CN212058880U - Embedded room home environment security sensor - Google Patents

Embedded room home environment security sensor Download PDF

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Publication number
CN212058880U
CN212058880U CN202020814037.9U CN202020814037U CN212058880U CN 212058880 U CN212058880 U CN 212058880U CN 202020814037 U CN202020814037 U CN 202020814037U CN 212058880 U CN212058880 U CN 212058880U
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China
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sensor
end cover
protection
drainage fan
protection end
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CN202020814037.9U
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Chinese (zh)
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李东民
刘盼
范国亮
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Henan Oxdor Ecological Iot Technology Co ltd
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Henan Oxdor Ecological Iot Technology Co ltd
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Abstract

The utility model relates to an embedding room house environment security protection sensor, including bearing the casing, the protection end cover, smoke transducer, temperature and humidity sensor, air quality sensor, far infrared human body sensor, luminance sensor, light intensity sensor, drainage fan and drive circuit, it is connected with the protection end cover to bear the casing up end, a plurality of bleeder vents of protection end cover left surface and right flank equipartition, a plurality of inlet ports of up end equipartition, far infrared human body sensor, luminance sensor, light intensity sensor inlays respectively in the terminal surface before the protection end cover, smoke transducer, temperature and humidity sensor, air quality sensor and drainage fan all inlay in the protection end cover, drive circuit inlays in bearing the casing. The novel structure can be directly embedded into the surface of a building on one hand, and cannot influence and damage the integral aesthetic property of the surface of the building; on the other hand, the requirements of comprehensively and continuously monitoring indoor environment, fire hazard and personnel activity conditions can be effectively met.

Description

Embedded room home environment security sensor
Technical Field
The utility model relates to a sensor is exactly an embedding room house environment security protection sensor.
Background
At present, in systems such as a home security system, an intelligent home and the like, sensor equipment for continuously monitoring indoor environment is huge in use amount, but in the currently used traditional indoor environment detection sensor, various types of sensors are relatively more, and installation positions and installation structures among the sensors are mutually independent, so that on one hand, the installation and construction difficulty of the sensor equipment for detecting the indoor environment is large, and a plurality of sensors of a large number of dispersing devices are easy to damage the integrity and the irrelevance of the indoor environment, and meanwhile, the daily management and maintenance operation difficulty of the sensors is increased; on the other hand, because the sensors with different functions are distributed at respective corresponding positions, the detection and monitoring of data of each monitoring point in an indoor environment are easy to have larger one-sidedness, and particularly, the sensors for security and air quality detection lack effective unified integration, so that the monitoring efficiency and quality are easily influenced due to inaccurate data detection, missing detection and the like.
Therefore, in view of the current situation, a brand new environment security sensor is urgently needed to be developed to meet the requirement of actual use.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects in the prior art, the utility model provides an embedded room home environment security sensor which has simple structure, flexible and convenient use and good universality, on one hand, the sensor can effectively meet the requirement of matching operation with various building structures, and simultaneously, the sensor can also be flexibly adjusted according to the use requirement so as to meet the requirement of carrying and positioning different objects; on the other hand has good data communication ability and network deployment operational capability, can effectively realize carrying out long-range non-contact and control to very big improvement this novel flexibility, reliability and the convenience of using of moving.
In order to achieve the above purpose, the present invention is realized by the following technical solution:
an embedded room home environment security sensor comprises a bearing shell, a protective end cover, a smoke sensor, a temperature and humidity sensor, an air quality sensor, a far infrared human body sensor, a brightness sensor, an illumination sensor, a drainage fan and a driving circuit, wherein the bearing shell is of a structure with an axial cross section in a shape of a Chinese character 'V' -shaped groove, the upper end surface of the bearing shell is connected with the protective end cover and coaxially distributed, the protective end cover and the bearing shell jointly form a closed cavity structure, the protective end cover is of a cavity structure with a rectangular axial cross section, a plurality of air holes are uniformly distributed on the left side surface and the right side surface of the protective end cover, a plurality of air inlets are uniformly distributed on the upper end surface, the air inlets are uniformly distributed around the axis of the protective end cover, the far infrared human body sensor, the brightness sensor and, smoke transducer, temperature and humidity sensor, air quality sensor and drainage fan all inlay in the protection end cover, wherein drainage fan and the coaxial distribution of protection end cover, smoke transducer, temperature and humidity sensor, air quality sensor inlay in the protection end cover and encircle drainage fan axis equipartition at the drainage fan equipartition, drive circuit inlays in the bearing housing to respectively with smoke transducer, temperature and humidity sensor, air quality sensor, far infrared human body sensor, luminance sensor, illuminance sensor, drainage fan electrical connection.
Further, bear casing upper segment and protection end cover between be connected through three at least adjusting bolt, and each adjusting bolt encircles and bears casing axis equipartition and with protection end cover axis parallel distribution, bear casing up end and protection end cover down between the terminal surface through elasticity protecting pipe connection, elasticity protecting pipe and the coaxial distribution of bearing the casing to the cladding is in each adjusting bolt outside, just protection end cover external diameter is for bearing 1.5-3 times of casing external diameter.
Further, the protection end cover includes base, operation panel, wherein the base is "font slot-shaped structure" for axial cross section, and the operation panel inlays in the base up end and distributes with the base is coaxial, base, operation panel constitute the closed cavity structure that highly is not less than 5 millimeters jointly, a plurality of bleeder vents of equipartition and each bleeder vent divide into two sets ofly on the base side surface altogether, and two sets of bleeder vents use base axis symmetric distribution and with base axis vertical distribution, a plurality of inlet ports of equipartition on the operation panel, the inlet port axis is 0-60 contained angle with operation panel axis to it is the array structure equipartition to encircle the operation panel axis.
Furthermore, the distance between the upper end surface and the lower end surface of the drainage fan and the bearing shell and the protection end cover is 0-10 mm, and the lower end surface and the upper end surface of the drainage fan are respectively connected with the protection end cover through elastic cushion blocks.
Furthermore, the aperture of each air hole and each air inlet hole is 1-5 mm, and the distance between every two adjacent air holes and the adjacent air inlet holes is 1-5 mm.
Furthermore, the driving circuit is a circuit system based on any one of a DSP chip and an FPGA chip, and is additionally provided with at least one power supply wiring terminal and at least one serial communication terminal, and the power supply wiring terminal and the serial communication terminal are embedded on the outer side surface of the bearing shell.
The novel structure is simple, the use is flexible and convenient, the universality is good, on one hand, the novel structure can be directly embedded into the surface of a building, the integral aesthetic property of the surface of the building cannot be influenced or damaged, and the universality and the concealment are good; on the other hand can effectively realize carrying out comprehensive needs that continuously monitor the operation to indoor environment, conflagration hidden danger, personnel's activity condition to flexibility, reliability and the convenience that this novel operation was used have been improved.
Drawings
The present invention will be described in detail with reference to the accompanying drawings and specific embodiments.
FIG. 1 is a schematic side sectional partial structure of the present invention;
fig. 2 is a schematic view of the structure of the present invention.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
As shown in figures 1 and 2, an embedded room home environment security sensor comprises a bearing shell 1, a protective end cover 2, a smoke sensor 3, a temperature and humidity sensor 4, an air quality sensor 5, a far infrared human body sensor 6, a brightness sensor 7, an illumination sensor 8, a drainage fan 9 and a driving circuit 10, wherein the bearing shell 1 is of a structure with an axial cross section in a shape of a Chinese character 'ji' groove, the upper end surface of the bearing shell is connected with and coaxially distributed with the protective end cover 2, the protective end cover 2 and the bearing shell 1 jointly form a closed cavity structure, the protective end cover 2 is of a cavity structure with a rectangular axial cross section, a plurality of air holes 11 are uniformly distributed on the left side surface and the right side surface of the protective end cover, a plurality of air inlets 12 are uniformly distributed on the upper end surface, the air inlets 12 are uniformly distributed around the axis of the protective end cover 2, the far infrared human, encircle 2 axis equipartitions of protection end cover and encircle the cladding in the inlet port 12 outside, smoke transducer 3, temperature and humidity sensor 4, air quality sensor 5 and drainage fan 9 all inlay in protection end cover 2, wherein drainage fan 6 and 2 coaxial distributions of protection end cover, smoke transducer 3, temperature and humidity sensor 4, air quality sensor 5 inlays in protection end cover 2 and encircles 9 axis equipartitions of drainage fan at drainage fan 9 equipartitions, drive circuit 10 inlays in bearing casing 1, and respectively with smoke transducer 3, temperature and humidity sensor 4, air quality sensor 5, far infrared human body sensor 6, luminance sensor 7, illuminance sensor 8, drainage fan 9 electrical connection.
Wherein, bear 1 upper segment of casing and protective end cover 2 between be connected through three at least adjusting bolt 14, and each adjusting bolt 14 encircle bear 1 axis equipartition of casing and with 2 axis parallel distribution of protective end cover, bear 1 up end of casing and 2 lower terminal surfaces of protective end cover and be connected through elasticity protecting pipe 13 between, elasticity protecting pipe 13 with bear 1 coaxial distribution of casing to the cladding is in each adjusting bolt 14 outside, just 2 external diameters of protective end cover are for bearing 1.5-3 times of 1 external diameter of casing.
Simultaneously, protective end cover 2 includes base 21, operation panel 22, wherein base 21 is "font slot-shaped structure for axial cross section, and operation panel 22 inlays in base 21 up end and with the coaxial distribution of base 21, operation panel 22 constitute the closed cavity structure that highly is not less than 5 millimeters jointly, equipartition a plurality of bleeder vents 11 and each bleeder vent 11 divide into two sets ofly altogether on the base 21 side surface, and two sets of bleeder vents 11 use base 21 axis symmetric distribution and with base 21 axis vertical distribution, equipartition a plurality of inlet ports 12 on the operation panel 22, inlet port 12 axis is 0-60 contained angle with operation panel 22 axis to it is the array structure equipartition to encircle operation panel 22 axis.
Further preferably, the distance between the upper end surface and the lower end surface of the drainage fan 9 and the bearing shell 1 and the protection end cover 2 is 0-10 mm, and the lower end surface and the upper end surface of the drainage fan 9 are respectively connected with the protection end cover 2 through elastic cushion blocks 15.
In this embodiment, the apertures of the air holes 11 and the air inlet holes 12 are both 1-5 mm, and the distance between two adjacent air holes 11 and air inlet holes 12 is 1-5 mm.
In this embodiment, the driving circuit 10 is a circuit system based on any one of a DSP chip and an FPGA chip, and the driving circuit 10 is further provided with at least one power connection terminal 101 and at least one serial communication terminal 102, and the power connection terminal 101 and the serial communication terminal 102 are both embedded on the outer side surface of the bearing housing 1.
This is novel in the concrete implementation, at first to constituting this neotype bearing housing, the protective end cover, smoke transducer, temperature and humidity sensor, air matter level sensor, far infrared human body sensor, luminance sensor, light intensity sensor, drainage fan and drive circuit assemble, then according to bearing the casing, protective end cover structure treats the installation at the building this neotype wall body on set up the mounted position, then will this neotype bearing housing whole and protective end cover rear end face imbed the mounted position in, and make protective end cover front end face exceed building surface 0 to protective end cover thickness 90%, will assemble the back this neotype drive circuit at last and be connected with outside electrical power generating system and monitor platform system respectively through power binding post and serial ports communication terminal, can accomplish the neotype assembly of cost.
The novel indoor environment monitoring device can monitor indoor environment after assembly operation is finished, and in the monitoring process, on one hand, the indoor environment brightness, the indoor environment illumination intensity and the indoor personnel position are continuously detected and monitored through the far infrared human body sensor, the brightness sensor and the indoor environment illumination intensity sensor which are embedded on the outer surface of the protective end cover; on the other hand, indoor environment air is introduced into the protection end cover through the air holes and the air inlet holes and flows in a circulating mode, when the indoor environment air flows in the circulating mode through the protection end cover, the current indoor environment temperature, the current indoor environment humidity and the current indoor environment air quality are continuously detected through the smoke sensor, the temperature and humidity sensor and the air quality sensor in the protection end cover, and finally data detected by the smoke sensor, the temperature and humidity sensor, the air quality sensor, the far infrared human body sensor, the brightness sensor and the illumination sensor are continuously transmitted to the monitoring platform through the driving circuit, so that the requirement for overall monitoring of the indoor home environment can.
Simultaneously, in operation, in addition accessible drainage fan is for the air current through smoke transducer, temperature and humidity sensor, air quality sensor carries out the drainage and accelerate to effectively improve smoke transducer, temperature and humidity sensor, air quality sensor and detect the efficiency of operation.
The novel structure is simple, the use is flexible and convenient, the universality is good, on one hand, the novel structure can be directly embedded into the surface of a building, the integral aesthetic property of the surface of the building cannot be influenced or damaged, and the universality and the concealment are good; on the other hand can effectively realize carrying out comprehensive needs that continuously monitor the operation to indoor environment, conflagration hidden danger, personnel's activity condition to flexibility, reliability and the convenience that this novel operation was used have been improved.
Those skilled in the art should understand that the present invention is not limited by the above embodiments. The foregoing embodiments and description have been made only for the purpose of illustrating the principles of the invention. The present invention can be further modified and improved without departing from the spirit and scope of the present invention. Such changes and modifications are intended to be within the scope of the claimed invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (6)

1. The utility model provides an embedding room home environment security protection sensor which characterized in that: the embedded room home environment security sensor comprises a bearing shell, a protective end cover, a smoke sensor, a temperature and humidity sensor, an air quality sensor, a far infrared human body sensor, a brightness sensor, an illumination sensor, a drainage fan and a driving circuit, wherein the bearing shell is of a structure with an axial cross section in a shape of a Chinese character 'ji' groove, the upper end surface of the bearing shell is connected with the protective end cover and coaxially distributed, the protective end cover and the bearing shell jointly form a closed cavity structure, the protective end cover is of a cavity structure with a rectangular axial cross section, a plurality of air holes are uniformly distributed on the left side surface and the right side surface of the protective end cover, a plurality of air inlets are uniformly distributed on the upper end surface, each air inlet is uniformly distributed around the axis of the protective end cover, the far infrared human body sensor, the brightness sensor and the illumination sensor are, smoke transducer, temperature and humidity sensor, air quality sensor and drainage fan all inlay in the protection end cover, wherein drainage fan and the coaxial distribution of protection end cover, smoke transducer, temperature and humidity sensor, air quality sensor inlay in the protection end cover and encircle drainage fan axis equipartition at the drainage fan equipartition, drive circuit inlays in the bearing housing to respectively with smoke transducer, temperature and humidity sensor, air quality sensor, far infrared human body sensor, luminance sensor, light intensity sensor, drainage fan electrical connection.
2. The embedded room home environment security sensor of claim 1, wherein: bear casing upper segment and protection end cover between be connected through three at least adjusting bolt, and each adjusting bolt encircle bear casing axis equipartition and with protection end cover axis parallel distribution, bear under casing up end and the protection end cover terminal surface between through elasticity protecting pipe, elasticity protecting pipe and the coaxial distribution of bearing casing to the cladding is in each adjusting bolt outside, just protection end cover external diameter is for bearing 1.5-3 times of casing external diameter.
3. The embedded room home environment security sensor of claim 1, wherein: the protection end cover comprises a base and an operation panel, wherein the base is of a structure with a cross section in a shape of a Chinese character 'ji' groove, the operation panel is embedded in the upper end face of the base and is coaxially distributed with the base, the base and the operation panel jointly form a closed cavity structure with the height not less than 5 mm, a plurality of air holes are uniformly distributed on the side surface of the base, the air holes are divided into two groups, the two groups of air holes are symmetrically distributed with the axis of the base and are perpendicular to the axis of the base, a plurality of air inlets are uniformly distributed on the operation panel, and the axis of the air inlets and the axis of the operation panel form an included angle of 0-60 degrees and are uniformly distributed.
4. The embedded room home environment security sensor of claim 1, wherein: the interval between the upper end surface and the lower end surface of the drainage fan and the bearing shell and the protection end cover is 0-10 mm, and the lower end surface and the upper end surface of the drainage fan are respectively connected with the protection end cover through elastic cushion blocks.
5. An embedded room home environment security sensor as claimed in claim 1 or 4, wherein: the aperture of each air hole and each air inlet hole is 1-5 mm, and the distance between every two adjacent air holes and the adjacent air inlet holes is 1-5 mm.
6. The embedded room home environment security sensor of claim 1, wherein: the drive circuit is a circuit system based on any one of a DSP chip and an FPGA chip, and is additionally provided with at least one power supply wiring terminal and at least one serial communication terminal, and the power supply wiring terminal and the serial communication terminal are embedded on the outer side surface of the bearing shell.
CN202020814037.9U 2020-05-15 2020-05-15 Embedded room home environment security sensor Active CN212058880U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020814037.9U CN212058880U (en) 2020-05-15 2020-05-15 Embedded room home environment security sensor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020814037.9U CN212058880U (en) 2020-05-15 2020-05-15 Embedded room home environment security sensor

Publications (1)

Publication Number Publication Date
CN212058880U true CN212058880U (en) 2020-12-01

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ID=73520031

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020814037.9U Active CN212058880U (en) 2020-05-15 2020-05-15 Embedded room home environment security sensor

Country Status (1)

Country Link
CN (1) CN212058880U (en)

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