CN205450738U - Multi -functional cloud terminal - Google Patents
Multi -functional cloud terminal Download PDFInfo
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- CN205450738U CN205450738U CN201521115899.8U CN201521115899U CN205450738U CN 205450738 U CN205450738 U CN 205450738U CN 201521115899 U CN201521115899 U CN 201521115899U CN 205450738 U CN205450738 U CN 205450738U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P90/00—Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
- Y02P90/02—Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]
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Abstract
The utility model provides a possesses the multi -functional cloud terminal that multiple environmental parameter such as temperature, humidity, illuminance, air quality, PM2.5 value detected the function and went on communicating by letter simultaneously. The utility model discloses an embedded microprocessor, with temperature detection module, humidity detection module, illuminance detection module, air quality detection module, PM2.5 detection module inserts the AD0 -AD4 mouth of microprocessor module 1 respectively, after handling the numerical value of gathering, embedded microprocessor's AD mouth reachs the property value of various environment, communication module 8 is defeated by through the UART oral instructions to the environment state value that embedded microprocessor will gather, communication module 8 generally is wireless communication module, wireless communication module gives the cell -phone with environment state value wireless transmission, not terminal ground etc, the cell -phone can demonstrate current environmental parameter in real time and exceed standard alarm information simultaneously. The utility model discloses be applied to intelligent house field.
Description
Technical field
This utility model belongs to the Internet of Things communications field, especially relates to a kind of multi-functional cloud terminal based on environment measuring, it is adaptable to house system.
Background technology
Along with Internet of Things+and the development of wisdom Building technology in recent years, derive multiple Smart Home product.But function singleness, and simply simply set up standby wireless switching and control and remotely control, environmental monitoring and the detection of whole house system can not be realized, household formaldehyde the most in recent years, indoor gas leak event often has generation, if home furnishings intelligent product uses the multi-functional cloud terminal with environment measuring function, realize the temperature of domestic environment, humidity, illumination, formaldehyde, coal gas, PM2.5, the monitoring of the many kinds of parameters such as smog and ambient parameter exceed standard warning reminding, then can avoid the generation of house security accident well, and provide comfortable environment for life staying idle at home.
Utility model content
Technical problem to be solved in the utility model is to overcome the deficiencies in the prior art, it is provided that a kind of be provided simultaneously with the various environmental parameters detection functions such as temperature, humidity, illumination, air quality, PM2.5 value the multi-functional cloud terminal communicated.
nullThe technical scheme is that this utility model of this utility model includes housing,It is provided with embedded microprocessor in described housing,Described embedded microprocessor includes port、Some thief hatch、Power supply port and some GPIO,Described thief hatch is connected to temperature detecting module、Humidity detecting module、Luminance detection module、Detection of Air Quality module and PM2.5 detection module,Described temperature detecting module detection ambient temperature is also transferred to described embedded microprocessor,Described humidity detecting module detection ambient humidity is also transferred to described embedded microprocessor,Described luminance detection module detection ambient light illumination is also transferred to described embedded microprocessor,Described Detection of Air Quality module detection ambient air quality is also transferred to described embedded microprocessor,Described PM2.5 detection module detection ambient dust degree is also transferred to described embedded microprocessor;Port is connected with communication module, and described communication module carries out reporting and sending of data;Described power supply port is connected with power-supplying circuit, and powers to described embedded microprocessor, temperature detecting module, humidity detecting module, luminance detection module, Detection of Air Quality module, PM2.5 detection module and described communication module.
Further, described temperature detecting module includes that critesistor and the first filter circuit, described critesistor are connected with described first filter circuit, and described first filter circuit is connected with described embedded microprocessor.
Further, humidity detecting module includes that humidity sensor and the second filter circuit, described humidity sensor are connected with described second filter circuit, and described second filter circuit is connected with described embedded microprocessor.
Further, luminance detection module includes that photoconductive resistance and the 3rd filter circuit, described photoconductive resistance are connected with described 3rd filter circuit, and described 3rd filter circuit is connected with described embedded microprocessor.
Further, described Detection of Air Quality module includes that gas sensor and the 4th filter circuit, described gas sensor and described 4th filter circuit connect, and described 4th filter circuit is connected with described embedded microprocessor.
Further, described PM2.5 detection module includes that PM2.5 sensor and the 5th filter circuit, described PM2.5 sensor are connected with described 5th filter circuit, and described 5th filter circuit is connected with described embedded microprocessor.
Further, described power-supplying circuit includes that AC/DC module and DC/DC module, described AC/DC module and DC/DC module connect, and source current inputs from one end of described AC/DC module, exports from one end of described DC/DC module.
The beneficial effects of the utility model are: owing to this utility model includes embedded microprocessor, connect on embedded microprocessor and have temperature detecting module, humidity detecting module, luminance detection module, Detection of Air Quality module, PM2.5 detection module, power-supplying circuit and communication module, power-supplying circuit is to embedded microprocessor, temperature detecting module, humidity detecting module, luminance detection module, Detection of Air Quality module, PM2.5 detection module and communication module are powered, temperature detecting module, humidity detecting module, luminance detection module, Detection of Air Quality module and PM2.5 detection module detect the temperature of environment respectively, humidity, illumination, the dust granules amount of air quality and environment, and transfer data to display terminal, display current environment parameter and the warning message that exceeds standard;Domestic environment change is converted to data intuitively embody, provides safeguard for comfortable living environment.
Accompanying drawing explanation
Fig. 1 is theory diagram of the present utility model;
Fig. 2 is the theory diagram of this utility model power-supplying circuit;
Fig. 3 is the theory diagram of this utility model temperature detection;
Fig. 4 is the theory diagram of this utility model Humidity Detection;
Fig. 5 is the theory diagram of this utility model luminance detection;
Fig. 6 is the theory diagram of this utility model PM2.5 detection;
Fig. 7 is the theory diagram of this utility model Detection of Air Quality.
Detailed description of the invention
As shown in Figure 1, this utility model relates to a kind of multi-functional cloud terminal, and this terminal includes embedded microprocessor 1, power-supplying circuit 7, temperature detecting module 2, humidity detecting module 3, luminance detection module 4, Detection of Air Quality module 5, PM2.5 detection module 6 and communication module 8.The UART port of embedded microprocessor 1 is connected with communication module 8, AD0 mouth is connected with temperature detecting module 2, AD1 mouth is connected with humidity detecting module 3, AD2 mouth is connected with luminance detection module 4, AD3 mouth is connected with Detection of Air Quality module 5, AD4 mouth and PM2.5 detection module 6, power supply port is connected with power-supplying circuit 7, forms ambient parameter collection and the data communication of multi-functional cloud terminal.Being additionally provided with other GPIO some on embedded microprocessor 1, these GPIO are used for extending its function.The model of embedded microprocessor 1 is STM32F107.
As in figure 2 it is shown, power-supplying circuit 7 is made up of AC/DC module 71, DC/DC module 72.
Input 220V alternating current, is exported by AC/DC module 71,Through DC/DC module 72 output voltage, voltage3.3V voltage is provided for communication module 8, temperature detecting module 2, humidity detecting module 3, luminance detection module 4, Detection of Air Quality module 5, PM2.5 detection module 6, embedded microprocessor 1.
As shown in Figure 3, temperature detecting module 2 is made up of critesistor the 9, first filter circuit 10, the change of critesistor 9 induced environment temperature, carries out AD sampling processing by the AD0 mouth that different magnitudes of voltage corresponding for different temperature send into embedded microprocessor 1 through the first filter circuit 10.
As shown in Figure 4, humidity detecting module 3 is made up of humidity sensor the 11, second filter circuit 12, the change of humidity sensor 11 induced environment humidity, carries out AD sampling processing by the AD1 mouth that different magnitudes of voltage corresponding for different humidity values send into embedded microprocessor 1 through the second filter circuit 12.
As shown in Figure 5, luminance detection module 4 is made up of photoconductive resistance the 13, the 3rd filter circuit 14, the change of photoconductive resistance 13 induced environment illumination, carries out AD sampling processing by the AD2 mouth that different magnitudes of voltage corresponding for different brightness values send into embedded microprocessor 1 through the 3rd filter circuit 14.
As shown in Figure 6, PM2.5 detection module 6 is made up of PM2.5 sensor the 15, the 5th filter circuit 16, the change of PM2.5 sensor sensing ambient dust granule, carries out AD sampling processing by the AD4 mouth that different magnitudes of voltage corresponding for different dust granule values send into embedded microprocessor 1 through the 5th filter circuit 16.
As shown in Figure 7, Detection of Air Quality module 5 is made up of gas sensor the 17, the 4th filter circuit 18, the change of gas sensor induced environment air quality, carries out AD sampling processing by the AD3 mouth that different magnitudes of voltage corresponding for different air quality value send into embedded microprocessor 1 through the 4th filter circuit 16.
The AD mouth sending into embedded microprocessor 1 after the filtered circuit of all kinds of context detection module of multi-functional cloud terminal carries out AD sampling processing, the AD value that AD mouth is sampled by embedded microprocessor 1 carries out data by communication module 8 after treatment and reports and send, being simultaneously embedded in microsever 1 and provide corresponding air regulation process signal according to the ambient parameter value processed, regulation processes signal and is sent to control equipment through communication module 8.Communication module 8 generally wireless communication module, wireless communication module ambient condition value is radioed to mobile phone, terminal etc., mobile phone can demonstrate current environment parameter and the warning message that exceeds standard in real time simultaneously.
Above-mentioned filter circuit is existing filter circuit;Corresponding critesistor 9, humidity sensor 11, photoconductive resistance 13, gas sensor 17 and PM2.5 sensor 15 are and buy acquisition as requested.
Being only for example property of above example, rather than to restriction of the present utility model, any without departing from spirit and scope of the present utility model, and the equivalent modifications that it is carried out or change, it is intended to be limited solely by claim of the present utility model.
This utility model is applied to Smart Home field.
Claims (7)
1. a multi-functional cloud terminal, including housing, is provided with embedded microprocessor (1) in described housing, and described embedded microprocessor (1) includes port (UART), some thief hatch, power supply port and some GPIO, it is characterised in that:
Described thief hatch (AD0~4) is connected to temperature detecting module (2), humidity detecting module (3), luminance detection module (4), Detection of Air Quality module (5) and PM2.5 detection module (6), described temperature detecting module (2) detection ambient temperature is also transferred to described embedded microprocessor (1), described humidity detecting module (3) detection ambient humidity is also transferred to described embedded microprocessor (1), described luminance detection module (4) detection ambient light illumination is also transferred to described embedded microprocessor (1), described Detection of Air Quality module (5) detection ambient air quality is also transferred to described embedded microprocessor (1), described PM2.5 detection module (6) detection ambient dust degree is also transferred to described embedded microprocessor (1);
Port (UART) is connected with communication module (8), and described communication module (8) carries out reporting and sending of data;
Described power supply port is connected with power-supplying circuit (7), and powers to described embedded microprocessor (1), temperature detecting module (2), humidity detecting module (3), luminance detection module (4), Detection of Air Quality module (5), PM2.5 detection module (6) and described communication module (8).
One the most according to claim 1 multi-functional cloud terminal, it is characterized in that: described temperature detecting module (2) includes critesistor (9) and the first filter circuit (10), described critesistor (9) is connected with described first filter circuit (10), and described first filter circuit (10) is connected with described embedded microprocessor (1).
One the most according to claim 1 multi-functional cloud terminal, it is characterized in that: humidity detecting module (3) includes humidity sensor (11) and the second filter circuit (12), described humidity sensor (11) is connected with described second filter circuit (12), and described second filter circuit (12) is connected with described embedded microprocessor (1).
One the most according to claim 1 multi-functional cloud terminal, it is characterized in that: luminance detection module (4) includes photoconductive resistance (13) and the 3rd filter circuit (14), described photoconductive resistance (13) is connected with described 3rd filter circuit (14), and described 3rd filter circuit (14) is connected with described embedded microprocessor (1).
One the most according to claim 1 multi-functional cloud terminal, it is characterized in that: described Detection of Air Quality module (5) includes gas sensor (17) and the 4th filter circuit (18), described gas sensor (17) and described 4th filter circuit (18) connect, and described 4th filter circuit (18) is connected with described embedded microprocessor (1).
One the most according to claim 1 multi-functional cloud terminal, it is characterized in that: described PM2.5 detection module (6) includes PM2.5 sensor (15) and the 5th filter circuit (16), described PM2.5 sensor (15) is connected with described 5th filter circuit (16), and described 5th filter circuit (16) is connected with described embedded microprocessor (1).
7. according to the one multi-functional cloud terminal described in any one of claim 1 to 6, it is characterized in that: described power-supplying circuit (7) includes AC/DC module (71) and DC/DC module (72), described AC/DC module (71) and DC/DC module (72) connect, source current inputs from one end of described AC/DC module (71), exports from one end of described DC/DC module (72).
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CN201521115899.8U CN205450738U (en) | 2015-12-30 | 2015-12-30 | Multi -functional cloud terminal |
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CN201521115899.8U CN205450738U (en) | 2015-12-30 | 2015-12-30 | Multi -functional cloud terminal |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106289406A (en) * | 2016-08-29 | 2017-01-04 | 安徽云图信息技术有限公司 | Monitoring alarm device |
CN106290745A (en) * | 2016-10-31 | 2017-01-04 | 深圳前海弘稼科技有限公司 | The reminding method of content of material and plantation equipment |
-
2015
- 2015-12-30 CN CN201521115899.8U patent/CN205450738U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106289406A (en) * | 2016-08-29 | 2017-01-04 | 安徽云图信息技术有限公司 | Monitoring alarm device |
CN106290745A (en) * | 2016-10-31 | 2017-01-04 | 深圳前海弘稼科技有限公司 | The reminding method of content of material and plantation equipment |
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Effective date of registration: 20210303 Address after: 519000 315-58, 3rd floor, building 1, No.18 Futian Road, Xiangzhou District, Zhuhai City, Guangdong Province Patentee after: Zhuhai XunWei Technology Co.,Ltd. Address before: 519015 3rd / 6th floor, garden building, 1083 Jiuzhou Avenue central, Zhuhai City, Guangdong Province Patentee before: GUANGDONG JINGXUN TECHNOLOGY Co.,Ltd. |