Balcony energy storage with guided parallel installation structure

CN224774627UActive Publication Date: 2026-09-18SHENZHEN GOSPELL DIGITAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202521790839.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-22
Publication Date
2026-09-18
Estimated Expiration
2035-08-22

AI Technical Summary

Technical Problem

[0003]市面上阳台储能并机方式采用上下堆叠方式并机,无导向结构,容易撞坏盲插端子,导致接触不良,且顶部电池包盲插端子头外露,外观不协调,且容易导致积水问题无法排除,长期会失去防护作用

Benefits of technology

[0012] Compared with the prior art, the beneficial effects of this utility model are: this type of balcony energy storage with a guide parallel installation structure not only realizes the guide parallel installation function and the water discharge function, but also realizes the hole and groove protection function;

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Abstract

This utility model relates to the technical field of new energy industry and discloses a balcony energy storage system with a guided parallel installation structure. It includes an energy storage unit, a radiator at the rear end of the energy storage unit, and pin sockets on both sides of the top of the radiator. A guide pin is inserted into the top of each pin socket. This utility model, through its guided parallel installation structure, allows the guide pin to be threadedly inserted into the pin socket at the top of the radiator at the rear end of one energy storage unit. Another energy storage unit is then stacked on top of the first. The lower guide socket at the rear end of the other energy storage unit is guided and fitted onto the outside of the guide pin at the top of the first energy storage unit. Simultaneously, the lower connecting seat at the bottom of the other energy storage unit is fitted onto the outside of the blind insertion end seat at the top of the first energy storage unit, engaging with the inner connecting seat inside the blind insertion end seat. This parallel installation of the two energy storage units achieves the guided parallel installation function.
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Description

Technical Field

[0001] This utility model relates to the technical field of new energy industry, specifically to a balcony energy storage system with a directional parallel installation structure. Background Technology

[0002] Balcony energy storage, also known as photovoltaic energy storage, is a system that combines solar power generation with energy storage technology. It is used to store the electrical energy generated by photovoltaic power generation, improve energy utilization efficiency, and solve the problem of intermittency of photovoltaic power generation. The energy storage device is usually installed near the balcony.

[0003] Current balcony energy storage systems on the market use a stacked configuration without a guide structure, making them prone to damaging the blind-plug terminals, leading to poor contact. Furthermore, the exposed blind-plug terminals on the top of the battery pack create an unsightly appearance and can cause water accumulation, eventually compromising their protective function. Therefore, we propose a balcony energy storage system with a guided parallel installation structure to address these issues. Utility Model Content

[0004] The purpose of this invention is to provide a balcony energy storage system with a guided parallel installation structure to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a balcony energy storage system with a guided parallel installation structure, comprising an energy storage unit body, a radiator at the rear end of the energy storage unit body, pin sockets on both sides of the top of the radiator, a guide pin inserted into the top of the pin socket, an upper mounting base on the top of the radiator, a blind insertion end seat on the top of the upper mounting base, an inner connector inside the blind insertion end seat, a lower connecting seat at the bottom of the radiator, and a lower guide socket installed at the bottom of the radiator.

[0006] As a further technical solution of this utility model, the guide pin is inserted into the pin socket at the top of the radiator through thread engagement, and the guide pin at the top of the pin socket is inserted into the lower guide socket. The guide pin, the pin socket and the lower guide socket are all provided in two sets, left and right.

[0007] As a further technical solution of this utility model, the blind-plug terminal is inserted into the top of the upper mounting base on the top of the heat sink, and the inner connector inside the blind-plug terminal on the top of the upper mounting base is engaged with the lower connector.

[0008] As a further technical solution of this utility model, a control panel is embedded in the front end of the energy storage device, connecting plugs are installed on both sides of the radiator, locking slots are opened around the top of the energy storage device, side water guide grooves are opened on the top of both sides of the energy storage device, a support base is installed at the bottom of the energy storage device, and upper buffer seats are provided on both sides of the top of the energy storage device.

[0009] As a further technical solution of this utility model, the locking slot is opened on the top of the energy storage device and communicates with the side guide water channels on both sides of the energy storage device. The upper buffer seat is embedded on both sides of the top of the energy storage device. The support base at the bottom of the energy storage device is engaged with the locking slot.

[0010] As a further technical solution of this utility model, a sealing plug is provided at the bottom of the lower connecting seat, and a partition plate is provided at the bottom of the sealing plug.

[0011] As a further technical solution of this utility model, the sealing plug is inserted into the lower connecting seat through the bottom of the lower connecting seat, the sealing plug is inserted into the upper mounting seat through the top of the upper mounting seat, and the sealing plug is connected to the partition plate.

[0012] Compared with the prior art, the beneficial effects of this utility model are: this type of balcony energy storage with a guide parallel installation structure not only realizes the guide parallel installation function and the water discharge function, but also realizes the hole and groove protection function;

[0013] (1) By setting a guide parallel installation structure, the present invention is beneficial as follows: When in use, the guide pin is threadedly inserted into the pin socket at the top of the radiator at the rear end of a set of energy storage bodies, and another set of energy storage bodies is stacked on top of the first set of energy storage bodies. The lower guide socket at the rear end of the other set of energy storage bodies is guided and sleeved to the outside of the guide pin at the top of the first set of energy storage bodies. At the same time, the lower connecting seat at the bottom of the other set of energy storage bodies is sleeved to the outside of the blind insertion end seat at the top of the first set of energy storage bodies and is engaged with the inner connecting seat inside the blind insertion end seat. The two sets of energy storage bodies are paralleled together, thereby realizing the guide parallel installation function and preventing damage to the guide pin by human handling and stacking errors.

[0014] (2) By setting up a water discharge structure, the present invention is beneficial as follows: when in use, the support base at the bottom of the other set of energy storage bodies is engaged with the locking slot at the top of the first set of energy storage bodies, and the bottom of the other set of energy storage bodies is in contact with the upper buffer seat at the top of the first set of energy storage bodies. At the same time, the locking slot of the energy storage body is connected to the side guide water channels on both sides of the energy storage body. The water accumulated at the top of the energy storage body can be discharged from the side guide water channels through the locking slot, and the radiator at the rear of the energy storage body can also quickly discharge the water, thereby realizing the water discharge function and avoiding damage to the energy storage body due to long-term water accumulation.

[0015] (3) By setting the hole and groove protection structure, the present invention is beneficial in that: when in use, the partition plate carrying the sealing plug is pulled out from the bottom of the lower connecting seat, the two sets of energy storage bodies are installed in parallel, and then the blind insertion end seat carrying the inner connecting seat is pulled out from the top of the upper mounting seat. The partition plate carrying the sealing plug is then inserted into the top of the upper mounting seat to seal the upper mounting seat, thereby realizing the hole and groove protection function. Attached Figure Description

[0016] Figure 1 This is a front view structural diagram of the present utility model;

[0017] Figure 2 This is a top view of the structure of this utility model;

[0018] Figure 3 This is a schematic diagram of the rear view structure of this utility model;

[0019] Figure 4 For the present utility model Figure 3 Enlarged cross-sectional view of point A in the middle.

[0020] In the diagram: 1. Connecting plug; 2. Guide pin post; 3. Blind plug end; 4. Energy storage unit body; 5. Control panel; 6. Support base; 7. Internal connector; 8. Radiator; 9. Pin socket; 10. Upper buffer seat; 11. Engaging slot; 12. Upper mounting seat; 13. Lower guide socket; 14. Lower connecting seat; 15. Side water guide channel; 16. Partition plate; 17. Sealing plug. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] Please see Figure 1-4 An embodiment of this utility model is provided: a balcony energy storage with a guide parallel installation structure, including an energy storage body 4, a radiator 8 at the rear end of the energy storage body 4, pin sockets 9 on both sides of the top of the radiator 8, a guide pin post 2 inserted into the top of the pin socket 9, an upper mounting seat 12 at the top of the radiator 8, a blind insertion end seat 3 at the top of the upper mounting seat 12, an inner connection seat 7 inside the blind insertion end seat 3, a lower connecting seat 14 at the bottom of the radiator 8, and a lower guide socket 13 installed at the bottom of the radiator 8.

[0023] The guide pin 2 is inserted into the pin socket 9 at the top of the radiator 8 through thread engagement. The guide pin 2 at the top of the pin socket 9 is inserted into the lower guide socket 13. The guide pin 2, the pin socket 9 and the lower guide socket 13 are all provided with two sets on the left and right. The blind insertion end 3 is inserted into the top of the upper mounting base 12 at the top of the radiator 8. The inner connector 7 inside the blind insertion end 3 at the top of the upper mounting base 12 is engaged with the lower connecting base 14.

[0024] Specifically, such as Figure 1 and Figure 2 As shown, by setting a guide parallel installation structure, during use, the guide pin post 2 is threadedly inserted into the pin socket 9 on the top of the radiator 8 at the rear end of one energy storage body 4, and another energy storage body 4 is stacked on top of the first energy storage body 4. The lower guide socket 13 at the rear end of the other energy storage body 4 is guided and sleeved onto the outside of the guide pin post 2 on the top of the first energy storage body 4. At the same time, the lower connecting seat 14 at the bottom of the other energy storage body 4 is sleeved onto the outside of the blind insertion end seat 3 on the top of the first energy storage body 4 and snapped into the inner connecting seat 7 inside the blind insertion end seat 3, thus connecting the two energy storage bodies 4 together, thereby realizing the guide parallel installation function.

[0025] The front end of the energy storage body 4 is inlaid with a control panel 5, the two sides of the heat sink 8 are equipped with connecting plugs 1, the top of the energy storage body 4 is provided with locking slots 11, the top of the two sides of the energy storage body 4 is provided with side water guide grooves 15, the bottom of the energy storage body 4 is equipped with a support base 6, and the top of the energy storage body 4 is provided with upper buffer seats 10 on both sides.

[0026] The locking slot 11 is opened on the top of the energy storage body 4 and communicates with the side guide water channels 15 on both sides of the energy storage body 4. The upper buffer seat 10 is embedded on both sides of the top of the energy storage body 4. The support base 6 at the bottom of the energy storage body 4 is engaged with the locking slot 11.

[0027] Specifically, such as Figure 1 and Figure 3 As shown, by setting up a water drainage structure, during use, the support base 6 at the bottom of another set of energy storage units 4 is engaged with the locking slot 11 at the top of the first set of energy storage units 4, and the bottom of the other set of energy storage units 4 contacts the upper buffer seat 10 at the top of the first set of energy storage units 4. At the same time, the locking slot 11 of the energy storage units 4 is connected to the side water guide channels 15 on both sides of the energy storage units 4. The water accumulated at the top of the energy storage units 4 can be discharged from the side water guide channels 15 through the locking slot 11, and the heat sink 8 at the rear of the energy storage units 4 can also quickly drain the water, thereby realizing the water drainage function.

[0028] A sealing plug 17 is provided at the bottom of the lower connecting seat 14, and a partition plate 16 is provided at the bottom of the sealing plug 17;

[0029] The sealing plug 17 is inserted into the lower connecting seat 14 through the bottom of the lower connecting seat 14, and the sealing plug 17 is inserted into the upper mounting seat 12 through the top of the upper mounting seat 12. The sealing plug 17 is connected to the partition plate 16.

[0030] Specifically, such as Figure 3 and Figure 4 As shown, by setting a slot protection structure, during use, the partition plate 16 carrying the sealing plug 17 is pulled out from the bottom of the lower connecting seat 14, the two sets of energy storage bodies 4 are installed in parallel, and then the blind insertion end seat 3 carrying the inner connecting seat 7 is pulled out from the top of the upper mounting seat 12. The partition plate 16 carrying the sealing plug 17 is then inserted into the top of the upper mounting seat 12 to seal the upper mounting seat 12, thereby realizing the slot protection function.

[0031] Working principle: In this invention, the partition plate 16 carrying the sealing plug 17 is pulled out from the bottom of the lower connecting seat 14. Then, the guide pin 2 is threadedly inserted into the pin socket 9 on the top of the radiator 8 at the rear end of one set of energy storage bodies 4. Another set of energy storage bodies 4 is stacked on top of the first set of energy storage bodies 4. The lower guide socket 13 at the rear end of the other set of energy storage bodies 4 is guided and sleeved onto the outside of the guide pin 2 on the top of the first set of energy storage bodies 4. At the same time, the lower connecting seat 14 at the bottom of the other set of energy storage bodies 4 is sleeved onto the outside of the blind insertion end seat 3 on the top of the first set of energy storage bodies 4 and engages with the inner connecting seat 7 inside the blind insertion end seat 3. The two sets of energy storage bodies 4 are connected together, and the other set of energy storage bodies 4 is also connected together. The bottom support base 6 engages with the engagement slot 11 on the top of one set of energy storage bodies 4, and the bottom of another set of energy storage bodies 4 contacts the upper buffer seat 10 on the top of one set of energy storage bodies 4. The engagement slot 11 of the energy storage body 4 is connected to the side water guide channels 15 on both sides of the energy storage body 4. The water accumulated on the top of the energy storage body 4 can be discharged from the side water guide channels 15 through the engagement slot 11. The heat sink 8 at the rear of the energy storage body 4 can also quickly drain the water. After the blind plug 3 carrying the inner connector 7 is pulled out from the top of the upper mounting seat 12, the partition plate 16 carrying the sealing plug 17 is inserted into the top of the upper mounting seat 12 to seal the upper mounting seat 12 on the top of the other set of energy storage bodies 4.

[0032] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A balcony energy storage system with a guided parallel installation structure, comprising an energy storage unit (4), characterized in that: The energy storage body (4) is provided with a heat sink (8) at its rear end. The top two sides of the heat sink (8) are provided with pin sockets (9). A guide pin post (2) is inserted into the top of the pin socket (9). The top of the heat sink (8) is provided with an upper mounting base (12). A blind insertion end seat (3) is installed on the top of the upper mounting base (12). An inner connector (7) is provided inside the blind insertion end seat (3). The bottom of the heat sink (8) is provided with a lower connecting seat (14). The bottom of the heat sink (8) is provided with a lower guide socket (13).

2. The balcony energy storage system with a guided parallel installation structure according to claim 1, characterized in that: The guide pin (2) is inserted into the pin socket (9) at the top of the radiator (8) through thread engagement. The guide pin (2) at the top of the pin socket (9) is inserted into the lower guide socket (13). The guide pin (2), the pin socket (9) and the lower guide socket (13) are all provided with two sets, one on the left and one on the right.

3. A balcony energy storage system with a guided parallel installation structure according to claim 1, characterized in that: The blind-plug terminal (3) is inserted into the top of the upper mounting base (12) on the top of the heat sink (8), and the inner connector (7) inside the blind-plug terminal (3) on the top of the upper mounting base (12) is engaged with the lower connector (14).

4. A balcony energy storage system with a guided parallel installation structure according to claim 1, characterized in that: The front end of the energy storage body (4) is inlaid with a control panel (5), the two sides of the radiator (8) are equipped with connecting plugs (1), the top of the energy storage body (4) is provided with locking slots (11), the top of the two sides of the energy storage body (4) is provided with side water guide grooves (15), the bottom of the energy storage body (4) is provided with a support base (6), and the top of the energy storage body (4) is provided with upper buffer seats (10).

5. A balcony energy storage system with a guided parallel installation structure according to claim 4, characterized in that: The locking slot (11) is located on the top of the energy storage body (4) and communicates with the side guide water channels (15) on both sides of the energy storage body (4). The upper buffer seat (10) is embedded on both sides of the top of the energy storage body (4). The support base (6) at the bottom of the energy storage body (4) is engaged with the locking slot (11).

6. A balcony energy storage system with a guided parallel installation structure according to claim 1, characterized in that: The bottom of the lower connecting seat (14) is provided with a sealing plug (17), and the bottom of the sealing plug (17) is provided with a partition plate (16).

7. A balcony energy storage system with a guided parallel installation structure according to claim 6, characterized in that: The sealing plug (17) is inserted into the lower connecting seat (14) through the bottom of the lower connecting seat (14), and the sealing plug (17) is inserted into the upper mounting seat (12) through the top of the upper mounting seat (12). The sealing plug (17) is connected to the partition plate (16).