A multi-lens concentrating remote-controlled fishing lamp
Through the multi-lens design and lamp bead installation device, combined with infrared signal and voice recognition module, convenient adjustment of the fishing light beam is achieved, solving the problems of optical components damage and bracket instability caused by spot adjustment, and improving the convenience and stability of the fishing light.
Patent Information
- Application Number
- CN202411712800.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2044-11-27
AI Technical Summary
The spot size adjustment of existing fishing lamps requires moving the outlet lens, causing internal air to compress or expand, damaging the optical components, and changing the gravity of the center of the spot requires adjusting the angle of the lamp, which is inconvenient to use, and the bracket design is complex and has poor stability.
The multi-lens design is adopted, and the light beam is adjusted using the lamp bead installation device and the shrinkage component. The beam adjustment is achieved by combining infrared signals and voice recognition modules to avoid lens position adjustments. A sealed waterproof device is set up, and the bracket can be stored and adapted to different placement methods.
Protect optical components, extend service life, improve convenience of use, enhance stability and user experience, free your hands and simplify operation.
Smart Images

Figure CN119468142B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of fishing lamp design, in particular to a multi-lens focusing remote-controlled fishing lamp. Background Art
[0002] Current fishing lights have a similar structure to ordinary flashlights. The lamp head and barrel are typically fixed, and most cannot adjust the spot size. Even those that can adjust the spot size require a movable light outlet lens, which is achieved by extending and retracting the entire light outlet lens assembly. Furthermore, the light outlet lens assembly has an internal aperture. Movement of the light outlet lens assembly can cause air compression or expansion inside the light, damaging the optical components and reducing the component lifespan. Furthermore, repeated movement of the light outlet lens assembly can easily damage the waterproof rubber ring, compromising waterproofing. Furthermore, the light outlet lens assembly lengthens as it extends and retracts, causing the center of gravity to shift after installation during use. This requires adjusting the entire fixture's mounting angle to achieve the desired illumination position, making it inconvenient to use. Conventional fishing lights have limited functionality and require manual operation, occupying both hands. Positioning the light horizontally also affects the lighting, creating inconvenience for the user. Existing fishing lamp brackets are complex in design, resulting in poor placement stability and storage, resulting in a poor user experience. Therefore, a multi-lens, remote-controlled, focused fishing light is proposed. Summary of the Invention
[0003] (1) Technical issues to be resolved
[0004] In order to solve at least one aspect of the above problems, the present invention first provides a multi-lens focusing remote-controlled fishing light. The setting position and distance of the exit lens are not adjusted. The distance adjustment is achieved by using a lamp bead installation device, and the focusing and astigmatism adjustment of the light beam are achieved in conjunction with the retraction component, thereby avoiding the accuracy problems caused by adjusting the lens position and improving the user experience of the fishing light.
[0005] (2) Technical solution
[0006] In order to solve the technical problem, the present invention provides a multi-lens focusing remote-controlled fishing lamp, including a fishing lamp shade tube and a fishing lamp body. A waterproof connecting frame is provided at the bottom of the fishing lamp shade tube, and a fishing lamp body is provided at the bottom of the waterproof connecting frame. A bottom protective cover is provided at the bottom of the fishing lamp body, and a group of portable hanging rings are respectively provided at the upper and lower ends of the fishing lamp body wall panel, and a gear key is provided at the front end of the fishing lamp body bottom plate.
[0007] As a preferred solution of the present invention, wherein: a battery is provided in the center of the fishing lamp body, a light-emitting component is provided on the top of the battery, the bottom end of the light-emitting component is set as an electrical connection frame, a positioning sleeve ring is provided on the top of the electrical connection frame, a refraction cover setting frame is provided on the top of the positioning sleeve ring, a refraction cover setting frame is provided on the top of the refraction cover limiting groove, an external refraction cover is provided in the refraction cover limiting groove, a light-emitting port is provided in the center of the top of the external refraction cover, a setting seat is provided below the external refraction cover, and a lighting lamp group is provided in the setting seat.
[0008] As a preferred solution of the present invention, wherein: the inner cavity of the positioning sleeve ring is provided with a telescopic frame, the outer portion of the upper end of the telescopic frame is provided with a circular ring connecting seat, the outer end of the upper end surface of the circular ring connecting seat is evenly provided with three groups of connecting buckles, the connecting buckles are movably connected with the first support frame, the second support frame and the third support frame in sequence, the first support frame, the second support frame and the third support frame are installed in an equilateral triangle, the top of the telescopic frame is provided with a gear adjustment column, the circular ring connecting seat is fixedly arranged in the positioning sleeve ring, the positioning sleeve ring realizes the support and limit setting of the circular ring connecting seat, the lower end of the inner cavity of the positioning sleeve ring provides a movable space for the telescopic frame, the telescopic frame can be subjected to force to move up and down in the positioning sleeve ring, driving the gear adjustment column to move up and down.
[0009] As a preferred solution of the present invention, the lighting lamp group includes three groups of lamp bead assemblies, each group of lamp bead assemblies is provided with a transparent setting sleeve on the top, a first convex lens is provided in the center of the transparent setting sleeve, a second convex lens is provided at the bottom of the first convex lens, a lamp bead fixing seat is provided below the second convex lens, a small lamp bead is provided in the center of the lamp bead fixing seat panel, a sliding frame is provided on the outside of the lamp bead fixing seat, and a movable limit seat is provided on the outside of the sliding frame.
[0010] Furthermore, an abutment seat is provided at the bottom of the lamp bead fixing seat.
[0011] Furthermore, micro electric telescopic rods are provided in the inner cavities of the first support frame, the second support frame and the third support frame corresponding to the abutment seats, and the tops of the micro electric telescopic rods are respectively connected to the corresponding lamp bead fixing seats.
[0012] Furthermore, three groups of wedge-shaped gear grooves are vertically provided on the inner wall of the circular ring connecting seat, and a protruding embedded ring is provided on the edge of the telescopic frame.
[0013] Furthermore, a gear connecting column is provided at the outer end of the telescopic frame, and the outer end of the gear connecting column is fixedly connected to the gear key.
[0014] Furthermore, the waterproof connecting frame includes a waterproof sleeve, a waterproof sealing ring is provided at the connection between the bottom edge of the waterproof sleeve and the fishing lamp body, an annular sleeve is provided on the inside of the waterproof sleeve, an annular heat dissipation frame is provided on the inside of the annular sleeve, and a first hinge is provided at one end of the waterproof sleeve wall, and the first hinge is connected to the first tripod.
[0015] Furthermore, an infrared signal receiver is provided at the bottom of the annular heat dissipation frame, and a voice recognition module is provided on the right side of the infrared signal receiver.
[0016] Furthermore, a top protective lens is provided at the front end of the fishing lamp shade tube, and a refraction tube is provided in the inner cavity of the fishing lamp shade tube.
[0017] Furthermore, the bottom protective cover is provided with a second hinge corresponding to the first hinge, and the second hinge is connected to a second tripod.
[0018] Furthermore, an external convex mirror is provided on the top of the setting seat.
[0019] (3) Beneficial effects
[0020] 1. The multi-lens, focusing remote-controlled fishing light provided by the present invention has multiple sets of lenses fixed at the output end of the lamp bead assembly. This changes the traditional method of adjusting the entire light outlet lens component to achieve focusing or astigmatism, avoids compressing or expanding the air inside the fishing light, effectively protects the optical components inside the fishing light, and extends the service life of the optical components. The device does not change the installation position of the optical lenses, effectively ensuring that the center of gravity of the focusing or astigmatism will not change. There is no need to readjust the installation angle of the fishing light when adjusting the focusing or astigmatism, thereby improving its convenience.
[0021] 2. The present invention provides a lamp bead assembly in the shape of an equilateral triangle, and provides a movably connected support frame assembly under each group of lamp bead assemblies. The gear adjustment device is used to realize the folding and spreading control of the three groups of support frames, and the focusing or astigmatism adjustment of the light beam is manually realized. An infrared signal receiver and a voice recognition module are provided inside the fishing lamp to receive infrared control signals and audio control signals, and to realize the adjustment of the distance between the lamp bead and the second convex lens in conjunction with the preset telescopic assembly and output voltage. The lamp bead installation and adjustment device is realized by a sliding frame, which can ensure the stability of the lamp bead installation and the safety of the mobile control. By adjusting the distance between the lamp bead and the second convex lens, the intensity and spot range of the light beam can be adjusted to realize the adjustment of the focusing and astigmatism.
[0022] 3. The present invention provides multiple sets of sealing and waterproof devices at the connection of the fishing lamp components, which can reduce the risk of water ingress during use. Connecting hinges and two sets of tripods are provided on the lamp body of the fishing lamp. The tripods can be stored using the fishing lamp structure, and the two sets of tripods can be used to place the fishing lamp in a horizontal plane. There is no need to manually adjust the tripod components during the dimming process, which can avoid the problem of light spot offset caused by reinstallation, thereby ensuring the user experience of the fishing lamp. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 This is a schematic structural diagram of a spotlight remote-controlled fishing light according to an embodiment of the present invention;
[0024] Figure 2 This is a schematic structural diagram of a waterproof connecting frame of a spotlight remote-controlled fishing light according to an embodiment of the present invention;
[0025] Figure 3 This is a schematic structural diagram of a light-emitting component of a focusing remote-controlled fishing light according to an embodiment of the present invention;
[0026] Figure 4 This is a schematic structural diagram of a positioning sleeve ring of a spotlight remote-controlled fishing light according to an embodiment of the present invention;
[0027] Figure 5 This is a schematic diagram of the multi-layer lens installation structure of a focusing remote-controlled fishing light according to an embodiment of the present invention;
[0028] Figure 6 Schematic diagram of the placement of the tripod of a spotlight remote-controlled fishing light according to an embodiment of the present invention.
[0029] Description of reference numerals:
[0030] 1 is a top protective lens, 2 is a fishing lamp shade tube, 3 is a waterproof connecting frame, 31 is a waterproof sleeve, 32 is a first tripod, 33 is a waterproof sealing ring, 34 is a ring sleeve, 35 is a ring heat dissipation frame, 4 is a fishing lamp body, 5 is a bottom protective cover, 6 is a gear key, 601 is a gear connecting column, 7 is a portable hanging ring, 8 is a light-emitting component, 81 is an external refraction cover, 82 is a light-emitting port, 83 is an electrical connecting frame, 84 is a positioning sleeve ring, 841 is a telescopic frame, 842 It is a circular connecting seat, 843 is the first supporting frame, 844 is the second supporting frame, 845 is the third supporting frame, 846 is the gear adjustment column, 85 is the refraction cover setting frame, 86 is the refraction cover limiting groove, 87 is the external convex mirror, 88 is the lighting lamp bead, 881 is the transparent setting sleeve, 882 is the first convex lens, 883 is the second convex lens, 884 is the lamp bead fixing seat, 885 is the small lamp bead, 886 is the sliding frame, 887 is the movable limiting seat, and 888 is the abutment seat. DETAILED DESCRIPTION
[0031] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, specific embodiments of the present invention are described in detail below with reference to the accompanying drawings.
[0032] See Figures 1 to 6 , the embodiment of the present invention provides a multi-lens focusing remote control fishing lamp, including a fishing lamp shade tube 2 and a fishing lamp body 4, a waterproof connecting frame 3 is provided at the bottom of the fishing lamp shade tube 2, a fishing lamp body 4 is provided at the bottom of the waterproof connecting frame 3, a bottom protective cover 5 is provided at the bottom of the fishing lamp body 4, a group of portable hanging rings 7 are provided at the upper and lower ends of the wall plate of the fishing lamp body 4, and a gear key 6 is provided at the front end of the bottom plate of the fishing lamp body 4. The fishing lamp designed in this scheme is about three times the volume of an ordinary flashlight, so that its inner cavity can accommodate a larger battery, thereby extending the battery life of the fishing lamp and being able to adapt to the power consumption of the light-emitting part 8 with different brightness adjustment. In addition, it realizes the focusing processing of the light beam of the light-emitting part 8 by arranging multiple groups of lenses and focusing covers, thereby enhancing the fixed-point lighting effect of the light beam of the fishing lamp, and facilitating improving the user experience of the fishing lamp during night fishing. A waterproof connecting frame 3 is provided at the joint, which can use its connection and protective components to isolate environmental moisture and prevent moisture from entering the interior of the fishing lamp. Another set of sealing and waterproof devices is provided at the connection between the bottom protective cover 5 and the other end of the fishing lamp body 4. The bottom protective cover 5 and the waterproof connecting frame 3 are both screwed to the fishing lamp body 4, and cooperate with the sealing component to achieve sealed protection of the inner cavity of the entire fishing lamp assembly. At the same time, the bottom protective cover 5 and the waterproof connecting frame 3 can be removed from the fishing lamp body 4 to facilitate maintenance of its internal components. The portable hanging ring 7 is equipped with a connecting handle and a connecting strap. The connecting handle or the connecting strap can be selected for installation according to usage requirements, or the connecting handle and the connecting strap can be connected to two sets of portable hanging rings 7 at the same time. The user can choose the handle or the connecting strap according to usage requirements. The user can push the gear key 6 to select different modes of the fishing lamp, such as scattered light, concentrated light and lighting intensity.
[0033] See Figure 2 and Figure 3 A battery is provided in the center of the fishing lamp body 4, and a light-emitting part 8 is provided on the top of the battery. The bottom end of the light-emitting part 8 is set as an electrical connection frame 83, and a positioning sleeve ring 84 is provided on the top of the electrical connection frame 83. A refraction cover setting frame 85 is provided on the top of the refraction cover setting frame 85. A refraction cover limiting groove 86 is provided on the top of the refraction cover limiting groove 86. An external refraction cover 81 is provided in the refraction cover limiting groove 86. A light-emitting port 82 is provided in the center of the top of the external refraction cover 81, and a setting seat is provided below the external refraction cover 81. A lighting lamp group 88 is provided in the setting seat. A battery slot is provided in the inner cavity of the fishing lamp body 4 for fixing the installation of the battery. The battery is connected to the charging port to facilitate repeated charging of the battery. An electrical connection is established between the top of the battery and the light-emitting part 8, and the battery is used to power multiple groups of lamp beads in the light-emitting part 8 for lighting.
[0034] The bottom of the light-emitting element 8 is connected to the battery by setting an electrical connecting frame 83, and is installed with the wall panel of the fishing lamp body 4 by using a positioning sleeve ring 84. The upper part of the light-emitting element 8 is set in the inner cavity of the waterproof connecting frame 3, and the positioning setting of the waterproof connecting frame 3 is used to set the light point in the rear end cavity of the fishing lamp cover tube 2. The top of the positioning sleeve ring 84 fixes the installation of the refraction cover setting frame 85. The external refraction cover 81 is set in the refraction cover limiting groove 86, and cooperates with the refraction cover setting frame 85 to achieve stable installation of the external refraction cover 81. The external refraction cover 81 uses its arc-shaped annular wall panel to refract the light beam irradiated on its surface, so that the refracted offset light beam follows the direct light beam and is emitted from the light-emitting port 82, realizing the focusing processing of the light beam at the periphery. The center of the refraction cover setting frame 85 is provided with a seat to achieve stable installation of the shell of the lighting lamp group 88, providing setting and limit control for the lighting lamp beads 88.
[0035] See 3 and Figure 4 The first support frame 843, the second support frame 844 and the third support frame 845 are movably connected to the connecting buckle in sequence. The first support frame 843, the second support frame 844 and the third support frame 845 are installed in a regular triangle. The top of the telescopic frame 841 is provided with a gear adjustment column 846, and the circular connecting seat 842 is fixedly set in the positioning sleeve ring 84. The positioning sleeve ring 84 realizes the support and limit setting of the circular connecting seat 842. The lower end of the inner cavity of the positioning sleeve ring 84 provides a movable space for the telescopic frame 841. The telescopic frame 841 can be forced to move up and down in the positioning sleeve ring 84, driving the gear adjustment column 846 to move up and down. The edges of the gear adjustment column 846 are fixedly connected to the first support frame 843, the second support frame 844 and the third support frame 845 respectively.
[0036] The outer ends of the bottom of the first support frame 843, the second support frame 844 and the third support frame 845 are respectively connected to the connecting buckles. When the telescopic frame 841 drives the gear adjustment column 846 to move upward, the gear adjustment column 846 pushes the inner edges of the bottom of the three groups of support frames to move upward, and the three groups of support frames are simultaneously stretched outward, changing the luminous angles of several groups of lamp beads. At this time, the light beam is in a scattered light mode; when the telescopic frame 841 drives the gear adjustment column 846 to move downward, the first support frame 843, the second support frame 844 and the third support frame 845 are simultaneously retracted inward, and at this time the light beam is in a focusing mode.
[0037] See Figure 3 and Figure 5, the lighting lamp group 88 includes three groups of lamp bead components, each group of lamp bead components is provided with a transparent setting sleeve 881 on the top, a first convex lens 882 is provided in the center of the transparent setting sleeve 881, a second convex lens 883 is provided at the bottom of the first convex lens 882, a lamp bead fixing seat 884 is provided below the second convex lens 883, a small lamp bead 885 is provided in the center of the lamp bead fixing seat 884 panel, a sliding frame 886 is provided on the outside of the lamp bead fixing seat 884, and a movable limit seat 887 is provided on the outside of the sliding frame 886. The lighting lamp group 88 realizes lighting beam processing through three groups of lamp bead components, and the top of each group of lamp bead components is transparent through the transparent setting sleeve 881. The inner cavity of the lamp bead component fixes the setting of the first convex lens 882 through the top of the movable limit seat 887, and the movable limit seat The middle part of the seat 887 fixes the setting of the second convex lens 883, and the installation position and distance between the first convex lens 882 and the second convex lens 883 are fixed to prevent the two groups of convex lenses from loosening. The small lamp bead 885 is fixedly installed on the lamp bead fixing seat 884, and the outer side of the lamp bead fixing seat 884 is fixedly connected to the sliding frame 886. The sliding frame 886 can drive the lamp bead fixing seat 884 to slide up and down, and can change the distance between the small lamp bead 885 and the second convex lens 883. When the sliding frame 886 moves upward, the distance between the small lamp bead 885 and the second convex lens 883 is shortened to achieve astigmatism processing of the light beam. When the sliding frame 886 moves downward, the distance between the small lamp bead 885 and the second convex lens 883 is increased to achieve focusing processing of the light beam.
[0038] See Figure 5 Abutment seat 888 is provided at the bottom of the lamp bead fixing seat 884, and the abutment seat 888 establishes a connection between the top of each group of support frames and the lamp group assembly, and realizes limit control of the micro electric telescopic rod inside each group of support frames.
[0039] The first support frame 843, the second support frame 844 and the third support frame 845 are all provided with micro electric telescopic rods at the corresponding abutment seats 888 in the inner cavity. The tops of the micro electric telescopic rods are respectively connected to the corresponding lamp bead fixing seats 884. When the micro electric telescopic rods are extended, the lamp bead fixing seats and sliding frames connected to each group of support frames move upward. When the micro telescopic rods are retracted, the lamp bead fixing seats and sliding frames connected to each group of support frames move downward. In this way, the distance between the small lamp bead and the second convex lens can be changed according to the electrical signal and the remote control signal, so as to realize the control of the convergent light of the light by using the electrical signal. It is suitable for use of fishing lights under remote control state.
[0040] Three groups of wedge-shaped gear slots are vertically provided on the inner wall of the circular connecting seat 842, and a protruding embedded ring is provided on the edge of the telescopic frame 841. When the gear key 6 moves up and down, the protruding embedded ring on the edge of the telescopic frame 841 is driven to embed into the wedge-shaped gear slots of different heights, that is, the gear adjustment column 846 is at different heights, which can adjust the distance between the three groups of support frames to achieve focusing or astigmatism adjustment.
[0041] A gear connecting column 601 is provided at the outer end of the telescopic frame 841, and the outer end of the gear connecting column 601 is fixedly connected to the gear key 6. The telescopic frame 841 establishes a connection with the gear key 6 through the gear connecting column 601, that is, by pressing the gear key 6 and pushing it up and down, the manual setting component can be used to adjust the convergence and divergence of the light beam.
[0042] See Figure 2 and Figure 6 The waterproof connecting frame 3 includes a waterproof sleeve 31, a waterproof sealing ring 33 is provided at the connection between the bottom edge of the waterproof sleeve 31 and the fishing lamp body 4, an annular sleeve 34 is provided on the inside of the waterproof sleeve 31, and an annular heat dissipation frame 35 is provided on the inside of the annular sleeve 34. A first hinge is provided at one end of the tube wall of the waterproof sleeve 31, and the first hinge is connected to the first tripod 32. The waterproof connecting frame 3 establishes a connection with the top edge of the fishing lamp body 4 through the waterproof sleeve 31, and realizes the sealing protection of the connection between the two through the waterproof sealing ring 33. The top of the waterproof connecting frame 3 is integrated with the fishing lamp shade tube 2 to ensure that the design of the fishing lamp shade tube 2 and the fishing lamp body 4 is The waterproof sleeve 31 has an inner cavity that fixes the annular sleeve 34. The upper end of the annular sleeve 34 is arranged in the inner cavity of the fishing lamp shade tube 2. The annular heat dissipation frame 35 can be used to dissipate the heat generated by the lamp beads, and cooperate with the heat dissipation structure of the fishing lamp shade tube 2 to realize heat dissipation protection for the small lamp beads. The bottom of the waterproof sleeve 31 is connected to the first tripod 32 through a first hinge. The first tripod 32 can be folded and sleeved on the waterproof sleeve 31, or the first tripod 32 can be rotated to be arranged vertically with the fishing lamp. Cooperating with the second tripod, it can support the horizontal placement of the fishing lamp, freeing the hands of the angler and improving the practicality of the fishing lamp.
[0043] An infrared signal receiver is provided at the bottom of the annular heat dissipation frame 35, and a voice recognition module is provided on the right side of the infrared signal receiver. The infrared signal receiver is set to receive control signals from the remote control device or collect the remote control interface, and cooperate with the electronic control component to realize the electronic control processing of the fishing light. The voice recognition module is set to receive voice commands within a certain range, such as finding the fishing light in the wild and voice switching and regulation when it is placed.
[0044] A top protective lens 1 is provided at the front end of the fishing lamp shade tube 2, and a refractive cylinder is provided in the inner cavity of the fishing lamp shade tube 2. The top protective lens 1 realizes the placement of the fishing lamp head. The refractive cylinder can enhance the refraction processing effect of the light beam and increase the light beam emission distance. A plurality of ventilation grooves are provided on the cylindrical surface of the fishing lamp shade tube 2, and a waterproof and breathable layer is provided in the ventilation groove, which can cooperate with the annular heat dissipation frame 35 to improve the heat dissipation treatment of the light-emitting component.
[0045] The bottom protective cover 5 is provided with a second hinge corresponding to the first hinge, and the second hinge is connected to the second tripod. The edge of the bottom protective cover 5 fixes the setting of the second hinge to establish a connection with the second tripod. The second tripod can be folded and placed on the bottom protective cover 5, or the second tripod can be rotated and set vertically with the fishing light. In combination with the first tripod 32, it can support the horizontal placement of the fishing light.
[0046] An external convex mirror 87 is provided on the top of the setting seat. The external convex mirror 87 is provided with an additional layer of convex mirror outside the lighting lamp bead 88, which can perform external focusing processing on the three groups of light beams emitted from the lighting lamp bead 88, thereby improving the focusing effect of the fishing lamp.
[0047] The embodiment of the present invention provides a multi-lens focusing remote control fishing light, which is provided with multiple sets of convex mirror components arranged in a column direction in the light-emitting direction of the small lamp bead 885, which can perform lens focusing processing on the light beam emitted by the small lamp bead 885, thereby improving the focusing effect of the fishing light. This solution adopts different control methods such as manual, electrical signals and audio signals to realize the regulation of the fishing light, wherein: manual control controls the gear connecting column 601 through the gear member 6 to push the telescopic frame 841 up and down, which can realize the convergence and divergence of the light beam by the manual component. When manually controlled, the small lamp bead 885 focuses The operating voltage of the light adjustment is twice that of the astigmatism adjustment; during the control of electrical signals and audio signals, the micro electric telescopic rod drives the lamp bead fixing seat 884 and the sliding frame 886 to move up and down, and changes the distance between the small lamp bead 885 and the second convex lens 883 according to the electrical signals and remote control signals, and when the small lamp bead 885 moves downward, the output voltage is increased to enhance the output of the focused beam. When the small lamp bead 885 moves upward, the output voltage is reduced to weaken the beam output, thereby realizing the control of the focused light of the light by using electrical signals, which is suitable for use in fishing lights under remote control state.
[0048] Although the present disclosure is disclosed as above, the protection scope of the present disclosure is not limited thereto. Those skilled in the art may make various changes and modifications without departing from the spirit and scope of the present disclosure, and these changes and modifications will fall within the protection scope of the present invention.
Claims
1. A multi-lens focusing remote control fishing light, characterized in that: The fishing lamp comprises a lampshade tube (2) and a fishing lamp body (4); a waterproof connecting frame (3) is provided at the bottom of the fishing lampshade tube (2); a fishing lamp body (4) is provided at the bottom of the waterproof connecting frame (3); a bottom protective cover (5) is provided at the bottom of the fishing lamp body (4); a group of portable hanging rings (7) are provided at the upper and lower ends of the wall plate of the fishing lamp body (4); and a gear key (6) is provided at the front end of the bottom plate of the fishing lamp body (4); The fishing lamp body (4) is provided with a battery in the center, a light-emitting element (8) is provided on the top of the battery, the bottom end of the light-emitting element (8) is provided as an electrical connection frame (83), a positioning sleeve ring (84) is provided on the top of the electrical connection frame (83), a refraction cover setting frame (85) is provided on the top of the positioning sleeve ring (84), a refraction cover limiting groove (86) is provided on the top of the refraction cover setting frame (85), an external refraction cover (81) is provided in the refraction cover limiting groove (86), a light-emitting port (82) is provided in the center of the top of the external refraction cover (81), a setting seat is provided below the external refraction cover (81), and a lighting lamp group (88) is provided in the setting seat; The inner cavity of the positioning sleeve ring (84) is provided with a telescopic frame (841), the outer portion of the upper end of the telescopic frame (841) is provided with a circular connecting seat (842), and the outer end of the upper end surface of the circular connecting seat (842) is evenly provided with three groups of connecting buckles, and the connecting buckles are movably connected to the first support frame (843), the second support frame (844) and the third support frame (845) in sequence. The first support frame (843), the second support frame (844) and the third support frame (845) are installed in the form of an equilateral triangle. A gear adjustment column (846) is provided on the top of the telescopic frame (841), and the annular connecting seat (842) is fixedly arranged in the positioning sleeve ring (84). The positioning sleeve ring (84) realizes the support and limit setting of the annular connecting seat (842). The lower end of the inner cavity of the positioning sleeve ring (84) provides a movable space for the telescopic frame (841). The telescopic frame (841) can be subjected to force in the positioning sleeve ring (84) to move up and down, thereby driving the gear adjustment column (846) to move up and down; The lighting lamp group (88) includes three groups of lamp bead assemblies, each group of lamp bead assemblies is provided with a transparent setting sleeve (881) on the top, a first convex lens (882) is provided in the center of the transparent setting sleeve (881), a second convex lens (883) is provided at the bottom of the first convex lens (882), a lamp bead fixing seat (884) is provided below the second convex lens (883), a small lamp bead (885) is provided in the center of the panel of the lamp bead fixing seat (884), a sliding frame (886) is provided on the outside of the lamp bead fixing seat (884), and a movable limit seat (887) is provided on the outside of the sliding frame (886).
2. The multi-lens focusing remote-controlled fishing light according to claim 1, characterized in that: An abutment seat (888) is provided at the bottom of the lamp bead fixing seat (884).
3. The multi-lens focusing remote-controlled fishing light according to claim 2, characterized in that: Micro electric telescopic rods are provided in the inner cavities of the first support frame (843), the second support frame (844) and the third support frame (845) at locations corresponding to the abutment seat (888), and the tops of the micro electric telescopic rods are respectively connected to the corresponding lamp bead fixing seats (884).
4. The multi-lens focusing remote-controlled fishing light according to claim 1, characterized in that: The inner wall of the circular connecting seat (842) is vertically provided with three groups of wedge-shaped gear slots, and the edge of the telescopic frame (841) is provided with a protruding embedded ring.
5. The multi-lens focusing remote-controlled fishing light according to claim 1, characterized in that: The outer end of the telescopic frame (841) is provided with a gear connecting column (601), and the outer end of the gear connecting column (601) is fixedly connected to the gear key (6).
6. The multi-lens focusing remote-controlled fishing light according to claim 1, characterized in that: The waterproof connecting frame (3) includes a waterproof sleeve (31), a waterproof sealing ring (33) is provided at the connection between the bottom edge of the waterproof sleeve (31) and the fishing lamp body (4), an annular sleeve (34) is provided inside the waterproof sleeve (31), an annular heat dissipation frame (35) is provided inside the annular sleeve (34), and a first hinge is provided at one end of the wall of the waterproof sleeve (31), and the first hinge is connected to the first tripod (32).
7. The multi-lens focusing remote-controlled fishing light according to claim 6, characterized in that: An infrared signal receiver is provided at the bottom of the annular heat dissipation frame (35), and a voice recognition module is provided on the right side of the infrared signal receiver.
8. The multi-lens focusing remote-controlled fishing light according to claim 1, characterized in that: A top protective lens (1) is provided at the front end of the fishing lampshade tube (2), and a refraction tube is provided in the inner cavity of the fishing lampshade tube (2).
9. The multi-lens focusing remote-controlled fishing light according to claim 1, characterized in that: The bottom protective cover (5) is provided with a second hinge at a position corresponding to the first hinge, and the second hinge is connected to a second tripod.
10. The multi-lens focusing remote-controlled fishing light according to claim 1, characterized in that: An external convex mirror (87) is provided on the top of the setting seat.
Citation Information
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