Optical storage and charging all-in-one machine
By designing sealed and semi-sealed cavity structures in the integrated photovoltaic, energy storage, and charging unit, and utilizing the heat sink fins of the charging module itself for heat dissipation, the problems of complex structure and high cost in the existing technology are solved, achieving efficient installation and low-cost waterproof and dustproof effects.
Patent Information
- Application Number
- CN202520250148.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-02-17
AI Technical Summary
Existing integrated photovoltaic, energy storage, and charging systems have complex designs, low installation efficiency, and high manufacturing costs, making it difficult to meet the requirements for waterproofing, dustproofing, and heat dissipation.
The design combines a chassis, panel assembly, backplane assembly, and monitoring module to form a sealed cavity and a semi-sealed cavity. The charging module's own heat sink fins are used for heat dissipation, eliminating the need for additional dustproof, waterproof, and heat dissipation devices.
It improves installation efficiency, reduces costs, and meets the requirements for waterproofing, dustproofing, and heat dissipation, while simplifying the installation process.
Smart Images

Figure CN223713939U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to light storage and charging, more specifically, to a light storage and charging integrated machine. BACKGROUND
[0002] The light storage and charging integrated machine combines photovoltaic power generation and energy storage system to provide stable charging service for electric vehicles, which can effectively alleviate the impact of a large number of electric vehicle charging on the power grid, and therefore receives widespread attention. The light storage and charging integrated machine needs to meet certain waterproof and dustproof and heat dissipation requirements based on its application scenarios. The light storage and charging integrated machine of the prior art meets the waterproof and dustproof level requirements by installing a louver rain cover and a filter on the cabinet body, and meets the heat dissipation performance requirements by installing a large heat dissipation fan in the cabinet body. Such design has low installation efficiency and high manufacturing cost. SUMMARY
[0003] The utility model solves the technical problem in the prior art that the design structure of the light storage and charging integrated machine is complex, inconvenient to install and high in manufacturing cost. The light storage and charging integrated machine meets the waterproof and dustproof and heat dissipation requirements, improves installation efficiency and is low in cost.
[0004] The utility model adopts the technical scheme that a light storage and charging integrated machine is constructed, which comprises a cabinet, a panel assembly, a back plate assembly, a monitoring module and a charging module. The cabinet is internally provided with a partition plate. The cabinet, the partition plate and the panel assembly form a sealed cavity. The cabinet, the partition plate and the back plate assembly form a semi-sealed cavity. The monitoring module is accommodated in the sealed cavity. The charging module is accommodated in the semi-sealed cavity.
[0005] In the light storage and charging integrated machine, the panel assembly comprises a face cover and a waterproof cover plate. The waterproof cover plate is connected with the cabinet and the partition plate to form the sealed cavity. The face cover is installed on the waterproof cover plate. A first sealing strip is arranged between the waterproof cover plate and the cabinet.
[0006] In the light storage and charging integrated machine, the waterproof cover plate is installed on the side of the monitoring module opposite to the partition plate. A plurality of mounting brackets for mounting the face cover are arranged on the waterproof cover plate. An input device is mounted on the face cover through a waterproof box.
[0007] In the light storage and charging integrated machine, the back plate assembly comprises a back plate and a side cover. The cabinet, the partition plate, the back plate and the side cover are connected to form the semi-sealed cavity.
[0008] The first side of the machine box is provided with an air inlet, and the second side is provided with an air outlet, the air inlet and the air outlet are perpendicular to each other, the radiator fins of the charging module are opposite to the air outlet, and the heat generating components of the charging module are opposite to the air inlet.
[0009] The side cover is installed on the air outlet and is provided with an air outlet mesh hole, the back plate is installed on the side of the charging module opposite to the partition plate, the second sealing strip is arranged between the partition plate and the machine box, and the fan assembly is arranged between the side cover and the radiator fins of the charging module.
[0010] The back plate assembly further comprises a wall-mounted mounting plate or a ground-mounted mounting plate, and the wall-mounted mounting plate or the ground-mounted mounting plate is arranged on the side of the back plate opposite to the charging module.
[0011] The charging module is electrically connected with the monitoring module, the machine box is provided with a photovoltaic input switch, a charging gun output port and an emergency switch, the photovoltaic input switch and the emergency switch are respectively electrically connected with the monitoring module, and the monitoring module is further connected with a charging gun through the charging gun output port.
[0012] The utility model discloses a photovoltaic storage and charging integrated machine, which comprises a machine box, a panel assembly, a back plate assembly, a monitoring module and a charging module.
[0013] The utility model discloses a photovoltaic storage and charging integrated machine, which comprises a machine box, a panel assembly, a back plate assembly, a monitoring module and a charging module.
[0014] The optical storage and charging integrated machine is characterized in that the cabinet, the partition plate and the panel assembly form a sealed cavity to accommodate the monitoring module, thus ensuring and improving the waterproof and dustproof level of the monitoring module; the cabinet, the partition plate and the back plate assembly form a semi-sealed cavity to accommodate the charging module, the heat dissipation effect of the charging module can be improved, and the installation process is reduced, the installation efficiency is improved, the parts are reduced, and the cost is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0015] The utility model will be further described below in combination with the drawings and examples, wherein:
[0016] Figure 1 is the perspective view of the preferred embodiment of the optical storage and charging integrated machine of the utility model;
[0017] Figure 2 is the exploded view of the first angle of the preferred embodiment of the optical storage and charging integrated machine of the utility model;
[0018] Figure 3 is the exploded view of the second angle of the preferred embodiment of the optical storage and charging integrated machine of the utility model;
[0019] Figure 4 is the exploded view of the third angle of the preferred embodiment of the optical storage and charging integrated machine of the utility model;
[0020] Figure 5 is the schematic view of the use state of the preferred embodiment of the optical storage and charging integrated machine of the utility model;
[0021] In the drawings: cabinet 10, panel assembly 2, back plate assembly 3, face cover 20, waterproof cover plate 30, side cover 40, back plate 50, partition plate 11, wall hanging installation plate 60, fan assembly 70, first sealing strip 80, charging module 90, second sealing strip 100, monitoring module 105, charging gun output end 110, photovoltaic input switch 120, emergency switch 130, charging gun 200, charging pile 210, charging gun support 220. DETAILED DESCRIPTION
[0022] In order to make the purpose, technical scheme and advantages of the utility model more clear and obvious, the utility model will be further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model, and are not used to limit the utility model.
[0023] Figure 1 is the perspective view of the preferred embodiment of the optical storage and charging integrated machine of the utility model. Figure 2is a first angle exploded schematic view of the preferred embodiment of the optical storage and charging integrated machine of the utility model. Figure 3 is a second angle exploded schematic view of the preferred embodiment of the optical storage and charging integrated machine of the utility model. Figure 4 is a third angle exploded schematic view of the preferred embodiment of the optical storage and charging integrated machine of the utility model. Figure 5 is a use state schematic view of the preferred embodiment of the optical storage and charging integrated machine of the utility model. Figures 1-5 The preferred embodiment of the optical storage and charging integrated machine of the utility model is described as follows.
[0024] As shown in Figures 1-5 , the optical storage and charging integrated machine of the utility model comprises: a case 10, a panel assembly 2, a backboard assembly 3, a monitoring module 105 and a charging module 90. Herein, the case 10, the panel assembly 2 and the backboard assembly 3 can adopt any suitable shape as long as they can be adapted to the corresponding type of monitoring module 105 and charging module 90. The case 10, the panel assembly 2 and the backboard assembly 3 are connected to form a cavity. As shown in Figures 2-4 , a partition 11 is arranged inside the case 10, the case 10, the partition 11 and the panel assembly 2 form a sealed cavity, and the case 10, the partition 11 and the backboard assembly 3 form a semi-sealed cavity; the monitoring module 105 is accommodated in the sealed cavity 105; and the charging module 90 is accommodated in the semi-sealed cavity. Since the monitoring module 105 is installed in the sealed cavity, the waterproof and dustproof level of the monitoring module 105 is improved, and dust and rainwater can be prevented from entering to cause damage to electronic components. Since the charging module 90 is installed in the semi-sealed cavity, the heat dissipation effect of the charging module 90 can be improved, and the heat dissipation performance requirement can be met by using the fin effect of the heat sink of the charging module 90 itself. The optical storage and charging integrated machine of the utility model is implemented, the case, the partition and the panel assembly form a sealed cavity to accommodate the monitoring module, thus ensuring and improving the waterproof and dustproof level of the monitoring module; the case, the partition and the backboard assembly form a semi-sealed cavity to accommodate the charging module, which can improve the heat dissipation effect of the charging module, avoid the additional installation of special dustproof and waterproof and heat dissipation devices, thereby reducing the installation process, improving the installation efficiency, and reducing the parts and the cost.
[0025] Further as shown in Figures 2-4 , the panel assembly 2 comprises a face cover 20 and a waterproof cover plate 30. Further as shown in Figure 3As shown in the figure, the partition plate 11 is arranged in the middle of the cabinet 10, thereby dividing the internal space of the cabinet 10 into two parts, and one side of the partition plate 11 is arranged with the charging module 90, and the other side is arranged with the monitoring module 105. The waterproof cover plate 30 is installed on the side of the monitoring module 105 facing away from the partition plate 11. The waterproof cover plate 30 is connected with the cabinet 10 and the partition plate 11 to form the sealed cavity, and a sealing strip 80 is arranged between the waterproof cover plate 30 and the cabinet 10. The monitoring module 105 is installed in the sealed cavity of the cabinet 10, that is, the partition plate 11 is arranged in the cabinet 10, and the sealed cavity for installing the monitoring module 105 is formed by connecting the sealing strip 80 and the waterproof cover plate 30, so that the electronic devices are prevented from contacting the external air, thereby improving the protection level of the monitoring module 105 and avoiding damage caused by dust or rainwater.
[0026] Further as Figures 2-4 shown, the face cover 20 is installed on the waterproof cover plate 30. For example, a plurality of mounting brackets for installing the face cover 20 are arranged on the waterproof cover plate 30. The face cover 20 can be designed in different styles at will. In this way, the face cover 20 is installed on the waterproof cover plate 30 through the brackets to realize the individual needs of different users. Preferably, input devices such as card swiping plates and LCD display screens can also be installed on the face cover 20 through waterproof boxes.
[0027] Further as Figures 2-4 shown, the back plate assembly 3 includes a back plate 50 and a side cover 40; the cabinet 10, the partition plate 11, the back plate 50 and the side cover 40 are connected to form the semi-sealed cavity, and the charging module 90 is installed in the semi-sealed cavity. The design of the semi-sealed cavity can improve the heat dissipation effect of the charging module 90, so that the heat dissipation performance requirement can be met by using the radiator fin effect of the charging module 90 itself.
[0028] In the preferred embodiment of the utility model, as Figure 3 shown, the first side of the cabinet 10 is arranged with an air inlet 12, and the second side is arranged with an air outlet 13, and the air inlet 12 and the air outlet 13 are perpendicular to each other. The radiator fin 91 of the charging module 90 is opposite to the air outlet 13, and the heat generating component of the charging module 90 is opposite to the air inlet 12. Here, the heat generating component can refer to any electronic component other than the radiator. As Figure 3 shown, the side cover 40 is installed on the air outlet 13 and is arranged with air outlet mesh holes. The back plate 50 is installed on the side of the charging module 90 facing away from the partition plate 11, and a sealing strip 100 is arranged between the partition plate 11 and the cabinet 10; a fan assembly 70 is arranged between the side cover 40 and the radiator fin 91 of the charging module 90.
[0029] In this preferred embodiment, the charging module 90 is installed in the semi-sealed cavity of the chassis 10. A sealing groove is provided at the bottom of the charging module, and a sealing strip 100 is provided between the partition 11 and the chassis 10. Through the sealing strip 100, the chassis 10, the partition, and the charging module 90 form a sealed structure, ensuring that the protection level of the charging module 90 can reach IP65. The chassis 10 has an air inlet 12 on the first side and an air outlet 13 on the second side. The side cover 40 is installed on the air outlet 13 and has an air outlet mesh. The air inlet 17 can preferably also have an air inlet mesh. The fan assembly 70 is provided on the side cover 40 and the heat sink fins 91 of the charging module 90. Therefore, the charging module 90 improves the heat dissipation effect through the fan assembly 70. Of course, as mentioned above, due to this semi-sealed structure design, the heat sink fins of the charging module 90 alone can meet the heat dissipation performance requirements without the fan assembly 70. Designing the fan assembly 70 can further improve the heat dissipation effect. Furthermore, the side cover 40 is mounted on the chassis 10, which facilitates installation and removal and provides maintenance convenience for the fan assembly 70.
[0030] In this utility model, the charging module 90 is designed separately from other functional modules (i.e., the monitoring module 105). The charging module 90 is independent of the mounting cavity of other functional modules and can be partially sealed. Since the heat sink of the charging module 90 is exposed outside the semi-sealed cavity, the heat dissipation performance requirements can be met by using the heat sink fins. Therefore, the assembly, installation and maintenance costs can be reduced, and the convenience of user use and operation can be improved.
[0031] like Figure 3 As shown, the backplate 50 is mounted on the chassis 10 and connected and fixed to the charging module 90 by wall-mounting screws to improve the overall strength of the chassis 10. In this preferred embodiment, the backplate assembly 3 further includes a wall-mounting plate 60, which is mounted on the backplate 50 and fixed by wall-mounting screws. It can be installed on the charging pile 210 or on a wall, meeting different installation requirements. Figure 5 As shown, a wall-mounted mounting plate 60 is assembled on the back panel 50, and the integrated photovoltaic, energy storage, and charging unit can be fixed to the charging pile 210 via the wall-mounted mounting plate 60. The charging pile 210 is further provided with a charging pile base 220 and a charging gun 200. In other preferred embodiments of this invention, the back panel assembly 3 may include a ground mounting plate, thus enabling ground installation of the integrated photovoltaic, energy storage, and charging unit. Therefore, the integrated photovoltaic, energy storage, and charging unit of this invention can be provided for either ground or wall mounting, allowing users to choose according to their needs and facilitating convenient assembly and installation.
[0032] Further as Figures 2-4As shown, the charging module 90 is electrically connected with the monitoring module 105; the cabinet 10 is provided with a photovoltaic input switch 120, a charging gun output port 110 and an emergency switch 130; the photovoltaic input switch 120 and the emergency switch 130 are respectively electrically connected with the monitoring module 105; the monitoring module 105 is further connected with a charging gun 200 through the charging gun output port 110. The emergency stop switch 130 can be an emergency stop button, which is arranged on the monitoring module 105, so as to ensure that the power supply is cut off in time in an emergency.
[0033] Further as Figures 2-4 As shown, the cabinet 10 can also be provided with various terminals and ports, such as a photovoltaic input terminal, a battery output terminal, a power grid access terminal, a load output terminal, a 4G module terminal and a plurality of communication ports. The cabinet 10 is also provided with an antenna assembly, which is electrically connected with the monitoring module 105. The monitoring module 105 is built-in with a customer identification module and a memory card, such as a 16G memory card, which realizes real-time communication and data transmission with a development terminal application program.
[0034] In combination Figures 1-5 As shown in the embodiment, the utility model further discloses a kind of light storage and charging integrated machine, comprising: cabinet 10, panel assembly 2, backboard assembly 3, monitoring module 105 and charging module 90;The cabinet 10 is provided with baffle 11 inside, the cabinet 10, the baffle 11 and the panel assembly 2 form sealed cavity, the cabinet 10, the baffle 11 and the backboard assembly 3 form semi-sealed cavity;The monitoring module 105 is contained in the sealed cavity 105;The charging module 90 is contained in the semi-sealed cavity;The panel assembly 2 includes waterproof cover plate 30;The backboard assembly 3 includes backboard 50 and side cover 40;The waterproof cover plate 30 is connected with the cabinet 10 and the baffle 11 to form the sealed cavity, sealing strip 80 is arranged between the waterproof cover plate 30 and the cabinet 10;The cabinet 10, the baffle 11, the backboard 50 and the side cover 40 are connected to form the semi-sealed cavity, sealing strip 100 is arranged between the baffle 11 and the cabinet 10;The first side of the cabinet 10 is provided with air inlet 12, the second side is provided with air outlet 13, the air inlet 12 and the air outlet 13 are perpendicular to each other;The radiator fin 91 of the charging module 90 is directly opposite the air outlet 13, the heat generating component of the charging module 90 is directly opposite the air inlet 12;The side cover 40 is installed on the air outlet 13 and is provided with air outlet mesh hole;Fan assembly 70 is arranged between the side cover 40 and the radiator fin 91 of the charging module 90. Preferably, light storage and charging integrated machine can also include face cover 20 and wall-mounted mounting plate 60 as described above;The face cover 20 is installed on the waterproof cover plate 30;The wall-mounted mounting plate 60 is installed on the backboard 50.
[0035] The utility model discloses a light storage and charging integrated machine, the cavity is formed by the connecting of the cabinet 10, waterproof cover plate 30 and back plate 50. The cabinet 10 is provided with the baffle 11, and the cavity is divided into the sealed cavity for installing the monitoring module 105 and the semi-sealed cavity for installing the charging module 90. The waterproof cover plate 30, the cabinet 10 and the baffle 11 are connected to form the sealed cavity, and the monitoring module 105 is installed in the sealed cavity, thereby improving the protection level of the monitoring module 105, and avoiding the damage of electronic components caused by dust and rainwater entering outdoors. The cabinet 10, the back plate 50 and the side cover 40 are connected to form the semi-closed cavity, the charging module 90 is installed in the semi-closed cavity, the first side of the cabinet 10 is provided with the air inlet 12, the second side is provided with the air outlet 13, the side cover 40 is installed on the air outlet 13 and is provided with the air outlet mesh hole, and the air inlet 12 is provided with the air inlet mesh hole, so that the heat dissipation effect of the radiator of the charging module 90 can be improved, and the heat dissipation performance requirement can be met by using the radiator fin effect of the charging module 90 itself. Therefore, the light storage and charging integrated machine of the utility model is formed by the cabinet, the baffle and the panel assembly to form a sealed cavity to accommodate the monitoring module, thereby ensuring and improving the waterproof and dustproof level of the monitoring module; the cabinet, the baffle and the back plate assembly form a semi-sealed cavity to accommodate the charging module, the heat dissipation effect of the charging module can be improved, and the installation process of the special dustproof and waterproof and radiator device is avoided, thereby reducing the installation process, improving the installation efficiency, reducing the parts, and reducing the cost.
[0036] Although the utility model is explained through specific embodiments, those skilled in the art should understand that various transformations and equivalent substitutions can be made to the utility model without departing from the scope of the utility model. In addition, various modifications can be made to the utility model for specific situations or materials without departing from the scope of the utility model. Therefore, the utility model is not limited to the disclosed specific embodiments, and should include all the embodiments falling within the scope of the claims of the utility model.
[0037] The above only is the preferred embodiment of the utility model, and does not limit the utility model, and any modification, equivalent substitution and improvement made within the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. A light storage and charging integrated machine, characterized in that, The application relates to a charging device for charging a plurality of electric vehicles, comprising: a cabinet, a panel assembly, a backboard assembly, a monitoring module and a charging module; a partition plate is arranged in the cabinet, and the cabinet, the partition plate and the panel assembly form a sealed cavity, and the cabinet, the partition plate and the backboard assembly form a semi-sealed cavity; the monitoring module is accommodated in the sealed cavity, and the charging module is accommodated in the semi-sealed cavity. 2.The optical storage and charging all-in-one machine of claim 1, wherein, the panel assembly comprises a face cover and a waterproof cover plate; the waterproof cover plate is connected with the cabinet and the partition plate to form the sealed cavity; the face cover is arranged on the waterproof cover plate; and a first sealing strip is arranged between the waterproof cover plate and the cabinet. 3.The optical storage and charging all-in-one machine of claim 2, wherein, the waterproof cover plate is arranged on a side of the monitoring module which faces away from the partition plate; a plurality of mounting supports for mounting the face cover are arranged on the waterproof cover plate; and input devices are arranged on the face cover through waterproof boxes. 4.The optical storage and charging all-in-one machine according to any one of claims 1-3, characterized in that, the backboard assembly comprises a backboard and a side cover; the cabinet, the partition plate, the backboard and the side cover are connected to form the semi-sealed cavity.
5. The light storage and charging all-in-one machine according to claim 4, characterized in that, a first air inlet is arranged on a first side of the cabinet, a second air outlet is arranged on a second side of the cabinet, the first air inlet and the second air outlet are perpendicular to each other; a heat dissipation fin of the charging module faces the second air outlet, and a heat generating component of the charging module faces the first air inlet. 6.The light storage and charging integrated machine of claim 5, characterized in that, the side cover is arranged on the second air outlet and is provided with air outlet mesh holes; the backboard is arranged on a side of the charging module which faces away from the partition plate; a second sealing strip is arranged between the partition plate and the cabinet; and a fan assembly is arranged between the side cover and the heat dissipation fin of the charging module. 7.The optical storage and charging all-in-one machine according to claim 6, characterized in that, the backboard assembly further comprises a wall-mounted mounting plate or a ground-mounted mounting plate; the wall-mounted mounting plate or the ground-mounted mounting plate is arranged on a side of the backboard which faces away from the charging module. 8.The light storage and charging integrated machine of claim 4, characterized in that, the charging module is electrically connected with the monitoring module; a photovoltaic input switch, a charging gun output port and an emergency switch are arranged on the cabinet; the photovoltaic input switch and the emergency switch are respectively electrically connected with the monitoring module; and the monitoring module is further connected with a charging gun through the charging gun output port.
9. A light storage and charging integrated machine, characterized in that, The application relates to a charging device for charging a plurality of electric vehicles, comprising: a cabinet, a panel assembly, a backboard assembly, a monitoring module and a charging module; a partition plate is arranged in the cabinet, and the cabinet, the partition plate and the panel assembly form a sealed cavity, and the cabinet, the partition plate and the backboard assembly form a semi-sealed cavity; the monitoring module is accommodated in the sealed cavity; the charging module is accommodated in the semi-sealed cavity; the panel assembly comprises a waterproof cover plate; the backboard assembly comprises a backboard and a side cover; the waterproof cover plate is connected with the cabinet and the partition plate to form the sealed cavity; and a first sealing strip is arranged between the waterproof cover plate and the cabinet. The cabinet, the partition plate, the back plate and the side cover are connected to form the semi-sealed cavity, and a second sealing strip is arranged between the partition plate and the cabinet; a first side of the cabinet is provided with an air inlet, and a second side of the cabinet is provided with an air outlet, and the air inlet and the air outlet are perpendicular to each other; the heat dissipation fin of the charging module is opposite to the air outlet, and the heat generating component of the charging module is opposite to the air inlet; the side cover is installed on the air outlet and is provided with an air outlet mesh; a fan assembly is arranged between the side cover and the heat dissipation fin of the charging module. 10.The optical storage and charging all-in-one machine of claim 9, wherein, Further comprising a face cover and a mounting plate; the face cover is installed on the waterproof cover plate; and the mounting plate is installed on the back plate.