Telemetering terminal with glue pouring structure

By designing a separate installation space in the telemetry terminal and sealing it with potting, combined with reinforcing ribs and seals, the problems of low protection level and inconvenient maintenance of the telemetry terminal are solved, higher sealing and stability are achieved, and the life of the equipment is extended.

CN223334884UActive Publication Date: 2025-09-12TANGSHAN PINGSHENG ELECTRONICS TECH DEV
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422678788.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2025-09-12
Estimated Expiration
2034-11-04

AI Technical Summary

Technical Problem

The existing telemetry terminals have a low level of protection and are difficult to effectively protect against humid air and rainwater. In addition, the traditional glue-filled structure is prone to deformation, poor bonding, and inconvenient maintenance.

Method used

The design adopts a separation of the bottom shell into the first and second installation spaces. The battery compartment and circuit board are installed in different spaces respectively and sealed with potting glue. The sealing and strength are enhanced by combining structures such as the upper cover and cover plate, and reinforcing ribs and seals are used to enhance structural stability.

Benefits of technology

The sealing performance and protection level of the telemetry terminal are improved, the service life is extended, the maintenance cost is reduced, and stable operation is ensured in harsh environments.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223334884U_ABST
    Figure CN223334884U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of telemetering terminals, and provides a telemetering terminal with a glue pouring structure, which comprises a bottom shell provided with a first installation space and a second installation space; the battery compartment is arranged in the first mounting space; and the circuit board is arranged in the second installation space, and the first installation space and the second installation space are used for glue pouring sealing. According to the technical scheme, the problems of low protection level and inconvenience in maintenance of the telemetering terminal in the prior art are solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of telemetry terminals, and in particular to a telemetry terminal with a glue-filling structure. Background Art

[0002] As a microprocessor-based control device, telemetry terminals are notable for their ability to remotely control on-site equipment and acquire device data. They are widely used in fields such as smart water management and smart water conservancy. Especially in extremely harsh environments, remote communication using telemetry terminals can significantly save labor costs.

[0003] However, existing telemetry terminals have the following shortcomings: First, low-level protection telemetry terminals often need to be used in protective boxes. These boxes are simple and provide only basic protection, failing to effectively protect against humid air and prolonged rain, which can easily damage the equipment and lead to unnecessary losses. Second, traditional telemetry terminals with glue potting have difficulty achieving the desired glue potting and sealing effects. Over time, they can deform and become poorly bonded, making them extremely inconvenient to repair. Utility Model Content

[0004] The utility model provides a telemetry terminal with a glue-filled structure, which solves the problems of low protection level and inconvenient maintenance of the telemetry terminal in the related art.

[0005] The technical solution of the utility model is as follows:

[0006] A telemetry terminal with a glue-filled structure, comprising:

[0007] The bottom shell has a first installation space and a second installation space;

[0008] a battery compartment, disposed in the first installation space;

[0009] The circuit board is arranged in the second installation space, and the first installation space and the second installation space are used for glue filling and sealing.

[0010] Optionally, it also includes:

[0011] An upper cover is provided on the bottom shell, and is used for sealing the first installation space and the second installation space after glue filling.

[0012] Optionally, it also includes:

[0013] A cover plate is arranged in the second installation space, the cover plate is located between the circuit board and the upper cover, and the cover plate is used to enhance the glue potting strength.

[0014] Optionally, it also includes:

[0015] a first sealing member, disposed on the bottom shell;

[0016] A cable passes through the first sealing member and is electrically connected to the circuit board.

[0017] Optionally, it also includes:

[0018] a second sealing member, disposed on the bottom shell;

[0019] The external SIM card holder passes through the second sealing member and is electrically connected to the circuit board.

[0020] Optionally, the second installation space has a plurality of first reinforcing ribs, the first reinforcing ribs abut against the cover plate, the cover plate has a plurality of protrusions around it, and the protrusions abut against the bottom shell.

[0021] Optionally, the first installation space has a second reinforcing rib, and the battery compartment abuts against the second reinforcing rib.

[0022] Optionally, it also includes:

[0023] There are a plurality of mounting posts, which are arranged in the second mounting space. The circuit board and the cover are arranged in the second mounting space through the mounting posts.

[0024] Optionally, it also includes:

[0025] There are a plurality of transverse ribs, one end of which is arranged on the bottom shell and the other end is arranged on the mounting column. The transverse ribs are used to strengthen the structure.

[0026] Optionally, the first reinforcing rib and the second reinforcing rib have guiding slopes, and the guiding slopes are used to facilitate installation.

[0027] The working principle and beneficial effects of the utility model are as follows:

[0028] In the present invention, the interior of the bottom shell is divided into a first installation space and a second installation space, and the battery compartment is installed in the first installation space, and its size matches the first installation space to reduce gaps and improve sealing performance. The battery compartment can adopt a detachable design to facilitate battery replacement and maintenance. The circuit board is installed in the second installation space and fixed to the bottom shell by screws or snaps. The electronic components on the circuit board should be arranged reasonably to avoid damage caused by the impact of the glue during the glue pouring process. The potting glue has good insulation, corrosion resistance and sealing properties. Before glue pouring, the bottom shell, battery compartment and circuit board should be cleaned and dried to ensure the adhesion between the glue and them. The glue is slowly injected into the first installation space and the second installation space until the glue fills the entire space. During the glue pouring process, care should be taken to control the flow rate and pressure of the glue to avoid bubbles and voids. After the glue pouring is completed, the telemetry terminal is placed in an appropriate temperature and humidity environment for curing, so that the glue is fully cured to form a solid sealing layer.

[0029] By providing a first installation space and a second installation space within the bottom shell and sealing them with glue, moisture, dust, and other impurities can be effectively prevented from entering the interior of the telemetry terminal, improving the terminal's sealing performance and ensuring its stable operation in harsh environments. The glue sealing provides excellent protection for the battery compartment and circuit board, preventing them from being affected by external forces such as impact, vibration, and electromagnetic interference, thereby extending the service life of the telemetry terminal. The potting glue has excellent insulating properties and can effectively prevent leakage and short circuits between the battery compartment and the circuit board, improving the waterproof level and service life. The battery compartment and circuit board are installed in different installation spaces and adopt a detachable design, which facilitates battery replacement and circuit board maintenance, reducing maintenance costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] The preferred embodiments will be described below in a clear and understandable manner with reference to the accompanying drawings to further illustrate the above-mentioned characteristics, technical features, advantages and implementation methods of the present invention.

[0031] Figure 1 This is a schematic diagram of the structure of the utility model;

[0032] Figure 2 This is a schematic diagram of the bottom shell structure of the utility model;

[0033] Figure 3 This is a schematic diagram of the circuit board structure of the utility model;

[0034] Figure 4 This is a schematic diagram of the cover structure of the utility model;

[0035] Figure 5 This is an explosion diagram of the utility model;

[0036] Figure 6 This is a structural diagram of the SIM card holder of the present utility model.

[0037] In the figure: 1. Bottom shell, 11. First installation space, 12. Second installation space, 2. Battery compartment, 3. Circuit board, 4. Upper cover, 5. Cover plate, 6. First sealing member, 7. Cable, 8. Second sealing member, 9. SIM card holder, 121. First reinforcing rib, 51. Protrusion, 111. Second reinforcing rib, 13. Mounting column, 14. Horizontal rib, 122. Guide slope. DETAILED DESCRIPTION

[0038] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the specific implementation methods of the present invention will be described below with reference to the accompanying drawings. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, they can also be understood as further technical solutions without paying creative work. In some figures, components with the same structure or function are schematically illustrated, or only one of them is marked. In this article, "one" not only means "only one", but also means "more than one", and "several" includes "two" and "more than two".

[0039] It should be noted that, unless otherwise specified or limited, the terms "mounted," "connected," and "connected" should be understood broadly. For example, they can refer to fixed, detachable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediary; and internal communication between two components. Those skilled in the art will understand the specific meanings of these terms in this utility model based on the specific circumstances.

[0040] In addition, in the description of the present application, the terms "first", "second", etc. are only used to distinguish the description and cannot be understood as indicating or implying relative importance.

[0041] Reference Figures 1 to 6 , which is the first embodiment of the utility model, proposes a telemetry terminal with a glue-filling structure, including: a bottom shell 1, having a first installation space 11 and a second installation space 12; a battery compartment 2, arranged in the first installation space 11; a circuit board 3, arranged in the second installation space 12, and the first installation space 11 and the second installation space 12 are used for glue-filling and sealing.

[0042] In this embodiment, the interior of the bottom case 1 is divided into a first installation space 11 and a second installation space 12. The battery compartment 2 is installed in the first installation space 11, and its dimensions match those of the first installation space 11 to reduce gaps and improve sealing performance. The battery compartment 2 can be removable to facilitate battery replacement and maintenance. The circuit board 3 is installed in the second installation space 12 and secured to the bottom case 1 by screws or clips. The electronic components on the circuit board 3 should be arranged rationally to avoid damage from the impact of the glue during the potting process. The potting compound has excellent insulation, corrosion resistance, and sealing properties. Before potting, the bottom case 1, battery compartment 2, and circuit board 3 should be cleaned and dried to ensure adhesion between the glue and them. The glue is slowly injected into the first and second installation spaces 11 and 12 until the glue fills the entire space. During the potting process, the flow rate and pressure of the glue should be carefully controlled to avoid bubbles and voids. After potting, the telemetry terminal is placed in an environment with appropriate temperature and humidity to cure the glue, allowing it to fully solidify and form a solid sealing layer.

[0043] By providing a first installation space 11 and a second installation space 12 in the bottom shell 1 and sealing them with glue, it is possible to effectively prevent moisture, dust and other impurities from entering the interior of the telemetry terminal, thereby improving the sealing performance of the terminal and ensuring its stable operation in harsh environments. The glue sealing can provide good protection for the battery compartment 2 and the circuit board 3, preventing them from being affected by external forces such as impact, vibration and electromagnetic interference, thereby extending the service life of the telemetry terminal. The potting glue has good insulating properties and can effectively prevent leakage and short circuits between the battery compartment 2 and the circuit board 3, thereby improving the waterproof level and service life. The battery compartment 2 and the circuit board 3 are respectively installed in different installation spaces and adopt a detachable design, which facilitates the replacement of batteries and the maintenance of the circuit board 3, thereby reducing maintenance costs.

[0044] Furthermore, it also includes: an upper cover 4, which is arranged on the bottom shell 1, and the upper cover 4 is used to seal the first installation space 11 and the second installation space 12 after glue filling.

[0045] In this embodiment, the shape and size of the upper cover 4 should be closely matched with the bottom shell 1 to achieve a good sealing effect. A sealing structure, such as a sealing strip, a sealing gasket, etc., is provided on the upper cover 4 to further enhance the sealing performance. The material of the sealing structure should have good elasticity and corrosion resistance, and be able to maintain the sealing effect under different environmental conditions. After the first installation space 11 and the second installation space 12 in the bottom shell 1 are filled with glue, the upper cover 4 is placed on the bottom shell 1. The upper cover 4 is firmly connected to the bottom shell 1 by screws, buckles or other fixing methods. During the installation of the upper cover 4, it is necessary to ensure that the sealing structure is in full contact with the bottom shell 1 without gaps or looseness. Appropriate tools can be used for tightening to ensure the reliability of the seal.

[0046] The setting of the upper cover 4 provides additional sealing protection for the first installation space 11 and the second installation space 12 after glue filling. Combined with the glue filling seal, it forms a double sealing protection, which greatly improves the sealing performance of the telemetry terminal. Even in extreme environments, it can effectively prevent moisture, dust and other harmful substances from entering the interior of the terminal, protecting key components such as the battery compartment 2 and the circuit board 3. The close combination of the upper cover 4 and the bottom shell 1 increases the overall structural stability of the telemetry terminal. When subjected to external impact, vibration or other mechanical stress, it can better protect the internal components and reduce the risk of damage. At the same time, the upper cover 4 can also play a certain protective role to prevent damage to the terminal caused by accidental collisions.

[0047] Furthermore, it also includes: a cover plate 5, which is arranged in the second installation space 12, and the cover plate 5 is located between the circuit board 3 and the upper cover 4, and the cover plate 5 is used to enhance the glue potting strength.

[0048] In this embodiment, after the circuit board 3 is installed in the second installation space 12, the cover plate 5 is placed above the circuit board 3. A certain gap is provided between the cover plate 5 and the circuit board 3 for glue pouring. Fixing members, such as screws and clips, can be used to secure the cover plate 5 within the second installation space 12 to prevent movement during the glue pouring process. Before installing the cover plate 5, some glue can be poured into the second installation space 12. After the glue reaches the appropriate height, the cover plate 5 is installed and the potting glue is slowly injected into the first installation space 11 and the second installation space 12, ensuring that the glue fully fills every corner. During the glue pouring process, the glue will come into contact with the cover plate 5 and form a uniform glue layer on its surface. The presence of the cover plate 5 restricts the flow of the glue, thereby increasing the strength and stability of the glue pouring.

[0049] The provision of the cover plate 5 can increase the strength and stability of the glue pouring process. During the glue pouring process, the glue will be tightly combined with the cover plate 5 to form a solid whole. The cover plate 5 can withstand a certain amount of pressure and impact, thereby protecting the circuit board 3 from damage.

[0050] The tight fit between the cover plate 5 and the circuit board 3 further enhances the sealing performance. The adhesive, acting on the cover plate 5, can better fill the gap between the circuit board 3 and the upper cover 4, preventing moisture, dust, and other impurities from entering the second installation space 12. This helps to improve the protection level of the telemetry terminal and extend its service life.

[0051] Furthermore, it also includes: a first sealing member 6 provided on the bottom shell 1 ; and a cable 7 passing through the first sealing member 6 and electrically connected to the circuit board 3 .

[0052] In this embodiment, the first sealing member 6 can be made of rubber, which exhibits excellent elasticity and sealing properties. Its shape and size should match the cable 7 perforation in the bottom housing 1 to ensure a tight fit. A channel for the cable 7 to pass through is provided in the first sealing member 6. The channel's diameter should be slightly smaller than the cable 7's outer diameter to create some compression when the cable 7 passes through, enhancing the sealing effect. Install the first sealing member 6 into the cable 7 perforation in the bottom housing 1. Secure it with a slot, glue, or other methods to prevent it from falling off during use. After installation, check the seal between the first sealing member 6 and the bottom housing 1 to ensure there are no gaps. Insert the cable 7 through the channel in the first sealing member 6, being careful to insert it slowly to avoid damaging the seal. After passing through the sealing member, ensure a tight fit between the cable 7 and the seal, with no gaps. Connect the cable 7, which has passed through the first sealing member 6, to the corresponding interface on the circuit board 3. Ensure a secure connection to avoid looseness or poor contact. Connection methods such as welding or plugging can be used, depending on the type of cable 7 and circuit board 3.

[0053] The provision of the first seal 6 can effectively prevent moisture, dust, and other impurities from entering the interior of the telemetry terminal through the perforations of the cable 7. This ensures that the telemetry terminal maintains good sealing performance in various environments, thereby improving the reliability and stability of the device. The first seal 6 can protect the cable 7, preventing the cable 7 from being worn or pulled when passing through the bottom shell 1. This extends the service life of the cable 7 and reduces equipment failures caused by damage to the cable 7. Good sealing performance can prevent the occurrence of safety issues such as electrical short circuits and leakage. This improves the safety of the telemetry terminal and protects the life and property of the user.

[0054] Furthermore, it also includes: a second sealing member 8 provided on the bottom shell 1 ; an external SIM card holder 9 passing through the second sealing member 8 and electrically connected to the circuit board 3 .

[0055] In this embodiment, the second sealing member 8 can also be made of high-quality rubber material with excellent elasticity, wear resistance, and waterproof and dustproof properties. Its shape and size should precisely match the perforation reserved for the external SIM card holder in the bottom case 1. A channel designed on the second sealing member 8 conforms to the external SIM card holder's shape to ensure smooth passage and a tight fit within the seal. Carefully install the second sealing member 8 into place at the perforation for the external SIM card holder in the bottom case 1. A snap-in installation method can be used, leveraging the seal's elasticity to securely fasten it to the bottom case 1. After installation, carefully inspect the seal for a tight connection to the bottom case 1, free of any gaps or looseness.

[0056] Slowly insert the external SIM card holder through the passage of the second seal 8, ensuring a tight fit between the card holder and the seal without any gaps. Then, connect the card holder to the corresponding interface on the circuit board 3, using welding or plugging to ensure a secure connection. After installing the external SIM card holder, test the sealing performance of the entire telemetry terminal. You can use airtightness testing equipment or a simple water immersion test to check whether moisture or dust can enter the device through the second seal 8.

[0057] The second seal 8 effectively prevents moisture, dust, and other impurities from entering the telemetry terminal through the perforation of the external SIM card holder. This ensures normal operation of the device even in harsh environments such as humid and dusty conditions, improving its reliability and stability. The seal effectively protects the external SIM card holder from external impact, abrasion, and corrosion, extending its service life and reducing communication failures caused by damage.

[0058] Furthermore, the second installation space 12 has a plurality of first reinforcing ribs 121 , which abut against the cover plate 5 . The cover plate 5 has a plurality of protrusions 51 around it, which abut against the bottom shell 1 .

[0059] In this embodiment, a plurality of first reinforcing ribs 121 are designed in the second installation space 12 of the bottom shell 1. These reinforcing ribs can be in the form of a strip structure with protrusions 51, evenly distributed on the inner wall of the second installation space 12. The first reinforcing ribs 121 can be manufactured together with the bottom shell 1 by means of one-piece mold molding to ensure a firm connection. A plurality of protrusions 51 are designed around the cover plate 5, and the protrusions 51 are staggered with the first reinforcing ribs 121 in the second installation space 12 to form a maze structure to strengthen the glue pouring structure. After the circuit board 3 is installed in the second installation space 12, the cover plate 5 is placed above the circuit board 3. Adjust the position of the cover plate 5 and gently press the cover plate 5 to ensure that the cover plate 5 is firmly installed and will not move during the glue pouring process.

[0060] The first reinforcing ribs 121 and the cover plate 5 in the second installation space 12 form a stable support structure. This greatly enhances the structural strength of the second installation space 12, enabling it to withstand greater external impacts and pressure. When the telemetry terminal is subjected to external forces such as vibration and collision, the reinforcing ribs and protrusions 51 can effectively protect the circuit board 3 from damage, thereby improving the reliability and stability of the equipment. During glue pouring, the glue can better fill the space between the circuit board 3 and the cover plate 5, improving the strength and sealing of the glue pouring. The protrusions 51 and the first reinforcing ribs 121 form a maze-like structure, enhancing the glue pouring effect.

[0061] Furthermore, the first installation space 11 has a second reinforcing rib 111 , and the battery compartment 2 abuts against the second reinforcing rib 111 .

[0062] In this embodiment, a plurality of second reinforcing ribs 111 are designed in the first installation space 11 of the bottom shell 1. The second reinforcing ribs 111 can be manufactured together with the bottom shell 1 by means of integral mold forming to ensure the firmness of the connection. The outer dimensions of the battery compartment 2 should be designed to match the first installation space 11 so that the battery compartment 2 can be smoothly installed in the first installation space 11. When the battery compartment 2 is installed in the first installation space 11, the outer wall of the battery compartment 2 is in close contact with the second reinforcing ribs 111 in the first installation space 11. The stability of the abutment can be ensured by providing corresponding grooves or protrusions 51 on the outer wall of the battery compartment 2 to cooperate with the second reinforcing ribs 111. During the installation process, a certain amount of pressure can be appropriately applied to ensure full contact between the battery compartment 2 and the second reinforcing ribs 111 to improve the stability of the structure.

[0063] The second reinforcing ribs 111 in the first installation space 11 abut against the battery compartment 2, providing additional support and fixation for the battery compartment 2. This greatly enhances the structural strength of the bottom case 1 in the first installation space 11, and can effectively resist external impact and extrusion.

[0064] Furthermore, it also includes: a plurality of mounting posts 13 , which are arranged in the second mounting space 12 , and the circuit board 3 and the cover plate 5 are arranged in the second mounting space 12 through the mounting posts 13 .

[0065] In this embodiment, the mounting posts 13 can be designed in a cylindrical or square shape. The circuit board 3 is placed in the second mounting space 12 so that it is aligned with the mounting posts 13. The cover plate 5 is placed above the circuit board 3 so that the holes in the cover plate 5 are aligned with the mounting posts 13. The cover plate 5 and the circuit board 3 are fixed to the mounting posts 13 using screws or nuts. The screws or nuts are tightened appropriately so that the cover plate 5 and the circuit board 3 fit tightly against the bottom case 1. Due to the presence of the mounting posts 13, the glue will fully contact the surface of the mounting posts 13, increasing the contact area with the glue. Special surface treatment of the mounting posts 13 can improve adhesion with the glue, allowing the glue to better bond with the mounting posts 13, thereby strengthening the structure.

[0066] The installation of mounting posts 13 provides stable support for circuit board 3 and cover plate 5, ensuring their precise positioning within second installation space 12. The surfaces of mounting posts 13 are in full contact with the adhesive, increasing the contact area. This ensures a stronger bond between the adhesive and mounting posts 13 after curing, enhancing the structural strength of second installation space 12.

[0067] Furthermore, it also includes: a plurality of transverse ribs 14, one end of which is arranged on the bottom shell 1 and the other end is arranged on the mounting column 13, and the transverse ribs 14 are used to strengthen the structure.

[0068] In this embodiment, the ends of the transverse ribs 14 are securely connected to the bottom housing 1 and the mounting posts 13. The arrangement of the transverse ribs 14 forms a stable support system between the bottom housing 1, the mounting posts 13, and the circuit board 3. This significantly enhances the structural strength of the entire telemetry terminal. The transverse ribs 14 distribute the pressure exerted on the mounting posts 13 and the bottom housing 1, reducing deformation caused by external forces. This improves the reliability and service life of the telemetry terminal and reduces the probability of failures caused by structural deformation.

[0069] Furthermore, the first reinforcing rib 121 and the second reinforcing rib 111 have a guiding slope 122, and the guiding slope 122 is used to facilitate installation.

[0070] In this embodiment, a guide bevel 122 is provided on the reinforcing rib, and the angle of the guide bevel 122 is determined according to actual installation requirements. When installing the battery compartment 2, the battery compartment 2 is aligned with the first installation space 11. Due to the presence of the guide bevel 122 on the second reinforcing rib 111, the battery compartment 2 will slide smoothly along the guide bevel 122 during the insertion into the first installation space 11, reducing installation resistance. When installing the circuit board 3 and the cover plate 5, the guide bevel 122 on the first reinforcing rib 121 in the second installation space 12 is also utilized. The circuit board 3 is placed in the second installation space 12, and under the action of the guide bevel 122, the circuit board 3 can be quickly and accurately positioned in the appropriate position.

[0071] The inclined guide surfaces 122 on the first and second reinforcing ribs 121, 111 greatly facilitate the installation of the battery compartment 2, circuit board 3, and cover 5. Installers no longer need to expend excessive effort and time adjusting component positions, improving installation efficiency. The inclined guide surfaces 122 accurately guide components to their intended locations, reducing problems such as poor sealing and structural instability caused by inaccurate installation. This improves the overall performance and reliability of the telemetry terminal.

[0072] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, and all of these should be included in the scope of the claims of the present invention.

Claims

1. A telemetry terminal with a glue-filled structure, characterized in that: include: A bottom shell (1) having a first installation space (11) and a second installation space (12); A battery compartment (2), arranged in the first installation space (11); The circuit board (3) is arranged in the second installation space (12); the first installation space (11) and the second installation space (12) are used for glue filling and sealing.

2. A telemetry terminal with a glue-filled structure according to claim 1, characterized in that: Also includes: An upper cover (4) is arranged on the bottom shell (1), and the upper cover (4) is used to seal the first installation space (11) and the second installation space (12) after the glue is poured.

3. The telemetry terminal with a glue-filled structure according to claim 2, characterized in that: Also includes: A cover plate (5) is arranged in the second installation space (12), the cover plate (5) is located between the circuit board (3) and the upper cover (4), and the cover plate (5) is used to enhance the strength of the glue potting.

4. The telemetry terminal with a glue-filled structure according to claim 3, characterized in that: Also includes: A first sealing member (6) is provided on the bottom shell (1); A cable (7) passes through the first sealing member (6) and is electrically connected to the circuit board (3).

5. The telemetry terminal with a glue-filled structure according to claim 4, characterized in that: Also includes: A second sealing member (8) is provided on the bottom shell (1); An external SIM card holder (9) passes through the second sealing member (8) and is electrically connected to the circuit board (3).

6. The telemetry terminal with a glue-filled structure according to claim 3, characterized in that: The second installation space (12) has a plurality of first reinforcing ribs (121), the first reinforcing ribs (121) abut against the cover plate (5), the cover plate (5) has a plurality of protrusions (51) around it, and the protrusions (51) abut against the bottom shell (1).

7. The telemetry terminal with a glue-filled structure according to claim 6, characterized in that: The first installation space (11) has a second reinforcing rib (111), and the battery compartment (2) abuts against the second reinforcing rib (111).

8. The telemetry terminal with a glue-filled structure according to claim 3, characterized in that: Also includes: There are a plurality of mounting posts (13) arranged in the second mounting space (12); the circuit board (3) and the cover plate (5) are arranged in the second mounting space (12) via the mounting posts (13).

9. The telemetry terminal with a glue-filled structure according to claim 8, characterized in that: Also includes: There are a plurality of transverse ribs (14), one end of which is arranged on the bottom shell (1) and the other end is arranged on the mounting column (13), and the transverse ribs (14) are used to strengthen the structure.

10. The telemetry terminal with a glue-filled structure according to claim 7, characterized in that: The first reinforcing rib (121) and the second reinforcing rib (111) have guiding slopes (122), and the guiding slopes (122) are used to facilitate installation.