Intelligent remote terminal device for groundwater

CN224722088UActive Publication Date: 2026-09-04SHENZHEN HONGDIAN TECH CORP
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202521886844.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-01
Publication Date
2026-09-04
Estimated Expiration
2035-09-01

AI Technical Summary

Technical Problem

[0006]本实用新型的目的在于提供一种地下水智能遥测终端设备,以解决现有技术中存在的现有的在线监测设备不能很好的满足用户的使用需求的技术问题

Benefits of technology

[0019]本实用新型通过限位安装组件能够将电池主体稳定的固定在壳体内,通过显示屏满足用户快速识别监测信息,通过一端设置在壳体外的监测组件,便于根据用户不同的使用需求更换不同的监测传感器,提高用户的体验感,以满足用户的不同需求。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224722088U_ABST
    Figure CN224722088U_ABST
Patent Text Reader

Abstract

The utility model discloses an underground water intelligence telemeter terminal equipment relates to monitoring equipment technical field, solved the present online monitoring equipment not very good satisfy the technical problems of user's use demand. The equipment includes casing, battery main part, monitoring subassembly, display screen, circuit board and spacing installation subassembly, and battery main part is fixed in the containing cavity of casing through spacing installation subassembly, and spacing installation subassembly is fixed in casing, and spacing installation subassembly is used for supporting circuit board, and battery main part, monitoring subassembly and display screen all are electrically connected with circuit board, and the one end of monitoring subassembly passes through casing, is exposed in casing outside. The utility model discloses through spacing installation subassembly can with battery main part stably fixed in casing, through display screen satisfies user's quick identification monitoring information, through the monitoring subassembly of one end setting in casing outside, it is convenient to change different monitoring sensor according to the different use demand of user, improves the experience of user, to satisfy the different demand of user.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of monitoring equipment technology, and in particular to a groundwater intelligent remote sensing terminal device. Background Technology

[0002] Groundwater is a crucial component of water resources, playing a vital role in ensuring safe drinking water for the public, promoting economic and social development, and maintaining ecological balance. Compared to surface water, groundwater resources are more complex. Changes in the quality and quantity of groundwater, as well as the environmental conditions that cause these changes and the patterns of groundwater migration, cannot be directly observed. Furthermore, groundwater pollution and land subsidence caused by over-extraction are gradual processes that, when accumulated to a certain level, can lead to irreversible damage. Therefore, the development of online groundwater monitoring equipment is imperative.

[0003] Traditional groundwater online monitoring equipment mainly relies on simple physical sensors to obtain environmental and performance parameters through manual reading or low-frequency sampling. This method cannot provide timely feedback of internal information, making it difficult for users to immediately identify the required data and causing inconvenience. Furthermore, the batteries inside these devices are often unstable, prone to shaking or shifting within the equipment, posing a risk of displacement or detachment during transport. In addition, insufficient battery capacity necessitates frequent battery replacements, further impacting the user experience.

[0004] In the process of developing this utility model, the applicant discovered at least the following problems in the prior art:

[0005] Existing online monitoring equipment cannot adequately meet users' needs. Utility Model Content

[0006] The purpose of this utility model is to provide an intelligent remote sensing terminal device for groundwater, so as to solve the technical problem that existing online monitoring devices cannot adequately meet user needs. The various technical effects of the preferred technical solutions provided by this utility model are detailed below.

[0007] To achieve the above objectives, the present invention provides the following technical solution:

[0008] This utility model provides a groundwater intelligent remote sensing terminal device, including a housing, a battery body, a monitoring component, a display screen, a circuit board, and a limiting installation component. The battery body is engaged and fixed in the accommodating cavity of the housing by the limiting installation component. The limiting installation component is fixed in the housing and is used to support the circuit board. The battery body, the monitoring component, and the display screen are all electrically connected to the circuit board. One end of the monitoring component passes through the housing and is exposed outside the housing.

[0009] Optionally, the limiting installation assembly includes a first limiting structure, a second limiting structure, and a battery fixing plate. The first limiting structure is disposed on the periphery of the battery body, the battery fixing plate is fixed inside the housing, and the battery fixing plate is located above the battery body. The first limiting structure is fixedly connected to the battery fixing plate through the second limiting structure.

[0010] Optionally, both the first limiting structure and the second limiting structure are made of soft foam.

[0011] Optionally, the first limiting structure is provided with a plurality of limiting grooves on its periphery, and the plurality of limiting grooves correspond one-to-one with and match the plurality of limiting strips in the housing. The first limiting structure is engaged and fixed on the inner wall of the housing through the limiting grooves.

[0012] Optionally, the housing includes an upper cover and a lower cover, the upper cover and the lower cover being matched with each other, the upper cover being fixed on the lower cover to form an accommodating cavity for accommodating the battery body, the limiting mounting assembly and the circuit board.

[0013] Optionally, the top cover includes a transparent plate, a Bluetooth display area, a first mounting hole, at least one second mounting hole, and multiple third mounting holes. The transparent plate corresponds to and matches the display screen. The Bluetooth display area is adjacent to the transparent plate and corresponds to the Bluetooth module on the circuit board. The first mounting hole is used to install a 4G network communication interface, which is electrically connected to the circuit board. The second mounting hole is used to install a charging interface, and a waterproof plug is detachably connected to the second mounting hole. The charging interface is electrically connected to the battery body. The third mounting hole is used to install the monitoring component.

[0014] Optionally, the upper cover further includes a handle fixed to the upper surface of the upper cover; the lower shell further includes a boss for fixing the battery mounting plate.

[0015] Optionally, the upper cover further includes a first sealing groove, the lower shell includes a second sealing groove, and the shell further includes a sealing ring. The second sealing groove is disposed at the opening of the lower shell. The first sealing groove and the second sealing groove correspond to each other. The upper surface of the sealing ring matches the first sealing groove, and the lower surface of the sealing ring matches the second sealing groove. When the upper cover is connected to the lower shell, the sealing ring is sandwiched between the upper cover and the lower shell and is interference-fitted with the first sealing groove and the second sealing groove.

[0016] Optionally, the monitoring component includes multiple sensor connectors, each of which corresponds to and matches one-to-one with a third mounting hole. The sensor connectors are used to connect sensors to obtain the air pressure, temperature, water pressure, and water temperature of the environment where the terminal device is located, as well as the installation height and burial depth of the terminal device, and transmit them to the display screen for display.

[0017] Optionally, the battery capacity of the battery body is 90AH, and the vertical length of the terminal device is less than 146mm.

[0018] Implementing one of the above-described technical solutions of this utility model has the following advantages or beneficial effects:

[0019] This utility model can stably fix the battery body inside the housing through the limiting installation component, and the display screen allows users to quickly identify monitoring information. The monitoring component set on one end outside the housing makes it easy to replace different monitoring sensors according to different user needs, thereby improving the user experience and meeting different user requirements. Attached Figure Description

[0020] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. In the drawings:

[0021] Figure 1 This is a first exploded view of an embodiment of the present utility model;

[0022] Figure 2 This is a second exploded view of an embodiment of the present utility model;

[0023] Figure 3 This is a perspective view of an embodiment of the present utility model;

[0024] Figure 4 This is the third exploded view of an embodiment of the present utility model;

[0025] Figure 5 This is the fourth exploded view of an embodiment of this utility model.

[0026] In the diagram: 1. Housing; 11. Top cover; 111. Transparent plate; 112. Bluetooth display area; 113. First mounting hole; 114. Second mounting hole; 115. Third mounting hole; 116. Waterproof plug; 117. Handle; 118. First sealing groove; 12. Lower shell; 121. Limiting strip; 122. Boss; 123. Second sealing groove; 13. Sealing ring; 2. Battery body; 3. Monitoring component; 4. Display screen; 5. Circuit board; 6. Limiting mounting component; 61. First limiting structure; 611. Limiting groove; 62. Second limiting structure; 63. Battery fixing plate; 7. 4G network communication interface; 8. Charging interface. Detailed Implementation

[0027] To make the objectives, technical solutions, and advantages of this utility model clearer, various exemplary embodiments described below will be referenced to the accompanying drawings, which form part of the exemplary embodiments, illustrating various exemplary embodiments that may be adopted to implement this utility model. Unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this disclosure. It should be understood that they are merely examples of processes, methods, and apparatuses consistent with some aspects of this utility model disclosed as detailed in the appended claims, and other embodiments may be used, or structural and functional modifications may be made to the embodiments listed herein without departing from the scope and spirit of this utility model.

[0028] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "lateral," etc., indicate the orientation or positional relationship based on the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the referred element must have a specific orientation, or be constructed and operated in a specific orientation. The terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. The term "multiple" means two or more. The terms "connected" and "linked" should be interpreted broadly, for example, they can be fixed connections, detachable connections, integral connections, mechanical connections, electrical connections, communication connections, direct connections, indirect connections through an intermediate medium, and can be the internal connection of two elements or the interaction relationship between two elements. The term "and / or" includes any and all combinations of one or more of the related listed items. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0029] To illustrate the technical solution described in this utility model, specific embodiments are described below, showing only the parts related to the embodiments of this utility model.

[0030] Example 1:

[0031] like Figures 1 to 5 As shown, this utility model provides a groundwater intelligent remote sensing terminal device, including a housing 1, a battery body 2, a monitoring component 3, a display screen 4, a circuit board 5, and a limiting installation component 6. The battery body 2 is engaged and fixed within the housing 1 by the limiting installation component 6, which is also fixed inside the housing 1 and supports the circuit board 5. The battery body 2, monitoring component 3, and display screen 4 are all electrically connected to the circuit board 5. One end of the monitoring component 3 passes through the housing 1 and is exposed outside the housing 1. Specifically, the battery body 2 is engaged and fixed within the housing 1 by the limiting installation component 6, ensuring that the battery is not easily displaced or detached during transportation. The battery body 2 is connected to the circuit board 5 to provide power to the monitoring component 3, display screen 4, and other electrical components. The monitoring component 3 is electrically connected to the circuit board 5, facilitating the transmission of monitoring information obtained through the monitoring component 3 to the display screen 4 for display. One end of the monitoring component 3 passes through the housing 1 and is exposed outside the housing 1, which facilitates the connection of different sensors as needed to obtain the required information, realize the monitoring of groundwater and mobile terminals, and understand the status of groundwater and terminal equipment in real time.

[0032] This utility model can stably fix the battery body 2 inside the housing 1 through the limiting installation component 6, and the display screen 4 allows users to quickly identify monitoring information. The monitoring component 3, which is set on the outside of the housing 1, makes it easy to replace different monitoring sensors according to different user needs, thereby improving the user experience and meeting different user requirements.

[0033] As an optional implementation, such as Figure 1 and Figure 4As shown, the limiting installation assembly 6 includes a first limiting structure 61, a second limiting structure 62, and a battery fixing plate 63. The first limiting structure 61 is disposed on the periphery of the battery body 2, and the battery fixing plate 63 is fixed inside the housing 1, with the battery fixing plate 63 located above the battery body 2. The first limiting structure 61 is fixedly connected to the battery fixing plate 63 through the second limiting structure 62. Specifically, the first limiting structure 61 wraps around the periphery of the battery body 2, so that the side of the battery body 2 abuts against the inner wall of the housing 1 through the first limiting structure 61. The second limiting structure 62 is disposed above the first limiting structure 61, so that the upper end of the first limiting structure 61 abuts against the battery fixing plate 63 through the second limiting structure 62, ensuring that the battery body 2 is stably fixed in the middle of the housing 1, avoiding the risk of battery displacement or detachment during the transportation of the terminal equipment, and ensuring the safety of the terminal equipment. The battery fixing plate 63 has a through-hole structure, which facilitates the electrical connection between the battery body 2 and the circuit board 5 through the through-hole structure.

[0034] As an optional implementation, both the first limiting structure 61 and the second limiting structure 62 are made of soft foam. Specifically, the first limiting structure 61 and the second limiting structure 62 are both made of soft foam, which can effectively protect the battery body 2. At the same time, by compressing the first limiting structure 61 and the second limiting structure 62 with the battery body 2, the battery body 2 can be tightly fixed in the receiving space formed by the housing 1 and the battery fixing plate 63, making the battery body 2 less prone to shaking and ensuring the tightness of the battery body 2 installation.

[0035] As an optional implementation, such as Figure 1 As shown, the first limiting structure 61 has multiple limiting grooves 611 on its periphery. These grooves correspond one-to-one with and match multiple limiting strips 121 within the housing 1. The first limiting structure 61 is engaged and fixed to the inner wall of the housing 1 via the limiting grooves 611. Specifically, the first limiting structure 61 has multiple limiting grooves 611 on its periphery. The first limiting structure 61 cooperates with the limiting strips 121 through these grooves, engaging with the inner wall of the housing 1 to ensure the stability of the first limiting structure 61's installation.

[0036] As an optional implementation, such as Figure 2 and Figure 5 As shown, the housing 1 includes an upper cover 11 and a lower cover 12. The upper cover 11 and the lower cover 12 are fitted together and fixed to the lower cover 12 to form a receiving cavity for accommodating the battery body 2, the limiting mounting assembly 6, and the circuit board 5. Specifically, a receiving groove is formed inside the lower cover 12, and the upper cover 11 is fitted to the opening of the receiving groove. The upper cover 11 is fixed at the opening of the receiving groove of the lower cover 12 to seal the receiving groove, thereby forming the receiving cavity. The receiving cavity is used to accommodate the battery body 2, the limiting mounting assembly 6, and the circuit board 5, protecting the battery body 2 and the circuit board 5 and improving the service life of the terminal device.

[0037] As an optional implementation method, such as Figure 1 and Figure 2As shown, the top cover 11 includes a transparent plate 111, a Bluetooth display area 112, a first mounting hole 113, at least one second mounting hole 114, and multiple third mounting holes 115. The transparent plate 111 corresponds to and matches the display screen 4. The Bluetooth display area 112 is adjacent to the transparent plate 111 and corresponds to the Bluetooth module on the circuit board 5. The first mounting hole 113 is used to install the 4G network communication interface 7, which is electrically connected to the circuit board 5. The second mounting hole 114 is used to install the charging interface 8, and a waterproof plug 116 is detachably connected to the second mounting hole 114. The charging interface 8 is electrically connected to the battery body 2. The third mounting hole 115 is used to install the monitoring component 3. Specifically, the transparent plate 111 on the top cover 11 can be made of PC material. The transparent plate 111 corresponds to the display screen 4 mounted on the circuit board 5, with the display surface of the display screen 4 facing the transparent plate 111, allowing users to easily read the information displayed on the display screen 4 through the transparent plate 111. The user terminal can communicate with the intelligent remote sensing terminal device for groundwater via the Bluetooth module under the Bluetooth display area 112 to wake up the intelligent remote sensing terminal device. When the Bluetooth connection is successful, the LED on the Bluetooth display area 112 will indicate successful connection and successful local connection. When the intelligent remote sensing terminal device for groundwater is not connected to the user terminal, it is in a low-power sleep state and can be woken up by the wake-up function of the small magnetic stick. The 4G network communication interface 7 is fixed on the first mounting hole 113. The first end of the 4G network communication interface 7 is electrically connected to the circuit board 5, and the second end of the 4G network communication interface 7 is exposed outside the upper cover 11 for easy connection of the communication line. It is used to transmit environmental information (such as air pressure, temperature, water pressure, etc.) and water temperature and hydrological information (such as water level information, water quality information, etc.) monitored by the terminal device to the client. The charging interface 8 or other interfaces can be installed in the second mounting hole 114. The first end of the charging interface 8 is electrically connected to the circuit board 5 through the second mounting hole 114, and the second end of the charging interface 8 is set on the outer surface of the upper cover 11. A waterproof plug 116 is detachably connected to the second mounting hole 114. When the terminal device needs charging, the waterproof plug 116 can be removed, and it can be connected to the power source through the charging interface 8 for charging. After the terminal device has finished charging, the waterproof plug 116 can be installed on the second mounting hole 114 to seal it, effectively improving the charging operation for staff and avoiding the need to disassemble the entire terminal device. At the same time, detaching and connecting the waterproof plug 116 to the second mounting hole 114 effectively protects the charging interface 8. The monitoring component 3 is installed in the third mounting hole 115. The first end of the monitoring component 3 is connected to the circuit board 5, and the second end of the monitoring component 3 is exposed on the outer surface of the top cover 11, which facilitates the connection of multiple sensors for monitoring groundwater hydrological information, environmental information of the terminal device, and performance parameters.The number of second mounting holes 114 can be selected as two, and the number of third mounting holes 115 can be selected as three. The number of second mounting holes 114 and third mounting holes 115 can also be adaptively set according to actual needs.

[0038] As an optional implementation method, such as Figure 1 As shown, the upper cover 11 also includes a handle 117, which is fixed to the upper surface of the upper cover 11. The lower shell 12 also includes a boss 122, which is used to fix the battery fixing plate 63. Specifically, the handle 117 is provided on the upper cover 11 to facilitate the user to pick up the terminal device. The boss 122 is provided on the lower shell 12 to facilitate the fastening of the battery fixing plate 63 inside the lower shell 12, thereby fixing the battery body 2 and supporting the circuit board 5. The battery fixing plate 63 can divide the receiving groove of the lower shell 12 into upper and lower sections. The receiving space below the battery fixing plate 63 is used to receive the battery body 2, and the receiving space above the battery fixing plate 63 is used to receive the circuit board 5 and the display screen 4.

[0039] As an optional implementation method, such as Figure 1 and Figure 5 As shown, the upper cover 11 also includes a first sealing groove 118, the lower shell 12 includes a second sealing groove 123, and the shell 1 also includes a sealing ring 13. The second sealing groove 123 is disposed at the opening of the lower shell 12. The first sealing groove 118 and the second sealing groove 123 correspond to each other. The upper surface of the sealing ring 13 matches the first sealing groove 118, and the lower surface of the sealing ring 13 matches the second sealing groove 123. When the upper cover 11 and the lower shell 12 are connected, the sealing ring 13 is sandwiched between the upper cover 11 and the lower shell 12, and is interference-fitted with the first sealing groove 118 and the second sealing groove 123. Specifically, the sealing ring 13 provided between the upper cover 11 and the lower shell 12 can improve the sealing performance of the assembly between the upper cover 11 and the lower shell 12, thereby strengthening the sealing protection of electrical structures such as the battery body 2, circuit board 5, and display screen 4 installed in the accommodating groove, and improving the service life of the terminal equipment. The upper cover 11 has a first sealing groove 118 on the side facing the lower shell 12. The first sealing groove 118 is composed of two first grooves arranged in a series of rings. The upper surface of the sealing ring 13 has a first protrusion that corresponds to and matches the two first grooves arranged in a series of rings. The opening of the lower shell 12 is composed of two second grooves arranged in a series of rings. The lower surface of the sealing ring 13 has a second protrusion that corresponds to and matches the two second grooves arranged in a series of rings. When the sealing ring 13 is sandwiched between the upper cover 11 and the lower shell 12, the first protrusion fills the corresponding first groove, and the second protrusion fills the corresponding second groove. The sealing ring 13 is press-fitted with the first sealing groove 118 and the second sealing groove 123. Each first protrusion and each second protrusion can form a sealing protection ring, effectively improving the protection level of the terminal device.

[0040] As an optional implementation, such as Figure 2 and Figure 3 As shown, the monitoring component 3 includes multiple sensor connectors, each corresponding to and matching multiple third mounting holes 115. These connectors connect to sensors to acquire the air pressure, temperature, water pressure, and water temperature of the environment where the terminal device is located, as well as the installation height and burial depth of the terminal device, and transmit this information to the display screen 4 for display. Specifically, the monitoring component 3 consists of multiple sensor connectors, allowing the terminal device to easily connect to the sensors. The connected sensors monitor the air pressure, temperature, water pressure, and water temperature of the environment where the terminal device is located, as well as the installation height and burial depth of the terminal device. The sensors transmit the monitored air pressure, temperature, water pressure, and water temperature, as well as the installation height and burial depth of the terminal device, to the display via the circuit board 5 for information display. Furthermore, the display can also acquire and display the remaining power of the battery body 2 and the sensors. Additionally, the sensor connectors can connect to sensors used for monitoring groundwater level and water quality, transmitting the monitored data to the display. By installing a display on the terminal device, users can quickly access reliable data information. The sensor connector can be selected as a sensor connector used by sensors that use RS232 or RS485 communication protocols.

[0041] As an optional implementation, the battery body 2 has a battery capacity of 90AH, and the vertical length of the terminal device is less than 146mm. Specifically, the battery body 2 has a battery capacity of 90AH to ensure that the terminal device meets the installation requirements under the manhole, while also increasing the service life of the battery body 2, eliminating the need for frequent replacements and reducing maintenance by engineers. Since the diameter of the groundwater well is 146mm, and the vertical length of the terminal device is less than 146mm, the terminal device meets the minimum installation requirements of the groundwater well, thus expanding its application range.

[0042] The embodiment is merely a special case and does not indicate that this utility model is implemented in such a way.

[0043] The above description is merely a preferred embodiment of the present utility model. Those skilled in the art will understand that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of the present utility model. Furthermore, under the teachings of the present utility model, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of the present utility model. Therefore, the present utility model is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application are within the protection scope of the present utility model.

Claims

1. A groundwater intelligent remote sensing terminal device, characterized in that, The device includes a housing (1), a battery body (2), a monitoring component (3), a display screen (4), a circuit board (5), and a limiting mounting component (6). The battery body (2) is engaged and fixed in the accommodating cavity of the housing (1) by the limiting mounting component (6). The limiting mounting component (6) is fixed in the housing (1) and is used to support the circuit board (5). The battery body (2), the monitoring component (3), and the display screen (4) are all electrically connected to the circuit board (5). One end of the monitoring component (3) passes through the housing (1) and is exposed outside the housing (1).

2. The intelligent remote sensing terminal equipment for groundwater according to claim 1, characterized in that, The limiting installation assembly (6) includes a first limiting structure (61), a second limiting structure (62), and a battery fixing plate (63). The first limiting structure (61) is disposed on the periphery of the battery body (2), and the battery fixing plate (63) is fixed inside the housing (1) and located above the battery body (2). The first limiting structure (61) is fixedly connected to the battery fixing plate (63) through the second limiting structure (62).

3. The intelligent remote sensing terminal equipment for groundwater according to claim 2, characterized in that, The first limiting structure (61) and the second limiting structure (62) are both made of soft foam.

4. The intelligent remote sensing terminal equipment for groundwater according to claim 2, characterized in that, The first limiting structure (61) has multiple limiting grooves (611) on its periphery. The multiple limiting grooves (611) correspond one-to-one with the multiple limiting strips (121) in the housing (1) and match each other. The first limiting structure (61) is engaged and fixed on the inner wall of the housing (1) through the limiting grooves (611).

5. The intelligent remote sensing terminal equipment for groundwater according to claim 2, characterized in that, The housing (1) includes an upper cover (11) and a lower cover (12). The upper cover (11) and the lower cover (12) are matched with each other. The upper cover (11) is fixed on the lower cover (12) to form a cavity for accommodating the battery body (2), the limiting mounting assembly (6) and the circuit board (5).

6. The intelligent remote sensing terminal equipment for groundwater according to claim 5, characterized in that, The top cover (11) includes a transparent plate (111), a Bluetooth display area (112), a first mounting hole (113), at least one second mounting hole (114), and multiple third mounting holes (115). The transparent plate (111) corresponds to and matches the display screen (4). The Bluetooth display area (112) is arranged adjacent to the transparent plate (111) and is arranged corresponding to the Bluetooth module on the circuit board (5). The first mounting hole (113) is used to install a 4G network communication interface (7), which is electrically connected to the circuit board (5). The second mounting hole (114) is used to install a charging interface (8), and a waterproof plug (116) is detachably connected to the second mounting hole (114). The charging interface (8) is electrically connected to the battery body (2). The third mounting hole (115) is used to install the monitoring component (3).

7. The intelligent remote sensing terminal equipment for groundwater according to claim 5, characterized in that, The upper cover (11) also includes a handle (117), which is fixed to the upper surface of the upper cover (11); the lower shell (12) also includes a boss (122), which is used to fix the battery fixing plate (63).

8. The intelligent remote sensing terminal equipment for groundwater according to claim 5, characterized in that, The upper cover (11) further includes a first sealing groove (118), the lower shell (12) includes a second sealing groove (123), and the shell (1) further includes a sealing ring (13). The second sealing groove (123) is disposed at the opening of the lower shell (12). The first sealing groove (118) and the second sealing groove (123) correspond to each other. The upper surface of the sealing ring (13) matches the first sealing groove (118), and the lower surface of the sealing ring (13) matches the second sealing groove (123). When the upper cover (11) and the lower shell (12) are connected, the sealing ring (13) is sandwiched between the upper cover (11) and the lower shell (12) and is interference-fitted with the first sealing groove (118) and the second sealing groove (123).

9. The intelligent remote sensing terminal equipment for groundwater according to claim 6, characterized in that, The monitoring component (3) includes multiple sensor connectors, each of which corresponds to and matches one-to-one with the multiple third mounting holes (115). The sensor connectors are used to connect sensors to obtain the air pressure, temperature, water pressure and water temperature of the environment where the terminal device is located, as well as the installation height and burial depth of the terminal device, and transmit them to the display screen (4) for display.

10. The intelligent remote sensing terminal device for groundwater according to any one of claims 1-9, characterized in that, The battery body (2) has a battery capacity of 90AH, and the vertical length of the terminal device is less than 146mm.