND pins, and electric capacity C1 is just Pole forms the output end of the intelligence control system after relay K normally-closed contact K-1 with electric capacity C5 positive pole.
As shown in Fig. 2 triggering enhancing circuit is by triode VT5, triode VT6, slide rheostat RP4, electric capacity C6, two poles Pipe D4, diode D5, resistance R15, resistance R16, resistance R17, resistance R18, resistance R19, resistance R20, and resistance R21 groups Into.
During connection, resistance R15 is serially connected between triode VT5 base stage and colelctor electrode, resistance R16 one end and triode VT5 base stage is connected, and resistance R17 one end is connected with triode VT5 base stage, the other end and triode VT6 base stage It is connected, slide rheostat RP4 one end is connected with triode VT5 base stage, the other end and triode VT6 emitter stage phase Connection, sliding end are connected with triode VT6 base stage, the transmitting of diode D4 P poles after resistance R21 with triode VT6 Pole is connected, base stage of the N poles with triode VT5 after resistance R20 is connected, diode D5 N poles and diode D4 N poles phase Connection, P poles ground connection, electric capacity C6 positive pole is connected after resistance R18 with triode VT5 emitter stage, negative pole and diode D5 P poles be connected, resistance R19 one end is connected with diode D4 N poles, the other end is connected with electric capacity C6 positive pole.
Wherein, triode VT5 base stage is connected with triode VT6 colelctor electrode, and the resistance R16 other end touches as this The input of hair enhancing circuit, diode D4 P poles strengthen the output end of circuit, triode VT5 base stage warp as the triggering It is connected after resistance R16 with chip U1 VCC pins, diode D4 P poles are connected with triode VT1 base stage.
In use, thermo-sensitive resistor can change the resistance of itself according to the temperature in the external world, it is less than preset value in ambient temperature The resistance of Shi Wenming resistance is reduced to critical value so that system send trigger signal and final turn-on relay K cause after Electrical equipment K normally-closed contact disconnects, and then stopped the power supply to air cooler, so as to have the function that to close air cooler;And work as When ambient temperature exceedes preset value, then relay K is disconnected so that system is powered to air cooler.
The present invention can voluntarily turn on according to the temperature in the external world and disconnect the power supply to air cooler, improve the intelligence of equipment Property, while power supply is disconnected when temperature is less than preset value, avoid user from being caught a cold when temperature is too low, preferably protect use The health of person;Set triggering enhancing circuit further to ensure the intensity of signal triggering in systems in addition, improve The reaction speed of system so that equipment operation it is more accurate, further increase the using effect of system.
As described above, the present invention can be realized well.

Claims (6)

1. it is provided with the air cooler intelligent power supply control system of triggering enhancing circuit, it is characterised in that:By chip U1, one end and core The resistance R4 that piece U1 TRIG pins are connected, the other end is connected with chip U1 GND pins, the CONT of positive pole and chip U1 The electric capacity C2 that pin is connected, negative pole is connected with chip U1 GND pins, while VCC pins, THRES pipes with chip U1 The temperature decision circuitry that pin is connected with GND pins, while be connected with chip U1 VCC pins phase, OUT pins and GND pins The intelligent control circuit connect, while the driving enhancing circuit being connected with temperature decision circuitry and intelligent control circuit, with intelligence The duplex feeding circuit that control circuit is connected, and be connected simultaneously with chip U1 VCC pins and temperature decision circuitry Triggering enhancing circuit composition;Wherein, chip U1 model NE555, chip U1 RESET pins are connected with VCC pins, core Piece U1 THRES pins are connected with TRIG pins;For the duplex feeding circuit by triode VT101, positive pole enters resistance R101 It is connected afterwards with triode VT101 emitter stage, the electric capacity that negative pole is connected after resistance R106 with triode VT101 base stage C102, the electric capacity that positive pole is connected with electric capacity C102 negative pole, negative pole is connected after resistance R102 with electric capacity C102 positive pole C103, positive pole is connected with triode VT101 emitter stage, negative pole sequentially after resistance R105 and diode D102 with resistance Electric capacity C101, the N pole that R103 positive pole is connected is connected with electric capacity C103 negative pole, P poles are connected with electric capacity C101 negative pole Voltage-regulator diode D101, the N pole connect is connected with electric capacity C102 negative pole, negative pole of the P poles after resistance R107 with electric capacity C101 The voltage-regulator diode D103 being connected, positive pole is connected with electric capacity C102 negative pole, negative pole after resistance R108 with triode The electric capacity C105 that VT101 colelctor electrode is connected, one end is connected with electric capacity C105 negative pole, the other end after resistance R109 with The slide rheostat that electric capacity C101 negative pole is connected, sliding end is connected after resistance R104 with electric capacity C103 negative pole RP101, positive pole is connected with electric capacity C101 negative pole, colelctor electrode of the negative pole with triode VT101 after diode D104 is connected The electric capacity C104 connect, and the diode D105 compositions that N poles are connected after relay K101 with electric capacity C104 negative pole;Its In, diode D102 N poles are connected with electric capacity C102 negative pole, and diode D104 N poles are connected with electric capacity C4 negative pole, Diode D105 P poles form the first power input of the duplex feeding circuit with electric capacity C104 positive pole, electric capacity C101's Normally-closed contact K101-1 of the positive pole through relay K101 and electric capacity C101 normally-closed contact K101-2 of the negative pole through relay K101 The second source input of the duplex feeding circuit is formed, electric capacity C104 negative pole forms two-way confession with electric capacity C104 positive pole The power output end of circuit and it is connected with intelligent control circuit.
2. the air cooler intelligent power supply control system according to claim 1 for being provided with triggering enhancing circuit, its feature exist In:The triggering enhancing circuit triode VT6, is serially connected between triode VT5 base stage and colelctor electrode by triode VT5 Resistance R15, the resistance R16 that one end is connected with triode VT5 base stage, one end is connected with triode VT5 base stage, is another The resistance R17 that is connected with triode VT6 base stage is held, one end is connected with triode VT5 base stage, the other end and triode Slide rheostat RP4, the P pole that VT6 emitter stage is connected, sliding end is connected with triode VT6 base stage is after resistance R21 It is connected with triode VT6 emitter stage, diode D4, the N poles that N poles are connected after resistance R20 with triode VT5 base stage It is connected with diode D4 N poles, the diode D5 of P poles ground connection, emitter stage phase of the positive pole after resistance R18 with triode VT5 Connection, the electric capacity C6 that is connected with diode D5 P poles of negative pole, and one end is connected with diode D4 N poles, the other end and The resistance R19 compositions that electric capacity C6 positive pole is connected;Wherein, triode VT5 base stage is connected with triode VT6 colelctor electrode Connect, the resistance R16 other end strengthens the input of circuit as the triggering, and diode D4 P poles strengthen circuit as the triggering Output end.
3. the air cooler intelligent power supply control system according to claim 2 for being provided with triggering enhancing circuit, its feature exist In:The temperature decision circuitry is by triode VT1, triode VT2, unidirectional thyristor VS1, one end and triode VT2 current collection The thermo-sensitive resistor RT1 that pole is connected, the other end is connected with unidirectional thyristor VS1 control pole, is serially connected in unidirectional thyristor VS1 Control pole and anode between resistance R1, one end is connected with unidirectional thyristor VS1 anode, the other end and triode VT1 Colelctor electrode be connected, the slide rheostat RP1 that sliding end is connected with triode VT1 base stage, one end and triode VT2's The resistance R3 that emitter stage is connected, the other end is connected with triode VT1 emitter stage, and one end and triode VT1 collection The resistance R2 compositions that electrode is connected, the other end is connected with chip U1 GND pins;Wherein, unidirectional thyristor VS1 negative electrode It is connected with triode VT2 base stage, triode VT2 colelctor electrode is connected with chip U1 VCC pins, triode VT2's Emitter stage is connected with chip U2 THRES pins.
4. the air cooler intelligent power supply control system according to claim 3 for being provided with triggering enhancing circuit, its feature exist In:Intelligent control electric route triode VT3, N pole is connected after resistance R7 with triode VT3 base stage, P poles and chip The diode D1 that U1 OUT pins are connected, positive pole is connected after resistance R8 with triode VT3 colelctor electrode, negative pole and two Electric capacity C1, the N pole that pole pipe D1 P poles are connected is connected with triode VT3 emitter stage, P poles after resistance R9 with electric capacity C2 The diode D2 that is connected of negative pole, and relay K compositions being arranged in parallel with diode D2;Wherein, electric capacity C1 positive pole It is connected with chip U1 VCC pins, electric capacity C1 positive pole forms the input of the intelligence control system with diode D2 P poles End.
5. the air cooler intelligent power supply control system according to claim 4 for being provided with triggering enhancing circuit, its feature exist In:The driving enhancing circuit by triode VT4, metal-oxide-semiconductor Q1, one end is connected with triode VT4 base stage, the other end sequentially The resistance R13 being connected after inductance L1, resistance R6 and resistance R5 with electric capacity C1 positive pole, positive pole are connected with electric capacity C2 negative pole Connect, the electric capacity C4 that negative pole is connected with resistance R13 and inductance L1 tie point, one end is connected with electric capacity C4 negative pole, is another Hold slide rheostat RP3, the P pole and diode D2 that ground connection, sliding end are connected with triode VT4 colelctor electrode after electric capacity C5 P poles be connected, the diode D3 that N poles are connected with electric capacity C5 and slide rheostat RP3 tie point, one end and triode The resistance R14 that VT4 emitter stage is connected, the other end is connected with electric capacity C5 earth terminal, one end and triode VT1 transmitting The resistance R10 that pole is connected, the other end is connected with metal-oxide-semiconductor Q1 grid, positive pole is connected with metal-oxide-semiconductor Q1 source electrode, negative pole The electric capacity C3 being connected after resistance R11 with metal-oxide-semiconductor Q1 grid, and one end is connected with electric capacity C3 negative pole, the other end It is connected with triode VT4 base stage, the slide rheostat RP2 that sliding end is connected after resistance R12 with metal-oxide-semiconductor Q1 source electrode Composition;Wherein, electric capacity C5 negative pole ground connection, metal-oxide-semiconductor Q1 drain electrode are connected with chip U1 GND pins, electric capacity C1 positive pole The output end of the intelligence control system is formed with electric capacity C5 positive pole after relay K normally-closed contact K-1.
6. the air cooler intelligent power supply control system according to claim 5 for being provided with triggering enhancing circuit, its feature exist In:The base stage of the triode VT5 is connected after resistance R16 with chip U1 VCC pins, diode D4 P poles and three poles Pipe VT1 base stage is connected.
CN201711076528.7A 2017-11-06 2017-11-06 It is provided with the air cooler intelligent power supply control system of triggering enhancing circuit Pending CN107702298A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201711076528.7A CN107702298A (en) 2017-11-06 2017-11-06 It is provided with the air cooler intelligent power supply control system of triggering enhancing circuit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201711076528.7A CN107702298A (en) 2017-11-06 2017-11-06 It is provided with the air cooler intelligent power supply control system of triggering enhancing circuit

Publications (1)

Publication Number Publication Date
CN107702298A true CN107702298A (en) 2018-02-16

Family

ID=61177904

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201711076528.7A Pending CN107702298A (en) 2017-11-06 2017-11-06 It is provided with the air cooler intelligent power supply control system of triggering enhancing circuit

Country Status (1)

Country Link
CN (1) CN107702298A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110553324A (en) * 2018-05-30 2019-12-10 成都中毅鼎新科技有限公司 Household temperature self-adjusting device
CN110854951A (en) * 2019-11-12 2020-02-28 珠海格力电器股份有限公司 Power supply system for high-power air conditioner wire controller, air conditioner and power supply method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110553324A (en) * 2018-05-30 2019-12-10 成都中毅鼎新科技有限公司 Household temperature self-adjusting device
CN110854951A (en) * 2019-11-12 2020-02-28 珠海格力电器股份有限公司 Power supply system for high-power air conditioner wire controller, air conditioner and power supply method

Similar Documents

Publication Publication Date Title
CN106972769A (en) A kind of light current electrical load overvoltage crowbar
CN107703824A (en) Air cooler drive feedback intelligent power supply control system
CN107702298A (en) It is provided with the air cooler intelligent power supply control system of triggering enhancing circuit
CN204190353U (en) A kind of household electrical appliance automatic overvoltage power off device
CN107883554A (en) Air cooler feedback enhancing intelligent power supply control system
CN101980405B (en) Multi-purpose time delay power supply socket manufactured by using time base circuit
CN105652947B (en) A kind of energy-saving control circuit of electric operating mechanism of circuit-breaker
CN107747797A (en) It is provided with the air cooler intelligent power supply control system of driving buffer circuit
CN107834694A (en) It is provided with the air cooler intelligent power supply control system of triggering feedback circuit
CN107726571A (en) Air cooler intelligent power supply control system
CN205507603U (en) Circuit breaker electric operating mechanism's energy -saving control circuit
CN107332080A (en) A kind of delay socket circuit with over-voltage protecting function
CN204759226U (en) Temperature -control circuit and electric welding
CN110500675A (en) A kind of heat dissipation intelligence control structure
CN206790464U (en) A kind of casing Power Supply Hot Swap control circuit
CN206180884U (en) A circuit for brownout power
CN205210575U (en) Multi -functional socket controller
CN205070397U (en) Electric wire netting intelligence earth -leakage protector
CN206977571U (en) A kind of circuit for reducing TV motherboard stand-by power consumption
CN209375456U (en) A kind of novel soft starting circuit
CN209184501U (en) Electric appliance and intelligent power module
CN107658968A (en) It is provided with the tap double-power intelligent control system of signal drive amplification circuit
CN106374426A (en) Load power-based automatic cutoff circuit
CN107733077A (en) Standby dual power supply generator emergency starting system provided with chip drives protection circuit
CN205004745U (en) It prevents circuit breaker circuit connection of protection of falling power transmission to have small -size house generator concurrently

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
WD01 Invention patent application deemed withdrawn after publication
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20180216