Electric control rotary xenon lighting search and rescue lamp with self-recognition alarm function

By integrating infrared recognition and electronic control structures in the sea outdoor search and rescue lights, we can actively identify search personnel and flexibly adjust lighting, solving the problem of single functions in the existing technology, and improving search and rescue efficiency and functional applicability.

CN223121380UActive Publication Date: 2025-07-18WEIHAI QIANLINTE HOVERCRAFT CO LTD
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Patent Information

Application Number
CN202422068903.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-07-18
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

The existing marine outdoor search and rescue lights cannot actively identify search personnel and alert, and it is difficult to flexibly adjust the lighting direction and concentration. The functionality is relatively single, which limits its use effect in complex and special scenarios.

Method used

An electronically controlled rotary xenon lighting search and rescue lamp with self-identification alarm function was designed, integrating infrared recognition structure, electronic control structure and acoustic and optical alarm. Through the electronic control module and index motor structure, it can actively identify and flexibly adjust the lighting direction and concentration.

Benefits of technology

It realizes the active identification of search personnel and issue identification alarms, which can effectively cover a wider area in complex scenarios, significantly improving search and rescue efficiency and functional adaptability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electric control rotary xenon lighting search and rescue lamp with a self-recognition alarm function. The electric control rotary xenon lighting search and rescue lamp comprises a holding handle structure; the light source driving structure is arranged on the holding handle structure in a locatable adapter assembly manner; the xenon lamp tube structure is correspondingly assembled on the light source driving structure; the infrared recognition structure is fixedly connected and assembled to the light source driving structure, and the recognition direction of the infrared recognition structure corresponds to the light source output direction of the xenon lamp tube structure; the electric control structure comprises an electric control module and an audible and visual alarm; the control input end of the electric control module is connected with the infrared recognition structure through a circuit, and the control output end of the electric control module is connected with the audible and visual alarm through a circuit. The technical problems that in the prior art, an offshore outdoor search and rescue lamp cannot actively recognize search personnel and give an alarm, meanwhile, the illumination direction and the condensation degree are difficult to flexibly adjust, and the overall functionality is single are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of marine search and rescue equipment, and more specifically, to an electric-controlled rotary xenon lighting search and rescue lamp with a self-identification warning function. Background Art

[0002] At present, a xenon lighting lamp is a spherical high-pressure xenon light source lamp, which generates light between two electrodes by exciting the ionization of xenon electrons in a quartz tube through a high-voltage amplitude. Compared with traditional halogen bulbs, the xenon lighting lamp has three times the brightness of traditional halogen bulbs and a longer service life, so it is commonly used in marine outdoor search and rescue lights.

[0003] However, traditional marine outdoor search and rescue lights usually only have a lighting function. They cannot actively identify search personnel and give warnings, and it is difficult to flexibly adjust the lighting direction and light concentration to cover a wider area of lighting requirements. Their functionality is relatively single, which limits their use effects in complex and special scenarios. Summary of the Utility Model

[0004] Therefore, the utility model provides an electric-controlled rotary xenon lighting search and rescue lamp with a self-identification warning function to solve the technical problems that existing marine outdoor search and rescue lights cannot actively identify search personnel and give warnings, are difficult to flexibly adjust the lighting direction and light concentration, and have relatively single functionality.

[0005] To achieve the above object, the utility model provides the following technical solutions:

[0006] An electric-controlled rotary xenon lighting search and rescue lamp with a self-identification warning function, comprising:

[0007] A holding handle structure;

[0008] A light source driving structure, which is disposed on the holding handle structure in a positionable and transferable manner;

[0009] A xenon lamp tube structure, which is correspondingly assembled on the light source driving structure;

[0010] An infrared identification structure, which is fixedly assembled on the light source driving structure, and the identification direction of the infrared identification structure is correspondingly set with the light source output direction of the xenon lamp tube structure;

[0011] An electric control structure, including an electric control module and an acoustic-optic alarm;

[0012] The control input end of the electric control module is connected to the infrared identification structure through a circuit, and the control output end of the electric control module is connected to the acoustic-optic alarm through a circuit.

[0013] Based on the above technical solutions, the following further description is made for the utility model:

[0014] As a further solution of the present utility model, the light source driving structure includes an electric control seat body part and a condenser cover part which are integrally and fixedly connected;

[0015] A positionable transfer and assembly connection is provided between the bottom side part of the electric control seat body part and the holding handle structure, and the xenon lamp tube structure is correspondingly assembled on the inner side part of the condenser cover part.

[0016] As a further solution of the present utility model, several groups of infrared recognition structures are provided. Several groups of the infrared recognition structures are fixedly assembled at equal intervals on the outer edge part of one end of the condenser cover part away from the electric control seat body part, and the recognition directions of several groups of the infrared recognition structures are correspondingly set relative to the light source output direction of the xenon lamp tube structure.

[0017] As a further solution of the present utility model, the electric control structure is fixedly assembled inside the electric control seat body part;

[0018] The electric control module includes a mobile power source and a control module connected by a circuit; a circuit connection is provided between the control output end of the control module and the input end of the relay, and circuit connections are respectively provided between the output end of the relay and the xenon lamp tube structure and the sound and light alarm.

[0019] As a further solution of the present utility model, it further includes:

[0020] A rotary motor structure, the base part is fixedly assembled on the holding handle structure, and a transmission and fixed connection is provided between the rotary kinetic energy output end part of the rotary motor structure and the electric control seat body part.

[0021] As a further solution of the present utility model, the electric control structure further includes a pitching control switch;

[0022] A circuit connection is provided between the pitching control switch and the control input end of the control module, and a circuit connection is provided between the control output end of the control module and the rotary motor structure.

[0023] As a further solution of the present utility model, a relative movable positioning is provided between the xenon lamp tube structure and the condenser cover part;

[0024] The xenon lamp search and rescue light further includes:

[0025] A first motor push rod structure, the base part is fixedly assembled inside the electric control seat body part, and a transmission and fixed connection is provided between the linear kinetic energy output end part of the first motor push rod structure and the xenon lamp tube structure. The first motor push rod structure is connected to the output end of the relay by a circuit.

[0026] As a further solution of the utility model, the xenon lamp tube structure and the focusing cover part are fixedly arranged;

[0027] The xenon lighting search and rescue lamp also includes an extended lampshade structure;

[0028] The extended lampshade structure comprises an extended lampshade body and a second motor push rod structure;

[0029] The extended lampshade body is configured as a circular sleeve-shaped structure;

[0030] The inner wall of the circular sleeve-shaped extended lampshade body is coated with a reflective layer, and the circular sleeve-shaped extended lampshade body is arranged at the outer side of the condenser cover portion with a predetermined gap;

[0031] The second motor push rod structure is provided with at least two groups, and the linear kinetic energy output ends of at least two groups of the second motor push rod structures are respectively transmission-fixedly connected to the extended lampshade body, and at least two groups of the second motor push rod structures are connected to the output end of the relay through a circuit.

[0032] As a further solution of the present invention, the base parts of at least two groups of the second motor push rod structures are respectively and spacedly fixedly installed on the outer side of the focusing cover part, and at least two groups of the second motor push rod structures are correspondingly located on the inner side of the extended lampshade body.

[0033] As a further solution of the present utility model, a transfer groove is provided at a transfer position between the electric control seat body and the holding handle structure.

[0034] The utility model has the following beneficial effects:

[0035] The device can integrate active identification, search and alarm functions as well as flexible and adjustable lighting direction and concentration. This allows the marine xenon lighting search and rescue light to not only provide the established high-intensity light source lighting function, but also assist the naked eye in further actively identifying and detecting the human body, and can simultaneously issue an identification alarm, effectively improving the search and rescue efficiency. At the same time, it can assist in active identification and detection functions, and adjust the lighting direction and concentration through electronic control, so that light can be effectively transmitted to the blind spots of people's vision in complex and special scenes, ensuring that the light can cover a wider area, significantly improving the overall functional adaptability and practicality of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. The structures, proportions, sizes, etc. depicted in this specification are only used to cooperate with the content disclosed in the specification for those familiar with this technology to understand and read. Any modification of the structure, change in the proportional relationship, or adjustment of the size, without affecting the efficacy that the present utility model can generate and the purpose that can be achieved, should still fall within the scope covered by the technical content disclosed by the present utility model.

[0037] Figure 1 FIG. 0 is an overall axonometric structure diagram of an electric-controlled rotary xenon lamp for search and rescue with a self-identification warning function provided in Embodiment 1 of the present utility model.

[0038] Figure 2 FIG. 1 is a side view internal assembly structure diagram of an electric-controlled rotary xenon lamp for search and rescue with a self-identification warning function provided in Embodiment 1 of the present utility model.

[0039] Figure 3 FIG. 2 is one of the side view internal assembly structure diagrams of an electric-controlled rotary xenon lamp for search and rescue with a self-identification warning function provided in Embodiment 2 of the present utility model.

[0040] Figure 4 FIG. 3 is the second of the side view internal assembly structure diagrams of an electric-controlled rotary xenon lamp for search and rescue with a self-identification warning function provided in Embodiment 2 of the present utility model.

[0041] In the drawings, the list of components represented by each reference numeral is as follows:

[0042] Grip handle structure 1;

[0043] Light source drive structure 2: Electric control seat part 21, condenser hood part 22, indexing groove 23;

[0044] Xenon lamp tube structure 3; Infrared identification structure 4;

[0045] Electric control structure 5: Electric control module 51, acoustic-optic alarm 52, pitch control switch 53;

[0046] Indexing motor structure 6; First motor push rod structure 7;

[0047] Extension lampshade structure 8: Extension lampshade main body 81, second motor push rod structure 82. Detailed implementation manners

[0048] The following specific embodiments illustrate the implementation manners of the present utility model. Persons familiar with this technology can easily understand other advantages and effects of the present utility model from the content disclosed in this specification. Obviously, the described embodiments are part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts fall within the protection scope of the present utility model.

[0049] Terms such as "upper", "lower", "left", "right", "middle", etc. cited in this specification are only for the convenience of clear description and are not used to limit the scope of implementation of the present utility model. The change or adjustment of their relative relationship shall also be regarded as the scope of implementation of the present utility model without substantial change in technical content.

[0050] Embodiment 1

[0051] As Figures 1 to 2 shown, the embodiment of the present utility model provides an electric-controlled rotary xenon lighting search and rescue lamp with a self-identification warning function, including a holding handle structure 1, a light source driving structure 2, a xenon lamp tube structure 3, an infrared identification structure 4, an electric control structure 5, a rotation motor structure 6 and a first motor push rod structure 7, so as to integrate the active identification, search and warning functions and the functions of flexible adjustment of lighting direction and light concentration, so that on the basis of providing the established high-intensity light source lighting function, the marine xenon lighting search and rescue lamp can also assist the naked eye to further actively identify and detect the human body, and can simultaneously issue an identification warning, effectively improving the search and rescue efficiency. At the same time, it can assist the active identification and detection function, and adjust the lighting direction and light concentration through electric control, so that the light can effectively reach the blind area of the vision of people in complex and special scenes, ensuring that the light can cover a wider area and significantly improving the functional practicability of the overall device. The specific settings are as follows:

[0052] Please refer to Figure 1 and Figure 2 The holding handle structure 1 is used as the holding basis for the overall structure; the light source driving structure 2 includes an electric control seat part 21 and a condenser cover part 22 which are integrally and fixedly connected; wherein, the bottom side part of the electric control seat part 21 is connected with the holding handle structure 1 in a positionable transfer and assembly manner, and the xenon lamp tube structure 3 is correspondingly assembled inside the condenser cover part 22, so as to effectively ensure the established high-intensity xenon light source lighting function through the above settings.

[0053] A number of groups of the infrared recognition structures 4 are provided. The infrared recognition structures 4 in the number of groups are respectively fixedly assembled at the outer edge of one end of the condenser cover part 22 away from the electric control seat body part 21 at uniform intervals. The recognition directions of the infrared recognition structures 4 in the number of groups are respectively arranged corresponding to the light source output direction of the xenon lamp tube structure 3, so as to actively recognize and detect infrared human bodies with the assistance of the infrared recognition structures 4.

[0054] The electric control structure 5 is fixedly assembled inside the electric control seat body part 21. Specifically, the electric control structure 5 includes an electric control module 51 and an acoustic-optical alarm 52. Among them, the electric control module 51 includes a mobile power supply and a control module connected by a circuit. The mobile power supply can be but is not limited to a lithium battery. The control module can be but is not limited to a single-chip microcomputer control board of model AT80C51 or a microcontroller of model STM32. A circuit is connected between the control output end of the control module and the input end of the relay. The output end of the relay is respectively connected to the xenon lamp tube structure 3 and the acoustic-optical alarm 52 by circuits. The infrared recognition structures 4 in the number of groups are respectively connected to the control input end of the control module by circuits, so as to output acoustic-optical alarms immediately by using the acoustic-optical alarm 52 when the infrared recognition structures 4 assist in actively recognizing and detecting infrared human bodies.

[0055] Please continue to refer to Figure 1 and Figure 2 , a rotation groove 23 is further formed at the transfer position corresponding to the electric control seat body part 21 and the holding handle structure 1, so as to use the rotation groove 23 as an adaptive accommodation space for relative rotation between the electric control seat body part 21 and the holding handle structure 1. The base part of the rotation motor structure 6 is fixedly assembled on the holding handle structure 1, and the rotational kinetic energy output end of the rotation motor structure 6 is fixedly assembled and connected to the electric control seat body part 21 in a transmission manner.

[0056] The electric control structure 5 further includes a pitch control switch 53. The pitch control switch 53 is connected to the control input end of the control module by a circuit. The control output end of the control module is connected to the rotation motor structure 6 by a circuit, so as to electrically control and adjust the pitch illumination direction.

[0057] As a preferred solution of this embodiment, the xenon lamp tube structure 3 and the condenser cover part 22 are relatively movably positioned. Specifically, the base part of the first motor push rod structure 7 is fixedly assembled inside the electric control seat body part 21, and the linear kinetic energy output end of the first motor push rod structure 7 is fixedly assembled and connected to the xenon lamp tube structure 3 through transmission. The first motor push rod structure 7 is electrically connected to the output end of the relay through a circuit, so as to effectively linearly drive the xenon lamp tube structure 3 to extend forward or retract based on the condenser cover part 22 by using the first motor push rod structure 7, so that the scattered light of the xenon lamp tube structure 3 can achieve adjustable light concentration based on the condenser cover part 22.

[0058] Embodiment 2

[0059] In Embodiment 2, for the same structures as in Embodiment 1, the same symbols are given and the same descriptions are omitted. The differences between Embodiment 2 and Embodiment 1 are as follows. Please refer to Figure 3 and Figure 4 , the xenon lamp tube structure 3 and the condenser cover part 22 are fixedly arranged.

[0060] The xenon illumination search and rescue lamp further includes an extended lamp cover structure 8, and the extended lamp cover structure 8 includes an extended lamp cover main body 81 and a second motor push rod structure 82. Among them, the extended lamp cover main body 81 is arranged in a circular sleeve shape, and a reflective layer is coated on the inner wall of the circular sleeve-shaped extended lamp cover main body 81. The circular sleeve-shaped extended lamp cover main body 81 is arranged at a predetermined gap corresponding to the outer side of the condenser cover part 22. At least two groups of the second motor push rod structures 82 are provided. The base parts of at least two groups of the second motor push rod structures 82 are respectively fixedly assembled at intervals on the outer side of the condenser cover part 22, and at least two groups of the second motor push rod structures 82 are respectively located inside the extended lamp cover main body 81. The linear kinetic energy output ends of at least two groups of the second motor push rod structures 82 are respectively fixedly assembled and connected to the extended lamp cover main body 81 through transmission, and at least two groups of the second motor push rod structures 82 are all electrically connected to the output end of the relay through a circuit, so as to drive the extended lamp cover main body 81 by means of the second motor push rod structure 82, so that the extended lamp cover main body 81 can further extend outward based on the condenser cover part 22 to flexibly adjust the light concentration, effectively improving the overall functional practicality.

[0061] Although the present invention has been described in detail above with general descriptions and specific embodiments, on the basis of the present invention, some modifications or improvements can be made, which are obvious to those skilled in the art. Therefore, these modifications or improvements made without departing from the spirit of the present invention all fall within the scope of protection required by the present invention.

Claims

1. An electronically controlled rotary xenon search and rescue lamp with self-identification warning function, characterized in that, Comprising: A holding handle structure; A light source driving structure, which is arranged on the holding handle structure in a positionable and transferable manner; A xenon lamp tube structure, which is correspondingly arranged on the light source driving structure; An infrared recognition structure, which is fixedly arranged on the light source driving structure, and the recognition direction of the infrared recognition structure is correspondingly arranged with the light source output direction of the xenon lamp tube structure; An electric control structure, including an electric control module and an acoustic-optical alarm; The control input end of the electric control module is connected by a circuit with the infrared recognition structure, and the control output end of the electric control module is connected by a circuit with the acoustic-optical alarm.

2. The electric control rotary xenon lighting search and rescue lamp with self-recognition alarm function according to claim 1, characterized in that The light source driving structure includes an electric control seat body part and a condenser hood part which are integrally and fixedly connected; The bottom side part of the electric control seat body part is connected with the holding handle structure in a positionable and transferable manner, and the xenon lamp tube structure is correspondingly arranged on the inner side part of the condenser hood part.

3. The electric control rotary xenon lighting search and rescue lamp with self-recognition alarm function according to claim 2, characterized in that Several groups of the infrared recognition structures are provided, and several groups of the infrared recognition structures are fixedly arranged at the outer edge part of one end of the condenser hood part far away from the electric control seat body part at uniform intervals, and the recognition directions of several groups of the infrared recognition structures are respectively correspondingly arranged with the light source output direction of the xenon lamp tube structure.

4. The electric control rotary xenon lighting search and rescue lamp with self-recognition alarm function according to claim 2, characterized in that The electric control structure is fixedly arranged inside the electric control seat body part; The electric control module includes a mobile power source and a control module which are connected by a circuit; the control output end of the control module is connected by a circuit with the input end of a relay, and the output end of the relay is respectively connected by a circuit with the xenon lamp tube structure and the acoustic-optical alarm.

5. The electronically controlled rotary xenon search and rescue lamp with self-identification warning function according to claim 4, characterized in that, Further comprising: A swivel motor structure, the base part of which is fixedly arranged on the holding handle structure, and the rotational kinetic energy output end part of the swivel motor structure is connected with the electric control seat body part in a transmission and fixed manner.

6. The electric control rotary xenon lighting search and rescue lamp with self-recognition alarm function according to claim 5, characterized in that The electric control structure further includes a pitch control switch; The pitch control switch is connected by a circuit with the control input end of the control module, and the control output end of the control module is connected by a circuit with the swivel motor structure.

7. The electric control rotary xenon lighting search and rescue lamp with self-recognition alarm function according to claim 4, characterized in that The xenon lamp tube structure and the condenser hood part are arranged in a relatively movable and positionable manner; The xenon lighting search and rescue lamp further includes: The first motor push rod structure, the base part is fixedly assembled inside the electric control seat body part, and the linear kinetic energy output end of the first motor push rod structure is fixedly connected and transmitted with the xenon lamp tube structure, and the first motor push rod structure is connected with the output end of the relay through a circuit.

8. The electric control rotary xenon lighting search and rescue lamp with self-identification alarm function according to claim 4, characterized in that The xenon lamp tube structure and the condenser cover part are fixedly arranged; The xenon lighting search and rescue lamp further includes an extended lamp cover structure; The extended lamp cover structure includes an extended lamp cover main body and a second motor push rod structure; The extended lamp cover main body is arranged in a circular sleeve shape; The inner wall of the circular sleeve-shaped extended lamp cover main body is coated with a reflective layer, and the circular sleeve-shaped extended lamp cover main body is arranged at a predetermined gap corresponding to the outer peripheral side of the condenser cover part; There are at least two groups of the second motor push rod structures, and the linear kinetic energy output ends of the at least two groups of the second motor push rod structures are respectively fixedly connected and transmitted with the extended lamp cover main body, and the at least two groups of the second motor push rod structures are all connected with the output end of the relay through a circuit.

9. The electric control rotary xenon lighting search and rescue lamp with self-identification alarm function according to claim 8, characterized in that The base parts of the at least two groups of the second motor push rod structures are respectively fixedly assembled at intervals on the outer peripheral side of the condenser cover part, and the at least two groups of the second motor push rod structures are all correspondingly located inside the extended lamp cover main body.

10. The electric control rotary xenon lighting search and rescue lamp with self-identification alarm function according to claim 2, characterized in that A rotation groove is provided at the transfer position between the electric control seat body part and the holding handle structure.