Alarm device for preventing crash of monitoring system

By introducing components such as temperature sensors and cooling fans into the monitoring equipment, the problem of equipment crashes due to heat accumulation has been solved, achieving efficient heat dissipation and remote alarm, thus improving the reliability and security of the equipment.

CN223599941UActive Publication Date: 2025-11-25SOUTHWEST PETROLEUM UNIV
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Patent Information

Application Number
CN202423129067.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-11-25
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

The existing monitoring equipment lacks a temperature alarm device, which makes it prone to crashing due to excessive heat buildup during prolonged use, as it cannot dissipate heat in time.

Method used

An alarm device for preventing monitoring system crashes was designed, comprising a main body, a heat dissipation mechanism, and a cooling mechanism. It uses a temperature sensor to monitor the temperature, triggers an audible and visual alarm, and activates a cooling fan and a micro pump, combined with cooling pipes and a semiconductor refrigeration chip for efficient heat dissipation and cooling.

Benefits of technology

It achieves efficient heat dissipation for monitoring equipment, preventing system crashes caused by excessive heat buildup, and features remote wireless alarm functionality, thereby improving the reliability and security of the equipment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses an alarm device for preventing crash of a monitoring system, and belongs to the technical field of monitoring system equipment. The alarm device for preventing crash of the monitoring system comprises a main body, a heat dissipation mechanism and a cooling mechanism, the main body comprises a shell, a plurality of first heat dissipation fins are installed in the shell and are all in a hollow ring shape, and the inner walls of the first heat dissipation fins are connected with a monitoring equipment body; the heat dissipation mechanism comprises a plurality of first heat dissipation fins, a plurality of through holes are formed in the first heat dissipation fins, a separation groove is formed between the opposite faces of every two adjacent first heat dissipation fins, a temperature sensor is installed at the position, located in one separation groove, of the inner wall of the shell, and an audible and visual alarm is installed on one side of the outer portion of the shell. A heat dissipation base is connected between one ends of the pair of connecting plates, a cooling pipe is installed in the heat dissipation base, and a heat dissipation fan is installed on the face, away from the shell, of the heat dissipation base in an embedded mode.
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Description

TECHNICAL FIELD

[0001] The utility model relates to monitoring system equipment technical field, concretely is a kind of alarm device for preventing monitoring system dead machine. BACKGROUND

[0002] As a component of monitoring system, monitoring equipment is mainly responsible for single functions such as data acquisition and signal transmission. With the improvement of modern living standards, people have higher pursuit of safe living environment, such as ordinary residential area, school, etc. A very perfect security monitoring system is established. Modern security monitoring equipment has the characteristics of high density, high speed, low voltage and low power consumption.

[0003] Based on the above, the present inventor found that the following problems exist: the current monitoring equipment lacks a temperature alarm device. When the monitoring equipment is used for a long time, it is easy to accumulate too much heat, causing the monitoring equipment to crash. It cannot cool the monitoring equipment in time and cannot meet people's needs.

[0004] Therefore, in view of the above, the existing structure and defects are improved to provide an alarm device for preventing monitoring system dead machine, so as to achieve the purpose of having more practical value. INVENTION CONTENTS

[0005] The utility model aims at providing an alarm device for preventing monitoring system dead machine to solve the problems in the background art.

[0006] In view of the above problems, the technical scheme provided by the utility model is:

[0007] An alarm device for preventing monitoring system dead machine, comprising a main body, a heat dissipation mechanism and a cooling mechanism, the main body comprises a shell, a plurality of first heat dissipation fins are installed inside the shell, the plurality of first heat dissipation fins are hollow annular, and the inner wall of the plurality of first heat dissipation fins is connected with a monitoring equipment body, a plurality of through holes are formed on the plurality of first heat dissipation fins, a separation groove is formed between the opposite sides of an adjacent pair of first heat dissipation fins, a temperature sensor is installed on the inner wall of the shell at one of the separation grooves, and an audible and visual alarm is installed on one side of the shell, the heat dissipation mechanism comprises a pair of connecting plates, a heat dissipation seat is connected between one end of the pair of connecting plates, a cooling pipe is installed inside the heat dissipation seat, and a heat dissipation fan is embedded and installed on the side of the heat dissipation seat away from the shell.

[0008] Further, one end of the pair of connecting plates away from the heat dissipation seat is connected with one side of the shell, respectively, and a filter screen is embedded and installed inside the front of the heat dissipation seat.

[0009] The beneficial effect of the further scheme is that the filter screen is installed on the front side of the heat dissipation seat, and the filter screen is also installed on the side of the heat dissipation fan away from the heat dissipation seat, so that the two filter screens filter the dust in the air during the process of starting the heat dissipation fan to make the air flow quickly.

[0010] Further, the cooling pipe is connected with the water inlet pipe and the water outlet pipe at two ends respectively, and the cooling pipe is in a spiral shape, and the inside of the cooling pipe is filled with cooling liquid.

[0011] The beneficial effect of the further scheme is that the cooling pipe is arranged in a spiral shape, the spiral-shaped cooling pipe generates vortex by increasing the flow path of the fluid, thereby improving the cooling efficiency, and the cooling liquid in the cooling pipe is discharged through the water outlet pipe and then re-injected into the cooling pipe through the water inlet pipe.

[0012] Further, the cooling mechanism comprises a storage tank, the upper end of the storage tank is connected with the bottom end of the heat dissipation seat, the ends of the water inlet pipe and the water outlet pipe away from the cooling pipe extend to the inside of the storage tank, a micro pump is installed on the inner side wall of the storage tank, the water outlet end of the micro pump is connected with the water inlet pipe, and the water inlet end of the micro pump is connected with a communication pipe.

[0013] The beneficial effect of the further scheme is that the micro pump is installed, when the micro pump is started, the cooling liquid in the storage tank flows into the cooling pipe through the communication pipe, the micro pump and the water inlet pipe, so that the cooling liquid in the cooling pipe flows into the inside of the storage tank again, thereby realizing the circulation of the cooling liquid in the cooling pipe and the storage tank.

[0014] Further, the inside of the storage tank is filled with cooling liquid, and a semiconductor refrigeration sheet is embedded and installed at the bottom end of the inside of the storage tank.

[0015] The beneficial effect of the further scheme is that the semiconductor refrigeration sheet is installed, when the semiconductor refrigeration sheet works, the cooling liquid in the storage tank is cooled and cooled.

[0016] Further, a plurality of second heat dissipation fins are installed at the bottom end of the storage tank, and the upper ends of the plurality of second heat dissipation fins are connected with the hot end of the semiconductor refrigeration sheet.

[0017] The beneficial effect of the further scheme is that a plurality of second heat dissipation fins are installed, and the plurality of second heat dissipation fins are distributed in a straight line at equal distances, thereby facilitating heat dissipation of the semiconductor refrigeration sheet through the second heat dissipation fins.

[0018] Further, the outer side wall of the shell is provided with a control panel, and the outer side wall of the shell is provided with a signal transceiver on one side of the control panel, and the control panel is electrically connected with the temperature sensor, the sound and light alarm, the signal transceiver, the cooling fan and the micro pump machine through wires.

[0019] The beneficial effect of the further scheme is that through the cooperation of the control panel, the temperature sensor, the sound and light alarm, the signal transceiver, the cooling fan and the micro pump machine, the temperature alarm value is set in advance through the control panel, the temperature of the monitoring device body is monitored by the temperature sensor, when the temperature data detected by the temperature sensor exceeds the pre-set temperature alarm value, the control panel controls the sound and light alarm to work, the sound and light alarm function is realized, the remote wireless alarm function is realized through the signal transceiver, and the control panel controls the cooling fan and the micro pump machine to work, and the monitoring device body is cooled, so that the monitoring device body is prevented from overheating and causing a crash due to long use.

[0020] Compared with the prior art, the beneficial effect of the alarm device for preventing the crash of the monitoring system is that the temperature alarm value is set in advance through the control panel, the monitoring device body is cooled through the installation of the first plurality of cooling fins, when the monitoring device body works for a long time and causes excessive heat accumulation, the first plurality of cooling fins cannot efficiently cool, the temperature of the monitoring device body is monitored by the temperature sensor, when the temperature data detected by the temperature sensor exceeds the pre-set temperature alarm value, the control panel controls the sound and light alarm to work, the sound and light alarm function is realized, the remote wireless alarm function is realized through the signal transceiver, and the control panel controls the cooling fan and the micro pump machine to work, since the cooling pipe is filled with cooling liquid, when the cooling fan works, the external air enters the inside of the cooling seat and forms cold air under the action of the cooling pipe and then continuously enters the inside of the shell, since the plurality of first cooling fins are provided with a plurality of through holes, the cold air passes through the through holes and carries away the heat of the first cooling fins, so that the first cooling fins are cooled, and the cooling efficiency of the monitoring device body is improved, and the crash of the monitoring device body caused by excessive heat accumulation is prevented. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 A perspective structural schematic view of the alarm device for preventing the crash of the monitoring system is provided.

[0022] Figure 2 An explosion perspective structural schematic view of the alarm device for preventing the crash of the monitoring system is provided.

[0023] Figure 3 An explosion perspective structural schematic view of the cooling mechanism of the alarm device for preventing the crash of the monitoring system is provided.

[0024] Figure 4 A three-dimensional structure schematic view of the cooling pipe of the alarm device for preventing the monitoring system from dead machine is provided in the utility model;

[0025] Figure 5 A side cross-sectional structure schematic view of the storage box of the alarm device for preventing the monitoring system from dead machine is provided in the utility model.

[0026] In the figure: 100, main body; 1001, shell; 1002, first radiating fin; 1003, separation groove; 1004, through hole; 1005, monitoring equipment main body; 1006, control panel; 1007, signal transceiver; 1008, audible and visual alarm; 200, radiating mechanism; 2001, connecting plate; 2002, radiating seat; 2003, cooling pipe; 2004, radiating fan; 2005, filter screen; 2006, water inlet pipe; 2007, water outlet pipe; 300, cooling mechanism; 3001, storage box; 3002, miniature pump machine; 3003, semiconductor refrigeration piece; 3004, second radiating fin. DETAILED DESCRIPTION

[0027] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all the other embodiments obtained by the ordinary skilled in the art without creative labor fall within the protection scope of the utility model.

[0028] Please refer to Figures 1-5The utility model provides a kind of technical scheme: a kind of alarm device for preventing the monitoring system dead machine, including main body 100, heat dissipation mechanism 200 and cooling mechanism 300, main body 100 includes shell 1001, the inside of shell 1001 is equipped with several first radiating fins 1002, several first radiating fins 1002 are all hollow annular, and the inner wall of several first radiating fins 1002 is connected with monitoring equipment body 1005, several first radiating fins 1002 are equipped with several through holes 1004, the opposite side between the opposite side of adjacent pair of first radiating fins 1002 forms separation groove 1003, temperature sensor is installed at one of separation groove 1003 of the inner wall of shell 1001, and sound-light alarm 1008 is installed at the outside one side of shell 1001, heat dissipation mechanism 200 includes a pair of connecting plate 2001, a pair of connecting plate 2001 is connected with radiating seat 2002 between one end, cooling pipe 2003 is installed in radiating seat 2002, and radiating fan 2004 is embedded and installed in the side of radiating seat 2002 away from shell 1001, by installing several first radiating fins 1002, monitoring equipment body 1005 is radiated, when monitoring equipment body 1005 is caused by long time work and heat accumulation is too much, only rely on first radiating fin 1002 cannot carry out high-efficiency heat dissipation, temperature sensor monitors the temperature of monitoring equipment body 1005, when the temperature data detected by temperature sensor exceeds pre-set temperature alarm value, when radiating fan 2004 works, since the inside of cooling pipe 2003 is filled with cooling liquid, the air outside enters the inside of radiating seat 2002 and forms cold wind under the action of cooling pipe 2003 and then constantly enters the inside of shell 1001, since several first radiating fins 1002 are all equipped with several through holes 1004, so that cold wind passes through through hole 1004 and carries away the heat of first radiating fin 1002, to radiate first radiating fin 1002, to improve the heat dissipation efficiency of monitoring equipment body 1005, to prevent monitoring equipment body 1005 from heat accumulation too much and lead to dead machine.

[0029] The technical solutions in the embodiments of the utility model will be described clearly and completely below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0030] Please refer to Figures 1-5The utility model provides a technical scheme: one pair of connecting plate 2001 is away from the end of heat dissipation seat 2002 is connected with the one side of casing 1001 respectively, the front inside of heat dissipation seat 2002 is embedded and is installed with filter screen 2005, and the both ends of cooling pipe 2003 are connected with water inlet pipe 2006 and water outlet pipe 2007 respectively, and cooling pipe 2003 is spiral, and the inside of cooling pipe 2003 is filled with cooling liquid, and cooling mechanism 300 includes storage tank 3001, and the upper end of storage tank 3001 is connected with the bottom end of heat dissipation seat 2002, and the end of water inlet pipe 2006 and water outlet pipe 2007 away from cooling pipe 2003 all extend to the inside through storage tank 3001, and the inside wall of storage tank 3001 is installed with micro pump machine 3002, and the water outlet end of micro pump machine 3002 is connected with water inlet pipe 2006, and the water inlet end of micro pump machine 3002 is connected with the communicating pipe, and the inside of storage tank 3001 is filled with cooling liquid, and the inside bottom end of storage tank 3001 is embedded and is installed with semiconductor refrigeration fin 3003, and the bottom end of storage tank 3001 is installed with a plurality of second radiating fins 3004, and the upper end of a plurality of second radiating fins 3004 is connected with the hot end of semiconductor refrigeration fin 3003, by installing filter screen 2005 on the front of heat dissipation seat 2002, and the one side of heat dissipation fan 2004 away from heat dissipation seat 2002 is also installed with filter screen 2005, when starting heat dissipation fan 2004 makes the process of air quick circulation, two filter screens 2005 filter the dust in the air, by setting cooling pipe 2003 into spiral, the eddy current is generated by the spiral cooling pipe 2003 through increasing the flow path of fluid, thereby improve the cooling efficiency, by connecting water inlet pipe 2006 and water outlet pipe 2007 on the both ends of cooling pipe 2003, the cooling liquid in cooling pipe 2003 is discharged through water outlet pipe 2007, and then re-injects the cooling liquid into cooling pipe 2003 through water inlet pipe 2006, by installing micro pump machine 3002, when starting micro pump machine 3002, the cooling liquid in storage tank 3001 passes through the communicating pipe, micro pump machine 3002, water inlet pipe 2006 and enters cooling pipe 2003, so that the cooling liquid in cooling pipe 2003 reflows to the inside of storage tank 3001, thereby realizing the circulation flow of cooling pipe 2003 and the cooling liquid in storage tank 3001, by installing semiconductor refrigeration fin 3003, when semiconductor refrigeration fin 3003 works, then the cooling liquid in storage tank 3001 is cooled, by installing a plurality of second radiating fins 3004, a plurality of second radiating fins 3004 are distributed in equidistance straight lines, thereby facilitating the heat dissipation of semiconductor refrigeration fin 3003 through second radiating fin 3004.

[0031] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0032] Please refer to Figures 1-5 The present application provides a technical solution: the outer side wall of the shell 1001 is provided with a control panel 1006, and the outer side wall of the shell 1001 is provided with a signal transceiver 1007 on one side of the control panel 1006, and the control panel 1006 is electrically connected with the temperature sensor, the sound and light alarm 1008, the signal transceiver 1007, the cooling fan 2004 and the micro pump machine 3002 through wires. Through the cooperation of the control panel 1006, the temperature sensor, the sound and light alarm 1008, the signal transceiver 1007, the cooling fan 2004 and the micro pump machine 3002, the temperature alarm value is set in advance through the control panel 1006. The temperature sensor monitors the temperature of the monitoring device body 1005. When the temperature data detected by the temperature sensor exceeds the pre-set temperature alarm value, the control panel 1006 controls the sound and light alarm 1008 to work, realizing the sound and light alarm function, and through the signal transceiver 1007, realizing the remote wireless alarm function. At the same time, the control panel 1006 controls the cooling fan 2004 and the micro pump machine 3002 to work, and cools the monitoring device body 1005, so as to avoid the overheating of the monitoring device body 1005 caused by the long use time of the monitoring device body 1005, which leads to the death of the monitoring device body 1005.

[0033] Specifically, the working principle of the alarm device for preventing the monitoring system from crashing is as follows: when in use, the monitoring device body 1005 is cooled by the first heat dissipation fins 1002. When the monitoring device body 1005 works for a long time and generates too much heat, which cannot be dissipated efficiently by the first heat dissipation fins 1002 alone, the temperature alarm value is set in advance through the control panel 1006, and the temperature of the monitoring device body 1005 is monitored by the temperature sensor. When the temperature data detected by the temperature sensor exceeds the pre-set temperature alarm value, the control panel 1006 controls the sound and light alarm 1008 to work, realizing the sound and light alarm function, and realizes the remote wireless alarm function through the signal transceiver 1007. At the same time, the control panel 1006 controls the cooling fan 2004 and the micro pump 3002 to work. When the cooling fan 2004 works, the air outside enters the inside of the heat dissipation seat 2002 and forms cold air under the action of the cooling pipe 2003, and then enters the inside of the shell 1001. Since the first heat dissipation fins 1002 are provided with a plurality of through holes 1004, the cold air passes through the through holes 1004 to take away the heat of the first heat dissipation fins 1002, thereby cooling the first heat dissipation fins 1002 and improving the cooling efficiency of the monitoring device body 1005, thereby preventing the monitoring device body 1005 from crashing due to excessive heat accumulation. When the micro pump 3002 works, the cooling liquid in the storage tank 3001 enters the cooling pipe 2003 through the communication pipe, the micro pump 3002 and the water inlet pipe 2006, so that the cooling liquid in the cooling pipe 2003 flows to the inside of the storage tank 3001, thereby realizing the circulation of the cooling liquid in the cooling pipe 2003 and the storage tank 3001. By installing the semiconductor refrigeration piece 3003, the cooling liquid in the storage tank 3001 is cooled and cooled by the semiconductor refrigeration piece 3003. By installing a plurality of second heat dissipation fins 3004, the second heat dissipation fins 3004 are distributed in a straight line at equal distances, thereby facilitating the cooling of the semiconductor refrigeration piece 3003 by the second heat dissipation fins 3004.

Claims

1. An alarm device for preventing monitoring system crashes, characterized in that, The utility model provides a kind of monitoring device, including main body (100), heat dissipation mechanism (200) and cooling mechanism (300), the main body (100) includes shell (1001), the inside of shell (1001) is equipped with several first heat dissipation fins (1002), several first heat dissipation fins (1002) are hollow annular, and the inner wall of several first heat dissipation fins (1002) is connected with monitoring device body (1005), several first heat dissipation fins (1002) are equipped with several through holes (1004), the opposite side between adjacent pair of first heat dissipation fins (1002) forms separation groove (1003), temperature sensor is installed in the inner wall of shell (1001) at one of separation groove (1003), and sound-light alarm (1008) is installed on the outside of shell (1001) side, the heat dissipation mechanism (200) includes a pair of connecting plate (2001), a pair of connecting plate (2001) one end between heat dissipation seat (2002) is connected, the inside of heat dissipation seat (2002) is equipped with cooling pipe (2003), and heat dissipation fan (2004) is embedded and installed on the side of heat dissipation seat (2002) away from shell (1001).

2. The alarm device for preventing a system crash of a monitoring system according to claim 1, wherein A pair of connecting plate (2001) one end away from heat dissipation seat (2002) is connected with the side of shell (1001) respectively, and the front inside of heat dissipation seat (2002) is embedded and installed with filter screen (2005).

3. The alarm device for preventing the system from freezing according to claim 2, wherein, The both ends of cooling pipe (2003) are connected with water inlet pipe (2006) and water outlet pipe (2007) respectively, and cooling pipe (2003) is spiral, and the inside of cooling pipe (2003) is filled with cooling liquid.

4. The alarm device for preventing the system from freezing according to claim 3, wherein, The cooling mechanism (300) includes storage box (3001), the upper end of storage box (3001) is connected with the bottom end of heat dissipation seat (2002), and the end of water inlet pipe (2006) and water outlet pipe (2007) away from cooling pipe (2003) is extended to the inside of storage box (3001) penetratingly, and the inner side wall of storage box (3001) is equipped with micro pump (3002), the water outlet end of micro pump (3002) is connected with water inlet pipe (2006), and the water inlet end of micro pump (3002) is connected with communication pipe.

5. The alarm device for preventing the system from freezing according to claim 4, wherein, The inside of storage box (3001) is filled with cooling liquid, and the inside bottom end of storage box (3001) is embedded and installed with semiconductor refrigeration sheet (3003).

6. The alarm device for preventing a system crash of a monitoring system according to claim 5, wherein The bottom end of storage box (3001) is equipped with several second heat dissipation fins (3004), and the upper end of several second heat dissipation fins (3004) is connected with the hot end of semiconductor refrigeration sheet (3003).

7. The alarm device for preventing a system crash of a monitoring system according to claim 1, wherein The outer side wall of the shell (1001) is provided with a control panel (1006), and the outer side wall of the shell (1001) is provided with a signal transceiver (1007) on one side of the control panel (1006). The control panel (1006) is electrically connected to the temperature sensor, the sound-light alarm (1008), the signal transceiver (1007), the heat dissipation fan (2004) and the micro pump (3002) through wires.