Intelligent bait
By integrating the design of intelligent fish bait, the problems of existing fish bait being prone to deterioration, difficult to simulate movements, and complicated to operate have been solved. It realizes multi-mode simulation of fish swimming, improves fishing efficiency, and reduces costs.
Patent Information
- Application Number
- CN202422979060.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-12-04
AI Technical Summary
Existing fish baits suffer from problems such as easy deterioration, difficulty in preservation, inability to simulate natural movements, waste of resources, and complexity of operation, especially in certain fishing scenarios where they cannot meet the needs.
A smart fish bait was designed, which uses components such as an electrical chamber, a transmission chamber, a tail swinging device, a water immersion sensor, a control circuit board, and a motor to autonomously sense the aquatic environment and simulate various swimming postures of real fish. Through reliable structural design and multi-mode switching, maintenance costs are reduced and operation convenience is improved.
It achieves realistic simulation of fish swimming in different fishing scenarios, improving fishing efficiency and enjoyment, extending service life, and reducing maintenance and usage costs.
Smart Images

Figure CN223639991U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fishing gear technology, and in particular to an intelligent fish bait. Background Technology
[0002] In fishing, the choice and use of bait are crucial for attracting fish. Traditional baits are mainly divided into natural baits and artificial baits. Natural baits, such as earthworms and corn, have natural smells and tastes that attract a variety of fish, but they are prone to spoilage, difficult to preserve, and hard to carry. Artificial baits are artificial lures made to mimic the food of fish or the fish themselves. While some artificial baits have realistic fish eyes and fins and can simulate certain shapes, colors, and textures, most require the angler to manipulate the fishing rod to simulate the movements of natural creatures. This demands a high level of skill from the angler and makes it difficult to maintain the simulation of natural movements for extended periods.
[0003] Currently, some electric plastic fishing lures exist on the market. However, these lures are usually one-piece, non-removable structures. Once the lure is damaged, the electric device cannot be reused, resulting in resource waste and increased operating costs. Furthermore, in certain fishing scenarios, such as when simulating a dead fish to attract fish with specific habits, existing lures often fail to meet the requirements. To address these issues, there is an urgent need for a new type of intelligent fishing lure that integrates multiple advantages, adapts to different fishing scenarios, and improves fishing efficiency and enjoyment. Utility Model Content
[0004] The core objective of this invention is to create an intelligent fish bait that integrates intelligent sensing, autonomous movement, multi-mode switching, and structural reliability. Through highly integrated and intelligent design, it automatically and accurately senses the aquatic environment and activates, simulating various swimming postures of real fish to strongly stimulate fish and attract them to bite. It also ensures durability and ease of maintenance, reducing operating costs, improving fishing efficiency and enjoyment, and reshaping the landscape of fish bait technology.
[0005] To achieve the above objectives, this utility model provides an intelligent fish bait comprising:
[0006] The electric compartment is a cylindrical structure with a rear sealing cover connected to the tail end via a threaded seal. The end of the rear sealing cover is provided with a hook for connecting the fishing line.
[0007] The battery is located inside the electrical compartment, near the rear sealing cover.
[0008] The motor is located inside the electrical compartment at one end away from the rear sealing cover, and its output shaft is connected to the transmission assembly.
[0009] The transmission assembly includes a transmission disc coaxially connected to the output shaft of the motor. An eccentric rod is provided on the side of the transmission disc away from the motor. A swing tail is slidably sleeved on the eccentric rod. A rectangular opening groove is provided at the end of the swing tail. The eccentric rod is slidably embedded in the rectangular opening groove. A transmission chamber is sleeved on the outside of the swing tail. The transmission chamber is sealed to the electrical chamber.
[0010] Water immersion sensor, installed outside the electrical compartment;
[0011] The control circuit board is located inside the electrical compartment;
[0012] The switch button is located on the side wall of the transmission compartment.
[0013] The electrical compartment is equipped with three-color indicator lights corresponding to three working modes.
[0014] Furthermore, the battery can be a rechargeable battery or a disposable battery.
[0015] Furthermore, the transmission disc is connected to the motor output shaft via a key or a tight fit.
[0016] Furthermore, the sliding connection between the eccentric rod and the swing tail is equipped with a wear-resistant lubrication structure.
[0017] Furthermore, the sealed connection between the electrical compartment and the transmission compartment is achieved using rubber sealing rings or sealant.
[0018] Furthermore, the water immersion sensor is electrically connected to the control circuit board to detect whether the bait is in contact with water and transmit the signal to the control circuit board to control the motor to work.
[0019] Furthermore, the control circuit board has multiple preset control modes, which can be switched via a switch button to adjust the motor speed and working time.
[0020] The above-mentioned utility model adopts the following technical solution:
[0021] Overall structural layout
[0022] The main structure of the intelligent fishing bait includes an electrical chamber, a transmission chamber, a swivel tail, a water immersion sensor, a switch button, a battery, a control circuit board, a motor, a transmission assembly including a transmission disc and an eccentric rod, a rear sealing cover, and a hook. The cylindrical design of the electrical chamber is superior, with a threaded connection at the tail end to the rear sealing cover, ensuring a tight seal and easy installation and removal. The hook is firmly secured to the rear sealing cover, providing a reliable fulcrum for the bait to remain suspended in the water and for force transmission, thus ensuring the mechanical stability of the fishing.
[0023] Internal coordination of electrical warehouse
[0024] Inside the electrical compartment, the battery is positioned near the rear sealed cover. Depending on power requirements, either rechargeable lithium batteries or disposable AAA lead-acid batteries can be selected. A custom-designed battery holder secures the battery, and spring-loaded electrodes ensure tight contact, preventing displacement and ensuring uninterrupted power supply. The motor is located at the other end of the electrical compartment, with its output shaft keyed to a transmission disc. The keyway is precision-machined, ensuring a tight fit and stable, accurate force transmission, as well as resistance to impact and vibration. The eccentric rod slides into the rectangular slot at the end of the swivel tail. The slot wall coating reduces friction and allows for precise tolerance control. A lubrication medium slot is also included for oil replenishment, ensuring smooth and long-lasting movement. This forms a highly efficient power transmission chain, providing stable power for the lifelike swimming motion of the swivel tail.
[0025] Transmission housing and sealing system
[0026] The transmission chamber, with its tail-like design based on fluid dynamics, reduces water flow disturbance and helps the bait move naturally and gracefully. Between the electrical chamber and the transmission chamber, a multi-lip design of the rubber sealing ring increases sealing redundancy, or high-performance silicone sealant forms a reliable sealing barrier to prevent penetration and corrosion, creating a stable microenvironment for electrical components and ensuring the lifespan and performance of the electronic system.
[0027] External functional unit integration
[0028] The water immersion sensor is located outside the electrical compartment. The probe is encapsulated with a special waterproof and breathable membrane and made of sensitive materials, making it highly sensitive to water immersion. The signal is transmitted to the control circuit board without loss via a shielded cable, resisting electromagnetic noise and laying the foundation for intelligent bait triggering. The switch button is embedded in the side wall of the transmission compartment, with an ergonomic design for easy operation. The mechanical microswitch is equipped with a waterproof shell and is reliably electrically connected to the control circuit board to achieve mode switching. It offers excellent operating feel, fast response, and good waterproofing, making it convenient for anglers to accurately adjust their fish-attracting strategies.
[0029] Intelligent control logic
[0030] The control circuit board integrates a high-performance microcontroller, drive module, storage unit, and signal conditioning circuit. After the water immersion sensor signal is triggered, the motor is driven according to a preset multi-mode algorithm. Mode 1 is a strong high-speed drive that simulates a rapidly swimming baitfish to attract predatory fish; Mode 2 is a stable low-speed drive that simulates a leisurely swimming state to attract wary fish; Mode 3 is a complex speed-changing program that simulates sick, weak, or playful fish. Each mode is indicated by a multi-color LED and a light guide structure, allowing anglers to switch modes flexibly according to the fish's behavior and intelligently control the entire fishing process to increase the bite rate.
[0031] Beneficial effects
[0032] 1. This intelligent fish bait uses intelligent sensing and dynamic simulation. When placed inside the fish's body, it can realistically reproduce the various swimming patterns of real fish, expanding the range of fish attracted and increasing its attractiveness, thus helping anglers achieve better fishing results.
[0033] 2. Modular design and easy-to-replace battery, coupled with reliable sealing and high-quality transmission components, extend service life and reduce maintenance costs. Simulation tests show that the cost per use is greatly reduced, making it economical and practical.
[0034] 3. One-click mode switching and intuitive indicator lights eliminate the need for complicated settings. Anglers can adjust their strategies in real time according to water conditions, fish species, weather, etc., simplifying the fishing process, improving comfort and efficiency, and reshaping the fishing practice from the perspective of ease of operation.
[0035] The above description is merely an overview of the technical solution of this utility model. In order to better understand the technical means of this utility model and to implement it in accordance with the contents of the specification, and to make the above and other objects, features and advantages of this utility model more apparent and understandable, preferred embodiments are described below in detail with reference to the accompanying drawings. Attached Figure Description
[0036] Figure 1 This is a three-dimensional structural diagram of an intelligent fish bait proposed in this utility model;
[0037] Figure 2 This is a schematic diagram of the internal cross-sectional structure of an intelligent fish bait proposed in this utility model;
[0038] Figure 3 This is an exploded view structural diagram of an intelligent fish bait proposed in this utility model;
[0039] Figure 4 This is a schematic diagram of a water immersion sensor and switch button structure for an intelligent fish bait proposed in this utility model;
[0040] In the diagram: 1. Electrical compartment; 3. Transmission compartment; 4. Swing tail; 5. Water immersion sensor; 6. Switch button; 7. Battery; 8. Control circuit board; 9. Motor; 10. Transmission assembly; 11. Transmission disc; 1101. Eccentric rod; 12. Rear sealing cover; 13. Hook. Detailed Implementation
[0041] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0042] Example 1, referring to Figures 1 to 4 A smart fish bait
[0043] I. Overall Structure and Assembly
[0044] (I) Installation of electrical compartment and components
[0045] The core of this intelligent fish bait is a cylindrical electrical chamber 1. A battery 7 is securely mounted near the tail end of the electrical chamber 1 via a threaded seal connection to one end of a sealing cap 12. This battery can be a common 18650 rechargeable lithium battery or multiple AAA batteries, depending on the design power requirements. A motor 9 is precisely mounted at the other end of the electrical chamber 1, with its output shaft connected to the transmission assembly. A key component of the transmission assembly—a transmission disc 11—is coaxially fixed to the output shaft of the motor 9 via a key or tight fit, ensuring stable operation and efficient power transmission. An eccentric rod 1101 is located on the side of the transmission disc 11 facing away from the motor 9. A rectangular slot at the end of the wagging tail 4 slides and nests with the eccentric rod 1101, providing a reliable motion pair for the wagging tail 4. A wear-resistant lubrication structure, such as a PTFE coating, can be provided between the slot and the eccentric rod 1101 to reduce friction and extend lifespan. The electrical chamber 1 contains a built-in control circuit board 8, which integrates a microcontroller and drive circuitry. Through circuitry, it interacts with the motor 9, water immersion sensor 5, etc., coordinating overall operation and precisely controlling the working mode of the motor 9 according to program logic and sensor signals.
[0046] (II) Transmission chamber and sealing connection
[0047] The tail section 4 is covered by the transmission chamber 3, and the two are compatible. The electrical chamber 1 and the transmission chamber 3 are sealed together at the joint by a rubber sealing ring. The sealing ring is embedded in the groove of the outer wall of the electrical chamber 1 or coated with sealant to enhance waterproofing and dustproofing, preventing external factors from damaging the internal electrical components and ensuring stable and reliable circuitry. The switch button 6 is properly installed on the side wall of the transmission chamber 3. Its layout is convenient for user operation. It is connected to the control circuit board 8 via a circuit. The preset mode of the control circuit board 8 is switched according to the number of presses, thereby adjusting the speed and working period of the motor 9. The rear sealing cover 12 is fixed to the hook part 13 at its tail end to receive the fishing line and bait. Its material is strong enough to withstand the fishing force, and its design takes into account both lightness and durability, preventing accidental detachment or damage during fishing.
[0048] II. Working Principle and Process
[0049] (a) Water-sensing activation
[0050] The bait has a three-color indicator light and three operating modes. Pressing switch button 6 enters mode 1 (green light illuminates), indicating fast motor operation. Pressing switch button 6 again enters mode 2 (blue light illuminates), indicating low motor operation. Pressing switch button 6 again enters mode 3 (red light illuminates), where the motor starts operating after the programmed time, moving at the preset frequency. Turn on the switch and preset the motor operation commands.
[0051] In use, the entire device of this invention is embedded in the fish's body (the fish body referred to here is the carcass of a dead fish). The external water immersion sensor 5 of the electrical compartment 1 sensitively captures the water environment signal and immediately converts it into an electrical signal, which is then fed to the control circuit board 8. The control circuit board 8 analyzes and processes the signal according to a preset program. If the system is in a power-on pending trigger state, this signal triggers the start command, driving the motor 9 to operate according to the selected mode. This water immersion sensor 5 has high sensitivity and fast response characteristics, accurately identifying complex aquatic environments, preventing false triggering or failure, and ensuring reliable system startup.
[0052] (ii) Motor-driven tail swing motion
[0053] Motor 9 receives commands and rotates, transmitting power to the tail swing 4 via transmission disc 11 and eccentric rod 1101. The eccentric rod 1101's circular motion drives the tail swing 4 to oscillate back and forth along a rectangular opening. The amplitude and frequency of the oscillation are limited by parameters such as motor 9's rotational speed, eccentricity, and transmission ratio, synchronously driving the tail end of the fish to simulate the posture of a live fish swimming in the water. Multiple modes can be switched via control circuit board 8, allowing selection of motor 9's fast, low-speed, or timed variable-speed modes based on the fishing scenario and target fish species. High-speed mode attracts highly active and aggressive fish; low-speed mode attracts wary and slow-moving fish; timed variable-speed mode increases the randomness and universality of attracting fish, simulating the flexible and varied swimming habits of real fish and increasing the probability of catching a fish.
[0054] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. An intelligent fishing lure, characterized by, The utility model relates to a fishing lure, including: An electric bin (1) is a cylindrical structure, and a rear sealing cover (12) is threadedly and sealingly connected to the tail end of the electric bin (1), and the rear sealing cover (12) is provided with a hook portion (13) at one end for connecting a fishing line; A battery (7) is arranged inside the electric bin (1) close to one end of the rear sealing cover (12); A motor (9) is arranged inside the electric bin (1) away from the rear sealing cover (12), and the output shaft of the motor (9) is connected to a transmission assembly (10); The transmission assembly (10) comprises a transmission disc (11) coaxially connected to the output shaft of the motor (9), and the transmission disc (11) is provided with an eccentric rod (1101) away from the motor (9) on one side; the eccentric rod (1101) is slidably sleeved with a tail fin (4), the tail fin (4) is provided with a rectangular open slot at one end, the eccentric rod (1101) is slidably embedded in the rectangular open slot, and the tail fin (4) is externally sleeved with a transmission bin (3), and the transmission bin (3) is sealingly connected to the electric bin (1); A water immersion sensor (5) is arranged outside the electric bin (1); A control circuit board (8) is arranged inside the electric bin (1); A switch button (6) is arranged on the side wall of the transmission bin (3); Three color indicator lamps are arranged on the electric bin (1) to correspond to three working modes.
2. The smart fishing lure of claim 1, wherein: The battery (7) can be a rechargeable battery or a disposable battery.
3. The smart fishing lure of claim 1, wherein: The transmission disc (11) and the output shaft of the motor (9) are connected by a key or a tight fit.
4. The smart fishing lure of claim 1, wherein: The sliding connection part of the eccentric rod (1101) and the tail fin (4) is provided with a wear-resistant lubricating structure.
5. The smart fishing lure of claim 1, wherein: The sealing connection between the electric bin (1) and the transmission bin (3) is realized by using a rubber sealing ring or sealing glue.
6. The smart fishing lure of claim 1, wherein: The water immersion sensor (5) is electrically connected to the control circuit board (8) to detect whether the bait is in contact with water and transmit a signal to the control circuit board (8) to control the operation of the motor (9).
7. The smart fishing lure of claim 1, wherein: The control circuit board (8) is provided with multiple control modes, which are switched by the switch button (6) to adjust the rotating speed and working time of the motor (9).