Equipment protection device

By installing a base on the surveying equipment, combined with components such as a microcontroller and infrared sensors, the problem of staff leaving the equipment without permission was solved, enabling real-time monitoring and warnings, and improving the safety and management efficiency of surveying work.

CN223664801UActive Publication Date: 2025-12-12JINAN SURVEYING & MAPPING RES INST
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Patent Information

Application Number
CN202520108475.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2025-12-12
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

Existing surveying equipment cannot monitor the position of staff in real time, nor can it provide warnings or record when staff move away from the equipment in violation of regulations, leading to safety hazards and management loopholes.

Method used

The device uses a mounting base combined with a microcontroller, human infrared sensor, flashing light, buzzer, and 5G module to achieve real-time monitoring of staff positions, and provides warnings and records through buzzer alerts and remote message transmission.

Benefits of technology

It enables real-time monitoring of staff positions, timely warnings and recording of violations, thus improving the safety and management efficiency of surveying and mapping work.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an equipment protection device, which relates to the technical field of surveying and mapping equipment protection and comprises a mounting seat, six groups of human body infrared sensors are fixedly mounted on the peripheral surface of the mounting seat in an annular array shape, an embedded groove is formed in the front side of the top end surface of the mounting seat, and a standing position monitoring switch is fixedly mounted on the bottom surface of the inner end of the embedded groove. Through the position design of the standing position monitoring switch, the standing position monitoring switch can be matched with the fixed installation of the surveying and mapping equipment and the installation seat, so that the starting of the standing position monitoring function is synchronously realized after the surveying and mapping equipment is installed, and the standing position of a worker is monitored through the human body infrared sensor; when the surveying and mapping equipment is used, high-decibel buzzing warning is realized in the first time so as to realize non-far-away warning reminding for a worker who leaves at present, and meanwhile, messages are wirelessly transmitted to a monitoring center remotely, so that the problem that the standing position of the worker cannot be monitored in real time in the application process of the surveying and mapping equipment is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to surveying and mapping equipment protection technical field, especially, a kind of equipment protection device. BACKGROUND

[0002] In the process of construction engineering surveying and mapping, staff will generally use level, total station and other professional surveying and mapping equipment to carry out related work. According to the regulation, to prevent surveying and mapping equipment from falling and being damaged due to no one watching, staff cannot leave the equipment during use. However, there is a significant defect in the current surveying and mapping equipment in practical application, that is, the staff's position cannot be monitored in real time. This means that when the staff violates the regulation and leaves the surveying and mapping equipment, the equipment cannot timely issue a warning and record the violation, thus causing certain safety hazards and management loopholes, which is not conducive to the standard and efficient development of surveying and mapping work and the proper maintenance of the equipment. CONTENT OF THE UTILITY MODEL

[0003] The utility model relates to a kind of equipment protection device, solve the problem that the staff's position cannot be monitored in real time in the application process of surveying and mapping equipment, and the staff cannot be warned and recorded when leaving the surveying and mapping equipment.

[0004] The utility model provides a kind of equipment protection device, specifically includes: mounting seat, the mounting seat is circular block structure, and the bottom end surface of mounting seat is rotationally installed with three supporting legs in annular array shape;A mounting groove with circular groove structure is formed in the axial part of the top end surface of mounting seat;A locking bolt is screw-installed in the axial part of the bottom end surface of mounting seat, which penetrates the mounting groove;The mounting seat is internally provided with a microcontroller;Six groups of human infrared sensors are fixedly installed on the peripheral surface of the mounting seat in annular array shape, and the six groups of human infrared sensors are electrically connected with the microcontroller;An embedded groove is formed in the front side of the top end surface of mounting seat, and a group of position monitoring switches are fixedly installed on the inner end bottom surface of the embedded groove, and the position monitoring switches are electrically connected with the microcontroller;The position monitoring switches adopt a touch switch, and the key end of the position monitoring switches faces upward;When the position monitoring switches are not pressed and started, the key end protrudes from the top opening end of the embedded groove.

[0005] Further, six groups of flashing lights are fixedly installed on the peripheral surface of the mounting seat in annular array shape, and the six groups of flashing lights are electrically connected with the microcontroller;The six groups of flashing lights and the six groups of human infrared sensors are distributed in a spaced manner.

[0006] Further, the mounting seat is internally provided with a battery, and a charging port is embeddedly installed on the bottom end surface of the mounting seat, and the charging port is electrically connected with the battery;The mounting seat is internally provided with a 5G module, and the 5G module is electrically connected with the microcontroller, and the 5G module is wirelessly connected with the monitoring center for network transmission.

[0007] Further, the mounting seat bottom end face is provided with a timing reset switch and a buzzer, and the timing reset switch and the buzzer are electrically connected with the microcontroller; the mounting seat is further provided with a timing module a and a timing module b, and the timing module a and the timing module b are electrically connected with the microcontroller; the timing value of the timing module a is five minutes; and the timing value of the timing module b is ten seconds.

[0008] Further, when the station monitoring switch is in the pressed starting state, the station monitoring switch feeds back a signal to the microcontroller, the microcontroller controls the human body infrared sensor and the timing module a to start; when the six groups of human body infrared sensors do not sense human body infrared signals, the feedback signals are given to the microcontroller, the microcontroller controls the buzzer to start, and simultaneously transmits a message to the monitoring center wirelessly through the 5G module; when the timing value of the timing module a is reached, the timing module a feeds back a signal to the microcontroller, the microcontroller controls the flashing lamp and the timing module b to start; when the timing value of the timing module b is reached, the timing module b feeds back a signal to the microcontroller, the microcontroller controls the buzzer to start, and simultaneously transmits a message to the monitoring center wirelessly through the 5G module; when the timing reset switch is in the pressed starting state, the timing reset switch feeds back a signal to the microcontroller, the microcontroller controls the flashing lamp and the timing module b to be turned off, and controls the timing module a to start timing.

[0009] The utility model provides a kind of equipment protection device, with following beneficial effects:

[0010] The utility model is designed through the position of station monitoring switch, can be cooperated with the fixed installation of surveying equipment and mounting seat, to realize the starting of the utility model station monitoring function synchronously after surveying equipment installation, and the utility model is monitored to staff station by human body infrared sensor, when it is far from surveying equipment, it is then synchronously out of the sensing range of human body infrared sensor, it represents that surveying equipment is in unattended state at this time, to realize high-decibel buzzer warning in first time, to realize the warning reminder of not far away for current staff, and simultaneously remote transmission message to monitoring center wirelessly, so that staff in monitoring center record and know that current staff exists irregular operation.

[0011] The utility can monitor and determine the working state of the staff every five minutes, realize five-minute timing through the timing module a, and realize the flickering of the light when the timing reaches through the cooperation of the flickering lamp, and the ten-second timing based on the timing module b is used to determine the working state of the staff, when the staff does not realize the flickering of the light and the timing reset of the timing module a through the pressing of the timing reset switch within the ten-second timing of the timing module b, the first time realizes the high-decibel buzzer warning, so as to realize the warning and reminding of the staff who is currently absent-minded or engaged in other irrelevant surveying and mapping operation, and also simultaneously remotely transmit the message to the monitoring center, so that the staff in the monitoring center can know that the current staff exists illegal operation. BRIEF DESCRIPTION OF DRAWINGS

[0012] In order to more clearly illustrate the technical scheme of the embodiments of the utility, the drawings of the embodiments will be briefly introduced below.

[0013] The drawings described in the following description only relate to some embodiments of the utility, and are not a limitation of the utility.

[0014] In the drawings:

[0015] Figure 1 The top end axial structure schematic diagram of the application is shown;

[0016] Figure 2 The bottom end axial structure schematic diagram of the application is shown; Figure 1 The partial enlarged structure schematic diagram of the application is shown;

[0017] Figure 3 The bottom end axial structure schematic diagram of the application is shown;

[0018] Figure 4 The partial enlarged structure schematic diagram of the application is shown; Figure 3 The partial enlarged structure schematic diagram of the application is shown;

[0019] Figure 5 The partial enlarged structure schematic diagram of the installation seat in the top view state of the application is shown;

[0020] Figure 6 The partial enlarged structure schematic diagram of the embedded groove part in the section view state of the application is shown;

[0021] Figure 7 The system block diagram of the application is shown;

[0022] LIST OF REFERENCE NUMERALS

[0023] 1, mounting seat; 101, leg; 102, installation matching groove; 103, locking bolt; 104, embedded groove; 105, station monitoring switch; 106, human body infrared sensor; 107, flashing light; 108, timing reset switch; 109, charging port; 1010, buzzer; 1011, 5G module; 1012, monitoring center; 1013, battery; 1014, timing module a; 1015, timing module b; 1016, microcontroller. DETAILED DESCRIPTION

[0024] In order to make the purpose, technical scheme and advantages of the utility model clearer, the technical scheme of the utility model will be described clearly and completely below in combination with the drawings of the utility model. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. Based on the described embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the scope of protection of the utility model.

[0025] Embodiment: please refer to Figures 1 to 7 :

[0026] The utility model provides a kind of equipment protection device, comprising: mounting seat 1, mounting seat 1 is circular block structure, three legs 101 are rotationally installed in annular array shape on the bottom end surface of mounting seat 1;One installation matching groove 102 of circular slot structure is set in the axial part of the top end surface of mounting seat 1;Locking bolt 103 is threadedly installed in the axial part of the bottom end surface of mounting seat 1, and it is installed through installation matching groove 102, and microcontroller 1016 is arranged in mounting seat 1;Six groups of human body infrared sensors 106 are fixedly installed in annular array shape on the outer circumferential surface of mounting seat 1, and the six groups of human body infrared sensors 106 are electrically connected with microcontroller 1016;One embedded groove 104 is set in the front side of the top end surface of mounting seat 1, a group of station monitoring switches 105 are fixedly installed in the inner end bottom surface of embedded groove 104, and the station monitoring switch 105 is electrically connected with microcontroller 1016, the station monitoring switch 105 uses light touch switch, and the key end of station monitoring switch 105 is towards upper side;When station monitoring switch 105 is in the state of not being pressed and started, the key end protrudes from the top opening end of embedded groove 104;Six groups of flashing lights 107 are fixedly installed in annular array shape on the outer circumferential surface of mounting seat 1, and the six groups of flashing lights 107 are electrically connected with microcontroller 1016;Six groups of flashing lights 107 and six groups of human body infrared sensors 106 are distributed in interval.

[0027] In this embodiment, the mounting base 1 is also provided with a battery 1013 inside, and a charging port 109 is embeddedly installed on the bottom end face of the mounting base 1, and the charging port 109 is electrically connected with the battery 1013; the mounting base 1 is also provided with a 5G module 1011 inside, and the 5G module 1011 is electrically connected with a microcontroller 1016, and the 5G module 1011 is wirelessly connected with a monitoring center 1012 in network transmission; the bottom end face of the mounting base 1 is provided with a timing reset switch 108 and a buzzer 1010, and the timing reset switch 108 and the buzzer 1010 are both electrically connected with the microcontroller 1016; the mounting base 1 is also provided with a timing module a 1014 and a timing module b 1015 inside, and the timing module a 1014 and the timing module b 1015 are both electrically connected with the microcontroller 1016; the timing value of the timing module a 1014 is five minutes; the timing value of the timing module b 1015 is ten seconds; when the station monitoring switch 105 is in a pressed starting state, the station monitoring switch 105 feeds back a signal to the microcontroller 1016, and the microcontroller 1016 controls the human body infrared sensor 106 and the timing module a 1014 to start; when none of the six groups of human body infrared sensors 106 senses a human body infrared signal, the feedback signal is given to the microcontroller 1016, the microcontroller 1016 controls the buzzer 1010 to start, and simultaneously transmits a message to the monitoring center 1012 in wireless transmission through the 5G module 1011; when the timing value of the timing module a 1014 is reached, the timing module a 1014 feeds back a signal to the microcontroller 1016, and the microcontroller 1016 controls the flashing lamp 107 and the timing module b 1015 to start; when the timing value of the timing module b 1015 is reached, the timing module b 1015 feeds back a signal to the microcontroller 1016, and the microcontroller 1016 controls the buzzer 1010 to start, and simultaneously transmits a message to the monitoring center 1012 in wireless transmission through the 5G module 1011; when the timing reset switch 108 is in a pressed starting state, the timing reset switch 108 feeds back a signal to the microcontroller 1016, and the microcontroller 1016 controls the flashing lamp 107 and the timing module b 1015 to be closed, and controls the timing module a 1014 to start timing.

[0028] The working principle of the embodiment is as follows:

[0029] When the building engineering surveying and mapping is applied, the staff first rotates and expands the three supporting legs 101 and locks and fixes them, so that the supporting legs 101 are stably supported on the ground, thereby ensuring the stability of the mounting base 1, and then the staff can place the equipment for surveying and mapping, such as a level, a total station, and other surveying and mapping equipment, on the top end face of the mounting base 1, and aligns the installation hole with the installation fitting groove 102 part, at this time, the staff can rotate the locking bolt 103, so that the locking bolt 103 is fixedly installed and connected with the installation hole, thereby realizing the fixed installation of the surveying and mapping equipment and the mounting base 1;

[0030] When the surveying equipment is fixedly installed on the top end surface of the mounting seat 1, at this time, under the pressing of the surveying equipment, the key end of the station monitoring switch 105 originally protruding from the opening end of the embedded groove 104 is pressed into the embedded groove 104, and at this time, the station monitoring switch 105 is in a pressed and started state, and the station monitoring switch 105 feeds back a signal to the microcontroller 1016, and the microcontroller 1016 controls the human body infrared sensor 106 and the timing module a 1014 to start. When the human body infrared sensor 106 starts, it will sense the human body infrared signal of the staff located around the surveying equipment, so as to realize station monitoring. When the staff is away from the surveying equipment, and none of the six human body infrared sensors 106 senses the human body infrared signal, it means that the surveying equipment is in an unattended state at this time, and at this time, it feeds back a signal to the microcontroller 1016, and the microcontroller 1016 controls the buzzer 1010 to start, so as to realize the warning reminder of the staff who cannot be away through the high-decibel buzzing of the buzzer 1010, and at the same time, the 5G module 1011 is used to wirelessly transmit a message to the monitoring center 1012, so that the staff in the monitoring center 1012 can know that the current staff has violated the operation rules.

[0031] The timing value of the timing module a 1014 is five minutes. When the timing value of the timing module a 1014 is reached, the timing module a 1014 feeds back a signal to the microcontroller 1016, and the microcontroller 1016 controls the flashing light 107 and the timing module b 1015 to start. Through the light flashing of the six groups of flashing lights 107 after starting, the current staff can be reminded. At this time, the staff can press the timing reset switch 108 to feed back a signal to the microcontroller 1016, so as to control the flashing light 107 and the timing module b 1015 to be turned off through the microcontroller 1016, and control the timing module a 1014 to start timing. When the staff is absent-minded or engaged in other irrelevant surveying work, if the staff does not press the timing reset switch 108 within ten seconds of the timing module b 1015, when the timing value of the timing module b 1015 is reached, the timing module b 1015 feeds back a signal to the microcontroller 1016, and the microcontroller 1016 controls the buzzer 1010 to start, so as to realize the warning reminder of the staff who is absent-minded or engaged in other irrelevant surveying work, and at the same time, the 5G module 1011 is used to wirelessly transmit a message to the monitoring center 1012, so that the staff in the monitoring center 1012 can know that the current staff has violated the operation rules.

[0032] In this paper, the following points need to be noted:

[0033] 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the general design.

[0034] 2. Embodiments of the present disclosure and features in embodiments can be combined with each other in the case of no conflict to obtain new embodiments.

[0035] The above merely describes specific embodiments of the present disclosure, but the protection scope of the present disclosure is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure.

Claims

1. A device protection device, comprising a mounting base (1), the mounting base (1) having a circular block structure, and three legs (101) rotatably mounted in a circular array on the bottom end face of the mounting base (1); a mounting groove (102) having a circular groove structure is provided at the axial part of the top end face of the mounting base (1); a locking bolt (103) penetrating the mounting groove (102) is threadedly mounted at the axial part of the bottom end face of the mounting base (1), characterized in that, The mounting base (1) is equipped with a microcontroller (1016) inside; six sets of human infrared sensors (106) are fixedly installed in a ring array on the outer periphery of the mounting base (1), and all six sets of human infrared sensors (106) are electrically connected to the microcontroller (1016); an embedded groove (104) is opened on the front side of the top end of the mounting base (1), and a set of station monitoring switches (105) is fixedly installed on the bottom surface of the inner end of the embedded groove (104). The station monitoring switches (105) are electrically connected to the microcontroller (1016), and the station monitoring switches (105) are tactile switches with the button end facing upward; when the station monitoring switches (105) are in the unpressed start state, their button end protrudes from the top opening end of the embedded groove (104).

2. The equipment protection device according to claim 1, characterized in that, The mounting base (1) has six sets of flashing lights (107) fixedly installed in a ring array on its outer peripheral surface. All six sets of flashing lights (107) are electrically connected to the microcontroller (1016). The six sets of flashing lights (107) and the six sets of human infrared sensors (106) are distributed in an intermittent manner.

3. The equipment protection device according to claim 2, characterized in that, The mounting base (1) is also equipped with a storage battery (1013). A charging port (109) is embedded in the bottom surface of the mounting base (1). The charging port (109) is electrically connected to the storage battery (1013). The mounting base (1) is also equipped with a 5G module (1011). The 5G module (1011) is electrically connected to the microcontroller (1016). The 5G module (1011) is wirelessly connected to the monitoring center (1012).

4. The equipment protection device according to claim 3, characterized in that, The mounting base (1) is equipped with a timer reset switch (108) and a buzzer (1010) on its bottom surface, and both the timer reset switch (108) and the buzzer (1010) are electrically connected to the microcontroller (1016); the mounting base (1) is also equipped with a timer module a (1014) and a timer module b (1015), and both the timer module a (1014) and the timer module b (1015) are electrically connected to the microcontroller (1016); the timer value of the timer module a (1014) is five minutes; the timer value of the timer module b (1015) is ten seconds.

5. The equipment protection device according to claim 4, characterized in that, When the station monitoring switch (105) is in the pressed start state, the station monitoring switch (105) sends a feedback signal to the microcontroller (1016), and the microcontroller (1016) controls the human infrared sensor (106) and the timing module a (1014) to start; when none of the six human infrared sensors (106) detects human infrared signals, their feedback signals are sent to the microcontroller (1016), and the microcontroller (1016) controls the buzzer (1010) to start, and at the same time wirelessly transmits messages to the monitoring center (1012) through the 5G module (1011); when the timing value of the timing module a (1014) is reached, the timing module a (1014) sends a feedback signal to the microcontroller (1016). The microcontroller (1016) controls the flashing light (107) and the timing module b (1015) to start; when the timing value of the timing module b (1015) is reached, the timing module b (1015) sends a feedback signal to the microcontroller (1016), the microcontroller (1016) controls the buzzer (1010) to start, and at the same time transmits a message wirelessly to the monitoring center (1012) through the 5G module (1011); when the timing reset switch (108) is in the pressed start state, the timing reset switch (108) sends a feedback signal to the microcontroller (1016), the microcontroller (1016) controls the flashing light (107) and the timing module b (1015) to turn off, and controls the timing module a (1014) to start timing.