Touch type bait feeder facilitating feeding
By designing a touch-sensitive fish feeder, which combines a suspension block, a trigger-based quantitative feeding unit, and a positioning sensor trigger unit, the problem of insufficient flexibility in traditional aquaculture feeding methods is solved. This achieves precise quantitative feeding and uniform distribution, thereby improving the economic benefits and ecological environment quality of aquaculture.
Patent Information
- Application Number
- CN202520026431.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2035-01-07
AI Technical Summary
Traditional aquaculture lacks flexibility in feeding methods, making it impossible to dynamically adjust according to the real-time status and needs of the fish population, resulting in feed waste, water pollution, and nutritional imbalances in the fish population.
A trigger-type fish bait feeder was designed, which uses a suspension block, a trigger-based quantitative feeding unit, and a positioning sensor trigger unit. Combined with an ultrasonic fish swarm detector and a quantitative feeding structure, it can achieve precise quantitative feeding and stable position monitoring, ensuring uniform distribution of fish bait.
This method enables precise and quantitative feeding, reduces feed waste and water pollution, improves the uniform feeding and growth efficiency of fish populations, and enhances the economic benefits and ecological environment quality of aquaculture.
Smart Images

Figure CN223810272U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to fishery breeding equipment technical field, concretely is a touch fish bait feeder that feeds conveniently. BACKGROUND
[0002] In the industry of fishery breeding, it is crucial to adopt a scientific and reasonable feeding method, because it is directly related to the improvement of breeding benefits, the reduction of costs and the guarantee of fish healthy growth. By accurately controlling the feeding amount and frequency, the growth rate of fish can be effectively promoted, while reducing feed waste and avoiding water quality deterioration, so as to ensure the healthy growth of fish while improving the economic benefits of the entire breeding process.
[0003] The traditional feeding method is usually fixed-time, fixed-quantity manual feeding at a fixed position. This method lacks flexibility and cannot dynamically adjust according to the real-time state, quantity and growth needs of the fish population. For example, at different stages of fish growth, their food intake and feeding habits will change, and the fixed feeding mode is difficult to meet these changes, which may lead to feed waste or unbalanced nutrition of the fish population. At the same time, manual feeding is difficult to accurately distribute fish bait evenly in the breeding water area, which may cause local accumulation of fish bait, while other areas lack fish bait, affecting the uniform feeding and growth of the fish population, and may also pollute the water quality due to excessive feed residues, increasing the risk of fish diseases, and having adverse effects on the economic benefits and ecological environment of fishery breeding. SUMMARY
[0004] The utility model aims at providing a touch fish bait feeder that feeds conveniently to solve the problems in the above background.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a touch fish bait feeder that feeds conveniently, comprising a suspension block, a trigger quantitative feeding part and a positioning induction trigger part, the outer wall of the suspension block is sleeved with a suspension ring; the trigger quantitative feeding part is arranged at the top of the suspension block; the positioning induction trigger part is arranged at the bottom of the suspension block.
[0006] Preferably, the trigger quantitative feeding part specifically comprises: a circular opening formed on the suspension block; a fixed block fixedly installed on the outer wall of the suspension block at equal intervals around the circumference; and a feeding barrel fixedly installed on the inner wall of the circular opening.
[0007] The feeding barrel is provided with a feeding hopper at the top, which facilitates the loading of the fish bait and can store a certain amount of fish bait at a time, reducing the trouble of frequent addition of fish bait. The internal structure of the feeding barrel, including the stirring motor, rotating rod, stirring rod fixing plate one, stirring rod fixing plate two, stirring rod and the like, cooperates with each other, the stirring motor can be started at a fixed time or as needed under the action of the controller, driving the rotating rod and the stirring rod to rotate, so that the fish bait in the feeding barrel remains in a loose state, avoiding the fish bait from clogging the discharge channel due to damp or accumulation, and ensuring that the fish bait can flow out through the quantitative discharge slot on the quantitative discharge block and the quantitative discharge port on the quantitative discharge bottom plate. The design of the quantitative discharge structure is ingenious, and the relative movement of the quantitative discharge slot and the quantitative discharge port can accurately control the bait amount for each feeding, whether a small amount of fish is induced or a large amount of feeding is accurately realized, improving the utilization rate of the fish bait and reducing waste.
[0008] Preferably, the outer wall of the fixed block is fixedly installed with a suspension ring mounting block, a clamping groove is formed in the suspension ring mounting block, and the suspension ring mounting block is clamped and installed with the suspension ring through the clamping groove.
[0009] Preferably, the top of the feeding barrel is communicated with a feeding hopper, the inner wall of the feeding barrel is fixedly installed with a fixed frame, the top of the fixed frame is fixedly installed with a stirring motor, the top of the stirring motor is fixedly installed with a controller, the output end of the stirring motor is fixedly connected with a rotating rod, and the other end of the rotating rod is movably penetrated through the top of the fixed frame and extends into the inside of the feeding barrel.
[0010] Preferably, the outer wall of the rotating rod is fixedly sleeved with a stirring rod fixing plate one, a stirring rod fixing plate two and a quantitative discharge block, the stirring rod fixing plate one and the stirring rod fixing plate two are fixedly connected with a stirring rod at equal intervals, a quantitative discharge slot is formed in the quantitative discharge block at equal intervals, a quantitative discharge bottom plate is fixedly installed on the inner wall of the feeding barrel, the other end of the rotating rod is rotatably connected with the top outer wall of the quantitative discharge bottom plate, a quantitative discharge port is formed in the quantitative discharge bottom plate at equal intervals, the quantitative discharge slot is matched with the quantitative discharge port, and the feeding barrel is communicated with the circular port.
[0011] Preferably, the positioning induction trigger part specifically comprises: a dispersion discharge barrel fixedly installed on the bottom outer wall of the suspension block; and an ultrasonic fish school detector arranged in the inside of the dispersion discharge barrel; a discharge port is formed in the dispersion discharge barrel at equal intervals, and the dispersion discharge barrel is communicated with the circular port.
[0012] The ultrasonic fish school detector can accurately perceive the distribution, quantity and swimming state of the surrounding fish school, can monitor the fish school in real time when the fish bait feeder is working, and can rapidly transmit a signal to the controller when the fish school is detected to be gathered and in an active foraging state. The controller starts the stirring motor according to the signal, so that the stirring rod stirs the fish bait in the feeding barrel, prevents the fish bait from caking, and ensures smooth discharge. Meanwhile, the rotating rod drives the quantitative discharge block to rotate, and when the quantitative discharge groove is coincided with the quantitative discharge port, the fish bait will be uniformly scattered in the water from the discharge port according to the set quantity after passing through the circular through port and the dispersion discharge barrel, so that accurate quantitative feeding is realized.
[0013] Preferably, the inner wall of the dispersion discharge barrel is fixedly installed with a conical flow divider, and the probe of the ultrasonic fish school detector extends to the bottom outer wall of the dispersion discharge barrel through the discharge circular port.
[0014] Preferably, the dispersion discharge barrel is fixedly installed with a mounting block, the outer wall of the mounting block is fixedly installed with a waterproof shell, the inside of the waterproof shell is fixedly installed with a motor, the output end of the motor is fixedly connected with a rotating rod, one end of the rotating rod movably penetrates through one side of the mounting block and extends to the other side of the mounting block, the other end of the rotating rod is fixedly connected with a take-up reel, the inside of the take-up reel is rotatably connected with a connecting line, and the other end of the connecting line is fixedly connected with a positioning anchor.
[0015] The positioning anchor can make the feeder maintain a relatively stable position in the water, avoid the feeder from drifting randomly due to factors such as water flow and wind wave, and thus ensure the accuracy and stability of the feeding area. This enables the ultrasonic fish school detector to continuously monitor a specific area and more accurately perceive the activity and position change of the fish school, so that the feeding action can be triggered in time once the fish school enters the preset range, the effectiveness and pertinence of feeding are improved, the waste of fish bait is reduced, and meanwhile, the stable positioning is beneficial to the suspension ring to maintain the feeder at a suitable depth in the water, so that the fish bait in the feeding barrel can be smoothly discharged to the water area at the predetermined depth through the dispersion discharge barrel according to the designed discharge mechanism, the fish bait is uniformly distributed and meets the foraging habit of the fish school, the fish attracting and feeding effect is further improved, and the efficiency and success rate of fishing or breeding operation are improved.
[0016] The utility model provides a touch fish bait feeder of convenient feeding, has the following beneficial effects:
[0017] (1), the utility model discloses a feeding bucket can conveniently fill fish bait into the material throwing barrel, the stirring motor and the stirring rod set up in the material throwing barrel can stir fish bait when needing, and this function is very important for some fish baits that are easy to cake or uneven in composition, and the cooperation of the quantitative discharge block and the quantitative discharge bottom plate realizes accurate quantitative feeding, and the design of the quantitative discharge groove and the quantitative discharge port can accurately control the amount of feeding each time, and accurate quantitative feeding can avoid excessive feeding and cause feed waste and water pollution.
[0018] (2), the utility model discloses the cooperation of mounting block, take-up wheel, connecting line and positioning anchor can position the feeder in the specific position in fishpond, in large-scale fishpond cultivation, can set the feeding position of feeder in advance according to the distribution habit of fish school, the water quality difference area, and ultrasonic fish school detector plays a key role, can monitor the dynamic of fish school around feeder in real time, including the number of fish school, the distance from feeder and the swimming speed of fish school and other information, when ultrasonic fish school detector detects that a large number of fish school are close to feeder, and the fish school density exceeds the threshold value of predetermining, will transmit the signal to controller, and the signal received by controller controls stirring motor to start and carries out quantitative feeding. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is overall structure front view perspective drawing of the utility model;
[0020] Figure 2 It is trigger quantitative feeding part partial view of the utility model;
[0021] Figure 3 It is quantitative discharge block partial view of the utility model;
[0022] Figure 4 It is positioning induction trigger part partial view of the utility model.
[0023] In the drawing: 1 suspension block, 2 suspension ring, 3 trigger quantitative feeding part, 311 round mouth, 312 fixed block, 313 suspension ring mounting block, 314 material throwing barrel, 315 feeding hopper, 316 fixed frame, 317 controller, 318 stirring motor, 319 quantitative discharge bottom plate, 3111 quantitative discharge port, 3112 quantitative discharge block, 3113 quantitative discharge groove, 3114 rotating rod, 3115 stirring rod fixed plate one, 3116 stirring rod, 3117 stirring rod fixed plate two, 4 positioning induction trigger part, 411 dispersion discharge barrel, 412 discharge port, 413 positioning anchor, 414 discharge round port, 415 ultrasonic fish school detector, 416 conical shunt block, 417 mounting block, 418 waterproof shell, 419 motor, 4111 take-up wheel, 4112 connecting line. DETAILED DESCRIPTION
[0024] With reference to the accompanying drawings, the technical solutions in the embodiments of the present application will be clearly and completely described below. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative efforts fall within the scope of the present application.
[0025] Examples of the described embodiments are illustrated in the accompanying drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the drawings are exemplary and are intended to explain the present application, and cannot be understood as limiting the present application. Embodiments
[0026] The preferred embodiment of the touch-type fish bait feeder facilitating bait feeding provided by the present application comprises a suspension block 1, a trigger quantitative bait feeding part 3, and a positioning induction trigger part 4. Figures 1-4 As shown in the figure, the touch-type fish bait feeder facilitating bait feeding comprises a suspension block 1, a trigger quantitative bait feeding part 3, and a positioning induction trigger part 4.
[0027] The trigger quantitative bait feeding part 3 specifically comprises a circular through port 311 formed on the suspension block 1, a fixed block 312 fixedly installed on the outer wall of the suspension block 1 at equal intervals in the circumference, and a feeding barrel 314 fixedly installed on the inner wall of the circular through port 311.
[0028] The outer wall of the fixed block 312 is fixedly installed with a suspension ring installation block 313, the suspension ring installation block 313 is provided with a clamping groove, and the suspension ring installation block 313 is clamped and installed with the suspension ring through the clamping groove.
[0029] The top of the feeding barrel 314 is provided with a feeding hopper 315 in communication, the inner wall of the feeding barrel 314 is fixedly installed with a fixed frame 316, the top of the fixed frame 316 is fixedly installed with a stirring motor 318, the top of the stirring motor 318 is fixedly installed with a controller 317, the output end of the stirring motor 318 is fixedly connected with a rotating rod 3114, the other end of the rotating rod 3114 is movably penetrated through the top of the fixed frame 316 and extends into the inside of the feeding barrel 314.
[0030] The outer wall of the rotating rod 3114 is respectively fixed with a stirring rod fixed plate one 3115, a stirring rod fixed plate two 3117 and a quantitative discharging block 3112, equidistant fixed connection is arranged between the stirring rod fixed plate one 3115 and the stirring rod fixed plate two 3117, and the stirring rod 3116, a quantitative discharging groove 3113 is equidistantly arranged on the upper circumference of the quantitative discharging block 3112, a quantitative discharging bottom plate 319 is fixedly installed on the inner wall of the feeding barrel 314, the other end of the rotating rod 3114 is rotationally connected with the top outer wall of the quantitative discharging bottom plate 319, a quantitative discharging port 3111 is equidistantly arranged on the upper circumference of the quantitative discharging bottom plate 319, the quantitative discharging groove 3113 is matched with the quantitative discharging port 3111, and the feeding barrel 314 is communicated with the circular opening 311.
[0031] In the process of the embodiment, the stirring motor 318 is started, the stirring motor 318 drives the rotating rod 3114 to rotate, the rotating rod 3114 drives the stirring rod fixed plate one 3115, the stirring rod fixed plate two 3117 and the stirring rod 3116 to rotate, the bait in the feeding barrel 314 is stirred, and the bait is prevented from being blocked by agglomeration, meanwhile, the rotating rod 3114 drives the quantitative discharging block 3112 to rotate, when the quantitative discharging groove 3113 on the quantitative discharging block 3112 is aligned with the quantitative discharging port 3111 on the quantitative discharging bottom plate 319, the bait flows into the circular opening 311 from the quantitative discharging port 3111 through the quantitative discharging groove 3113, and then flows into the dispersion discharging barrel 411, so that accurate quantitative feeding is realized, the design of the quantitative discharging groove and the quantitative discharging port can accurately control the feeding amount each time, and accurate quantitative feeding can avoid excessive feeding and water pollution caused by feed waste. EMBODIMENT
[0032] On the basis of the embodiment one, the preferable embodiment of the touch type bait feeder for facilitating feeding provided by the utility model is as follows Figures 1-4 As shown in the figure: the positioning induction trigger part 4 specifically comprises: a dispersion discharging barrel 411, which is fixedly installed on the bottom outer wall of the suspension block 1; an ultrasonic fish group detector 415, which is arranged in the interior of the dispersion discharging barrel 411; a discharging port 412 is equidistantly arranged on the upper circumference of the dispersion discharging barrel 411, and the dispersion discharging barrel 411 is communicated with the circular opening 311.
[0033] A discharging circular port 414 is equidistantly arranged on the inner wall bottom circumference of the dispersion discharging barrel 411, a conical shunt block 416 is fixedly installed on the inner wall of the dispersion discharging barrel 411, the ultrasonic fish group detector 415 is fixedly installed on the inner wall of the dispersion discharging barrel 411, and the probe of the ultrasonic fish group detector 415 extends to the bottom outer wall of the dispersion discharging barrel 411 through the discharging circular port 414.
[0034] The dispersion discharge barrel 411 is fixedly installed with the mounting block 417, the outer wall of the mounting block 417 is fixedly installed with the waterproof shell 418, the waterproof shell 418 is fixedly installed with the motor 419 in the inside, the output end of the motor 419 is fixedly connected with the rotating rod 4112, one end of the rotating rod 4112 is movably penetrated through one side of the mounting block 417 and extends to the other side of the mounting block 417, the other end of the rotating rod 4112 is fixedly connected with the take-up reel 4111, the inside of the take-up reel 4111 is rotatably connected with the connecting line 4112, the other end of the connecting line 4112 is fixedly connected with the positioning anchor 413.
[0035] In the process of the embodiment, the motor 419 is started to drive the rotating rod 4112 to rotate the take-up reel 4111, the connecting line 4112 is released, the feeder is placed at a specified position of the fishpond, the positioning anchor 413 is sunk to the bottom of the pond, so that the position of the feeder is fixed, the feeder is suspended in water at a certain depth under the action of the suspension ring 2, the dynamic of the fish group around the feeder can be monitored in real time, including the number of the fish group, the distance from the feeder, the swimming speed of the fish group and other information, when the ultrasonic fish group detector detects that a large number of fish groups approach the feeder and the density of the fish groups exceeds the preset threshold, a signal is transmitted to the controller, the signal received by the controller controls the stirring motor to start 318.
[0036] Working principle: in use:
[0037] Step one: first check the suspension block 1 and each component thereon, including the circular through port 311, the fixed block 312 and the like, to ensure that there is no damage and no sundries. The suspension ring mounting block 313 is installed by clamping slots and the suspension ring 2, so that the suspension ring 2 is stably sleeved on the outer wall of the suspension block 1; the bait is added into the feeding hopper 315, when the ultrasonic fish group detector 415 detects that the fish group approaches to reach the set distance or density threshold, a signal is transmitted to the controller 317, the controller 317 starts the stirring motor 318 after receiving the signal,
[0038] Step two: Install the feeding barrel 314 on the inner wall of the circular opening 311, and then install the feeding hopper 315 on the top of the feeding barrel 314. Install the fixed frame 316 on the inner wall of the feeding barrel 314, and then install the controller 317 and the stirring motor 318 on the top of the fixed frame 316 in sequence. The rotating rod 3114 at the output end of the stirring motor 318 is movably penetrated through the top of the fixed frame 316 and extends into the feeding barrel 314. The stirring rod fixed plate one 3115, the stirring rod fixed plate two 3117 and the quantitative discharge block 3112 are installed on the outer wall of the rotating rod 3114. The stirring rod 3116 is connected between the stirring rod fixed plate one 3115 and the stirring rod fixed plate two 3117. The quantitative discharge groove 3113 is opened on the quantitative discharge block 3112. The quantitative discharge bottom plate 319 is installed on the inner wall of the feeding barrel 314 and the quantitative discharge port 3111 is opened. It is ensured that the quantitative discharge groove 3113 is matched with the quantitative discharge port 3111 and the rotating rod 3114 is smoothly connected with the quantitative discharge bottom plate 319;
[0039] Step three: Install the dispersion discharge barrel 411 on the outer wall of the suspension block 1 bottom. Install the conical shunt block 416 on the inner wall of the dispersion discharge barrel 411 and open the discharge port 412 and the discharge circular port 414. The ultrasonic fish school detector 415 is fixedly installed on the inner wall of the dispersion discharge barrel 411, and the probe of the ultrasonic fish school detector 415 extends to the bottom outer wall of the dispersion discharge barrel 411 through the discharge circular port 414. The mounting block 417 is installed on the dispersion discharge barrel 411. The waterproof shell 418 is installed on the outer wall of the mounting block 417. The motor 419 is installed inside the waterproof shell 418. The rotating rod 4112 at the output end of the motor 419 is movably penetrated through the mounting block 417 and the take-up reel 4111 is installed on the other end of the rotating rod 4112. The connecting line 4112 is connected inside the take-up reel 4111 and the positioning anchor 413 is fixedly positioned on the other end of the connecting line 4112;
[0040] Step four: Start the motor 419 to make the rotating rod 4112 drive the take-up reel 4111 to rotate and release the connecting line 4112. Place the feeder at the designated position of the fish pond, so that the positioning anchor 413 sinks to the bottom of the pond, thereby fixing the position of the feeder. The feeder is suspended in the water at a certain depth under the action of the suspension ring 2.
[0041] Step five: add the bait into the feeding hopper 315, when the ultrasonic fish school detector 415 detects that the fish school approaches to reach the set distance or density threshold, the signal is transmitted to the controller 317, the controller 317 receives the signal and starts the stirring motor 318, the stirring motor 318 drives the rotating rod 3114 to rotate, the rotating rod 3114 drives the stirring rod fixed plate one 3115 and the stirring rod fixed plate two 3117 and the stirring rod 3116 to rotate, and the bait in the feeding barrel 314 is stirred to prevent the bait from clogging, at the same time, the rotating rod 3114 drives the quantitative discharging block 3112 to rotate, when the quantitative discharging groove 3113 on the quantitative discharging block 3112 is aligned with the quantitative discharging port 3111 on the quantitative discharging bottom plate 319, the bait flows into the circular opening 311 from the quantitative discharging port 3111 through the quantitative discharging groove 3113, and then flows into the dispersion discharging barrel 411;
[0042] Step six: after the bait enters the dispersion discharging barrel 411, the bait is dispersed to the surrounding water through the discharging port 412 under the action of the conical flow dividing block 416, and the fish school is attracted to eat. As the fish school continuously eats and moves, the ultrasonic fish school detector 415 continues to monitor, if the fish school remains within a certain range and has the eating demand, the controller 317 will trigger the stirring motor 318 again according to the preset time interval or the fish school dynamics to carry out the next round of quantitative feeding, so that the fish school can continuously obtain the appropriate bait supply.
[0043] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one from another entity or action, without necessarily requiring or implying that the entities or actions are in any way mutually exclusive or directional. Moreover, the terms "include", "have", or any other variant thereof are intended to cover non-exclusive inclusion, such that processes, methods, articles, or apparatuses that include a series of elements not only include those elements but also include other elements not explicitly listed or other elements that are inherent in such processes, methods, articles, or apparatuses.
[0044] Finally, it should be noted that: the above only describes the preferred embodiments of the present application, and is not used to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced. Any modification, equivalent replacement, improvement and the like made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A convenient trigger-type fish bait feeder, comprising a suspension block (1), a trigger-activated quantitative feeding unit (3), and a positioning sensor trigger unit (4), characterized in that, The outer wall of the suspension block (1) is fitted with a suspension ring (2); the trigger quantitative feeding part (3) is located on the top of the suspension block (1); the positioning sensing trigger part (4) is located on the bottom of the suspension block (1).
2. The convenient touch-type fish bait feeder according to claim 1, characterized in that, The trigger-based quantitative feeding unit (3) specifically includes: A circular opening (311) is provided on the suspension block (1); The fixed block (312) is circumferentially and equidistantly fixed on the outer wall of the suspension block (1); The feeding bucket (314) is fixedly installed on the inner wall of the circular opening (311).
3. A convenient touch-type fish bait feeder according to claim 2, characterized in that, The outer wall of the fixed block (312) is fixedly installed with a suspension ring mounting block (313). The suspension ring mounting block (313) has a slot, and the suspension ring mounting block (313) is engaged with the suspension ring through the slot.
4. A convenient touch-type fish bait feeder according to claim 3, characterized in that, The top of the feeding bucket (314) is connected to a feeding hopper (315). A fixing frame (316) is fixedly installed on the inner wall of the feeding bucket (314). A stirring motor (318) is fixedly installed on the top of the fixing frame (316). A controller (317) is fixedly installed on the top of the stirring motor (318). A rotating rod (3114) is fixedly connected to the output end of the stirring motor (318). The other end of the rotating rod (3114) moves through the top of the fixing frame (316) and extends into the interior of the feeding bucket (314).
5. A convenient touch-type fish bait feeder according to claim 4, characterized in that, The outer wall of the rotating rod (3114) is respectively fixedly fitted with a stirring rod fixing plate one (3115), a stirring rod fixing plate two (3117) and a quantitative discharge block (3112). The stirring rod fixing plate one (3115) and the stirring rod fixing plate two (3117) are fixedly connected at equal intervals with stirring rods (3116). The quantitative discharge block (3112) is provided with quantitative discharge grooves (3113) at equal intervals on its circumference. The inner wall of the feeding bucket (314) is fixedly installed with a quantitative discharge bottom plate (319). The other end of the rotating rod (3114) is rotatably connected to the top outer wall of the quantitative discharge bottom plate (319). The quantitative discharge bottom plate (319) is provided with quantitative discharge ports (3111) at equal intervals on its upper circumference. The quantitative discharge grooves (3113) are adapted to the quantitative discharge ports (3111). The feeding bucket (314) is connected to the circular opening (311).
6. A convenient touch-type fish bait feeder according to claim 1, characterized in that, The positioning sensing trigger unit (4) specifically includes: The dispersing discharge barrel (411) is fixedly installed on the bottom outer wall of the suspension block (1); An ultrasonic fish detector (415) is installed inside the dispersing discharge tank (411); The dispersing discharge barrel (411) has discharge ports (412) equidistantly spaced around its circumference, and the dispersing discharge barrel (411) is connected to the circular opening (311).
7. A convenient touch-type fish bait feeder according to claim 6, characterized in that, The inner wall of the dispersing discharge barrel (411) is provided with discharge ports (414) at equal intervals around the bottom circumference. A conical diverter block (416) is fixedly installed on the inner wall of the dispersing discharge barrel (411). The ultrasonic fish detector (415) is fixedly installed on the inner wall of the dispersing discharge barrel (411). The probe of the ultrasonic fish detector (415) extends through the discharge port (414) to the bottom outer wall of the dispersing discharge barrel (411).
8. A convenient touch-type fish bait feeder according to claim 7, characterized in that, The dispersing hopper (411) is fixedly equipped with an installation block (417). A waterproof shell (418) is fixedly installed on the outer wall of the installation block (417). A motor (419) is fixedly installed inside the waterproof shell (418). A rotating rod is fixedly connected to the output end of the motor (419). One end of the rotating rod moves through one side of the installation block (417) and extends to the other side of the installation block (417). A take-up reel (4111) is fixedly connected to the other end of the rotating rod. A connecting line (4112) is rotatably connected inside the take-up reel (4111). A positioning anchor (413) is fixedly connected to the other end of the connecting line (4112).