Electric mouse device
By designing a detachable electric mouse trap, the problems of large size and inconvenient cleaning of existing mouse traps are solved, achieving efficient and safe mouse killing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN RUICHAOTENG TECH CO LTD
- Filing Date
- 2025-05-26
- Publication Date
- 2026-04-21
AI Technical Summary
Existing electronic mousetraps are generally one-piece structures, which are bulky, have high transportation costs, and require cleaning of urine stains and dirt after use, which is not good for users' health.
A detachable electric mouse device was designed. The electric mouse compartment is detachably connected to the main body of the device. When the mouse touches the high-voltage electric iron plate, it will be killed by high voltage. The electric mouse compartment can be thrown into the trash can with the mouse to reduce contact. It is convenient and safe to use.
It achieves a simple structure, small size, safe use, and efficient rat killing, while avoiding the hassle of cleaning up urine stains and improving safety.
Smart Images

Figure CN224139998U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of rat-catching technology, and more particularly to an electric rat-catching device. Background Technology
[0002] Rats steal grain, spread diseases, and reproduce rapidly, posing a significant threat to humans. Therefore, rat control is a long-term task for humanity. Traditional rat traps only catch rats; what to do with them afterward is a thorny issue. Currently, some electronic rat traps have appeared on the market. These convert low-voltage AC or DC electricity into high-voltage electricity, stunning and killing rats upon contact. However, existing electronic rat traps are generally one-piece structures with non-disassembly housings, resulting in large sizes and increased transportation costs. Furthermore, urine stains and dirt accumulate after rats are electrocuted, requiring cleaning before each use, which is detrimental to user health.
[0003] Chinese patent CN114747563B discloses an electric mouse device, characterized by comprising: an electric mouse device body, the electric mouse device body including a shell, a circuit board, a battery, a high-voltage transformer for generating high voltage electricity and at least two high-voltage contact plates, the circuit board, battery and high-voltage transformer being respectively installed inside the shell, all high-voltage contact plates being respectively installed on the plug-in end of the shell, the battery, high-voltage transformer and high-voltage contact plates being respectively electrically connected to the circuit board, the plug-in end of the shell having a bait placement position; a disposable foldable electric mouse chamber, the electric mouse chamber including a chamber body and at least two high-voltage conductive media, the chamber body being configured as a hollow structure, one end of the chamber body opening to form a mouse entry port, and the other end of the chamber body opening to form a... The insertion interface of the chamber is connected to the insertion end of the housing. All high-voltage conductive media are respectively installed on the bottom surface of the inner wall of the chamber, and each high-voltage conductive media is in contact with its corresponding high-voltage contact piece. The insertion end of the housing is provided with a first chamber positioning block, a second chamber positioning block, and a third chamber positioning block. The first chamber positioning block is longitudinally installed on one side of the insertion end of the housing, the second chamber positioning block is longitudinally installed on the other side of the insertion end of the housing, and the third chamber positioning block is horizontally installed at the bottom end of the insertion end of the housing, connecting the first chamber positioning block and the second chamber positioning block. The top of the insertion end of the housing is provided with a housing extension portion extending towards the electric mouse chamber. A compartment insertion gap is formed between the upper ends of the first and second compartment positioning blocks and the extension of the housing. The compartment is square. When the compartment's insertion interface is connected to the housing's insertion end, the first, second, and third compartment positioning blocks are all inserted into the compartment from the insertion interface, with the upper end of the insertion interface inserted into the compartment insertion gap. Three high-voltage contact pieces are provided: the first high-voltage contact piece is installed on one side of the housing's insertion end, the second high-voltage contact piece is installed on the other side of the housing's insertion end, and the third high-voltage contact piece is installed at the bottom of the housing's insertion end. Three high-voltage conductive media are provided: the first high-voltage conductive medium... The first, second, and third high-voltage conductive media are arranged sequentially at intervals towards the insertion port of the housing. The first high-voltage conductive media is connected to the first high-voltage contact piece through a first medium extension connected to one side of the inner wall of the housing. The second high-voltage conductive media is connected to the second high-voltage contact piece through a second medium extension connected to the other side of the inner wall of the housing. The third high-voltage conductive media is directly connected to the third high-voltage contact piece. The insertion end of the housing is equipped with an electric mouse housing insertion detection switch electrically connected to the circuit board. When the insertion port of the housing is connected to the insertion end of the housing, the housing contacts the electric mouse housing insertion detection switch, making the electric mouse housing insertion detection switch in the ON state.The first, second, and third high-voltage contact pieces adopt a spring-loaded structure. The first high-voltage contact piece extends from the through hole of the first housing positioning block, the second high-voltage contact piece extends from the through hole of the second housing positioning block, and the third high-voltage contact piece extends from the through hole of the third housing positioning block. The contact portion of the electric mouse housing insertion detection switch is located at the bottom of the housing extension. The first, second, and third high-voltage contact pieces and the contact portion of the electric mouse housing insertion detection switch can press against the perimeter of the housing, achieving better connection and positioning between the housing and the electric mouse housing. The housing is a disposable, foldable paper housing. All high-voltage conductive media are aluminum foil. The first high-voltage conductive medium is the high-voltage negative electrode, the second high-voltage conductive medium is the high-voltage positive electrode, and the third high-voltage conductive medium is... The high-voltage negative electrode used for triggering solves the problems of simple structure, reasonable design, and small size. When a mouse touches at least two high-voltage conductive media, the high-voltage pack can generate high voltage and transmit it to all high-voltage conductive media, killing the mouse with high voltage. Its electrocution efficiency is high. Furthermore, the electric mouse compartment is detachably connected to the main body of the device. After the mouse is electrocuted, both the mouse and the compartment can be thrown into the trash can, reducing contact with the mouse, keeping the device clean and safe. The electric mouse compartment uses a disposable, foldable design, which reduces its size after folding, facilitating transportation and storage. It has an electric mouse compartment insertion detection switch and a main power switch. High voltage is only generated when the electric mouse compartment is plugged in and the main power switch is turned on. Even with the main power switch on, no high voltage is generated when the electric mouse compartment is removed, preventing electric shock to the user and improving the safety performance of the device. Utility Model Content
[0004] The purpose of this utility model is to provide a novel electric mouse device to solve the above-mentioned technical problems. It has a simple structure, reasonable design, and small size. When a mouse touches the high-voltage electric iron plate, the transformer on the PCB board can generate high voltage and transmit it to the high-voltage electric iron plate, thus killing the mouse. It has high efficiency in killing mice. Furthermore, the electric mouse chamber and the main body of the electric mouse device are detachably connected. After the mouse is killed, the mouse and the electric mouse chamber can be thrown into the trash can together, reducing contact with mice. It is convenient and safe to use.
[0005] This utility model is achieved through the following technical solution:
[0006] An electric mouse device includes an electric mouse body, an electric mouse compartment, and a limit control component. The electric mouse body has a detachable electric mouse compartment on its right side, and a limit control component is located on the upper left side of the electric mouse body. The limit control component is connected to the electric mouse compartment. The electric mouse compartment includes a casing, a positive electrode of a high-voltage electric iron plate, a negative electrode of a high-voltage electric iron plate, a food compartment, and a pressing component. The front end of the casing has an inlet, and the positive and negative electrodes of the high-voltage electric iron plate are located inside the casing. The rear end of the casing has a food compartment, and the top of the casing has a pressing component. The positive and negative electrodes of the high-voltage electric iron plate are electrically connected to the positive and negative high-voltage copper plates inside the electric mouse body.
[0007] As a further step, the electric mouse cage shell includes a lower cover and an upper cover. The upper cover is located above the lower cover. The lower cover has positive and negative electrode mounting positions inside its front end. The lower cover has several positive and negative electrode slots on its lower left side. The positive and negative electrodes of the high-voltage electric iron sheet are embedded in the positive and negative electrode mounting positions inside the front end of the lower cover. The contact plates of the positive and negative electrodes are respectively embedded in the positive and negative electrode slots on the lower left side of the lower cover. The lower cover has a food storage mounting slot inside its rear end, and the food storage is embedded in the food storage mounting slot inside the rear end of the lower cover. The lower cover has several limiting blocks on its right side. The device has several mounting holes. The top left side of the electric mouse cage cover has several limiting blocks. The rear of the electric mouse cage cover has a ventilation window. The lower part of the inner sidewalls on both sides of the electric mouse cage cover has limiting grooves. The top of the electric mouse cage cover has a pressing block mounting groove. The rear end of the electric mouse cage cover has a pressing block guide rail groove. The pressing block component is embedded in the pressing block mounting groove at the top of the electric mouse cage cover. The limiting block on the right side of the electric mouse cage cover is embedded in the limiting groove at the lower part of the inner sidewall on one side of the electric mouse cage cover. The limiting block on the top left side of the electric mouse cage cover is embedded in the limiting groove at the lower part of the inner sidewall on the other side of the electric mouse cage cover. The electric mouse cage cover seamlessly connects and fastens the positive electrode of the high-voltage electric iron sheet, the negative electrode of the high-voltage electric iron sheet, the grain bin, and the pressing block component to the electric mouse cage cover.
[0008] As a further step, the pressure block component includes a pressure block guide rail, a spring, a pressure block, a pressure block drive motor, and a pressure block connecting rod. The pressure block guide rail is installed inside the rear end of the electric mouse cage cover. The rear end of the pressure block has several guide rail rods. One side of the front end of the pressure block has a connecting rod through hole. The bottom of the front end of the pressure block has a toothed rake. The middle of the pressure block has a handle. The pressure block guide rail has a groove. The guide rail rod at the rear end of the pressure block is embedded in the groove on the pressure block guide rail. A spring is installed on the guide rail rod. The pressure block is located inside the rear end of the electric mouse cage cover. The guide rail groove presses the spring on the guide rail rod into the rear end of the electric mouse cage cover. The pressure block drive motor is mounted on the pressure block drive motor base. The output shaft of the pressure block drive motor is connected to the pressure block connecting rod. One end of the pressure block connecting rod is mounted on the inner side wall of the control cover. The other end of the pressure block connecting rod passes through the through hole on the right side of the electric mouse cage cover and connects to the through hole of the connecting rod on the front side of the pressure block. The pressure block drive motor drives the pressure block to move back and forth in the pressure block mounting groove at the top of the electric mouse cage cover.
[0009] As a further step, the electric mouse body includes a control housing, a battery pack, a PCB board, high-voltage positive and negative copper plates, and a power switch. The battery pack is located inside the control housing, and the PCB board is located on one side of the battery pack. The bottom of the right inner wall of the control housing has a mounting groove for the positive and negative copper plates. The high-voltage positive and negative copper plates are embedded in the mounting groove at the bottom of the right inner wall of the control housing. The high-voltage positive and negative copper plates are in close contact with the positive and negative terminals of the high-voltage iron plate, respectively, and are energized. The top of the control housing has a power switch, and the rear end of the power switch has a limit control component. The power switch is electrically connected to the battery pack and the PCB board. The PCB board is electrically connected to the high-voltage positive and negative copper plates and to the pressure block drive motor.
[0010] As a further step, the control housing includes a control upper cover and a control lower cover. The control lower cover is located on the right side of the control upper cover. The control lower cover seamlessly connects and fastens the PCB board and battery pack to the control upper cover. The control upper cover has an internal cavity with a PCB board mounting slot inside the cavity. The PCB board is embedded in the PCB board mounting slot. A battery pack mounting slot is located on one side of the PCB board mounting slot. The battery pack is embedded in the battery pack mounting slot. A power switch mounting slot is located at the top front end of the control upper cover. The power switch is embedded in the power switch mounting slot at the top of the control upper cover. A light switch mounting slot is located on one side of the power switch mounting slot. The light switch is embedded in the light switch mounting slot. The light switch is electrically connected to the PCB board and the battery pack. A limit control mounting slot is located at the top rear end of the control upper cover. A limit control component is embedded in the limit control mounting slot at the top rear end of the control upper cover.
[0011] As a further step, the limit control component includes a limit switch bracket, a limit switch, and a limit switch guide rail. The limit switch bracket is installed above the battery pack mounting slot. The limit switch bracket has a limit switch guide rail, and the limit switch guide rail has a sliding groove. The limit switch is embedded in the sliding groove on the limit switch guide rail, and the limit switch is seamlessly connected to the rear end of the top of the control cover. The limit switch is electrically connected to the PCB board. When the limit switch is locked, the solenoid valve switch on the PCB board drives the pressure block drive motor to rotate. The pressure block drive motor drives the pressure block to move forward towards the pressure block mounting groove at the front end of the top of the electric mouse cage cover, and the inlet at the front end of the electric mouse cage housing is closed. When the limit switch is open, the solenoid valve switch on the PCB board is disconnected, and the pressure block drive motor drives the pressure block to move backward towards the pressure block mounting groove at the top of the electric mouse cage cover, and the inlet at the front end of the electric mouse cage housing is opened.
[0012] As a further step, a charging port is provided in the middle of the control cover, and a dust plug is provided on the outer wall of the charging port, which seamlessly connects and fastens the charging port to the control cover.
[0013] As a further step, the PCB board is provided with an LED light, the PCB board is electrically connected to the LED light, and the LED light is electrically connected to the light switch.
[0014] As a further step, the outer side wall of the control cover is provided with a number of limiting posts, which are embedded in the mounting holes in the middle left side of the lower cover of the electric mouse cage, and the control cover is seamlessly connected and fastened to the lower cover of the electric mouse cage.
[0015] The beneficial effects of this utility model are as follows:
[0016] (1) The structure is simple, the design is reasonable, and the size is small. When the mouse touches the high voltage iron plate, the transformer on the PCB board can generate high voltage and transmit it to the high voltage iron plate. The mouse is killed by the high voltage. The electric mouse efficiency is high. The electric mouse chamber and the electric mouse device body are detachably connected. After the mouse is killed, the mouse and the electric mouse chamber can be thrown into the trash can together to reduce contact with the mouse. It is convenient and safe to use.
[0017] (2) Several limiting posts are provided on the outer side wall of the control cover. The limiting posts on the outer side wall of the control cover are embedded in the mounting hole in the middle of the left side of the electric mouse cage cover, and the control cover is seamlessly connected to the electric mouse cage cover, thus solving the problem of detachable connection between the electric mouse device body and the electric mouse cage.
[0018] (3) The electric mouse is equipped with a limit control component. When the limit switch on the limit control component is locked, the solenoid valve switch on the PCB board drives the pressure block drive motor to run. The pressure block drive motor drives the pressure block to move forward to the pressure block mounting slot at the front end of the top of the electric mouse compartment cover, and the inlet at the front end of the electric mouse compartment shell is closed. When the limit switch is open, the solenoid valve switch on the PCB board is disconnected, the pressure block drive motor drives the pressure block to move backward to the pressure block mounting slot at the top of the electric mouse compartment cover, and the inlet at the front end of the electric mouse compartment shell is opened.
[0019] (4) The electric mouse is also equipped with a main power switch. When the limiting post on the electric mouse body is inserted into the mounting hole on the electric mouse compartment, the high voltage positive and negative copper plates in the electric mouse body are in close contact with the positive and negative high voltage iron plates in the electric mouse compartment and are energized. Only when the main power switch on the electric mouse is turned on will the entire electric mouse generate high voltage. Even if the main power switch is turned on after the electric mouse compartment is removed, no high voltage will be generated. This can prevent the user from being electrocuted and improve the safety performance of the electric mouse. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the structure of the electric mouse of this utility model;
[0021] Figure 2 This is a schematic diagram of the exploded structure of the electric mouse device of this utility model;
[0022] Figure 3 This is a schematic diagram of the main structure of the electric mouse device of this utility model;
[0023] Figure 4 This is a schematic diagram of the exploded structure of the electric mouse device of this utility model;
[0024] Figure 5 This is a schematic diagram of the electric mouse cage structure of this utility model;
[0025] Figure 6 This is a schematic diagram of the exploded structure of the electric mouse cage of this utility model;
[0026] Figure 7 This is a schematic diagram of the limit control component of this utility model;
[0027] Figure 8 This is an exploded view of the limit control component of this utility model;
[0028] Figure 9 This is a schematic diagram of the pressing block structure of this utility model;
[0029] Reference numerals: 1. Electric mouse body; 11. Control housing; 110. Control top cover; 1101. Cavity; 1102. PCB board mounting slot; 1103. Battery pack mounting slot; 1104. Power switch mounting slot; 1105. Light switch mounting slot; 1106. Limit control mounting slot; 111. Control bottom cover; 1110. Charging port; 1111. Dust plug; 1112. Limit post; 12. Battery pack; 13. PCB board; 130. LED light; 14. High-voltage positive and negative copper plates; 15. Power switch; 16. Light switch; 2. Electric mouse cage; 21. Electric mouse cage housing; 210. Inlet; 211. Electric mouse cage bottom cover; 2110. Positive and negative mounting position; 2111. Positive and negative slot; 21 12. Grain bin mounting slot; 2113. Limit block; 2114. Mounting hole; 212. Electric mouse bin cover; 2120. Limit groove; 2121. Press block mounting slot; 2122. Through hole; 22. Positive electrode of high voltage electric iron sheet; 23. Negative electrode of high voltage electric iron sheet; 24. Grain bin; 25. Press block component; 250. Press block guide rail; 2501. Groove; 251. Spring; 252. Press block; 2520. Guide rod; 2521. Toothed rake; 2522. Handle; 2523. Connecting rod through hole; 253. Press block drive motor; 254. Press block connecting rod; 255. Press block drive motor base; 3. Limit control component; 31. Limit switch bracket; 32. Limit switch; 33. Limit switch guide rail; 330. Slide groove. Detailed Implementation
[0030] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:
[0031] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs; the terminology used herein in the specification of the application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application; the terms "comprising" and "having," and any variations thereof, in the specification, claims, and foregoing drawings of this application are intended to cover non-exclusive inclusion. The terms "first," "second," etc., in the specification, claims, or foregoing drawings of this application are used to distinguish different objects, not to describe a particular order.
[0032] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0033] For reference Figures 1-9As shown, an electric mouse device includes an electric mouse body 1, an electric mouse chamber 2, and a limit control component 3. The electric mouse body 1 has a detachable electric mouse chamber 2 on its right side, and the limit control component 3 is located on the upper left side of the electric mouse body 1. The limit control component 3 is connected to the electric mouse chamber 2. The electric mouse chamber 2 includes an electric mouse chamber shell 21, a high-voltage electric iron sheet positive electrode 22, a high-voltage electric iron sheet negative electrode 23, a food chamber 24, and a pressing block component 25. The electric mouse chamber shell 21 has an inlet 210 at its front end, and the high-voltage electric iron sheet positive electrode 22 and high-voltage electric iron sheet negative electrode 23 are located inside the electric mouse chamber shell 21. The electric mouse chamber shell 21 has a food chamber 24 at its rear end, and the electric mouse chamber shell 21 has a pressing block component 25 at its top. The high-voltage electric iron sheet positive electrode 22 and high-voltage electric iron sheet negative electrode 23 are electrically connected to the high-voltage electric positive and negative copper plates 14 inside the electric mouse body 1.
[0034] Preferably, the electric mouse cage housing 21 includes a lower cover 211 and an upper cover 212. The upper cover 212 is located above the lower cover 211. The lower cover 211 has positive and negative electrode mounting positions 2110 inside its front end. The lower cover 211 has several positive and negative electrode slots 2111 on its lower left side. The positive electrode 22 and negative electrode 23 of the high-voltage electric iron sheet are embedded in the positive and negative electrode mounting positions 2110 inside the front end of the lower cover 211. Furthermore, the contact plates of the positive electrode 22 and the negative electrode 23 of the high-voltage electric iron sheet are respectively embedded in the positive and negative electrode grooves 2111 on the lower left side of the electric mouse cage cover 211. A grain storage mounting groove 2112 is provided inside the rear end of the electric mouse cage cover 211, and the grain storage 24 is embedded in the grain storage mounting groove 2112 inside the rear end of the electric mouse cage cover 211. Several limiting blocks 2113 are provided on the right side of the electric mouse cage cover 211, and several limiting blocks 2113 are provided in the middle of the left side of the electric mouse cage cover 211. The lower cover 211 of the electric mouse cage has a mounting hole 2114. Several limiting blocks 2113 are provided on the top left side of the lower cover 211. A ventilation window is provided at the rear of the lower cover 211. Limiting grooves 2120 are provided on the lower part of the inner sidewalls on both sides of the upper cover 212. A pressure block mounting groove 2121 is provided at the top of the upper cover 212. A pressure block guide rail groove 2121 is provided inside the rear end of the upper cover 212. The pressure block component 25 is embedded in the pressure block mounting groove 2121 at the top of the upper cover 212. The limiting block 2113 on the right side of the lower cover 211 of the electric mouse cage is embedded in the limiting groove 2120 on the lower part of the inner wall of one side of the upper cover 212 of the electric mouse cage, and the limiting block 2113 on the top left side of the lower cover 211 of the electric mouse cage is embedded in the limiting groove 2120 on the lower part of the inner wall of the other side of the upper cover 212 of the electric mouse cage. The upper cover 212 of the electric mouse cage seamlessly connects and fastens the positive electrode 22 of the high voltage electric iron sheet 22, the negative electrode 23 of the high voltage electric iron sheet 23, the grain bin 24, and the pressing block component 25 to the lower cover 211 of the electric mouse cage.
[0035] Preferably, the pressing block component 25 includes a pressing block guide rail 250, a spring 251, a pressing block 252, a pressing block drive motor 253, a pressing block connecting rod 254, and a pressing block drive motor base 255. The pressing block guide rail 250 is installed inside the rear end of the electric mouse cage cover 212. The rear end of the pressing block 252 is provided with a plurality of guide rail rods 2520. One side of the front end of the pressing block 252 is provided with a connecting rod through hole 2523. The bottom of the front end of the pressing block 252 is provided with a toothed rake 2521. The middle part of the pressing block 252 is provided with a handle 2522. The pressing block guide rail 250 is provided with a groove 2501. The guide rail rods 2520 at the rear end of the pressing block 252 are embedded in the grooves 2501 on the pressing block guide rail 250. The guide rail rods 2520 are provided with springs 251. The electric mouse cage... The pressure block guide groove 2121 inside the rear end of the top cover 212 presses the spring 251 on the guide rod 2520 into the rear end of the electric mouse cage top cover 212. The pressure block drive motor seat 255 is equipped with a pressure block drive motor 253. The output shaft of the pressure block drive motor 253 is connected to the pressure block connecting rod 254. One end of the pressure block connecting rod 254 is installed on the inner side wall of the control top cover 110. The other end of the pressure block connecting rod 254 passes through the through hole 2122 on the right side of the electric mouse cage top cover 212 and is connected to the connecting rod through hole 2523 on the front end side of the pressure block 252. The pressure block drive motor 253 drives the pressure block 252 in the pressure block mounting groove 2121 at the top of the electric mouse cage top cover 212, and the pressure block 252 can move back and forth in the pressure block mounting groove 2121.
[0036] Preferably, the electric mouse body 1 includes a control housing 11, a battery pack 12, a PCB board 13, high-voltage positive and negative copper plates 14, and a power switch 15. The battery pack 12 is located inside the control housing 11, and the PCB board 13 is located on one side of the battery pack 12. The bottom of the right inner wall of the control housing 11 is provided with a positive and negative copper plate mounting groove. The high-voltage positive and negative copper plates 14 are embedded in the positive and negative copper plate mounting groove at the bottom of the right inner wall of the control housing 11. The high-voltage positive and negative copper plates 14 are in close contact with the positive electrode 22 and the negative electrode 23 of the high-voltage iron plate, respectively, and are energized. The top of the control housing 11 is provided with a power switch 15, and the rear end of the power switch 15 is provided with a limit control component 3. The power switch 3 is electrically connected to the battery pack 12 and the PCB board 13. The PCB board 13 is electrically connected to the high-voltage positive and negative copper plates 14 and the pressure block drive motor 253.
[0037] Preferably, the control housing 11 includes a control upper cover 110 and a control lower cover 111. The control lower cover 111 is located on the right side of the control upper cover 110. The control lower cover 111 seamlessly connects and fastens the PCB board 13 and the battery pack 12 to the control upper cover 110. The control upper cover 110 has a cavity 1101 inside, and a PCB board mounting groove 1102 is provided inside the cavity 1101. The PCB board 13 is embedded in the PCB board mounting groove 1102. A battery pack mounting groove 1103 is provided on one side of the PCB board mounting groove 1102, and the battery pack 12 is embedded in the battery pack mounting groove 1103. The top front end of the control cover 110 is provided with a power switch mounting groove 1104, and the power switch 15 is embedded in the power switch mounting groove 1104 on the top of the control cover 110. A light switch mounting groove 1105 is provided on one side of the power switch mounting groove 1104, and a light switch 16 is embedded in the light switch mounting groove 1105. The light switch 16 is electrically connected to the PCB board 13 and the battery pack 12. The top rear end of the control cover 110 is provided with a limit control mounting groove 1106, and a limit control component 3 is embedded in the limit control mounting groove 1106 at the top rear end of the control cover 110.
[0038] Preferably, the limit control component 3 includes a limit switch bracket 31, a limit switch 32, and a limit switch guide rail 33. The limit switch bracket 31 is installed above the battery pack mounting slot 1103. The limit switch bracket 31 is provided with a limit switch guide rail 33, and the limit switch guide rail 33 is provided with a sliding groove 330. The limit switch 32 is embedded in the sliding groove 330 on the limit switch guide rail 33, and the limit switch 32 is seamlessly connected to the top rear end of the control cover 110. The limit switch 32 is electrically connected to the PCB board 13. When... When the limit switch 32 is locked, the solenoid valve switch on the PCB board 13 drives the pressure block drive motor 253 to operate. The pressure block drive motor 253 drives the pressure block 252 to move forward towards the pressure block mounting groove 2121 at the top front end of the electric mouse cage cover 212, and the inlet 210 at the front end of the electric mouse cage housing 21 is closed. When the limit switch 32 is open, the solenoid valve switch on the PCB board 13 is disconnected, the pressure block drive motor 253 drives the pressure block 252 to move backward towards the pressure block mounting groove 2121 at the top of the electric mouse cage cover 212, and opens the inlet 210 at the front end of the electric mouse cage housing 21.
[0039] Preferably, the lower control cover 111 has a charging port 1110 in the middle, and a dust plug 1111 is provided on the outer wall of the charging port 1110. The dust plug 1111 seamlessly connects and fastens the charging port 1110 to the lower control cover 111.
[0040] Preferably, the PCB board 13 is provided with an LED light 130, the PCB board 13 is electrically connected to the LED light 130, and the LED light 130 is electrically connected to the light switch 16.
[0041] Preferably, the control cover 111 has a plurality of limiting posts 1112 on its outer side wall. The limiting posts 1112 on the outer side wall of the control cover 111 are embedded in the mounting holes 2114 in the middle left side of the electric mouse cage cover 211, and the control cover 111 is seamlessly connected and fastened to the electric mouse cage cover 211.
[0042] Based on the disclosure and teachings of the above specification, those skilled in the art can make appropriate changes and modifications to the above embodiments. Therefore, this utility model is not limited to the specific embodiments disclosed and described above, and some modifications and changes to this utility model should also fall within the protection scope of the claims of this utility model. Furthermore, although some specific terms are used in this specification, these terms are only for convenience of explanation and do not constitute any limitation on this utility model.
Claims
1. An electric mouse, characterized by: The device includes an electric mouse body, an electric mouse compartment, and a limit control component. The electric mouse body has a detachable electric mouse compartment on its right side, and a limit control component is located on the upper left side of the electric mouse body. The limit control component is connected to the electric mouse compartment. The electric mouse compartment includes a casing, a positive electrode of a high-voltage electric iron sheet, a negative electrode of a high-voltage electric iron sheet, a food compartment, and a pressing block component. The front end of the electric mouse compartment casing has an inlet, and the positive and negative electrodes of the high-voltage electric iron sheet are located inside the casing. The food compartment is located at the rear end of the casing, and the pressing block component is located at the top of the casing. The positive and negative electrodes of the high-voltage electric iron sheet are electrically connected to the positive and negative high-voltage copper plates inside the electric mouse body.
2. The electric mouse of claim 1, wherein: The electric mouse cage shell includes a lower cover and an upper cover. The upper cover is located above the lower cover. The lower cover has positive and negative electrode mounting positions inside its front end. The lower cover has several positive and negative electrode slots on its lower left side. The positive and negative electrodes of the high-voltage electric iron sheet are embedded in the mounting positions inside the front end of the lower cover. The contact plates of the positive and negative electrodes are respectively embedded in the positive and negative electrode slots on the lower left side of the lower cover. The lower cover has a food storage mounting slot inside its rear end, and the food storage is embedded in this slot. The lower cover has several limiting blocks on its right side and a center on its left side. The electric mouse cage has several mounting holes, several limiting blocks on the top left side of the lower cover, a ventilation window at the rear of the lower cover, limiting grooves on the lower inner walls of both sides of the upper cover, a pressing block mounting groove at the top of the upper cover, a pressing block guide rail groove inside the rear end of the upper cover, the pressing block component being embedded in the pressing block mounting groove at the top of the upper cover, the limiting block on the right side of the lower cover being embedded in the limiting groove on the lower inner wall of one side of the upper cover, and the limiting block on the top left side of the lower cover being embedded in the limiting groove on the lower inner wall of the other side of the upper cover. The upper cover seamlessly connects and fastens the high-voltage electric iron sheet positive electrode, the high-voltage electric iron sheet negative electrode, the grain bin, and the pressing block component to the lower cover.
3. The electric mouse of claim 2, wherein: The pressure block component includes a pressure block guide rail, a spring, a pressure block, a pressure block drive motor, and a pressure block connecting rod. The pressure block guide rail is installed inside the rear end of the electric mouse cage cover. The rear end of the pressure block has several guide rail rods. A connecting rod through hole is provided on one side of the front end of the pressure block. A toothed rake is provided at the bottom of the front end of the pressure block. A handle is provided in the middle of the pressure block. A groove is provided on the pressure block guide rail. The guide rail rod at the rear end of the pressure block is embedded in the groove on the pressure block guide rail. A spring is provided on the guide rail rod. A pressure block guide rail groove is located inside the rear end of the electric mouse cage cover. The spring on the guide rail is pressed into the rear end of the electric mouse cage cover. The pressure block drive motor is mounted on the pressure block drive motor base. The output shaft of the pressure block drive motor is connected to the pressure block connecting rod. One end of the pressure block connecting rod is installed on the inner side wall of the control cover. The other end of the pressure block connecting rod passes through the through hole on the right side of the electric mouse cage cover and connects to the connecting rod through hole on the front end of the pressure block. The pressure block drive motor drives the pressure block to move back and forth in the pressure block mounting slot at the top of the electric mouse cage cover.
4. The electric mouse of claim 1, wherein: The electric mouse body includes a control housing, a battery pack, a PCB board, high-voltage positive and negative copper plates, and a power switch. The battery pack is located inside the control housing, and the PCB board is located on one side of the battery pack. The bottom of the right inner wall of the control housing has a mounting groove for the positive and negative copper plates. The high-voltage positive and negative copper plates are embedded in the mounting groove at the bottom of the right inner wall of the control housing. The high-voltage positive and negative copper plates are in close contact with the positive and negative terminals of the high-voltage iron plate, respectively, and are energized. The top of the control housing has a power switch, and the rear end of the power switch has a limit control component. The power switch is electrically connected to the battery pack and the PCB board. The PCB board is electrically connected to the high-voltage positive and negative copper plates and to the pressure block drive motor.
5. The electric mouse of claim 4, wherein: The control housing includes a control upper cover and a control lower cover. The control lower cover is located on the right side of the control upper cover. The control lower cover seamlessly connects and fastens the PCB board and battery pack to the control upper cover. The control upper cover has an internal cavity with a PCB board mounting slot inside the cavity. The PCB board is embedded in the PCB board mounting slot inside the cavity. A battery pack mounting slot is located on one side of the PCB board mounting slot, and the battery pack is embedded in the battery pack mounting slot. A power switch mounting slot is located at the top front end of the control upper cover, and the power switch is embedded in the power switch mounting slot at the top of the control upper cover. A light switch mounting slot is located on one side of the power switch mounting slot, and the light switch is embedded in the light switch mounting slot. The light switch is electrically connected to the PCB board and the battery pack. A limit control mounting slot is located at the top rear end of the control upper cover, and a limit control component is embedded in the limit control mounting slot at the top rear end of the control upper cover.
6. The electric mouse according to claim 5, characterized in that: The limit control component includes a limit switch bracket, a limit switch, and a limit switch guide rail. The limit switch bracket is installed above the battery pack mounting slot. The limit switch bracket has a limit switch guide rail, and the limit switch guide rail has a sliding groove. The limit switch is embedded in the sliding groove on the limit switch guide rail and seamlessly engages with the rear end of the top of the control cover. The limit switch is electrically connected to the PCB board. When the limit switch is locked, the solenoid valve switch on the PCB board drives the pressure block drive motor to rotate. The pressure block drive motor moves the pressure block forward toward the pressure block mounting groove at the front end of the top of the electric mouse cage cover, and the inlet at the front end of the electric mouse cage housing is closed. When the limit switch is open, the solenoid valve switch on the PCB board is disconnected, and the pressure block drive motor moves the pressure block backward toward the pressure block mounting groove at the top of the electric mouse cage cover, opening the inlet at the front end of the electric mouse cage housing.
7. The electric mouse of claim 5, wherein: The lower control cover has a charging port in the middle, and a dust plug is provided on the outer wall of the charging port. The dust plug seamlessly connects and fastens the charging port to the lower control cover.
8. The electric mouse of claim 5, wherein: The PCB board is equipped with an LED light, the PCB board is electrically connected to the LED light, and the LED light is electrically connected to the light switch.
9. The electric mouse of claim 5, wherein: The control cover has several limiting posts on its outer side wall. The limiting posts on the outer side wall of the control cover are embedded in the mounting holes in the middle left side of the electric mouse cage cover, and the control cover is seamlessly connected and fastened to the electric mouse cage cover.
Citation Information
Patent Citations
electric mouse
CN114747563B