A multi-functional tactical high-intensity flashlight monocular

The tactical high-intensity flashlight, with its modular design and threaded connection, allows for free combination of lighting and control components, solving the problems of limited functionality and inflexible combination in existing technologies. This improves circuit stability and brightness, simplifies installation and maintenance, and enhances portability.

CN224284520UActive Publication Date: 2026-05-26SHENZHEN NIANZHI INNOVATION RESEARCH CO LTD +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN NIANZHI INNOVATION RESEARCH CO LTD
Filing Date
2025-10-16
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing tactical high-intensity flashlights have a fixed structure, limited functionality and form, and lack the flexibility of modular combination. They are difficult to freely combine different types of flashlight heads and tails, cannot achieve simple switching of multiple functions, and have a dedicated connection method that cannot be adapted to standard gun clips, thus failing to maximize flashlight brightness.

Method used

The flashlight adopts a modular design, including a handle assembly, a lamp head assembly, and a tail control assembly. The lighting and control components can be freely combined through threaded connections. The handle assembly serves as the positive electrode conductor and communication carrier for the control components. The circuit design achieves staggered transmission of power and signals from the lamp head, ensuring circuit stability and fast function switching.

Benefits of technology

It achieves enhanced flexibility in function combination, optimized circuit transmission stability, increased lighting brightness by 25%, improved function switching response speed by 30%, convenient installation and maintenance, improved waterproof performance, enhanced portability and safety, and adaptability to diverse scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses a multifunctional tactical high-intensity flashlight single tube, belonging to the field of flashlight technology. In this multifunctional tactical high-intensity flashlight single tube, a first lighting component and a second lighting component are respectively threaded to one end of a handle component; a first control component and a second control component are respectively threaded to the other end of the handle component. The first control component and the second control component can be arbitrarily combined with the first lighting component and the second lighting component. Through a modular design of "dual lighting components + dual control components + single handle component," the free combination of the first lighting component and the second lighting component with the first control component and the second control component is realized (a total of 4 combination methods: first lighting component + first control component, first lighting component + second control component, second lighting component + first control component, and second lighting component + second control component).
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Description

Technical Field

[0001] This utility model relates to the field of flashlights, and more specifically, to a multifunctional tactical high-intensity flashlight monocular. Background Technology

[0002] In various scenarios such as outdoor lighting, tactical operations, and emergency rescue, tactical high-powered flashlights serve as crucial portable lighting tools, and their functionality and form factor directly impact the user experience. Most tactical high-powered flashlights on the market today adopt an integrated design with a fixed head, fixed tail, and single body. The switch and power level adjustment are concentrated at the tail. While this meets basic tactical needs such as continuous illumination and flashing, and allows for one-handed operation, its fixed structure limits its functionality and form factor.

[0003] Traditional flashlights connect their head and tail control circuits via a double-body connection (one layer for signal transmission, the other for the negative power supply). This double-body design limits the diameter, making it unsuitable for standard gun clips. Even flashlights with a single-body connection rely on the body simultaneously serving as both the power source and communication carrier, preventing the battery from delivering maximum power to the head and thus limiting brightness. Furthermore, modular design lacks flexibility; most replaceable components are limited to a single function (e.g., adjusting brightness by simply replacing the head), and connections often use proprietary interfaces, hindering the free combination of different head and tail types. Existing products cannot easily achieve multi-functional switching through simple combinations. Therefore, inventing a multi-functional tactical high-intensity flashlight to address these issues has become a pressing problem for those skilled in the art. Utility Model Content

[0004] To overcome the above shortcomings, this utility model provides a multi-functional tactical high-intensity flashlight monobloc, which aims to improve the lack of flexibility in the modular combination of traditional flashlights, making it difficult to freely match different types of flashlight heads and tails, and making it difficult to achieve multi-functional switching through simple combination.

[0005] This utility model is implemented as follows: a multifunctional tactical high-intensity flashlight single-blade, comprising...

[0006] A flashlight handle, the flashlight handle including a handle assembly;

[0007] A flashlight head, the flashlight head including a first lighting component and a second lighting component, the first lighting component and the second lighting component being threadedly connected to one end of the handle component respectively;

[0008] The flashlight tail section includes a first control component and a second control component. The first control component and the second control component are respectively threaded to the other end of the handle assembly. The first control component and the second control component can be arbitrarily combined with the first lighting component and the second lighting component.

[0009] In a preferred embodiment of this utility model, the handle assembly includes a connecting cylinder, the middle of which is hollow, a battery is disposed inside the connecting cylinder, an annular groove is formed on the outside of the connecting cylinder, a clamp is engaged with the outer wall of the groove, and a spring is elastically connected above the clamp.

[0010] In a preferred embodiment of this utility model, the first lighting component includes a first mounting cylinder, one end of which is provided with a first lamp head, and the other end of the first mounting cylinder is threaded onto the outside of one end of the connecting cylinder. The end of the first mounting cylinder near the first lamp head is threadedly connected to a first lamp head cylinder, and the first lamp head is located inside the first lamp head cylinder.

[0011] In a preferred embodiment of this utility model, a circuit board is provided inside the first mounting cylinder, the circuit board is electrically connected to the first lamp holder, a charging hole is provided on one side of the first mounting cylinder, a charging connector inside the charging hole is electrically connected to the circuit board, and a first sealing ring is threaded onto the external part of the first mounting cylinder at the charging interface.

[0012] In a preferred embodiment of this utility model, a sealing ring is fitted around the outer end of the first mounting cylinder near the first lamp holder cylinder, and one end of the first sealing ring is sealed to the first mounting cylinder in conjunction with the sealing ring.

[0013] In a preferred embodiment of this utility model, the second lighting component includes a second mounting cylinder, one end of which is externally threaded with a second lamp holder cylinder, and the other end of the second mounting cylinder is threaded onto the outside of one end of the connecting cylinder. A second lamp holder is disposed inside the second lamp holder cylinder, and the second lamp holder is electrically connected to a circuit board. A charging connector is electrically connected to one side of the circuit board, and a charging hole that mates with the charging connector is provided on one side of the second mounting cylinder.

[0014] In a preferred embodiment of this utility model, the outer end of the second lamp holder is hollow, and a lamp holder limiting ring is threadedly connected to the outer end of the second lamp holder. The lamp holder limiting ring abuts against the outer end of the second lamp holder. A second sealing ring is threaded onto the outer side of the second mounting cylinder, and the second sealing ring is correspondingly arranged with the charging hole.

[0015] In a preferred embodiment of this utility model, the first control component includes a first control board, a first switch electrically connected to the center of the tail of the first control board, an adjustment switch electrically connected to one side of the tail of the first control board, a first tail connecting cylinder sealed to the outside of the first control board, one end of the first tail connecting cylinder being threadedly connected to the inner wall of the other end of the connecting cylinder, and a first sealing tail ring being threaded onto the outside of the first tail connecting cylinder.

[0016] In a preferred embodiment of this utility model, the second control component includes a second control board, a second tail connecting cylinder is sleeved on the outside of the second control board, one end of the second tail connecting cylinder is threaded to the inner wall of the other end of the connecting cylinder, a second switch is electrically connected to the tail of the second control board, and a second sealing tail ring is threaded on the outside of the second tail connecting cylinder.

[0017] In a preferred embodiment of this utility model, the second sealing tail ring is sealed to the second tail connecting cylinder, and the first sealing tail ring is sealed to the first tail connecting cylinder.

[0018] The beneficial effects of this utility model are as follows: The multifunctional tactical high-intensity flashlight single tube obtained by the above design significantly improves the flexibility of function combination during use: This multifunctional tactical high-intensity flashlight single tube realizes the free combination of the first lighting component, the second lighting component and the first control component, and the second control component through the modular design of "dual lighting component + dual control component + single handle component" (a total of 4 combination methods: first lighting component + first control component, first lighting component + second control component, second lighting component + first control component, second lighting component + second control component). Circuit transmission stability and energy efficiency optimization: The connecting tube of the handle assembly serves as the positive conductive and communication carrier of the control component. In conjunction with the circuit board design inside the first lighting component, the second lighting component, the first control component, and the second control component, it achieves "staggered transmission of lamp head power and signal modulation"—the center of the battery head is the positive terminal, and the surrounding ring is the negative terminal, directly connected to the positive terminal plate and negative terminal spring on the lighting component circuit board, providing a stable power supply to the lighting component. At the same time, it provides positive power to the control component through the connecting tube. The negative power of the control component is obtained through the elastic contact between the spring on the circuit board and the tail of the battery. The modulation signal of the control component (such as the adjustment signal of the first control component and the switching signal of the second control component) is also transmitted to the lighting component through the connecting tube. This avoids the problem of "superposition interference between lamp head lighting power and signal" in traditional circuits, ensuring that the function switching response speed is improved by more than 30%, while realizing the maximum power output of the battery to the lamp head (first lamp head and second lamp head), and improving the stability of lighting brightness by 25%.

[0019] Enhanced ease of installation and maintenance: Components are connected by threads (e.g., the first mounting sleeve and connecting sleeve, the second tail connecting sleeve and connecting sleeve), allowing for disassembly and replacement without special tools. Compared to traditional integrated flashlights, battery replacement time is reduced to within 10 seconds. Furthermore, the inclusion of a first sealing ring, a second sealing ring, a first sealing tail ring, and a second sealing tail ring, along with a sealing ring structure, ensures that all connection points achieve a waterproof rating of IPX8 or higher, enabling them to withstand outdoor rain and humid environments and resolving the issue of decreased waterproof performance after component replacement in traditional flashlights.

[0020] Enhanced carrying and securing safety: The connecting tube of the handle assembly has an annular groove, a clamp, and a spring. The clamp can be fixed to equipment such as belts and backpack webbing, and the spring enhances the fixing friction through elastic compression. Compared with the traditional lanyard carrying method, the risk of the flashlight slipping is reduced by 80%. In addition, the clamp can be finely adjusted along the annular groove to adapt to the carrying habits of different users and improve the convenience of quick access in tactical scenarios. Attached Figure Description

[0021] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained from these drawings without creative effort.

[0022] Figure 1 This is a schematic diagram of one side of the structure provided by an embodiment of the present invention;

[0023] Figure 2 A schematic diagram of the handle assembly structure provided for an embodiment of this utility model;

[0024] Figure 3 A schematic diagram of the flashlight head and flashlight tail structure provided for embodiments of this utility model;

[0025] Figure 4 A schematic diagram of the structure of the first lighting component and the first control component provided for an embodiment of this utility model;

[0026] Figure 5 A schematic diagram of the structure of the second lighting component and the second control component provided for embodiments of this utility model.

[0027] In the diagram: 100 - Flashlight handle; 110 - Handle assembly; 111 - Connecting tube; 112 - Battery; 113 - Clamp; 114 - Spring; 200 - Flashlight head; 210 - First lighting assembly; 211 - First mounting tube; 212 - First lamp head; 213 - First lamp head tube; 214 - First sealing ring; 220 - Second lighting assembly; 221 - Second mounting tube; 222 - Second lamp head; 223 - Second lamp... Headgear; 224-Lamp head limiting ring; 225-Second sealing ring; 300-Flashlight tail; 310-First control component; 311-First control board; 312-First switch; 313-Adjusting switch; 314-First sealing tail ring; 315-First tail connecting cylinder; 320-Second control component; 321-Second control board; 322-Second switch; 323-Second tail connecting cylinder; 324-Second sealing tail ring. Detailed Implementation

[0028] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, 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, 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 scope of protection of this utility model.

[0029] Please see Figures 1 to 3 This utility model provides a technical solution: a multi-functional tactical high-intensity flashlight single tube, including a flashlight handle 100, the flashlight handle 100 including a handle assembly 110; a flashlight head 200, the flashlight head 200 including a first lighting assembly 210 and a second lighting assembly 220, the first lighting assembly 210 and the second lighting assembly 220 being threadedly connected to one end of the handle assembly 110 respectively;

[0030] The flashlight tail section 300 includes a first control component 310 and a second control component 320. The first control component 310 and the second control component 320 are respectively threaded to the other end of the handle assembly 110. The first control component 310 and the second control component 320 can be arbitrarily combined with the first lighting component 210 and the second lighting component 220. Through the modular design of "dual lighting components + dual control components + single handle assembly", the first lighting component 210 and the second lighting component 220 can be freely combined with the first control component 310 and the second control component 320 (a total of 4 combination methods: first lighting component 210 + first control component 310, first lighting component 210 + second control component 320, second lighting component 220 + first control component 310, and second lighting component 220 + second control component 320).

[0031] When combined, the internal fixed-format data communication is achieved through the connecting tube 111 of the handle assembly 110, ensuring that different components can be accurately identified and switched to the corresponding functions. This meets the needs of one-handed operation to switch different lighting modes in tactical scenarios. Compared with traditional single-function tactical flashlights, the functional adaptability is improved by 4 times, and the threaded connection structure can be quickly disassembled and assembled without special tools, improving component replacement efficiency by 60%. It is suitable for diverse scenarios such as outdoor emergency response and tactical training.

[0032] Please see Figures 2 to 4 The handle assembly 110 includes a connecting tube 111, which is hollow in the middle and houses a battery 112. An annular groove is formed on the outside of the connecting tube 111, and a clamp 113 is attached to the outer wall of the groove. A spring clip 114 is elastically connected above the clamp 113. The connecting tube 111 is made of conductive metal and serves both current transmission and structural support functions. It can simultaneously transmit power from the battery 112 and control signals between components, and provides stable protection for the battery 112, preventing damage from external impacts. The clamp 113 and spring clip 114 work together to secure the flashlight to a belt, tactical backpack, or other equipment. The elastic compression structure of the spring clip 114 increases the stability of the fixation by 80%, preventing the flashlight from slipping during tactical operations. The annular groove design allows for fine-tuning of the clamp 113's position to accommodate different users' carrying habits.

[0033] The first lighting component 210 includes a first mounting cylinder 211, one end of which is provided with a first lamp head 212. The other end of the first mounting cylinder 211 is threaded onto the outside of one end of the connecting cylinder 111. The end of the first mounting cylinder 211 near the first lamp head 212 is threadedly connected to a first lamp head tube 213. The first lamp head 212 is located inside the first lamp head tube 213. The first lamp head 212 adopts a high-power tactical-grade LED light source, supports two basic tactical lighting modes: constant light and flashing light, and has a luminous intensity of up to 4000 lumens, meeting the long-distance lighting needs within 500 meters. The inner wall of the first lamp head tube 213 is provided with an optical focusing structure, which improves the light focusing efficiency by 50% and avoids light scattering that leads to a decrease in lighting effect. The threaded first lamp head tube 213 can also be replaced with a floodlight lens tube as needed to achieve rapid switching between "long-range shooting" and "floodlighting" in tactical scenarios.

[0034] The first mounting cylinder 211 houses a circuit board, which is electrically connected to the first lamp head 212. A charging port is located on one side of the first mounting cylinder 211, and a charging connector inside the charging port is electrically connected to the circuit board. A first sealing ring 214 is threaded onto the external part of the first mounting cylinder 211 at the charging interface. A spring contact connected to the positive terminal of the battery 112 is located inside the first mounting cylinder 211. One end of the spring contact is soldered to the circuit board, and the other end is elastically abutted against the positive terminal of the battery 112 to ensure stable current transmission and avoid poor contact caused by vibration in traditional hard connections. The circuit board integrates a light source driving module, which can precisely control the current output of the first lamp head 212 to prevent overcurrent damage to the lamp beads. The charging connector supports fast charging protocols, improving charging efficiency by 2 times. The first sealing ring 214 can seal the gaps in the charging port to prevent rainwater and sand from entering and damaging the circuit in tactical scenarios.

[0035] A sealing ring is fitted around the end of the first mounting cylinder 211 near the first lamp head cylinder 213. One end of the first sealing ring 214 is sealed to the first mounting cylinder 211 in conjunction with the sealing ring. The sealing ring is made of oil-resistant and aging-resistant rubber material, which together with the first sealing ring 214 forms a double sealing structure, so that the waterproof rating of the first mounting cylinder 211 reaches IPX8, which can be used in outdoor rainy days and wading scenarios, and avoids water entering the lamp head and causing short circuit.

[0036] Please see Figures 2 to 5The second lighting component 220 includes a second mounting cylinder 221. One end of the second mounting cylinder 221 is externally threaded with a second lamp head cylinder 223, and the other end of the second mounting cylinder 221 is threaded onto the outside of one end of the connecting cylinder 111. A second lamp head 222 is disposed inside the second lamp head cylinder 223. The second lamp head 222 is electrically connected to a circuit board, and a charging connector is electrically connected to one side of the circuit board. A charging hole that mates with the charging connector is opened on one side of the second mounting cylinder 221. A spring contact that connects to the positive terminal of the battery 112 is disposed inside the second mounting cylinder 221. The spring contact is made of a high-elasticity copper alloy material, which has excellent conductivity and is not easily deformed by repeated compression, ensuring long-term stable contact with the positive terminal of the battery 112 and reducing current transmission loss to below 5%. The second lamp head 222 can be designed as a special tactical light source, such as an infrared auxiliary light source or a strobe warning light source, suitable for nighttime tactical concealed lighting, emergency rescue, and other scenarios. The threaded connection structure of the second lamp head cylinder 223 also supports lens replacement, improving the versatility of the component.

[0037] The outer end of the second lamp head tube 223 is hollow, and a lamp head limiting ring 224 is threadedly connected to the outer end of the second lamp head 222. The lamp head limiting ring 224 abuts against the outer end of the second lamp head 222. A second sealing ring 225 is threaded onto the outer side of the second mounting tube 221, and the second sealing ring 225 is correspondingly set with the charging port. The lamp head limiting ring 224 can fix the position of the second lamp head 222 inside the second lamp head tube 223 to prevent the lamp head from shifting due to vibration during tactical operations and ensure stable illumination angle. The second sealing ring 225 adopts the same sealing structure as the first sealing ring 214 to ensure the waterproof and dustproof performance of the charging port of the second mounting tube 221. At the same time, the outer surface of the second sealing ring 225 is provided with anti-slip texture, which makes it easy for users to quickly disassemble and assemble when wearing tactical gloves, improving the convenience of operation.

[0038] The first control assembly 310 includes a first control board 311. A first switch 312 is electrically connected to the center of the tail of the first control board 311, and an adjustment switch 313 is electrically connected to one side of the tail of the first control board 311. A first tail connecting cylinder 315 is externally sealed to the first control board 311. One end of the first tail connecting cylinder 315 is threaded to the inner wall of the other end of the connecting cylinder 111. A first sealing tail ring 314 is threaded onto the outer side of the first tail connecting cylinder 315. A corresponding spring is provided at the end of the first control board 311 near the negative terminal of the battery 112, and one end of the spring is welded to the first control board 311. The other end is elastically connected to the negative terminal of the battery 112 to achieve stable current transmission. At the same time, the elastic structure of the spring can be adapted to batteries 112 of different lengths, improving component compatibility. The first control board 311 integrates the first MCU unit, which can process the signal of the adjustment switch 313 to realize the brightness adjustment and mode switching of the first lamp head 212 and the second lamp head 222. The response time is less than 0.02 seconds, which meets the needs of rapid operation in tactical scenarios. The sealing structure of the first tail connecting tube 315 can protect the first control board 311 from damage by the external environment, and the first sealing tail ring 314 further improves the waterproof performance of the tail.

[0039] The second control assembly 320 includes a second control board 321. A second tail connecting cylinder 323 is sleeved on the outside of the second control board 321. One end of the second tail connecting cylinder 323 is threaded to the inner wall of the other end of the connecting cylinder 111. A second switch 322 is electrically connected to the tail of the second control board 321. A second sealing tail ring 324 is threaded on the outside of the second tail connecting cylinder 323. A corresponding spring is provided at the end of the second control board 321 near the negative terminal of the battery 112. The spring is treated with nickel plating to improve rust resistance and ensure proper connection with the battery. The 112 negative electrode maintains stable contact over a long period, preventing poor contact due to environmental corrosion in tactical scenarios. The second control board 321 integrates diode D3, capacitor C30, and MOSFET Q3. Diode D3 prevents reverse current flow and protects the circuit. Capacitor C30 stores backup power when the flashlight is turned off, ensuring stable transmission of control signals even after a brief interruption. MOSFET Q3 modulates the signal to avoid interference from the superposition of current supplied by battery 112. The second switch 322 uses a tactical-grade button with a lifespan of 100,000 presses, suitable for high-frequency tactical operations.

[0040] The second sealing tail ring 324 is sealed to the second tail connecting cylinder 323, and the first sealing tail ring 314 is sealed to the first tail connecting cylinder 315. Both the first sealing tail ring 314 and the second sealing tail ring 324 adopt a rubber and metal interlocking structure, which combines sealing performance and structural strength. The sealing performance is 70% higher than that of a pure rubber tail ring, which can cope with harsh environments such as mud and water immersion and sand and dust impact in tactical scenarios. At the same time, the thread fit accuracy between the tail ring and the tail connecting cylinder reaches the 6H level, which improves the tightness of the connection and prevents loosening after long-term use, thus preventing sealing failure and ensuring the long-term stable operation of the internal circuit of the control component.

[0041] Meanwhile, the lamp head is embedded with high-transmittance optical glass, which is treated with anti-glare to reduce light scattering and interference with the user's vision, making it suitable for tactical concealed lighting scenarios. All other technologies not mentioned are existing technologies.

[0042] Working principle: Overall assembly and circuit connection logic: First, the battery 112 is installed inside the connecting cylinder 111 (the connecting cylinder 111 is a hollow conductive structure, serving as the transmission carrier for the positive electrode of the battery 112). Then, the lighting component and control component are selected according to the requirements: If the combination of "first lighting component 210 + first control component 310" is selected, one end of the first mounting cylinder 211 is threaded onto the outside of one end of the connecting cylinder 111, so that the circuit board inside the first mounting cylinder 211 is electrically connected to the connecting cylinder 111 (to obtain power from the battery 112); at the same time, one end of the first tail connecting cylinder 315 is threaded onto the inner wall of the other end of the connecting cylinder 111, so that the first control board 311 is electrically connected to the connecting cylinder 111, thus completing the circuit path construction.

[0043] The lighting function is implemented as follows: The battery 112 transmits positive power directly to the circuit board of the first lighting component 210 through the connecting tube 111. The circuit board converts electrical energy into current adapted to the first lamp head 212. After the first lamp head 212 is powered on, it emits light (the light is focused or diffused through the first lamp head tube 213, which is threadedly connected to the first mounting tube 211. The first lamp head tube 213 with different focal lengths can be replaced as needed). If the second lighting component 220 is selected, the working logic is the same as that of the first lighting component 210. The second lamp head 222 obtains power from the battery 112 through the circuit board inside the second mounting tube 221. The lamp head limiting ring 224 can fix the position of the second lamp head 222 to prevent the second lamp head 222 from shifting due to vibration.

[0044] Control Function and Signal Transmission Process: When adjusting the lighting state, if the first control component 310 is used, pressing the first switch 312 enables the "power on / off" function (the first switch 312 sends a switch signal to the first control board 311), and toggling the adjustment switch 313 sends a "brightness adjustment, mode switching (such as floodlight / strobe)" signal. The first control board 311 modulates these signals into a fixed-format electrical signal, which is transmitted to the circuit board of the first lighting component 210 through the connecting tube 111 (the connecting tube 111 staggers the transmission of the "positive power supply of battery 112" and the "control modulation signal" to avoid signal interference). After demodulating the signal, the circuit board of the first lighting component 210 adjusts the current parameters output to the first lamp head 212 to achieve the corresponding function switching. If the second control component 320 is used, pressing the second switch 322 sends a "power on / off" signal, which is transmitted to the circuit board of the corresponding lighting component through the connecting tube 111 to complete the function control.

[0045] Charging and maintenance logic: When battery 112 is low on power, unscrew the first sealing ring 214 (the first sealing ring 214 is threadedly connected to the first mounting cylinder 211, exposing the charging port after disassembly), insert the charging connector into the charging port, and the charging connector forms a path with battery 112 through the circuit board to charge battery 112; after charging is complete, screw back on the first sealing ring 214, and the sealing ring between the first sealing ring 214 and the first mounting cylinder 211 is compressed and deformed, sealing the gap in the charging port and ensuring waterproof performance. The charging logic of the second lighting component 220 is the same as that of the first lighting component 210; charging can be completed by removing the second sealing ring 225 to expose the charging port.

[0046] Carrying and fixing working logic: Insert the clamp 113 into the annular groove of the connecting tube 111 (the inner wall of the clamp 113 fits tightly against the outer wall of the groove), and then fasten the clamp 113 to the outside of the belt or backpack webbing. The spring piece 114 generates an elastic reaction force due to the compression of the webbing, which increases the friction between the clamp 113 and the webbing and prevents the flashlight from slipping during movement. If the carrying position needs to be adjusted, the clamp 113 can be pushed along the annular groove for fine adjustment without disassembly and reinstallation.

[0047] It should be noted that the specific model and specifications in this solution need to be selected and determined based on the actual specifications of the device. The specific selection and calculation method adopts the existing technology in this field, so it will not be described in detail here.

[0048] The power supply and its principle in this solution are clear to those skilled in the art, and will not be described in detail here.

[0049] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A multi-functional tactical high light flashlight monocular, characterized in that, include A flashlight handle, the flashlight handle including a handle assembly; A flashlight head, the flashlight head including a first lighting component and a second lighting component, the first lighting component and the second lighting component being threadedly connected to one end of the handle component respectively; The flashlight tail section includes a first control component and a second control component. The first control component and the second control component are respectively threaded to the other end of the handle assembly. The first control component and the second control component can be arbitrarily combined with the first lighting component and the second lighting component.

2. A multi-functional tactical high light flashlight monocular according to claim 1, wherein: The handle assembly includes a connecting cylinder, the middle of which is hollow, and a battery is disposed inside the connecting cylinder. An annular groove is formed on the outside of the connecting cylinder, and a clamp is snapped into the outer wall of the groove. A spring is elastically connected above the clamp.

3. A multi-functional tactical high light flashlight monocular according to claim 2, wherein: The first lighting assembly includes a first mounting cylinder, one end of which is provided with a first lamp head, and the other end of the first mounting cylinder is threaded onto the outside of one end of the connecting cylinder. The end of the first mounting cylinder near the first lamp head is threadedly connected to a first lamp head cylinder, and the first lamp head is located inside the first lamp head cylinder.

4. A multi-functional tactical high light torch monocular according to claim 3, characterized in that: The first mounting cylinder has a circuit board inside, which is electrically connected to the first lamp holder. A charging hole is provided on one side of the first mounting cylinder, and a charging connector inside the charging hole is electrically connected to the circuit board. A first sealing ring is threaded onto the outside of the charging interface of the first mounting cylinder.

5. A multi-functional tactical high-intensity flashlight monocular as described in claim 4, characterized in that: A sealing ring is fitted around the outer end of the first mounting cylinder near the first lamp holder cylinder, and one end of the first sealing ring is sealed to the first mounting cylinder in conjunction with the sealing ring.

6. A multifunctional tactical high-intensity flashlight monocular as described in claim 5, characterized in that: The second lighting assembly includes a second mounting cylinder, one end of which is externally threaded with a second lamp holder cylinder, and the other end of which is threaded onto the outside of one end of the connecting cylinder. A second lamp holder is provided inside the second lamp holder cylinder, and the second lamp holder is electrically connected to a circuit board. A charging connector is electrically connected to one side of the circuit board, and a charging hole that mates with the charging connector is provided on one side of the second mounting cylinder.

7. A multi-functional tactical high-intensity flashlight monocular as described in claim 6, characterized in that: The outer end of the second lamp head tube is hollow, and a lamp head limiting ring is threadedly connected to the outer end of the second lamp head. The lamp head limiting ring abuts against the outer end of the second lamp head. A second sealing ring is threaded onto the outer side of the second mounting tube, and the second sealing ring is correspondingly arranged with the charging hole.

8. A multifunctional tactical high-intensity flashlight monocular as described in claim 7, characterized in that: The first control component includes a first control board, a first switch electrically connected to the center of the tail of the first control board, an adjustment switch electrically connected to one side of the tail of the first control board, a first tail connecting cylinder sealed to the outside of the first control board, one end of the first tail connecting cylinder threaded to the inner wall of the other end of the connecting cylinder, and a first sealing tail ring threaded to the outside of the first tail connecting cylinder.

9. A multifunctional tactical high-intensity flashlight monocular as described in claim 8, characterized in that: The second control component includes a second control board, a second tail connecting cylinder is sleeved on the outside of the second control board, one end of the second tail connecting cylinder is threaded to the inner wall of the other end of the connecting cylinder, a second switch is electrically connected to the tail of the second control board, and a second sealing tail ring is threaded on the outside of the second tail connecting cylinder.

10. A multifunctional tactical high-intensity flashlight monocular as described in claim 9, characterized in that: The second sealing tail ring is sealed to the second tail connecting cylinder, and the first sealing tail ring is sealed to the first tail connecting cylinder.