An energy storage power supply

CN224610534UActive Publication Date: 2026-08-07SHENZHEN HELLO TECH ENERGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN HELLO TECH ENERGY CO LTD
Filing Date
2025-07-24
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

储能单元用于存储电能以及给其他用电设备充电或者供电,随着人们对储能电源的要求逐渐提升,单一功能的储能电源不能够满足户外使用需要,因此,相关技术中的储能电源通常会外置额外的功能模块,例如照明灯、wifi模块等,但是这些功能模块通常是固定在储能电源上的,使用会受到一定的限制

Benefits of technology

[0015] The beneficial effects of this utility model of energy storage power supply are as follows: Because the energy storage body is provided with a receiving groove, and a storage component is rotatably arranged in the receiving groove, the storage component has a receiving space for the functional module. When the storage component is in the storage position, the functional module is stably fixed on the energy storage body, reducing the probability of the functional module falling out of the energy storage body during the handling or transportation of the energy storage power supply. When the user uses the functional module, he/she only needs to rotate the storage component to move it to the open position to take out the functional module. The operation is very convenient and better meets the user's needs.

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Abstract

The utility model belongs to the technical field of energy storage, disclose a kind of energy storage power supply, energy storage power supply includes energy storage body, storage part and function module, and the side wall of energy storage body is provided with accommodating groove, storage part is rotatably installed in accommodating groove, and storage part defines and receives space, and function module is detachably received in receiving space.Storage part has storage position and open position, in storage position, the surface of storage part is parallelly arranged with the side wall of energy storage body, in open position, the surface of storage part is arranged with the side wall of energy storage body at angle.The energy storage power supply has receiving space of receiving function module, can conveniently realize the storage and use of function module, preferably meet the use needs of user.
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Description

Technical Field

[0001] This utility model relates to the field of energy storage technology, and in particular to an energy storage power supply. Background Technology

[0002] Energy storage power supplies, also known as outdoor power supplies, are large-capacity portable energy storage devices. Their structure typically consists of an outer protective casing housing an energy storage unit, which usually includes functional components such as battery cells and circuit boards. The energy storage unit is used to store electrical energy and charge or power other electrical devices. As the demands for energy storage power supplies have increased, single-function energy storage power supplies are no longer sufficient for outdoor use. Therefore, energy storage power supplies in related technologies often incorporate additional external functional modules, such as lighting or Wi-Fi modules. However, these functional modules are usually fixed to the energy storage power supply, which limits their use. Utility Model Content

[0003] The purpose of this utility model is to provide an energy storage power supply with a storage space for accommodating functional modules, which can conveniently store and retrieve the functional modules and better meet the user's needs.

[0004] To achieve this objective, the present invention adopts the following technical solution:

[0005] This utility model discloses an energy storage power supply, comprising: an energy storage body, wherein a receiving groove is provided on the side wall of the energy storage body; a storage component, wherein the storage component is rotatably installed in the receiving groove and the storage component defines a receiving space; and a functional module, wherein the functional module is detachably stored in the receiving space; wherein: the storage component has a storage position and an open position, wherein in the storage position, the surface of the storage component is parallel to the side wall of the energy storage body, and in the open position, the surface of the storage component is at an angle to the side wall of the energy storage body.

[0006] In some embodiments, at the storage location, the storage component completely seals the opening of the receiving slot to hide the functional module within the receiving slot.

[0007] In some embodiments, at the storage location, the storage member seals part of the opening of the receiving slot, so that a portion of the functional module is exposed in the receiving slot; wherein the storage member is capable of covering at least half of the functional module.

[0008] In some embodiments, the storage component is provided with a groove, and the bottom of the receiving groove is provided with a protrusion. The groove can cooperate with the protrusion. A pivot hole is provided on one of the protrusion and the groove, and a rotating shaft is provided on the other of the protrusion and the groove. The rotating shaft is inserted into the pivot hole so that the storage component can rotate relative to the energy storage body around the rotating shaft.

[0009] In some embodiments, the storage component includes a box body having a first side plate, a second side plate, a third side plate, and a bottom plate. The first side plate is larger than the second side plate, and there are two third side plates. The two third side plates are respectively connected to the two ends of the first side plate and the second side plate. The first side plate, the second side plate, and the third side plate are all connected to the bottom plate and enclose the receiving space.

[0010] In some specific embodiments, a locking protrusion is provided on one of the first side plate and the groove wall of the receiving groove, and a locking hole is provided on the other of the first side plate and the groove wall of the receiving groove, the locking hole being able to insert the locking protrusion.

[0011] In some embodiments, the storage component is provided with a handle groove.

[0012] In some embodiments, an electrical contact module is provided on the inner wall of the receiving space. The electrical contact module can cooperate with the functional module and is used to charge or supply power to the functional module.

[0013] In some embodiments, the functional module includes at least one of a water purifier, an air pump, a power bank, a Wi-Fi module, an outdoor light, a walkie-talkie, a radio, and a speaker.

[0014] In some embodiments, a partition is provided within the containment space to divide the containment space into multiple subspaces, each of which is used to accommodate one of the functional modules.

[0015] The beneficial effects of this utility model of energy storage power supply are as follows: Because the energy storage body is provided with a receiving groove, and a storage component is rotatably arranged in the receiving groove, the storage component has a receiving space for the functional module. When the storage component is in the storage position, the functional module is stably fixed on the energy storage body, reducing the probability of the functional module falling out of the energy storage body during the handling or transportation of the energy storage power supply. When the user uses the functional module, he / she only needs to rotate the storage component to move it to the open position to take out the functional module. The operation is very convenient and better meets the user's needs.

[0016] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the energy storage power supply according to Embodiment 1 of this utility model;

[0018] Figure 2 This is a schematic diagram of the storage component of the energy storage power supply in the open position according to Embodiment 1 of this utility model;

[0019] Figure 3 This is a schematic diagram of the energy storage power supply according to Embodiment 2 of this utility model;

[0020] Figure 4 This is a schematic diagram of the storage component of the energy storage power supply in the open position according to Embodiment 2 of this utility model.

[0021] Figure label:

[0022] 100. Energy storage body; 110. Receiving tank; 120. Protrusion;

[0023] 200. Storage component; 201. Reception space; 202. Recessed section; 203. First side panel; 204. Second side panel; 205. Third side panel; 206. Base plate; 300. Functional module. Detailed Implementation

[0024] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and not intended to limit it. Furthermore, it should be noted that, for ease of description, the accompanying drawings show only the parts relevant to the present invention, not the entire structure.

[0025] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0026] In the description of this embodiment, the terms "upper," "lower," "left," "right," "front," and "rear," etc., refer to the orientation or positional relationship shown in the accompanying drawings. They are used only for ease of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, the terms "first" and "second" are only used for distinction in description and have no special meaning.

[0027] This utility model discloses an energy storage power supply, referenced... Figures 1-4 As shown, the energy storage power supply includes an energy storage body 100, a storage component 200, and a functional module 300. A receiving groove 110 is provided on the side wall of the energy storage body 100. The storage component 200 is rotatably installed within the receiving groove 110, defining a receiving space 201. The functional module 300 is detachably stored within the receiving space 201. The storage component 200 has a stored position and an open position. In the stored position, the surface of the storage component 200 is parallel to the side wall of the energy storage body 100. In the open position, the surface of the storage component 200 forms an angle with the side wall of the energy storage body 100. Understandably, since the energy storage body 100 is provided with a receiving groove 110, and a storage component 200 is rotatably provided in the receiving groove 110, the storage component 200 has a receiving space 201 for receiving the functional module 300. When the storage component 200 is in the storage position, it stably fixes the functional module 300 on the energy storage body 100, reducing the probability of the functional module 300 falling out of the energy storage body 100 during the handling or transportation of the energy storage power supply. When the user uses the functional module 300, he / she only needs to rotate the storage component 200 to move it to the open position to take out the functional module 300. The operation is very convenient and meets the user's needs well.

[0028] refer to Figure 2 As shown, in the storage position, the storage component 200 completely seals the opening of the receiving slot 110 to hide the functional module 300 within the receiving slot 110. It is understood that the storage component 200 can completely conceal the functional module 300, which on the one hand prevents external contaminants from entering the storage space 201 and contaminating the functional module 300, and on the other hand reduces the probability of the functional module 300 falling out of the energy storage body 100 during the handling or transportation of the energy storage power supply.

[0029] refer to Figure 4As shown, in the storage position, the storage component 200 seals part of the opening of the receiving slot 110, so that a portion of the functional module 300 is exposed in the receiving slot 110; wherein, the storage component 200 can cover at least half of the functional module 300. It can be understood that with a portion of the functional module 300 exposed in the receiving slot 110, the user can directly observe the type of functional module 300 for easy access. The storage component 200 can cover at least half of the functional module 300, thus stabilizing the functional module 300 and reducing the probability of the functional module 300 falling out of the energy storage body 100 during the handling or transportation of the energy storage power supply.

[0030] Optionally, the storage component 200 has a recessed portion 202, and the receiving groove 110 has a protrusion 120 at its bottom. The recessed portion 202 can mate with the protrusion 120. One of the protrusion 120 and the recessed portion 202 has a pivot hole, and the other has a rotating shaft. The rotating shaft is inserted into the pivot hole, allowing the storage component 200 to rotate relative to the energy storage body 100 around the rotating shaft. It can be understood that the recessed portion 202 on the storage component 200 and the protrusion 120 at the bottom of the receiving groove 110, along with the pivot shaft and pivot hole, enable the storage component 200 to rotate relatively stably relative to the energy storage body 100, facilitating the user's opening and closing of the storage component 200.

[0031] It should be noted that, in some embodiments, the protrusion 120 is provided with a pivot hole and the groove 202 is provided with a rotating shaft; in other embodiments, the groove 202 is provided with a pivot hole and the protrusion 120 is provided with a rotating shaft. The pivot hole and the rotating shaft can be set according to actual needs.

[0032] Optionally, the storage component 200 includes a box body with a first side plate 203, a second side plate 204, a third side plate 205, and a bottom plate 206. The first side plate 203 is larger than the second side plate 204. There are two third side plates 205, which are respectively connected to the two ends of the first side plate 203 and the second side plate 204. The first side plate 203, the second side plate 204, and the third side plate 205 are all connected to the bottom plate 206 and enclose a receiving space 201. It can be understood that the storage component 200 is designed as a box structure, which can better support the functional module 300 and provide good support and protection for the functional module 300.

[0033] Optionally, a latching protrusion is provided on one of the walls of the first side plate 203 and the receiving groove 110, and a latching hole is provided on the other wall of the first side plate 203 and the receiving groove 110. The latching hole can be inserted into the latching protrusion. It is understood that when in the storage position, the latching protrusion can engage with the latching hole, improving the connection stability between the entire storage component 200 and the energy storage body 100 in the storage position. This prevents the storage component 200 from automatically opening during transportation or handling of the energy storage body 100, and helps reduce the probability of the functional module 300 falling out of the energy storage body 100. It should be noted that in some embodiments, a latching protrusion is provided on the wall of the receiving groove 110, and a latching hole is provided on the first side plate 203; in other embodiments, a latching protrusion is provided on the first side plate 203, and a latching hole is provided on the wall of the receiving groove 110. The positions of the latching protrusion and the latching hole can be selected according to actual needs.

[0034] Optionally, the storage unit 200 may be equipped with a handle groove. Understandably, this handle groove allows users to easily operate the storage unit 200, improving user satisfaction. The position and shape of the handle groove can be chosen according to actual needs; no specific restrictions are placed on its exact location or shape.

[0035] Optionally, an electrical contact module is provided on the inner wall of the receiving space 201. This electrical contact module can cooperate with the functional module 300 and is used to charge or supply power to the functional module 300. It is understood that by providing the electrical contact module on the bottom wall of the receiving space 201, and by cooperating with the functional module 300, the electrical contact module can supply power or charge the functional module 300, which helps to extend the usage time of the functional module 300 and thus improve user satisfaction. It should be further noted that the electrical contact module can be a socket located on the bottom wall of the receiving space 201, and the functional module 300 has a plug-in terminal that mates with the socket. Of course, in other embodiments of this utility model, the plug-in terminal can also be located on the bottom wall of the receiving space 201, while the socket is located on the functional module 300. The electrical contact module can also be a coil located on the side wall of the receiving space 201, and the functional module 300 also has a coil. The interaction between the two coils enables wireless charging or wireless power supply.

[0036] Optionally, the functional module 300 includes at least one of a water purifier, an air pump, a power bank, a Wi-Fi module, an outdoor light, a walkie-talkie, a radio, and a speaker. The functional module 300 can be varied, allowing users to place different functional modules 300 within the housing space 201 according to their needs when actually using the energy storage power supply of this embodiment, thereby meeting their personalized requirements and improving user satisfaction with the energy storage power supply of this embodiment.

[0037] Optionally, a partition is provided within the containment space 201 to divide the containment space 201 into multiple subspaces, each subspace being used to accommodate one functional module 300. It is understood that adding partitions within the containment space 201 to divide it into multiple subspaces, each subspace accommodating one functional module 300, ensures that each functional module 300 is independently and stably held within the containment space 201. This avoids collisions caused by shaking of multiple functional modules 300 during transportation and handling of the energy storage power supply, effectively protecting the functional modules 300 and extending their service life.

[0038] In the description of this specification, references to terms such as "some embodiments," "other embodiments," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0039] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make various obvious changes, readjustments, and substitutions without departing from the protection scope of this utility model. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.

Claims

1. An energy storage power source, characterized in that, include: An energy storage body, wherein a receiving groove is provided on the side wall of the energy storage body; A storage component, which is rotatably mounted within the receiving slot, defines a receiving space; Functional modules, wherein the functional modules are detachably housed within the receiving space; wherein: The storage component has a storage position and an open position. In the storage position, the surface of the storage component is parallel to the side wall of the energy storage body. In the open position, the surface of the storage component is at an angle to the side wall of the energy storage body.

2. The energy storage power supply according to claim 1, characterized in that, In the storage position, the storage component completely seals the opening of the receiving slot to hide the functional module within the receiving slot.

3. The energy storage power supply according to claim 1, characterized in that, In the storage position, the storage member seals part of the opening of the receiving slot, so that a portion of the functional module is exposed in the receiving slot; wherein the storage member is capable of covering at least half of the functional module.

4. The energy storage power supply according to claim 1, characterized in that, The storage component has a groove, and the bottom of the receiving groove has a protrusion. The groove can cooperate with the protrusion. One of the protrusion and the groove has a pivot hole, and the other of the protrusion and the groove has a rotating shaft. The rotating shaft is inserted into the pivot hole so that the storage component can rotate relative to the energy storage body around the rotating shaft.

5. The energy storage power supply according to claim 1, characterized in that, The storage component includes a box body, which has a first side plate, a second side plate, a third side plate, and a bottom plate. The first side plate is larger than the second side plate. There are two third side plates, which are respectively connected to the two ends of the first side plate and the second side plate. The first side plate, the second side plate, and the third side plate are all connected to the bottom plate and enclose the storage space.

6. The energy storage power supply according to claim 5, characterized in that, One of the first side plate and the groove wall of the receiving groove is provided with a locking protrusion, and the other of the first side plate and the groove wall of the receiving groove is provided with a locking hole, which can be inserted into the locking protrusion.

7. The energy storage power supply according to claim 1, characterized in that, The storage component is provided with a handle groove.

8. The energy storage power supply according to claim 1, characterized in that, An electrical contact module is provided on the inner wall of the containment space. The electrical contact module can cooperate with the functional module and is used to charge or supply power to the functional module.

9. The energy storage power supply according to claim 1, characterized in that, The functional modules include at least one of the following: water purifier, air pump, power bank, Wi-Fi module, outdoor light, walkie-talkie, radio, and speaker.

10. The energy storage power supply according to claim 1, characterized in that, The containment space is provided with partitions to divide the containment space into multiple subspaces, each of which is used to accommodate one of the functional modules.