Storage device for breast pumps

By designing a movable charging connector and fixing bracket in the breast pump storage device, the problem of poor compatibility of the breast pump charging connection is solved, and the charging adaptability to breast pumps of different structures and sizes is achieved, and the application range is expanded.

WO2025161498A1PCT designated stage Publication Date: 2025-08-07SHENZHEN OCEANWING SMART INNOVATIONS TECHNOLOGY CO LTD
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Patent Information

Application Number
PCT/CN2024/125029
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-01-29
Filing Date
2024-10-15
Publication Date
2025-08-07

AI Technical Summary

Technical Problem

Due to the different sizes and structures of the existing breast pump storage devices, the charging connection compatibility is poor, which affects the universality.

Method used

A breast pump storage device is designed, including a storage body and a movable charging connector. The charging connector can be moved relative to the storage body to adapt to the placement positions of different breast pumps, and is connected to the storage body through a fixed bracket to achieve electrical connection with breast pumps of different structures and sizes.

Benefits of technology

The charging compatibility of the storage device for breast pumps with different structures and sizes is improved, and the application scenarios are expanded.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application discloses a storage device for breast pumps. The storage device comprises a storage main body and charging connectors. The storage main body is provided with a storage cavity, and the storage cavity is used for accommodating breast pumps. The charging connectors are movably arranged on the storage main body, and are exposed relative to the storage cavity to charge the breast pumps. The charging connectors can move relative to the storage main body to adjust the positions of the charging connectors, to adapt to the placement positions of the breast pumps in the storage cavity when the breast pumps are placed in the storage cavity, so as to be electrically connected to the breast pumps. The storage device comprises fixed supports, and the fixed supports are fixedly arranged in the storage main body. The fixed supports are movably connected to the charging connectors, so that the charging connectors can move relative to the storage main body. In this way, the compatibility of the charging function of the storage device to different breast pumps can be improved.
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Description

Breast pump storage device

Technical field

[0001] The present application relates to the technical field of maternal and infant equipment, and in particular to a storage device for a breast pump. [Background Technology]

[0002] With the advancement of technology and people's pursuit of a better quality of life, various user-friendly products have emerged to meet users' daily needs. Among them, the advent of breast pumps has made breastfeeding more convenient. Breast pumps extract breast milk and store it in a milk reservoir, making it available to infants when needed.

[0003] To facilitate breast pump management, a storage device can be used to store breast pumps and simultaneously power them. Currently, due to the varying sizes and structures of breast pumps, the storage device suffers from poor compatibility when charging different breast pumps, limiting its versatility.

[0004] [Summary of the invention]

[0005] The main technical problem solved by the present application is to provide a storage device for breast pumps, which can improve the compatibility of the charging function of the storage device with different breast pumps.

[0006] To solve the above-mentioned technical problems, the technical solution adopted in this application is as follows: a storage device for a breast pump is provided. The storage device includes a storage body and a charging connector. The storage body is provided with a storage cavity, which is used to accommodate the breast pump. The charging connector is movably provided on the storage body and exposed relative to the storage cavity, and is used to charge the breast pump. The charging connector is movable relative to the storage body to adjust the position of the charging connector so as to adapt to the placement position of the breast pump in the storage cavity when the breast pump is placed in the storage cavity and to be able to electrically connect to the breast pump. The storage device includes a fixed bracket, which is fixedly provided on the storage body. The fixed bracket and the charging connector are movably connected so that the charging connector can move relative to the storage body.

[0007] The beneficial effects of the present application are as follows: different from the prior art, a storage cavity is provided on the storage body, the storage cavity is used to accommodate a breast pump, the charging connector is movably provided on the storage body and exposed relative to the storage cavity for charging the breast pump, and the charging connector is movable relative to the storage body to adjust the position of the charging connector so that when the breast pump is placed in the storage cavity, it can adapt to the placement position of the breast pump in the storage cavity and be electrically connected to the breast pump. The storage device includes a fixed bracket, which is fixedly provided on the storage body, and the fixed bracket and the charging connector are movably connected so that the charging connector can move relative to the storage body. By arranging the charging connector to be movable relative to the storage body to adjust the position of the charging connector, the charging connector can be matched with different breast pumps when the storage device stores breast pumps of different structures and sizes, thereby improving the compatibility of the charging function of the storage device with breast pumps of different structures and sizes, and making the storage device have a wider range of application scenarios.

Brief Description of the Drawings

[0008] FIG1 is a schematic diagram of the three-dimensional structure of an embodiment of a storage device for a breast pump of the present application;

[0009] FIG2 is a schematic diagram of the exploded structure of the storage device of the breast pump;

[0010] FIG3 is a schematic cross-sectional view of the connection structure between the breast pump and the storage device;

[0011] FIG4 is a cross-sectional view of another connection structure between the breast pump and the storage device;

[0012] FIG5 is an enlarged schematic diagram of portion A shown in FIG3 ;

[0013] FIG6 is an enlarged schematic diagram of portion B shown in FIG4 ;

[0014] FIG7 is a schematic diagram of the connection structure of the charging connector and the fixing bracket shown in FIG3;

[0015] FIG8 is a schematic diagram of the connection structure of the charging connector and the fixing bracket shown in FIG4 ;

[0016] FIG9 is a schematic diagram of the exploded structure of the connection structure between the charging connector and the fixing bracket shown in FIG8 ;

[0017] FIG10 is a schematic diagram of the installation structure of the fixed bracket;

[0018] FIG11 is another exploded structural diagram of an embodiment of the storage device of the breast pump of the present application;

[0019] FIG12 is a schematic structural diagram of the charging connector and the fixing bracket shown in FIG11 . [Specific implementation method]

[0020] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0021] After extensive research, the inventors discovered that, to facilitate breast pump management, a storage device can be used to simultaneously store and power the breast pumps. Currently, due to the varying sizes and structures of breast pumps, the storage device suffers from poor compatibility when charging different breast pumps, limiting its versatility. To address this technical issue, the present application provides the following embodiments.

[0022] As shown in Figures 1 and 2 , the embodiment of the breast pump storage device described in the present application includes a storage body 100 and a charging connector 200. The storage body 100 is provided with a storage cavity 101 for accommodating a breast pump 2. The charging connector 200 is movably disposed on the storage body 100 and exposed relative to the storage cavity 101 for charging the breast pump 2. The charging connector 200 is movable relative to the storage body 100 to adjust its position so that the breast pump 2 can be placed in the storage cavity 101 to accommodate the breast pump 2 and electrically connect to the breast pump 2.

[0023] A breast pump 2 can be used to extract breast milk. Specifically, as shown in Figures 3 and 4, the breast pump 2 includes a detachably connected outer cover assembly 10, a main unit 20, and a milk reservoir assembly 30. The breast pump 2 is used to extract breast milk and store the extracted breast milk in the milk reservoir assembly 30, making it convenient for the infant to consume when needed. During use, one side of the outer cover assembly 10 can be in contact with the human skin, allowing breast milk to pass through the outer cover assembly 10 and enter the milk reservoir assembly 30 located on the other side of the outer cover assembly 10. The main unit 20 located on the other side of the outer cover assembly 10 can be equipped with a suction device. When the suction device is in operation, it generates negative pressure within the outer cover assembly 10, thereby drawing breast milk into the milk reservoir assembly 30. After operation, the breast pump 2 can be disassembled into the independent outer cover assembly 10, milk reservoir assembly 30, and main unit 20, making it easy to clean the outer cover assembly 10 and milk reservoir assembly 30.

[0024] Optionally, the housing assembly 10 includes a heater. This heater heats the housing, thereby promoting milk letdown and enhancing the user's comfort while wearing the breast pump 2. For example, the heater can be a flexible printed circuit board (FPC). Furthermore, the host 20 can power the heater.

[0025] When the breast pump 2 is not in use or needs to be carried outside, the breast pump 2 can be placed in the storage cavity 101, so that the storage body 100 can protect the breast pump 2. When the breast pump 2 is placed in the storage cavity 101, the charging connector 200 can be used to charge the breast pump 2, thereby extending the use time of the breast pump 2 and providing convenience for the user.

[0026] By arranging the charging connector 200 to be movable relative to the storage body 100 to adjust the position of the charging connector 200, the charging connector 200 can be matched and connected with different breast pumps 2 when the storage device 1 stores breast pumps 2 of different structures and sizes, thereby improving the compatibility of the charging function of the storage device 1 with breast pumps 2 of different structures and sizes, and making the storage device 1 have a wider range of application scenarios.

[0027] For example, the breast pump 2 is provided with an electrical connection assembly, which is electrically connected to the charging connector 200 via the electrical connection assembly. The charging connector 200 is movable relative to the storage body 100 along the height direction D1 of the storage device 1. This allows the charging connector 200 to mate with electrical connection assemblies at different heights when the storage device 1 accommodates breast pumps 2 with electrical connection assemblies at different heights. For another example, the charging connector 200 is movable relative to the storage body 100 along the width direction or the length direction of the storage device 1. This allows the charging connector 200 to mate with electrical connection assemblies at different locations along the width direction or the length direction of the storage device 1.

[0028] The storage body 100 is provided with a storage cavity 101 for accommodating the breast pump 2. The charging connector 200 is movably provided on the storage body 100 and exposed relative to the storage cavity 101 for charging the breast pump 2. The charging connector 200 is movable relative to the storage body 100 to adjust the position of the charging connector 200 so as to adapt to the placement position of the breast pump 2 in the storage cavity 101 when the breast pump 2 is placed in the storage cavity 101 and to be electrically connected to the breast pump 2. By arranging the charging connector 200 to be movable relative to the storage body 100 to adjust the position of the charging connector 200, the charging connector 200 can be matched with and connected to different breast pumps 2 of different structures and sizes when the storage device 1 stores breast pumps 2, thereby improving the compatibility of the charging function of the storage device 1 with breast pumps 2 of different structures and sizes, and making the storage device 1 have a wider range of application scenarios.

[0029] As shown in Figures 3 and 4 , the storage device 1 includes a fixing bracket 300 , which is fixed to the storage body 100 . The fixing bracket 300 and the charging connector 200 are movably connected, so that the charging connector 200 can move relative to the storage body 100 .

[0030] By providing the fixing bracket 300 , the charging connector 200 can be movably arranged on the storage body 100 . The fixing bracket 300 can have a limiting function, thereby preventing the charging connector 200 from being separated from the storage body 100 .

[0031] Optionally, as shown in Figures 5 and 6, the fixing bracket 300 is provided with an accommodating space 302 having a first opening 301, and at least a portion of the charging connector 200 is movably accommodated in the accommodating space 302 and movably passes through the first opening 301, and is exposed relative to the storage cavity 101 through the first opening 301.

[0032] For example, the charging connector 200 can move along the direction from the first opening 301 to the receiving cavity 101. For another example, the direction from the first opening 301 to the receiving cavity 101 is defined as a predetermined direction, and the charging connector 200 can move along the length direction or width direction of the first opening 301 perpendicular to the predetermined direction.

[0033] The accommodating space 302 can communicate with the storage cavity 101 through the first opening 301. In some embodiments, the charging connector 200 can be located within the accommodating space 302 when idle. When charging the breast pump 2, the charging connector 200 can partially extend from the accommodating space 302 into the storage cavity 101 through the first opening 301, thereby facilitating electrical connection with the breast pump 2. In other embodiments, the charging connector 200 can be partially located within the accommodating space 302 when idle, and the charging connector 200 can partially extend into the storage cavity 101 through the first opening 301.

[0034] Such an arrangement can improve the flexibility of the position of the charging connector 200 relative to the breast pump 2 , making it easier for the charging connector 200 to be matched and connected to the breast pump 2 .

[0035] Optionally, as shown in FIG. 7 and FIG. 8 , the charging connector 200 and the fixing bracket 300 are rotatably connected, and / or the charging connector 200 and the fixing bracket 300 can move relative to each other along a preset direction to adjust the position of the charging connector 200 .

[0036] By arranging the charging connector 200 and the fixing bracket 300 to be rotatably connected, the charging connector 200 can adjust its position by rotating relative to the fixing bracket 300, thereby facilitating the matching connection between the charging connector 200 and the breast pump 2.

[0037] By arranging the charging connector 200 and the fixing bracket 300 to be relatively movable along a preset direction, the charging connector 200 can adjust its position by moving relative to the fixing bracket 300 along the preset direction, thereby facilitating the matching connection between the charging connector 200 and the breast pump 2.

[0038] In some embodiments, the charging connector 200 can rotate relative to the fixing bracket 300 and can also move along a predetermined direction relative to the fixing bracket 300 .

[0039] Optionally, as shown in FIG. 7 and FIG. 8 , the charging connector 200 and the fixing bracket 300 are rotatably connected around a preset axis and can move relative to each other along a preset direction, and the preset direction and the extension direction of the preset axis intersect each other.

[0040] For example, the direction of the first opening 301 toward the receiving cavity 101 is defined as a preset direction, and the extending direction of the preset axis and the preset direction may be perpendicular to each other.

[0041] For another example, the height direction D1 of the storage device 1 is defined as a preset direction, and the extending direction of the preset axis and the preset direction may be perpendicular to each other.

[0042] Such a configuration allows the charging connector 200 to have multiple forms of movement relative to the fixed bracket 300, increases the degree of freedom of the charging connector 200 relative to the fixed bracket 300, facilitates adjustment of the position of the charging connector 200, and thus facilitates the matching connection of the charging connector 200 with the breast pump 2.

[0043] Optionally, as shown in Figures 5 to 8 , one of the charging connector 200 and the fixed bracket 300 is provided with a rotating shaft 201 extending along a predetermined axis, and the other is provided with a sliding groove 303 extending along a predetermined direction. The sliding groove 303 is connected to the accommodating space 302. The rotating shaft 201 is rotatably inserted into the sliding groove 303 to rotate about the predetermined axis relative to the fixed bracket 300 and slide relative to the fixed bracket 300 in a predetermined direction.

[0044] For example, the charging connector 200 is provided with a rotating shaft 201 extending along a preset axis, and the fixing bracket 300 is provided with a sliding groove 303 extending along a preset direction.

[0045] By rotatably inserting the rotating shaft 201 into the slide groove 303, the slide groove 303 can serve as a limit guide for the rotating shaft 201, and the rotating shaft 201 can slide along the extension direction of the slide groove 303, so that the charging connector 200 can rotate around the preset axis relative to the fixed bracket 300, and can also enable the charging connector 200 to slide along the preset direction relative to the fixed bracket 300.

[0046] In some embodiments, the extending direction of the slide groove 303 is parallel to the height direction D1 of the storage device 1. In other embodiments, the extending direction of the slide groove 303 is parallel to the direction from the first opening 301 to the storage cavity 101.

[0047] In some embodiments, the direction of the first opening 301 toward the storage cavity 101 is parallel to the height direction D1 of the storage device 1. In other embodiments, the direction of the first opening 301 toward the storage cavity 101 intersects the height direction D1 of the storage device 1.

[0048] Optionally, each charging connector 200 and the corresponding fixing bracket 300 are slidably connected via two sliding grooves 303 and two rotating shafts 201 , and the two rotating shafts 201 are respectively inserted into the two sliding grooves 303 .

[0049] Optionally, as shown in Figures 8 and 9, the storage device 1 includes a slider 304. The slider 304 is slidably disposed within the slide groove 303 to slide relative to the fixed bracket 300 in a predetermined direction within the slide groove 303. The slider 304 is provided with a rotation hole 305, and the rotating shaft 201 is rotatably inserted into the rotation hole 305.

[0050] When the radial dimension of the rotating shaft 201 does not match the width dimension of the slide groove 303, a slider 304 can be set between the rotating shaft 201 and the slide groove 303. By setting the slider 304 to cooperate with the rotating shaft 201 and the slide groove 303 respectively, the stability of the rotating shaft 201 moving in the slide groove 303 is improved.

[0051] Specifically, the slider 304 may have two first side surfaces 313 and two second side surfaces 314. The two first side surfaces 313 are disposed opposite each other along the axis of the rotation hole 305, and the two ends of the rotation hole 305 are respectively formed on the two first side surfaces 313, so that the rotation shaft 201 can pass through at least one of the first side surfaces 313. Furthermore, one of the first side surfaces 313 of the slider 304 is disposed toward the accommodation space 302.

[0052] The two second side surfaces 314 are disposed opposite the two side walls in the width direction of the chute 303. Each of the two second side surfaces 314 can be provided with a limiting protrusion 311. The two side walls in the width direction of the chute 303 can be provided with a limiting groove 312. The limiting groove 312 extends parallel to the extending direction of the chute 303. The limiting protrusion 311 can be slidably inserted into the limiting groove 312 to prevent the slider 304 from disengaging from the limiting groove 312.

[0053] Optionally, the storage device 1 includes an elastic member 306 , which elastically abuts between the slider 304 and an end of the sliding groove 303 away from the first opening 301 , and is used to elastically support the slider 304 toward the first opening 301 .

[0054] By positioning the elastic member 306 to elastically support the slider 304 toward the first opening 301, the elastic member 306 supports the charging connector 200 via the slider 304 and the rotating shaft 201, thereby maintaining a stable position of the charging connector 200 relative to the fixed bracket 300, thereby facilitating a stable connection between the charging connector 200 and the breast pump 2. The elastic member 306 is elastically deformable to allow the charging connector 200 to move relative to the fixed bracket 300.

[0055] Optionally, the slider 304 may have a third side surface intersecting the first side surface 313 and the second side surface 314 , and one end of the elastic member 306 may abut against the third side surface.

[0056] 5 to 8 , the first opening 301 faces the receiving cavity 101 along a predetermined connection direction D2, and the charging connector 200 is configured to electrically contact the breast pump 2 in the predetermined connection direction D2. The charging connector 200 can movably pass through the first opening 301 along the predetermined connection direction D2.

[0057] Such an arrangement facilitates the electrical connection between the charging connector 200 and the breast pump 2, thereby improving the connection reliability between the two.

[0058] Optionally, as shown in FIG5 to FIG8 , the charging connector 200 is movable relative to the fixing bracket 300 along the height direction D3 of the breast pump 2 , and the height direction D3 of the breast pump 2 is parallel to or crosses the preset connection direction D2 .

[0059] Specifically, the breast pump 2 is provided with an electrical connection assembly, which electrically connects the breast pump 2 to the charging connector 200. The charging connector 200 is movable relative to the storage body 100 along the height direction D3 of the breast pump 2. Therefore, when the storage device 1 stores breast pumps 2 with electrical connection assemblies of different heights, the charging connector 200 can mate with the electrical connection assemblies at different heights.

[0060] When the height direction D3 of the breast pump 2 is parallel to the preset connection direction D2, the electrical connection assembly can be arranged at the bottom of the breast pump 2, and the charging connector 200 can be connected to the bottom of the breast pump 2. When the height direction D3 of the breast pump 2 intersects the preset connection direction D2, the electrical connection assembly can be arranged on the side of the breast pump 2 facing the charging connector 200, and the charging connector 200 can be connected to the side of the breast pump 2.

[0061] Optionally, as shown in FIG. 9 , the fixing bracket 300 includes a first shell 320 and a second shell 321 , and the first shell 320 and the second shell 321 are fixedly connected to enclose and form an accommodating space 302 .

[0062] For example, the first housing 320 and the second housing 321 can be fixedly connected using screws. Before the first housing 320 and the second housing 321 are fixedly connected, the charging connector 200 can be installed into the accommodating space 302. This arrangement facilitates assembly of the charging connector 200 and helps ensure that the fixing bracket 300 retains the charging connector 200.

[0063] Optionally, as shown in Figure 7, the fixing bracket 300 has a guide groove 307 with two first inclined surfaces 308 arranged at an angle and facing each other. The charging connector 200 has a guide portion 202 with two second inclined surfaces 203 that mate with the two first inclined surfaces 308. The first inclined surfaces 308 and the second inclined surfaces 203 abut against each other in a one-to-one correspondence.

[0064] By providing the guide groove 307 and cooperating with the guide portion 202 , when assembling the charging connector 200 and the fixing bracket 300 , the guide groove 307 can guide the guide portion 202 , which is beneficial for assembling the charging connector 200 and the fixing bracket 300 into place and improving the assembly effect.

[0065] Furthermore, the opening of the guide groove 307 is disposed toward the receiving cavity 101 and communicates with the first opening 301 .

[0066] Optionally, the two sliding grooves 303 are respectively provided through the side walls of the guide groove 307 where the two first inclined surfaces 308 are located.

[0067] Optionally, as shown in Figures 7, 8, and 10, the storage space 302 has a second opening 309. The charging connector 200 is connected to a wire 204, which extends from the storage space 302 through the second opening 309 to the outside of the storage space 302. The storage device 1 includes a wire limiter 400, which is mounted on the storage body 100 and located outside the storage space 302. The wire limiter 400 is used to secure the portion of the wire 204 that extends outside the storage space 302.

[0068] The second opening 309 allows the wire 204 to enter the accommodating space 302 to power the charging connector 200. The wire stopper 400 can be provided to hold the wire 204 outside the accommodating space 302 in place when the charging connector 200 moves relative to the fixing bracket 300, thereby reducing the risk of the wire 204 becoming loose or misplaced. For example, the wire stopper 400 can secure the wire 204 outside the accommodating space 302 to the storage body 100.

[0069] In some embodiments, the second opening 309 is disposed opposite to the first opening 301. For example, the first opening 301 is disposed in the first housing 320, and the second opening 309 is disposed in the second housing 321.

[0070] In other embodiments, the direction of the first opening 301 toward the interior of the accommodating space 302 intersects the direction of the second opening 309 toward the interior of the accommodating space 302. For example, the second opening 309 is provided in the guide groove 307, through which the wire 204 can pass to connect with the charging connector 200, and the guide portion 202 is formed on the outer periphery of the portion of the wire 204 within the guide groove 307.

[0071] Optionally, as shown in Figures 5 to 8 , the charging connector 200 is provided with a first power supply contact 205 and a first alignment magnet 206, and the breast pump 2 is provided with a second power supply contact 21 and a second alignment magnet 22. The first power supply contact 205 is configured to electrically connect to the second power supply contact 21, thereby electrically connecting the charging connector 200 to the breast pump 2. The first alignment magnet 206 is configured to magnetically connect to the second alignment magnet 22, thereby electrically connecting the first power supply contact 205 to the second power supply contact 21.

[0072] The magnetic connection between the first alignment magnet 206 and the second alignment magnet 22 facilitates automatic and accurate alignment of the first power supply contact 205 with the second power supply contact 21. Specifically, when charging the breast pump 2, the second alignment magnet 22 attracts the first alignment magnet 206 after the breast pump 2 is placed in the storage cavity 101, thereby driving the charging connector 200 to move, bringing the first power supply contact 205 and the second power supply contact 21 into contact with each other, thereby achieving automatic alignment and electrical connection between the charging connector 200 and the breast pump 2.

[0073] Furthermore, the first alignment magnet 206 may be disposed on the periphery of the first power supply contact 205 , and the second alignment magnet 22 may be disposed on the periphery of the second power supply contact 21 .

[0074] Optionally, the first power supply contact 205 includes two high-potential contacts and one ground contact, with the two high-potential contacts symmetrically arranged on either side of the ground contact. The second power supply contact 21 only needs to be connected to the ground contact and the one high-potential contact. This arrangement can improve the assembly tolerance of the charging connector 200.

[0075] Optionally, the second power supply contact 21 and the second alignment magnet 22 may be provided on the host 20 , so that the host 20 can be removed from the breast pump 2 and then placed in the storage cavity 101 for charging.

[0076] Optionally, as shown in Figures 5 to 8, a first limiting magnet 207 is provided on the charging connector 200, and a second limiting magnet 310 is provided on the fixing bracket 300. The first limiting magnet 207 is used to magnetically connect with the second limiting magnet 310 to limit the movement of the charging connector 200 relative to the fixing bracket 300.

[0077] When the charging connector 200 is in an idle state, the first limiting magnet 207 and the second limiting magnet 310 are magnetically connected to each other, thereby maintaining relative fixation between the charging connector 200 and the fixing bracket 300, making it easier to store the charging connector 200. After the breast pump 2 finishes charging, the second limiting magnet 310 attracts the first limiting magnet 207, causing the charging connector 200 to return to the idle state.

[0078] Furthermore, the charging connector 200 is provided with a first limiting magnet 207 and a first alignment magnet 206, the fixing bracket 300 is provided with a second limiting magnet 310, and the breast pump 2 is provided with a second alignment magnet 22. The magnetic attraction between the first alignment magnet 206 and the second alignment magnet 22 can be greater than the magnetic attraction between the first limiting magnet 207 and the second limiting magnet 310. To charge the breast pump 2, after placing the breast pump 2 into the storage cavity 101, the second alignment magnet 22 attracts the first alignment magnet 206, thereby driving the charging connector 200 to move and separating the first limiting magnet 207 and the second limiting magnet 310.

[0079] Optionally, as shown in Figures 11 and 12, the fixing bracket 300 is provided with two slots 303, the bottom wall of one of the slots 303 being provided with a second opening 309 that communicates with the accommodation space 302. The charging connector 200 is provided with two rotating shafts 201, each rotatably inserted into the two slots 303. A wire 204 is connected to the charging connector 200. The wire 204 passes through one of the two rotating shafts 201 and extends out of the accommodation space 302 through the second opening 309.

[0080] Such an arrangement can make the arrangement of the wire 204 and the rotating shaft 201 more compact, save the space occupied by the wire 204 and the rotating shaft 201 on the fixing bracket 300, and facilitate the arrangement of other parts on the fixing bracket 300.

[0081] Furthermore, a first limiting magnet 207 is provided on the end of the charging connector 200 facing away from the storage cavity 101, and a second limiting magnet 310 is provided on the side of the fixed bracket 300 facing the storage cavity 101. The first limiting magnet 207 is used to attract the second limiting magnet 310 so that the charging connector 200 and the fixed bracket 300 remain relatively fixed.

[0082] Optionally, as shown in Figures 3, 11, and 12, the storage body 100 is provided with a partition 110 and a receiving cavity 102, with the receiving cavity 101 and the receiving cavity 102 located on either side of the partition 110. A mounting hole 111 is provided on the partition 110, connecting the receiving cavity 101 and the receiving cavity 102. The fixing bracket 300 is mounted on the side of the partition 110 facing the receiving cavity 102 and is arranged opposite the mounting hole 111. At least a portion of the charging connector 200 is movably retained between the partition 110 and the fixing bracket 300, and is exposed to the receiving cavity 101 through the mounting hole 111.

[0083] Such a configuration allows the charging connector 200 to be stored outside the storage cavity 101 , thereby reducing interference of the charging connector 200 with the storage operation of the storage cavity 101 .

[0084] In some embodiments, the charging connector 200 may be completely located between the partition 110 and the fixing bracket 300 when stored. In other embodiments, the charging connector 200 may be partially located between the partition 110 and the fixing bracket 300 when stored, and a portion of the charging connector 200 may be located within the mounting hole 111.

[0085] In some embodiments, the second power supply contact 21 of the breast pump 2 can pass through the mounting hole 111 to connect with the charging connector 200 .

[0086] Optionally, as shown in Figures 3, 11, and 12, the storage device 1 includes a power supply assembly 500, which is disposed within the accommodating chamber 102. The charging connector 200 includes a connected power receiving end 210 and a power output end 220. The power receiving end 210 is movably retained between the partition 110 and the fixing bracket 300 and is electrically connected to the power supply assembly 500. The power output end 220 is configured to move through the mounting hole 111 into the storage chamber 101 to electrically connect to the breast pump 2. The power output end 220 is also configured to exit the storage chamber 101 through the mounting hole 111 for storage.

[0087] Such a configuration can prevent the charging connector 200 from being separated from the fixing bracket 300, thereby improving the movement stability of the charging connector 200 and facilitating the storage of the charging connector 200, thereby improving the aesthetics.

[0088] Furthermore, the rotating shaft 201 is located at the electrical receiving end 210 , and the end of the sliding groove 303 close to the receiving cavity 101 extends to the partition 110 , so that the rotating shaft 201 can be movably stopped between the partition 110 and the fixing bracket 300 .

[0089] Optionally, as shown in FIG. 3 and FIG. 11 , the size of one end of the mounting hole 111 close to the receiving cavity 101 is larger than the size of one end of the mounting hole 111 close to the accommodating cavity 102 .

[0090] With this arrangement, the size of the mounting hole 111 at the end near the accommodating cavity 102 can be smaller, which can match the size of the charging connector 200, thereby facilitating the charging connector 200 to remain fixed when stored. At the same time, the size of the mounting hole 111 at the end near the accommodating cavity 101 can be larger, which is conducive to more free adjustment of the position and posture of the charging connector 200 through rotation and sliding when electrically connected to the breast pump 2, thereby facilitating the connection and alignment of the charging connector 200 and the breast pump 2.

[0091] Optionally, as shown in FIG11 , a light-emitting unit 507 is mounted on the fixing bracket 300 and electrically connected to the charging connector 200. A light guide 506 may be provided through the separator 110. The light-emitting unit 507 is configured to emit light when the charging connector 200 is electrically connected to the breast pump 2, and the light guide 506 is configured to transmit the light emitted by the light-emitting unit 507 to provide a user with a prompt.

[0092] Optionally, as shown in Figures 1, 2, and 10, the storage device 1 includes a power supply assembly 500. The storage body 100 is provided with a receiving cavity 102 spaced apart from the receiving cavity 101. The power supply assembly 500 is disposed in the receiving cavity 102 and is electrically connected to the charging connector 200. For example, the aforementioned wire 204 may extend from the receiving cavity 102 to the storage space 302, and the power supply assembly 500 is electrically connected to the charging connector 200 via the wire 204.

[0093] The provision of the accommodating cavity 102 facilitates the assembly of the power supply assembly 500 and enables the receiving body 100 to protect the power supply assembly 500 .

[0094] Optionally, as shown in Figures 1, 2, and 10, the storage body 100 includes a connecting shell 120, a partition 110, and a base 130, wherein the base 130 is connected to the connecting shell 120 and the partition 110, respectively. The connecting shell 120, the partition 110, and the base 130 enclose a storage chamber 101. The base 130 and the partition 110 enclose a receiving chamber 102. Furthermore, the partition 110 and the base 130 are disposed within the connecting shell 120, and separate the internal space of the connecting shell 120 into the storage chamber 101 and the receiving chamber 102.

[0095] With such an arrangement, the storage cavity 101 and the accommodating cavity 102 can be spaced apart, which facilitates the assembly of the storage device 1 .

[0096] Optionally, the connecting shell 120 may be made of a woven material and may be provided with a zipper 121, so that the storage body 100 can be partially separated and opened to facilitate the taking and placing of the breast pump 2. The base 130 may be made of a plastic material with a supporting and shaping function.

[0097] The base 130 can be used to support the breast pump 2. Further, a circular protrusion 131 can be provided on the base 130. After the breast pump 2 is placed in the storage cavity 101, the outer cover assembly 10 can face the circular protrusion 131 so that the circular protrusion 131 can position the outer cover assembly 10.

[0098] Optionally, the base 130 and the divider 110 may be connected via a threaded connection.

[0099] Optionally, the base 130 includes an upper support portion 133 and a bottom support portion 134. The bottom support portion 134 can be used to support the breast pump 2. The upper support portion 133 is disposed on the side of the bottom support portion 134 facing the breast pump 2 and can be used to support the connecting shell 120. The partition 110 can be disposed opposite the upper support portion 133 and form a side wall of the accommodating cavity 102. A portion of the bottom support portion 134 can form the bottom wall of the accommodating cavity 102.

[0100] Optionally, the divider 110 may be located between the accommodating cavity 102 and the storage cavity 101. The divider 110 may be provided with a mounting hole 111 connecting the storage cavity 101 and the accommodating cavity 102. The fixing bracket 300 may be installed on the side of the divider 110 facing the accommodating cavity 102, with the first opening 301 and the mounting hole 111 facing each other. The charging connector 200 may extend from the accommodating space 302 through the first opening 301 and the mounting hole 111 to the storage cavity 101.

[0101] Furthermore, the wire 204 outside the accommodating space 302 can be fixed on the partition 110 by the wire limiting member 400 .

[0102] Optionally, a handle 122 may be provided on the storage body 100 to facilitate the user to carry the storage device 1 .

[0103] Optionally, a support leg 132 is provided at the bottom of the storage device 1 .

[0104] Optionally, as shown in Figures 1 and 2, the power supply assembly 500 includes an energy storage element 501, which is electrically connected to the charging connector 200 to supply power to the breast pump 2 via the charging connector 200. By providing the energy storage element 501, the storage device 1 can charge the breast pump 2 without being connected to an external power source.

[0105] Optionally, as shown in Figures 1 and 2, the storage body 100 may be provided with a charging port 502. The energy storage element 501 is used to connect to an external power source through the charging port 502. By providing the charging port 502, an external power source can be connected to the charging port 502, thereby powering the energy storage element 501 and the breast pump 2. Furthermore, the charging port 502 is disposed toward the outside of the storage body 100, and the storage body 100 may be provided with an opening to avoid the charging port 502, so as to facilitate connection to an external power source.

[0106] Optionally, the charging interface 502 is a micro USB interface, a type-C interface, or a lighting interface.

[0107] Optionally, as shown in Figures 1 and 2, the power supply assembly 500 includes a detection circuit board 503, which is electrically connected to the energy storage component 501 and is used to obtain power information of the energy storage component 501. By providing the detection circuit board 503 to detect the remaining power of the energy storage component 501, it is convenient to manage the charging function of the storage device 1.

[0108] Furthermore, the power supply component 500 also includes a prompt member 504 and a trigger member 505. The prompt member 504 is electrically connected to the detection circuit board 503 and the trigger member 505 respectively. The prompt member 504 is used to issue a prompt message indicating the power level of the energy storage member 501, and the trigger member 505 is used for the user to touch to trigger the prompt member 504 to issue a prompt message.

[0109] For example, the indicator is an indicator light, and the trigger 505 is a button or a sliding button.

[0110] Optionally, the prompt member 504 and the trigger member 505 are arranged toward the outside of the storage body 100, and an opening may be provided on the storage body 100 to form a shelter for the prompt member 504 and the trigger member 505, so that the prompt member 504 and the trigger member 505 are exposed to the outside world, so that the user can touch the trigger member 505 and observe the indicator light.

[0111] Optionally, as shown in Figures 1 and 2, there are at least two charging connectors 200, and at least two breast pumps 2 are accommodated in the storage cavity 101. The at least two charging connectors 200 are electrically connected to the at least two breast pumps 2 in a one-to-one correspondence.

[0112] For example, there are two charging connectors 200, and two breast pumps 2 are accommodated in the storage cavity 101. The two charging connectors 200 are electrically connected to the two breast pumps 2 in a one-to-one correspondence. The two charging connectors 200 can be the same or different.

[0113] With such an arrangement, the storage device 1 can meet the charging and storage requirements of at least two breast pumps 2 .

[0114] In summary, this embodiment can achieve the goal of adjusting the position of the charging connector 200 by setting the charging connector 200 to be movable relative to the storage body 100. The charging connector 200 can be matched and connected with different breast pumps 2 when the storage device 1 stores breast pumps 2 of different structures and sizes, thereby improving the compatibility of the charging function of the storage device 1 with breast pumps 2 of different structures and sizes, and making the storage device 1 have a wider range of application scenarios.

[0115] The above description is merely an embodiment of the present application and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the present application specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.

Claims

1. A storage device for a breast pump, characterized in that: include: A storage body is provided with a storage cavity, and the storage cavity is used to accommodate the breast pump; a charging connector movably disposed on the storage body and exposed relative to the storage cavity, for charging the breast pump; the charging connector is movable relative to the storage body to adjust the position of the charging connector so as to adapt to the placement of the breast pump in the storage cavity when the breast pump is placed in the storage cavity and enable electrical connection with the breast pump; The storage device includes a fixing bracket, which is fixedly arranged on the storage body; the fixing bracket and the charging connector are movably connected, so that the charging connector can move relative to the storage body.

2. The storage device according to claim 1, wherein: The fixing bracket defines an accommodating space having a first opening. At least a portion of the charging connector is movably accommodated in the accommodating space and movably passes through the first opening, and is exposed relative to the receiving cavity through the first opening.

3. The storage device according to claim 2, wherein: The charging connector and the fixing bracket are rotatably connected, and / or the charging connector and the fixing bracket can move relative to each other along a preset direction to adjust the position of the charging connector.

4. The storage device according to claim 3, wherein: The charging connector and the fixing bracket are rotatably connected around a preset axis and can move relative to each other along the preset direction, and the preset direction and the extension direction of the preset axis intersect with each other.

5. The storage device according to claim 4, characterized in that: One of the charging connector and the fixed bracket is provided with a rotating shaft extending along the preset axis, and the other is provided with a sliding groove extending along the preset direction; the sliding groove is connected to the accommodating space; the rotating shaft is rotatably inserted into the sliding groove to rotate around the preset axis relative to the fixed bracket and slide relative to the fixed bracket along the preset direction.

6. The storage device according to claim 5, characterized in that: The fixed bracket is provided with two said slide grooves, wherein the bottom wall of one of the said slide grooves is provided with a second opening connected to the said accommodating space; the charging connector is provided with two said rotating shafts, and the two said rotating shafts are rotatably inserted into the two said slide grooves respectively; the charging connector is connected to a wire; the said wire is passed through one of the two said rotating shafts and extends to the outside of the said accommodating space through the second opening.

7. The storage device according to claim 5, characterized in that: The storage device includes a slider; the slider is slidably arranged in the slide groove to slide relative to the fixed bracket in the slide groove along the preset direction; the slider is provided with a rotation hole, and the rotating shaft is rotatably inserted into the rotation hole.

8. The storage device according to claim 7, wherein: The receiving device includes an elastic member, which elastically abuts between the slider and an end of the sliding groove away from the first opening, and is used for elastically supporting the slider toward the first opening.

9. The storage device according to claim 2, wherein: The first opening faces the receiving cavity along a preset connection direction, and the charging connector is used to electrically contact the breast pump in the preset connection direction; The charging connector is movable through the first opening along the preset connection direction; and / or the charging connector is movable relative to the fixed bracket along the height direction of the breast pump, and the height direction of the breast pump is parallel to or crosses the preset connection direction.

10. The storage device according to claim 2, wherein: The fixing bracket includes a first shell and a second shell, wherein the first shell and the second shell are fixedly connected to enclose and form the accommodation space; and / or, The fixing bracket has a guide groove, and the guide groove has two first inclined surfaces arranged at an angle and opposite to each other; the charging connector has a guide portion, and the guide portion has two second inclined surfaces matching the two first inclined surfaces; the first inclined surfaces and the second inclined surfaces abut against each other one by one.

11. The storage device according to claim 2, wherein: The accommodating space has a second opening; the charging connector is connected to a wire, and the wire extends from the accommodating space through the second opening to the outside of the accommodating space; The storage device includes a wire limiting member, which is installed on the storage body and located outside the storage space; the wire limiting member is used to fix the portion of the wire extending outside the storage space.

12. The storage device according to claim 1, wherein: The charging connector is provided with a first power supply contact and a first alignment magnet, and the breast pump is provided with a second power supply contact and a second alignment magnet; the first power supply contact is used to be electrically connected to the second power supply contact, so that the charging connector is electrically connected to the breast pump; the first alignment magnet is used to be magnetically connected to the second alignment magnet, so that the first power supply contact is electrically connected to the second power supply contact.

13. The storage device according to claim 1, wherein: A first limiting magnet is provided on the charging connector, and a second limiting magnet is provided on the fixing bracket; the first limiting magnet is used to be magnetically connected to the second limiting magnet to limit the movement of the charging connector relative to the fixing bracket.

14. The storage device according to claim 1, wherein: The storage body is provided with a partition and a accommodating cavity, and the storage cavity and the accommodating cavity are respectively located on both sides of the partition; the partition is provided with a mounting hole connecting the storage cavity and the accommodating cavity, and the fixing bracket is installed on the side of the partition facing the accommodating cavity and is arranged opposite to the mounting hole; at least part of the charging connector is movably stopped between the partition and the fixing bracket, and is exposed to the storage cavity through the mounting hole.

15. The storage device according to claim 14, characterized in that: The storage device includes a power supply assembly, which is arranged in the accommodating cavity; the charging connector has an electrical receiving end and an electrical output end connected to each other; the electrical receiving end can be movably stopped between the partition and the fixed bracket, and is electrically connected to the power supply assembly; the electrical output end is used to move into the storage cavity through the mounting hole and electrically connect to the breast pump, and the electrical output end is also used to leave the storage cavity through the mounting hole to be stored.

16. The storage device according to claim 15, characterized in that: The size of one end of the mounting hole close to the receiving cavity is larger than the size of one end of the mounting hole close to the accommodating cavity.

17. The storage device according to claim 15, characterized in that: The power supply assembly includes an energy storage component, and the energy storage component is electrically connected to the charging connector to supply power to the breast pump through the charging connector; The storage body is provided with a charging interface, and the energy storage component is used to connect to an external power source through the charging interface; and / or the power supply component includes a detection circuit board, which is electrically connected to the energy storage component, and the detection circuit board is used to obtain power information of the energy storage component.

18. The storage device according to claim 14, wherein: The storage body includes a connecting shell and a base, and the base is connected to the connecting shell and the partition respectively; the connecting shell, the partition and the base are arranged to form the storage cavity; the base and the partition are arranged to form the accommodating cavity.

19. The storage device according to any one of claims 1 to 18, characterized in that: There are at least two charging connectors, and at least two breast pumps are accommodated in the storage cavity; the at least two charging connectors are electrically connected to the at least two breast pumps in a one-to-one correspondence.

Citation Information

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