Quickly-mounted navigation aid lamp for mobile parking apron
The quick-installation navigation light's rapid disassembly and assembly structure and flexible support components solve the problem of complex replacement of traditional navigation light power supply modules, enabling rapid disassembly and assembly of the power supply module. This makes it suitable for efficient maintenance and emergency deployment on mobile helipads.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG SHENGXIANG MACHINERY
- Filing Date
- 2025-05-30
- Publication Date
- 2026-05-08
AI Technical Summary
The battery replacement process for traditional navigation lights is complex, requiring the disassembly of numerous parts and specialized tools, resulting in long maintenance times and making it difficult to meet the high-frequency maintenance and emergency deployment needs of mobile helipads.
The navigation light adopts a quick-installation design, utilizing a quick-release structure and elastic support components to enable single-action manual operation of the power supply module. Combined with a lifting guide structure and a slider locking mechanism, it ensures quick locking and disassembly of the battery positioning housing.
The process of disassembling and assembling the power supply module has been simplified, improving the efficiency of disassembly and assembly. It is particularly suitable for emergency repairs and rapid wartime support, meeting the high-efficiency maintenance needs of mobile helipads.
Smart Images

Figure CN224215266U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of navigation lighting technology, and relates to a quick-install navigation light for mobile helipads. Background Technology
[0002] Navigation lights on mobile aprons are a crucial component of aviation ground navigation equipment, primarily used to ensure safe takeoffs, landings, and ground operations for aircraft at night, in low visibility, or in complex environments. Navigation lights are typically powered by batteries; however, traditional navigation lights often integrate their batteries into the housing using bolts or welding. Replacing these batteries requires disassembling numerous parts and sometimes specialized tools, resulting in time-consuming and complex maintenance. In scenarios requiring frequent maintenance or emergency deployment, such as mobile aprons, this design severely hinders operational efficiency. Utility Model Content
[0003] The purpose of this invention is to address the above-mentioned problems by providing a quick-install navigation light for mobile helipads.
[0004] To achieve the above objectives, the present invention adopts the following technical solution:
[0005] A quick-install navigation light for mobile helipads includes a mounting housing and a detachable mounting cover plate on the upper end of the mounting housing. The mounting housing has a mounting base at the bottom end, and an LED navigation light assembly is provided on the upper end of the mounting cover plate. The mounting housing contains a power supply module electrically connected to the LED navigation light assembly, and a manual control switch electrically connected to the LED navigation light assembly is provided on the mounting housing. The power supply module is connected to the mounting housing via a quick-release structure.
[0006] The removable cover plate facilitates the inspection and replacement of the power supply module. The quick-release structure enables rapid disassembly and assembly of the power supply module, saving a significant amount of time and effectively improving the efficiency of disassembly and assembly. The disassembly and assembly operation is convenient, making it particularly suitable for emergency repairs or rapid support scenarios during wartime.
[0007] In the aforementioned quick-install navigation light for mobile helipads, the power supply module includes a power supply battery electrically connected to the LED navigation light assembly. The quick-installation structure includes a battery positioning housing that is vertically and ellipsably mounted within the mounting housing via an elastic support component. The power supply battery is located within the battery positioning housing. A descent locking mechanism is also provided between the battery positioning housing and the mounting housing. The elastic support component stores energy when the battery positioning housing descends and releases the energy after the descent locking mechanism is released.
[0008] When the battery positioning housing descends, it can be quickly locked in place by the descending locking mechanism. After the descending locking mechanism is released, the elastic support component releases energy to push the battery positioning housing upward. Through the synergistic effect of the elastic support component and the descending locking mechanism, the multi-step tool-based operation required for the traditional power supply module disassembly and assembly can be simplified into a single-action manual operation, realizing the rapid disassembly and assembly of the power supply module.
[0009] In the aforementioned quick-install navigation light for mobile helipads, a lifting guide structure is provided between the battery positioning housing and the mounting housing.
[0010] During the lowering and raising / removing of the battery positioning housing, the lifting guide structure between the battery positioning housing and the mounting housing restricts the battery positioning housing to move only in the vertical direction, preventing skewness and ensuring the accurate installation path of the battery positioning housing.
[0011] In the aforementioned quick-install navigation light for mobile helipads, the lifting guide structure includes lifting guide sliders symmetrically arranged on both sides of the battery positioning housing and distributed in the vertical direction. A lifting guide wall is provided on the inner side wall of the mounting housing corresponding to the lifting guide slider. The lifting guide wall is provided with lifting guide grooves distributed in the vertical direction and slidingly engaged with the lifting guide slider.
[0012] When the battery positioning housing is lowered for installation and raised for disassembly, the lifting guide sliders on both sides of the battery positioning housing slide vertically in the lifting guide groove. The lifting guide groove and the lifting guide slider cooperate to restrict the battery positioning housing to move only in the vertical direction, prevent skew, and ensure the accurate installation path of the battery positioning housing. The lifting guide groove also plays a role in limiting the rotation of the battery positioning housing.
[0013] In the aforementioned quick-install navigation light for mobile helipads, the descent locking mechanism includes a slider locking structure disposed between the lifting guide groove and the lifting guide slider.
[0014] The slider locking structure can lock and fix the lifting guide slider when the battery positioning housing descends to the target position. By locking and fixing the lifting guide slider, the installation position of the battery positioning housing is fixed. The locking and fixing operation of the battery positioning housing is convenient and the fixation is stable.
[0015] In the aforementioned quick-install navigation light for mobile helipads, the slider locking structure includes side wall limiting holes that are respectively installed through and aligned with each other on both sides of the lifting guide groove. The lifting guide slider is provided with a slider limiting hole that is adapted to the side wall limiting hole. When the lifting guide slider descends to the point where the slider limiting hole is aligned with the side wall limiting hole, the lifting guide slider is locked by a locking rod that passes through the side wall limiting hole and the slider limiting hole. A bend rod is also provided on the outer end of the locking rod.
[0016] When the battery positioning housing descends to the target position, the slider limit hole of the lifting guide slider aligns with the side wall limit hole, and the locking rod is inserted to fix the position of the lifting guide slider, thereby achieving the locking and fixing of the battery positioning housing. The battery positioning housing is firmly fixed, and the locking and unlocking operations of the battery positioning housing are convenient. The mechanical locking does not require tools and can be completed manually, which meets the needs of rapid maintenance in the field. The angle rod can prevent the locking rod from falling off.
[0017] In the aforementioned quick-install navigation light for mobile helipads, the lifting guide groove is also provided with a limiting step that can abut against the bottom end of the lifting guide slider. When the lifting guide slider abuts against the limiting step, the slider limiting hole and the side wall limiting hole are aligned.
[0018] The limiting step is used for the installation and positioning of the battery positioning housing. When the lifting guide slider descends and abuts against the limiting step, it can ensure that the side wall limiting hole and the slider limiting hole are automatically aligned, which facilitates the locking and fixing operation of the slider limiting hole and can further save disassembly and assembly time.
[0019] In the aforementioned quick-install navigation light for mobile helipads, the elastic support assembly includes several springs disposed between the bottom wall of the mounting housing and the bottom of the battery positioning housing. The bottom end of the spring is connected to the bottom wall of the mounting housing, and a support plate is provided on the other end of the spring.
[0020] When the battery positioning housing descends, the spring is compressed to store energy. When the descending locking mechanism is released, the spring releases energy to push the battery positioning housing upward, enabling quick assembly and disassembly of the power supply module. The support plate at the upper end of the spring can expand the contact area, making the pressure evenly distributed and ensuring a smooth lifting process.
[0021] In the aforementioned quick-install navigation light for mobile helipads, the mounting cover plate has an extension section, and the extension section is provided with an embedded handle groove; a waterproof sealing strip is provided on the top periphery of the mounting housing.
[0022] The recessed handle groove on the extension section makes it easy to pull with your fingers, which facilitates the opening and closing of the mounting cover plate and provides a convenient opening and closing method; the waterproof sealing strip on the top periphery of the mounting housing can seal the gap between the mounting housing and the mounting cover plate after compression, which can prevent rainwater from seeping in and protect the power supply module.
[0023] In the aforementioned quick-install navigation light for mobile helipads, the mounting housing has a power charging port on its side wall that is electrically connected to the power supply module; the power supply module is electrically connected to the data processing module, and the data processing module is connected to the light remote controller via a wireless transceiver module, which can control the LED navigation light group to light up or turn off.
[0024] The LED navigation lights can be wirelessly controlled to turn on or off via a remote control, enabling remote centralized control to meet the needs of modern airport management. In addition, external charging is supported via a power charging port.
[0025] Compared with existing technologies, the advantages of this utility model are: it simplifies the multi-step tool-based operation required for the disassembly and assembly of traditional power supply modules into a single-action manual operation, which enables the rapid disassembly and assembly of power supply modules, effectively improves the efficiency of disassembly and assembly, and is convenient to operate, especially suitable for emergency repairs or wartime rapid support scenarios. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the overall structure provided by this utility model;
[0027] Figure 2 This is a schematic diagram of the structure for mounting the housing;
[0028] Figure 3 This is a sectional view of the mounting housing;
[0029] Figure 4 This is a sectional view of the slider locking structure;
[0030] Figure 5 This is the electrical connection diagram provided by this utility model.
[0031] In the diagram, the components are: 1. Mounting housing; 2. Mounting cover plate; 3. Mounting base; 4. LED navigation light assembly; 5. Power supply module; 6. Manual control switch; 7. Quick-release structure; 8. Power supply battery; 9. Elastic support assembly; 10. Battery positioning housing; 11. Lowering locking mechanism; 12. Lifting guide structure; 13. Lifting guide slider; 14. Lifting guide wall; 15. Lifting guide groove; 16. Slider locking structure; 17. Side wall limiting hole; 18. Slider limiting hole; 19. Locking rod; 20. Angle rod; 21. Limiting step; 22. Spring; 23. Support plate; 24. Extension section; 25. Embedded handle groove; 27. Power charging port; 28. Data processing module; 29. Wireless transceiver module; 30. Light remote control; 31. Waterproof cover. Detailed Implementation
[0032] like Figures 1-5 As shown, a quick-install navigation light for a mobile helipad includes a mounting housing 1 and a detachable mounting cover plate 2 disposed on the upper end of the mounting housing 1. The bottom end of the mounting housing 1 is provided with a mounting base 3. An LED navigation light assembly 4 is provided on the upper end of the mounting cover plate 2. A power supply module 5 electrically connected to the LED navigation light assembly 4 is provided inside the mounting housing 1. A manual control switch 6 electrically connected to the LED navigation light assembly 4 is provided on the mounting housing 1. The power supply module 5 is connected to the mounting housing 1 through a quick-release structure 7.
[0033] In this utility model, the mounting housing 1 is fixed by the cooperation between the bottom mounting base 3 and the mobile landing pad. The LED navigation light group 4 is integrated into the top of the mounting housing 1 by the mounting cover plate 2. The power supply module 5 supplies power to the LED navigation light group 4. The LED navigation light group 4 can be turned on or off by the manual control switch 6.
[0034] The removable cover plate 2 facilitates the inspection and replacement of the power supply module 5. The quick-release structure 7 enables the rapid disassembly and assembly of the power supply module 5, saving a lot of time and effectively improving the efficiency of disassembly and assembly. The disassembly and assembly operation is convenient, making it especially suitable for emergency repairs or rapid support scenarios during wartime.
[0035] Specifically, combining Figures 1-4 As shown, the power supply module 5 includes a power supply battery 8 electrically connected to the LED navigation light group 4. The quick-release structure 7 includes a battery positioning housing 10 that is vertically and vertically mounted in the mounting housing 1 via an elastic support component 9. The power supply battery 8 is mounted in the battery positioning housing 10. A descent locking mechanism 11 is also provided between the battery positioning housing 10 and the mounting housing 1. The elastic support component 9 stores energy when the battery positioning housing 10 descends and releases energy after the descent locking mechanism 11 is released.
[0036] The elastic support component 9 supports the battery positioning housing 10 in its initial high position, and the power supply battery 8 is placed inside it. During installation, the battery positioning housing 10 is manually pressed down to lower it, and the position of the battery positioning housing 10 is locked by the lowering locking mechanism 11. When the battery positioning housing 10 lowers, the elastic support component 9 stores energy; after the lowering locking mechanism 11 is released, the elastic support component 9 releases energy to push the battery positioning housing 10 upward.
[0037] When the battery positioning housing 10 descends, it can be quickly locked and fixed by the descending locking mechanism 11. After the descending locking mechanism 11 is released, the elastic support component 9 releases energy to push the battery positioning housing 10 upward, realizing the quick assembly and disassembly of the power supply module 5.
[0038] Through the coordinated action of the elastic support component 9 and the lowering locking mechanism 11, the multi-step tool-based operation required for the traditional power supply module disassembly and assembly can be simplified into a single-action manual operation, enabling the rapid disassembly and assembly of the power supply module 5, effectively improving the disassembly and assembly efficiency of the power supply module 5, and making the disassembly and assembly operation convenient.
[0039] Specifically, combining Figure 3 and Figure 4As shown, a lifting guide structure 12 is provided between the battery positioning housing 10 and the mounting housing 1. The lifting guide structure 12 includes lifting guide sliders 13 symmetrically arranged on the two side walls of the battery positioning housing 10 and distributed in the vertical direction. A lifting guide wall 14 is provided on the inner side wall of the mounting housing 1 corresponding to the lifting guide sliders 13. The lifting guide wall 14 is provided with lifting guide grooves 15 distributed in the vertical direction and slidingly engaged with the lifting guide sliders 13.
[0040] When the battery positioning housing 10 is lowered for installation and raised for disassembly, the lifting guide sliders 13 on both sides of the battery positioning housing 10 slide vertically in the lifting guide groove 15. The lifting guide groove 15 and the lifting guide sliders 13 cooperate to restrict the battery positioning housing 10 to move only in the vertical direction, prevent skew, and ensure that the installation path of the battery positioning housing 10 is accurate.
[0041] The lifting guide groove 15 also serves to limit the rotation of the battery positioning housing 10.
[0042] Specifically, combining Figure 3 and Figure 4 As shown, the lowering locking mechanism 11 includes a slider locking structure 16 disposed between the lifting guide groove 15 and the lifting guide slider 13. The slider locking structure 16 includes side wall limiting holes 17 that are respectively disposed through the two side walls of the lifting guide groove 15 and aligned with each other. The lifting guide slider 13 is provided with a slider limiting hole 18 that is adapted to the side wall limiting hole 17. When the lifting guide slider 13 descends to the point where the slider limiting hole 18 is aligned with the side wall limiting hole 17, the lifting guide slider 13 is locked by the locking rod 19 that passes through the side wall limiting hole 17 and the slider limiting hole 18. A bend rod 20 is also provided on the outer end of the locking rod 19.
[0043] When the battery positioning housing 10 descends to the target position, after the slider limiting hole 18 of the lifting guide slider 13 aligns with the side wall limiting hole 17, the locking rod 19 is inserted to fix the position of the lifting guide slider 13, thereby achieving the locking and fixing of the battery positioning housing 10. The battery positioning housing 10 is fixed and stable, and the locking and unlocking operations of the battery positioning housing 10 are convenient. The mechanical locking does not require tools and can be completed manually, which meets the needs of rapid maintenance in the field. The angle rod 20 can prevent the locking rod 19 from falling off.
[0044] Preferably, combined with Figure 3 and Figure 4 As shown, the lifting guide groove 15 is also provided with a limiting step 21 that can abut against the bottom end of the lifting guide slider 13. When the lifting guide slider 13 abuts against the limiting step 21, the slider limiting hole 18 and the side wall limiting hole 17 are aligned.
[0045] The limiting step 21 is used for the installation and positioning of the battery positioning housing 10. When the lifting guide slider 13 descends and abuts against the limiting step 21, it can ensure that the side wall limiting hole 17 and the slider limiting hole 18 are automatically aligned, which facilitates the locking and fixing operation of the slider limiting hole 18 and can further save disassembly and assembly time.
[0046] Specifically, combining Figure 3 As shown, the elastic support assembly 9 includes several springs 22 disposed between the bottom wall of the mounting housing 1 and the bottom of the battery positioning housing 10. The bottom end of the spring 22 is connected to the bottom wall of the mounting housing 1, and a support plate 23 is provided on the other end of the spring 22.
[0047] When the battery positioning housing 10 descends, the spring 22 is compressed to store energy. When the descending locking mechanism 11 is released, the spring 22 releases energy to push the battery positioning housing 10 upward, enabling the power supply module 5 to be quickly installed and removed. The support plate 23 at the upper end of the spring 22 can expand the contact area, making the pressure evenly distributed and ensuring a smooth lifting process.
[0048] Specifically, combining Figure 1 and Figure 2 As shown, the mounting cover plate 2 has an extension section 24, and the extension section 24 is provided with an embedded handle groove 25; a waterproof sealing strip is provided on the top periphery of the mounting housing 1.
[0049] The embedded handle groove 25 on the extension section 24 is easy to pull with fingers, which makes it easy to open the mounting cover plate 2 and provides a convenient opening and closing method; the waterproof sealing strip on the top periphery of the mounting housing 1 can seal the gap between the mounting housing 1 and the mounting cover plate 2 after compression, which can prevent rainwater from seeping in and protect the power supply module 5.
[0050] Specifically, combining Figure 1 , Figure 2 and Figure 5 As shown, the side wall of the mounting housing 1 is provided with a power charging port 27 that is electrically connected to the power supply module 5; the power supply module 5 is electrically connected to the data processing module 28, and the data processing module 28 is connected to the light remote controller 30 through the wireless transceiver module 29. The light remote controller 30 can control the LED navigation light group 4 to light up or turn off.
[0051] The LED navigation lights 4 can be wirelessly controlled to turn on or off via the light remote controller 30, enabling remote centralized control and meeting the needs of modern airport management. In addition, external charging is supported via the power charging port 27, which is equipped with a waterproof cover 31.
[0052] The working principle of this utility model is as follows: the LED navigation light group 4 can be turned on or off by manually controlling the switch 6, or the LED navigation light group 4 can be turned on or off wirelessly by the light remote control 30; when the battery positioning housing 10 is lowered for installation and raised for disassembly, the lifting guide sliders 13 on both sides of the battery positioning housing 10 slide vertically in the lifting guide groove 15.
[0053] When the battery positioning housing 10 descends to the target position, after the slider limiting hole 18 of the lifting guide slider 13 aligns with the side wall limiting hole 17, the locking rod 19 is inserted to fix the position of the lifting guide slider 13, thereby achieving the locking and fixing of the battery positioning housing 10; when the locking rod 19 is pulled out, the spring 22 releases energy to push the battery positioning housing 10 upward to achieve quick disassembly.
[0054] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.
[0055] Although this article frequently uses terms such as mounting housing 1, mounting cover plate 2, mounting base 3, LED navigation light assembly 4, power supply module 5, manual control switch 6, quick disassembly structure 7, power supply battery 8, elastic support assembly 9, battery positioning housing 10, descent locking mechanism 11, lifting guide structure 12, lifting guide slider 13, lifting guide wall 14, lifting guide groove 15, slider locking structure 16, side wall limiting hole 17, slider limiting hole 18, locking rod 19, angle rod 20, limiting step 21, spring 22, support plate 23, extension section 24, embedded handle groove 25, power charging port 27, data processing module 28, wireless transceiver module 29, light remote control 30, waterproof cover 31, etc., these terms are used merely for the convenience of describing and explaining the essence of this utility model; interpreting them as any kind of additional limitation would contradict the spirit of this utility model.
Claims
1. A quick-install navigation light for mobile helipads, characterized in that, The device includes a mounting housing (1) and a detachable mounting cover plate (2) on the upper end of the mounting housing (1). The mounting housing (1) has a mounting base (3) at the bottom end and an LED navigation light group (4) on the upper end of the mounting cover plate (2). The mounting housing (1) has a power supply module (5) that is electrically connected to the LED navigation light group (4). The mounting housing (1) has a manual control switch (6) that is electrically connected to the LED navigation light group (4). The power supply module (5) is connected to the mounting housing (1) through a quick-release structure (7).
2. The quick-install navigation light for mobile helipads according to claim 1, characterized in that, The power supply module (5) includes a power supply battery (8) electrically connected to the LED navigation light group (4). The quick-release structure (7) includes a battery positioning housing (10) that can be raised and lowered within the mounting housing (1) via an elastic support component (9). The power supply battery (8) is located within the battery positioning housing (10). A lowering locking mechanism (11) is also provided between the battery positioning housing (10) and the mounting housing (1). The elastic support component (9) stores energy when the battery positioning housing (10) is lowered and releases energy after the lowering locking mechanism (11) is released.
3. The quick-install navigation light for mobile helipads according to claim 2, characterized in that, A lifting guide structure (12) is provided between the battery positioning housing (10) and the mounting housing (1).
4. The quick-install navigation light for mobile helipads according to claim 3, characterized in that, The lifting guide structure (12) includes lifting guide sliders (13) symmetrically arranged on both sides of the battery positioning housing (10) and distributed in the vertical direction. A lifting guide wall (14) is provided on the inner side wall of the mounting housing (1) corresponding to the lifting guide slider (13). The lifting guide wall (14) is provided with lifting guide grooves (15) distributed in the vertical direction and slidingly engaged with the lifting guide slider (13).
5. The quick-install navigation light for mobile helipads according to claim 4, characterized in that, The lowering locking mechanism (11) includes a slider locking structure (16) disposed between the lifting guide groove (15) and the lifting guide slider (13).
6. The quick-install navigation light for mobile helipads according to claim 5, characterized in that, The slider locking structure (16) includes side wall limiting holes (17) that are respectively provided through the two side walls of the lifting guide groove (15) and aligned with each other. The lifting guide slider (13) is provided with a slider limiting hole (18) that is adapted to the side wall limiting hole (17). When the lifting guide slider (13) descends to the point where the slider limiting hole (18) is aligned with the side wall limiting hole (17), the lifting guide slider (13) is locked by the locking rod (19) that passes through the side wall limiting hole (17) and the slider limiting hole (18). A bend rod (20) is also provided on the outer end of the locking rod (19).
7. The quick-install navigation light for mobile helipads according to claim 6, characterized in that, The lifting guide groove (15) is also provided with a limiting step (21) that can abut against the bottom of the lifting guide slider (13). When the lifting guide slider (13) abuts against the limiting step (21), the slider limiting hole (18) and the side wall limiting hole (17) are aligned.
8. The quick-install navigation light for mobile helipads according to any one of claims 2-7, characterized in that, The elastic support assembly (9) includes several springs (22) disposed between the bottom wall of the mounting housing (1) and the bottom of the battery positioning housing (10). The bottom end of the spring (22) is connected to the bottom wall of the mounting housing (1), and a support plate (23) is provided on the other end of the spring (22).
9. The quick-install navigation light for mobile helipads according to any one of claims 1-7, characterized in that, The mounting cover plate (2) has an extension section (24), and the extension section (24) is provided with an embedded handle groove (25); the top periphery of the mounting housing (1) is provided with a waterproof sealing strip.
10. The quick-install navigation light for mobile helipads according to any one of claims 1-7, characterized in that, The mounting housing (1) has a power charging port (27) that is electrically connected to the power supply module (5) on its side wall; the power supply module (5) is electrically connected to the data processing module (28), and the data processing module (28) is connected to the light remote controller (30) through the wireless transceiver module (29). The light remote controller (30) can control the LED navigation light group (4) to light up or turn off.