A multi-in-one light-out device
Patent Information
- Application Number
- CN202520091785.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-01-14
AI Technical Summary
[0003]本实用新型的目的是提供一种多合一出光装置,旨在解决现有枪灯枪瞄产品功能单一、结构不合理以及性能不足等问题,通过集成多种出光功能和优化结构设计,满足复杂环境下的使用需求,提高枪支辅助设备的实用性和可靠性
本实用新型的多合一出光装置集成了发射可见激光、不可见激光、可见 LED 灯光以及不可见激光扩束四种不同类型的光线,满足了在不同环境和任务下的多样化出光需求,如在白天可使用可见激光瞄准和 LED 照明,夜间或特殊任务中可切换到不可见激光瞄准和不可见光激光照明,大大提高了装备的适用性和灵活性。
Smart Images

Figure CN224802273U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of optical equipment technology, and in particular to an all-in-one light-emitting device. Background Technology
[0002] In military, law enforcement, and shooting sports, there is a diverse demand for firearms aiming and illumination aids. Traditional gun lights and sights are often single-function, such as only providing visible laser aiming or simple illumination, which cannot meet the needs of various usage scenarios in complex environments. Moreover, existing devices may have issues with their structural design, such as insufficient compactness and poor shock and waterproof performance, affecting their stability and reliability in actual use. Furthermore, the accuracy and adjustability of laser aiming also need improvement. Therefore, developing a multi-functional, high-performance light-emitting device is of significant practical importance. Utility Model Content
[0003] The purpose of this invention is to provide an all-in-one light-emitting device, which aims to solve the problems of existing gun lights and sights having single functions, unreasonable structures, and insufficient performance. By integrating multiple light-emitting functions and optimizing structural design, it can meet the usage needs in complex environments and improve the practicality and reliability of gun auxiliary equipment.
[0004] To achieve the above objectives, this utility model provides the following technical solution: An all-in-one light emission device includes a main body, a light emission cover main body, a visible laser aiming module, an invisible light laser illumination module, an invisible laser aiming module, an LED illumination module, a laser wind deflection ballistic adjustment mechanism, a circuit PCB board, and a light cover assembly; The visible laser aiming module, the invisible laser illumination module, and the invisible laser aiming module are respectively installed inside the main body; The visible laser aiming module is used to emit visible lasers to provide users with intuitive aiming instructions; The invisible laser aiming module is used to emit invisible lasers, which is suitable for special aiming needs and avoids revealing the user's position; The invisible light laser illumination module is used to emit invisible light laser beams for illumination, and has both penetrating and concealed properties; The front end structure of the visible laser aiming module and the invisible laser aiming module is spherical, and is fixed in the main body with a customized pressure ring and an open neck ring to form a ball shaft structure. The invisible laser illumination module can emit invisible laser beams for illumination, which have strong penetration and concealment.
[0005] The open neck ring is fitted onto the bottom of the front ball head of the visible laser aiming module and the invisible laser aiming module, and the two are placed inside the main body. The ball head of the visible laser aiming module and the invisible laser aiming module is squeezed and fixed by rotating the customized pressure ring. At this time, the ball head of the visible laser aiming module and the invisible laser aiming module, the customized pressure ring and the open neck ring form a stable ball shaft structure, ensuring that the laser aiming module can rotate flexibly inside the main body to adjust the ballistic wind drift, and can withstand the severe vibration during firearm firing. The LED lighting module includes LED beads, an aluminum substrate for the LED beads, an LED lamp cup, and LED bead spacers. The LED beads are soldered onto the aluminum substrate for the LED beads, the LED bead spacers are fitted onto the aluminum substrate for the LED beads on the outer ring, the aluminum substrate for the LED beads is attached to the main body, and the LED lamp cup is installed inside the main body. The LED lighting module is used to provide visible lighting light. The circuit PCB board is installed inside the main body by fixing screws. It integrates power management circuit, laser drive circuit, LED drive circuit and signal processing circuit. It connects the electrical lines of each module to the circuit PCB board so that the electrical control system of the whole device can operate normally. The light cover assembly includes a light-emitting cover body, an LED window, a visible light laser aiming window, an invisible light illumination window, and an invisible aiming window; the LED window, visible light laser aiming window, invisible light illumination window, and invisible light aiming window are glued to corresponding positions inside the light-emitting cover body, and the assembled light-emitting cover body is connected to the main body by fixing long screws; The laser ballistic wind deflection adjustment mechanism includes an adjustment screw, an open shim, a sealing O-ring, a slider, a strip-shaped groove block, a compression spring, a spring guide post, and a spring fixing block, which are used to adjust the laser aiming beam up, down, left, and right. Place a sealing O-ring on the adjusting screw and insert it into the designated hole in the main body. Install the slider from inside the main body, rotate the adjusting screw to engage with the threaded hole of the slider, and align the protruding structure of the slider with the tail plane of the visible laser aiming module. Then, insert an open washer into the notch of the adjusting screw to prevent it from falling off the main body. Install four adjusting screws in the same way. Install the compression spring and spring guide post in the designated hole of the spring fixing block, and then install all three into the main body. Simultaneously, align the bottom plane of the spring guide post with the 45° bevel of the tail of both the visible and invisible laser aiming modules. The compression spring is in a compressed state, and the spring guide post restricts the direction of spring compression and release. The user can rotate the adjusting screw to move the slider within the strip-shaped slot. The slider moves the tail of the laser emitting module, thereby changing the light emission angle of the laser emitting module. The compression spring remains in contact with the tail of the module throughout the process, ensuring the accuracy and stability of the adjustment. The adjusting screw is fitted with a sealing O-ring, and the excellent sealing design ensures the reliability of the mechanism in harsh environments. The strip-shaped slot block is installed into the main body and fixed to the spring fixing block by fixing screws, while the slider is confined within its internal slot structure; thus completing the installation of the ballistic wind deflection mechanism of the visible laser aiming module and the invisible laser aiming module.
[0006] In a preferred embodiment of the all-in-one light-emitting device, the main body of the light-emitting cover is made of high-strength, impact-resistant material, and a sealing ring is provided at the connection with the main body. This ensures good sealing performance of the device. The surface and placement angle of the window are carefully designed to filter and eliminate refraction of the light emitted by each module, thereby improving light utilization and light emission effect.
[0007] The preferred embodiment of the all-in-one light-emitting device is that the main body is made of metal, which supports the various components and serves to dissipate heat. Metal has good thermal conductivity, which can quickly dissipate the heat generated by each module during operation, ensuring that each module works stably in a suitable temperature environment and extending the service life of the device.
[0008] The preferred embodiment of the multi-in-one light-emitting device is that the surface of each window of the lamp cover assembly and its placement angle are capable of filtering and eliminating refraction of the light emitted by each module, thereby improving light utilization and light emission effect.
[0009] The beneficial effects of this utility model are: This utility model's all-in-one light-emitting device integrates four different types of light emission: visible laser, invisible laser, visible LED light, and invisible laser beam expansion. It meets diverse light emission needs under different environments and missions. For example, visible laser aiming and LED lighting can be used during the day, while invisible laser aiming and invisible laser lighting can be switched at night or in special missions, greatly improving the applicability and flexibility of the equipment.
[0010] The laser aiming beam emitted by this utility model's multi-functional light-emitting device can be flexibly adjusted up, down, left, and right. Through a precise laser wind deflection and ballistic adjustment mechanism, users can quickly and accurately adjust the laser aiming angle according to the actual situation, improving shooting accuracy and hit rate. It can easily handle both close-range rapid shooting and long-range precision strikes.
[0011] The multi-functional light-emitting device of this utility model has an ingenious and compact overall structure design and a scientific and reasonable layout. The modules coordinate with each other, which not only saves space and reduces the size and weight of the device, making it easy to install and carry, but also improves the stability and reliability of the device while ensuring the integrity of its functions, and reduces failures and errors caused by loose structure.
[0012] This utility model's all-in-one light-emitting device boasts excellent vibration and waterproof performance. Utilizing high-strength shell materials and a sealed design, it effectively resists vibrations and impacts during use, as well as preventing the intrusion of external factors such as moisture and dust. This ensures the device can function normally even in harsh environments, extending its service life. It provides reliable technical support for tactical gun lights and sights in complex and ever-changing practical application scenarios, demonstrating broad market prospects and application value. Attached Figure Description
[0013] Figure 1 Exploded view of an all-in-one light-emitting device; Figure 2 A front view of an all-in-one light-emitting device; Figure 3 for Figure 2 Sectional view AA; Figure 4 Left view of an all-in-one light-emitting device; Figure 5 for Figure 4 Sectional view BB; Figure 6 A top view of an all-in-one light-emitting device; Figure 7 for Figure 6 Sectional view CC; Figure 8 This is a bottom view of an all-in-one light-emitting device; Figure 9 for Figure 7 Sectional view DD.
[0014] The components are: 1-Main body, 2-Light emitter body, 3-Visible light laser aiming module, 4-Invisible light laser illumination module, 5-Invisible light laser aiming module, 6-Fixing long screw, 7-LED window, 8-Visible light laser aiming window, 9-Invisible light illumination window, 10-Invisible light aiming window, 11-LED lamp cup, 12-Custom pressure ring, 13-Open neck ring, 14-LED lamp bead, 15-LED lamp bead gasket, 16-LED bead aluminum substrate, 17-Slider, 18-Open gasket, 19-Sealing O-ring, 20-Adjusting screw, 21-Spring fixing block, 22-Compression spring, 23-Spring guide post, 24-Strip groove block, 25-Fixing screw, 26-Circuit PCB board, 27-Sealing rubber ring. Detailed Implementation
[0015] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.
[0016] like Figure 1-9 As shown, an all-in-one light-emitting device includes a main body 1, a light-emitting cover main body 2, a visible laser aiming module 3, an invisible laser illumination module 4, an invisible laser aiming module 5, an LED illumination module, a laser wind deflection ballistic adjustment mechanism, a circuit PCB board 26, and a light cover assembly. The visible laser aiming module 3, the invisible laser illumination module 4, and the invisible laser aiming module 5 are respectively installed inside the main body 1; The visible laser aiming module 3 is used to emit visible lasers to provide users with intuitive aiming instructions; The invisible laser aiming module 5 is used to emit invisible lasers, which is suitable for special aiming needs and avoids exposing the user's position. The invisible light laser illumination module 4 is used to emit invisible light laser beams for illumination, and has penetrating and concealed properties; The front end structures of the visible laser aiming module 3 and the invisible laser aiming module 5 are spherical, and are fixed inside the main body with a custom-made pressure ring 12 and an open neck ring 13, forming a spherical shaft structure. The open neck ring 13 is fitted onto the bottom of the front ball head of the visible laser aiming module 3 and the invisible laser aiming module 5, placing both inside the main body 1. The ball head of the visible laser aiming module 3 and the invisible laser aiming module 5 is pressed and fixed by rotating the custom pressure ring 12. At this time, the ball head of the visible laser aiming module 3 and the invisible laser aiming module 5, the custom pressure ring 12 and the open neck ring 13 form a stable ball shaft structure, ensuring that the laser aiming module can rotate flexibly inside the main body to adjust the ballistic wind drift, and can withstand the severe vibration during firearm firing.
[0017] The LED lighting module includes LED beads 14, an aluminum substrate 16 for the LED beads, an LED lamp cup 11, and an LED bead spacer 15. The LED beads 14 are soldered onto the aluminum substrate 16 for the LED beads, and the LED bead spacer 15 is fitted onto the aluminum substrate 16 for the LED beads 14. The aluminum substrate 16 for the LED beads is attached to the main body 1, and the LED lamp cup 11 is installed inside the main body 1. The LED lighting module is used to provide visible lighting light. The circuit PCB board 26 is installed in the main body 1 by fixing screws 25. It integrates power management circuit, laser drive circuit, LED drive circuit and signal processing circuit. It connects the electrical lines of each module to the circuit PCB board 26 so that the electrical control system of the whole device can operate normally. The light cover assembly includes a light-emitting cover body 2, an LED window 7, a visible light laser aiming window 8, an invisible light illumination window 9, and an invisible aiming window 10; the LED window 7, the visible light laser aiming window 8, the invisible light illumination window 9, and the invisible light aiming window 10 are glued to corresponding positions inside the light-emitting cover body 2, and the assembled light-emitting cover body 2 is connected to the body 1 by fixing long screws 6; The laser ballistic wind deflection adjustment mechanism includes an adjustment screw 20, an open shim 18, a sealing O-ring 19, a slider 17, a strip-shaped groove block 24, a compression spring 22, a spring guide post 23, and a spring fixing block 21, which are used to adjust the laser aiming beam up, down, left, and right. Place a sealing O-ring 19 on the adjusting screw 20, insert the adjusting screw 20 into the dedicated hole provided in the main body 1, install the slider 17 from inside the main body 1, rotate the adjusting screw 20 to engage with the threaded hole of the slider 17, and the protruding structure of the slider 17 fits against the tail plane of the visible laser aiming module 3. Then, insert an open washer 18 into the notch of the adjusting screw 20 to prevent the adjusting screw 20 from falling off the main body 1. Install four adjusting screws 20 in the same way. Install the compression spring 22 and the spring guide post 23 in the dedicated hole of the spring fixing block 21, and then install all three into the main body 1. At the same time, fit the bottom plane of the spring guide post 23 against the 45° slope of the tail of the visible laser aiming module 3 and the invisible laser aiming module 5. The compression spring 22 is in a compressed state, and the spring guide post 23 plays the role of limiting the direction of spring compression and release. The strip-shaped slot block 24 is installed into the main body 1. The strip-shaped slot block 24 is fixed to the spring fixing block 21 by fixing screws 25, while the slider 17 is confined within its internal slot structure; thus completing the installation of the ballistic wind deflection mechanism of the visible laser aiming module 3 and the invisible laser aiming module 5.
[0018] The light-emitting cover body 2 is made of high-strength, impact-resistant material, and a sealing ring 27 is provided at the connection with the body 1.
[0019] The surface of each window of the lampshade assembly and its placement angle can filter and eliminate refraction of the light emitted by each module, thereby improving light utilization and light output effect.
[0020] When the adjusting screw 20 is rotated, its thread drives the slider 17 to move horizontally or vertically within the groove structure of the main body 1 or the groove structure of the strip block 24. At the same time, the protruding structure of the slider 17 drives the tail of the visible laser aiming module 3 and the invisible laser aiming module 5 to move, thereby changing the emission angle of the laser emitting module. During this process, the compression spring 22 applies force on the 45° inclined surface at the tail of the laser emitting module through the spring guide post 23. This inclined surface is located on the 45° inclined surface of the slider 17, ensuring the accuracy and stability of adjusting the laser emitting module. The adjusting screw 20 is fitted with a sealing O-ring 19, which effectively prevents the intrusion of external factors such as moisture and dust during use, ensuring that the device can still work normally in harsh environments.
[0021] In practical use, users can flexibly select different light emission modes according to environmental conditions and combat mission requirements. For example, in well-lit outdoor environments during the day, if close-range rapid firing is required, the visible laser aiming module 3 and LED illumination module can be activated. The clear indication of the visible laser allows for quick aiming at the target, while the LED illumination module illuminates the surrounding environment for easier observation. When engaging in nighttime combat or requiring concealed operations, the visible laser aiming module 3 and LED illumination module can be deactivated, while the invisible laser aiming module 5 and invisible light laser illumination module 4 can be activated. The concealment provided by the invisible laser allows for aiming, while the penetrating power of the invisible light laser illumination module 4 provides a field of vision, preventing the user from revealing their position. Regardless of the environment, the device's excellent vibration and waterproof performance ensures that users do not need to worry about malfunctions caused by vibration, moisture, or dust intrusion, allowing them to confidently engage in combat or training.
[0022] In summary, this utility model's all-in-one light-emitting device, through its unique structural design and functional integration, effectively solves many problems existing in current gun light and sight products, providing a high-performance, multi-functional light-emitting solution for military, law enforcement, and shooting sports fields, and has extremely high practical value and promotional significance.
[0023] The above description, in conjunction with specific preferred embodiments, provides a further detailed explanation of the present invention. It should not be construed that the specific implementation of the present invention is limited to these descriptions. For those skilled in the art, various simple deductions or substitutions can be made without departing from the concept of the present invention, and all such modifications and substitutions should be considered within the protection scope of the present invention.
Claims
1. A multi-functional light-emitting device, characterized in that: It includes a main body (1), a light-emitting cover main body (2), a visible laser aiming module (3), an invisible laser illumination module (4), an invisible laser aiming module (5), an LED illumination module, a laser wind deviation ballistic adjustment mechanism, a circuit PCB board (26), and a light cover assembly; The visible laser aiming module (3), the invisible laser illumination module (4), and the invisible laser aiming module (5) are respectively installed inside the main body (1); The visible laser aiming module (3) is used to emit visible lasers to provide users with intuitive aiming instructions; The invisible laser aiming module (5) is used to emit invisible lasers, which is suitable for aiming needs and avoids exposing the user's position. The invisible light laser illumination module (4) is used to emit an invisible light laser beam for illumination, and has penetrating and concealed properties; The front end structures of the visible laser aiming module (3) and the invisible laser aiming module (5) are spherical, and are fixed inside the main body with a custom pressure ring (12) and an open neck ring (13) to form a spherical shaft structure. The open neck ring (13) is fitted onto the bottom of the front ball head of the visible laser aiming module (3) and the invisible laser aiming module (5), and the two are placed inside the main body (1). The ball head of the visible laser aiming module (3) and the invisible laser aiming module (5) is squeezed and fixed by rotating the custom pressure ring (12). At this time, the ball head of the visible laser aiming module (3) and the invisible laser aiming module (5), the custom pressure ring (12) and the open neck ring (13) form a stable ball shaft structure, ensuring that the laser aiming module can rotate inside the main body to adjust the ballistic wind drift, and can withstand the violent vibration during gun firing. The LED lighting module includes LED beads (14), LED bead aluminum substrate (16), LED lamp cup (11), and LED bead spacer (15); the LED beads (14) are soldered onto the LED bead aluminum substrate (16), the LED bead spacer (15) is fitted onto the LED bead aluminum substrate (16) around the outer ring of the LED beads (14), the LED bead aluminum substrate (16) is attached to the main body (1), and the LED lamp cup (11) is installed inside the main body (1); the LED lighting module is used to provide visible lighting light; The circuit PCB board (26) is installed in the main body (1) by fixing screws (25), and integrates power management circuit, laser drive circuit, LED drive circuit and signal processing circuit. It connects the electrical lines of each module to the circuit PCB board (26) so that the electrical control system of the whole device can operate normally. The light cover assembly includes a light-emitting cover body (2), an LED window (7), a visible light laser aiming window (8), an invisible light illumination window (9), and an invisible aiming window (10); the LED window (7), the visible light laser aiming window (8), the invisible light illumination window (9), and the invisible light aiming window (10) are glued to the corresponding positions inside the light-emitting cover body (2), and the assembled light-emitting cover body (2) is connected to the body (1) by fixing long screws (6); The laser ballistic wind deflection adjustment mechanism includes an adjustment screw (20), an open gasket (18), a sealing O-ring (19), a slider (17), a strip-shaped groove block (24), a compression spring (22), a spring guide post (23), and a spring fixing block (21), which are used to adjust the laser aiming beam up, down, left, and right. Place a sealing O-ring (19) on the adjusting screw (20), insert the adjusting screw (20) into the special hole provided in the main body (1), install the slider (17) from the inside of the main body (1), rotate the adjusting screw (20) to engage with the threaded hole of the slider (17), the protruding structure of the slider (17) fits against the tail plane of the visible laser aiming module (3), and then put an open washer (18) on the notch of the adjusting screw (20) to prevent the adjusting screw (20) from falling off the main body (1). Install four adjusting screws (20) in the same way; install the compression spring (22) and the spring guide post (23) in the special hole of the spring fixing block (21), and then install the three into the main body (1). At the same time, fit the bottom plane of the spring guide post (23) against the 45° slope of the tail of the visible laser aiming module (3) and the invisible laser aiming module (5). The compression spring (22) is in a compressed state, and the spring guide post (23) plays the role of limiting the direction of spring compression and release. The strip-shaped slot block (24) is installed into the main body (1). The strip-shaped slot block (24) is fixed to the spring fixing block (21) by fixing screws (25), while the slider (17) is restricted in its internal slot structure; thus completing the installation of the ballistic wind deflection mechanism of the visible laser aiming module (3) and the invisible laser aiming module (5).
2. The multi-in-one light output device according to claim 1, characterized in that: The light-emitting cover body (2) is made of high-strength, impact-resistant material, and a sealing ring (27) is provided at the connection with the body (1).
3. The multi-function light output device according to claim 1, characterized in that: The main body (1) is made of metal.
4. The multi-function light output device according to claim 1, characterized in that: The surface of each window of the lampshade assembly and its placement angle can filter and eliminate refraction of the light emitted by each module, thereby improving light utilization and light output effect.