Intelligent automatic bottom-finding electronic float system
The intelligent automatic bottom-finding electronic float system uses a circuit board and locking mechanism to detect potential differences and control a hollow cup planetary motor, achieving automatic float adjustment and bottom finding. This solves the problem of poor bottom-finding accuracy of existing fishing floats and improves sensitivity and applicability.
Patent Information
- Application Number
- CN202310458944.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-26
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2043-04-26
AI Technical Summary
Existing methods for finding the bottom using fishing floats result in floats that are too large and heavy, reducing their sensitivity and making them unsuitable for complex waters in the wild, leading to poor accuracy in finding the bottom.
It adopts an intelligent automatic bottom-finding electronic float system, including a float tip, float body and mobile terminal. It uses a Bluetooth or WIFI communication module, microprocessor controller and line locking mechanism on the circuit board to control the hollow cup planetary motor by detecting the potential difference to achieve automatic float adjustment and bottom finding, which is suitable for a variety of fishing methods and waters.
It improves the sensitivity and bottom-finding accuracy of the float, is suitable for a variety of fishing methods and waters, has a simple structure and is easy to operate, and is suitable for a variety of fishing methods such as platform fishing, traditional fishing, jigging fishing, raft fishing, front rod fishing and surf rod long-distance casting.
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Figure CN117256576B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of fishing float, in particular to an intelligent automatic bottom-finding electronic float system. BACKGROUND
[0002] The fishing float is a tool for the reaction of the fish to the hook. People can not only determine the feeding condition of the fish through the action of the fishing float, so as to determine the timing of lifting the rod, but also determine what fish is biting the hook through the action of the fishing float, so the fishing float is an important part of fishing. The fishing float is mainly composed of a float tail, a float body and a float foot.
[0003] In the process of learning fishing, in addition to observing and finding a suitable fishing point, adjusting the float is also a key way to find fish. The first step of adjusting the float cannot be less than finding the bottom. In the existing life, the automatic bottom-finding is usually realized by clamping the main line through the principle of the upper and lower two magnets. However, this bottom-finding method often leads to the overlarge size and quality of the fishing float, and greatly reduces the sensitivity of the fishing float, so that the bottom-finding precision is poor and cannot be suitable for complex natural water areas in the wild. Therefore, the present application provides an intelligent automatic bottom-finding electronic float system. SUMMARY
[0004] The present application aims at the problems in the background art and provides an intelligent automatic bottom-finding electronic float system.
[0005] The technical scheme of the present application is an intelligent automatic bottom-finding electronic float system, which comprises a float tail, a float body and a mobile terminal. The top end of the float tail is provided with a first signal detection terminal. The first signal detection terminal is provided with an electrically connected wire inside the float tail. The end of the float tail away from the first signal detection terminal is provided with a second signal detection terminal and a ground terminal. The float tail is provided with a circuit board inside. The float body is provided with a lithium battery and a wire locking mechanism. The wire locking mechanism comprises a hollow cup planetary motor. The output end of the hollow cup planetary motor is provided with an angle positioning disc. The lower part of the angle positioning disc is provided with a spring. The outer side of the hollow cup planetary motor is provided with a float foot pipe. The inner circle of the float foot pipe is provided with a wire locking rod. The float foot pipe and the wire locking rod are both provided with through holes corresponding to the through holes. The through holes are provided with main lines.
[0006] Preferably, the end of the float tail close to the float body is provided with a thread. The end of the float body close to the float tail is provided with an internal thread. The float tail and the float body are provided in a detachable structure through the thread and the internal thread. The float tail is provided in a hollow shape. The electrically connected wire is installed corresponding to the inner wall of the float tail.
[0007] Preferably, the circuit board is provided with a Bluetooth or WIFI communication module, a micro-processing controller and an LED lamp, the micro-processing controller is provided with a position detection module, a time delay module, a gyroscope module, a forward and reverse control module, an overcurrent stop module and an LED indicator lamp control module.
[0008] Preferably, the outer ring of the lithium battery is provided with a battery box, the lithium battery is installed in the battery box, the bottom of the float tail is provided with a box cover, a pinhole is formed in one end of the battery box and the box cover, a thimble is arranged in the pinhole, and the thimble is installed in the pinhole.
[0009] Preferably, the installation end of one group of thimbles is provided with a connecting plate between the circuit board, one end of the group of thimbles is welded to the bottom of the circuit board through the connecting plate, and the other group of thimbles is installed in the connecting end of the hollow cup planetary motor.
[0010] Preferably, the hollow cup planetary motor is provided with a motor bin outside, a transmission shaft is arranged between the hollow cup planetary motor and the angle positioning disc, the output end of the hollow cup planetary motor is installed in one end of the transmission shaft, a limiting rod is arranged on the transmission shaft, the angle positioning disc is sleeved on the outer ring of the transmission shaft, and one end of the spring is installed in one side of the angle positioning disc.
[0011] Preferably, one end of the float leg pipe is installed in the inner wall of the float body, the wire locking rod is installed in the float leg pipe, and a gap is reserved between the outer ring of the wire locking rod and the inner ring of the float leg pipe.
[0012] Preferably, one end of the main line is installed in the via hole, a space bean and a lead sinker are arranged on the main line, and a fishhook is arranged at the other end of the main line.
[0013] Preferably, the mobile terminal is a smart phone, the mobile terminal is installed with an APP program, and the mobile terminal can send instructions to the Bluetooth or WIFI module in the float tail through the APP program.
[0014] Compared with the prior art, the present application has the following beneficial technical effects:
[0015] The setting of the wire locking mechanism can lock and release the main line, the setting of the Bluetooth or WIFI communication module and the micro-processing controller on the circuit board can detect the position of the float, so that the bottom can be accurately found, the float can be automatically adjusted and reset, the whole structure is simple, the operation is convenient, the sensitivity of the fishing float during use is greatly improved, and the fishing float is suitable for many fishing methods such as platform fishing, traditional fishing, teasing fishing, raft fishing, front rod fishing and long casting fishing, and is suitable for many water areas, so that the practicability is greatly improved on the basis of the existing technology. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is the overall structure schematic diagram of the present application;
[0017] Figure 2 It is the sectional view of the present application;
[0018] Figure 3 It is Figure 2 The enlarged structure schematic diagram at A in the middle;
[0019] Figure 4 It is the overall structure explosion schematic diagram of the present application.
[0020] The figure mark: 1, the float tail; 2, the float body; 3, the first signal detection terminal; 4, the second signal detection terminal; 5, the ground terminal; 6, the circuit board; 7, the lithium battery; 8, the wire locking mechanism; 81, the hollow cup planetary motor; 82, the angle positioning disc; 83, the spring; 84, the float leg pipe; 85, the wire locking rod; 9, the thimble; 10, the via hole; 11, the main wire; 12, the lead sinker; 13, the fishhook; 14, the electric connecting wire. DETAILED DESCRIPTION
[0021] The technical scheme of the present application is further explained below in combination with the drawings and specific embodiments.
[0022] EMBODIMENT
[0023] As Figures 1-4 shown, the intelligent automatic bottom finding electronic float system proposed by the present application includes a float tail 1, a float body 2 and a mobile terminal. The top end of the float tail 1 is provided with a first signal detection terminal 3. The lower part of the first signal detection terminal 3 is in close contact with the upper part of the top end of the float tail 1. An electric connecting wire 14 is arranged in the inside of the float tail 1 at one side of the first signal detection terminal 3. The top end of the electric connecting wire 14 is correspondingly arranged at the lower part of the first signal detection terminal 3. The other end of the electric connecting wire 14 is correspondingly arranged at the circuit board 6. The arrangement of the electric connecting wire 14 can make the first signal detection terminal 3 and the circuit board 6 in communication. One end of the float tail 1 close to the float body 2 is provided with a thread. One end of the float body 2 close to the float tail 1 is provided with an internal thread. The float tail 1 and the float body 2 are arranged in a detachable structure through the thread and the internal thread. The float tail 1 and the float body 2 are threadedly connected. The float tail 1 is arranged in a hollow shape. The electric connecting wire 14 is correspondingly arranged at the inner wall of the float tail 1. The outer ring of the electric connecting wire 14 is in close contact with the inner wall of the float tail 1. One end of the float tail 1 away from the first signal detection terminal 3 is respectively provided with a second signal detection terminal 4 and a ground terminal 5. The second signal detection terminal 4 and the ground terminal 5 are both arranged at the outer ring of the float tail 1. The arrangement of the first signal detection terminal 3, the second signal detection terminal 4 and the ground terminal 5 can detect the potential difference of different positions of the float in the water, on the water surface and on the water. Thus, the wire locking mechanism can be controlled according to the detected potential difference to automatically adjust the float and automatically release the wire after leaving the water surface according to the principle of reversing the wire release and positively rotating the wire locking.
[0024] The circuit board 6 is arranged in the floating tail 1, and a Bluetooth or WIFI communication module, a micro-processing controller and an LED lamp are arranged on the circuit board 6. The Bluetooth or WIFI communication module can be wirelessly connected with a mobile terminal, so that instructions can be better issued to the device, which is simple and convenient. The micro-processing controller is provided with a position detection module, a time delay module, a gyroscope module, a forward and reverse rotation control module, an overcurrent stop module and an LED indicator light control module. The Bluetooth or WIFI communication module, the micro-processing controller and the LED lamp are correspondingly installed on the circuit board 6 and are electrically connected with the circuit board 6. The lithium battery 7 and the wire locking mechanism 8 are arranged in the floating body 2. The outer circle of the lithium battery 7 is provided with a battery box, and the lithium battery 7 is correspondingly installed in the battery box. The bottom of the floating tail 1 is provided with a box cover. A needle hole is formed in one end of the battery box and the box cover, and an ejector pin 9 is arranged in the needle hole. The ejector pin 9 is correspondingly installed in the needle hole. A connecting plate is arranged between the installation end of a group of ejector pins 9 and the circuit board 6. The circuit board 6 and the group of ejector pins 9 are correspondingly installed on both sides of the connecting plate. Circular circuit boards are arranged at the upper and lower ends of the lithium battery 7. Lead wires are arranged between the two groups of circular circuit boards and the two ends of the lithium battery 7. The circular circuit boards and the lithium battery 7 are integrally arranged. The lithium battery 7 is detachably arranged, so that the lithium battery 7 can be better replaced. The lithium battery 7 is in electrical communication with the circuit board 6 through the ejector pin 9. The arrangement of the ejector pin 9 can enable the lithium battery 7 to continuously supply power to the circuit board 6, so as to realize various operations.
[0025] The locking mechanism 8 comprises a hollow cup planetary motor 81, which can be replaced by a stepping motor. Another set of thimbles 9 is installed corresponding to the connection end of the hollow cup planetary motor 81. The lithium battery 7 is in electrical communication with the hollow cup planetary motor 81 through another set of thimbles 9, so that the lithium battery 7 supplies power to the circuit board 6. The circuit board 6 supplies power to the hollow cup planetary motor 81 through the internal wire of the lithium battery 7. The output end of the hollow cup planetary motor 81 is provided with an angle positioning disc 82. A motor bin is arranged outside the hollow cup planetary motor 81. The motor bin can protect the hollow cup planetary motor 81. Sealing pads are arranged at the upper and lower ends of the motor bin. A transmission shaft is arranged between the hollow cup planetary motor 81 and the angle positioning disc 82. The output end of the hollow cup planetary motor 81 is installed corresponding to one end of the transmission shaft. The transmission shaft is fixedly connected with the output shaft of the hollow cup planetary motor 81. A limiting rod is arranged on the transmission shaft. The limiting rod is fixedly connected with the transmission shaft. The angle positioning disc 82 is sleeved on the outer circle of the transmission shaft. The transmission shaft and the limiting rod can limit the rotation of the angle positioning disc 82. A spring 83 is arranged below the angle positioning disc 82. One end of the spring 83 is installed corresponding to one side of the angle positioning disc 82. The other end of the spring 83 is installed corresponding to the inner wall bottom of the motor bin. The spring 83 can limit the output shaft of the hollow cup planetary motor 81 to rotate only 135°. The overcurrent stopping module can make the hollow cup planetary motor 81 overcurrent when it rotates 135° or reverses 135°, and the hollow cup planetary motor 81 is restricted by the angle positioning disc 82. The overcurrent stopping module can control the hollow cup planetary motor 81 to stop running. A floating pipe 84 is installed outside the hollow cup planetary motor 81. One end of the floating pipe 84 is fixedly connected with the outer circle of the motor bin. A locking rod 85 is installed in the inner circle of the floating pipe 84. One end of the locking rod 85 is fixedly connected with the transmission shaft. The locking rod 85 is rotatably connected with the floating pipe 84. One end of the floating pipe 84 is installed corresponding to the inner wall of the float body 2. The outer circle of the locking rod 85 and the inner circle of the floating pipe 84 are reserved with a gap. The gap between the locking rod 85 and the floating pipe 84 can leave a winding position for the main line 11 when the locking rod 85 and the floating pipe 84 rotate. The locking rod 85 and the floating pipe 84 are installed corresponding to each other. A through hole 10 is formed in the locking rod 85 and the floating pipe 84. The main line 11 is installed in the through hole 10. One end of the main line 11 is installed corresponding to the through hole 10. Space beans and lead sinkers 12 are arranged on the main line 11. The space beans and the lead sinkers 12 are fixedly connected with the main line 11. The other end of the main line 11 is provided with a fishhook 13. The fishhook 13 is installed corresponding to the main line 11. The locking mechanism 8 can lock and release the main line 11, so as to change the position state of the float in the water, on the water surface and on the water, and then realize automatic bottom finding after entering the water.
[0026] The mobile terminal is a smart phone, and the APP program is installed in the mobile terminal. The mobile terminal can send instructions to the Bluetooth or WIFI module in the float tail 1 through the APP program. The mobile terminal sends instructions to the communication module in the float tail 1 wirelessly, so as to change the internal parameters of the micro-processing controller, realize the mode switching of different fishing methods, and the micro-processing controller receives instructions according to the specified program, so as to control the forward and reverse rotation of the hollow cup planetary motor 81 and the on and off of the LED indicator light. The micro-processing controller detects the potential difference of the first signal detection terminal 3, the second signal detection terminal 4 and the ground terminal 5 installed on the float tail 1, detects the potential difference of the float tail 1 at different positions under water, on the water surface and on the water, so as to control the hollow cup planetary motor 81 to perform forward and reverse rotation, so that the through hole 10 on the wire locking rod 85 and the through hole 10 on the float foot pipe 84 perform the normal position 'wire releasing' or the dislocation 'wire locking' movement, so as to realize the automatic bottom finding after entering the water; the automatic wire releasing after leaving the water surface, and the electrically connected wire 14 is also the antenna of the wireless communication module. Since the float needs a certain time to sink underwater under the action of the lead sinker 12, the mobile terminal sends the specified wireless communication module in the float tail 1 through Bluetooth or WIFI, so as to change the delay time of the delay module to match the water depth of different fishing points, and then realize the accurate bottom finding, and it is suitable for fishing at multiple fishing points with different water depths.
[0027] In this embodiment, first, the micro-processing controller performs self-checking reset program after power-on, the micro-processing controller controls the hollow cup planetary motor 81 to perform reverse rotation, the hollow cup planetary motor 81 drives the wire locking rod 85 to reverse, so that the through hole 10 on the wire locking rod 85 and the through hole 10 on the float foot pipe 84 are in the normal position 'wire releasing' state, then the hollow cup planetary motor 81 is controlled to rotate forward, so that the through holes 10 on the float foot pipe 84 and the wire locking rod 85 are in the dislocation 'wire locking' state, and the reset program is completed.
[0028] When the user throws the float into the fishing point, the float vertically sinks underwater under the action of the lead sinker 12. At this time, the micro-processing controller controls the delay module to start working according to the vertical signal of the gyroscope module. After the delay is over, the micro-processing controller starts to detect the potential difference between the first signal detection terminal 3 and the ground terminal 5. Since the float tail 1 is underwater at this time, the first signal detection terminal 3 and the ground terminal 5 are at low potential due to the conductivity of water. The micro-processing controller controls the hollow cup planetary motor 81 to reverse, so that the two groups of through holes 10 are in the normal position 'wire releasing' state. At this time, the float rises. When the float tail 1 leaves the water surface, the potential of the first signal detection terminal 3 and the ground terminal 5 is high. The micro-processing controller controls the hollow cup planetary motor 81 to rotate forward, so that the two groups of through holes 10 are in the 'wire locking' state, so as to complete the automatic bottom finding program, and the micro-processing controller locks the wire locking state.
[0029] When the user raises the rod, at this time the float is away from the water surface, and at the same time the float is in the inverted state, the microprocessor controller controls the hollow cup planetary motor 81 to reverse 'paying off' according to the inverted signal of the gyroscope module and the potential difference between the second signal detection terminal 4 and the ground terminal 5 is high potential, the hollow cup planetary motor 81 is positive 'locking line' to make the float return to the initial position set by the user, because the user in the process of raising the rod, the float may leave or enter the water surface many times, the microprocessor controller can control the hollow cup planetary motor 81 to reverse repeatedly according to the inverted signal of the gyroscope module and the potential difference between the second signal detection terminal 4 and the ground terminal 5, until the float returns to the initial position set by the user.
[0030] The above specific embodiments are only a preferred embodiment of the present application, based on the technical solutions of the present application and the related inspiration of the above embodiments, those skilled in the art can make various alternative improvements and combinations to the above specific embodiments.
Claims
1. An intelligent automatic bottom-finding electronic float system, comprising a float tip (1), a float body (2), and a mobile terminal, characterized in that: The top of the float (1) is equipped with a first signal detection terminal (3). An electrical connection wire (14) is provided inside the float (1) on one side of the first signal detection terminal (3). A second signal detection terminal (4) and a ground terminal (5) are respectively provided at the end of the float (1) away from the first signal detection terminal (3). A circuit board (6) is provided inside the float (1). A lithium battery (7) and a wire locking mechanism (8) are respectively provided inside the float body (2). The wire locking mechanism (8) The device includes a hollow cup planetary motor (81), an angle positioning plate (82) is provided at the output end of the hollow cup planetary motor (81), a spring (83) is provided below the angle positioning plate (82), a float foot tube (84) is installed on the outside of the hollow cup planetary motor (81), a locking rod (85) is installed on the inner ring of the float foot tube (84), and through holes (10) are provided on both the float foot tube (84) and the locking rod (85), and a main line (11) is installed in the through hole (10). The hollow cup planetary motor (81) has a motor compartment on its outside. A drive shaft is provided between the hollow cup planetary motor (81) and the angle positioning disk (82). The output end of the hollow cup planetary motor (81) is installed corresponding to one end of the drive shaft. A limit rod is provided on the drive shaft. The angle positioning disk (82) is sleeved on the outer ring of the drive shaft. One end of the spring (83) is installed corresponding to one side of the angle positioning disk (82).
2. The intelligent automatic bottom-finding electronic float system according to claim 1, characterized in that, The bottom end of the float (1) near the float body (2) is provided with a thread, and the bottom end of the float body (2) near the float (1) is provided with an internal thread. The float (1) and the float body (2) are configured as a separable structure through the thread and the internal thread. The float (1) is configured as a hollow shape, and the electrical connecting wire (14) is installed corresponding to the inner wall of the float (1).
3. The intelligent automatic bottom-finding electronic float system according to claim 1, characterized in that, The circuit board (6) is equipped with a Bluetooth or WIFI communication module, a microprocessor controller and LED lights. The microprocessor controller is equipped with a position detection module, a delay module, a gyroscope module, a forward and reverse control module, an overcurrent stop module and an LED indicator control module.
4. The intelligent automatic bottom-finding electronic float system according to claim 1, characterized in that, The outer ring of the lithium battery (7) is provided with a battery box, and the lithium battery (7) is installed in the corresponding battery box. The bottom of the float (1) is provided with a box cover. A pin hole is provided on one end of the battery box and on the box cover. A pin (9) is provided in the pin hole and is installed in the corresponding pin hole.
5. The intelligent automatic bottom-finding electronic float system according to claim 4, characterized in that, A connecting plate is provided between the mounting end of one set of ejector pins (9) and the circuit board (6). One end of one set of ejector pins (9) is soldered to the bottom of the circuit board (6) through the connecting plate, and the other set of ejector pins (9) is installed correspondingly to the connecting end of the hollow cup planetary motor (81).
6. The intelligent automatic bottom-finding electronic float system according to claim 1, characterized in that, One end of the float foot tube (84) is installed corresponding to the inner wall of the float body (2), and the locking rod (85) is installed corresponding to the float foot tube (84). A gap is reserved between the outer ring of the locking rod (85) and the inner ring of the float foot tube (84).
7. The intelligent automatic bottom-finding electronic float system according to claim 1, characterized in that, One end of the main line (11) is installed corresponding to the through hole (10), and a space bead and a lead weight (12) are respectively provided on the main line (11). A fish hook (13) is provided on the other end of the main line (11).
8. The intelligent automatic bottom-finding electronic float system according to claim 1, characterized in that, The mobile terminal is a smartphone, and an APP program is installed in the mobile terminal. The mobile terminal can send instructions to the Bluetooth or WIFI module in the drift tail (1) through the APP program.
Citation Information
Patent Citations
Intelligent automatic bottom finding electronic float system
CN220859248U