Back plate unit of solar venetian blind, mounting box, venetian blind, glass assembly and window body
By designing a compensating protrusion support control device or power supply component on the back panel unit of the solar venetian blind, the problems of increased cost and assembly difficulty of the support components are solved, achieving cost savings and efficiency improvement.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- LEWU (FOSHAN) HIGH-TECH CO LTD
- Filing Date
- 2025-01-27
- Publication Date
- 2026-05-19
AI Technical Summary
The additional support or locking components in existing solar venetian blinds increase manufacturing costs, complicate assembly, and affect production efficiency.
The back panel unit has a compensating protrusion on its front side to support the control device or power supply component of the solar venetian blind, reducing processing steps and improving production efficiency. By using back panel units of different sizes to adapt to venetian blinds of different specifications, production costs are reduced.
It saves manufacturing costs, improves production efficiency, and enhances the versatility of solar panels, adapting to blinds of different sizes.
Smart Images

Figure CN224260237U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of smart homes, and in particular to the back panel unit, mounting box, blinds, glass components and window of a solar-powered Venetian blind. Background Technology
[0002] With the development of smart homes, some Venetian blinds are now equipped with solar power, eliminating the need for users to actively charge them or significantly reducing the frequency of active charging.
[0003] However, solar modules are typically mounted on the back of the blinds, occupying space within the blind housing. This can lead to an off-center arrangement of the blind control or power supply components inside the housing, necessitating additional support or locking components to ensure the blind's structural stability. These additional support or locking components increase manufacturing costs and assembly complexity, impacting production efficiency. Utility Model Content
[0004] This utility model provides a back panel unit, mounting box, venetian blind, glass assembly and window for solar venetian blinds, in order to solve the problem that additional support or locking components increase the manufacturer's manufacturing cost, increase assembly difficulty and affect production efficiency.
[0005] The first aspect of this utility model provides a back panel unit for a solar venetian blind, wherein the back panel unit has at least one compensating protrusion formed on the front side, the compensating protrusion being used to support the venetian blind control device or power supply component of the solar venetian blind, and the compensating protrusion being a rib extending laterally on the front side of the back panel unit.
[0006] Furthermore, the back panel unit is applied to the solar blind mounting box, which is used to install the blind control device or power supply component. The blind mounting box includes a mounting box body and a solar panel. The mounting box body has at least one mounting opening on the back side, and at least a portion of the mounting opening is used to lay the back panel unit. The compensation protrusion is formed on the front side of the back panel unit.
[0007] Furthermore, the compensation protrusion is integrally formed with the back plate unit, and the compensation protrusion extends laterally from the front of the back plate unit.
[0008] Furthermore, the number of the ribs is two, and the two ribs are arranged in parallel.
[0009] Furthermore, the backplate unit also includes a mounting portion for connection with the mounting box body.
[0010] Furthermore, the mounting portion includes a snap-fit formed on the lower part of the back panel unit and a flange formed on the upper part of the back panel unit.
[0011] A second aspect of this utility model provides a solar venetian blind mounting box, including a back panel unit of the solar venetian blind as described in any of the above claims, wherein at least a portion of the mounting opening is also used for laying the solar panel, and the back panel unit is formed on at least one side of the mounting opening of the venetian blind mounting box.
[0012] Furthermore, the mounting port is divided into a first area and a second area, with the first area used to install the backsheet unit and the solar panel located in the second area.
[0013] Furthermore, the first and second regions are divided from left to right.
[0014] Furthermore, the venetian blind mounting box also includes a connector aligned with the back panel unit, the connector being used to mount the solar panel.
[0015] Furthermore, the connector is plate-shaped, with a concave surface on its back, and the solar panel is mounted on the concave surface.
[0016] Furthermore, the plate-shaped connector includes an upper connecting surface and a lower connecting surface, which are connected to the mounting box body, and both the upper and lower connecting surfaces are flush with the solar panel.
[0017] Furthermore, the plate-shaped connector has a first tenon structure on the front of the upper connecting surface and a second tenon structure on the front of the lower connecting surface. The plate-shaped connector is connected to the mounting box body through the first tenon structure and the second tenon structure.
[0018] Furthermore, the travel of the compensation protrusion extends to the bottom surface of the concave surface.
[0019] Furthermore, the back panel unit and the solar panel are flush with each other on the back of the mounting box.
[0020] A third aspect of this utility model provides a solar-powered Venetian blind, including a Venetian blind control device or power supply component, and Venetian blind slats driven by the Venetian blind control device, and further including a Venetian blind mounting box as described in one or more of the above claims, wherein the Venetian blind control device or power supply component is disposed inside the Venetian blind mounting box.
[0021] Fourthly, the solar-powered venetian blinds described above are also provided with positioning and mounting components on their vertical periphery, which are used to connect with the window frame.
[0022] The fifth aspect of this utility model provides a glass assembly including a sealing edge, wherein the sealing edge is a sealing strip and / or a profile, and the center of the sealing edge is provided with the solar venetian blind described in the third aspect above. The glass assembly also includes a glass sheet, which is located on one or both sides of the sealing edge and is in close contact with the sealing edge.
[0023] The sixth aspect of this utility model provides a window, including a window frame and the solar-powered Venetian blinds described in the fourth aspect above, wherein the solar-powered Venetian blinds are installed in the middle of the window frame by positioning and mounting components.
[0024] The seventh aspect of this utility model provides a window, including a window frame, wherein a glass component as described in the fifth aspect above is embedded in the middle of the window frame, and the sealing edge is in close contact with the window frame.
[0025] This embodiment of the invention provides a backplate unit with at least one compensating protrusion on its front side. This compensating protrusion supports the blind control device or power supply component of the solar-powered Venetian blind. This allows the backplate unit to replace part of the blind's shell, providing a fixed support for the blind control device or power supply component. Since the compensating protrusion is located on the backplate unit, it reduces the processing steps of the blind, saving manufacturing costs and improving production efficiency. Furthermore, because the backplate unit is relatively easy to process, by using backplate units of different sizes to adapt to blinds of different specifications, when applying the backplate unit of this embodiment to blinds of different sizes and specifications, there is no need to adjust the size of the solar panel. Only different sized backplate units need to be used to adapt to blind control component boxes of different specifications, allowing solar panels of the same size to be adapted to blinds of different sizes, improving the versatility of the solar panel and further reducing the manufacturer's production costs. Attached Figure Description
[0026] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0027] Figure 1 This is a perspective view of the back panel unit of the solar-powered venetian blind in the second embodiment of this utility model;
[0028] Figure 2 This is a cross-sectional view of the glass assembly in the third embodiment of the present invention from a frontal perspective. The cross-section is located on the solar panel and connector, and is close to the back panel unit. The glass sheet is hidden in the figure.
[0029] Figure 3 yes Figure 2 A magnified view of a portion of the solar venetian blind installation box;
[0030] Figure 4 This is a perspective view of the back panel unit of the solar venetian blind in the third embodiment of the present invention, showing a partial enlarged view of the side of the mounting box.
[0031] Figure 5 yes Figure 4 A three-dimensional image viewed from the front;
[0032] Figure 6 yes Figure 5 A sectional view, the section is located on the solar panel and connectors, and the section is close to the back panel unit;
[0033] Figure 7 yes Figure 6 A sectional view from the same perspective, with the section located on the back plate unit;
[0034] Figure 8 yes Figure 5 Exploded view;
[0035] Figure 9 yes Figure 8 A magnified view of a portion of the connector. Detailed Implementation
[0036] To make the technical problems solved, technical solutions, and beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0037] When ordinal numbers such as "first" and "second" are mentioned in the embodiments of this utility model, unless they actually express the meaning of order according to the context, they should be understood as being used only for differentiation.
[0038] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; 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; and they can refer to the internal connection of 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.
[0039] First embodiment:
[0040] This embodiment provides a back panel unit for a solar venetian blind. The back panel unit has multiple compensating protrusions on its front side, which are used to support the venetian blind control device or power supply component of the solar venetian blind.
[0041] Specifically, the cross-sectional shape of the compensation protrusion in this embodiment includes circles, rings, ellipses, squares, rectangles, triangles, and combinations thereof. The position of the compensation protrusion can correspond to the position of the housing of the Venetian blind control device or power supply component to provide support for the Venetian blind control device or power supply component.
[0042] As a specific solution and not a limitation, the back panel unit of this embodiment is installed on one side of the Venetian blind control component box. The Venetian blind control component box is provided with a Venetian blind slat control device for controlling the Venetian blind slats to retract, unfold or change the light-blocking angle.
[0043] This embodiment of the invention provides a backplate unit with at least one compensating protrusion on its front side. This compensating protrusion supports the blind control device or power supply component of the solar-powered Venetian blind. This allows the backplate unit to replace part of the blind's shell, providing a fixed support for the blind control device or power supply component. Since the compensating protrusion is located on the backplate unit, it reduces the processing steps of the blind, saving manufacturing costs and improving production efficiency. Furthermore, because the backplate unit is relatively easy to process, by using backplate units of different sizes to adapt to blinds of different specifications, when applying the backplate unit of this embodiment to blinds of different sizes and specifications, there is no need to adjust the size of the solar panel. Only different sized backplate units need to be used to adapt to blind control component boxes of different specifications, allowing solar panels of the same size to be adapted to blinds of different sizes, improving the versatility of the solar panel and further reducing the manufacturer's production costs.
[0044] Second embodiment:
[0045] Please refer to Figure 1 As shown, this embodiment provides a back panel unit 3 for a solar venetian blind. The back panel unit 3 has at least one compensation protrusion 31 formed on the front side. The compensation protrusion is used to support the venetian blind control device or power supply component of the solar venetian blind.
[0046] As a specific solution rather than a limitation, the back panel unit 3 is applied to a solar blind mounting box. The blind mounting box is used to install a blind control device or power supply component. The blind mounting box includes a mounting box body and a solar panel. The mounting box body has at least one mounting opening on the back side. At least a portion of the mounting opening is used to lay the back panel unit. The compensation protrusion 31 is formed on the front side of the back panel unit.
[0047] As a preferred embodiment, and not a limitation, the compensation protrusion 31 is integrally formed with the back plate unit 3, and the compensation protrusion 31 extends laterally from the front side of the back plate unit 3. Specifically, the compensation protrusion 31 is a rib extending laterally from the front side of the back plate unit 3. There are two ribs, and the two ribs are arranged in parallel.
[0048] As a preferred embodiment, and not a limitation, the back panel unit 3 further includes a mounting portion for connection with the mounting box body. The mounting portion includes a snap-fit 32 formed on the lower part of the back panel unit and a flange 33 formed on the upper part of the back panel unit.
[0049] Since the outer shell of the Venetian blind control device or power supply component is usually a relatively regular rectangle, this embodiment uses two parallel ribs as compensating protrusions. On the one hand, it can provide support for the Venetian blind control device or power supply component over a large range, improving the structural stability of the Venetian blind. On the other hand, the one-piece molded ribs can be completed in one injection molding process, further simplifying the Venetian blind processing steps, saving manufacturing costs, and improving production efficiency.
[0050] Third embodiment:
[0051] Please refer to Figures 2 to 9 As shown, this embodiment provides a solar venetian blind mounting box, including a mounting box body 1 and a solar panel 2. The mounting box body 1 has at least one mounting opening 11 on its back side. At least a portion of the mounting opening 11 is used to lay the solar panel 2. The venetian blind mounting box has a back panel unit 3 on at least one side of the mounting opening 11. The back panel unit 3 is flush with the solar panel 2.
[0052] In this embodiment, the Venetian blind mounting box is used to house the Venetian blind control device and power supply components. The mounting box body 1 can be made of aluminum profile. Specifically, the Venetian blind mounting box in this embodiment is the Venetian blind control component box described in the first embodiment, located inside the sealing strip 7. The Venetian blind control device 5 inside the Venetian blind mounting box is used to control the Venetian blind slats 6 to retract, unfold, or change their light-blocking angle.
[0053] The mounting port 11 is divided into a first region 111 and a second region 112. The first region 111 is used to install the backsheet unit 3, and the solar panel 2 is located in the second region 112. Specifically, in this embodiment, the first region 111 and the second region 112 are divided from left to right.
[0054] The venetian blind mounting box also includes a connector 4 aligned with the back panel unit 3, the connector 4 being used to mount the solar panel 2. As a specific embodiment and not a limitation, the connector 4 is plate-shaped, with a concave surface 41 formed on its back side, on which the solar panel 2 is mounted. When the solar panel 2 is mounted on the concave surface 41 of the connector 4, please refer to... Figure 3 As shown, the solar panel 2 and the backsheet unit 3 are also aligned. This results in a relatively small gap between the backsheet unit 3, the solar panel 2, and the connector 4, creating a good integrated effect. It should be noted that in some other implementations of this utility model, the connector can be used as a component of the solar module. By disassembling the integrated solar module mounting box containing the connector and the solar panel, logistics costs can be saved and the convenience of subsequent assembly and disassembly can be improved. All equivalent substitutions and evolutions based on this utility model by those skilled in the art are within the protection scope of this utility model.
[0055] The plate-shaped connector 4 includes an upper connecting surface 42 and a lower connecting surface 43. The upper connecting surface 42 and the lower connecting surface 43 are connected to the mounting box body 1, and both the upper connecting surface 42 and the lower connecting surface 43 are flush with the solar panel 2, making the back of the Venetian blind mounting box flush and achieving a better integrated effect. As a preferred embodiment, and not a limitation, to further ensure the integrated effect of the back of the Venetian blind mounting box, in this embodiment, the highest point of the upper connecting surface 42 is flush with the highest point of the back panel unit 3, and the lowest point of the lower connecting surface 42 is flush with the lowest point of the back panel unit 3.
[0056] The plate-shaped connector 4 has a first tenon structure on the front of the upper connecting surface 42, and a second tenon structure on the front of the lower connecting surface 43. The plate-shaped connector 4 is connected to the mounting box body 1 through the first tenon structure and the second tenon structure.
[0057] Please refer to Figure 5 As shown, the first tenon structure includes an upper slot 44, and the second tenon structure includes a lower slot 45. The slots of the upper slot 44 and the lower slot 45 are opened facing the front. The mounting box body 1 includes an upper protruding edge 12 corresponding to the upper slot 44 and a lower protruding edge 13 corresponding to the lower slot 45. The upper protruding edge 12 and the lower protruding edge 13 extend toward the back of the mounting box body.
[0058] Please refer to Figure 4 As shown, the lower slot 45 extends upward from the bottom to form a lower hook body 451, and the lower protrusion 13 extends downward from the bottom to form an upper hook body 131 that cooperates with the lower hook body.
[0059] The mounting box body 1 has a closed rib 14 at the top. The upper convex edge 12 includes a root 121 and a protrusion 122 extending rearward from the root 121. The root 121 extends downward from the lower surface of the closed rib 14 near the back side. The lower convex edge 13 extends laterally from the front side of the mounting box body 1 to the back side to the mounting opening 11.
[0060] The upper protruding edge 12, the lower protruding edge 13, the upper slot 44, and the lower slot 45 are arranged longitudinally from left to right.
[0061] Please refer to Figure 4 or Figure 9 As shown, the upper connecting surface 42 forms an upper groove 421 at the bottom, and the lower connecting surface 43 forms a lower groove 431 at the top. The openings of the upper groove 421 and the lower groove 431 are arranged opposite to each other and communicate with the concave surface 41. In some embodiments, the above-described structure of the upper groove 421 and the lower groove 431 facilitates the fixing of the solar panel by corresponding insert structures. Specifically, in this embodiment, the solar panel can be fixed by arranging adhesive in the upper groove 421 and the lower groove 431.
[0062] As a specific solution rather than a limitation, the solar panel 2 includes a circuit assembly 21, and the connector 4 has an avoidance notch 46 at a corresponding position of the circuit assembly 21.
[0063] The back panel unit 3 also has a compensating protrusion 31 formed on its front side, which extends laterally from the front side of the back panel unit 3. In this embodiment, the stroke of the compensating protrusion 31 extends to the bottom surface of the concave surface 41. Specifically, the compensating protrusion 31 can be two parallel ribs extending laterally from left to right, with the ends of the compensating protrusion 31 flush with the bottom surface of the concave surface 41, so that a compensating support structure corresponding to the concave surface 41 can be formed on the back side of the back panel unit 3, which is beneficial for the eccentric arrangement of the Venetian blind control device 5 at the back panel unit 3.
[0064] As a preferred option rather than a limitation, the back plate unit 3 also has a buckle 32 formed on the front side corresponding to the lower hook 451 of the connector 4, and the back plate unit 3 also has a flange 33 formed on the front side corresponding to the upper slot 44 of the connector 4. The shape of the buckle 32 corresponds to the shape of the lower hook 451, and the shape of the flange 33 corresponds to the shape of the upper edge of the upper slot 44.
[0065] This embodiment uses the Venetian blind control component box as the blind mounting box, and places the solar panel on the back of the control component box. The remaining part of the mounting opening is enclosed by a back panel unit, which is flush with the solar panel. This minimizes the space occupied by the solar component and improves the integrated effect of the solar Venetian blind. Furthermore, when using the mounting box of this embodiment on Venetian blinds of different sizes and specifications, there is no need to adjust the size of the solar panel. Only different sized back panel units need to be used to adapt to different specifications of the Venetian blind control component box. This allows the same size solar panel to be adapted to different sizes of Venetian blinds, improving the versatility of the solar panel and reducing the manufacturer's production costs.
[0066] Fourth embodiment:
[0067] This embodiment provides a solar-powered venetian blind. Unlike the third embodiment described above, in this embodiment, the solar panel and connectors are assembled and disassembled together as a solar module. In addition, the connectors in this embodiment are one or more clips installed around the solar panel. The clips are used to connect and fix to the edge of the mounting opening of the mounting box body.
[0068] Meanwhile, in this embodiment, the solar blind mounting box is located above the lower window frame of the blind glass window. The circuit components of the solar panel can be housed in the mounting box and extend into the blind control component box through the pre-drilled holes in the side window frame of the blind glass window.
[0069] This embodiment uses the connector and solar panel as solar energy components, which simplifies the structure and space occupation of the connector and saves production costs. At the same time, by placing the solar venetian blind installation box above the lower window frame of the venetian blind glass window, the height of the solar panel can be reduced to meet the solar energy collection needs in different installation environments.
[0070] Fifth embodiment:
[0071] This embodiment provides a solar-powered Venetian blind, including a Venetian blind control device or power supply component, and Venetian blind slats driven by the Venetian blind control device. It also includes the Venetian blind mounting box described in any of the above embodiments, and the Venetian blind control device or power supply component is disposed inside the Venetian blind mounting box.
[0072] As a preferred and not limited option, the solar-powered Venetian blinds of this embodiment can be hung on the upper side of a traditional glass window and installed on a wall to replace traditional curtains for shading and light control.
[0073] This embodiment of the invention provides a backplate unit with at least one compensating protrusion on its front side. This compensating protrusion supports the blind control device or power supply component of the solar-powered Venetian blind. This allows the backplate unit to replace part of the blind's shell, providing a fixed support for the blind control device or power supply component. Since the compensating protrusion is located on the backplate unit, it reduces the processing steps of the blind, saving manufacturing costs and improving production efficiency. Furthermore, because the backplate unit is relatively easy to process, by using backplate units of different sizes to adapt to blinds of different specifications, when applying the backplate unit of this embodiment to blinds of different sizes and specifications, there is no need to adjust the size of the solar panel. Only different sized backplate units need to be used to adapt to blind control component boxes of different specifications, allowing solar panels of the same size to be adapted to blinds of different sizes, improving the versatility of the solar panel and further reducing the manufacturer's production costs.
[0074] Sixth embodiment:
[0075] This embodiment provides a solar-powered Venetian blind, including a Venetian blind control device or power supply component, and Venetian blind slats driven by the Venetian blind control device. It also includes the Venetian blind mounting box described in any of the above embodiments, and the Venetian blind control device or power supply component is disposed inside the Venetian blind mounting box.
[0076] Unlike the fifth embodiment described above, the solar-powered Venetian blind is further provided with a positioning mounting component on its vertical periphery. This positioning mounting component is used to connect to the window frame. As a specific solution and not a limitation, the positioning mounting component in this embodiment can be a connecting frame. Specifically, the connecting frame can adopt a surrounding frame structure, with the Venetian blind slats and mounting box located in the middle of the frame structure. The frame structure can be made of profiles and / or sealing strips. This allows the solar-powered Venetian blind of this embodiment to be directly embedded into the middle of a traditional glass window frame via the mounting positioning component when the frame structure dimensions correspond. This improves the versatility and ease of installation of the Venetian blind.
[0077] Seventh embodiment:
[0078] This embodiment provides a glass assembly, specifically an insulated glass unit, including a sealing edging, which is a sealing strip and / or a profile. The sealing edging is provided with a solar venetian blind as described in the fourth embodiment above in the middle. The glass assembly also includes glass sheets located on both sides of the sealing edging and in close contact with it.
[0079] This embodiment provides an insulated glass unit that includes solar-powered blinds, enabling it to replace traditional glass in a traditional window frame and provide shading and light control. It features a simple structure and easy installation.
[0080] Eighth embodiment:
[0081] This embodiment provides a glass assembly, specifically a single-glass solar venetian blind, including a sealing edge, which is a sealing strip and / or a profile. The center of the sealing edge is provided with a solar venetian blind as described in the fifth embodiment above. The glass assembly also includes a glass sheet, which is located on one side of the sealing edge and is in close contact with the sealing edge.
[0082] This embodiment provides a single-glass solar venetian blind, which can be installed in a traditional window frame. After installation, the blind slats and the blind mounting box are sandwiched between the original glass of the traditional window frame and one side of the blind, so as to achieve a sealing effect while providing the functions of shading and light control. It has the characteristics of simple structure and convenient installation.
[0083] Ninth embodiment:
[0084] This embodiment provides a window, specifically a glass window, including a window frame and the solar-powered Venetian blind described in the sixth embodiment above. The solar-powered Venetian blind is installed in the middle of the window frame via a positioning and mounting component.
[0085] Tenth embodiment:
[0086] This embodiment provides a window, specifically a glass window, including a window frame. The middle of the window frame is fitted with the glass component described in the seventh or eighth embodiment above. The sealing edge is in close contact with the window frame to provide waterproofing, dustproofing and / or sound insulation.
[0087] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A back panel unit for a solar-powered venetian blind, characterized in that, The back panel unit has at least one compensation protrusion on its front side. The compensation protrusion is used to support the venetian blind control device or power supply component of the solar venetian blind. The compensation protrusion is a rib that extends laterally on the front side of the back panel unit.
2. The back panel unit of the solar-powered venetian blind as described in claim 1, characterized in that, The back panel unit is applied to the solar blind mounting box, which is used to install the blind control device or power supply component. The blind mounting box includes a mounting box body and a solar panel. The mounting box body has at least one mounting opening on the back side, and at least a portion of the mounting opening is used to lay the back panel unit. The compensation protrusion is formed on the front side of the back panel unit.
3. The back panel unit of the solar venetian blind as described in claim 2, characterized in that, The compensation protrusion is integrally formed with the back plate unit, and the compensation protrusion extends laterally from the front of the back plate unit.
4. The back panel unit of the solar venetian blind as described in claim 3, characterized in that, The number of ribs is two, and the two ribs are arranged in parallel.
5. The back panel unit of the solar venetian blind as described in any one of claims 2 to 4, characterized in that, The backplate unit also includes a mounting section for connection with the mounting box body.
6. The back panel unit of the solar venetian blind as described in claim 5, characterized in that, The mounting portion includes a snap-fit formed on the lower part of the back panel unit and a flange formed on the upper part of the back panel unit.
7. A mounting box for a solar-powered venetian blind, characterized in that, The back panel unit of the solar venetian blind as described in any one of claims 2 to 6 is further provided for laying the solar panel in at least a portion of the mounting opening, and the back panel unit is formed on at least one side of the mounting opening in the venetian blind mounting box.
8. The mounting box for the solar-powered venetian blind as described in claim 7, characterized in that, The mounting port is divided into a first area and a second area. The first area is used to install the backsheet unit, and the solar panel is located in the second area.
9. The mounting box for the solar-powered venetian blind as described in claim 8, characterized in that, The first and second regions are divided from left to right.
10. The mounting box for the solar-powered Venetian blind as described in claim 9, characterized in that, The venetian blind mounting box also includes a connector aligned with the back panel unit, the connector being used to mount the solar panel.
11. The mounting box for the solar-powered Venetian blind as described in claim 10, characterized in that, The connector is plate-shaped, with a concave surface on its back, and the solar panel is mounted on the concave surface.
12. The mounting box for the solar-powered Venetian blind as described in claim 11, characterized in that, The plate-shaped connector includes an upper connecting surface and a lower connecting surface, which are connected to the mounting box body, and both the upper and lower connecting surfaces are flush with the solar panel.
13. The mounting box for the solar-powered Venetian blind as described in claim 12, characterized in that, The plate-shaped connector has a first tenon structure on the front of the upper connecting surface and a second tenon structure on the front of the lower connecting surface. The plate-shaped connector is connected to the mounting box body through the first tenon structure and the second tenon structure.
14. The mounting box for the solar-powered Venetian blind as described in any one of claims 11 to 13, characterized in that, The travel of the compensation protrusion extends to the bottom surface of the concave surface.
15. The mounting box for the solar-powered Venetian blinds as described in any one of claims 7 to 13, characterized in that, The back panel unit and the solar panel are flush with each other on the back of the mounting box.
16. A solar-powered Venetian blind, characterized in that, It includes a Venetian blind control device or power supply component, and Venetian blind slats driven by the Venetian blind control device, and also includes a Venetian blind mounting box as described in any one of claims 7 to 15, wherein the Venetian blind control device or power supply component is disposed inside the Venetian blind mounting box.
17. The solar-powered Venetian blind as described in claim 16, characterized in that, The solar-powered venetian blind is also provided with a positioning and mounting component on its outer periphery in the vertical direction, which is used to connect to the window frame.
18. A glass assembly comprising a sealing edge, said sealing edge being a sealing strip and / or a profile, characterized in that, The sealing edge is provided with a solar venetian blind as described in claim 16 in the middle, and the glass assembly further includes a glass sheet, which is located on one or both sides of the sealing edge and is in close contact with the sealing edge.
19. A window, comprising a window frame, characterized in that, It also includes the solar-powered Venetian blind as described in claim 17, wherein the solar-powered Venetian blind is installed in the middle of the window frame by a positioning mounting member.
20. A window, comprising a window frame, characterized in that, The middle of the window frame is fitted with the glass assembly as described in claim 18, and the sealing edge is in close contact with the window frame.