Miniaturized wireless remote control lure fishing power float

By integrating a miniaturized wireless remote-controlled lure fishing power float with a communication module and propulsion components, the problem of the inability to adjust the line position of lure fishing tackle has been solved. It realizes automatic adjustment of the fishing line and simulation of the lure's movement, improving the accuracy and fun of fishing.

CN122296283APending Publication Date: 2026-06-30陈彩月
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-03-21
Publication Date
2026-06-30

AI Technical Summary

Technical Problem

Existing lure fishing gear cannot adjust the line release position according to the angler's needs, which restricts the angler's fishing position, prevents them from following the movement of large fish, and affects the catch rate.

Method used

Design a miniaturized wireless remote-controlled lure fishing power float that integrates a communication module, a control module, and a propulsion component. The carrier plate is moved on the water surface by the remote control. Combined with an electric reel and line reel simulation component, it realizes automatic adjustment and synchronous movement of the fishing line to simulate the movement of the lure.

Benefits of technology

It improves the accuracy and enjoyment of fishing with the line, allowing the angler to adjust the line position according to their needs, increasing the probability of catching fish. It is suitable for beginners and allows them to experience the fun of playing fish remotely and electric fishing.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a miniaturized wireless remote-controlled lure fishing power float, relating to the field of fishing tackle. This miniaturized wireless remote-controlled lure fishing power float integrates a communication module, a control module, and a propulsion component on a carrier plate. During use, anglers do not need to rely on precise casting; they only need to use the propulsion component to roughly send the carrier plate to the vicinity of the target water area. Then, they can control the propulsion component in real time via a remote controller to drive the carrier plate to any specified coordinate. An electric line reel, in conjunction with a line reel simulation component, automatically releases or retrieves the fishing line, ensuring that the fishing line is always coordinated and synchronized with the movement of the float. This makes the movement of the lure at the end of the line more closely resemble the movements of a real animal, significantly improving fishing accuracy and enjoyment. Furthermore, it allows mechanical control of the lure's movement, replacing manual control, and increases the probability of catching fish by enhancing the realism of the lure.
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Description

Technical Field

[0001] This invention relates to fishing gear technology, specifically to a miniaturized wireless remote-controlled powered lure fishing float. Background Technology

[0002] Lure fishing is a fishing method in which the angler stands on the shore, holding a light fishing rod, and accurately casts the lure into the vast waters time and time again. By manipulating the lure to simulate the struggle of small creatures, the angler lures the lurking ferocious predators to launch an attack.

[0003] However, the most challenging aspect of lure fishing is that, limited by the fishing spot, anglers are confined to a narrow stretch of waterline and cannot follow the movement of large fish as they would with a boat. When catching a large fish, the limited line length means the vast water surface becomes the fish's playground. Because there isn't enough space to let out a long line in the traditional sense, anglers cannot exhaust the fish by reeling in and letting out the line; they can only rely on the rod's elasticity and braking system to fight it off. When the fish drags the line into deeper water, the angler faces the risk of the line snapping while simultaneously trying to engage the fish in place, often finding themselves in a passive position due to their limited positioning.

[0004] As can be seen from the above, although existing lure fishing tackle can meet the angler's needs for casting and playing fish, the position of the fishing line is still limited to the angler's standing position. The angler cannot adjust the position of the fishing line according to the needs of use. Therefore, it is necessary to design a lure fishing auxiliary device to help the angler adjust the position of the fishing line according to the needs. Summary of the Invention

[0005] The purpose of this invention is to provide a miniaturized wireless remote-controlled power float for lure fishing, in order to solve the problem that the line placement position of existing lure fishing gear cannot be adjusted according to the angler's needs.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a miniaturized wireless remote-controlled lure fishing power float, comprising:

[0007] A carrier plate on which a battery pack is mounted;

[0008] A remote control assembly, connected to the carrier board, includes a communication module and a control module;

[0009] A propulsion assembly, connected to the carrier plate, is used to provide propulsion and steering power to the carrier plate;

[0010] An electric reel is rotatably connected to the carrier plate, with fishing line wound around the surface of the reel and a positioning coil sleeved on the fishing line connected to the carrier plate.

[0011] The line reeling and casting simulation assembly is mounted on the carrier plate and includes a simulation motor fixedly mounted on the carrier plate and a swing rod fixedly mounted on the output shaft of the simulation motor. Both ends of the swing rod are connected to swing coils, and the fishing line passes through the two swing coils.

[0012] Preferably, the carrier plate is circular, and a V-shaped notch is provided on one side of the carrier plate, through which the fishing line enters the water.

[0013] Preferably, the communication module is a radio communication module.

[0014] Preferably, the propulsion assembly includes a drive motor fixedly mounted on the carrier plate, a housing fixedly mounted on the drive motor, and a propulsion propeller rotatably connected to the end of the housing. A universal joint is provided for the transmission connection between the output shaft of the drive motor and the propulsion propeller.

[0015] Preferably, there are two propulsion components, which are respectively disposed on both sides of the carrier plate. The drive motor is installed on the upper side of the carrier plate, and the propulsion propeller is installed on the lower side of the carrier plate.

[0016] Preferably, the cross-sections of the swing coil and the positioning coil are both circular.

[0017] Preferably, the carrier plate is a hollow thin-shell structure made of carbon fiber composite material.

[0018] Preferably, the carrier plate has a threading hole.

[0019] Compared with existing technologies, the miniaturized wireless remote-controlled lure fishing power float provided by this invention integrates a communication module, a control module, and a propulsion component on a carrier plate. This results in a highly integrated, small, and portable overall structure. During use, anglers do not need to rely on precise casting; they only need to use the propulsion component to roughly place the carrier plate near the target water area. Then, they can control the propulsion component in real time via a remote controller to precisely move the carrier plate to any designated coordinate. An electric line reel, in conjunction with a simulated line reel component, automatically releases or retrieves the fishing line, ensuring that the fishing line is always coordinated and synchronized with the float's movement. This makes the movement of the lure at the end of the line more closely resemble the movements of real animals, significantly improving fishing accuracy and enjoyment. Furthermore, it allows for mechanical control of the lure's movement, replacing manual control and increasing the probability of catching fish by enhancing the realism of the lure.

[0020] By setting up two sets of propulsion components, the carrier plate can be flexibly turned by the power difference between the two propulsion components, driving the carrier plate to move precisely to any specified water area coordinate, completely breaking the limitation of the fishing position on the line release position;

[0021] This device is beginner-friendly. Lure fishing novices do not need to practice casting techniques repeatedly. They can start lure fishing immediately using this device. The device can accurately deliver the lure to the target water area through remote control. At the same time, the device simulates the lure casting technique and automatically completes the lure casting. Users can experience the fun of playing fish remotely and electric fishing. Attached Figure Description

[0022] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this invention. For those skilled in the art, other drawings can be obtained based on these drawings.

[0023] Figure 1 A schematic diagram of the overall structure provided for an embodiment of the present invention. Figure 1 ;

[0024] Figure 2 A schematic diagram of the overall structure provided for an embodiment of the present invention. Figure 2 ;

[0025] Figure 3 This is a schematic diagram of the cross-sectional structure of the carrier plate provided in an embodiment of the present invention;

[0026] Figure 4 This is a top view of the overall structure provided for an embodiment of the present invention.

[0027] Explanation of reference numerals in the attached figures:

[0028] 1. Carrier plate; 2. Battery pack; 3. Communication module; 4. Control module; 5. Propulsion assembly; 51. Drive motor; 52. Housing; 53. Propulsion propeller; 54. Universal joint; 6. Electric reel; 7. Fishing line; 8. Simulation motor; 9. Swing rod; 10. Swing coil; 11. Positioning coil; 12. Threading hole. Detailed Implementation

[0029] To enable those skilled in the art to better understand the technical solution of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings.

[0030] As attached Figure 1 To be continued Figure 4 As shown:

[0031] Example:

[0032] This invention provides a miniaturized wireless remote-controlled powered lure fishing float, comprising:

[0033] Carrier plate 1, on which a battery pack 2 is installed, the battery pack 2 is electrically connected to a communication module 3, a control module 4, a propulsion component 5, an electric take-up and release drum 6, and a take-up and release simulation component;

[0034] The remote control assembly is connected to the carrier plate 1 and includes a communication module 3 and a control module 4. The angler can establish a connection with the float through the remote control and the communication module 3, and control the float to move according to the control command through the control module 4.

[0035] The propulsion component 5 is connected to the carrier plate 1 and is used to provide propulsion and steering power to the carrier plate 1;

[0036] An electric reel 6 is rotatably connected to the carrier plate 1, and a fishing line 7 is wound around the surface of the reel. A positioning coil 11 is connected to the carrier plate 1 and sleeved on the fishing line 7.

[0037] The line reeling and casting simulation assembly is mounted on the carrier plate 1 and includes a simulation motor 8 fixedly mounted on the carrier plate 1 and a swing rod 9 fixedly mounted on the output shaft of the simulation motor 8. Both ends of the swing rod 9 are connected to swing coils 10, and the fishing line 7 passes through the two swing coils 10.

[0038] As can be seen from the above, by integrating the communication module 3, control module 4, and propulsion component 5 on the carrier plate 1, anglers do not need to rely on precise casting during use. They only need to use the propulsion component 5 to roughly send the carrier plate 1 to the vicinity of the target water area. Then, they can use the remote controller to control the propulsion component 5 in real time to drive the carrier plate 1 to move precisely to any specified coordinate. The electric reel 6, together with the reel simulation component, automatically releases or retracts the fishing line 7, ensuring that the fishing line 7 is always coordinated and synchronized with the movement of the float. This makes the movement of the artificial lure at the end of the fishing line 7 more realistic, which not only greatly improves the accuracy and fun of fishing, but also allows the artificial lure to be controlled mechanically instead of manually, thereby increasing the probability of catching fish by improving the realism of the artificial lure.

[0039] Once the carrier plate 1 is moved to the designated position on the water surface, the angler can control the electric reel 6 to rotate and release the fishing line 7, allowing the artificial bait at the end of the fishing line 7 to enter the water as bait. After the fishing line 7 has been released to a certain length, the angler can control the electric reel 6 to stop rotating. At this time, the angler can control the output shaft of the analog motor 8 to reciprocate through the remote control and control module 4. The output shaft of the analog motor 8 can drive the swing rod 9 and the two swing coils 10 to rotate. The rotating swing rod 9 pulls the fishing line 7 through the swing coils 10, and the fishing line 7 drags the artificial bait to move intermittently on the water surface, making the artificial bait simulate the movements of animals such as frogs, thus improving the artificial bait's ability to attract fish.

[0040] The carrier plate 1 is circular, and a V-shaped notch is provided on one side of the carrier plate 1. The fishing line 7 enters the water through the V-shaped notch.

[0041] The carrier plate 1 adopts a circular design, mainly to reduce water resistance and make the float more flexible and smooth when turning and moving forward. At the same time, the rounded shape can also prevent snagging on aquatic plants or obstacles during casting or retrieval. The V-shaped notch on the carrier plate 1 is specially designed to precisely constrain and guide the release path of the fishing line 7. The fishing line 7 enters the water vertically or obliquely through the notch, which can ensure that the fishing line 7 is always away from the propeller of the propulsion component 5, preventing the line from being tangled or cut. At the same time, the guiding effect of the V-shaped notch can also reduce the friction between the fishing line 7 and the edge of the carrier plate, making the line release and retrieval process smoother, and ensuring that the fishing line 7 maintains a stable entry point in the water under different headings and retrieval angles, thereby improving the control reliability and fishing accuracy of the entire power float.

[0042] In one embodiment, the communication module 3 is a radio communication module. To meet the miniaturization requirements of the float, the communication module 3 and the control module 4 can be integrated into the same chip, which has the smallest size, lowest power consumption, and simplest development, making it most suitable for miniaturized floats.

[0043] If the STMicroelectronics STM32WL3R is used, it is a SoC optimized for wireless remote control scenarios. It integrates an Arm Cortex-M0+ core and a sub-GHz RF transceiver, eliminating the need for external RF chips. It supports nA-level shutdown mode and has a transmit power consumption of only 10mA (@10dBm), making it suitable for battery power. It supports 315 / 433 / 868 / 920MHz, making it compatible with radio regulations in different regions around the world. It has a QFN32 (5x5mm) package, which occupies a small board area. It has 6 independent wake-up pins, which can be used with various floating sensors to achieve ultra-fast wake-up.

[0044] Alternatively, you can choose the Juyuan Micro PL51WT020 chip, which is a domestically produced high-performance SOC that integrates a 2.4GHz transceiver and an 8051 core. It is suitable for remote control in the 2.4G band. It has a built-in hardware link layer, supports automatic retransmission and CRC check, and has strong anti-interference capabilities. It supports frequency hopping function, making it suitable for complex water environments. Its operating temperature ranges from -40℃ to 105℃, making it suitable for outdoor exposure or low-temperature environments.

[0045] The propulsion assembly 5 includes a drive motor 51 fixedly mounted on the carrier plate 1, a housing 52 fixedly mounted on the drive motor 51, and a propulsion propeller 53 rotatably connected to the end of the housing 52. A universal joint 54 is connected between the output shaft of the drive motor 51 and the propulsion propeller 53. The output shaft of the drive motor 51 can drive the propulsion propeller 53 to rotate through the universal joint 54, thereby pushing the carrier plate 1 forward through the rotating propulsion propeller 53.

[0046] Two propulsion components 5 are provided and are respectively located on both sides of the carrier plate 1. The transmission motor 51 is installed on the upper side of the carrier plate 1, and the propulsion propeller 53 is installed on the lower side of the carrier plate 1. The angler can control the carrier plate 1 to turn by controlling the two propulsion components 5 to operate at different power levels. For example, by controlling the power of the transmission motor 51 on the left side of the carrier plate 1 to increase the power of the transmission motor 51 on the right side to decrease the power of the transmission motor 51 on the right side, the carrier plate 1 can rotate to the right during the forward movement.

[0047] To minimize wear on the fishing line 7 caused by the swing coil 10 and the positioning coil 11, the cross-sections of the swing coil 10 and the positioning coil 11 are both circular.

[0048] The carrier plate 1 is a hollow thin-shell structure made of carbon fiber composite material or other engineering plastics. This material can achieve lightweight while ensuring sufficient strength and has excellent waterproof performance. Regardless of the material used, the surface must be treated with a strict waterproof coating (such as epoxy resin sealing), especially for wood materials. Otherwise, the weight will increase significantly after absorbing water and the buoyancy will decrease.

[0049] The carrier plate 1 has a threading hole 12, which allows the angler to thread the fishing line 7 from the fishing rod through the threading hole 12 and tie it to the carrier plate 1 to prevent the carrier plate 1 from being dragged away by fish from the effective range of the remote control signal.

[0050] The foregoing has only described certain exemplary embodiments of the present invention by way of illustration. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the foregoing drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A miniaturized wireless remote control lure fishing power float, characterized in that, include: Carrier plate (1), on which a battery pack (2) is mounted; The remote control assembly, connected to the carrier plate (1), includes a communication module (3) and a control module (4). The propulsion assembly (5) is connected to the carrier plate (1) and is used to provide propulsion and steering power to the carrier plate (1); An electric reel (6) is rotatably connected to the carrier plate (1), and a fishing line (7) is wound around the surface of the reel. A positioning coil (11) is connected to the carrier plate (1) and sleeved on the fishing line (7). The line reeling and casting simulation assembly is set on the carrier plate (1) and includes a simulation motor (8) fixedly installed on the carrier plate (1) and a swing rod (9) fixedly installed on the output shaft of the simulation motor (8). Both ends of the swing rod (9) are connected to swing coils (10), and the fishing line (7) passes through the two swing coils (10).

2. A miniaturized wireless remote control lure fishing power float according to claim 1, characterized in that The carrier plate (1) is circular, and a V-shaped notch is provided on one side of the carrier plate (1). The fishing line (7) enters the water through the V-shaped notch.

3. A miniaturized wireless remote control lure fishing power float according to claim 1, characterized in that, The communication module (3) is a radio communication module.

4. The miniaturized wireless remote control lure fishing power float of claim 1, wherein, The propulsion assembly (5) includes a drive motor (51) fixedly mounted on the carrier plate (1), a housing (52) fixedly mounted on the drive motor (51), and a propulsion propeller (53) rotatably connected to the end of the housing (52). A universal joint (54) is connected between the output shaft of the drive motor (51) and the propulsion propeller (53).

5. A miniaturized wireless remote control lure fishing power float according to claim 4, characterized in that Two propulsion components (5) are provided and are respectively located on both sides of the carrier plate (1). The drive motor (51) is installed on the upper side of the carrier plate (1), and the propulsion propeller (53) is installed on the lower side of the carrier plate (1).

6. The miniaturized wireless remote control lure fishing power float of claim 1, wherein, The cross-sections of the swing coil (10) and the positioning coil (11) are both circular.

7. The miniaturized wireless remote control lure fishing power float of claim 1, wherein, The carrier plate (1) is a hollow thin-shell structure made of carbon fiber composite material.

8. The miniaturized wireless remote control lure fishing power float of claim 1, wherein, The carrier plate (1) has a thread hole (12).