A new electronic buoy

CN224638863UActive Publication Date: 2026-08-18QUANZHOU LINHANG FISHING TACKLE CO LTD
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Patent Information

Application Number
CN202521339522.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-27
Publication Date
2026-08-18
Estimated Expiration
2035-06-27

AI Technical Summary

Technical Problem

钓鱼的场景有各种各样,如江河缓流区域、静水池塘轻口区域、近海礁石区域等,对此单一造型的电子浮标难以适用多种不同垂钓场景

Benefits of technology

[0008]通过采用前述技术方案,本实用新型的有益效果是:通过将电子浮标设计成可更换浮漂主体并且配备外壳呈包含细长流线型、水滴型、球型、扁平条型中的两种或两种以上不同造型的浮漂主体,从而使得用户可用水滴型造型的浮漂主体于江河缓流区域使用利用水滴型腹部宽大重心下沉来垂钓鲤鱼、草鱼等;可用细长流线型造型的浮漂主体于静水池塘轻口区域使用利用细长流线型长径比3:1,顶部细尖来垂钓鲫鱼、罗非鱼等,可用球型造型的浮漂主体于中上层浮钓使用利用球型的球形主体具有浮力储备30%来垂钓鲢鳙、翘嘴等,可用扁平条型造型的浮漂主体于近海礁石区域使用利用扁平条型底部配重环抗浪结构来垂钓海鲈鱼、石斑鱼等,此外还可在浮漂主体表面涂设有荧光层使得浮漂主体在夜间进行夜钓进行可视作钓,可广泛推广应用。

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Abstract

The utility model relates to a buoy, provide a novel electronic buoy, including float tail, float main part, float foot, the float main part is multiple and each float main part all is provided with positive and negative pole conductive circuit, LED lamp and needle tube battery, each float main part lower extreme all is provided with the connecting seat of sealed connection, the connecting seat free end of float foot and each float main part is detachable sealed connection, the one end that connecting seat is located in the float main part is equipped with the cavity of accommodating needle tube battery, needle tube battery is embedded in the cavity of connecting seat and needle tube battery is electrically connected with positive and negative pole conductive circuit, the shell of multiple float main part contains at least two or more than two different shapes in elongated streamline type, drop type, spherical, flat strip type. The utility model solves the problem that the single modeling electronic buoy of prior art is difficult to apply to various different fishing scenes.
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Description

Technical Field

[0001] This utility model relates to buoys, and more particularly to a novel electronic buoy. Background Technology

[0002] Fishing is a popular recreational activity, and many people choose to fish at night due to limited daytime time. Therefore, there are many electronic floats on the market suitable for night fishing. Currently, most electronic fishing floats consist of a stem, body, light-emitting device, and tail. The light-emitting device is located within the body, while the tail and stem are fixed to opposite ends of the body. One end of the tail is connected to the light-emitting device inside the body, and the other end extends outside the body. Fishing scenarios are diverse, such as slow-flowing rivers, still ponds with light bites, and near-shore reef areas. A single-design electronic float is difficult to adapt to various fishing scenarios, making it inconvenient for fishing enthusiasts to experience different fishing conditions. Utility Model Content

[0003] Therefore, in view of the above problems, this utility model proposes a new type of electronic float with novel structure, convenient use, and interchangeable float body according to different fishing scenarios.

[0004] To solve this technical problem, the present invention adopts the following solution: a novel electronic buoy, comprising a float tail, a float body, and a float foot, wherein there are multiple float bodies, and each float body is provided with positive and negative conductive circuits and LEDs. The float and its needle battery are included. Each float body has a hollow conduit extending to the positive and negative conductive circuit at its upper end. The hollow conduit is fitted with a rubber sealing sleeve at the upper end of the float body. The float tip can be inserted into the hollow conduit of each float body through the rubber sealing sleeve and guides the light of the LED light connected to the positive and negative conductive circuit. Each float body has a sealed connecting seat at its lower end. The float foot can be detachably and sealedly connected to the free end of the connecting seat of each float body. One end of the connecting seat inside the float body has a cavity for accommodating the needle battery. The needle battery is embedded in the cavity of the connecting seat and is electrically connected to the positive and negative conductive circuit. The end of the connecting seat away from the float body has a connecting post with a sealing ring. The float foot has an installation groove that matches the connecting post of the connecting seat. The float foot can be detachably and sealedly connected to the connecting post of the connecting seat through the installation groove. The outer shell of the multiple float bodies includes at least two or more different shapes such as slender streamline, teardrop, spherical, and flat strip.

[0005] Further improvements include a second mounting groove at the lower end of each float body that matches the cavity end of the connecting seat. A second sealing ring is fitted on the outer diameter of the cavity end of the connecting seat. The cavity end of the connecting seat is detachably and sealed to the second mounting groove via the second sealing ring.

[0006] Further improvements include coating some or all of the float's main body surface with a fluorescent layer.

[0007] In a further improvement, the mounting groove of the float foot is an internally threaded hole, the connecting post of the connecting seat is provided with a matching external thread, and the float foot is connected to the connecting seat via a sealing ring and a sealing thread.

[0008] By adopting the aforementioned technical solution, the beneficial effects of this utility model are as follows: By designing the electronic float as a replaceable float body and equipping it with a shell in two or more different shapes, including slender streamlined, teardrop, spherical, and flat strip shapes, users can use the teardrop-shaped float body in slow-flowing river areas to fish for carp, grass carp, etc., taking advantage of the teardrop shape's wide belly and sinking center of gravity; and can use the slender streamlined float body in still ponds with light bites, taking advantage of the slender streamlined shape... With a length-to-diameter ratio of 3:1 and a pointed tip, this float is suitable for fishing for crucian carp and tilapia. A spherical float body can be used for mid-to-upper-level surface fishing, utilizing its 30% buoyancy reserve to fish for silver carp, bighead carp, and mandarin fish. A flat, strip-shaped float body can be used in nearshore reef areas, utilizing its wave-resistant bottom weight ring to fish for sea bass and grouper. Furthermore, a fluorescent coating can be applied to the surface of the float body, allowing for visible night fishing. This design is widely applicable. Attached Figure Description

[0009] Figure 1 This is a structural schematic diagram of an embodiment of the present utility model;

[0010] Figure 2 This is a partially exploded structural diagram of an embodiment of the present invention;

[0011] Figure 3 This is a structural schematic diagram of the connector of this utility model. Detailed Implementation

[0012] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments.

[0013] refer to Figures 1-3The preferred embodiment of this novel electronic buoy includes a float tail 1, a float body 2, and a float foot 3. Multiple float bodies 2 are included, each containing a positive and negative conductive circuit 4, an LED light 5, and a syringe battery 6. Each float body 2 has a hollow conduit 7 extending to the positive and negative conductive circuit 4 at its upper end. A rubber sealing sleeve is fitted onto the upper end of the hollow conduit 7. The float tail 1 is detachably inserted into the hollow conduit 7 of each float body 2 through the rubber sealing sleeve and guides light to the LED light 5 connected to the positive and negative conductive circuit 4. Each float body 2 has a sealed connecting seat 8 at its lower end. The float foot 3 is detachably and sealed to the free end of the connecting seat 8 of each float body 2. One end of the connecting seat 8 inside the float body 2 has a cavity for accommodating the syringe battery 6. The tube battery 6 is embedded in the cavity of the connector 8 and is electrically connected to the positive and negative conductive circuits 4. The end of the connector 8 away from the float body 2 is provided with a connecting post 81 and a sealing ring 82 is fitted on the connecting post 81. The float foot 3 is provided with a mounting groove that matches the connecting post 81 of the connector 8. The mounting groove of the float foot 3 is an internal threaded hole. The connecting post 81 of the connector 8 is provided with a matching external thread. The float foot 3 is connected to the connecting post 81 of the connector 8 via the sealing ring 82. The outer shells of the multiple float bodies 2 include four different shapes: slender streamlined shape 21, teardrop shape 22, spherical shape 23, and flat strip shape 24.

[0014] Each float body 2 has a second mounting groove at its lower end that is adapted to the cavity end of the connecting seat 8. The outer diameter of the cavity end of the connecting seat 8 is fitted with a second sealing ring. The cavity end of the connecting seat 8 is detachably and sealed to the second mounting groove at the lower end of each float body 2 via the second sealing ring. The detachable connection between the connecting seat 8 and the lower end of the float body 2 facilitates the replacement of the needle battery 6. At the same time, an electrical connection connector 9 is provided inside the lower end of the float body 2 above the needle battery 6, which can be plugged and plugged into the needle battery 6 for electrical connection. The electrical connection connector 9 is electrically connected to the positive and negative conductive circuit 4.

[0015] In the above embodiments, the outer shell of the multiple float bodies can include two or more different shapes such as slender streamlined, teardrop, spherical, and flat strip. A fluorescent layer can also be added to part or all of the surface of the float body to facilitate its use as an electronic float for night fishing.

[0016] Although the present invention has been specifically shown and described in conjunction with preferred embodiments, those skilled in the art should understand that various changes in form and detail may be made to the present invention without departing from the spirit and scope of the present invention as defined in the appended claims, and all such changes shall be within the scope of protection of the present invention.

Claims

1. A novel electronic buoy, comprising a float tip, a float body, and a float stem, characterized in that: The float body consists of multiple float bodies, and each float body is equipped with positive and negative conductive circuits and LEDs. The float and its needle battery are included. Each float body has a hollow conduit extending to the positive and negative conductive circuit at its upper end. The hollow conduit is fitted with a rubber sealing sleeve at the upper end of the float body. The float tip can be inserted into the hollow conduit of each float body through the rubber sealing sleeve and guides the light of the LED light connected to the positive and negative conductive circuit. Each float body has a sealed connecting seat at its lower end. The float foot can be detachably and sealedly connected to the free end of the connecting seat of each float body. One end of the connecting seat inside the float body has a cavity for accommodating the needle battery. The needle battery is embedded in the cavity of the connecting seat and is electrically connected to the positive and negative conductive circuit. The end of the connecting seat away from the float body has a connecting post with a sealing ring. The float foot has an installation groove that matches the connecting post of the connecting seat. The float foot can be detachably and sealedly connected to the connecting post of the connecting seat through the installation groove. The outer shell of the multiple float bodies includes at least two or more different shapes such as slender streamline, teardrop, spherical, and flat strip.

2. The novel electronic buoy according to claim 1, characterized in that: Each float body has a second mounting groove at its lower end that is adapted to the cavity end of the connecting seat. The outer diameter of the cavity end of the connecting seat is fitted with a second sealing ring. The cavity end of the connecting seat is detachably and sealed to the second mounting groove via the second sealing ring.

3. The novel electronic buoy according to claim 1, characterized in that: Some or all of the surface of the float body is coated with a fluorescent layer.

4. The novel electronic buoy according to claim 1, characterized in that: The mounting groove of the float foot is an internal threaded hole, and the connecting post of the connecting seat is provided with a matching external thread. The float foot is connected to the connecting seat via a sealing ring and a sealing thread.