Video feeder capable of recording pet feeding effect

By integrating image acquisition components and information analysis modules in the smart feeder, the problems of inaccurate feeding amount and privacy leakage are solved, scientific feeding and health monitoring are realized, and the scientificity and user convenience of pet feeding are improved.

CN223182790UActive Publication Date: 2025-08-05HUIZHOU DUDU PET PROD CO LTD
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Patent Information

Application Number
CN202422157610.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-03
Publication Date
2025-08-05
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

The existing smart feeders lack accurate pet identification technology and cannot adjust the feeding amount according to individual pet differences, resulting in malnutrition or excessive obesity and risk of privacy leakage.

Method used

A video feeder that records the effect of pet eating is designed, including image acquisition components and information analysis modules, obtain pet information through images, analyze and control appropriate feeding, combine the weighing module to monitor health status, and provide remote monitoring functions.

Benefits of technology

It has achieved scientific feeding based on individual pet differences, monitoring health status, and protecting privacy, which has improved the scientificity of pet feeding and user convenience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223182790U_ABST
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Abstract

The utility model discloses a video feeder capable of recording pet feeding effect, which comprises a tool main body assembly and an information analysis module arranged in the tool main body assembly, and the information analysis module is used for accurately identifying and analyzing acquired information and sending an instruction; the intelligent pet tool further comprises an image obtaining assembly, the image obtaining assembly is connected with the tool body assembly, the image obtaining assembly is used for obtaining pet pictures or videos, and the image obtaining assembly is in communication connection with the information analysis module. Through the structural arrangement of the image acquisition assembly and the information analysis module, the problem that most pet feeders are lack of automatically judging the food intake of pets according to types, postures and the like of the pets is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of pet products, in particular to a video feeder that records the feeding effect of a pet. Background Art

[0002] The smart automatic feeder is an emerging product in the pet supplies industry. It alleviates the time pressure of pet owners in daily care to a certain extent. The automatic feeding function is particularly important when the owner is unable to feed the pet personally due to busy work, business trips or vacations.

[0003] However, feeders still have the following shortcomings. First, pets of different types and sizes have significant differences in food intake and eating habits, and most existing smart feeders lack accurate pet recognition technology and cannot adjust the feeding amount according to the individual differences of pets. This may lead to malnutrition or excessive obesity in pets, affecting their health.

[0004] Secondly, an ideal smart feeder should not only meet basic feeding needs, but also be able to monitor the pet's weight, activity level, and even mood changes, and through continuous data collection and analysis, provide pet owners with comprehensive health reports and warnings, helping owners to promptly identify and address their pet's health problems.

[0005] Third, privacy protection is also an important issue that cannot be ignored in the application of smart pet devices. Although remote video monitoring provides pet owners with the convenience of checking the status of their pets at home at any time, the widespread use of webcams also brings serious risks of privacy leakage.

[0006] For this reason, it is necessary to propose a video feeder that records the feeding effect of pets in view of the above defects. Utility Model Content

[0007] In order to overcome the deficiencies of the existing technology, the utility model provides a video feeder for recording the feeding effect of a pet.

[0008] The technical solution of this utility model is as follows:

[0009] A video feeder for recording the feeding results of a pet, comprising a tool body assembly and an information analysis module disposed within the tool body assembly, wherein the information analysis module is used to accurately identify and analyze acquired information and issue instructions;

[0010] It also includes an image acquisition component, which is connected to the tool body assembly. The image acquisition component is used to acquire pet pictures or videos, and the image acquisition component is communicatively connected to the information analysis module.

[0011] In a possible implementation, the image acquisition component includes a component housing, the component housing is provided with a snap-in ear, the snap-in ear is provided with a snap-in fixing position, and the snap-in ear is used for snapping.

[0012] In one possible implementation, a snap-in hole adapted to the component housing is provided on the tool body assembly, a snap-in strip adapted to the snap-in fixing position is formed inwardly on the side wall of the snap-in hole, and the snap-in ear is snap-fitted to the snap-in strip.

[0013] In one possible implementation, the image acquisition assembly further includes a flip bracket and a flip driving member, wherein the flip bracket is connected to the flip driving member, and the flip bracket is rotatably connected to the assembly housing;

[0014] The output end of the flip driving member is in transmission connection with the component housing, and the flip driving member is used to drive the flip bracket to rotate relative to the component housing.

[0015] In a possible implementation, a fixed arm is extended from the flip bracket, a fixing ear adapted to the fixed arm is provided on the flip drive member, and fixing holes for connection are provided on both the fixed arm and the fixing ear.

[0016] In a possible implementation, a transmission locking cylinder is provided on the component housing, and a locking hole for locking and fixing is provided in the transmission locking cylinder;

[0017] The output end of the flip driving member is connected to a transmission shaft adapted to the locking hole, and the transmission shaft is fixedly connected to the transmission locking cylinder in a locking manner.

[0018] In a possible implementation, the component housing is further provided with a limit turning cylinder, and a limit turning hole for assisting in the turning angle is provided in the limit turning cylinder;

[0019] The flip bracket is provided with a flip support cylinder adapted to the flip limiting hole, and the flip support cylinder is rotatably connected to the component housing.

[0020] In one possible implementation, the image acquisition component further includes an external housing and an image acquisition module, the external housing is connected to the component housing, and the image acquisition module is connected to the flip bracket;

[0021] The external device housing is provided with a flip hole adapted to the image acquisition module, and the flip bracket flips to drive the image acquisition module to flip along the flip hole.

[0022] In one possible implementation, the tool body assembly includes a battery housing, and the battery housing is provided with a first battery compartment and a second battery compartment;

[0023] It also includes a first sealing plate and a second sealing plate for covering the first battery compartment and the second battery compartment respectively. The first battery compartment and the second battery compartment are respectively installed with a first battery and a second battery.

[0024] In one possible implementation, the tool body assembly includes a feeding shell and a weighing module arranged in the feeding shell, the feeding shell is provided with a storage arc trough for storing feed, and the weighing module is used to detect the weight of the feed in the storage arc trough.

[0025] The beneficial effect of the utility model according to the above scheme is that a video feeder for recording the eating effect of a pet includes a tool main body assembly and an information analysis module arranged therein, and also includes an image acquisition component rotatably connected to the tool main body assembly. First, the pet information is acquired by the image acquisition component and analyzed by the information analysis module, so as to control the tool main body assembly to distribute an appropriate amount of feed to the pet, thereby improving the scientific nature of pet breeding. Second, by acquiring the pet's living status information for a long time, a before-and-after comparison can be formed, so as to compare and judge the pet's health status, and then promptly remind the user to pay attention to the pet's health. Third, through the structural setting of the image acquisition component, the user can remotely view the status of the pet at home in real time. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 This is a schematic diagram of the overall structure of a video feeder for recording pets' eating effects from a first angle according to the present invention;

[0027] Figure 2 This is a second angle overall structural diagram of a video feeder for recording the feeding effect of a pet according to the present invention;

[0028] Figure 3 This is a schematic cross-sectional view of a video feeder for recording the feeding effect of a pet according to the present invention;

[0029] Figure 4 This is an exploded view from a first angle of an image acquisition component of a video feeder for recording the feeding effect of a pet according to the present invention;

[0030] Figure 5 This is an exploded view from a second angle of the image acquisition component of a video feeder for recording the feeding effect of a pet according to the present invention;

[0031] Figure 6 This is a structural diagram of a flip limit hole and a flip support cylinder of a video feeder for recording the feeding effect of a pet in the utility model;

[0032] Figure 7This is a structural diagram of the main base and lock barrel structure of a video feeder that records the feeding effect of pets in the utility model;

[0033] Figure 8 This is a structural schematic diagram of the battery housing of a video feeder for recording the feeding effect of pets in the present invention.

[0034] In the figure:

[0035] 10. Tool body assembly; 11. Snap-in hole; 111. Snap-in strip; 12. Button module; 13. Button protrusion; 14. Main body base; 141. Pressing hole; 142. Transmission position; 15. Grain storage cavity; 16. Lock barrel structure; 161. Pressing shaft; 162. Bow-shaped transmission plate; 1621. Rotation hole; 17. Return spring; 20. Information analysis module; 30. Image acquisition component; 31. Component housing; 311. Snap-in ear; 312. Snap-in fixing position; 313. Transmission snap-in cylinder; 3131. Snap-in hole; 314. Limit flip cylinder; 315. Flip limit hole; 3151. Flip area; 3152. Angle limit area Domain; 32. Flip bracket; 321. Fixed support arm; 322. Flip support cylinder; 3221. Flip cylinder; 3222. Angle limit block; 33. Flip drive member; 331. Fixed ear; 332. Fixed hole; 333. Drive shaft; 34. Peripheral housing; 341. Flip hole; 35. Image acquisition module; 36. Feeding housing; 361. Material storage arc groove; 362. Weighing module; 40. Battery housing; 41. First battery compartment; 42. Second battery compartment; 43. First sealing plate; 44. Second sealing plate; 45. Second battery; 46. Hinge slot; 47. Removable card slot; 48. Hinge protrusion; 49. Removable seesaw. DETAILED DESCRIPTION

[0036] The present invention will be further described below with reference to the accompanying drawings and embodiments:

[0037] See Figure 1-5 The present invention proposes a video feeder for recording the eating effect of a pet, comprising a tool main body assembly 10 and an information analysis module 20, wherein the tool main body assembly 10 is used to store feed and distribute pet feed. In addition, the information analysis module 20 is arranged inside the tool main body assembly 10, and the information analysis module 20 is used to accurately identify the acquired pet information, compare it with the pre-input information, and issue corresponding instructions to the tool main body assembly 10 according to the comparison structure, and control the internal structure thereof to distribute an appropriate amount of pet feed through the corresponding instructions, thereby avoiding the problem of distributing too much or too little feed, and improving the scientific nature of the pet's food intake.

[0038] In this embodiment, see Figure 1-3The feeding tool also includes a graphic acquisition component, wherein the image acquisition component 30 is rotatably connected to the tool main body assembly 10, and the image acquisition component 30 is used to acquire pictures or videos of the pet. In addition, the image acquisition component 30 is communicatively connected to the information analysis module 20, so that the image acquisition component 30 can send the acquired pictures, videos and other information to the information analysis module 20, and the information analysis module 20 extracts elements from the information sent. The specific elements can be information such as the pet's weight, activity level, body shape, type, and age, and compare and analyze them with the information reserved in the information analysis module 20, so as to obtain instructions on how much feed to distribute. Therefore, through the structural setting of the image acquisition component 30, the utility model can distribute food amounts that conform to a scientific diet according to the actual information of the pet, thereby improving the scientific nature of pet breeding.

[0039] Preferably, the information analysis module 20 is externally connected to a mobile terminal device, such as a computer, mobile phone, tablet computer, etc., so that the user can remotely obtain the pet's feeding status and health problems, so that the user can check the actual condition of the pet at any time. The information analysis module 20 can also remind the user of the pet's health status based on the respective results.

[0040] Preferably, the structural setting of the image acquisition component 30 can also assist users in remotely monitoring the real-time situation of pets at home, thereby increasing convenience for users.

[0041] Preferably, the image acquisition component 30 is used to align with the feeding shell 36, so that the remaining pet food in the feeding shell 36 is recorded by the image acquisition component 30, and then compared based on multiple records, so that the user can judge the remaining food situation in the feeding shell 36 based on the photos or videos taken.

[0042] In some embodiments, see Figure 2-5 The image acquisition component 30 includes a component housing 31 , and two snap-in ears 311 are formed on the component housing 31 toward the inside. The ends of the two snap-in ears 311 are both provided with snap-in protrusions, thereby forming a snap-in fixing position 312 for snap-in fixing.

[0043] For further information, see Figure 3-5 A snap-in hole 11 that is compatible with the component shell 31 is provided on one side surface of the tool main body assembly 10. The snap-in hole 11 is used to snap-in and install the component shell 31. Specifically, the side wall of the snap-in hole 11 protrudes toward the inside of the assembly to form a snap-in strip 111. The snap-in strip 111 is compatible with the snap-in fixing position 312, and the snap-in ear 311 is snap-in and fixed to the snap-in strip 111. Therefore, through the structural setting of the snap-in ear 311, the snap-in strip 111 and the snap-in fixing position 312, the assembly speed of the component shell 31 and the tool main body assembly 10 of the utility model is improved.

[0044] In some implementations, see Figure 3-5 The image acquisition component 30 also includes a flip bracket 32 and a flip drive 33. The flip bracket 32 is hemispherical in shape as a whole, and the flip drive 33 is arranged at the center position of the flip bracket 32, wherein the flip bracket 32 is fixedly connected to the flip drive 33, and the flip bracket 32 is rotatably connected to the component shell 31. In addition, the output end of the flip drive 33 is transmission-connected to the component shell 31, so that the flip bracket 32 can be driven to rotate relative to the component shell 31 by driving the flip drive 33. It should be supplemented that the image acquisition module 35 is arranged inside the flip bracket 32 and is fixedly connected to the flip bracket 32, so that the flip drive 33 drives the flip bracket 32 and the image acquisition module 35 to flip at the same frequency, thereby changing the angle at which the image acquisition module 35 shoots the pet, and collects pictures or videos of the pet from more angles, thereby enriching the diversity of collected information, improving the analysis accuracy of the information analysis module 20, and finally improving the authenticity of the pet analysis to a certain extent.

[0045] For further information, see Figure 4-5 The flip bracket 32 extends toward the inside of the main assembly to form two fixed arms 321. The flip driving component 33 is specifically a flip motor, wherein the flip driving component 33 is provided with a fixing ear 331 that matches the fixed arm 321, and the fixed arm 321 and the fixing ear 331 are both provided with a fixing ear 331 for connection, so that the flip driving component 33 is connected and fixed to the fixed arm 321 by bolts.

[0046] For further information, see Figure 4-5 The component housing 31 is provided with a transmission locking cylinder 313, and the transmission locking cylinder 313 is located at the locking ear 311 on one side of the component housing 31, specifically at the back of the locking fixing position 312, and a locking hole 3131 for locking and fixing is provided in the transmission locking cylinder 313. In addition, the output end of the flip driving member 33 is fixedly connected with a transmission shaft 333 adapted to the locking hole 3131, and the transmission shaft 333 is fixedly connected to the transmission locking cylinder 313. Combined with the connection and fixation of the flip driving member 33 and the flip bracket 32, and the connection and fixation of the component housing 31 and the tool main body assembly 10, by controlling the drive of the flip driving member 33, the flip driving member 33 and the flip bracket 32 can be flipped relative to the component housing 31.

[0047] For further information, see Figure 4-5The component housing 31 is also provided with a limit turning cylinder 314, and the limit turning cylinder 314 is located at the clamping ear 311 at the other end of the component housing 31, specifically, located on the back of the clamping fixing position 312 on the other side, and is arranged opposite to the transmission clamping cylinder 313, wherein a limit turning cylinder 314 is provided with a turning limit hole 315 for assisting the turning angle, and a turning support cylinder 322 adapted to the turning limit hole 315 is provided on the turning bracket 32, and the turning support cylinder 322 is rotatably connected to the component housing 31, so that the turning bracket 32 and the turning drive member 33 are connected through the fixed support arm 321 and the fixed ear 3 The structure of 31 forms an integral whole, and this integral whole is fixedly connected to one side of the component shell 31 through the structure of the transmission shaft 333 and the transmission locking cylinder 313, and is rotationally connected to the other side of the component shell 31 through the structure of the limiting flip cylinder 314 and the flip support cylinder 322. As a result, the utility model can drive the image acquisition module 35, the flip bracket 32, and the flip drive member 33 to flip by driving the flip drive member 33, thereby changing the shooting angle of the image acquisition module 35. Compared with a fixed camera, the utility model can record more scenes and at the same time, the range of pet recognition is larger.

[0048] Preferably, see Figure 6 The flip limit hole 315 is divided into a flip area 3151 and an angle limiting area 3152 connected to the flip area 3151. In addition, the flip support cylinder 322 is also divided into a flip cylinder 3221 and an angle limiting block 3222 connected to the flip cylinder 3221. Specifically, the flip cylinder 3221 is rotatably arranged in the flip area 3151, and when the flip cylinder 3221 flips, it can drive the angle limiting block 3222 to rotate in the angle limiting area 3152, and when the angle limiting block 3222 flips and abuts against the inner wall of the angle limiting area 3152, the flip bracket 32 is restricted. Therefore, the flip shooting angle of the image acquisition module 35 is limited by the structural setting of the angle limiting area 3152 and the angle limiting block 3222, so as to avoid the image acquisition module 35 from covering too large an angle and photographing the user's privacy. Therefore, by limiting the shooting angle of the image acquisition module 35, it is possible to avoid photographing the user's life scenes and effectively protect the user's privacy.

[0049] For further information, see Figure 4-5The image acquisition component 30 also includes an external shell 34 and an image acquisition module 35, wherein the external shell 34 is screwed and fixed to the side of the component shell 31 away from the tool main body assembly 10, and the external shell 34 is used to protect the outside of the component shell 31. In addition, the image acquisition module 35 is arranged between the flip bracket 32 and the flip drive member 33, and the image acquisition module 35 is connected and fixed to the flip bracket 32. Specifically, the image acquisition module 35 can be a high-definition camera, and a flip hole 341 adapted to the image acquisition module 35 is opened on the external shell 34, so that the image acquisition module 35 is driven by the flip drive member 33 to flip along the length direction of the flip hole 341, thereby changing the shooting angle of the image acquisition module 35 to the pet, thereby improving the richness of the shooting information.

[0050] For further information, see Figure 1-3 The tool body assembly 10 is provided with a button module 12 and a button protrusion 13 for installing the button module 12. The button module 12 is used for manual input of commands, and the outer surface of the button protrusion 13 is set at a 45° angle, which makes it easier to check the button module 12.

[0051] For further information, see Figure 1-3 The tool main body assembly 10 includes a feeding shell 36 and a weighing module 361 arranged in the feeding shell 36. The feeding shell 36 is provided with a storage arc groove 361 for storing feed. The weighing module 361 is used to detect the weight of the feed in the storage arc groove 361. The weighing module 361 is electrically connected to the information analysis module. Through the structural setting of the weighing module 361, the weight of the feed distributed to the storage arc groove can be accurately grasped, and the weight data of the feed eaten by the pet can be further recorded, which is more conducive to the user to control the health status and consumption of the pet.

[0052] Preferably, a magnet is provided on the inner side of one end of the feeding shell 36 close to the tool main body assembly 10. At the same time, a magnet is also provided on the tool main body assembly 10, so that the feeding shell 36 and the tool main body assembly 10 can abut against each other through magnetism, and the two are connected by magnetism, which can help the user to separate the feeding shell 36 and the tool main body assembly 10. Compared with the traditional connection using a snap-on method, the present invention makes it more convenient to disassemble and clean the feeding shell 36, and reduces the risk of the tool main body assembly 10 tipping over.

[0053] In some embodiments, reference Figure 8The tool body assembly 10 includes a battery housing 40. The bottom of the tool body assembly 10 is connected to the battery housing 40. The battery housing 40 is provided with a first battery compartment 41 and a second battery compartment 42, as well as a first sealing plate 43 and a second sealing plate 44 for sealing the first battery compartment 41 and the second battery compartment 42 respectively. The first battery compartment 41 and the second battery compartment 42 are both used to install removable batteries. Specifically, the first battery compartment 41 and the second battery compartment 42 are respectively installed with a first battery and a second battery 45. In addition, the inner wall of one long side of the first battery compartment 41 and the second battery compartment 42 are both opened. A hinge groove 46 is provided, and a detachable card slot 47 is provided on the opposite side of the hinge groove 46. To be more specific, a hinge protrusion 48 that is compatible with the hinge groove 46 is provided on one long side of the first sealing plate 43 and the second sealing plate 44, and a detachable rocker 49 that is compatible with the detachable card slot 47 is also provided on the opposite side of the hinge protrusion 48. By inserting the hinge protrusion 48 into the hinge groove 46 and then inserting the detachable rocker 49 into the detachable card slot 47, the first sealing plate 43, the second sealing plate 44 and the battery housing 40 can be detachably connected, thereby allowing users to replace the battery more quickly.

[0054] Preferably, by modularizing the battery life design, the product can be used in an offline environment, and through the structural setting of the first battery and the second battery 45, the batteries can take turns to power the product, helping users get rid of the defects of using sockets.

[0055] In some embodiments, see Figure 7The tool body assembly 10 also includes a main body base 14 and a grain storage cavity 15, wherein the grain storage cavity 15 is arranged on the upper end surface of the main body base 14, and the feeding shell 36 is magnetically abutted with the main body base 14. In addition, the tool body assembly 10 also includes a lock barrel structure 16, specifically, the lock barrel structure 16 includes a pressing shaft 161 and a bow-shaped transmission plate 162, wherein a pressing hole 141 for the telescopic movement of the pressing shaft 161 is opened on the side wall of the main body base 14, and a transmission position 142 for installing the bow-shaped transmission plate 162 is further provided on the inner wall of the main body base 14, wherein a rotating shaft (not shown in the figure) is provided on the inner wall of the transmission position 142, and a rotating hole 1621 adapted to the rotating shaft (not shown in the figure) is provided in the middle of the bow-shaped transmission plate 162. In addition, a snap position (not shown in the figure) is opened at the bottom of the grain storage cavity 15. Specifically, one side of the lower end of the bow-shaped transmission plate 162 The lever 162 is in contact with the push rod 161 and is provided with a return spring 17 on the other side. The return spring 17 is used to reset the bow transmission plate 18 and the push rod 161. Specifically, by pressing the push rod 161, the bow transmission plate 162 is pushed to squeeze the return spring 17, which can make the middle part of the bow transmission plate 18 flip around the rotation axis (not shown in the figure), driving the upper end of the bow transmission plate 162 away from the buckle position (not shown in the figure). At this point, the main base 14 and the grain storage cavity 15 are separated. When the force on the push rod 161 is removed, the return spring 17 pushes the push rod 161 to reset. At this time, the upper end of the bow transmission plate 162 is driven to move toward the buckle position (not shown in the figure), thereby locking the grain storage cavity 151. Therefore, through the structural setting of the lock barrel structure 16, compared with the screw connection structure, the separation efficiency of the main base 14 and the grain storage cavity 15 of the utility model is higher and more convenient.

[0056] It should be understood that those skilled in the art can make improvements or changes based on the above description, and all such improvements and changes should fall within the scope of protection of the claims attached to this utility model.

[0057] The above is an exemplary description of the present utility model patent in conjunction with the accompanying drawings. It is obvious that the implementation of the present utility model patent is not limited to the above-mentioned method. As long as various improvements are made using the method concept and technical solution of the present utility model patent, or the concept and technical solution of the present utility model patent are directly applied to other occasions without improvement, they are all within the scope of protection of the present utility model.

Claims

1. A video feeder for recording the feeding effect of pets, characterized in that: It includes a tool body assembly and an information analysis module provided in the tool body assembly, wherein the information analysis module is used to accurately identify and analyze the acquired information and issue instructions; Also included is an image acquisition component, the image acquisition component is connected to the tool body assembly, the image acquisition component is used to acquire pet pictures or videos, and the image acquisition component is communicatively connected to the information analysis module; The image acquisition component includes a component housing, the component housing is provided with a snap-in ear, the snap-in ear is provided with a snap-in fixing position, and the snap-in ear is used for snapping; The image acquisition assembly further includes a flip bracket and a flip driving member, wherein the flip bracket is connected to the flip driving member, and the flip bracket is rotatably connected to the assembly housing; The output end of the flip driving member is in transmission connection with the component housing, and the flip driving member is used to drive the flip bracket to rotate relative to the component housing; The component housing is also provided with a limit turning cylinder, and a limit turning hole for assisting the turning angle is provided in the limit turning cylinder; The flip bracket is provided with a flip support cylinder adapted to the flip limit hole, and the flip support cylinder is rotatably connected to the component housing; The flip limit hole is divided into a flip area and an angle limiting area connected to the flip area. The flip support cylinder is divided into a flip cylinder and an angle limiting block connected to the flip cylinder. The flip cylinder is rotatably arranged in the flip area, and when the flip cylinder flips, it can drive the angle limiting block to rotate in the angle limiting area, and when the angle limiting block flips and abuts against the inner wall of the angle limiting area, the flip bracket is restricted.

2. A video feeder for recording pets' eating effects according to claim 1, characterized in that: The tool body assembly is provided with a snap-in hole adapted to the component housing, the side wall of the snap-in hole is formed inwardly with a snap-in strip adapted to the snap-in fixing position, and the snap-in ear is snap-fitted and fixed to the snap-in strip.

3. The video feeder for recording the feeding effect of a pet according to claim 1, characterized in that: A fixed arm is extended from the flip bracket, and a fixing ear adapted to the fixed arm is provided on the flip driving member. Fixing holes for connection are provided on both the fixed arm and the fixed ear.

4. A video feeder for recording the feeding effect of a pet according to claim 3, characterized in that: The component housing is provided with a transmission locking cylinder, and the transmission locking cylinder is provided with a locking hole for locking and fixing; The output end of the flip driving member is connected to a transmission shaft adapted to the locking hole, and the transmission shaft is fixedly connected to the transmission locking cylinder in a locking manner.

5. The video feeder for recording the feeding effect of a pet according to claim 1, characterized in that: The image acquisition component further comprises an external housing and an image acquisition module, wherein the external housing is connected to the component housing, and the image acquisition module is connected to the flip bracket; The external device housing is provided with a flip hole adapted to the image acquisition module, and the flip bracket flips to drive the image acquisition module to flip along the flip hole.

6. The video feeder for recording the feeding effect of a pet according to claim 1, characterized in that: The tool body assembly includes a battery housing, and the battery housing is provided with a first battery compartment and a second battery compartment; It also includes a first sealing plate and a second sealing plate for covering the first battery compartment and the second battery compartment respectively. The first battery compartment and the second battery compartment are respectively installed with a first battery and a second battery.

7. The video feeder for recording the feeding effect of a pet according to claim 1, characterized in that: The tool body assembly includes a feeding shell and a weighing module arranged in the feeding shell. The feeding shell is provided with a storage arc groove for storing feed, and the weighing module is used to detect the weight of the feed in the storage arc groove.