CN220871900U - Sink pipe remote monitoring device - Google Patents

Sink pipe remote monitoring device Download PDF

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Publication number
CN220871900U
CN220871900U CN202322736197.2U CN202322736197U CN220871900U CN 220871900 U CN220871900 U CN 220871900U CN 202322736197 U CN202322736197 U CN 202322736197U CN 220871900 U CN220871900 U CN 220871900U
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China
Prior art keywords
shell
monitoring device
groove
remote monitoring
fixedly connected
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CN202322736197.2U
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Chinese (zh)
Inventor
徐晓婉
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Singularity Tongzhou Catering Management Beijing Co ltd
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Singularity Tongzhou Catering Management Beijing Co ltd
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Abstract

The utility model relates to the technical field of dormitory supervision, in particular to a remote monitoring device for a sink pipe, which comprises a shell, wherein a transparent partition plate is arranged on the front surface of the shell, a photosensitive sensor is fixedly connected to the inner wall of the shell, the photosensitive sensor is positioned right behind the transparent partition plate, a sound hole is formed in the front surface of the shell, the sound hole is positioned above the transparent partition plate, a sound box is fixedly connected to the inner wall of the shell, the sound box is positioned right behind the sound hole, a signal transmission mechanism is fixedly connected to the inner side wall of the shell, and a prompting lamp is fixedly connected to the front surface of the shell and positioned above the sound hole. The utility model can monitor the environment in the dormitory, and avoid the situation that students sleep late at night due to special reasons, resulting in poor mental state in the next day.

Description

Sink pipe remote monitoring device
Technical Field
The utility model relates to the field of dormitory supervision, in particular to a remote monitoring device for a host pipe.
Background
Dormitory is a house provided for students and staff by schools, personnel units and the like, and dormitory with different specifications is provided for different schools, so that students can learn sufficiently in daytime, and can fall asleep on time at night or fall in the daytime due to insufficient sleeping time at night, so that the daytime learning efficiency of the students can be reduced.
The main reasons for the deficiency of the sleeping of students at night are generally divided into two types, one is night stay up study and the other is night stay up play, and the other two types of reasons need light source irradiation or can generate light source under the dark state at night, so that whether the students in the dormitory fall asleep on time can be judged by detecting the light intensity of the dormitory.
Disclosure of utility model
The utility model aims to solve the defects in the prior art, and provides a remote monitoring device for a host pipe.
In order to achieve the above purpose, the present utility model adopts the following technical scheme: the utility model provides a host pipe remote monitoring device, includes the shell, the front of shell is provided with transparent baffle, the inner wall fixedly connected with photosensitive sensor of shell, photosensitive sensor is located transparent baffle's positive rear, the sound hole has been seted up to the front of shell, and the sound hole is located transparent baffle's top, the inner wall fixedly connected with stereo set of shell, the stereo set is located the sound hole directly behind, the inside wall fixedly connected with signal transmission mechanism of shell, the front fixedly connected with warning light of shell, and the warning light is located the top in sound hole.
As a further description of the above technical solution:
The inside of the shell is provided with a timer, and the timer is positioned behind the photosensitive sensor.
As a further description of the above technical solution:
The inside of shell installs the power, the power is located the rear of time-recorder, the back-mounted of shell has the guard plate, the position of guard plate corresponds with the position of power.
As a further description of the above technical solution:
The bottom of shell has seted up the gas pocket, smoke transducer is installed to the inner bottom of shell, smoke transducer is located the gas pocket directly over.
As a further description of the above technical solution:
The back of shell has seted up the draw-in groove, the both sides of draw-in groove are provided with the spacing groove, the inside swing joint of draw-in groove has the connecting plate, and the both ends are located the inside of spacing groove respectively about the connecting plate.
As a further description of the above technical solution:
The one end fixedly connected with backplate of shell is kept away from to the connecting plate, the hanging hole has been seted up on the surface of backplate, the quantity of hanging hole is a plurality of.
As a further description of the above technical solution:
The back of shell has seted up the viscose groove, the quantity of viscose groove is two, two the viscose groove is located the left and right sides of draw-in groove respectively, two the inside in viscose groove all is provided with the gum, the back of gum is provided with the release paper.
The utility model has the following beneficial effects:
1. compared with the prior art, this host pipe remote monitoring device, through photosensitive sensor, transparent baffle, the time-recorder, photosensitive sensor can detect the inside light intensity of dormitory when using, turn into the electrical signal with the light signal, when the time-recorder judges that time is in night, then judge that the dormitory is inside to have extra light source when the light intensity that photosensitive sensor detected, signal transmission mechanism sends the signal this moment, inform the host pipe in time to inspect this dormitory, when the time-recorder judges that time is in daytime, then judge monitoring facilities is covered by the object when light intensity that photosensitive sensor detected is less than the preset value, signal transmission mechanism also can send the signal this moment, inform the host pipe in time to inspect this dormitory, this remote monitoring device can monitor the inside environment of dormitory, avoid the student to lead to night because special reason leads to sleeping, cause the poor condition emergence of the mental state in the next day.
2. Compared with the prior art, this host pipe remote monitoring device, through smoke transducer, gas pocket, can detect the inside smog concentration of dormitory through smoke transducer when using, when detecting that smog concentration is higher than normal level, signal transmission mechanism sends the signal this moment, notifies the host pipe in time to inspect this dormitory to and carry out timely processing to the smog source, avoid the emergence of dormitory conflagration.
Drawings
Fig. 1 is a schematic diagram of a first view angle overall structure of a remote monitoring device for a sink pipe according to the present utility model;
fig. 2 is a schematic diagram of a second view overall structure of a remote monitoring device for a sink pipe according to the present utility model;
Fig. 3 is a schematic diagram of the overall structure of a third view angle of a remote monitoring device for a sink pipe according to the present utility model;
Fig. 4 is a sectional view of an internal structure of a remote monitoring device for a sink pipe according to the present utility model.
Legend description:
1. a housing; 2. a transparent separator; 3. a photosensitive sensor; 4. a sound hole; 5. a sound box; 6. a timer; 7. a signal transmission mechanism; 8. a power supply; 9. a warning light; 10. air holes; 11. a smoke sensor; 12. a clamping groove; 13. a connecting plate; 14. a back plate; 15. a hanging hole; 16. a viscose tank; 17. and (5) back glue.
Detailed Description
Referring to fig. 1-4, the utility model provides a remote monitoring device for a host pipe: the light source detection device comprises a shell 1, the front surface of the shell 1 is provided with a transparent baffle plate 2, the transparent baffle plate 2 can be a glass plate or an acrylic plate, light rays enter the device conveniently and are detected by a photosensitive sensor 3, the inner wall of the shell 1 is fixedly connected with the photosensitive sensor 3, the photosensitive sensor 3 can be a visible light sensor GVGR T GD or a sensor of other types, the resistance value in the photosensitive sensor 3 can be reduced along with the increase of the light ray intensity, so that an optical signal can be converted into an electric signal, when a timer 6 judges that the time is at night, the light ray intensity detected by the photosensitive sensor 3 is larger than a preset value (the resistance value is reduced, the passing current is larger than the preset value), then an additional light source exists in the dormitory, a signal transmission mechanism 7 sends out a signal to inform a host tube to check the dormitory in time, when the timer 6 judges that the time is in daytime, when the light intensity detected by the photosensitive sensor 3 is lower than a preset value (the resistance value is increased, the passing current is smaller than the preset value), the monitoring equipment is judged to be covered by an object, the signal transmission mechanism 7 can send out a signal to inform the host pipe to timely check the dormitory, the photosensitive sensor 3 is positioned right behind the transparent partition plate 2, light is conveniently irradiated on the photosensitive sensor 3, the sound hole 4 is formed in the front face of the shell 1, the sound hole 4 is positioned above the transparent partition plate 2, the sound box 5 is fixedly connected with the inner wall of the shell 1, the sound box 5 is positioned right behind the sound hole 4, when the detected value is different from the preset value, the sound box 5 can send out alarm sound, the inner wall of the shell 1 is fixedly connected with the signal transmission mechanism 7, the signal transmission mechanism 7 can be a WiFi signal sensor, the connecting network can transmit signals generated by the photosensitive sensor 3 and the smoke sensor 11, the front fixedly connected with warning light 9 of shell 1, and warning light 9 is located the top of sound hole 4, and warning light 9 can send out the light that twinks when detecting numerical value and default, the internally mounted of shell 1 has timer 6, and timer 6 can be quartz crystal oscillator or other equipment for quartz material cuts a fixed size for it is resonance on a certain frequency, namely it possesses the biggest oscillation amplitude on this frequency, and relative other vibration modes, this frequency of quartz crystal is very stable, can judge time according to the frequency under the prerequisite of frequency determination, and timer 6 is located the rear of photosensor 3.
The internally mounted of shell 1 has power 8, and power 8 is located the rear of time-recorder 6, and the back of shell 1 installs the guard plate, and the position of guard plate corresponds with the position of power 8, supplies power for the inside equipment of monitoring devices through power 8.
The bottom of shell 1 has seted up gas pocket 10, smoke transducer 11 is installed to the bottom in shell 1, smoke transducer 11 can be photoelectric smoke alarm, it is by infrared luminotron, infrared induction tube and a darkroom are constituteed, the light of infrared luminotron can not reach infrared induction tube under the no smog condition, when smog gets into little darkroom, these smog tiny particle makes the light that infrared luminotron sent produce the scattering, result in its partial light to be received by infrared induction tube, and convert into the electrical signal, detection circuit amplifies this electrical signal, when reaching alarm point, alarm entering alarm state is located directly over gas pocket 10 to smoke transducer 11.
The draw-in groove 12 has been seted up at the back of shell 1, the both sides of draw-in groove 12 are provided with the spacing groove, the inside swing joint of draw-in groove 12 has connecting plate 13, and the both ends are located the inside of spacing groove respectively about connecting plate 13, be convenient for connecting plate 13 installs in the inside of draw-in groove 12, the one end fixedly connected with backplate 14 of shell 1 is kept away from to connecting plate 13, hanging hole 15 has been seted up on the surface of backplate 14, the quantity of hanging hole 15 is a plurality of, can hang backplate 14 on the nail, accomplish the installation to monitoring devices, the viscose groove 16 has been seted up at the back of shell 1, the quantity of viscose groove 16 is two, two viscose grooves 16 are located the left and right sides of draw-in groove 12 respectively, the inside of two viscose grooves 16 all is provided with gum 17, the back of gum 17 is provided with the release paper, protect gum 17, when there is not inconvenient hanging of nail, can remove the release paper, the back of shell 1 is glued on the wall body surface.
Working principle: when the light intensity inside the dormitory can be detected by the photosensitive sensor 3 during use, an optical signal is converted into an electric signal, when the timer 6 judges that the time is at night, the light intensity detected by the photosensitive sensor 3 is larger than a preset value, an additional light source is judged to exist inside the dormitory, the signal transmission mechanism 7 sends out a signal to inform the host pipe to check the dormitory in time, when the timer 6 judges that the time is on the day, when the light intensity detected by the photosensitive sensor 3 is lower than the preset value, the monitoring equipment is judged to be covered by an object, at the moment, the signal transmission mechanism 7 also sends out a signal to inform the host pipe to check the dormitory in time, and the remote monitoring device can monitor the environment inside the dormitory, so that the condition that the second day is worse due to the fact that students sleep late at night due to special reasons is avoided.
Finally, it should be noted that: the foregoing description is only illustrative of the preferred embodiments of the present utility model, and although the present utility model has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described, or equivalents may be substituted for elements thereof, and any modifications, equivalents, improvements or changes may be made without departing from the spirit and principles of the present utility model.

Claims (7)

1. A sink remote monitoring device, comprising a housing (1), characterized in that: the front of shell (1) is provided with transparent baffle (2), the inner wall fixedly connected with photosensor (3) of shell (1), photosensor (3) are located directly behind transparent baffle (2), sound hole (4) have been seted up in the front of shell (1), and sound hole (4) are located the top of transparent baffle (2), the inner wall fixedly connected with stereo set (5) of shell (1), stereo set (5) are located directly behind sound hole (4), the inside wall fixedly connected with signal transmission mechanism (7) of shell (1), the front fixedly connected with warning light (9) of shell (1), and warning light (9) are located the top of sound hole (4).
2. The sink pipe remote monitoring device of claim 1, wherein: a timer (6) is arranged in the shell (1), and the timer (6) is positioned behind the photosensitive sensor (3).
3. The sink pipe remote monitoring device of claim 1, wherein: the novel electric meter is characterized in that a power supply (8) is arranged in the shell (1), the power supply (8) is located behind the timer (6), a protection plate is arranged on the back surface of the shell (1), and the position of the protection plate corresponds to that of the power supply (8).
4. The sink pipe remote monitoring device of claim 1, wherein: an air hole (10) is formed in the bottom of the shell (1), a smoke sensor (11) is arranged at the inner bottom of the shell (1), and the smoke sensor (11) is located right above the air hole (10).
5. The sink pipe remote monitoring device of claim 1, wherein: the back of shell (1) has seted up draw-in groove (12), the both sides of draw-in groove (12) are provided with the spacing groove, the inside swing joint of draw-in groove (12) has connecting plate (13), and the both ends are located the inside of spacing groove respectively about connecting plate (13).
6. The sink pipe remote monitoring device of claim 5, wherein: one end of the connecting plate (13) far away from the shell (1) is fixedly connected with a back plate (14), hanging holes (15) are formed in the surface of the back plate (14), and the number of the hanging holes (15) is multiple.
7. The sink pipe remote monitoring device of claim 5, wherein: the back of shell (1) has seted up viscose groove (16), the quantity of viscose groove (16) is two, two viscose groove (16) are located the left and right sides of draw-in groove (12) respectively, two the inside of viscose groove (16) all is provided with gum (17), the back of gum (17) is provided with the release paper.
CN202322736197.2U 2023-10-12 2023-10-12 Sink pipe remote monitoring device Active CN220871900U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322736197.2U CN220871900U (en) 2023-10-12 2023-10-12 Sink pipe remote monitoring device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322736197.2U CN220871900U (en) 2023-10-12 2023-10-12 Sink pipe remote monitoring device

Publications (1)

Publication Number Publication Date
CN220871900U true CN220871900U (en) 2024-04-30

Family

ID=90821828

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322736197.2U Active CN220871900U (en) 2023-10-12 2023-10-12 Sink pipe remote monitoring device

Country Status (1)

Country Link
CN (1) CN220871900U (en)

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