Automatic fishing machine

The automatic fishing machine monitors the fishing line status through its signal transmitter and controller, automatically unlocks the locking assembly, and automatically raises the rod under the action of the elastic reset assembly. This solves the problem of the single function of existing fishing rods and achieves efficient automated operation and high-quality fish-catching results.

CN118716301BActive Publication Date: 2026-02-17王忠权
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Patent Information

Application Number
CN202411093429.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-09
Publication Date
2026-02-17
Estimated Expiration
2044-08-09

AI Technical Summary

Technical Problem

Existing fishing rods have limited functionality and cannot automatically detect the fishing line status or pull the hook, resulting in reduced chances of catching fish and inconvenience in use.

Method used

An automatic fishing machine was designed, comprising a signaler, a controller, a locking assembly, and a spring-loaded reset assembly. The signaler monitors the status of the fishing line, the controller controls the locking assembly to automatically unlock, and the fishing rod is automatically raised under the action of the spring-loaded reset assembly, thus achieving fully automated operation.

Benefits of technology

It improves the chances of catching fish and the efficiency and quality of hooking fish. It is simple and convenient to use, adapts to different fish feeding habits and fishing environments, and realizes automatic and powerful hooking of fish.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to fishing equipment technical field, especially to an automatic fishing machine, which comprises a fishing rod, a support assembly supporting the fishing rod, a sensing assembly arranged on the fishing line of the fishing rod, a lock assembly and an elastic reset assembly. The signaler monitors the stroke of the fishing line to determine whether the fish is hooked. The weight is hung on the fishing line to reserve the surplus amount. The locking member of the lock assembly is fixed on the fishing rod, and the locking member is snap connected with the unlocking member. The pusher drives the unlocking member to separate or lock with the locking member. The signaler detects the speed and stroke distance of the fishing line signal, and transmits the signal to the controller. The controller controls the automatic unlocking of the lock assembly, and the fishing rod automatically raises the rod under the action of the elastic recovery tension of the elastic reset assembly, realizes the automatic powerful bowfish, and realizes the full automatic operation, which is simple and convenient to use, and improves the probability of catching fish and the efficiency and quality of the fish.
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Description

Technical Field

[0001] This invention relates to the field of fishing equipment technology, and in particular to an automatic fishing machine. Background Technology

[0002] Fishing, as an outdoor recreational activity, has remained popular in my country for thousands of years and is increasingly loved by the general public. The charm of fishing lies precisely in its ability to be both commonplace and refined, offering both simple pleasures and enriching experiences, thus attracting countless enthusiasts throughout history. Currently, fishing rods on the market only have signal alarms, providing only a single alarm function. Mechanical support devices also fall short of the standard single-function mechanism that automatically detects alarms or signal strength. Their limited functionality, weak springs, and insufficient spring tension make them difficult to operate manually, resulting in missed opportunities due to insufficient fish bite force. This makes them inconvenient to use. Summary of the Invention

[0003] In order to address the technical deficiencies mentioned in the background section, the present invention aims to provide an automatic fishing machine.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] An automatic fishing machine includes a fishing rod, a support assembly for supporting the fishing rod, a sensing assembly, a locking assembly, and a resilient reset assembly mounted on the fishing line of the fishing rod. The sensing assembly includes a signal device, a counterweight, and a controller. The signal device is communicatively connected to the controller and is used to monitor the travel of the fishing line to determine if a fish has been caught. The counterweight is attached to the fishing line and positioned on the side of the signal device away from the hook, allowing for a slack line length. The controller is mounted on the support assembly. The locking assembly includes a locking element, a releasing element, and a pushing element. The locking element is fixed to the fishing rod and is snapped together with the releasing element. The pushing element is electrically connected to the controller and is used to disengage or lock the releasing element from the locking element. The resilient reset assembly is fixed to the end of the fishing rod and is used to raise the fishing rod when a fish is caught.

[0006] When in the fishing state, the locking member and the release member are snapped together, the fishing line at the counterweight is drooping, and the elastic reset component is in a stretched state; when in the fishing state, the locking member and the release member are separated, the fishing line at the counterweight is straightened, and the elastic reset component returns to its original deformation.

[0007] By adopting the above technical solution, the signaler, through its internal program settings, can detect the speed and distance of the fishing line signal, and then transmit the detected signal to the controller. The controller controls the locking component to automatically unlock, and the fishing rod automatically raises the rod under the elastic restoring tension of the elastic reset component, realizing automatic and powerful hooking of the fish. The fully automated operation is simple and convenient to use, improving the probability of catching fish as well as the efficiency and quality of hooking the fish.

[0008] Furthermore, the upper end of the signal device is provided with a groove through which the fishing line passes. A left button is provided on the signal device. The left button has multiple first positions, each corresponding to a set stroke of the fishing line. The signal device's sensing stroke of the fishing line is adjusted based on the set position of the left button, improving sensing accuracy and device compatibility.

[0009] Furthermore, the signal device is equipped with a right button, which has multiple second settings. Each second setting is configured based on the water flow and the intensity of the fish's bite, making it suitable for fish bites in poorly ventilated conditions and increasing the efficiency of hooking the fish with a rod.

[0010] Furthermore, the locking member has a locking shaft at the end opposite to the fishing rod. The release member includes a locking head, a swinging part, and a torsion spring. The locking head is rotatably mounted on the bracket assembly via a first rotating shaft, and one end of the locking head has a U-shaped locking groove, in which the locking shaft is engaged. One end of the swinging part is fixedly connected to the other end of the locking head, and the swinging part is rotatably mounted on the bracket assembly via a second rotating shaft, with the other end of the swinging part abutting against one end of the pushing member. One end of the torsion spring is fixed to the first rotating shaft, and the other end of the torsion spring is fixed to the second rotating shaft, improving stability during the swinging process.

[0011] Furthermore, the other end of the card head includes a flat surface and an arc-shaped surface. The flat surface is vertically arranged, and one end of the arc-shaped surface is connected to the flat surface. The arc-shaped surface is configured as a wave-shaped structure with gradually changing curvature. One end of the swinging part is correspondingly arranged with the flat surface and the arc-shaped surface to connect the swinging part with the card head, making the connection more stable.

[0012] Furthermore, the end face area of ​​the card head is larger than the end face area of ​​the swinging part, which saves costs and provides more space for the swinging of the card head.

[0013] Furthermore, the locking member has a retaining pin at the end facing away from the fishing rod. The release member is a plate-shaped structure, with a groove at one end facing the opening of the fishing rod, and the retaining pin is engaged in the groove. The other end of the release member is bent away from the fishing rod. The side of the other end of the release member away from the elastic reset component abuts against one end of the push member, improving the efficiency of automatic reset and the stability of the swing.

[0014] Furthermore, the pushing component includes a push rod, a sensing base, and a sensing rod. The push rod is rotatably mounted on the bracket assembly via a third rotating shaft. One end of the push rod abuts against the end of the release element, and the other end of the push rod is correspondingly positioned with the sensing rod. The sensing base is fixed to the bracket assembly. The sensing base is electrically connected to the controller. Based on signals from the controller, the sensing base drives the movement of the sensing rod and the push rod, causing the push rod to push the release element to rotate, thereby separating the locking head from the locking shaft, improving transmission efficiency, and thus enabling precise rod lifting and faster response.

[0015] Furthermore, the elastic reset assembly includes a rotary motor, a gear unit, two tension springs, and a switch. The rotary motor is fixed to the bracket assembly, and a drive wheel is mounted on the output shaft of the rotary motor. The drive wheel meshes with the gear unit, which is fixedly connected to a fixing plate at the end of the fishing rod to drive the fishing rod to rotate. A tension spring is provided on both sides of the fishing rod, one end of which is fixed to the end of the fishing rod, and the other end is fixed to the bracket assembly. The rotary motor and the switch are both electrically connected to the controller. When the switch is turned on, the rotary motor drives the fishing rod to rotate, causing the locking element to engage with the release element, and the two tension springs to extend. The rotary motor and the gear unit achieve automatic tension spring standby, resulting in safer, less strenuous, and more convenient operation.

[0016] Furthermore, the gear unit includes a first gear, a second gear, a third gear, and a fourth gear arranged sequentially along the length of the fishing rod on a coaxial axis. The first gear meshes with the drive wheel, the second gear meshes with the first gear, the third gear meshes with the second gear, and the fourth gear meshes with the third gear. A support rod passes through the center of the fourth gear, and the support rod is rotatably mounted on the bracket assembly. The end of the support rod is fixedly connected to the corresponding fixing plate. This gear unit is an automatic device that operates based on the pulling of a large tension spring and the judgment of electronic signals, achieving automation and facilitating operation.

[0017] In summary, the beneficial effects of the present invention are as follows:

[0018] The signal device of this invention, through internal program settings, can detect the speed and travel distance of the fishing line signal, and then transmit the detected signal to the controller. The controller controls the locking component to automatically unlock, and the fishing rod automatically raises the rod under the elastic restoring tension of the elastic reset component, realizing automatic and powerful hooking of fish. The fully automated operation is simple and convenient to use, improving the probability of catching fish and the efficiency and quality of hooking fish. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of an embodiment of the automatic fishing machine of the present invention.

[0020] Figure 2 This is a partially enlarged structural schematic diagram of a side view of an embodiment of the automatic fishing machine of the present invention.

[0021] Figure 3 This is a partially enlarged structural schematic diagram of an embodiment of the locking assembly of the automatic fishing machine of the present invention.

[0022] Figure 4 This is a schematic diagram of the structure of an embodiment of the signal device of the automatic fishing machine of the present invention.

[0023] Figure 5 This is a schematic diagram of an embodiment of the release mechanism of the automatic fishing machine of the present invention.

[0024] Figure 6 This is a schematic diagram of the structure of a gear unit of the automatic fishing machine of the present invention.

[0025] Figure 7 This is a partially enlarged structural schematic diagram of a side view of another embodiment of the automatic fishing machine of the present invention.

[0026] Figure 8 This is a schematic diagram of another embodiment of the release mechanism of the automatic fishing machine of the present invention.

[0027] Explanation of the reference numerals in the figure:

[0028] 1. Automatic fishing machine; 2. Fishing rod; 21. Mounting plate; 23. Fixing plate; 3. Fishing line; 4. Bracket assembly; 41. Encapsulation plate; 42. Support column; 51. Signal device; 511. Groove; 512. Left button; 513. Right button; 52. Counterweight; 53. Controller; 54. Power supply; 6. Locking assembly; 61. Locking element; 611. Locking shaft; 62a. Release element; 62a1. Locking head; 62a2. Swinging part; 62a3. Torsion spring; 62a4, Slot; 63, Pushing component; 631, Push rod; 632, Sensor base; 633, Sensor rod; 64, First rotating shaft; 65, Second rotating shaft; 66, Third rotating shaft; 67, Pull rod; 7, Elastic reset assembly; 71, Rotary motor; 72, Gear unit; 721, First gear; 722, Second gear; 723, Third gear; 724, Fourth gear; 725, Support rod; 73, Tension spring; 74, Switch; 75, Drive wheel;

[0029] 62b, Tripping component; 62b1, Tripping seat; 62b2, Swing plate; 62b3, Fixing groove. Detailed Implementation

[0030] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention are within the scope of protection of the present invention.

[0031] Those skilled in the art should understand that, in the disclosure of this invention, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the above terms should not be construed as limiting this invention.

[0032] In the description of this invention, the use of terms such as "a number" means one or more, with "more than" meaning two or more. Terms like "greater than," "less than," and "exceeding" are understood to exclude the stated number, while terms like "above," "below," and "within" are understood to include the stated number. The use of terms like "first," "second," and "third" is merely for distinguishing technical features and should not be construed as indicating or implying relative importance, the number of indicated technical features, or the sequential relationship between indicated technical features.

[0033] The following is in conjunction with the appendix Figure 1-8 The embodiments of the present invention will be described in further detail below.

[0034] An automatic fishing machine 1, such as Figure 1 , Figure 2 , Figure 3 As shown, it includes a fishing rod 2, a support assembly 4 for supporting the fishing rod 2, a sensing component, a locking assembly 6, and a resilient reset assembly 7, all mounted on the fishing line 3 of the fishing rod 2. The sensing component includes a signal device 51, a counterweight 52, and a controller 53. The signal device 51 is communicatively connected to the controller 53 and is used to monitor the travel of the fishing line 3 to determine if a fish has been hooked. The counterweight 52 is attached to the fishing line 3 and positioned on the side of the signal device 51 away from the hook, allowing for extra slack in the fishing line 3. The controller 53 is mounted on the support assembly 4. The locking assembly 6 includes a locking element 61, a release element 62a, and a pusher 63. The locking element 61 is fixed to the fishing rod 2 and is snapped together with the release element 62a. The pusher 63 is electrically connected to the controller 53 and is used to separate or lock the release element 62a from the locking element 61. The resilient reset assembly 7 is fixed to the end of the fishing rod 2 and is used to raise the fishing rod 2 when a fish is hooked. When in the fishing state, the locking element 61 and the release element 62a are snapped together, the fishing line 3 at the counterweight 52 hangs down, and the elastic reset component 7 is in a stretched state. When in the fishing state, the locking element 61 and the release element 62a are separated, the fishing line 3 at the counterweight 52 is straightened, and the elastic reset component 7 returns to its original shape.

[0035] The signal device 51, through its internal program settings, can detect the speed and distance of the fishing line 3 signal and transmit the detected signal to the controller 53. The controller 53 controls the locking assembly 6 to automatically unlock, and the fishing rod 2 automatically raises the rod under the elastic restoring tension of the elastic reset assembly 7, realizing automatic and powerful hooking of the fish. The fully automated operation is simple and convenient to use, improving the probability of catching fish and the efficiency and quality of hooking the fish.

[0036] In this embodiment, please refer to Figure 1 , Figure 4 The signal device 51 has a groove 511 at its upper end, through which the fishing line 3 passes. A left button 512 is provided on the signal device 51. The left button 512 has multiple first positions, each corresponding to a set travel distance of the fishing line 3. Adjusting the signal device 51's sensing travel distance of the fishing line 3 based on the setting position of the left button 512 improves sensing accuracy and device compatibility.

[0037] The signal device 51 is equipped with a right button 513, which has multiple second-level settings. Each second-level setting is based on the water flow and the intensity of the fish's bite, making it suitable for fish bites in poorly ventilated conditions and increasing the efficiency of hooking the fish with a rod.

[0038] The left button 512 and right button 513 can be located on the side of the housing of the signal device 51. The corresponding setting can be quickly selected by pushing the left button 512 or right button 513. The signal device 51 can be programmed to change its function based on the fish bite signal or water flow conditions of the day to achieve precise hooking and then engage in fishing activities.

[0039] Specifically, after a fish is hooked, its mouth pulls the excess fishing line 3 through the groove of the signal device 51. The signal device 51 detects the travel distance of the fishing line 3 to determine if a fish has been hooked. The fish bite signal is transmitted to the signal device 51 via the fishing line 3, activating the electronic alarm signal device 51. The signal device 51 transmits the fish bite signal to the controller 53 based on the detected data. The controller 53 causes the pusher 63 to move the release element 62a, separating it from the locking element 61. Under the elastic restoring force of the elastic reset component 7, the fishing rod 2 automatically raises the rod, achieving lightning-fast automatic rod raising and hooking of the fish.

[0040] The right-click function on 513 allows for setting different speeds to prevent false alarms due to water flow. The function can also be adjusted at any time according to the intensity of the fish's bite. The signal receiver 51 can also filter out invalid pulse signals, making signal transmission more accurate. The signal receiver 51 can be programmed to adjust the speed and intensity of the fish's bite and the travel of the signal line, improving the device's compatibility and making it suitable for different fish feeding patterns and fishing environments. The signal receiver 51 also features a night mode light for convenient nighttime fishing.

[0041] The left button (512) is a programming button. Press and hold for 3 seconds until the red light illuminates. It has 7 first-level settings with a total travel distance of 21 cm, each first-level setting having a travel distance of 3 cm. Simply press and hold the left button (512) to select the travel distance based on the fish activity. The default setting is 3 blue lights indicating an invalid pulse. The right button (513) selects the water flow speed, which is adjusted based on the water flow and the fish's feeding speed. The default setting has 3 speeds. A green light indicates an audible alarm, a red light indicates the rod is in motion, and the left and right lights illuminate during operation. The power indicator (54) also illuminates.

[0042] In this embodiment, please refer to Figure 3 , Figure 5The locking member 61 has a locking shaft 611 at the end opposite to the fishing rod 2. The release member 62a includes a locking head 62a1, a swinging part 62a2, and a torsion spring 62a3. The locking head 62a1 is rotatably mounted on the bracket assembly 4 via a first rotating shaft 64. One end of the locking head 62a1 has a U-shaped locking groove 62a4, in which the locking shaft 611 is engaged. One end of the swinging part 62a2 is fixedly connected to the other end of the locking head 62a1. The swinging part 62a2 is rotatably mounted on the bracket assembly 4 via a second rotating shaft 65, and the other end of the swinging part 62a2 abuts against one end of the pushing member 63. One end of the torsion spring 62a3 is fitted onto the first rotating shaft 64, and the other end of the torsion spring 62a3 is fitted onto the second rotating shaft 65, improving stability during the swinging process.

[0043] One end of the torsion spring 62a3 is fixed to the locking head 62a1, and the other end of the torsion spring 62a3 is fixed to the swinging part 62a2. When the swinging part 62a2 rotates, the locking head 62a1 rotates under the deformation force of the torsion spring 62a3, thereby causing the locking head 62a1 to separate from the locking shaft 611, and the fishing rod 2 is raised to hook the fish under the force of the tension spring 73.

[0044] The other end of the clasp 62a1 includes a flat surface and an arc-shaped surface. The flat surface is vertically arranged, and one end of the arc-shaped surface is connected to the flat surface. The arc-shaped surface is configured as a wave-shaped structure with gradually changing curvature. One end of the swing part 62a2 is correspondingly arranged with the flat surface and the arc-shaped surface to connect the swing part 62a2 with the clasp 62a1, making the connection more stable.

[0045] The end face area of ​​the chuck head 62a1 is larger than that of the swing part 62a2, which saves costs and provides more space for the swing of the chuck head 62a1.

[0046] The pusher 63 includes a push rod 631, a sensor base 632, and a sensor rod 633. The push rod 631 is rotatably mounted on the bracket assembly 4 via a third rotating shaft 66. One end of the push rod 631 abuts against the end of the swing part 62a2, and the other end of the push rod 631 is correspondingly positioned with the sensor rod 633. The sensor base 632 is fixed to the bracket assembly 4. The sensor base 632 is electrically connected to the controller 53. Based on the signal from the controller 53, the sensor base 632 drives the movement of the sensor rod 633 and the push rod 631, causing the push rod 631 to push the swing part 62a2 to rotate, thereby separating the chuck head 62a1 from the chuck shaft 611, improving transmission efficiency, and thus enabling precise rod lifting and faster response.

[0047] The side of the swing part 62a2 facing away from the chuck head 62a1 is designed with an arc shape. The end of the push rod 631 is designed with a circular structure. The circular structure of the push rod 631 abuts against the arc surface of the swing part 62a2, which reduces the contact area, increases the space for movement, and improves the swing amplitude and efficiency.

[0048] A pull rod 67 can also be provided at the end where the swing part 62a2 is connected to the push rod 631, so that the pull rod 67 can be manually pulled to drive the swing part 62a2 to rotate after the power is cut off, thereby realizing the disengagement.

[0049] The controller 53 is located below the sensor base 632 and the latch assembly 6, and the power supply 54 is located below the gear unit 72 and on one side of the switch 74, making the structure more compact.

[0050] In this embodiment, please refer to Figure 2 , Figure 3 , Figure 6 The elastic reset assembly 7 includes a rotary motor 71, a gear unit 72, two tension springs 73, and a switch 74. The rotary motor 71 is fixed to the bracket assembly 4. A drive wheel 75 is mounted on the output shaft of the rotary motor 71, and the drive wheel 75 meshes with the gear unit 72. The gear unit 72 is fixedly connected to a fixing plate 23 at the end of the fishing rod 2 to drive the fishing rod 2 to rotate. A tension spring 73 is provided on both sides of the fishing rod 2. One end of the tension spring 73 is fixed to the end of the fishing rod 2, and the other end is fixed to the bracket assembly 4. The rotary motor 71 and the switch 74 are both electrically connected to the controller 53.

[0051] When switch 74 is turned on, the rotary motor 71 drives the fishing rod 2 to rotate, causing the locking element 61 to engage with the release element 62a, and the two tension springs 73 to be pulled up. The rotary motor 71 and gear unit 72 enable automatic standby of the tension springs 73, achieving safer operation, less effort, and more convenient use.

[0052] Please refer to Figure 6 The gear unit 72 includes a first gear 721, a second gear 722, a third gear 723, and a fourth gear 724 arranged coaxially along the length of the fishing rod 2. The first gear 721 meshes with the drive wheel 75, the second gear 722 meshes with the first gear 721, the third gear 723 meshes with the second gear 722, and the fourth gear 724 meshes with the third gear 723. A support rod 725 passes through the center of the fourth gear 724. The support rod 725 is rotatably mounted on the bracket assembly 4, and its end is fixedly connected to the corresponding fixing plate 23. The gear unit 72 is an automatic device that operates based on the release of the tension spring 73 and the judgment of electronic signals, achieving automation and convenient operation. One side of the end of the support rod 725 is designed with an arc surface, and the other side is designed with a flat surface. Corresponding through holes are provided on the fixing plate 23 to facilitate rotation of the fixing plate 23 during rotation, resulting in a more stable structure.

[0053] Specifically, a mounting plate 21 can be fixed to the end of the fishing rod 2. The mounting plate 21 has two mounting holes, and one end of the tension spring 73 is fixed in the mounting hole. Two support columns 42 are protruding from the encapsulation plate 41 of the bracket assembly 4. The other end of the tension spring 73 is fixed to the support column 42, so that the two tension springs 73 are arranged in parallel and spaced apart from the encapsulation plate 41, providing sufficient space for the elastic deformation of the tension spring 73.

[0054] The first gear 721 has the same structure as the driving gear 75, and is cylindrical with a rack on its circumference. The second gear 722 and the third gear 723 each include a large gear and a small gear. The small gear of the second gear 722 meshes with the first gear 721, the large gear of the third gear 723 meshes with the small gear of the second gear 722, and the small gear of the third gear 723 meshes with the fourth gear 724. The large gear of the third gear 723 and the small gear of the second gear 722 are located on the same side, and the small gear of the third gear 723 and the large gear of the second gear 722 are also located on the same side, a staggered arrangement that significantly saves space and makes the structure more compact.

[0055] In another embodiment, please refer to Figure 7 , Figure 8 The locking assembly 6 can also be configured as follows: A retaining pin 611 is provided at the end of the locking member 61 facing away from the fishing rod 2. The release member 62b is a plate-like structure, with a groove at one end of the release member 62b opening towards the fishing rod 2, and the retaining pin 611 is engaged in the groove. The other end of the release member 62b is bent away from the fishing rod 2. The other end of the release member 62b, away from the elastic reset assembly 7, abuts against one end of the pusher 63, improving the efficiency of automatic reset and the stability of the swing. The remaining structures are the same as described in the above embodiment; please refer to the relevant content above for details.

[0056] Specifically, the release element 62b includes a release seat 62b1 and a swing piece 62b2. The release seat 62b1 is fixed to the bracket assembly 4, and the upper end of the release seat has an open fixing groove 62b3. The swing piece 62b2 is rotatably mounted on the release seat 62b1, and one end of the swing piece 62b2 has a locking groove that opens toward the fishing rod 2. The outer side of the locking groove is bent into a hook shape. When engaged, the locking shaft 611 is placed in the fixing groove 62b3 and the locking groove, and the hook of the locking groove abuts against the upper surface of the locking shaft 611, so that the locking shaft 611 is fixed in the fixing groove 62b3, preventing disengagement and making the buckle connection more stable.

[0057] After receiving the signal from the signaler 51, the controller 53 automatically raises the rod 2. With the help of the tension spring 73, the rod can be raised to 80 degrees to maintain the hook position. This is more timely than manual operation and ensures that every opportunity for a fish to bite is not missed. The rod raising part uses a gear unit 72, which makes it very easy to pull the tension spring 73 open. The manual lever can be easily cranked to open the tension spring 73 and connect to the bracket to enter the working state, either manually or automatically.

[0058] The rod lifting mechanism utilizes a small rotary motor 71. Turning on the electrical switch 74 automatically pulls open the high-strength tension spring 73 and the fishing rod 2. Turning on the working status switch 74 immediately puts the rod into working mode. The rod holder of the fishing rod 2 uses a tooling-clamped horizontal clamp to firmly secure the main fishing rod 2, preventing it from being pulled away by a fish. After the fish is hooked, the rod is automatically lifted, and the clamp handle can be easily opened for manual fish-playing operations.

[0059] The tension spring 73 features a movable design, allowing you to adjust its length and position according to the desired distance and angle of the fishing rod 2's lift. It utilizes a DC12V small motor and gear reduction assembly for safe and effortless operation. A DC12V circuit board ensures all equipment uses the same power supply 54.

[0060] The turret uses 25# square tubing with rounded corners to connect the signal switch 74 to the mechanical parts, preventing rotational displacement. The main support is secured with angle iron or heavy-duty clamps.

[0061] A DC12V miniature electromagnetic induction base 632 is used to activate the hammer-shaped pusher 63, which can activate the trigger very sensitively.

[0062] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Identical components are represented by the same reference numerals. Therefore, all equivalent changes made to the structure, shape, and principle of this application should be included within the scope of protection of this application.

Claims

1. An automatic fishing machine (1), characterized in that, The system includes a fishing rod (2), a support assembly (4) for supporting the fishing rod (2), a sensing assembly, a locking assembly (6), and an elastic reset assembly (7) disposed on the fishing line (3) of the fishing rod (2); the sensing assembly includes a signal device (51), a counterweight (52), and a controller (53); the signal device (51) is communicatively connected to the controller (53) and is used to monitor the travel of the fishing line (3) to determine whether a fish has been caught; the counterweight (52) is hung on the fishing line (3) and disposed on the side of the signal device (51) away from the hook, so as to allow the fishing line (3) to have extra slack. The controller (53) is mounted on the bracket assembly (4); the locking assembly (6) includes a locking member (61), a release member (62a), and a pusher (63); the locking member (61) is fixed to the fishing rod (2), the locking member (61) and the release member (62a) are snapped together, and the pusher (63) is electrically connected to the controller (53) to drive the release member (62a) to separate from or lock the locking member (61); the elastic reset assembly (7) is fixed to the end of the fishing rod (2) to raise the fishing rod (2) when a fish is caught. When in the fishing state, the locking member (61) is snapped together with the release member (62a), the fishing line (3) at the counterweight (52) hangs down, and the elastic reset component (7) is in the stretched state; when in the fishing state, the locking member (61) separates from the release member (62a), the fishing line (3) at the counterweight (52) straightens, and the elastic reset component (7) returns to its original shape; The locking member (61) has a locking shaft (611) at one end away from the fishing rod (2); the release member (62a) includes a locking head (62a1), a swing part (62a2) and a torsion spring (62a3). The locking head (62a1) is rotatably mounted on the bracket assembly (4) via a first rotating shaft (64). One end of the locking head (62a1) is provided with a U-shaped slot (62a4), and the locking shaft (611) is locked in the slot (62a4). One end of the swinging part (62a2) is fixedly connected to the other end of the clamp (62a1). The swinging part (62a2) is rotatably mounted on the bracket assembly (4) via the second rotating shaft (65). The other end of the swinging part (62a2) abuts against one end of the pusher (63). One end of the torsion spring (62a3) is fixed to the first rotating shaft (64), and the other end of the torsion spring (62a3) is fixed to the second rotating shaft (65). The pusher (63) includes a push rod (631), a sensor seat (632), and a sensor rod (633). The push rod (631) is rotatably mounted on the bracket assembly (4) via a third rotating shaft (66). One end of the push rod (631) abuts against the end of the release member, and the other end of the push rod (631) is correspondingly mounted to the sensor rod (633). The sensor seat (632) is fixed on the bracket assembly (4) and electrically connected to the controller (53). The sensor seat (632) drives the movement of the sensor rod (633) and the push rod (631) based on the signal from the controller (53), so that the push rod (631) pushes the release member to rotate, thereby causing the card head (62a1) to separate from the card shaft (611). The elastic reset assembly (7) includes a rotary motor (71), a gear unit (72), two tension springs (73), and a switch (74); the rotary motor (71) is fixed to the bracket assembly (4), and a drive wheel (75) is mounted on the output shaft of the rotary motor (71). The drive wheel (75) meshes with the gear unit (72), and the gear unit (72) is fixedly connected to a fixing plate at the end of the fishing rod (2) to drive the fishing rod (2) to rotate; the fishing rod (2) A tension spring (73) is provided on both sides. One end of the tension spring (73) is fixed to the end of the fishing rod (2), and the other end of the tension spring (73) is fixed to the bracket assembly (4). The rotary motor (71) and the switch (74) are electrically connected to the controller (53). When the switch (74) is turned on, the rotary motor (71) drives the fishing rod (2) to rotate so that the locking member (61) engages with the release member (62a), and the two tension springs (73) are pulled up.

2. The automatic fishing machine (1) according to claim 1, characterized in that, The upper end of the signal device (51) is provided with a groove (511), through which the fishing line (3) passes; the signal device (51) is provided with a left button (512), which is provided with multiple first positions, each first position corresponding to the set stroke of the fishing line (3), and the signal device (51) is adjusted to sense the stroke of the fishing line (3) based on the set position of the left button (512).

3. The automatic fishing machine (1) according to claim 2, characterized in that, The signal device (51) is equipped with a right button (513), which has multiple second positions, each of which is set according to the water flow and the intensity of the fish's bite.

4. The automatic fishing machine (1) according to claim 1, characterized in that, The other end of the card head (62a1) includes a flat surface and an arc-shaped surface. The flat surface is vertically arranged, and one end of the arc-shaped surface is connected to the flat surface. The arc-shaped surface is configured as a wave-shaped structure with gradually changing curvature. One end of the swing part (62a2) is correspondingly arranged with the flat surface and the arc-shaped surface so that the swing part (62a2) is connected to the card head (62a1).

5. The automatic fishing machine (1) according to claim 4, characterized in that, The end face area of ​​the card head (62a1) is larger than the end face area of ​​the swing part (62a2).

6. The automatic fishing machine (1) according to claim 1, characterized in that, The locking member (61) has a retaining pin (611) at one end away from the fishing rod (2); the release member (62b) is a plate-shaped structure, with a groove at one end of the release member (62b) opening toward the fishing rod (2), the retaining pin (611) being engaged in the groove, and the other end of the release member (62b) being bent away from the fishing rod (2); the other end of the release member (62b) is connected to one end of the pusher (63) on the side away from the elastic reset component (7).

7. The automatic fishing machine (1) according to claim 1, characterized in that, The gear unit (72) includes a first gear (721), a second gear (722), a third gear (723), and a fourth gear (724) arranged coaxially along the length of the fishing rod (2). The first gear (721) meshes with the drive wheel (75), the second gear (722) meshes with the first gear (721), the third gear (723) meshes with the second gear (722), and the fourth gear (724) meshes with the third gear (723). A support rod (725) passes through the center of the fourth gear (724). The support rod (725) is rotatably mounted on the bracket assembly (4), and the end of the support rod (725) is fixedly connected to the corresponding fixing plate.

Citation Information

Patent Citations

  • Automatic fishing device

    CN106417208A

  • Sensing device for detecting fish eating mouth, fishing rod and automatic fishing device

    CN216722795U