CN203606691U - Electric heating controller - Google Patents
Electric heating controller Download PDFInfo
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- CN203606691U CN203606691U CN201320838404.9U CN201320838404U CN203606691U CN 203606691 U CN203606691 U CN 203606691U CN 201320838404 U CN201320838404 U CN 201320838404U CN 203606691 U CN203606691 U CN 203606691U
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- controller
- terminal
- thyristor
- connection terminal
- circuit board
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Abstract
The utility model relates to the technical field of electronic products, and specifically discloses an electric heating controller. The electric heating controller is characterized in that a control terminal of a control circuit board is connected with a control interface of a thyristor, a wiring terminal i is a live wire, a wiring terminal ii is a zero wire, a wiring terminal iii is a ground wire, two outlet wires of the wiring terminal i are respectively connected with an inlet wire end of an alternating-current live wire of the thyristor and a live wire terminal of the control circuit board, two outlet wires of the wiring terminal ii are respectively connected with an inlet wire end of an alternating-current zero wire of the thyristor and a zero wire terminal of the control circuit board, the wiring terminal iii is connected with a housing of the controller, a wiring terminal iv is connected with a live wire on an alternating-current outlet wire end of the thyristor, and a wiring terminal v is connected with a zero wire on the alternating-current outlet wire end of the thyristor. By adopting the electric heating controller, slow increase and decrease of the power of an electric heater are realized, and the impact to a power grid is reduced; the controller is provided with a programmable chip, so that the functions of environment temperature measurement, clock metering and display are realized; in addition, the controller is provided with a Wi-Fi receiver, so that remote control is realized through a Wi-Fi router.
Description
Technical field
The utility model relates to technical field of electronic products, especially relates to a kind of controller that coordinates existing electric heater product.
Background technology
Environmental pollution is at present day by day serious, and cancellation coal-burning boiler changes electric heater power supply into progressively becomes a kind of trend.But current electric heater intelligent level is generally on the low side, conventionally possesses basic function of temperature control, cannot meet the demand of society energy-saving and emission-reduction.In addition; along with heating area increases; the electric heater the increase of output power using; the warm controller of existing electricity does not possess slow startup and stopping function; can cause large power, electrically warmer drop into fast or exit; when electric heater starts, momentary current is large, and the isolating switch that protection household internal circuit is used needs often to change.In addition, if an a large amount of electric heater in region moves simultaneously, electric network swim control response rate request is improved, easily cause voltage ripple of power network, even cause that regional grid has a power failure; The safety of harm electrical network.
Also do not have at present effective scheme to solve the problems referred to above.
Utility model content
The technical matters that the utility model solves is to provide the warm controller of a kind of electricity, and this controller can be realized electric heater power rising and decline, reduces the impact to electrical network; Controller has programmable chip, can realize ambient temperature measurement, clock metering and Presentation Function; Controller also has Wi-Fi receiver, realizes Long-distance Control by Wi-Fi router.
In order to solve the problems of the technologies described above, the utility model provides a kind of electricity to warm up controller, comprising:
Controller housing, control circuit board, thyristor and connection terminal;
The control terminal of described control circuit board is connected with the control interface of described thyristor, and described connection terminal is connected with described controller housing, described control circuit board and described thyristor respectively; Described control circuit board and described thyristor are located in described controller housing.
Preferably, described connection terminal comprises connection terminal i~v; Described connection terminal i is live wire, and described connection terminal ii is zero line, and described connection terminal iii is ground wire; The two-way outlet of described connection terminal i is connected with the fire line terminal that exchanges live wire end of incoming cables and described control circuit board of described thyristor respectively, and the two-way outlet of described connection terminal ii is connected with the zero terminal of described thyristor alternating-current Live line Zero line end and described control circuit board respectively; Described connection terminal iii is connected with described controller housing; Described connection terminal iv is connected with the leading-out terminal live wire that exchanges of described thyristor; Described connection terminal v is connected with the leading-out terminal zero line that exchanges of described thyristor.
Be more preferably, described control circuit board comprises: control terminal, controller, power supply, Wi-Fi receiver, time set, temperature measuring equipment, electrical screen and button; Described control terminal is connected with described controller, described power supply is connected with described Wi-Fi receiver, described time set, described temperature measuring equipment, described electrical screen, described button and described controller respectively, and described controller is connected with described Wi-Fi receiver, described time set, described temperature measuring equipment, described electrical screen and described button respectively.
Preferred, described time set comprises clock, clock chip and backup battery, and described backup battery is connected with described clock chip, and described clock is connected with described clock chip.
Preferred, temperature measuring equipment is lead type negative tempperature coefficient thermistor.
Be more preferably, described control circuit board also comprises fire line terminal and zero terminal, and described fire line terminal is connected with described power supply respectively with described zero terminal.
Be more preferably, described power acquisition turns direct-current switch power supply with exchanging.
Be more preferably, described electrical screen is LCDs.
Be more preferably, described button comprises left button and two buttons of right button.
Be more preferably, described controller comprises programmable chip.
Control procedure of the present utility model is: start controller, the programmable chip of described controller carries out initialization; Described controller reads the operational factor of having set; And whether query user's end sets operational factor by Wi-Fi receiver; Client is selected to set operational factor by Wi-Fi receiver, revises operational factor, and described operational factor after memory modify; Client is not selected to set operational factor by Wi-Fi receiver, is defaulted as the described operational factor of having set; According to the described operational factor of above-mentioned setting, carry out the real time execution control of electric heater.
The described described operational factor of having set comprises the operational factor of the default setting of starting shooting and the operational factor of storing last time.
Described operational factor comprises 3 operation phase parameters, and each operation phase parameter comprises initial time, end time and design temperature; Described operational factor also comprises, and containing sometimes and point system time, 12 altogether.
Described real time execution control comprises:
One: whether client selects to allow operation to control;
If client is selected to allow operation, read current time, carry out following step 2;
If client is selected not allow operation, carry out following step 4;
Two: according to the described current time reading in described step 1, described controller judges whether section working time in setting of described current time;
If the working time section of described current time in setting, carries out following step 3;
If described current time is section working time in setting not, carry out following step 4;
Three: described controller judges whether the room temperature of measuring is greater than design temperature;
If the room temperature of measuring is greater than design temperature, carry out following step 4;
If the room temperature of measuring is not greater than design temperature, described controller starts described electric heater heating, and Real-Time Monitoring temperature, and circulation starts described step 1;
Four: described controller stops described electric heater heating, and circulation starts described step 1.
Wherein, described Wi-Fi is that one can be by terminals such as PC, handheld devices (as PDA, mobile phone) with the interconnected technology of wireless mode.Wi-Fi is the brand of a Wi-Fi communication technology, is held by Wi-Fi Alliance (Wi-Fi A1liance).Object is the intercommunity between the radio network product improving based on IEEE802.11 standard.Use the LAN (Local Area Network) of IEEE802.11 serial protocols to be just called Wi-Fi.Even Wi-Fi is equal to wireless the Internet networking (Wi-Fi is the important component part of WLAN).Wi-Fi refers to " wireless compatibility authentication " at the category of WLAN (wireless local area network), be in fact a kind of commercial verification, is also a kind of Wireless Networking technology simultaneously, connects computer in the past by netting twine, and WI-FI networks by radiowave; Common is exactly a wireless router, the effective range covering at the electric wave of this wireless router so can adopt Wi-Fi connected mode to network, if wireless router has connected an adsl line or other online circuit, focus is otherwise known as.
The utility model compared with prior art, has following beneficial effect:
The utility model provides a kind of electricity to warm up controller, and the utility model has been realized electric heater and slowly accessed and exit electrical network, has realized the rising of power and the slow variation of decline, has reduced the impact to electrical network; This controller contains time set, and the predeterminable time period meets divided time heating control; This controller contains programmable chip, can realize ambient temperature measurement and Presentation Function; This controller also contains Wi-Fi receiver, can be connected to the Wi-Fi router of family, thereby can realize Long-distance Control and management function; The utlity model has dissemination widely.
Accompanying drawing explanation
What Fig. 1 was exemplary shows the electric structural representation that warms up controller of the utility model;
The structural representation of what Fig. 2 was exemplary show the utility model control circuit board;
What Fig. 3 was exemplary shows the electric control procedure schematic flow sheet that warms up controller of the utility model;
The schematic flow sheet of the utility model real time execution control that what Fig. 4 was exemplary show.
Reference numeral shown in Fig. 1 is as follows: 100, thyristor, 101, control interface, 200, control circuit board, 201, control terminal, 300, connection terminal;
Reference numeral shown in Fig. 2 is as follows: 201, control terminal, 202, fire line terminal, 203, zero terminal, 204, power supply, 205, controller, 206, Wi-Fi receiver, 207, time set, 208, temperature measuring equipment, 209, electrical screen, 210, button.
Embodiment
For the technical matters that the utility model solves, the technical scheme providing are better provided, below in conjunction with drawings and Examples, the utility model is further elaborated.Specific embodiment described herein is only in order to explain enforcement of the present utility model, but and is not used in restriction the utility model.
In a preferred embodiment, the structural representation of what Fig. 1 was exemplary the show warm controller 205 of a kind of electricity of the utility model, comprising: controller 205 shells, control circuit board 200, thyristor 100 and connection terminal 300;
The control terminal 201 of described control circuit board 200 is connected with the control interface 101 of described thyristor 100, and described connection terminal 300 is connected with described controller 205 shells, described control circuit board 200 and described thyristor 100 respectively; Described control circuit board 200 and described thyristor 100 are located in described controller 205 shells.
In the embodiment being more preferably, described connection terminal 300 comprises connection terminal 300i~v; Described connection terminal 300i is live wire, and described connection terminal 300ii is zero line, and described connection terminal 300iii is ground wire; The two-way outlet of described connection terminal 300i is connected with the fire line terminal 202 that exchanges live wire end of incoming cables and described control circuit board 200 of described thyristor 100 respectively, and the two-way outlet of described connection terminal 300ii exchanges respectively Live line Zero line end and described control circuit board 200 zero terminal 203 with described thyristor 100 is connected; Described connection terminal 300iii is connected with described controller 205 shells; Described connection terminal 300iv is connected with the leading-out terminal live wire that exchanges of described thyristor 100; Described connection terminal 300v is connected with the leading-out terminal zero line that exchanges of described thyristor 100.
In the embodiment being more preferably, the structural representation of what Fig. 2 was exemplary show the utility model control circuit board 200, described control circuit board 200 comprises: control terminal 201, controller 205, power supply 204, Wi-Fi receiver 206, time set 207, temperature measuring equipment 208, electrical screen 209 and button 210; Described control terminal 201 is connected with described controller 205, described power supply 204 is connected with described Wi-Fi receiver 206, described time set 207, described temperature measuring equipment 208, described electrical screen 209, described button 210 and described controller 205 respectively, and described controller 205 is connected with described Wi-Fi receiver 206, described time set 207, described temperature measuring equipment 208, described electrical screen 209 and described button 210 respectively.
In the embodiment being more preferably, described time set 207 comprises clock, clock chip and backup battery, and described backup battery is connected with described clock chip, and described clock is connected with described clock chip.
In the embodiment being more preferably, temperature measuring equipment 208 is lead type negative tempperature coefficient thermistor.
In the embodiment being more preferably, described control circuit board 200 also comprises fire line terminal 202 and zero terminal 203, and described fire line terminal 202 is connected with described power supply 204 respectively with described zero terminal 203.
In the embodiment being more preferably, described power supply 204 adopts to exchange and turns direct-current switch power supply 204.
In the embodiment being more preferably, described electrical screen 209 is LCDs.
In the embodiment being more preferably, described button 210 comprises left button 210 and 210 two buttons 210 of right button.
In the embodiment being more preferably, described controller 205 comprises programmable chip.
Specific embodiment:
What Fig. 3 was exemplary shows the electric control procedure schematic flow sheet that warms up controller of the utility model, comprising:
Start controller, the programmable chip of described controller carries out initialization; Described controller reads the operational factor of having set; And whether query user's end sets operational factor by Wi-Fi receiver; Client is selected to set operational factor by Wi-Fi receiver, revises operational factor, and described operational factor after memory modify; Client is not selected to set operational factor by Wi-Fi receiver, is defaulted as the described operational factor of having set; According to the described operational factor of described setting, carry out the real time execution control of electric heater.
The described described operational factor of having set comprises the operational factor of the default setting of starting shooting and the operational factor of storing last time.Described operational factor comprises 3 operation phase parameters, and each operation phase parameter comprises initial time, end time and design temperature; Described operational factor also comprises, and containing sometimes and point system time, 12 altogether.
As described in Figure 4, the schematic flow sheet of the utility model real time execution control that what Fig. 4 was exemplary show, comprising in described real time execution control:
1.: whether client selects to allow operation to control;
If client is selected to allow operation, read current time, carry out following step 2.;
If client is selected not allow operation, carry out following step 4.;
2.: the described current time reading in 1. according to described step, described controller judges whether section working time in setting of described current time;
If 3. the working time section of described current time in setting, carry out following step;
If described current time is section working time in setting not, carry out following step 4.;
3.: described controller judges whether the room temperature of measuring is greater than design temperature;
If the room temperature of measuring is greater than design temperature, carry out following step 4.;
If the room temperature of measuring is not greater than design temperature, described controller starts described electric heater heating, and Real-Time Monitoring temperature, and 1. circulation starts described step;
4.: described controller stops described electric heater heating, and 1. circulation starts described step.
Controller can be set 3 operation phase, and each operation phase comprises initial time, and in addition end time and design temperature also have system time (time and point), and be and no operational factor.If no operating parameter setting is not for moving, controller is always in the state of quitting work; If no operating parameter setting is for moving, controller reads temporal information in real time, and judges whether in 3 operation phase in setting, if read real-time time outside 3 operation phase setting, controller keeps stopped status.If current time certain operation phase in setting, judges the same day, whether environment temperature reached setup parameter, if do not reached, start heating, if met or exceeded design temperature, stop heating.
Controller is furnished with left button, right button and LCDs.Controller parameter arranges by left button and right button operation and realizes:
By bottom right button and continue more than 5 seconds, realize the whether conversion of operational factor, i.e. the becoming and can not move of former permission operation, formerly does not allow operation to change into allow operation.While not allowing to move, controller liquid crystal panel do not show, while allowing operation, left side shows current environmental temperature, shows real-time time below right side, and right upper portion does not show.
Allowing under operational mode, pressing left button and also continue more than 5 seconds, to enter setting parameter function, can arrange respectively 3 operation phase parameters.Under parameter setting function, again press left button, and continue more than 5 seconds, to finish setting parameter function.
Enter parameter when pattern is set, first to the current time in system time arrange, time data take 1 second as cycle flicker, data add 1 on former radix when by right button, become 0 after being greater than 23.Press left button soon, enter point setting of current time in system.
Entering the current time in system divides while setting, and divided data is take 1 second as cycle flicker, by adding 1 by right button divided data on legacy data, becomes 0 after being greater than 59.Press left button soon, enter the 1st stage design temperature parameter setting function.
Enter after first stage parameter setting function, left side becomes design temperature parameter, and parameter area is 18-26 ℃, and this demonstration 1 second is cycle flicker.By adding 1 by these data of right button on legacy data, be greater than after 26, data become 18.In this stage, liquid crystal right upper portion shows the 1st temperature.Press left button soon, the 1st stage that entered arranges function while startup.
Entering the first stage arranges after function while starting, and the liquid crystal right lower quadrant time arranges function while becoming the first stage, and the flicker of this data, and realizing data by right button operation increases, and becomes 0 after exceeding 23.This stage liquid crystal right upper portion shows the 1st startup.
Press soon again left button, enter first stage startup point function is set, realize and add 1 operation by right button.
As above describe, press soon left button, successively each stage parameter is arranged.
Electric heater power slowly changes, and increases progressively the rate of change that successively decreases identical, all adopts 500W/ second.For the electric heater of 3.2kW, start-up course needs 6.4 seconds.
12-20m
2the electric heater power of domestic installation is generally 3.2kW, and can configure electric heater quantity according to real area.Original electric heater is switch motion, and when electric heater starts, momentary current is large, and household internal route protection needs to change with air switch.In addition, if a large amount of electric heaters in region move simultaneously, electric network swim control response rate request is improved harm power grid security.To sum up, adopt the utility model controller used, can realize the warm controller power rising of electricity and decline, avoided the problems referred to above.
More than by the detailed description of concrete and preferred embodiment the utility model; but those skilled in the art should be understood that; the utility model is not limited to the above embodiment; all within ultimate principle of the present utility model; any modification of doing, combine and be equal to replacement etc., within being all included in protection domain of the present utility model.
Claims (10)
1. the warm controller of electricity, is characterized in that, comprising: controller housing, control circuit board, thyristor and connection terminal;
The control terminal of described control circuit board is connected with the control interface of described thyristor, and described connection terminal is connected with described controller housing, described control circuit board and described thyristor respectively; Described control circuit board and described thyristor are located in described controller housing.
2. the warm controller of electricity according to claim 1, is characterized in that, described connection terminal comprises connection terminal i~v; Described connection terminal i is live wire, and described connection terminal ii is zero line, and described connection terminal iii is ground wire; The two-way outlet of described connection terminal i is connected with the fire line terminal that exchanges live wire end of incoming cables and described control circuit board of described thyristor respectively, and the two-way outlet of described connection terminal ii is connected with the zero terminal of described thyristor alternating-current Live line Zero line end and described control circuit board respectively; Described connection terminal iii is connected with described controller housing; Described connection terminal iv is connected with the leading-out terminal live wire that exchanges of described thyristor; Described connection terminal v is connected with the leading-out terminal zero line that exchanges of described thyristor.
3. the warm controller of electricity according to claim 1, is characterized in that, described control circuit board comprises: control terminal, controller, power supply, Wi-Fi receiver, time set, temperature measuring equipment, electrical screen and button; Described control terminal is connected with described controller, described power supply is connected with described Wi-Fi receiver, described time set, described temperature measuring equipment, described electrical screen, described button and described controller respectively, and described controller is connected with described Wi-Fi receiver, described time set, described temperature measuring equipment, described electrical screen and described button respectively.
4. the warm controller of electricity according to claim 3, is characterized in that, described time set comprises clock, clock chip and backup battery, and described backup battery is connected with described clock chip, and described clock is connected with described clock chip.
5. the warm controller of electricity according to claim 3, is characterized in that, temperature measuring equipment is lead type negative tempperature coefficient thermistor.
6. the warm controller of electricity according to claim 3, is characterized in that, described power acquisition turns direct-current switch power supply with exchanging.
7. the warm controller of electricity according to claim 3, is characterized in that, described electrical screen is LCDs.
8. the warm controller of electricity according to claim 3, is characterized in that, described button comprises left button and two buttons of right button.
9. the warm controller of electricity according to claim 3, is characterized in that, described controller comprises programmable chip.
10. according to the warm controller of the electricity one of claim 3~9 Suo Shu, it is characterized in that, described control circuit board also comprises fire line terminal and zero terminal, and described fire line terminal is connected with described power supply respectively with described zero terminal.
Priority Applications (1)
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CN201320838404.9U CN203606691U (en) | 2013-12-18 | 2013-12-18 | Electric heating controller |
Applications Claiming Priority (1)
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CN201320838404.9U CN203606691U (en) | 2013-12-18 | 2013-12-18 | Electric heating controller |
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CN203606691U true CN203606691U (en) | 2014-05-21 |
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CN201320838404.9U Expired - Fee Related CN203606691U (en) | 2013-12-18 | 2013-12-18 | Electric heating controller |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104730941A (en) * | 2013-12-18 | 2015-06-24 | 龙源(北京)太阳能技术有限公司 | Electric warming controller and control method thereof |
-
2013
- 2013-12-18 CN CN201320838404.9U patent/CN203606691U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104730941A (en) * | 2013-12-18 | 2015-06-24 | 龙源(北京)太阳能技术有限公司 | Electric warming controller and control method thereof |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20140521 Termination date: 20161218 |
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CF01 | Termination of patent right due to non-payment of annual fee |