CN204678599U - A kind of controller and air-conditioner control system - Google Patents
A kind of controller and air-conditioner control system Download PDFInfo
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- CN204678599U CN204678599U CN201420866493.2U CN201420866493U CN204678599U CN 204678599 U CN204678599 U CN 204678599U CN 201420866493 U CN201420866493 U CN 201420866493U CN 204678599 U CN204678599 U CN 204678599U
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Abstract
The utility model is applicable to control field, provides a kind of controller and air-conditioner control system, and described controller comprises: Temperature Humidity Sensor, infrared transmitter, bluetooth module and powered battery module; Described Temperature Humidity Sensor, infrared sensor are connected with described bluetooth module respectively; Described Temperature Humidity Sensor, infrared transmitter and bluetooth module respectively with described powered battery model calling.The utility model reduces the power consumption of controller; And solve controller use location that existing airconditioning control mode causes, the restricted problem of environment for use, be convenient to user and put described controller; The utility model also achieves and automatically regulates air-conditioning to keep constant indoor temperature according to indoor temperature.
Description
Technical field
The utility model belongs to control technology field, particularly relates to a kind of controller and air-conditioner control system.
Background technology
At present, the infrared control mode of air-conditioning is mainly divided three classes.The first kind converts data to infrared transmission to air-conditioning by Wi-Fi.Need external electrical network to power under this control mode, power consumption is large and limit the use location of control appliance.Equations of The Second Kind converts data to infrared transmission to air-conditioning by earphone interface of mobile phone.Need user to be placed in air-conditioned room under this control mode, limit use location and the environment for use of control appliance equally.3rd class converts data to infrared transmission to air-conditioning by bluetooth.Require under this control mode user can not from control appliance too away from, limit the service range of control appliance.
Utility model content
Given this, the utility model embodiment provides a kind of controller and air-conditioner control system, to solve, the power consumption that existing airconditioning control mode causes is large, control appliance use location, the restricted problem of environment for use, realize automatically regulating air-conditioning to keep constant indoor temperature.
First aspect, a kind of controller, described controller comprises:
Temperature Humidity Sensor, infrared transmitter, bluetooth module and powered battery module;
Described Temperature Humidity Sensor, infrared sensor are connected with described bluetooth module respectively;
Described Temperature Humidity Sensor, infrared transmitter and bluetooth module respectively with described powered battery model calling.
Further, described Temperature Humidity Sensor is SHT20 chip.
Further, described infrared transmitter is RT400 chip.
Further, described bluetooth module is CC2640 chip.
Second aspect, provides a kind of air-conditioner control system, and described system comprises controller as above, and the air-conditioning, the intelligent terminal that communicate with described controller respectively.
Further, described air-conditioning is communicated with being connected by infrared technique between controller;
Described intelligent terminal is communicated with being connected by Bluetooth technology between controller.
The third aspect, provides a kind of air-conditioner control system, and described system comprises controller as above, and
The air-conditioning communicated with described controller, control axis;
The router communicated with described control axis;
With the intelligent terminal of described router communication.
Further, described control axis comprises:
AC-DC power module, bluetooth module, Wi-Fi module, memory;
The output of described AC-DC power module is connected with described bluetooth module;
Described Wi-Fi module is connected with described bluetooth module by G-SPI interface;
Described memory is connected with described Wi-Fi module by serial peripheral equipment interface SPI.
Further, described control axis also comprises:
Current limiter, USB selecting side, the first USB interface and secondary USB interface;
The output of described AC-DC power module is connected with described first USB interface, secondary USB interface respectively through described current limiter;
The output of described AC-DC power module after described current limiter, then accesses described Wi-Fi module by described USB selecting side;
Described first USB interface is also connected with described Wi-Fi module respectively with secondary USB interface.
Further, described controller and described air-conditioning are connected by infrared technique and communicate;
Described controller and described control axis are connected by Bluetooth technology and communicate;
Described control axis and described router are connected by adopting wireless fidelity technology and communicate.
In the utility model embodiment, Temperature Humidity Sensor, bluetooth module, infrared transmitter are integrated in one by described controller, and described bluetooth module is low-power consumption bluetooth module, to reduce the average power consumption of controller; Further, described controller is also by powered battery module for power supply, easy to use, is convenient to user and puts described controller, solves controller use location that existing airconditioning control mode causes, the restricted problem of environment for use; And described controller is also controlled by described Temperature Humidity Sensor detected temperatures, realizes automatically regulating air-conditioning to keep constant indoor temperature according to indoor temperature.
Accompanying drawing explanation
Fig. 1 is the composition structure chart of the controller that the utility model embodiment one provides;
Fig. 2 is the circuit connection diagram of the controller that the utility model embodiment one provides;
Fig. 3 is the composition structure chart of the air-conditioner control system that the utility model embodiment two provides;
Fig. 4 is the composition structure chart of the air-conditioner control system that the utility model embodiment three provides;
Fig. 5 is the composition structure chart of the control axis that the utility model embodiment three provides.
Description of reference numerals is as follows: controller 1, air-conditioning 2, intelligent terminal 3, control axis 4, router five; In the controller, Temperature Humidity Sensor 11, infrared transmission module 12, bluetooth module 13, powered battery module 14; In the controlling in pivot, AC-DC power module 41, bluetooth module 42, Wi-Fi module 43, memory 44, current limiter 45, USB selecting side 46, first USB interface 47, secondary USB interface 48, first single-pole double-throw switch (SPDT) 49, second single-pole double-throw switch (SPDT) 410, LED 411, SR 412.
Detailed description of the invention
In order to make the purpose of this utility model, technical scheme and advantage clearly understand, below in conjunction with drawings and Examples, the utility model is further elaborated.Should be appreciated that specific embodiment described herein only in order to explain the utility model, and be not used in restriction the utility model.
In the utility model embodiment, Temperature Humidity Sensor, bluetooth module, infrared transmitter are integrated in one by described controller, and described bluetooth module is low-power consumption bluetooth module, to reduce the average power consumption of controller; Further, described controller is also by powered battery module for power supply, easy to use, is convenient to user and puts described controller, solves controller use location that existing airconditioning control mode causes, the restricted problem of environment for use; And described controller is also controlled by described Temperature Humidity Sensor detected temperatures, realizes automatically regulating air-conditioning to keep constant indoor temperature according to indoor temperature.
embodiment one
Fig. 1 shows the composition structure of the controller that the utility model embodiment one provides, and for convenience of explanation, illustrate only the part relevant to the utility model.
As shown in Figure 1, described controller 1 comprises:
Temperature Humidity Sensor 11, infrared transmitter 12, bluetooth module 13 and powered battery module 14.
Described Temperature Humidity Sensor 11, infrared sensor 12 are connected with described bluetooth module 13 respectively.
Described Temperature Humidity Sensor 11, infrared transmitter 12 and bluetooth module 13 are connected with described powered battery module 14 respectively.
Wherein, described bluetooth module 13 communicates for carrying out being connected with intelligent terminal 3, to realize the mutual of controller 1 and intelligent terminal 3, is preferably CC2640 chip.Described CC2640 chip is the super low-power consumption chip of double-core, the average power consumption of whole controller 1 can be reduced to 100 below μ A.
Described Temperature Humidity Sensor 11 refers to the equipment and the device that Temperature Quantity and humidity amount are converted to the signal of telecommunication of easy measured process, for measuring Temperature Quantity in air conditioning chamber and relative humidity, is preferably SHT20 chip.In the utility model embodiment, described Temperature Humidity Sensor 11 is after getting Temperature Quantity and relative humidity, compare with the temperature threshold preset, and send corresponding order by infrared transmitter to air-conditioning 2 according to comparison result, make air-conditioning indoor temperature reach corresponding temperature threshold.Preferably, described infrared transmitter 12 is RT400 chip.
Preferably, Fig. 2 gives the circuit connection diagram of controller 1.
In the utility model embodiment, Temperature Humidity Sensor, bluetooth module, infrared transmitter are integrated in one by described controller, and described bluetooth module adopts low-power consumption bluetooth module, to reduce the average power consumption of controller; Further, described controller is also by powered battery module for power supply, easy to use, is convenient to user and puts described controller, solves controller use location that existing airconditioning control mode causes, the restricted problem of environment for use; And described controller is also controlled by described Temperature Humidity Sensor detected temperatures, realizes automatically regulating air-conditioning to keep constant indoor temperature according to indoor temperature.
In the utility model, the method of operation controlled based on the 1 pair of air-conditioning 2 of the controller described in embodiment one has two kinds, be respectively the self-service method of operation and the controlled method of operation, when user in indoor time, the self-service method of operation can be used, when user in outdoor time, the controlled method of operation can be used, be described in detail respectively below.Wherein, the self-service method of operation refers to embodiment two, and the controlled method of operation refers to embodiment three.
embodiment two
Fig. 3 shows the composition structure of the air-conditioner control system that the utility model embodiment two provides, and for convenience of explanation, illustrate only the part relevant to the utility model.
As shown in Figure 3, described air-conditioner control system comprises the controller 1 as described in Fig. 1 embodiment, and the air-conditioning 2, the intelligent terminal 3 that communicate with described controller.
Wherein, the structure of described controller 1 is identical with the controller 1 described in Fig. 1 embodiment, specifically refers to describing of above-described embodiment, repeats no more herein.
Described controller 1 is communicated with being connected by infrared technique between air-conditioning 2, and the infrared transmitter 12 namely in described controller 1 is for sending infrared control instruction to described air-conditioning 2.
Described controller 1 is communicated with being connected by Bluetooth technology between intelligent terminal 3, and namely described controller 1 is connected with described intelligent terminal 3 by the bluetooth module 13 of self and communicates.
Preferably, described intelligent terminal 3 is provided with for carrying out temperature controlled application program.Described application program can send temperature template to described controller 1.Described temperature template sets inside temperature thresholds that in one day, each period is corresponding.Intelligent terminal 3 sends described temperature template by Bluetooth technology to described controller 1.Controller 1 receives described temperature template by the low-power consumption bluetooth module of self, and gathers indoor temperature and relative humidity by Temperature Humidity Sensor 11.Temperature Humidity Sensor 11 is after collecting temperature, the temperature threshold that gathered temperature is corresponding to temperature template is compared, and send corresponding control instruction by infrared transmitter 12 to air-conditioning 2 according to comparison result, to make indoor temperature remain on described temperature threshold, thus realize indoor thermostatic control.
In the utility model embodiment, Temperature Humidity Sensor, bluetooth module, infrared transmitter are integrated in one by controller, and described bluetooth module is low-power consumption bluetooth module, to reduce the average power consumption of controller; Further, described controller is by powered battery module for power supply, easy to use, is convenient to user and puts described controller, solves controller use location that existing airconditioning control mode causes, the restricted problem of environment for use; And the air-conditioner control system that described controller and air-conditioning, intelligent terminal form, controlled by Temperature Humidity Sensor detected temperatures trip temperature of going forward side by side, achieve and automatically regulate air-conditioning with temperature constant in holding chamber according to indoor temperature, improve the automaticity that air-conditioning regulates temperature.
embodiment three
Fig. 4 shows the composition structure of the air-conditioner control system that the utility model embodiment three provides, and for convenience of explanation, illustrate only the part relevant to the utility model.
As shown in Figure 4, described air-conditioner control system comprises the controller 1 as described in Fig. 1 embodiment, the air-conditioning 2 communicated with described controller 1, control axis 4;
The router five communicated with described control axis 4; And
The intelligent terminal 3 communicated with described router five.
Wherein, described controller 1 and described air-conditioning 2 are connected by infrared technique and communicate, and the infrared transmitter 12 namely in described controller 1 is for sending infrared control instruction to described air-conditioning 2.Described controller 1 and described control axis 4 are connected by Bluetooth technology and communicate.Described control axis 4 and described router five are connected by adopting wireless fidelity technology and communicate.
In the utility model embodiment, described intelligent terminal 3 sends to router five by the mode of accessing Internet by the control instruction of air-conditioning 2, communicated to transmit control instruction with control axis 4 by Wi-Fi by router five, control instruction is sent to controller 1 by bluetooth module 41 by control axis 4 again, and control instruction is converted to infrared ray and sends to air-conditioning 2 to control to complete temperature by controller 1 again.Visible, described air-conditioner control system achieves intelligent terminal 3 by the Long-distance Control of internet to air-conditioning 2.
Preferably, Fig. 5 shows the composition structure of the control axis 4 that the utility model embodiment three provides.Described control axis 4 comprises AC-DC power module 41, bluetooth module 42, Wi-Fi module 43, memory 44.
Wherein, the output of described AC-DC power module 41 is connected with described bluetooth module 42.
Described Wi-Fi module 43 is connected with described bluetooth module 42 by G-SPI interface.
Described memory 44 is connected with described Wi-Fi module 43 by serial peripheral equipment interface SPI.
Preferably, described control axis 4 also comprises:
Current limiter 45, USB selecting side 46, first USB interface 47 and secondary USB interface 48.
The output of described AC-DC power module 41 is connected 48 with described first USB interface 47, secondary USB interface respectively through described current limiter 45.
The output of described AC-DC power module 41 after described current limiter 45, then accesses described Wi-Fi module 43 by described USB selecting side 46.
Described first USB interface 47 is connected with described Wi-Fi module 43, is connected with described Wi-Fi module 43 preferably by the first single-pole double-throw switch (SPDT) 49.Described secondary USB interface 48 is connected with described Wi-Fi module 43, is connected with described Wi-Fi module 43 preferably by the second single-pole double-throw switch (SPDT) 410.
Wherein, for being converted to by 220V alternating current, voltage swing is 5V to described AC-DC power module 41, size of current is the direct current of 1.2A, for powering to bluetooth module 42, Wi-Fi module 43, first USB interface 44 and secondary USB interface 45, be preferably OB2510.Described bluetooth module 42 realizes the connection communication of control axis 4 and controller 1, and described Wi-Fi module 43 realizes the connection communication of control axis 4 and router five.Described bluetooth module excellent 42 elects low-power consumption CC2640 Bluetooth chip as; Described Wi-Fi module 43 is preferably low-power consumption Wi-FiCC3200 chip, to reduce the power consumption of control axis 4.
Preferably, described control axis 4 also comprises LED 411 and SR 412, and described LED 411 and SR 412 are all connected with described Wi-Fi module 43.Described bluetooth module 42 also comprises connected bluetooth transmitters, and described Wi-Fi module 43 also comprises connected Wi-Fi transmitter
In the utility model embodiment, control Temperature Humidity Sensor, bluetooth module, infrared transmitter to be integrated in one, described bluetooth module is low-power consumption bluetooth module, to reduce the average power consumption of controller; Further, described controller is by powered battery module for power supply, easy to use, is convenient to user and puts described controller, solves controller use location that existing airconditioning control mode causes, the restricted problem of environment for use; And the air-conditioner control system that described controller and air-conditioning, control axis, router, intelligent terminal form, achieve intelligent terminal Long-distance Control air-conditioning to regulate indoor temperature, break away from the restriction controled environment with command range further.
The foregoing is only preferred embodiment of the present utility model; not in order to limit the utility model; all do within spirit of the present utility model and principle any amendment, equivalent to replace and improvement etc., all should be included within protection domain of the present utility model.
Claims (10)
1. a controller, is characterized in that, described controller comprises:
Temperature Humidity Sensor, infrared transmitter, bluetooth module and powered battery module;
Described Temperature Humidity Sensor, infrared sensor are connected with described bluetooth module respectively;
Described Temperature Humidity Sensor, infrared transmitter and bluetooth module respectively with described powered battery model calling.
2. controller as claimed in claim 1, it is characterized in that, described Temperature Humidity Sensor is SHT20 chip.
3. controller as claimed in claim 1, it is characterized in that, described infrared transmitter is RT400 chip.
4. controller as claimed in claim 1, it is characterized in that, described bluetooth module is CC2640 chip.
5. an air-conditioner control system, is characterized in that, described system comprises the controller as described in any one of Claims 1-4, and the air-conditioning, the intelligent terminal that communicate with described controller respectively.
6. air-conditioner control system as claimed in claim 5, is characterized in that, described air-conditioning is communicated with being connected by infrared technique between controller;
Described intelligent terminal is communicated with being connected by Bluetooth technology between controller.
7. an air-conditioner control system, is characterized in that, described system comprises the controller as described in any one of Claims 1-4, and
The air-conditioning communicated with described controller, control axis;
The router communicated with described control axis;
With the intelligent terminal of described router communication.
8. air-conditioner control system as claimed in claim 7, it is characterized in that, described control axis comprises:
AC-DC power module, bluetooth module, Wi-Fi module, memory;
The output of described AC-DC power module is connected with described bluetooth module;
Described Wi-Fi module is connected with described bluetooth module by G-SPI interface;
Described memory is connected with described Wi-Fi module by serial peripheral equipment interface SPI.
9. air-conditioner control system as claimed in claim 8, it is characterized in that, described control axis also comprises:
Current limiter, USB selecting side, the first USB interface and secondary USB interface;
The output of described AC-DC power module is connected with described first USB interface, secondary USB interface respectively through described current limiter;
The output of described AC-DC power module after described current limiter, then accesses described Wi-Fi module by described USB selecting side;
Described first USB interface is also connected with described Wi-Fi module respectively with secondary USB interface.
10. the air-conditioner control system as described in any one of claim 7 to 9, is characterized in that, described controller and described air-conditioning are connected by infrared technique and communicate;
Described controller and described control axis are connected by Bluetooth technology and communicate;
Described control axis and described router are connected by adopting wireless fidelity technology and communicate.
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CN201420866493.2U CN204678599U (en) | 2014-12-30 | 2014-12-30 | A kind of controller and air-conditioner control system |
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Publication number | Priority date | Publication date | Assignee | Title |
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CN111308900A (en) * | 2020-02-28 | 2020-06-19 | Oppo(重庆)智能科技有限公司 | Intelligent electric appliance, control method and storage medium |
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Publication number | Priority date | Publication date | Assignee | Title |
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CN111308900A (en) * | 2020-02-28 | 2020-06-19 | Oppo(重庆)智能科技有限公司 | Intelligent electric appliance, control method and storage medium |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CP03 | Change of name, title or address | ||
CP03 | Change of name, title or address |
Address after: 518000 Nanshan medical equipment Industrial Park, No. 1019, Nanshan Road, Nanshan District, Shenzhen, Guangdong Province, A211-A213 Patentee after: Shenzhen Hai Yun new energy Co.,Ltd. Address before: 518000 Nanshan medical equipment Industrial Park, No. 1019 Nanhai Road, Shenzhen, Guangdong, Nanshan District B401-403 Patentee before: SHENZHEN LANDING TECHNOLOGY Co.,Ltd. |
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CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150930 Termination date: 20211230 |