Infant monitor

By employing a protective shell and a motor-driven shell rotation structure in the baby monitor, the problems of dust accumulation at the insertion slot and manufacturing difficulties have been solved, achieving dustproof, easy insertion and removal, and flexible shooting effects.

CN223613410UActive Publication Date: 2025-11-28DONGGUAN ANHONG ELECTRONIC TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422922126.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-11-28
Estimated Expiration
2034-11-28

AI Technical Summary

Technical Problem

The exposed card slots of existing baby monitors cause dust accumulation, and the traditional cover structure increases manufacturing difficulty, affecting aesthetics and user experience.

Method used

Design an infant monitor that uses a protective shell and a motor-driven shell rotation structure. The motor drives the monitoring shell and the protective shell to rotate, hiding the card slot to prevent dust accumulation and allowing for convenient insertion and removal of memory cards when needed.

Benefits of technology

It effectively prevents dust accumulation in the card slot, simplifies the production process, improves the user experience, maintains the flexibility of the camera's shooting angle, and facilitates the insertion and removal of memory cards.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223613410U_ABST
    Figure CN223613410U_ABST
Patent Text Reader

Abstract

The utility model discloses a baby monitor, and relates to the technical field of monitors, a monitoring shell is internally provided with a circuit board in which a memory card can be inserted, and the lower side of the monitoring shell is provided with a card insertion opening corresponding to a memory card slot on the circuit board; when the second motor rotates forwards / backwards, the limiting sliding rod correspondingly slides in the rotation amount limiting arc-shaped sliding groove along the arc length of the rotation amount limiting arc-shaped sliding groove and abuts against the sliding groove portions corresponding to the two end points of the arc length to form rotation amount limitation. The limited rotation amount meets the condition that the lower side of the monitoring shell can rotate forwards or rotate to the front lower direction, and the card insertion opening forwards exceeds the lower side protection shell; during normal use, the card insertion opening can be shielded and protected by the lower side protection shell and the rear side protection shell, foreign matter blockage is prevented, and accumulated dust is reduced; when the memory card needs to be plugged and unplugged, the card plugging opening can forwards exceed the lower side protection shell, and a user can conveniently plug and unplug the memory card.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to monitor technical field especially relates to a baby monitor. BACKGROUND

[0002] Most baby monitors have non-volatile storage function, for example, for storing monitored video, and for the convenience of users to take out the stored data, it is usually stored in the form of SD card or TF card, and is quickly inserted and taken out through the card insertion port outside the baby monitor.

[0003] But in use, since the card insertion port is directly arranged outside the baby monitor, if the exposure is too obvious, there will be a lot of dust in the card insertion port, and part of the baby monitor will connect a cover plate at the card insertion port through a screw or connect a cover plate through a clamping mode. The setting of the cover plate will on the one hand cause the increase of the forming mold, and in the production and assembly of the product, it will cause the increase of the production difficulty in the process (from the injection molding of the cover plate to the transfer, and finally to the assembly).

[0004] Therefore, it is necessary to design a baby monitor which can avoid dust accumulation in the card insertion port as much as possible when in use, especially when the baby monitor is placed on a high platform or hung on the wall to shoot downward or downward, and there is no traditional cover plate structure to block when the SD card or TF card needs to be taken out. UTILITY MODEL CONTENT

[0005] The utility model aims at providing a technical scheme which can solve the above problems.

[0006] To achieve the above object, the utility model provides the following technical scheme: a baby monitor, including the mounting seat, the mounting seat is provided with the protection shell, the protection shell is provided with the monitoring shell, the protection shell has the side protection shell of left side and / or right side corresponding the monitoring shell, has the back protection shell of back side corresponding the monitoring shell, and has the downside protection shell of downside corresponding the monitoring shell, the camera is installed in the monitoring shell, and the camera carries out shooting through the front window of monitoring shell or carries out shooting through the front window of monitoring shell and stretches out, the second motor is installed in the monitoring shell, the side of the monitoring shell corresponding the side protection shell has the second communication hole of intercommunication monitoring shell interior, and the rotating output shaft of second motor is connected with the side protection shell after wearing the second communication hole, for driving monitoring shell relative protection shell body and rotates up and down, the monitoring shell corresponding the side protection shell on the side is formed with the rotation amount limit arc -shaped sliding groove corresponding the up and down rotation direction, the limiting sliding rod is formed on the side protection shell and is inserted in the rotation amount limit arc -shaped sliding groove, when the second motor rotates forwardly / contrary, the limiting sliding rod is corresponding in the rotation amount limit arc -shaped sliding groove and slides along its arc length, and the sliding groove part corresponding the arc length end point is resisted to form the rotation amount limit; The limited rotation amount satisfies: the downside of monitoring shell rotates to rear or rotates to rear lower direction, and the downside of monitoring shell rotates to front or rotates to front lower direction; The circuit board of memory card can be inserted is installed in the monitoring shell, and the downside of monitoring shell is provided with the card insertion opening corresponding the memory card slot on the circuit board; The limited rotation amount also satisfies: the downside of monitoring shell can rotate to front or rotate to front lower direction, and the card insertion opening is forwardly more than downside protection shell.

[0007] As a further scheme of the utility model: the inside of the mounting seat has an installation cavity, and a first motor is installed in the installation cavity; the top of the mounting seat has a first communication hole communicating with the installation cavity, and a rotating output shaft of the first motor is connected with the protection shell body after penetrating upward through the first communication hole, so as to drive the protection shell body to rotate relative to the mounting seat.

[0008] As a further scheme of the utility model: the card insertion opening is from the positive downward to more than the downside protection shell forwardly, and the angle of rotation is greater than 40 degrees.

[0009] As a further scheme of the utility model: the downside of the monitoring shell is provided in an outwardly convex arc shape, the downside protection shell is provided in an adaptively concave arc shape, and the bottom side of the downside protection shell has a chip removal channel communicating with a concave middle portion of the top side of the downside protection shell.

[0010] Compared with the prior art, the beneficial effects of the technical scheme are that: in normal use, the camera can be used for forward shooting or shooting monitoring by being inclined downward, at this time, the card insertion opening can be shielded and protected by the lower protective shell and the rear protective shell, to prevent foreign matter from blocking and reduce dust accumulation; when it is necessary to insert or pull out the memory card, the rotation of the second motor or manual turning can be controlled to make the card insertion opening exceed the lower protective shell, so that the user can conveniently insert or pull out the memory card; and on the basis of the original second motor, only the position of the card insertion opening and the rotation stroke of the second motor need to be set, which is more beneficial to production.

[0011] The additional aspects and advantages of the present application will be given in part in the following description, and will become apparent from the following description, or will be learned by practice of the present application. BRIEF DESCRIPTION OF DRAWINGS

[0012] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the drawings needed to be used in the following embodiment or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0013] Figure 1 is a structural perspective view of the present application;

[0014] Figure 2 is a structural sectional view of the present application;

[0015] Figure 3 is Figure 2 is an enlarged schematic view of the local structure at A in the figure;

[0016] Figure 4 is a structural schematic view of the limiting slide rod in the present application;

[0017] Figure 5 is a structural schematic view of the rotating amount limiting arc-shaped sliding groove in the present application;

[0018] Figure 6 is another structural perspective view of the present application, and the card insertion opening exceeds the lower protective shell forwardly.

[0019] The corresponding reference signs in the drawings are explained as follows:

[0020] mounting seat-1, protective shell-2, mounting cavity-3, first motor-4, monitoring shell-5, camera-6, second motor-7, rotating amount limiting arc-shaped sliding groove-8, limiting slide rod-9, circuit board-10, memory card slot-11, card insertion opening-12, chip removal channel-13, memory card-14,

[0021] left side protective shell-201, right side protective shell-202, rear side protective shell-203, lower side protective shell-204. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0023] Please refer to Figures 1-6 The utility model discloses a baby monitor, including the mounting seat 1, is provided with the protective shell 2 on the mounting seat 1, the inside of mounting seat 1 has installation cavity 3, is installed with first motor 4 in installation cavity 3, the top of mounting seat 1 has the first intercommunication hole of intercommunication installation cavity 3, and the rotating output shaft of first motor 4 is connected with protective shell 2 after going up through the first intercommunication hole to be used to drive protective shell 2 relative mounting seat 1 and rotate.

[0024] In some embodiments, when the mounting seat 1 is installed in the corresponding monitoring position, and the rotating output shaft of the first motor 4 is vertically arranged, the first motor 4 can be used to drive the protective shell 2 to rotate horizontally relative to the mounting seat 1.

[0025] In the embodiment, the monitoring shell 5 is arranged on the protective shell 2. The protective shell 2 has a left side protective shell 201 corresponding to the left side of the monitoring shell 5, a right side protective shell 202 corresponding to the right side of the monitoring shell 5, a rear side protective shell 203 corresponding to the rear side of the monitoring shell 5, and a lower side protective shell 204 corresponding to the lower side of the monitoring shell 5.

[0026] That is, the left side protective shell 201 can shield and protect the left side of the monitoring shell 5, the right side protective shell 202 can shield and protect the right side of the monitoring shell 5, the rear side protective shell 203 can shield and protect the rear side of the monitoring shell 5, and the lower side protective shell 203 can shield and protect the lower side of the monitoring shell 5. The left side protective shell 201 and the right side protective shell 202 constitute a side protective shell.

[0027] The camera 6 is installed in the monitoring shell 5, and the camera 6 shoots through the front window of the monitoring shell 5 or extends out to shoot through the front window of the monitoring shell.

[0028] The second motor 7 is installed in the monitoring shell 5, and the left side or the right side of the monitoring shell 5 has a second communication hole communicating with the inside of the monitoring shell 5. The rotating output shaft of the second motor 7 passes through the second communication hole to the left or to the right and is connected with the protection shell (the left protection shell 201 or the right protection shell 202) to drive the monitoring shell 5 to rotate relative to the protection shell 2.

[0029] In some embodiments, when the mounting seat 1 is installed in the corresponding monitoring position and the rotating output shaft of the second motor 7 is horizontally arranged, the second motor 7 can be used to drive the monitoring shell 5 to rotate up and down relative to the protection shell 2.

[0030] In some embodiments, the first motor 4 and the second motor 7 are used together to rotate horizontally and rotate up and down, so that the shooting angle of the camera 6 can be adjusted up and down and horizontally.

[0031] In this embodiment, a rotation amount limiting arc-shaped sliding groove 8 corresponding to the up-and-down rotation direction is formed on the left side or the right side of the monitoring shell 5, and a limiting sliding rod 9 penetrating into the rotation amount limiting arc-shaped sliding groove 8 is formed on the protection shell (the corresponding left protection shell 201 or right protection shell 202).

[0032] When the second motor 7 rotates forward or reversely, the limiting sliding rod 9 slides along the arc length in the rotation amount limiting arc-shaped sliding groove 8 and is stopped at the sliding groove positions corresponding to the two endpoints of the arc length to limit the rotation amount.

[0033] The limited rotation amount satisfies that the lower side of the monitoring shell 5 (the side with the front window is the front side of the monitoring shell) can be rotated to the rear or to the rear and lower direction, and the lower side of the monitoring shell 5 can be rotated to the front or to the front and lower direction.

[0034] In this embodiment, a circuit board 10 on which a memory card 14 can be inserted is installed in the monitoring shell 5, and a card insertion opening 12 corresponding to a memory card slot 11 on the circuit board 10 is formed on the lower side of the monitoring shell 5.

[0035] The limited rotation amount also satisfies that the lower side of the monitoring shell 5 can be rotated to the front or to the front and lower direction, and the card insertion opening 12 exceeds the lower side protection shell 204 forwardly.

[0036] That is, the monitoring shell 5 can be rotated up and down, and the monitoring shell 5 can be flipped up to make the card insertion opening 12 exceed the lower side protection shell 204 forwardly, so that the card insertion opening 12 is protected from being shielded by the lower side protection shell 204.

[0037] In normal use, the camera 6 can be used to shoot forwardly or to shoot in a direction deviated downwardly, and at this time, the card insertion opening 12 can be shielded and protected by the lower side protection shell 204 and the rear side protection shell 203 to prevent foreign matter from blocking and reduce dust accumulation.

[0038] When the memory card 14 needs to be inserted or removed, the rotation of the second motor can be controlled or manually twisted to make the card slot 12 forward beyond the lower protective shell 204, so that the user can conveniently insert or remove the memory card 14; and on the basis of the original second motor, only the position of the card slot 12 and the rotation stroke of the second motor 7 need to be set, which is more beneficial to production.

[0039] In some embodiments, the type of memory card 11 slot is, for example, an SD card slot, a TF card slot, or the like.

[0040] In some embodiments, the rotation angle required for the card slot 12 to turn from the forward-down position to the forward position beyond the lower protective shell is greater than 40°, which reserves more adjustment angles for the upward rotation of the camera 6 for shooting.

[0041] In some embodiments, the lower side of the monitoring shell 5 is provided with an outward convex arc shape, the lower protective shell 204 is provided with a matching concave arc shape, and the bottom side of the lower protective shell 204 has a chip removal channel 13 that communicates with the concave middle part of the top side of the lower protective shell 204. When dust enters between the lower protective shell 204 and the monitoring shell 5, the dust accumulation at the card slot 12 can be reduced to reduce dust accumulation in the memory card slot.

[0042] As shown in Figure 2 the dust can enter the mounting seat along the indicated route of the black arrow in the figure along the chip removal channel 13 and from the communication hole on the mounting seat and finally deposit in the mounting seat or from the discharge hole on the mounting seat.

[0043] In some embodiments, since the first motor can cause the protective shell to rotate relative to the mounting seat, the top of the mounting seat has an arc-shaped wire passing hole (not shown) that communicates with the inside of the mounting seat. The arc direction of the arc-shaped wire passing hole corresponds to the rotation direction of the protective shell relative to the mounting seat. The protective shell has a corresponding arc-shaped wire passing hole.

[0044] The protective shell and the monitoring shell also have arc-shaped wire passing holes corresponding to the rotation direction of the monitoring shell relative to the protective shell. In order to avoid winding the wire when rotating.

[0045] It is apparent for a person skilled in the art that the present application is not restricted to the details of the above exemplary embodiments, but that it can be implemented in other concrete forms without departing from the spirit or the essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary only, and not limiting, the scope of the present application being defined by the appended claims rather than the above description, and all changes coming within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims concerned.

Claims

1. An infant monitor, characterized by The mounting base is provided with a protection shell, and the protection shell is provided with a monitoring shell; The protection shell has a side protection shell corresponding to the left side and / or the right side of the monitoring shell, a back protection shell corresponding to the back side of the monitoring shell, and a lower side protection shell corresponding to the lower side of the monitoring shell; The monitoring shell is provided with a camera, which can shoot through the front window of the monitoring shell or extend to shoot through the front window of the monitoring shell. The monitoring shell is provided with a second motor, and the side corresponding to the side protection shell of the monitoring shell is provided with a second communication hole communicating with the inside of the monitoring shell. The rotating output shaft of the second motor passes through the second communication hole and is connected with the side protection shell, so as to drive the monitoring shell to rotate up and down relative to the protection shell. The side corresponding to the side protection shell of the monitoring shell is formed with a rotation amount limiting arc-shaped sliding groove corresponding to the up-down rotation direction, and the side protection shell is formed with a limiting sliding rod penetrating into the rotation amount limiting arc-shaped sliding groove. When the second motor rotates forward or reversely, the limiting sliding rod slides along the arc length of the rotation amount limiting arc-shaped sliding groove, and the limiting sliding rod is stopped at the sliding groove positions corresponding to the two ends of the arc length to limit the rotation amount. The limited rotation amount satisfies that the lower side of the monitoring shell rotates to the rear or the rear and lower direction, and the lower side of the monitoring shell rotates to the front or the front and lower direction. The monitoring shell is provided with a circuit board into which a memory card can be inserted, and the lower side of the monitoring shell is provided with a card insertion opening corresponding to the memory card slot on the circuit board. The limited rotation amount also satisfies that the lower side of the monitoring shell can rotate to the front or the front and lower direction, and the card insertion opening exceeds the lower side protection shell forward.

2. The baby monitor of claim 1, wherein, The mounting base is provided with a protection shell, and the protection shell is provided with a monitoring shell; The protection shell has a side protection shell corresponding to the left side and / or the right side of the monitoring shell, a back protection shell corresponding to the back side of the monitoring shell, and a lower side protection shell corresponding to the lower side of the monitoring shell; 3. The baby monitor of claim 1, wherein, The monitoring shell is provided with a camera, which can shoot through the front window of the monitoring shell or extend to shoot through the front window of the monitoring shell. The monitoring shell is provided with a second motor, and the side corresponding to the side protection shell of the monitoring shell is provided with a second communication hole communicating with the inside of the monitoring shell. The rotating output shaft of the second motor passes through the second communication hole and is connected with the side protection shell, so as to drive the monitoring shell to rotate up and down relative to the protection shell.

4. The baby monitor of claim 1 or 3, wherein, The side corresponding to the side protection shell of the monitoring shell is formed with a rotation amount limiting arc-shaped sliding groove corresponding to the up-down rotation direction, and the side protection shell is formed with a limiting sliding rod penetrating into the rotation amount limiting arc-shaped sliding groove. When the second motor rotates forward or reversely, the limiting sliding rod slides along the arc length of the rotation amount limiting arc-shaped sliding groove, and the limiting sliding rod is stopped at the sliding groove positions corresponding to the two ends of the arc length to limit the rotation amount. The limited rotation amount satisfies that the lower side of the monitoring shell rotates to the rear or the rear and lower direction, and the lower side of the monitoring shell rotates to the front or the front and lower direction. The monitoring shell is provided with a circuit board into which a memory card can be inserted, and the lower side of the monitoring shell is provided with a card insertion opening corresponding to the memory card slot on the circuit board. The limited rotation amount also satisfies that the lower side of the monitoring shell can rotate to the front or the front and lower direction, and the card insertion opening exceeds the lower side protection shell forward. The mounting base is provided with a protection shell, and the protection shell is provided with a monitoring shell; The protection shell has a side protection shell corresponding to the left side and / or the right side of the monitoring shell, a back protection shell corresponding to the back side of the monitoring shell, and a lower side protection shell corresponding to the lower side of the monitoring shell; The monitoring shell is provided with a camera, which can shoot through the front window of the monitoring shell or extend to shoot through the front window of the monitoring shell. The monitoring shell is provided with a second motor, and the side corresponding to the side protection shell of the monitoring shell is provided with a second communication hole communicating with the inside of the monitoring shell. The rotating output shaft of the second motor passes through the second communication hole and is connected with the side protection shell, so as to drive the monitoring shell to rotate up and down relative to the protection shell. The side corresponding to the side protection shell of the monitoring shell is formed with a rotation amount limiting arc-shaped sliding groove corresponding to the up-down rotation direction, and the side protection shell is formed with a limiting sliding rod penetrating into the rotation amount limiting arc-shaped sliding groove. When the second motor rotates forward or reversely, the limiting sliding rod slides along the arc length of the rotation amount limiting arc-shaped sliding groove, and the limiting sliding rod is stopped at the sliding groove positions corresponding to the two ends of the arc length to limit the rotation amount. The limited rotation amount satisfies that the lower side of the monitoring shell rotates to the rear or the rear and lower direction, and the lower side of the monitoring shell rotates to the front or the front and lower direction. The monitoring shell is provided with a circuit board into which a memory card can be inserted, and the lower side of the monitoring shell is provided with a card insertion opening corresponding to the memory card slot on the circuit board. The limited rotation amount also satisfies that the lower side of the monitoring shell can rotate to the front or the front and lower direction, and the card insertion opening exceeds the lower side protection shell forward. The mounting base is provided with a protection shell, and the protection shell is provided with a monitoring shell; The protection shell has a side protection shell corresponding to the left side and / or the right side of the monitoring shell, a back protection shell corresponding to the back side of the monitoring shell, and a lower side protection shell corresponding to the lower side of the monitoring shell; The monitoring shell is provided with a camera, which can shoot through the front window of the monitoring shell or extend to shoot through the front window of the monitoring shell. The monitoring shell is provided with a second motor, and the side corresponding to the side protection shell of the monitoring shell is provided with a second communication hole communicating with the inside of the monitoring shell. The rotating output shaft of the second motor passes through the second communication hole and is connected with the side protection shell, so as to drive the monitoring shell to rotate up and down relative to the protection shell. The side corresponding to the side protection shell of the monitoring shell is formed with a rotation amount limiting arc-shaped sliding groove corresponding to the up-down rotation direction, and the side protection shell is formed with a limiting sliding rod penetrating into the rotation amount limiting arc-shaped sliding groove. When the second motor rotates forward or reversely, the limiting sliding rod slides along the arc length of the rotation amount limiting arc-shaped sliding groove, and the limiting sliding rod is stopped at the sliding groove positions corresponding to the two ends of the arc length to limit the rotation amount. The limited rotation amount satisfies that the lower side of the monitoring shell rotates to the rear or the rear and lower direction, and the lower side of the monitoring shell rotates to the front or the front and lower direction. The monitoring shell is provided with a circuit board into which a memory card can be inserted, and the lower side of the monitoring shell is provided with a card insertion opening corresponding to the memory card slot on the circuit board. The limited rotation amount also satisfies that the lower side of the monitoring shell can rotate to the front or the front and lower direction, and the card insertion opening exceeds the lower side protection shell forward. The mounting base is provided with a protection shell, and the protection shell is provided with a monitoring shell; The protection shell has a side protection shell corresponding to the left side and / or the right side of the monitoring shell, a back protection shell corresponding to the back side of the monitoring shell, and a lower side protection shell corresponding to the lower side of the monitoring shell; The monitoring shell is provided with a camera, which can shoot through the front window of the monitoring shell or extend to shoot through the front window of the monitoring shell. The monitoring shell is provided with a second motor, and the side corresponding to the side protection shell of the monitoring shell is provided with a second communication hole communicating with the inside of the monitoring shell. The rotating output shaft of the second motor passes through the second communication hole and is connected with the side protection shell, so as to drive the monitoring shell to rotate up and down relative to the protection shell. The side corresponding to the side protection shell of the monitoring shell is formed with a rotation amount limiting arc-shaped sliding groove corresponding to the up-down rotation direction, and the side protection shell is formed with a limiting sliding rod penetrating into the rotation amount limiting arc-shaped sliding groove. When the second motor rotates forward or reversely, the limiting sliding rod slides along the arc length of the rotation amount limiting arc-shaped sliding groove, and the limiting sliding rod is stopped at the sliding groove positions corresponding to the two ends of the arc length to limit the rotation amount. The limited rotation amount satisfies that the lower side of the monitoring shell rotates to the rear or the rear and lower direction, and the lower side of the monitoring shell rotates to the front or the front and lower direction. The monitoring shell is provided with a circuit board into which a memory card can be