Anti-triggering remote controller and barking stopping assembly
By designing the movable part and stopping structure in the remote control, preventing the button from being triggered during the carrying process, the problem of the remote control button is easily touched and the user experience of the barking component is improved.
Patent Information
- Application Number
- CN202422265626.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-09-14
AI Technical Summary
The buttons of existing remote controls are easily triggered by mistake, causing the barking component or dog trainer to act incorrectly, affecting the user experience.
A trigger-proof remote control is designed to switch between the locked position and the release position by the movable member, and the stop and limit bumps are used to prevent the switch from being triggered accidentally during carrying. The movable member can be released when needed to trigger the switch to send a control signal.
It effectively prevents the malfunction of the bark stopper when there is no need to punish the pet, and improves the user's experience.
Smart Images

Figure CN223080806U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of anti-barking components, and particularly relates to an anti-trigger remote controller and an anti-barking component. Background Art
[0002] An anti-barking component or a dog trainer is worn around the neck of a pet. Generally, it stimulates and punishes the pet by means of electric shock, vibration or emitting uncomfortable sounds to the pet, so as to achieve the effect of making the pet stop barking or training. And for the convenience of controlling the anti-barking component or the dog trainer at a certain distance, a remote controller adapted to the anti-barking component or the dog trainer is generally used in combination. One or more buttons are arranged on the remote controller, and the user presses the buttons to control the anti-barking component or the dog trainer to work. However, at present, during the process of carrying the remote controller, the buttons on it are easily accidentally squeezed or pressed, resulting in the problem of accidental triggering, so that the anti-barking component receiver or the dog trainer stimulates the pet after receiving the signal, affecting the user experience. Content of the Utility Model
[0003] The main purpose of the utility model is to provide an anti-trigger remote controller and an anti-barking component, which are used to solve the problem that the buttons on the existing remote controller adapted to the anti-barking component are easily accidentally triggered.
[0004] In order to solve the above technical problems, the technical solution provided by the utility model is as follows:
[0005] An anti-trigger remote controller, comprising:
[0006] A first housing;
[0007] A first circuit board arranged on the first housing, and a switch is arranged on the first circuit board;
[0008] A first wireless module for transmitting wireless signals, and the first wireless module is electrically connected to the first circuit board;
[0009] A stop block arranged on the first housing;
[0010] A movable member movably arranged on the first housing, and the movable member is configured to switch between a locked position and a released position when moving relative to the first housing;
[0011] Wherein, when the movable member is in the locked position, it is blocked by the stop block and cannot trigger the switch; when the movable member is in the released position, it is disengaged from the stop block limit and moves in the direction close to the switch under the action of an external force to trigger the switch.
[0012] Further, a limit convex block is arranged at the bottom of the movable member, and a pressing part for pressing the switch is arranged on the movable member;
[0013] The movable member is in a locked position when the limiting bump and the stopper are in relative positions, and the movable member is in a released position when the limiting bump and the stopper are not in relative positions. The movable member is configured to drive the pressing portion closer to the switch under an external force when in the released position.
[0014] Further, the movable member is rotatably arranged on the first housing;
[0015] The anti-trigger remote control further includes a pressing plate. The pressing plate is annular. The switch is located in the middle of the pressing plate. The pressing plate is located between the first circuit board and the movable member. The pressing plate is arranged in the first housing and forms a limiting space with the first housing. The stopper is located on the pressing plate and within the limiting space. The limiting bump and a part of the movable member are both placed within the limiting space;
[0016] The number of the stoppers is multiple and they are evenly distributed on the pressing plate; the distance between two adjacent stoppers is greater than the length of the limiting bump, and the limiting bump is located between two stoppers when in the released position.
[0017] Further, a first engaging component is arranged between the stopper and the limiting bump. The first engaging component includes a first clamping position and a first clamping block adapted to the first clamping position. The first clamping block is placed within the first clamping position when the movable member is in the locked position.
[0018] The first clamping block is arranged at the bottom of the limiting bump, and the first clamping position is located on the stopper; or, the first clamping block is arranged on the stopper, and the first clamping position is located at the bottom of the limiting bump.
[0019] Further, the movable member includes a top panel, a first annular surrounding wall, and a limiting panel; the first annular surrounding wall extends downward from the peripheral side of the top panel, the limiting panel extends outward from the first annular surrounding wall, the limiting panel is placed within the limiting space, the limiting bump is located at the bottom of the limiting panel, and the first housing is provided with a through opening at a position corresponding to the limiting space;
[0020] The first housing is provided with a second annular surrounding wall. The limiting space is surrounded by the first housing, the second annular surrounding wall, and the pressing plate; a guiding opening is provided on the second annular surrounding wall, and a guiding block is arranged on the movable member. The guiding block is placed within the guiding opening.
[0021] Further, the anti-trigger remote control further includes a first elastic member. Two ends of the first elastic member are respectively abutted against the movable member and the first circuit board.
[0022] The present utility model further provides an anti-barking assembly, including an anti-barking device and the remote controller as described above; the anti-barking device includes a second circuit board, an anti-barking unit for anti-barking, and a second wireless module for communicating with the first wireless module; both the anti-barking unit and the second wireless module are electrically connected to the second circuit board;
[0023] When the second circuit board receives the wireless signal transmitted by the first wireless module through the second wireless module, it drives the anti-barking unit to work.
[0024] Further, the anti-barking device further includes a second housing, and both the second circuit board and the second wireless module are arranged inside the second housing; the anti-barking unit includes an elastic electrode post, and the elastic electrode post includes a conductive base, a second elastic member, and a conductive post;
[0025] The conductive base is electrically connected to the second circuit board, the conductive base is arranged on the second housing, the conductive post is slidably arranged on the conductive base, at least part of the conductive post is placed outside the second housing, and both ends of the second elastic member are abutted against the conductive post and the conductive base respectively.
[0026] Further, the second housing includes a second front shell and a second bottom shell, the second front shell is connected to the second bottom shell to form a second cavity, and both the second circuit board and the second wireless module are arranged in the second cavity;
[0027] The conductive base is fixed by the second bottom shell during injection molding, and a stop member is arranged on the outer side wall of the conductive base, and the stop member is arranged corresponding to the position of the second bottom shell.
[0028] Further, a contact elastic sheet is arranged on the second circuit board corresponding to the position of the conductive base, and the contact elastic sheet is abutted against the conductive base.
[0029] The present utility model has the following beneficial effects: Compared with the prior art, in this embodiment, a movable member is configured, and the movable member is configured to be movable between a locked position and a released position under an external force, and is blocked by a stop block when the movable member is in the locked position. In this way, when the user does not need to use the remote controller of this embodiment and is carrying it, the movable member can be adjusted to the locked position to prevent the switch from being triggered when the movable member is squeezed during carrying, thereby preventing the anti-barking device from punishing the pet when the pet does not need to be punished, and improving the user experience of using the anti-barking device. When the user needs the remote controller, the movable member is adjusted to the released position, and then the movable member is pressed to trigger the switch. When the circuit board receives the electrical signal fed back by the switch being pressed, it sends a control signal to the anti-barking device through the first wireless module to achieve the purpose of making the anti-barking device punish the pet. Description of the Drawings
[0030] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on the structures shown in these drawings.
[0031] Figure 1 Is a perspective view of the remote control of the present invention;
[0032] Figure 2 Is an exploded view of the remote control of the present invention;
[0033] Figure 3 Is an exploded view of the remote control of the present invention from another perspective;
[0034] Figure 4 Is an assembly schematic diagram of the movable part, the pressure plate and the first housing of the remote control of the present invention;
[0035] Figure 5 Is a structural diagram of the movable part of the present invention;
[0036] Figure 6 Is a structural diagram of the movable part of the present invention from another perspective;
[0037] Figure 7 Is a structural diagram of the pressure plate of the present invention;
[0038] Figure 8 Is a cross-sectional view of the remote control of the present invention along the central axis direction of the first elastic member;
[0039] Figure 9 Is a perspective view of the anti-barking device of the present invention;
[0040] Figure 10 Is a partial exploded view of the anti-barking device of the present invention;
[0041] Figure 11 Is a cross-sectional view of the anti-barking device of the present invention along the central axis direction of the second elastic member;
[0042] Figure 12 Is a principle block diagram of the wireless connection of the anti-barking component of the present invention. Detailed implementation manners
[0043] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0044] Referring to the attached Figures 1-8 and the attached Figure 12 , a trigger-proof remote control 100 in this embodiment.
[0045] The trigger-proof remote control 100 includes: a first housing 1; a first circuit board 5 disposed on the first housing 1, a switch 51 being disposed on the first circuit board 5; a first wireless module 50 for transmitting wireless signals, the first wireless module 50 being electrically connected to the first circuit board 5; a stopper 31 disposed on the first housing 1; and a movable member 2 movably disposed on the first housing 1, the movable member 2 being configured to switch between a locked position and a released position when moving relative to the first housing 1. Wherein, when the movable member 2 is in the locked position, it is blocked by the stopper 31 and cannot trigger the switch 51. The movable member 2, when in the released position, is disengaged from the limit of the stopper 31 and moves in a direction close to the switch 51 under an external force to trigger the switch 51.
[0046] In this embodiment, by configuring the movable member 2 and configuring the movable member 2 to be movable between a locked position and a released position under an external force, and the movable member 2 is blocked by the stopper 31 when in the locked position. In this way, when the user does not need to use the remote control 100 in this embodiment and is carrying it, the movable member 2 can be adjusted to the locked position to prevent the switch 51 from being triggered when the movable member 2 is squeezed during carrying, playing a role in preventing the trigger of the switch 51, and further preventing the anti-barking device 200 from punishing the pet when the pet does not need to be punished, improving the user experience of using the anti-barking device 200. When the user needs the remote control 100, the movable member 2 is adjusted to the released position, and then the movable member 2 is pressed to trigger the switch 51. When the circuit board receives the electrical signal fed back by the pressing of the switch 51, a control signal is sent to the anti-barking device 200 through the first wireless module 50 to achieve the purpose of making the anti-barking device 200 punish the pet.
[0047] In one embodiment, a limiting bump 26 is provided at the bottom of the movable member 2, and a pressing portion 28 for pressing the switch 51 is provided on the movable member 2. The movable member 2 is in a locked position when the limiting bump 26 and the stopper 31 are in relative positions. In this state, when the movable member 2 is pressed or squeezed, under the action of the limiting bump 26 and the stopper 31, it will not move closer to the switch 51. The movable member 2 is in a released position when the limiting bump 26 and the stopper 31 are not in relative positions. At this time, when the movable member 2 is externally pressed or squeezed, it can drive the pressing portion 28 to move closer to the switch 51 and trigger the switch 51, so that the user can operate and use the remote controller 100 of this embodiment.
[0048] In one embodiment, both side surfaces of the limiting bump 26 and both side surfaces of the stopper 31 are guiding surfaces 311. The guiding surfaces 311 can be arc surfaces or inclined surfaces, or the guiding surfaces 311 can also be a combination of inclined surfaces and arc surfaces. By using the guiding surfaces 311, the horizontal movement of the movable member 2 can be made smoother.
[0049] In one embodiment, when the stopper 31 and the limiting bump 26 are opposite to each other, they are in a mutually squeezing state, so that there is no gap between the stopper 31 and the limiting bump 26, so as to realize the positioning of the rotation position of the movable member 2, and to prevent the phenomenon that the movable member 2 moves when the remote controller 100 of this embodiment shakes during carrying.
[0050] In one embodiment, the movable member 2 is rotatably arranged on the first housing 1, that is, when the movable member 2 is rotated by an external force, it can be switched between the released position and the locked position.
[0051] In one embodiment, the anti-trigger remote controller 100 further includes a pressing plate 3. The pressing plate 3 is annular. The switch 51 is located in the middle of the pressing plate 3. The pressing plate 3 is located between the first circuit board 5 and the movable member 2. The pressing plate 3 is arranged in the first housing 1 and forms a limiting space 110 with the first housing 1. The stopper 31 is located on the pressing plate 3 and is located in the limiting space 110. The limiting bump 26 and part of the movable member 2 are both placed in the limiting space 110. The first housing 1 is provided with a through opening 111 at the position corresponding to the limiting space 110. The limiting space 110 is used to limit the movement position of the movable member 2, and the movable member 2 is shown through the through opening 111, so that the user can operate and use the movable member 2.
[0052] In one embodiment, to improve the compactness of the structure of this embodiment and the strength of the structures of the movable member 2 and the pressing plate 3, the number of stoppers 31 is multiple and they are evenly distributed on the pressing plate 3. The number of stoppers 31 is the same as the number of limiting bumps 26. The distance between two adjacent stoppers 31 is greater than the length of the limiting bump 26. The limiting bump 26 is located between two stoppers 31 in the released position.
[0053] In one embodiment, a first engaging component is provided between the stopper 31 and the limiting lug 26. The first engaging component includes a first engaging position 33 and a first engaging block 27 adapted to be used with the first engaging position 33. The first engaging block 27 is placed within the first engaging position 33 when the movable member 2 is in the locked position. In this way, the relative position between the movable member 2 and the first housing 1 when the movable member 2 is in the locked position can be further improved.
[0054] Specifically, the first engaging position 33 is a groove. The first engaging block 27 is provided at the bottom of the limiting lug 26, and the first engaging position 33 is located on the stopper 31. Of course, the first engaging block 27 can also be provided on the stopper 31, and the first engaging position 33 can also be located at the bottom of the limiting lug 26. The surfaces of the first engaging block 27 and the first engaging position 33 can both be spherical surfaces, or the cross-sections of the first engaging block 27 and the first engaging position 33 are trapezoidal or conical, etc., so that the first engaging block 27 can be placed within the first engaging position 33.
[0055] In one embodiment, the movable member 2 includes a top panel 22, a first annular wall 23, and a limiting panel 24. The first annular wall 23 extends downward from the peripheral side of the top panel 22, and the limiting panel 24 extends outward from the first annular wall 23. The limiting panel 24 is placed within the limiting space 110, the limiting lug 26 is located at the bottom of the limiting panel 24, and the first annular wall 23 is placed within the through opening 111 to movably arrange the movable member 2 on the first housing 1, and this structural design can make the structure of the remote controller 100 in this embodiment more compact.
[0056] In one embodiment, a second annular wall 112 is provided on the first housing 1, and the limiting space 110 is formed by surrounding the first housing 1, the second annular wall 112, and the pressing plate 3. A guiding opening 113 is formed in the second annular wall 112, and a guiding block 25 is provided on the movable member 2. The guiding block 25 is placed within the guiding opening 113. By using the cooperation between the guiding block 25 and the guiding opening 113, and the guiding opening 113 being used to limit the movement stroke distance of the movable member 2 between the locked position and the released position, the operation and use of the movable member 2 can be facilitated, and the stability of the movement of the movable member 2 can be improved.
[0057] In one embodiment, a socket 114 is formed in the second annular wall 112, and a plug-in block 34 is provided on the pressing plate 3. The plug-in block 34 is placed within the socket 114 so that the pressing plate 3 will not rotate together when the movable member 2 rotates, and the stability of the connection between the pressing plate 3 and the first housing 1 can be improved.
[0058] In other embodiments, the movable member 2 may not need to be configured with a limiting protrusion 26. Specifically, the movable member 2 may be provided with a hole, and the opening size of the through hole is larger than the outer shape of the stopper 31. That is, when in the release position, the stopper 31 is placed in the hole, and the hole is used to avoid the stopper 31, which can also realize that the movable member 2 is disengaged from the limit of the stopper 31 and can move close to the switch 51 under the action of an external force to trigger the switch 51.
[0059] In one embodiment, the anti-trigger remote controller 100 further includes a first elastic member 4, and two ends of the first elastic member 4 are respectively in contact with the movable member 2 and the first circuit board 5. The first elastic member 4 is used to provide a force for the movable member 2 to move away from the first circuit board 5, so that after the user triggers the switch 51 by the movable member 2, the movable member 2 can be reset. Specifically, the first elastic member 4 can be a spring, a spring sheet, etc.
[0060] In one embodiment, an operation protrusion 21 for the user to operate is provided on the top of the movable member 2 to facilitate the user to rotate the movable member 2.
[0061] In one embodiment, the anti-trigger remote controller 100 further includes a battery 6, the battery 6 is electrically connected to the first circuit board 5, and the first circuit board 5 is located between the movable member 2 and the battery 6. Using the battery 6 to supply power to the first circuit board 5 can enable the remote controller 100 of this embodiment to work effectively.
[0062] Specifically, the battery 6 can be a button battery 6. The button battery 6 has a small volume, which can effectively reduce the volume of the remote controller 100 of this embodiment and is convenient for users to carry. Of course, in other embodiments, the battery 6 can also be a dry battery 6 or a rechargeable battery 6, such as a lithium battery 6, a polymer battery 6, etc.
[0063] In one embodiment, the first housing 1 includes a first front shell 11 and a first bottom shell 12 connected to the first front shell 11. The stopper 31 is provided on the first bottom shell 12, and the movable member 2 is movably arranged on the first bottom shell 12. The first front shell 11 and the first bottom shell 12 are connected, which can tightly fix the battery 6, the first circuit board 5, and the pressing plate 3 to prevent the first circuit board 5 and the pressing plate 3 from shaking.
[0064] In one embodiment, at least one second engaging block 115 is provided on one side of the first front shell 11 close to the first bottom shell 12. A second engaging position 121 is provided on the second front shell 71 at a position corresponding to the second engaging block 115. The second engaging block 115 is placed on the second engaging position 121. The first front shell 11 is locked to the first bottom shell 12 by screws at a position away from the second engaging block 115. By using screws, the first front shell 11 and the first bottom shell 12 can be stably connected. And one end is connected by a buckle, and the other end is locked by a screw, which can reduce the number of screws and facilitate the user to install and disassemble the first front shell 11 and the first bottom shell 12. Of course, in other embodiments, the first front shell 11 can also be entirely connected by screws or buckles, or by means of pressing, pasting, etc.
[0065] In other embodiments, the moving member 2 can also be slidably arranged on the first outer shell 1. It is also possible to realize that when the moving member 2 is in the locked position, the stopper 31 blocks the movement of the moving member 2 close to the switch 51. When in the released position, it is not restricted by the stopper 31, so as to approach the switch 51 under an external force and trigger the switch 51, and the control signal is transmitted through the first wireless module 50 by the first circuit board 5.
[0066] In one embodiment, a hanging hole 13 is formed on the first outer shell 1. The hanging hole 13 can be used in cooperation with a hanging rope, a key ring, etc. to facilitate the user to carry the remote controller 100 of this embodiment.
[0067] Refer to the attached Figures 9-12 , based on the above remote controller 100, this embodiment further provides an anti-barking assembly 300, which includes an anti-barking device 200 and the remote controller 100 described in any of the above embodiments. The anti-barking device 200 includes a second circuit board 8, an anti-barking unit 201 for anti-barking, and a second wireless module 82 for communicating with the first wireless module 50. Both the anti-barking unit 201 and the second wireless module 82 are electrically connected to the second circuit board 8.
[0068] In this way, when the user uses the remote controller 100, that is, when pressing the moving member 2 to trigger the switch 51, the first circuit board 5 detects the electrical signal of the switch 51 being triggered. The first circuit board 5 transmits a wireless signal through the first wireless module 50. The second circuit board 8 receives the wireless signal transmitted by the first wireless module 50 through the second wireless module 82, and drives the anti-barking unit 201 to work when receiving the wireless signal, so as to achieve the effect of punishing the pet. After being stimulated, the pet's instinctive fear will make it stop barking, thus achieving the effect of anti-barking.
[0069] Specifically, the first wireless module 50 can be an infrared emission module, a Bluetooth module, a 3G module, a WIFI module, etc., and the second wireless module 82 can be an infrared reception module, a Bluetooth module, a 3G module, a WIFI module, etc. Also, the first wireless module 50 can be arranged on the first circuit board or be an independent PCB board, etc., and the second wireless module 82 can be arranged on the second circuit board 8 or be an independent PCB board, etc.
[0070] In one embodiment, the barking stopper 200 further includes a second housing 7, and the second circuit board 8 and the second wireless module 82 are both arranged in the second housing 7. The barking prevention unit 201 includes an elastic electrode post 9, and the elastic electrode post 9 includes a conductive base 91, a second elastic member 92, and a conductive post 93. The conductive base 91 is electrically connected to the second circuit board 8, the conductive base 91 is arranged on the second housing 7, the conductive post 93 is slidably arranged on the conductive base 91, at least part of the conductive post 93 is placed outside the second housing 7, and both ends of the second elastic member 92 are abutted against the conductive post 93 and the conductive base 91 respectively. When the barking stopper 200 of this embodiment is worn on the pet's neck, the conductive post 93 contacts the pet. Thus, when the second circuit board 8 drives the elastic electrode post 9 to work, that is, the second circuit board 8 outputs a voltage for stimulating the pet to the elastic electrode post 9 to achieve the function of stopping barking. And by using the second elastic member 92 for the conductive post 93, the conductive post 93 can be made to closely adhere to the pet's skin while preventing the conductive post 93 from contacting the pet rigidly, improving the wearing comfort of the barking stopper 200. Specifically, both the conductive base 91 and the conductive post 93 are made of conductive materials.
[0071] In one embodiment, the second housing 7 includes a second front shell 71 and a second bottom shell 72. The second front shell 71 is connected to the second bottom shell 72 to form a second cavity 70, and the second circuit board 8 and the second wireless module 82 are both arranged in the second cavity 70. The second bottom shell 72 is formed by melt injection molding, and the conductive base 91 is fixed during the melt injection molding process. A stopper 910 is arranged on the outer side wall of the conductive base 91, and the stopper 910 is arranged corresponding to the position of the second bottom shell 72. In this way, the elastic electrode post 9 can be fixed on the second bottom shell 72, and a gap between the conductive base 91 and the second bottom shell 72 can be prevented, achieving a sealing effect, and thus, a waterproof function can be achieved. Also, through the stopper 910, the contact area between the conductive base 91 and the second bottom shell 72 can be increased, effectively improving the connection stability between the conductive base 91 and the second bottom shell 72.
[0072] In one embodiment, the stopper 910 includes a first limiting block 911 and a second limiting block 912 both disposed on the outer sidewall of the conductive base 91. The first limiting block 911 and the second limiting block 912 are spaced apart. A reinforcing cylinder 711 is provided on the second bottom case 72. A through hole 710 penetrating through itself is formed in the reinforcing cylinder 711. Receiving grooves 712 communicating with the through hole 710 are formed at both ends of the reinforcing cylinder 711. The second bottom case 72 and the reinforcing cylinder 711 are integrally injection-molded. The conductive base 91 passes through the through hole 710, and the first limiting block 911 and the second limiting block 912 are respectively placed in the two receiving grooves 712. By using the reinforcing cylinder 711, the first limiting block 911 and the second limiting block 912, the connection stability between the conductive base 91 and the second bottom case 72 can be further improved, and the conductive base 91 can be effectively prevented from falling off the second bottom case 72.
[0073] In one embodiment, a contact elastic piece 81 is provided on the second circuit board 8 at a position corresponding to the conductive base 91. The contact elastic piece 81 abuts against the conductive base 91. The contact elastic piece 81 has elasticity. In this way, when the second circuit board 8 is installed in the second housing 7, the second circuit board 8 can be electrically connected to the conductive base 91 by the contact of the contact elastic piece 81 with the conductive base 91. This connection method is simple and convenient for assembling the anti-barking device 200 of this embodiment.
[0074] It should be noted that all directional indications (such as up, down, left, right, front, back...) in the embodiments of the present invention are only used to explain the relative positional relationship, movement conditions, etc. between components in a specific posture (as shown in the drawings). If the specific posture changes, the directional indication will also change accordingly.
[0075] In addition, the descriptions involving "first", "second", etc. in the present invention are only for descriptive purposes, and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of the features. In addition, "and / or" throughout the text includes three solutions. Taking A and / or B as an example, it includes the A technical solution, the B technical solution, and the technical solution that satisfies both A and B at the same time. In addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the fact that those skilled in the art can implement it. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the protection scope required by the present invention.
[0076] The above are only the preferred embodiments of the present utility model, and do not limit the patent scope of the present utility model accordingly. Any equivalent structural transformation made under the inventive concept of the present utility model by using the content of the specification and drawings of the present utility model, or any direct / indirect application in other related technical fields shall be included within the patent protection scope of the present utility model.
Claims
1. An anti-trigger remote control, characterized in that Comprising: A first housing; A first circuit board disposed on the first housing, and a switch is disposed on the first circuit board; A first wireless module for transmitting wireless signals, and the first wireless module is electrically connected to the first circuit board; A stop block disposed on the first housing; A movable member movably disposed on the first housing, and the movable member is configured to switch between a locked position and a released position when moving relative to the first housing; Wherein, when the movable member is in the locked position, it is blocked by the stop block and cannot trigger the switch; When the movable member is in the released position, it is disengaged from the limit of the stop block, and under the action of an external force, it moves in a direction close to the switch to trigger the switch.
2. The anti-trigger remote controller according to claim 1, characterized in that, A limit bump is disposed at the bottom of the movable member, and a pressing portion for pressing the switch is disposed on the movable member; When the limit bump and the stop block are in relative positions, the movable member is in the locked position, and when the positions of the limit bump and the stop block are not relative, the movable member is in the released position. The movable member is configured to drive the pressing portion close to the switch under the action of an external force when in the released position.
3. The anti-trigger remote controller according to claim 2, wherein The movable member is rotatably disposed on the first housing; The anti-trigger remote control further includes a pressing plate, the pressing plate is annular, the switch is located in the middle of the pressing plate, the pressing plate is located between the first circuit board and the movable member, the pressing plate is disposed inside the first housing and forms a limit space with the first housing, the stop block is located on the pressing plate and within the limit space, and the limit bump and part of the movable member are both placed within the limit space; The number of the stop blocks is multiple and they are evenly distributed on the pressing plate; the distance between two adjacent stop blocks is greater than the length of the limit bump, and the limit bump is located between two stop blocks when in the released position.
4. The anti-trigger remote controller according to claim 3, wherein, A first engaging assembly is disposed between the stop block and the limit bump, and the first engaging assembly includes a first clamping position and a first clamping block adapted to the first clamping position. The first clamping block is placed within the first clamping position when the movable member is in the locked position; The first clamping block is disposed at the bottom of the limit bump, and the first clamping position is located on the stop block; or, the first clamping block is disposed on the stop block, and the first clamping position is located at the bottom of the limit bump.
5. The anti-trigger remote controller according to claim 3, wherein, The movable member includes a top panel, a first annular enclosure wall and a limit panel; the first annular enclosure wall extends downward from the peripheral side of the top panel, and the limit panel extends outward from the first annular enclosure wall. The limit panel is placed within the limit space, the limit bump is located at the bottom of the limit panel, and the first housing is provided with an opening at a position corresponding to the limit space; A second annular enclosure wall is disposed on the first housing, and the limit space is surrounded by the first housing, the second annular enclosure wall and the pressing plate; a guiding opening is provided on the second annular enclosure wall, and a guiding block is disposed on the movable member, and the guiding block is placed within the guiding opening.
6. The anti-trigger remote controller according to any one of claims 1-5, characterized in that, The anti-trigger remote control further includes a first elastic member, and two ends of the first elastic member are respectively in contact with the movable member and the first circuit board.
7. A barking prevention component, characterized in that, Comprising a barking stopper and the remote control according to any one of claims 1-6; the barking stopper includes a second circuit board, a barking stopping unit for stopping barking, and a second wireless module for communicating with the first wireless module; the barking stopping unit and the second wireless module are both electrically connected to the second circuit board; When the second circuit board receives the wireless signal transmitted by the first wireless module through the second wireless module, it drives the barking prevention unit to work.
8. The anti-barking component according to claim 7, wherein The barking prevention device further includes a second housing, and the second circuit board and the second wireless module are both arranged in the second housing; the barking prevention unit includes an elastic electrode post, and the elastic electrode post includes a conductive base, a second elastic member and a conductive post; The conductive base is electrically connected to the second circuit board, the conductive base is arranged on the second housing, the conductive post is slidably arranged on the conductive base, at least part of the conductive post is placed outside the second housing, and two ends of the second elastic member are respectively abutted against the conductive post and the conductive base.
9. The anti-barking component according to claim 8, wherein The second housing includes a second front shell and a second bottom shell, the second front shell and the second bottom shell are connected to form a second cavity, and the second circuit board and the second wireless module are both arranged in the second cavity; The conductive base is fixed by the second bottom shell during injection molding, and a stop is arranged on the outer side wall of the conductive base, and the stop is arranged corresponding to the position of the second bottom shell.
10. The barking prevention component according to claim 8, wherein, A contact elastic piece is arranged on the second circuit board corresponding to the position of the conductive base, and the contact elastic piece abuts against the conductive base.