Storage device and temperature control method and device for wearable breast pump

By designing a storage device that integrates a charging interface and temperature control for the breast pump, the charging limitations and battery anxiety issues of breast pumps in out-of-home scenarios are solved, enabling portable charging and temperature adjustment, and improving breast pumping efficiency and comfort.

CN116764013BActive Publication Date: 2025-11-18SHENZHEN OCEANWING SMART INNOVATIONS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202310714037.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-04-22
Publication Date
2025-11-18
Estimated Expiration
2042-04-22

AI Technical Summary

Technical Problem

The current charging method for breast pumps is mainly wired charging, which limits their application in out-of-home scenarios, and breastfeeding mothers worry that insufficient power may lead to blocked milk ducts or mastitis.

Method used

A storage device for a wearable breast pump is provided, which integrates a charging interface and a temperature control unit. It supports magnetic charging and a contoured structure, can automatically charge when out and about, and adjusts the temperature of the speaker cover to the target temperature through the temperature control unit to promote blood circulation and improve breast pumping efficiency.

Benefits of technology

It achieves portable charging and temperature control for breast pumps, reducing battery anxiety, improving pumping efficiency and comfort, and avoiding the risk of burns from low temperatures.

✦ Generated by Eureka AI based on patent content.

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Abstract

Embodiments of the present disclosure relate to a storage device of a wearable breast pump, a temperature control method and device, an electronic device and a storage medium. The storage device includes a storage unit, wherein the storage unit is used to place the wearable breast pump; and the storage unit includes a charging interface used to charge the wearable breast pump. According to the present application, the charging function is integrated into the storage device of the wearable breast pump, realizing the charging and storage functions of the wearable breast pump, reducing the volume of the storage device of the wearable breast pump, facilitating carrying, and charging the breast pump for subsequent use of the breast pump for breast pumping, facilitating use in scenarios such as going out.
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Description

[0001] This application is a divisional application of patent application No. 202210432797.7, filed on April 22, 2022, entitled "Storage device, temperature control method, apparatus, electronic device and storage medium". Technical Field

[0002] This disclosure relates to the field of breast pump technology, and more particularly to a storage device and temperature control method and apparatus for a wearable breast pump. Background Technology

[0003] Breastfeeding mothers need to use a breast pump every 2-3 hours on average. When they need to use it, they will be very anxious if they find that there is no power to the breast pump. This is because if the milk is not expressed in time when it is engorged, it can easily cause blocked milk ducts or even mastitis. Therefore, most breastfeeding mothers are anxious about the power of the breast pump, worrying that there will be no power when they need to use it.

[0004] However, most breast pumps are currently wired, requiring users to carry a charging cable when out and about and to find a place to charge them, which greatly limits the application scenarios of breast pumps. Summary of the Invention

[0005] In view of this, in order to solve some or all of the above-mentioned technical problems, this disclosure provides a storage device for a wearable breast pump and a temperature control method and apparatus.

[0006] In a first aspect, embodiments of this disclosure provide a storage device for a wearable breast pump, the storage device comprising a storage unit, wherein:

[0007] The storage unit is used to hold the wearable breast pump;

[0008] The storage unit includes a charging interface for charging the wearable breast pump.

[0009] Optionally, in the storage device for the wearable breast pump according to any embodiment of this disclosure, the charging interface magnetically charges the wearable breast pump via a Pogo-pin. When the wearable breast pump is placed in the storage unit, the charging interface is attached to the charging position of the wearable breast pump.

[0010] Optionally, in the storage device of the wearable breast pump in any embodiment of this disclosure, the storage space of the storage unit is a contoured structure of the wearable breast pump.

[0011] Optionally, in the storage device for the wearable breast pump according to any embodiment of this disclosure, the wearable breast pump includes a speaker cover, and the storage device further includes a temperature control unit, the storage unit being connected to the temperature control unit;

[0012] The temperature control unit is used to control the temperature of the speaker cover placed in the storage unit, so as to adjust the temperature of the speaker cover to a target temperature, wherein the target temperature is greater than the temperature of a human breast.

[0013] Optionally, in the storage device of the wearable breast pump according to any embodiment of the present disclosure, the storage unit includes at least one sterilizing lamp and a reflective material, at least one of the sterilizing lamps and the reflective material are disposed on the inner wall of the storage unit, and the reflective material is used to reflect the light emitted by the sterilizing lamps.

[0014] Optionally, in the storage device of the wearable breast pump according to any embodiment of this disclosure, the temperature control unit includes a heat-conducting sheet, a heating sheet, a temperature sensor, a temperature indicator light, a heating switch, and a buzzer, wherein:

[0015] The heating element is located below the heat-conducting sheet, and the heating element is heated by the heating switch or by application control.

[0016] The aforementioned heat-conducting sheet is used to transfer the heat generated by the aforementioned heating sheet to the location of the aforementioned speaker cover;

[0017] The aforementioned temperature indicator light is used to indicate whether the temperature of the aforementioned speaker cover has reached the aforementioned target temperature;

[0018] The temperature sensor described above is used to detect the temperature of the speaker cover described above;

[0019] The buzzer is used to indicate that the temperature of the speaker cover has reached the target temperature.

[0020] Optionally, in the storage device of the wearable breast pump according to any embodiment of this disclosure, the target temperature is greater than or equal to 45 degrees Celsius, and less than or equal to 55 degrees Celsius; and / or

[0021] The target temperature mentioned above is set by the user.

[0022] Secondly, embodiments of this disclosure provide a temperature control method, the method comprising:

[0023] The temperature of the breast pump's horn cover is adjusted to a target temperature using a target storage device, wherein the target temperature is higher than the temperature of a human breast.

[0024] The aforementioned target storage device is the storage device described in any embodiment of the first aspect that includes a temperature control unit.

[0025] Optionally, in the temperature control method of any embodiment of this disclosure, the target storage device includes a power supply interface; the power supply interface is used to connect a power cord to provide power to the target storage device; and

[0026] After adjusting the temperature of the breast pump's vent cover to the target temperature using the target storage device, the method further includes:

[0027] If the above power supply interface is connected to the power cord, the temperature control unit that controls the above target storage device will continuously keep the above speaker cover warm.

[0028] If the aforementioned power supply interface is not connected to the aforementioned power cord, the temperature control unit controlling the aforementioned target storage device will set the preset time for heat preservation of the aforementioned speaker cover or stop temperature adjustment.

[0029] Optionally, in the temperature control method of any embodiment of this disclosure, the target storage device includes a storage cover, and when the storage cover is in a closed state, the target storage device is in a sealed state; and

[0030] The above-mentioned method of adjusting the temperature of the breast pump's horn cover to the target temperature via the target storage device includes:

[0031] If the breast pump's horn cover is positioned correctly and the aforementioned storage cover is closed, the temperature of the breast pump's horn cover will be adjusted to the target temperature via the target storage device.

[0032] Optionally, in the temperature control method of any embodiment of this disclosure, if the storage cover is in a non-closed state, the temperature adjustment of the speaker cover is stopped.

[0033] Thirdly, embodiments of this disclosure provide a temperature control device, the device comprising:

[0034] The adjustment unit is configured to adjust the temperature of the breast pump's horn cover to a target temperature via a target storage device, wherein the target temperature is greater than the temperature of a human breast.

[0035] The aforementioned target storage device is the storage device described in the embodiment of the first aspect that includes a temperature control unit.

[0036] Optionally, in any embodiment of the temperature control device disclosed herein, the target storage device includes a power supply interface; the power supply interface is used to connect a power cord to provide power to the target storage device; and

[0037] The above-mentioned device also includes:

[0038] The first control unit is configured to control the temperature control unit of the target storage device to continuously keep the speaker cover warm if the power supply interface is connected to the power cord.

[0039] The second control unit is configured to control the temperature control unit of the target storage device to keep the speaker cover warm for a preset time or stop temperature adjustment if the power supply interface is not connected to the power cord.

[0040] Optionally, in any embodiment of the temperature control device disclosed herein, the target storage device includes a storage cover, and when the storage cover is in a closed state, the target storage device is in a sealed state; and

[0041] The aforementioned adjustment unit is further configured as follows:

[0042] If the breast pump's horn cover is positioned correctly and the aforementioned storage cover is closed, the temperature of the breast pump's horn cover will be adjusted to the target temperature via the target storage device.

[0043] Optionally, in any embodiment of the temperature control device disclosed herein, the device further includes:

[0044] The third control unit is configured to stop adjusting the temperature of the speaker cover if the aforementioned storage cover is not closed.

[0045] Fourthly, embodiments of this disclosure provide an electronic device, including:

[0046] Memory, used to store computer programs;

[0047] A processor is configured to execute a computer program stored in the aforementioned memory, and when the computer program is executed, to implement the method of any embodiment of the temperature control method of the second aspect of this disclosure.

[0048] Fifthly, embodiments of this disclosure provide a computer-readable storage medium that, when executed by a processor, implements the method of any embodiment of the temperature control method of the second aspect described above.

[0049] In a sixth aspect, embodiments of this disclosure provide a computer program including computer-readable code that, when executed on a device, causes a processor in the device to execute instructions for implementing steps of the method in any embodiment of the temperature control method of the second aspect described above.

[0050] The wearable breast pump storage device provided in this embodiment includes a storage unit, wherein: the storage unit is used to hold the wearable breast pump; the storage unit includes a charging interface for charging the wearable breast pump. This solution integrates the charging function into the wearable breast pump storage device, achieving both charging and storage functions. This reduces the size of the storage device, making it easier to carry. Furthermore, it allows for charging of the breast pump for subsequent use, facilitating use in situations such as outings.

[0051] The temperature control method provided in this disclosure adjusts the temperature of the breast pump's vent cover to a target temperature using a target storage device, wherein the target temperature is higher than the temperature of a human breast; wherein the target storage device is any storage device described in any embodiment that includes a temperature control unit. This solution controls the temperature of the vent cover placed in the storage unit using the temperature control unit, thereby adjusting the temperature of the breast pump's vent cover to be higher than the temperature of a human breast. This heats the breast and promotes blood circulation when using the vent cover for breast pumping, thus improving pumping efficiency and comfort. Attached Figure Description

[0052] Figure 1 This is a schematic diagram of the structure of a storage device provided in an embodiment of the present disclosure;

[0053] Figure 2 This is a schematic diagram of the structure of another storage device provided in an embodiment of the present disclosure;

[0054] Figure 3 In response to Figure 2 A schematic diagram showing the button positions of the storage device;

[0055] Figure 4 In response to Figure 2 A schematic diagram showing the position of the toggle switches on the storage device;

[0056] Figure 5 In response to Figure 2 A schematic diagram of the storage device in use when heating the breast pump;

[0057] Figure 6 In response to Figure 2 A schematic diagram of the storage device with the storage lid in the open position;

[0058] Figure 7 In response to Figure 2 A schematic diagram showing the location of the power supply interface for the storage device;

[0059] Figure 8 In response to Figure 2 Circuit diagram of the storage device;

[0060] Figure 9 A schematic flowchart of a temperature control method provided in an embodiment of this disclosure;

[0061] Figure 10 This is a schematic flowchart illustrating a temperature control method provided in an embodiment of the present disclosure when the power supply interface is not connected to the power cord.

[0062] Figure 11 A schematic flowchart illustrating a temperature control method provided in this disclosure when the power supply interface is connected to the power cord;

[0063] Figure 12 This is a schematic diagram of the structure of a temperature control device provided in an embodiment of the present disclosure;

[0064] Figure 13 This is a schematic diagram of the structure of an electronic device provided in an embodiment of this disclosure. Detailed Implementation

[0065] Various exemplary embodiments of the present disclosure will now be described in detail with reference to the accompanying drawings. It should be noted that, unless otherwise specifically stated, the relative arrangement, numerical expressions, and values ​​of the components and steps set forth in these embodiments do not limit the scope of the present disclosure.

[0066] Those skilled in the art will understand that the terms "first" and "second" in the embodiments of this disclosure are only used to distinguish different steps, devices or modules, and do not represent any specific technical meaning, nor do they indicate the logical order between them.

[0067] It should also be understood that in the embodiments disclosed herein, "a plurality of" may refer to two or more, and "at least one" may refer to one, two or more.

[0068] It should also be understood that any component, data or structure mentioned in the embodiments of this disclosure can generally be understood as one or more unless expressly defined or given to the contrary in the context.

[0069] Furthermore, the term "and / or" in this disclosure is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or B existing alone. Additionally, the character " / " in this disclosure generally indicates that the preceding and following related objects have an "or" relationship.

[0070] It should also be understood that the description of the various embodiments in this disclosure emphasizes the differences between the various embodiments, and the similarities or similarities can be referred to each other. For the sake of brevity, they will not be described in detail.

[0071] The following description of at least one exemplary embodiment is merely illustrative and is in no way intended to limit this disclosure or its application or use.

[0072] Techniques, methods, and equipment known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and equipment should be considered part of the specification.

[0073] It should be noted that similar labels and letters in the following figures indicate similar items; therefore, once an item is defined in one figure, it does not need to be discussed further in subsequent figures.

[0074] It should be noted that, unless otherwise specified, the embodiments and features described in this disclosure can be combined with each other. To facilitate understanding of the embodiments of this disclosure, the disclosure will be described in detail below with reference to the accompanying drawings and embodiments. Obviously, the described embodiments are only some, not all, of the embodiments of this disclosure. All other embodiments obtained by those skilled in the art based on the embodiments of this disclosure without creative effort are within the scope of protection of this disclosure.

[0075] Figure 1 This is a schematic diagram of a storage device provided in an embodiment of this disclosure. Figure 1 As shown, in this embodiment, the storage device 10 includes a storage unit 100, wherein: the storage unit 100 is used to place the wearable breast pump; the storage unit 100 includes a charging interface 1000, which is used to charge the wearable breast pump.

[0076] Here, the storage space of the aforementioned storage unit 100 can be of various shapes. As an example, the storage space of the storage unit can be a cuboid, a sphere, etc.

[0077] The aforementioned storage device can be a closed structure. For example, it can be a storage compartment, and its shape can be a flat box. Alternatively, the aforementioned storage device can also be an open structure. For example, it can be a storage rack.

[0078] In some optional implementations of the embodiments of this disclosure, the charging interface 1000 magnetically charges the wearable breast pump via a Pogo-pin. When the wearable breast pump is placed in the storage unit 100, the charging interface 1000 is attached to the charging position of the wearable breast pump.

[0079] It's understandable that, because the breast pump uses Pogo-pin magnetic charging within the compartment, when the breast pump is placed inside, its charging position automatically aligns with the charging slots on both sides of the compartment. This improves the conductivity between the charging port of the storage device and the charging slot on the breast pump, thereby increasing the charging efficiency of the breast pump. Furthermore, it enhances the user experience.

[0080] In some optional implementations of the embodiments of this disclosure, the storage space of the storage unit 100 is a contoured structure of the wearable breast pump.

[0081] It is understood that in the above-mentioned optional implementation methods, the storage space of the storage unit is a contoured structure of the wearable breast pump, which can more quickly and accurately adjust the temperature of the speaker cover to the target temperature, and also helps to reduce the size of the storage device.

[0082] In some optional implementations of the embodiments of this disclosure, the storage unit 100 includes at least one disinfection lamp and a reflective material, at least one of the disinfection lamps and the reflective material are disposed on the inner wall of the storage unit, and the reflective material is used to reflect the light emitted by the disinfection lamps.

[0083] The aforementioned disinfection lamp can be an ultraviolet lamp or an infrared lamp. The reflective material can be any material with reflective properties. As an example, the reflective material can be a mirror-like material.

[0084] It is understood that the above embodiments include a disinfection function, with multiple disinfection lamps and reflective materials arranged on the inner wall of the storage unit (e.g., storage compartment). This allows for sufficient reflection of disinfection light (e.g., ultraviolet or infrared light), reducing blind spots.

[0085] In some optional implementations of this embodiment, the wearable breast pump includes a speaker cover, and the storage device 10 further includes a temperature control unit, the storage unit 100 being connected to the temperature control unit.

[0086] The temperature control unit is used to control the temperature of the speaker cover placed in the storage unit, so as to adjust the temperature of the speaker cover to the target temperature.

[0087] The target temperature is higher than the temperature of a human breast.

[0088] Here, the aforementioned storage unit 100 is at least used to hold the horn cover of the breast pump.

[0089] Here, the aforementioned storage unit 100 can be used solely to hold the breast pump's speaker cover; alternatively, it can be used to hold the entire breast pump. The entire breast pump may include a speaker cover and a milk storage compartment. The milk storage compartment can be a bottle or a milk storage bag.

[0090] In this embodiment, the temperature control unit is used to control the temperature of the speaker cover placed in the storage unit 100, so as to adjust the temperature of the speaker cover placed in the storage unit 100 to a target temperature. The target temperature is higher than the temperature of a human breast.

[0091] Here, the normal human body temperature range is typically 36 to 37.3 degrees Celsius. The target temperature mentioned above can be greater than 37.3 degrees Celsius. For example, the target temperature could be 39 degrees Celsius. Furthermore, the target temperature can be a specific temperature value or a temperature range; for example, the target temperature could be 45 to 55 degrees Celsius. The target temperature can be a fixed temperature value, a user-defined temperature value, or a temperature value calculated based on the ambient temperature. For example, the target temperature can be negatively correlated with the ambient temperature.

[0092] In some optional implementations of the embodiments of this disclosure, the storage unit 100 is used to hold a wearable breast pump (e.g., a wireless wearable breast pump), which includes the aforementioned speaker cover.

[0093] It is understood that, among the above optional implementation methods, a storage device for a wearable breast pump is provided. Since the wearable breast pump is smaller in size than a traditional breast pump, its storage device can be made small and easy to carry.

[0094] Furthermore, when the storage device includes a storage lid, sterilization of the breast pump can begin after the lid is detected closed, for a period of time (e.g., 15 minutes by default, which users can adjust on the app). Users can choose to place the entire breast pump into the storage device for sterilization, or disassemble parts that need cleaning (such as the horn cover, bottles, and spout valves) and place them into the storage device for sterilization. Sterilizing after disassembly allows each part to receive more thorough light exposure, resulting in better sterilization.

[0095] In some optional implementations of the embodiments of this disclosure, the temperature control unit includes a heat-conducting sheet, a heating sheet, a temperature sensor, a temperature indicator light, a heating switch, and a buzzer, wherein:

[0096] The heating element is positioned below the heat-conducting plate, and is heated by a heating switch or application control. The heat-conducting plate transfers the heat generated by the heating element to the location of the speaker cover. The temperature indicator light indicates whether the temperature of the speaker cover has reached the target temperature. The temperature sensor detects the temperature of the speaker cover. The buzzer indicates that the temperature of the speaker cover has reached the target temperature.

[0097] In some optional implementations of the embodiments of this disclosure, the target temperature is greater than or equal to 45 degrees Celsius and less than or equal to 55 degrees Celsius.

[0098] It is understandable that the above implementation method can make the temperature of the speaker cover higher than the temperature of a person's breast during use, thus playing a role in heat application, while avoiding the danger of low-temperature burns.

[0099] In some optional implementations of the embodiments of this disclosure, the target temperature is set by the user.

[0100] The temperature control method provided in this disclosure adjusts the temperature of the breast pump's vent cover to a target temperature using a target storage device, wherein the target temperature is higher than the temperature of a human breast; wherein the target storage device is any storage device described in any embodiment that includes a temperature control unit. This solution controls the temperature of the vent cover placed in the storage unit using the temperature control unit, thereby adjusting the temperature of the breast pump's vent cover to be higher than the temperature of a human breast. This heats the breast and promotes blood circulation when using the vent cover for breast pumping, thus improving pumping efficiency and comfort.

[0101] Figure 2 This is a schematic diagram of the structure of another storage device provided in an embodiment of this disclosure. Figure 2 As shown, the storage device includes a heating chamber cover 1 (i.e., the aforementioned storage cover), a heat-conducting plate 3, a charging plug 4, a heating plate 5, a multi-functional storage compartment base 6, a temperature sensor 7, a handle 8, a buzzer 9, a multi-functional storage compartment bottom shell 10, a button 11, a multi-functional storage compartment outer shell 12, a battery compartment 13, and a battery 14. This storage device can be used to store a breast pump 2.

[0102] Figure 3 In response to Figure 2 A diagram showing the button positions of the storage device. (See diagram for example.) Figure 3 As shown, the aforementioned storage device may also include a left breast pump power indicator light 1100, a right breast pump power indicator light 1101, a compartment power indicator light 1102, an opening button 1103, a temperature indicator light 1104, and a heating switch 1105.

[0103] Figure 4 In response to Figure 2 A diagram showing the positions of the toggle switches on the storage device. (See diagram for example.) Figure 4 As shown, the above-mentioned storage device also includes a buzzer open position 901, a buzzer closed position 902, a left compartment heating position 903, a dual compartment heating position 904, and a right compartment heating position 905.

[0104] Figure 5 In response to Figure 2 A diagram illustrating the storage device used when heating the breast pump. (See diagram below.) Figure 5 As shown, the above-mentioned breast pump includes a breast pump main unit 21, a breast pump speaker cover 22, a heat-conducting plate 3, and a heating plate 5.

[0105] Figure 6 In response to Figure 2 This is a diagram illustrating the storage device with the storage lid in the open position. (See diagram for example.) Figure 6 As shown, the above-mentioned storage device also includes a multi-functional storage compartment cover 1 (i.e., the storage cover), a multi-functional storage compartment cover hinge 60, a multi-functional storage compartment base hinge 61, a multi-functional storage compartment base 6, a multi-functional storage compartment left compartment 621, a multi-functional storage compartment right compartment 622, a right compartment breast pump charging position 631, and a left compartment breast pump charging position 632.

[0106] Figure 7 In response to Figure 2 A diagram showing the location of the power supply interface for the storage device. (See diagram for example.) Figure 7 As shown, the above-mentioned storage device also includes a multi-functional storage compartment bottom shell 10 and a storage compartment power supply interface 101.

[0107] exist Figures 2-7 The storage device is designed as a multi-functional storage compartment. The storage unit includes a left compartment 621 and a right compartment 622. The temperature control unit may include the aforementioned heat-conducting plate 3, heating plate 5, temperature sensor 7, temperature indicator light 1104, heating switch 1105, and buzzer 9.

[0108] Specifically, the aforementioned storage device integrates storage, charging, and heating functions into a single structure. The surface of the charging compartment features indicators for the left and right breast pump battery levels (1100 / 1101) and charging status, a heating switch 1105, a temperature indicator 1104, and a battery level indicator 1102. During heating, the top cover 1 of the multi-functional storage compartment is closed, and a temperature sensor 7 is installed inside. Heating begins once the breast pump 2 is correctly inserted into the compartment and the top cover 1 is closed. The heating switch 1105 is pressed to activate the heating. By default, the heating position is at the dual-compartment heating position 904. The user can move the heating knob to the left compartment heating position 903 or the right compartment heating position 905. A heat-conducting plate 3 is located below the breast pump, and a heating element 5 is located below the heat-conducting plate 3. The heating element 5 is controlled by the heating switch 1105 of the charging compartment or by the App (Application) software. The heat-conducting plate 3 transfers the heat generated by the heating element 5 to the location of the breast pump's speaker cover 22. During the heating process, the temperature sensor 7 identifies the temperature inside the compartment. The user can determine whether heating is complete by checking the temperature indicator light 1104, and a buzzer will sound to indicate completion. A buzzer 9 switch is located below the main unit; the left side is the buzzer on position 901, and the right side is the buzzer off position 902 by default. After heating is complete, the device enters a heat preservation state. Specifically, the circuit diagram of the aforementioned storage device can be shown as follows... Figure 8 As shown.

[0109] The multi-functional storage compartment cover 1 is equipped with a pivot 60 that rotates in conjunction with the pivot 61 of the multi-functional storage compartment base. Pressing the open button 1103 causes the multi-functional storage compartment cover 1 to slowly and automatically open to a 120-degree angle, completely exposing the breast pump casing. The interior of the multi-functional compartment adopts a contour-following structure, divided into a left multi-functional storage compartment 621 and a right multi-functional storage compartment 622. The interior space perfectly conforms to the shape of the breast pump, facilitating easy removal and placement.

[0110] The charging port uses a Type-C interface, with the power interface 101 located on the bottom shell 10 of the multi-functional storage compartment. The breast pump uses Pogo-pin magnetic charging within the compartment. When placed inside, it is guided by the compartment's contoured structure, automatically aligning with the charging positions (632 / 631) of the left and right breast pumps. The storage compartment cover 1 can be open or closed while charging. The left and right breast pump power indicator lights 1100 and 1101 respectively display the battery level and charging status of the left and right breast pumps.

[0111] This multi-functional storage compartment features a handle and a flat, compact design that takes up little space and is easy to carry.

[0112] Figure 9This is a schematic flowchart of a temperature control method provided in an embodiment of the present disclosure, as shown below. Figure 9 As shown, the method specifically includes:

[0113] 901. Adjust the temperature of the breast pump's horn cover to the target temperature using the target storage device.

[0114] In this embodiment of the disclosure, the subject executing the temperature control method (e.g., a server, a terminal device, or the temperature control device described below) Figure 1 The storage device shown can adjust the temperature of the breast pump's vent to the target temperature through the target storage device.

[0115] The target temperature mentioned above is higher than the temperature of a human breast.

[0116] The aforementioned target storage device is the storage device described in any embodiment of the first aspect that includes a temperature control device.

[0117] Here, the normal human body temperature range is typically 36 to 37.3 degrees Celsius. The target temperature mentioned above can be greater than 37.3 degrees Celsius. For example, the target temperature could be 39 degrees Celsius. Furthermore, the target temperature can be a specific temperature value or a temperature range; for example, the target temperature could be 45 to 55 degrees Celsius. The target temperature can be a fixed temperature value, a user-defined temperature value, or a temperature value calculated based on the ambient temperature. For example, the target temperature can be negatively correlated with the ambient temperature.

[0118] In some optional implementations of the embodiments of this disclosure, the target storage device includes a power supply interface. The power supply interface is used to connect a power cord to provide power to the target storage device. Based on this, after performing step 901, if the power supply interface is connected to the power cord, the executing entity can also control the temperature control unit of the target storage device to continuously keep the speaker cover warm; if the power supply interface is not connected to the power cord, the executing entity can also control the temperature control unit of the target storage device to keep the speaker cover warm for a preset time or stop temperature adjustment (e.g., 2 minutes).

[0119] It is understandable that in the above-mentioned optional implementation methods, after adjusting the temperature of the breast pump's horn cover to the target temperature, if power is currently being supplied to the target storage device, then the horn cover can be continuously kept warm due to sufficient power. If power is not currently being supplied to the target storage device, then the horn cover can be kept warm for a preset time or the temperature adjustment can be stopped in order to maintain the current temperature of the horn cover and reduce power consumption.

[0120] In some optional implementations of the embodiments of this disclosure, the target storage device includes a storage lid. When the storage lid is closed, the target storage device is in a sealed state. Based on this, if the breast pump's horn cover is correctly positioned and the storage lid is closed, the execution body can adjust the temperature of the breast pump's horn cover to the target temperature through the target storage device. In other words, if the breast pump's horn cover is incorrectly positioned, or if the storage lid is not closed, the execution body may not operate, i.e., it will not adjust the temperature of the breast pump's horn cover to the target temperature through the target storage device.

[0121] It is understood that in the above implementation method, the execution subject only adjusts the temperature of the breast pump's horn cover to the target temperature through the target storage device when the horn cover is correctly positioned and the storage cover is closed. This can reduce the waste of electricity.

[0122] In some optional implementations of the embodiments of this disclosure, if the storage cover is in an open state, the execution body may also stop temperature regulation of the speaker cover (e.g., stop working).

[0123] It is understandable that in the above implementation method, the executing entity stops adjusting the temperature of the speaker cover when the storage cover is not closed, thus reducing the waste of electrical energy.

[0124] Furthermore, in some cases, a temperature sensor can be installed within the aforementioned target storage compartment, allowing the user to select the target temperature. The temperature sensor ensures that the temperature within the storage space reaches the user-selected target temperature while remaining below a safe level (e.g., 55 degrees Celsius). If an abnormal temperature is detected inside the compartment (above 55 degrees Celsius), the target storage device can be controlled to lower the temperature to the target level. Additionally, users can control the heating compartment via an app, such as selecting the target temperature, turning heating on and off, and heating one or both sides of the horn cover.

[0125] The temperature control method provided in this disclosure adjusts the temperature of the breast pump's vent cover to a target temperature using a target storage device, wherein the target temperature is higher than the temperature of a human breast; and wherein the target storage device is the storage device described in any embodiment of the first aspect above. This solution controls the temperature of the vent cover placed in the storage unit through a temperature control unit, thereby adjusting the temperature of the breast pump's vent cover to be higher than the temperature of a human breast. This heats the breast and promotes blood circulation when using the vent cover for breast pumping, thus improving pumping efficiency and comfort.

[0126] Figure 10This is a flowchart illustrating a temperature control method when the power supply interface is not connected to a power cord, as provided in an embodiment of this disclosure. This flowchart can be used to illustrate the process of a user using a target storage device in an outdoor setting. Figure 10 As shown, the method specifically includes:

[0127] First, after opening the compartment (i.e., opening the storage lid), the user places the breast pump inside (i.e., into the storage unit of the target storage device). Then, the user can select the heating level to determine the target temperature. For example, this could include three levels: 45 degrees Celsius, 50 degrees Celsius, and 55 degrees Celsius, corresponding to high, medium, and low temperatures, respectively. Next, it checks if the breast pump is placed correctly. If incorrectly placed, the target storage device will not heat; if correctly placed, it further checks if the compartment lid is closed. If the lid is not closed, the target storage device will not heat; if the lid is closed, the target storage device will begin heating the speaker cover. If the storage space of the storage unit has reached the target temperature, a buzzer will sound as a reminder, and a period of heat preservation (e.g., 2 minutes) will begin, after which heat preservation will stop. If opening of the lid is detected during heating or heat preservation, heating or heat preservation will stop.

[0128] Therefore, when the user is away and the heating chamber is not connected to the power adapter, the user can select a suitable temperature for heating (default three levels: high, medium, and low). The heating chamber heats up to the target temperature in a very short time (default 1-2 minutes). After heating is complete, a buzzer will sound to indicate that the chamber has started a heat preservation period (default 2 minutes).

[0129] Figure 11 This is a flowchart illustrating a temperature control method when the power supply interface is connected to a power cord, as provided in an embodiment of this disclosure. This flowchart can be used to illustrate the process of a user using the target storage device in an indoor setting. Figure 11 As shown, the method specifically includes:

[0130] First, after opening the compartment (i.e., opening the storage lid), the user places the breast pump inside (i.e., into the storage unit of the target storage device) and plugs in the charging cable. Then, it checks if the heating compartment is open. If it is closed, heating does not begin; if it is open, it checks if the breast pump is placed correctly. If incorrectly placed, the target storage device will not heat; if correctly placed, it further checks if the compartment lid is closed. If not closed, the target storage device will not heat; if closed, the target storage device begins heating the speaker cover, and after reaching a certain temperature (the target temperature), it begins maintaining the temperature. If, during heating or maintaining the temperature, the lid is opened or the charging cable is unplugged, heating or maintaining the temperature stops.

[0131] Therefore, when the heating chamber is connected to a power adapter at home or in the office, it will automatically heat and maintain a constant temperature until the power cord is detected as unplugged or the chamber is opened. Users can manually disable the default heating and temperature maintenance settings in this scenario.

[0132] Understandable. Figure 10 and Figure 11 The heating design logic shown can balance the needs of multiple dimensions, including scenarios (connected to power cord, unconnected to power cord), heating experience, safety, charging speed, and battery life of the charging case.

[0133] Figure 12 This is a schematic diagram of the structure of a temperature control device provided in an embodiment of the present disclosure, specifically including:

[0134] The adjustment unit 1201 is configured to adjust the temperature of the breast pump's horn cover to a target temperature via the target storage device, wherein the target temperature is greater than the temperature of a human breast.

[0135] The aforementioned target storage device is the storage device described in any embodiment of the first aspect that includes a temperature control device.

[0136] Optionally, in any embodiment of the temperature control device disclosed herein, the target storage device includes a power supply interface; the power supply interface is used to connect a power cord to provide power to the target storage device; and

[0137] The above-mentioned device also includes:

[0138] The first control unit (not shown in the figure) is configured to control the temperature control unit of the target storage device to continuously keep the speaker cover warm if the power supply interface is connected to the power cord.

[0139] The second control unit (not shown in the figure) is configured to control the temperature control unit of the target storage device to keep the speaker cover warm for a preset time or stop temperature adjustment if the power supply interface is not connected to the power cord.

[0140] Optionally, in any embodiment of the temperature control device disclosed herein, the target storage device includes a storage cover, and when the storage cover is in a closed state, the target storage device is in a sealed state; and

[0141] The aforementioned adjustment unit 1201 is further configured to:

[0142] If the breast pump's horn cover is positioned correctly and the aforementioned storage cover is closed, the temperature of the breast pump's horn cover will be adjusted to the target temperature via the target storage device.

[0143] Optionally, in any embodiment of the temperature control device disclosed herein, the device further includes:

[0144] The third control unit (not shown in the figure) is configured to stop adjusting the temperature of the speaker cover if the aforementioned storage cover is not closed.

[0145] The temperature control device provided in this embodiment can be as follows: Figure 12 The temperature control device shown can perform the following functions: Figure 9-11 All steps of the medium temperature control method, thereby achieving Figure 9-11 For details on the technical effects of the temperature control method shown, please refer to [link / reference]. Figure 9-11 The relevant descriptions are presented concisely and will not be elaborated upon here.

[0146] Figure 13 This is a schematic diagram of the structure of an electronic device provided in an embodiment of the present disclosure. Figure 13 The illustrated electronic device 1300 includes at least one processor 1301, a memory 1302, at least one network interface 1304, and other user interfaces 1303. The various components in the electronic device 1300 are coupled together via a bus system 1305. It is understood that the bus system 1305 is used to implement communication between these components. In addition to a data bus, the bus system 1305 also includes a power bus, a control bus, and a status signal bus. However, for clarity, ... Figure 5 The general designated all buses as Bus System 1305.

[0147] The user interface 1303 may include a display, keyboard, or clicking device (e.g., mouse, trackball, touchpad, or touchscreen).

[0148] It is understood that the memory 1302 in this embodiment can be volatile memory or non-volatile memory, or may include both volatile and non-volatile memory. The non-volatile memory can be read-only memory (ROM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), electrically erasable programmable read-only memory (EEPROM), or flash memory. The volatile memory can be random access memory (RAM), which is used as an external cache. By way of example, but not limitation, many forms of RAM are available, such as Static Random Access Memory (SRAM), Dynamic Random Access Memory (DRAM), Synchronous DRAM (SDRAM), Double Data Rate Synchronous DRAM (DDRSDRAM), Enhanced Synchronous DRAM (ESDRAM), Synchronous Link DRAM (SLDRAM), and Direct Rambus RAM (DRRAM). The memory 1302 described herein is intended to include, but is not limited to, these and any other suitable types of memory.

[0149] In some implementations, memory 1302 stores elements, executable units or data structures, or subsets thereof, or extended sets thereof: operating system 13021 and application program 13022.

[0150] The operating system 13021 includes various system programs, such as a framework layer, a core library layer, and a driver layer, used to implement various basic business functions and handle hardware-based tasks. The application program 13022 includes various applications, such as a media player and a browser, used to implement various application functions. Programs implementing the methods of this disclosure embodiment can be included in application program 13022.

[0151] In this embodiment of the disclosure, by calling the program or instructions stored in memory 1302, specifically the program or instructions stored in application program 13022, processor 1301 executes the method steps provided in the various method embodiments, including, for example:

[0152] The temperature of the breast pump's horn cover is adjusted to a target temperature using a target storage device, wherein the target temperature is higher than the temperature of a human breast.

[0153] The aforementioned target storage device is the storage device described in any embodiment of the first aspect that includes a temperature control device.

[0154] Optionally, in the temperature control method of any embodiment of this disclosure, the target storage device includes a power supply interface; the power supply interface is used to connect a power cord to provide power to the target storage device; and

[0155] After adjusting the temperature of the breast pump's vent cover to the target temperature using the target storage device, the method further includes:

[0156] If the above power supply interface is connected to the power cord, the temperature control unit that controls the above target storage device will continuously keep the above speaker cover warm.

[0157] If the aforementioned power supply interface is not connected to the aforementioned power cord, the temperature control unit controlling the aforementioned target storage device will set the preset time for heat preservation of the aforementioned speaker cover or stop temperature adjustment.

[0158] Optionally, in the temperature control method of any embodiment of this disclosure, the target storage device includes a storage cover, and when the storage cover is in a closed state, the target storage device is in a sealed state; and

[0159] The above-mentioned method of adjusting the temperature of the breast pump's horn cover to the target temperature via the target storage device includes:

[0160] If the breast pump's horn cover is positioned correctly and the aforementioned storage cover is closed, the temperature of the breast pump's horn cover will be adjusted to the target temperature via the target storage device.

[0161] Optionally, in any embodiment of the temperature control method disclosed herein, the method further includes:

[0162] Optionally, in the temperature control method of any embodiment of this disclosure, if the storage cover is in a non-closed state, the temperature adjustment of the speaker cover is stopped.

[0163] The methods disclosed in the above embodiments of this disclosure can be applied to processor 1301, or implemented by processor 1301. Processor 1301 may be an integrated circuit chip with signal processing capabilities. In the implementation process, each step of the above method can be completed by the integrated logic circuit of the hardware in processor 1301 or by instructions in the form of software. The processor 1301 may be a general-purpose processor, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, or discrete hardware components. It can implement or execute the methods, steps, and logic block diagrams disclosed in the embodiments of this disclosure. The general-purpose processor may be a microprocessor or any conventional processor. The steps of the methods disclosed in the embodiments of this disclosure can be directly embodied in the execution of a hardware decoding processor, or executed by a combination of hardware and software units in the decoding processor. The software units may be located in random access memory, flash memory, read-only memory, programmable read-only memory, electrically erasable programmable memory, registers, or other mature storage media in the art. The storage medium is located in memory 1302. Processor 1301 reads the information in memory 1302 and completes the steps of the above method in conjunction with its hardware.

[0164] It is understood that the embodiments described herein can be implemented in hardware, software, firmware, middleware, microcode, or a combination thereof. For hardware implementation, the processing unit can be implemented in one or more application-specific integrated circuits (ASICs), digital signal processors (DSPs), digital signal processing devices (DSPDs), programmable logic devices (PLDs), field-programmable gate arrays (FPGAs), general-purpose processors, controllers, microcontrollers, microprocessors, other electronic units for performing the functions described above, or combinations thereof.

[0165] For software implementation, the techniques described herein can be implemented by units that perform the functions described above. The software code can be stored in memory and executed by a processor. The memory can be implemented within the processor or external to the processor.

[0166] The electronic device provided in this embodiment may be as follows: Figure 5 The electronic device shown can perform the following: Figure 9-11 All steps of the medium temperature control method, thereby achieving Figure 9-11 For details on the technical effects of the temperature control method shown, please refer to [link / reference]. Figure 9-11 The relevant descriptions are presented concisely and will not be elaborated upon here.

[0167] This disclosure also provides a storage medium (computer-readable storage medium). This storage medium stores one or more programs. The storage medium may include volatile memory, such as random access memory; the memory may also include non-volatile memory, such as read-only memory, flash memory, hard disk, or solid-state drive; the memory may also include combinations of the above types of memory.

[0168] One or more programs in the storage medium can be executed by one or more processors to implement the temperature control method described above, which is executed on the electronic device side.

[0169] The processor described above is used to execute a temperature control program stored in memory to implement the following steps of a temperature control method executed on the electronic device side:

[0170] The temperature of the breast pump's horn cover is adjusted to a target temperature using a target storage device, wherein the target temperature is higher than the temperature of a human breast.

[0171] The aforementioned target storage device is the storage device described in any embodiment of the first aspect that includes a temperature control device.

[0172] Optionally, in the temperature control method of any embodiment of this disclosure, the target storage device includes a power supply interface; the power supply interface is used to connect a power cord to provide power to the target storage device; and

[0173] After adjusting the temperature of the breast pump's vent cover to the target temperature using the target storage device, the method further includes:

[0174] If the above power supply interface is connected to the power cord, the temperature control unit that controls the above target storage device will continuously keep the above speaker cover warm.

[0175] If the aforementioned power supply interface is not connected to the aforementioned power cord, the temperature control unit controlling the aforementioned target storage device will set the preset time for heat preservation of the aforementioned speaker cover or stop temperature adjustment.

[0176] Optionally, in the temperature control method of any embodiment of this disclosure, the target storage device includes a storage cover, and when the storage cover is in a closed state, the target storage device is in a sealed state; and

[0177] The above-mentioned method of adjusting the temperature of the breast pump's horn cover to the target temperature via the target storage device includes:

[0178] If the breast pump's horn cover is positioned correctly and the aforementioned storage cover is closed, the temperature of the breast pump's horn cover will be adjusted to the target temperature via the target storage device.

[0179] Optionally, in any embodiment of the temperature control method disclosed herein, the method further includes:

[0180] Optionally, in the temperature control method of any embodiment of this disclosure, if the storage cover is in a non-closed state, the temperature adjustment of the speaker cover is stopped.

[0181] Those skilled in the art will further recognize that the units and algorithm steps of the various examples described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, computer software, or a combination of both. To clearly illustrate the interchangeability of hardware and software, the components and steps of the various examples have been generally described in terms of functionality in the foregoing description. Whether these functions are implemented in hardware or software depends on the specific application and design constraints of the technical solution. Those skilled in the art can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of this disclosure.

[0182] The steps of the methods or algorithms described in conjunction with the embodiments disclosed herein can be implemented in hardware, a software module executed by a processor, or a combination of both. The software module can be located in random access memory (RAM), main memory, read-only memory (ROM), electrically programmable ROM, electrically erasable programmable ROM, registers, hard disk, removable disk, CD-ROM, or any other form of storage medium known in the art.

[0183] The specific embodiments described above further illustrate the purpose, technical solution, and beneficial effects of this disclosure. It should be understood that the above description is only a specific embodiment of this disclosure and is not intended to limit the scope of protection of this disclosure. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this disclosure should be included within the scope of protection of this disclosure.

Claims

1. A storage device for a wearable breast pump, characterized in that, The storage device includes a storage unit, wherein: The storage unit is used to hold the wearable breast pump; The storage unit includes a charging interface for charging the wearable breast pump. The charging interface magnetically charges the wearable breast pump via a Pogo-pin. When the wearable breast pump is placed in the storage unit, the charging interface is attached to the charging position of the wearable breast pump. The wearable breast pump includes a speaker cover, and the storage device also includes a temperature control unit, which is connected to the temperature control unit. The temperature control unit is used to control the temperature of the speaker cover placed in the storage unit, so as to adjust the temperature of the speaker cover to a target temperature, wherein the target temperature is greater than the temperature of a human breast.

2. The storage device according to claim 1, characterized in that, The storage space of the storage unit is a contoured structure of the wearable breast pump.

3. The storage device according to claim 2, characterized in that, The storage unit includes at least one disinfection lamp and a reflective material. At least one of the disinfection lamps and the reflective material are disposed on the inner wall of the storage unit, and the reflective material is used to reflect the light emitted by the disinfection lamp.

4. The storage device according to any one of claims 1 to 3, characterized in that, The temperature control unit includes a heat-conducting plate, a heating plate, a temperature sensor, a temperature indicator light, a heating switch, and a buzzer, wherein: The heating element is disposed below the heat-conducting plate, and the heating element is heated by the heating switch or by application control; The heat-conducting sheet is used to transfer the heat generated by the heating sheet to the location of the speaker cover; The temperature sensor is used to detect the temperature of the speaker cover; The temperature indicator light is used to indicate whether the temperature of the speaker cover has reached the target temperature; The buzzer is used to indicate that the temperature of the speaker cover has reached the target temperature.

5. The storage device according to any one of claims 1 to 3, characterized in that, The target temperature is greater than or equal to 45 degrees Celsius, and less than or equal to 55 degrees Celsius; and / or The target temperature is set by the user.

6. A temperature control method, characterized in that, The method includes: The temperature of the breast pump's horn cover is adjusted to a target temperature using a target storage device, wherein the target temperature is higher than the temperature of a human breast. The target storage device is the storage device as described in any one of claims 1-5.

7. The method according to claim 6, characterized in that, The target storage device includes a power supply interface; the power supply interface is used to connect a power cord to provide power to the target storage device. as well as After adjusting the temperature of the breast pump's vent cover to the target temperature via the target storage device, the method further includes: If the power supply interface is connected to the power cord, the temperature control unit that controls the target storage device will continuously keep the speaker cover warm. If the power supply interface is not connected to the power cord, the temperature control unit that controls the target storage device will keep the speaker cover warm for a preset time or stop temperature adjustment.

8. The method according to claim 6 or 7, characterized in that, The target storage device includes a storage cover, and when the storage cover is in a closed state, the target storage device is in a sealed state. as well as The step of adjusting the temperature of the breast pump's horn cover to the target temperature via the target storage device includes: If the breast pump's horn cover is positioned correctly and the storage cover is closed, the temperature of the breast pump's horn cover will be adjusted to the target temperature by the target storage device.

9. The method according to claim 8, characterized in that, The method further includes: If the storage cover is not closed, temperature regulation of the speaker cover will stop.

10. A temperature control device, characterized in that, The device includes: The adjustment unit is configured to adjust the temperature of the breast pump's horn cover to a target temperature via a target storage device, wherein the target temperature is greater than the temperature of a human breast. The target storage device is the storage device as described in any one of claims 1-5.

11. An electronic device, characterized in that, include: Memory, used to store computer programs; A processor for executing a computer program stored in the memory, wherein when the computer program is executed, it implements the method described in any one of claims 6-9.

12. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by a processor, it implements the method described in any one of claims 6-9.

Citation Information

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