A waterproof function has a lost locator

CN224844244UActive Publication Date: 2026-10-09SHENZHEN AIXINCHEN ELECTRONICS CO LTD
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Patent Information

Application Number
CN202521798916.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-22
Publication Date
2026-10-09
Estimated Expiration
2035-08-22

AI Technical Summary

Technical Problem

[0004]为了弥补以上不足,本实用新型提供了一种具有防水功能的防丢定位器,旨在改善传统定位器密封差、维护难、户外适用性不足的问题

Benefits of technology

1、本实用新型中,通过拧动螺母可取下盖子,增强设备密封性和稳定性,接着拉动拉块带动连接柱和连接块滑动在底板的内壁,让连接块挤压套设在连接柱外壁的第一弹簧使其伸缩,同时连接块带动转杆转动在其内壁,通过转杆带动连接杆滑动在连接块外壁,且连接杆带动通过另一个转杆转动在滑柱内,这时连接杆滑动在滑柱的外壁,从而带动滑柱从外壳内滑出至底板内,实现快速解锁,方便取下定位模板进行维护和检修;当户外高强度运动时,拨动转钮带动转杆在外壳内转动,同时带动圆环滑出外壳,将设备放入防护壳内将防护壳合上后,正向拉动翻盖使其通过与固定板的铰接滑动在固定板外壁,带动扣环滑动卡接在固定块内壁,接着反向拉动翻盖抵接在固定板上,实现快速锁定,这时将挂绳系在圆环上,通过挂绳可挂在身上,便于收纳且防止丢失,适配户外场景使用。

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Abstract

The utility model relates to the positioning ware production and processing technical field discloses a kind of waterproof function's anti-lost positioner, including shell and protective shell, the outer wall of shell is slidably connected with lid, the inner wall of shell is slidably connected with bottom plate, the inner wall of bottom plate is fixedly connected with circuit board, the inner wall of bottom plate is slidably connected with positioning template, the outer wall of positioning template is fixedly connected with multiple pull blocks, the outer wall of pull block is fixedly connected with multiple connecting columns, the side of pull block is provided with multiple first spring, the outer wall of connecting column is fixedly connected with connecting block, the inner wall of multiple connecting block is rotatably connected with rotating rod, the outer wall of rotating rod is slidably connected with multiple connecting rods, the outer wall of connecting rod is slidably connected with slide column, in the utility model, through the cooperation of pull block and connecting block and other structures, quickly unlock, improve the efficiency of maintenance and overhaul, protect equipment, it is convenient to store and prevent loss, adapt to outdoor scene.
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Description

Technical Field

[0001] This utility model relates to the field of locator manufacturing and processing technology, and in particular to a waterproof anti-loss locator. Background Technology

[0002] As a device used to obtain target location information in real time, locators are widely used for preventing loss and tracking of individuals and items. They are usually composed of a shell, positioning module, power supply components and protective structure, and need to take into account sealing, portability and ease of maintenance in order to adapt to diverse scenarios such as daily life and outdoor activities.

[0003] However, existing locators have many limitations in their structural design. Some devices rely on simple clips or glue for sealing, which can easily loosen and reduce sealing performance after long-term use. Maintenance requires the removal of multiple screws, which is cumbersome and makes it difficult to quickly repair internal modules, increasing the difficulty and time cost for users. In outdoor scenarios, the devices lack convenient fixing methods and reinforced protection, making it difficult to cope with bumps, collisions and water wading environments, and they are also prone to being lost due to their inconvenience in carrying them. Utility Model Content

[0004] To overcome the above shortcomings, this utility model provides a waterproof anti-loss locator, which aims to improve the problems of poor sealing, difficult maintenance, and insufficient outdoor applicability of traditional locators.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a waterproof anti-loss locator, comprising a shell and a protective shell, wherein a cover is slidably connected to the outer wall of the shell, a base plate is slidably connected to the inner wall of the shell, a circuit board is fixedly connected to the inner wall of the base plate, a positioning template is slidably connected to the inner wall of the base plate, multiple pull blocks are fixedly connected to the outer wall of the positioning template, multiple connecting posts are fixedly connected to the outer wall of the pull blocks, multiple first springs are provided on one side of the pull blocks, connecting blocks are fixedly connected to the outer wall of the connecting posts, rotating rods are rotatably connected to the inner walls of the multiple connecting blocks, multiple connecting rods are slidably connected to the outer wall of the rotating rods, sliding columns are slidably connected to the outer wall of the connecting rods, a buckle assembly is provided on the outer wall of the protective shell, and a buffer assembly is provided on the outer wall of the shell.

[0006] The above technical solution involves securing the cover to the outer casing with nuts, increasing the stability and sealing of the equipment. After removing the cover, pulling the pull block causes multiple connecting columns and blocks to slide against the inner wall of the positioning template. The positioning template limits the sliding path of the connecting columns and blocks, ensuring smooth sliding. When the connecting blocks slide, they compress the first spring, which is then limited by the limiting column to prevent excessive stretching and displacement, thus extending the service life of the parts. The connecting blocks, through the cooperation of multiple rotating shafts and connecting rods, drive the sliding column from inside the outer casing to inside the positioning template, releasing the lock between the outer casing and the positioning template. This allows for quick and easy disassembly of the positioning template, improving maintenance and repair efficiency.

[0007] Preferably, the buffer assembly includes multiple dampers, which are fixedly connected to the inner wall of the housing, and multiple second springs are provided on one side of the base plate, with the dampers fixedly connected to the outer wall of the base plate.

[0008] Preferably, the buckle assembly includes multiple fixing blocks, the protective shell includes a flip cover and a housing, the fixing blocks are fixedly connected to the outer wall of the flip cover, the outer wall of the housing is fixedly connected to a fixing plate, the outer wall of the fixing plate is slidably connected to a flip plate via a pivot, and the inner wall of the flip plate is fixedly connected to a buckle.

[0009] Preferably, the inner walls of both the outer shell and the cover are threaded with multiple nuts, and the circuit board and the positioning template are slidably connected to the inner wall of the outer shell.

[0010] Preferably, the connecting column, connecting block, rotating rod, and connecting rod are slidably connected to the inner wall of the positioning template, the first spring is disposed on the inner wall of the positioning template, the first spring is sleeved on the outer wall of the connecting column, the connecting rod is slidably connected to the outer wall of the connecting block, one of the rotating rods is rotatably connected to the inner wall of the sliding column, and the sliding column is slidably connected to the inner wall of the outer shell and the positioning template.

[0011] Preferably, the outer wall of the outer shell is fixedly connected with a sealing layer one and a sealing layer two, the inner wall of the cover is provided with a sealing ring one and a sealing ring two, the sealing layer one is snapped into the inner wall of the sealing ring one, the sealing layer two is snapped into the inner wall of the sealing ring two, the outer wall of the outer shell is provided with a charging interface, and the outer wall of the charging interface is slidably connected with a dust cover.

[0012] Preferably, the inner wall of the protective shell is provided with a sealing ring and a sealing gasket, and the outer shell is slidably connected to the inner wall of the protective shell.

[0013] Preferably, the inner wall of the outer casing is rotatably connected to a rotating column, the outer wall of the rotating column is fixedly connected to a knob, the outer wall of the knob is fixedly connected to a ring, and the knob and the ring are slidably connected to the inner wall of the outer casing.

[0014] This utility model has the following beneficial effects: 1. In this utility model, the cover can be removed by tightening the nut, enhancing the sealing and stability of the equipment. Then, pulling the pull block causes the connecting column and connecting block to slide against the inner wall of the base plate. This allows the connecting block to compress the first spring fitted on the outer wall of the connecting column, causing it to extend and retract. Simultaneously, the connecting block drives the rotating rod to rotate on its inner wall. The rotating rod then drives the connecting rod to slide against the outer wall of the connecting block, and the connecting rod, through another rotating rod, rotates inside the sliding column. At this point, the connecting rod slides against the outer wall of the sliding column, thereby causing the sliding column to slide out from the outer casing into the base plate, achieving quick unlocking. The positioning template is easy to remove for maintenance and repair. During high-intensity outdoor activities, turning the knob causes the rotating rod to rotate inside the housing, simultaneously causing the ring to slide out of the housing. After placing the device inside the protective housing and closing it, pull the flip cover forward so that it slides against the outer wall of the fixed plate through the hinge, causing the buckle to slide and engage with the inner wall of the fixed block. Then, pull the flip cover backward to abut against the fixed plate for quick locking. At this point, tie the hanging rope to the ring so that it can be hung on the body for easy storage and to prevent loss, making it suitable for outdoor use.

[0015] 2. In this utility model, through the cooperation of multiple dampers on the outer wall of the base plate and the second spring, when the equipment is impacted, the damping effect of the dampers and the elastic deformation of the second spring work together to buffer the shock, thereby avoiding direct rigid contact between the base plate and the outer shell, thus reducing the risk of the internal parts' weld points falling off, preventing damage to the parts from falling, and reducing wear on the parts, thereby improving the service life of the equipment.

[0016] 3. In this utility model, the sealing layer one and sealing layer two on the outer wall of the outer shell are snapped into the cover, so that sealing layer one is snapped into the inner wall of sealing ring one and sealing layer two is snapped into the inner wall of sealing ring two. The cooperation between the sealing ring and the sealing layer enhances the sealing performance and improves the waterproof performance of the device. The outer wall of the charging interface is provided with a dust cover, which covers the charging interface under normal circumstances to achieve the effect of dust and water protection, preventing internal parts from malfunctioning due to water ingress or dust accumulation, and enhancing the protection of the device. The flip cover of the protective shell is also provided with sealing rings and sealing layers, and when it is put on the outside of the device, the multi-layer sealing structure further prevents water from entering the device. The overall waterproof and protective capabilities of the device are improved through the cooperation of various sealing components. Attached Figure Description

[0017] Figure 1 This is a three-dimensional structural diagram of a waterproof anti-loss locator proposed in this utility model; Figure 2 This is an internal structural diagram of a waterproof anti-loss locator proposed in this utility model; Figure 3 This is a cross-sectional view of a waterproof anti-loss locator proposed in this utility model. Figure 4 for Figure 3 A magnified view of the details at point A; Figure 5 This is a partial cross-sectional view of a waterproof anti-loss locator proposed in this utility model. Figure 6 This is an unfolded structural diagram of a waterproof anti-loss locator proposed in this utility model; Figure 7 This utility model presents a structural diagram of a buckle assembly for a waterproof anti-loss locator.

[0018] Legend: 1. Outer shell; 2. Cover; 3. Base plate; 4. Circuit board; 5. Positioning template; 6. Pull block; 7. Connecting post; 8. First spring; 9. Connecting block; 10. Rotating rod; 11. Connecting rod; 12. Sliding column; 13. Damper; 14. Second spring; 15. Sealing layer one; 16. Sealing layer two; 17. Sealing ring one; 18. Sealing ring two; 19. Dust cover; 20. Rotating post; 21. Knob; 22. Ring; 23. Protective shell; 24. Fixing block; 25. Fixing plate; 26. Flip plate; 27. Buckle. Detailed Implementation

[0019] The technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0020] Example 1: Reference Figures 1-4This utility model provides an embodiment of a waterproof anti-loss locator, comprising a housing 1 and a protective shell 23. A cover 2 is slidably connected to the outer wall of the housing 1, and a base plate 3 is slidably connected to the inner wall of the housing 1. A circuit board 4 is fixedly connected to the inner wall of the base plate 3, and a positioning template 5 is slidably connected to the inner wall of the base plate 3. Multiple pull blocks 6 are fixedly connected to the outer wall of the positioning template 5, and multiple connecting posts 7 are fixedly connected to the outer wall of the pull blocks 6. Multiple first springs 8 are provided on one side of each pull block 6. Connecting blocks 9 are fixedly connected to the outer wall of each connecting post 7. Rotating rods 10 are rotatably connected to the inner walls of the multiple connecting blocks 9, and multiple connecting rods 11 are slidably connected to the outer wall of the rotating rods 10. A sliding column 12 is slidably connected to the outer wall of rod 11; a buckle assembly is provided on the outer wall of protective shell 23; and a buffer assembly is provided on the outer wall of outer shell 1. Multiple nuts are threadedly connected to the inner walls of outer shell 1 and cover 2. Circuit board 4 and positioning template 5 are slidably connected to the inner wall of outer shell 1. Connecting column 7, connecting block 9, rotating rod 10, and connecting rod 11 are slidably connected to the inner wall of positioning template 5. First spring 8 is provided on the inner wall of positioning template 5 and sleeved on the outer wall of connecting column 7. Connecting rod 11 is slidably connected to the outer wall of connecting block 9. One of the rotating rods 10 is rotatably connected to the inner wall of sliding column 12. Sliding column 12 is slidably connected to the inner walls of outer shell 1 and positioning template 5.

[0021] Specifically, the outer casing 1 and the cover 2 of the equipment are fixed by multiple nuts threaded together. Tightening the nuts allows for the installation and removal of the cover 2, enhancing the equipment's sealing performance and facilitating the opening of the outer casing 1 for internal component inspection. When maintenance and repair of the positioning template 5 are required, pulling the pull block 6 on its outer wall causes the connecting column 7 to slide on the inner wall of the positioning template 5. At this time, the connecting block 9 on the outer wall of the connecting column 7 moves accordingly. The connecting block 9 then compresses the first spring 8, which is fitted onto the inner wall of the positioning template 5 and located on the outer wall of the connecting column 7, causing it to contract. Next, the rotating rod 10 on the inner wall of the connecting block 9 rotates on its inner wall, causing the connecting rod 11 to slide on the outer wall of the connecting block 9. The other end of the connecting rod 11 drives another rotating rod 10 to rotate. The inner wall of the sliding column 12 simultaneously causes the connecting rod 11 to slide on the outer wall of the sliding column 12, prompting the sliding column 12 to slide from the inner wall of the outer shell 1 into the positioning template 5, thereby quickly unlocking the positioning template 5 from the outer shell 1 and allowing the positioning template 5 to be disassembled. During installation, the pull block 6 is pulled to drive the sliding column 12 into the positioning template 5, and then the positioning template 5 is placed into the base plate 3 through the positioning groove, achieving quick positioning and reducing installation difficulty. After releasing the pull block 6, the first spring 8 rebounds and pushes the connecting block 9 to reset, causing the sliding column 12 to re-lock into the slot of the outer shell 1. Through the cooperation of the above structures, the maintenance process can be simplified, maintenance time can be reduced, and efficiency can be improved.

[0022] Reference Figure 5The buffer assembly includes multiple dampers 13, which are fixedly connected to the inner wall of the outer shell 1. Multiple second springs 14 are provided on one side of the base plate 3, and the dampers 13 are fixedly connected to the outer wall of the base plate 3.

[0023] Specifically, when the equipment is subjected to external impact or vibration, the damper 13 on the inner wall of the outer shell 1 and the second spring 14 sleeved on its outer wall work together to transmit the vibration of the outer shell 1 to the damper 13. The damper 13 slows down the transmission speed of the impact force through its own damping characteristics. At the same time, when the base plate 3 is impacted, it squeezes the second spring 14, causing the second spring 14 to undergo elastic deformation and absorb part of the impact energy. The two work together to greatly reduce the sway amplitude of the base plate 3 relative to the outer shell 1, allowing the base plate 3 to slide inside the outer shell 1, avoiding direct rigid collision between the base plate 3 and the outer shell 1. This effectively buffers the vibration impact on the circuit board 4 and positioning template 5 on the inner wall of the base plate 3, thereby reducing the risk of component solder joints falling off, preventing internal components from being damaged by impact, reducing wear on components during long-term use, improving the equipment's drop resistance and service life, and ensuring stable operation in outdoor bumpy and drop scenarios.

[0024] Reference Figures 2-6 The outer wall of the outer shell 1 is fixedly connected with a sealing layer 15 and a sealing layer 16. The inner wall of the cover 2 is provided with a sealing ring 17 and a sealing ring 18. The sealing layer 15 is snapped into the inner wall of the sealing ring 17, and the sealing layer 16 is snapped into the inner wall of the sealing ring 18. The outer wall of the outer shell 1 is provided with a charging interface, and a dust cover 19 is slidably connected to the outer wall of the charging interface. The inner wall of the protective shell 23 is provided with a sealing ring and a sealing gasket, and the outer shell 1 is slidably connected to the inner wall of the protective shell 23.

[0025] Specifically, when the cover 2 is closed, the sealing layer 15 and sealing layer 16 on the outer wall of the outer shell 1 are respectively engaged with the sealing rings 17 and 18 on the inner wall of the cover 2. Through the interlocking of the double sealing structure, two waterproof and dustproof barriers are formed to prevent water and dust from entering from the seam between the outer shell 1 and the cover 2. The charging port on the outer wall of the outer shell 1 is normally covered by the dust cover 19. The dust cover 19 slides against the outer wall of the port to prevent moisture and impurities from entering the port and avoid short circuits or poor contact. When the device is placed in the protective shell 23, the sealing ring and sealing gasket on the inner wall of the protective shell 23 are tightly fitted together, forming a multi-layer superimposed seal with the sealing structure of the outer shell 1 itself. This can increase the overall waterproof performance and effectively prevent water from entering the device even in water wading scenarios such as stream tracing. This improves the sealing reliability of the device, protects the core components such as the circuit board 4 and the positioning template 5 from water vapor and dust corrosion, extends the service life of the device, and meets the needs of daily and high-intensity outdoor use scenarios.

[0026] Example 2: Reference Figure 7This embodiment is based on the description of Embodiment 1. When engaging in high-intensity outdoor activities, this embodiment makes improvements. The buckle assembly includes multiple fixing blocks 24. The protective shell 23 includes a flip cover and a shell. The fixing blocks 24 are fixedly connected to the outer wall of the flip cover. The outer wall of the shell is fixedly connected to a fixing plate 25. The outer wall of the fixing plate 25 is slidably connected to a flip plate 26 via a pivot. The inner wall of the flip plate 26 is fixedly connected to a buckle 27.

[0027] Specifically, by rotating the hinge on the inner wall of the fixed plate 25, the flap 26 is rotated to open the protective shell 23. After the equipment is placed inside, the flap 26 is rotated in the opposite direction. The flap 26 slides on the outer wall of the fixed plate 25 via the hinge, and at the same time, it drives the buckle 27 on its inner wall to move together until the buckle 27 slides and locks into the inner wall of the fixed block 24, thereby quickly locking the protective shell 23. This prevents the flap from accidentally opening and causing the equipment to fall off during outdoor bumps and collisions. It achieves convenient opening and closing of the protective shell 23 without tools. It is convenient for quick storage and retrieval of equipment, and can firmly protect the internal equipment in high-intensity scenarios such as mountaineering and canyoning, improving safety and operational efficiency.

[0028] Reference Figure 1 and Figure 5 The inner wall of the outer casing 1 is rotatably connected to the rotating column 20, the outer wall of the rotating column 20 is fixedly connected to the knob 21, the outer wall of the knob 21 is fixedly connected to the ring 22, and the knob 21 and the ring 22 are slidably connected to the inner wall of the outer casing 1.

[0029] Specifically, by turning the knob 21 on the outer wall of the outer shell 1, the knob 21 slides inside the outer shell 1, causing the rotating column 20 to rotate on the inner wall of the outer shell 1. When the knob 21 rotates, it causes the ring 22 to slide on the inner wall of the outer shell 1. By turning the knob 21, the length of the ring 22 extending out of the outer shell 1 can be adjusted. When carrying the device, the ring 22 is slid to a suitable position, and then the lanyard can be tied to the ring 22 for easy hanging on the body or outdoor equipment to avoid loss. The rotating column 20 provides stable support, allowing the knob 21 and the ring 22 to slide smoothly. The operation is simple and intuitive, and the position adjustment of the ring 22 can be completed without complicated steps, adapting to the carrying needs of different scenarios and improving the portability and anti-loss effect of the device.

[0030] Working principle: This utility model uses multiple nuts to fix the cover 2 to the outer wall of the outer shell 1. By unscrewing the nuts, the cover 2 can be removed, increasing the sealing of the equipment. Pulling the pull block 6 causes multiple connecting columns 7 to slide on the inner wall of the base plate 3, which in turn causes the connecting block 9 to compress the first spring 8 on one side of the pull block 6, causing the first spring 8 to extend and retract on the outer wall of the connecting column 7. Then, the connecting block 9 drives the rotating rod 10 to rotate on its inner wall. The connecting rod 11 slides on the outer wall of the connecting block 9 through the rotating rod 10. At the same time, the connecting rod 11 rotates and slides on the outer wall of the sliding column 12 through another rotating rod 10, thereby causing the sliding column 12 to slide out from the inner wall of the outer shell 1 to the inner wall of the base plate 3, achieving a quick unlocking effect. This allows for quick removal of the positioning template 5, facilitating maintenance and repair. When engaging in high-intensity outdoor activities, such as... In scenarios such as mountaineering, jungle exploration, and canyoning, turn knob 21 to rotate it on the inner wall of the outer casing 1, which in turn rotates the rotating column 20 on the inner wall of the outer casing 1. At the same time, knob 21 causes the ring 22 to slide on the inner wall of the outer casing 1 until the ring 22 slides out of the outer casing 1 and reaches the appropriate position. Then stop turning knob 21, and then put the device into the protective shell 23. After closing the protective shell 23, pull the flip plate 26 forward so that it slides on the fixed plate 25 through the hinge, thereby driving the buckle 27 to rotate and slide on the inner wall of the fixed block 24. Then pull the flip plate 26 in the opposite direction so that it abuts against the outer wall of the fixed plate 25 to achieve a quick locking function. Then tie the hanging rope to the ring 22 and hang the device on your body with the hanging rope, which can prevent loss while storing it.

[0031] Multiple dampers 13 are fixedly connected to the outer wall of the base plate 3. Through the cooperation of the dampers 13 and the second spring 14, the inner wall parts are buffered and shock-absorbing, avoiding direct rigid contact between the base plate 3 and the outer shell 1, reducing the risk of the parts' weld points falling off, preventing the equipment from falling and causing damage to the internal parts, and also reducing wear on the parts and improving the service life of the equipment. The outer wall of the outer casing 1 is fixedly connected with a sealing layer 15 and a sealing layer 16. The cover 2 is snapped onto the outer wall of the outer casing 1 through the sealing layer 15 and the sealing layer 16. The sealing layer 15 is snapped onto the inner wall of the sealing ring 17, and the sealing layer 16 is snapped onto the inner wall of the sealing ring 18. Through the cooperation between multiple sealing rings and sealing layers, the sealing performance of the device is increased and the waterproof performance of the device is improved. At the same time, the outer wall of the outer casing 1 is provided with a charging interface. The outer wall of the charging interface is provided with a dust cover 19. Normally, the dust cover 19 is used to prevent dust and water from entering the charging interface, preventing dust and water from entering the device and causing the device parts to malfunction, thus increasing the protective performance of the device. The flip cover and the outer casing of the protective shell 23 are also provided with sealing rings and sealing layers to achieve a sealing effect and prevent water from entering the inner wall. When the protective shell 23 is fitted onto the outer wall of the device, the waterproof performance of the device is increased through the multi-layer sealing structure.

[0032] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A waterproof anti-loss locator, comprising a housing (1) and a protective shell (23), characterized in that: The outer wall of the outer shell (1) is slidably connected to a cover (2), the inner wall of the outer shell (1) is slidably connected to a base plate (3), the inner wall of the base plate (3) is fixedly connected to a circuit board (4), the inner wall of the base plate (3) is slidably connected to a positioning template (5), the outer wall of the positioning template (5) is fixedly connected to multiple pull blocks (6), the outer wall of the pull block (6) is fixedly connected to multiple connecting posts (7), one side of the pull block (6) is provided with multiple first springs (8), the outer wall of the connecting post (7) is fixedly connected to a connecting block (9), the inner wall of the multiple connecting blocks (9) is rotatably connected to a rotating rod (10), the outer wall of the rotating rod (10) is slidably connected to multiple connecting rods (11), the outer wall of the connecting rod (11) is slidably connected to a sliding column (12), the outer wall of the protective shell (23) is provided with a buckle assembly, and the outer wall of the outer shell (1) is provided with a buffer assembly.

2. The waterproof anti-loss locator according to claim 1, characterized in that: The buffer assembly includes multiple dampers (13), which are fixedly connected to the inner wall of the outer shell (1). Multiple second springs (14) are provided on one side of the base plate (3), and the dampers (13) are fixedly connected to the outer wall of the base plate (3).

3. The waterproof anti-loss locator according to claim 1, characterized in that: The buckle assembly includes multiple fixing blocks (24), the protective shell (23) includes a flip cover and a shell, the fixing blocks (24) are fixedly connected to the outer wall of the flip cover, the outer wall of the shell is fixedly connected to a fixing plate (25), the outer wall of the fixing plate (25) is slidably connected to a flip plate (26) through a rotating shaft, and the inner wall of the flip plate (26) is fixedly connected to a buckle (27).

4. A waterproof anti-loss locator according to claim 1, characterized in that: The inner walls of the outer shell (1) and the cover (2) are threaded with multiple nuts, and the circuit board (4) and the positioning template (5) are slidably connected to the inner wall of the outer shell (1).

5. A waterproof anti-loss locator according to claim 1, characterized in that: The connecting column (7), connecting block (9), rotating rod (10) and connecting rod (11) are slidably connected to the inner wall of the positioning template (5). The first spring (8) is set on the inner wall of the positioning template (5) and sleeved on the outer wall of the connecting column (7). The connecting rod (11) is slidably connected to the outer wall of the connecting block (9). One of the rotating rods (10) is rotatably connected to the inner wall of the sliding column (12). The sliding column (12) is slidably connected to the inner wall of the outer shell (1) and the positioning template (5).

6. A waterproof anti-loss locator according to claim 1, characterized in that: The outer wall of the outer shell (1) is fixedly connected with a sealing layer one (15) and a sealing layer two (16). The inner wall of the cover (2) is provided with a sealing ring one (17) and a sealing ring two (18). The sealing layer one (15) is snapped into the inner wall of the sealing ring one (17), and the sealing layer two (16) is snapped into the inner wall of the sealing ring two (18). The outer wall of the outer shell (1) is provided with a charging interface, and the outer wall of the charging interface is slidably connected with a dust cover (19).

7. A waterproof anti-loss locator according to claim 1, characterized in that: The inner wall of the protective shell (23) is provided with a sealing ring and a sealing gasket, and the outer shell (1) is slidably connected to the inner wall of the protective shell (23).

8. A waterproof anti-loss locator according to claim 1, characterized in that: The inner wall of the outer shell (1) is rotatably connected to the rotating column (20), and the outer wall of the rotating column (20) is fixedly connected to the knob (21). The outer wall of the knob (21) is fixedly connected to the ring (22), and the knob (21) and the ring (22) are slidably connected to the inner wall of the outer shell (1).