Water surface fish luring lamp capable of optimizing heat dissipation
By designing spaced light source modules and specific heat dissipation structures in water surface fish lure fixtures, the heat dissipation problem of LED fish lure lamps is solved, extending service life and reducing energy consumption.
Patent Information
- Application Number
- CN202422851808.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-11-22
AI Technical Summary
The heat dissipation problem of existing water LED fish-induced lights has led to a shortening of the service life of LEDs and increasing weight and energy consumption. It is difficult for the existing technology to find a balance between heat dissipation and lightweighting.
Design a water surface fish-attracting lamp with optimized heat dissipation. By setting multiple light source modules at intervals on the lamp base and forming a heat dissipation channel between adjacent light source modules, combining the specific structure of the lamp base and the heat dissipation seat to ensure rapid heat discharge, including a combined design of the heat dissipation chamber, heat dissipation fins, heat dissipation ports and heat dissipation holes.
It realizes rapid heat dissipation of LED fish-tempering lamps, extends the service life of LEDs, while maintaining the lightweight and low-energy consumption characteristics of the lamps.
Smart Images

Figure CN223271220U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of fish attracting lamps, and in particular relates to a water surface fish attracting lamp with optimized heat dissipation. Background Art
[0002] Fish attractants are fishing aids that use light to attract fish. They can generally be divided into two categories: surface and underwater. Underwater and surface fish attractants can lure fish from deep waters to shallower waters for capture at night. Surface fish attractants became widely used in the fishing industry in the 1990s. Metal halide is still the primary light source for surface fish attractants, although a few also use LEDs.
[0003] Currently, underwater LED fish attracting lights generally have high power consumption. Because LEDs are driven by constant current and are constantly powered, they require rapid heat dissipation. If heat isn't effectively removed, it will shorten the LED's lifespan. However, increasing the heat dissipation area inevitably increases the weight of the entire fish attracting light and increases energy consumption, requiring further improvement. Utility Model Content
[0004] The purpose of the utility model is to overcome the shortcomings of the prior art and provide a water surface fish attracting lamp with optimized heat dissipation.
[0005] The utility model adopts the following technical solutions:
[0006] A surface fish-luring lamp with optimized heat dissipation includes a lamp holder, a plurality of light source modules arranged on the lamp holder at intervals along the height direction, and a plurality of splicing mechanisms respectively arranged between the plurality of light source modules and the lamp holder, a heat dissipation channel is formed between two adjacent light source modules, the light source module includes a heat sink connected to the lamp holder and a lamp assembly detachably arranged on the heat sink, and the splicing mechanism is arranged between the heat sink and the lamp holder.
[0007] Furthermore, the heat sink includes a heat sink body with a semi-enclosed structure, a heat sink cavity formed in the heat sink body, a plurality of heat sink fins spaced apart in the heat sink cavity, and a mounting groove provided on the outer surface of the heat sink body for mounting the lamp assembly.
[0008] Furthermore, the lamp holder includes a lamp holder body, a shielding plate arranged in the lamp holder body opposite to the heat dissipation cavity, a plurality of first heat dissipation openings arranged at intervals on the shielding plate opposite to the heat dissipation cavity, a plurality of second heat dissipation openings arranged on the lamp holder body opposite to the plurality of first heat dissipation openings, and a plurality of first strip-shaped heat dissipation holes arranged on the side of the lamp holder body.
[0009] Furthermore, a plurality of second strip-shaped heat dissipation holes are formed on the side of the heat dissipation seat body and are opposite to the heat dissipation cavity.
[0010] Furthermore, it also includes a connecting piece arranged on the lamp holder to connect with other components, the connecting piece includes a connecting seat movably arranged on the lamp holder, a fixing block cooperating with the connecting seat, a locking bolt arranged between the connecting seat and the fixing block, and a fixing bolt arranged on the connecting seat that can cooperate with the second heat dissipation port bolt, a fixing area for fixing other components is formed between the connecting seat and the fixing block, and a movable groove for the connecting seat to move is formed on the lamp holder.
[0011] Furthermore, the lamp assembly includes a lamp board installed in the mounting groove, a plurality of light strips arranged at intervals on the light board, and a light-transmitting panel arranged on the light board opposite to the plurality of light strips, the light-transmitting panel is formed with a plurality of protrusions protruding outward one by one opposite to the plurality of light strips, and adjacent two of the light strips form an angle with each other.
[0012] Furthermore, the light board is formed with a plurality of mounting surfaces for mounting light strips, with two adjacent mounting surfaces forming an angle with each other, and the shape of the light-transmitting panel is adapted to the structure formed by the plurality of mounting surfaces.
[0013] Furthermore, the heat sink further comprises two positioning grooves arranged opposite to each other on both sides of the mounting groove, and a plurality of positioning blocks which can be embedded in the positioning grooves are respectively formed on both sides of the light-transmitting panel.
[0014] Furthermore, the splicing mechanism includes two splicing blocks arranged on opposite surfaces of the lamp holder and the heat sink, a snap-fit groove extending inward from the side of the splicing block, and two snap-fit strips arranged on the heat sink and respectively embedded in the opposite snap-fit grooves.
[0015] Furthermore, the light source module further includes two heat dissipation nets arranged at the upper and lower ends of the heat dissipation seat.
[0016] From the above description of the utility model, it can be seen that compared with the prior art, the beneficial effects of the utility model are: this application limits the structural composition of the fish-attracting lamp, and arranges multiple light source modules at intervals on the lamp holder to ensure its usage requirements, and a heat dissipation channel is formed between two adjacent light source modules, so that when each light source module is used, the heat generated can be quickly discharged. At the same time, the structural composition of the lamp holder and the heat dissipation holder is specifically limited, so that the heat in the heat dissipation cavity can be quickly discharged from all directions. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 Schematic diagram of the structure of the fish attracting lamp Figure 1 ;
[0018] Figure 2 Schematic diagram of the structure of the fish attracting lamp Figure 2 ;
[0019] Figure 3 Schematic diagram of the structure of the fish attracting lamp Figure 3 ;
[0020] Figure 4 Schematic diagram of the lamp holder structure Figure 1 ;
[0021] Figure 5 Schematic diagram of the lamp holder structure Figure 2 ;
[0022] Figure 6 Enlarged view of part of the structure of the fish attracting lamp Figure 1 ;
[0023] Figure 7 Enlarged view of part of the structure of the fish attracting lamp Figure 2 ;
[0024] Figure 8 This is an enlarged view of part of the structure of the lamp holder;
[0025] Figure 9 This is an enlarged view of the spliced structure;
[0026] Figure 10 Schematic diagram of the heat sink structure Figure 1 ;
[0027] Figure 11 Schematic diagram of the heat sink structure Figure 2 ;
[0028] Figure 12 Schematic diagram of the structure of the light-transmitting panel;
[0029] In the figure, 1-lamp holder, 2-light source module, 3-splicing structure, 4-connecting part, 5-heat sink, 6-lamp assembly, 7-heat dissipation channel, 11-lamp holder body, 12-shielding plate, 13-first heat dissipation port, 14-second heat dissipation port, 15-first strip heat dissipation hole, 16-movable groove, 31-splicing block, 32-clamping groove, 33-clamping strip, 41-connecting seat, 42-fixing block, 43-locking bolt, 44-fixing bolt, 45-fixing area, 51-heat sink body, 52-heat dissipation cavity, 53-heat dissipation fin, 54-mounting groove, 55-positioning groove, 56-heat dissipation net, 57-second strip heat dissipation hole, 61-lamp board, 611-mounting surface, 612-limiting groove, 62-light bar, 63-light-transmitting panel, 631-protrusion, 632-positioning block, 633-limiting ring, 64-decorative plate. DETAILED DESCRIPTION
[0030] The present invention is further described below through specific implementation methods.
[0031] Reference Figures 1 to 12As shown, a surface fish-luring lamp with optimized heat dissipation includes a lamp holder 1, a plurality of light source modules 2 arranged on the lamp holder 1 along the height of the room, a plurality of splicing structures 3 respectively arranged between the light source modules 2 and the lamp holder 1, and a connector 4 arranged on the lamp holder 1 to connect with other components.
[0032] The light source module 2 includes a heat sink 5 that is snap-connected to the lamp holder 1 and a lamp assembly 6 that is detachably arranged on the heat sink 5. Specifically, the heat sink 5 includes a heat sink body 51 with a semi-enclosed structure, a heat dissipation cavity 52 formed in the heat sink body 51, a plurality of heat dissipation fins 53 spaced apart in the heat dissipation cavity 52, a mounting groove 54 for mounting the lamp assembly 6 on the outer surface of the heat sink body 51, two positioning grooves 55 relatively arranged on both sides of the mounting groove 54, and two heat dissipation nets 56 arranged at the upper and lower ends of the heat sink body 51. The setting of the heat dissipation nets 56 can prevent foreign matter from entering the heat dissipation cavity 52. A gap is formed between two adjacent light source modules 2 to form a heat dissipation channel 7, so that the heat in the heat dissipation cavity 52 can be quickly discharged.
[0033] The lamp holder 1 includes a lamp holder body 11, a shielding plate 12 arranged in the lamp holder body 11 opposite to the heat dissipation cavity 52, a plurality of first heat dissipation ports 13 arranged at intervals on the shielding plate 12 opposite to the heat dissipation cavity 52, a plurality of second heat dissipation ports 14 arranged on the lamp holder body 11 opposite to the first heat dissipation ports 13, and a plurality of first strip heat dissipation holes 15 arranged on the side of the lamp holder body 11. By limiting the structure of the lamp holder 1, it can achieve a lightweight effect while also having a heat dissipation effect. When the fish luring lamp is in use, the heat generated can be discharged through the upper and lower ends of the heat dissipation cavity 52, the first heat dissipation port 13, the second heat dissipation port 14 and the first strip heat dissipation hole 15, so that the generated heat can be discharged in a short time; further, a plurality of second strip heat dissipation holes 57 opposite to the heat dissipation cavity 52 are formed on the side of the heat dissipation holder body 51 to cooperate with the heat dissipation cavity 52 to quickly discharge the generated heat.
[0034] The lamp assembly 6 includes a lamp board 61 installed in the mounting groove 54, a plurality of light strips 62 arranged at intervals on the lamp board 61, a light-transmitting panel 63 arranged on the light board 61 opposite to the plurality of light strips 62, and a decorative panel 64 arranged in the mounting groove 54 and located on the top of the light board 61, wherein adjacent light strips 62 form an angle with each other, and the light board 61 is formed with a plurality of mounting surfaces 611 for mounting the light strips 62, respectively. The angles between the adjacent mounting surfaces 611 are such that the illumination range of the lamp assembly 6 is larger; specifically, the light-transmitting panel 63 is formed with a plurality of protruding outwards corresponding to the plurality of light strips 62. The protrusion 631 and multiple positioning blocks 632 formed on both sides thereof can be embedded in the relative positioning grooves 54, and the shape of the light-transmitting panel 63 is adapted to the structure formed by multiple mounting surfaces 611; further, a limiting groove 612 arranged around the mounting surface 611 is formed on the light board 61, and a limiting ring 633 that can be embedded in the limiting groove 612 is formed on the opposite surface of the light-transmitting panel 63 and the light board 61. Through the cooperation between the limiting groove 612 and the limiting ring 633, and the positioning groove 55 and the positioning block 632, the light-transmitting panel 63 can be quickly installed on the light board 61, and then the light-transmitting panel 63 is fixed to the light board 61 by screws.
[0035] The splicing mechanism 3 includes two splicing blocks 31 arranged on the opposite sides of the lamp holder 1 to the heat sink 5, a snap-in groove 32 extending inward from the side of the splicing block 31, and two snap-in strips 33 arranged on the heat sink 5 and capable of being respectively embedded in the relative snap-in grooves 32. Through the cooperation between the snap-in strips 33 and the relative snap-in grooves 32, the heat sink 5 and the lamp holder 1 can be quickly installed.
[0036] The connecting member 4 includes a connecting seat 41 movably arranged on the lamp holder 1, a fixing block 42 cooperating with the connecting seat 41, a locking bolt 43 arranged between the connecting seat 41 and the fixing block 42, and a fixing bolt 44 arranged on the connecting seat 41 and cooperating with the second heat dissipation port 14 bolt, wherein a fixing area 45 for fixing other components is formed between the connecting seat 41 and the fixing block 42, and a movable groove 16 for the connecting seat 41 to move is formed on the lamp holder 1. By setting the movable groove 16 and cooperating with the connecting seat 41, the position of the connecting seat 41 can be adjusted to adapt to different height usage requirements; in addition, the setting method of the lamp holder 1 enables it to have a heat dissipation effect while not affecting the installation and use of the connecting member 4.
[0037] The present application defines the structural composition of the fish-attracting lamp and arranges a plurality of light source modules 2 at intervals on the lamp holder 1 to ensure its use requirements. A heat dissipation channel 7 is formed between two adjacent light source modules 2 so that the heat generated by each light source module 2 can be quickly discharged when it is used. At the same time, the structural composition of the lamp holder 1 and the heat dissipation holder 5 is specifically defined so that the heat in the heat dissipation cavity 52 can be quickly discharged from all directions.
[0038] The above description is merely a preferred embodiment of the present invention and therefore cannot be used to limit the scope of implementation of the present invention. In other words, equivalent changes and modifications made according to the scope of application of the present invention and the contents of the specification should still fall within the scope of the present invention.
Claims
1. A surface fish attracting lamp with optimized heat dissipation, characterized by: It includes a lamp holder, a plurality of light source modules arranged on the lamp holder at intervals along the height direction, and a plurality of splicing mechanisms respectively arranged between the plurality of light source modules and the lamp holder. A heat dissipation channel is formed between two adjacent light source modules. The light source module includes a heat dissipation seat clamped with the lamp holder and a lamp assembly detachably arranged on the heat dissipation seat. The splicing mechanism is arranged between the heat dissipation seat and the lamp holder.
2. The surface fish attracting lamp with optimized heat dissipation according to claim 1, characterized in that: The heat sink comprises a heat sink body in a semi-enclosed structure, a heat sink cavity formed in the heat sink body, a plurality of heat sink fins spaced apart in the heat sink cavity, and a mounting groove on the outer surface of the heat sink body for mounting a lamp assembly.
3. The surface fish attracting lamp with optimized heat dissipation according to claim 2, characterized in that: The lamp holder includes a lamp holder body, a shielding plate arranged in the lamp holder body opposite to the heat dissipation cavity, a plurality of first heat dissipation openings arranged at intervals on the shielding plate opposite to the heat dissipation cavity, a plurality of second heat dissipation openings arranged on the lamp holder body opposite to the plurality of first heat dissipation openings, and a plurality of first strip-shaped heat dissipation holes arranged on the side of the lamp holder body.
4. The surface fish attracting lamp with optimized heat dissipation according to claim 3, characterized in that: A plurality of second strip-shaped heat dissipation holes are formed on the side of the heat dissipation seat body and are opposite to the heat dissipation cavity.
5. The surface fish attracting lamp with optimized heat dissipation according to claim 3, characterized in that: It also includes a connecting piece arranged on the lamp holder to connect with other components, the connecting piece includes a connecting seat movably arranged on the lamp holder, a fixing block cooperating with the connecting seat, a locking bolt arranged between the connecting seat and the fixing block, and a fixing bolt arranged on the connecting seat that can cooperate with the second heat dissipation port bolt, a fixing area for fixing other components is formed between the connecting seat and the fixing block, and a movable groove for the connecting seat to move is formed on the lamp holder.
6. The surface fish attracting lamp with optimized heat dissipation according to claim 2, characterized in that: The lamp assembly includes a lamp board installed in a mounting groove, a plurality of light strips arranged at intervals on the light board, and a light-transmitting panel arranged on the light board opposite to the plurality of light strips. The light-transmitting panel is formed with a plurality of protrusions protruding outwardly opposite to the plurality of light strips, and adjacent two light strips form an angle with each other.
7. The surface fish attracting lamp with optimized heat dissipation according to claim 6, characterized in that: The light board is formed with a plurality of mounting surfaces for mounting light strips, with two adjacent mounting surfaces forming an angle with each other. The shape of the light-transmitting panel is adapted to the structure formed by the plurality of mounting surfaces.
8. The surface fish attracting lamp with optimized heat dissipation according to claim 6, characterized in that: The heat sink further comprises two positioning grooves arranged opposite to each other on both sides of the mounting groove, and a plurality of positioning blocks which can be embedded in the positioning grooves are respectively formed on both sides of the light-transmitting panel.
9. The surface fish attracting lamp with optimized heat dissipation according to claim 1, characterized in that: The splicing mechanism includes two splicing blocks arranged on the opposite surfaces of the lamp holder and the heat sink, a clamping groove extending inward from the side of the splicing block, and two clamping strips arranged on the heat sink and respectively embedded in the opposite clamping grooves.
10. The surface fish attracting lamp with optimized heat dissipation according to claim 1, characterized in that: The light source module further includes two heat dissipation nets arranged at the upper and lower ends of the heat dissipation seat.