Panoramic sunroof with lamp strip structure
By introducing light strip components and electromagnetic lock control components into the skylight structure, the problems of easy misalignment of lighting lamps and low light transmittance are solved, achieving straight-line light illumination and improved light transmittance, while also having convenient disassembly and assembly and low-energy-consumption opening and closing functions.
Patent Information
- Application Number
- CN202511309271.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-12
- Publication Date
- 2025-11-04
AI Technical Summary
In existing skylight structures, lighting fixtures are easily misaligned, affecting the lighting effect, and the sheet metal parts that fix the glass occupy an area that affects the light transmittance.
The system employs a light strip structure, where elongated holes are machined into the left and right support members to install the light strip assembly. The light strip assembly includes a cover, a light-emitting element, and a light-transmitting sheet. The light-emitting element is installed inside the cover, and the light-transmitting sheet is connected to the cover. The light strip assembly is installed above the elongated holes to ensure straight-line illumination. Electromagnetic locks and skylight swing control components are installed on the support members to control the opening and closing of the skylight.
It achieves straight-line light illumination, improves light transmittance, and the light strip assembly is easy to install and remove. The electromagnetic lock and sunroof control components ensure safe and low-energy-consumption opening and closing functions.
Smart Images

Figure CN120889374A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of skylight technology for data center cabinet tops, and more particularly to a panoramic skylight containing a light strip structure. Background Technology
[0002] like Figure 10 Data center server rooms house numerous server racks, which generate significant heat during operation. To ensure smooth operation, cold aisles are typically installed in data center server rooms. Skylights are installed above the cold aisles; when closed, they prevent cold air from escaping, maintaining effective cooling. Additionally, skylights function as fire escape routes. In the event of a server rack fire, opening the skylight allows inert gas or other fire extinguishing materials to be released into the cold aisle for rapid fire suppression. However, existing skylight structures have the following problems: 1. To meet the lighting requirements within the server racks, several sets of lights are installed in the skylight. However, traditional lighting uses right-angle lights installed at corners inside the aisle, which can easily lead to misalignment between adjacent lights, affecting lighting performance; or, if unstable, they may fall into the aisle and injure equipment or personnel. 2. The sheet metal parts used to fix the glass occupy glass area, affecting the light transmittance of the skylight glass. To address these issues, the skylight structure needs to be improved to meet usage requirements. Summary of the Invention
[0003] In order to overcome the problems in the existing technology where the installation of the interior lighting of the sunroof is prone to misalignment, resulting in a difference in the light from two adjacent groups of lighting, and the sheet metal of the fixed glass occupies the glass area and affects the light transmittance, the purpose of this invention is to provide a panoramic sunroof with a light strip structure, so as to achieve the purpose of the light from several groups of lighting in a straight line, while improving the light transmittance of the sunroof glass.
[0004] To achieve the above objectives, the technical solution of the present invention is as follows: A panoramic sunroof with a light strip structure includes a light strip sunroof assembly, wherein the light strip sunroof assembly includes a left support member, a right support member, a sunroof component, and a light strip component; The sunroof assembly is located between the left support member and the right support member, and the sunroof assembly is rotatably connected to the left support member and the right support member; Both the left support member and the right support member include a first mounting plate and an elongated hole provided on the first mounting plate. The length direction of the elongated hole is perpendicular to the rotation axis of the sunroof assembly. The light strip assembly includes a cover, a light-emitting element, and a light-transmitting sheet. The light-emitting element is disposed inside the cover, the light-transmitting sheet is connected to the cover, the cover is connected to the first mounting plate, and the cover is used to cover the elongated hole.
[0005] Furthermore, the cover includes a positioning hole, and the light-transmitting sheet is provided with a protrusion, which is engaged with the positioning hole.
[0006] Furthermore, the sunroof assembly includes a transparent panel, a soft edging strip, and a hard edging strip. The soft edging strip wraps around the edge of the transparent panel, and the hard edging strip is located on opposite sides of the transparent panel and wraps around the edge of the transparent panel. The hard edging strip is connected to the soft edging strip, and the hard edging strip is rotatably connected to the first mounting plate.
[0007] Furthermore, the panoramic sunroof with the light strip structure also includes an electromagnetic lock and a sunroof swing control component. The electromagnetic lock is used to control the closing of the sunroof assembly with the left and right support members, and the sunroof swing control component is used to control the swing of the sunroof assembly with the left and right support members.
[0008] Furthermore, the sunroof swing control component includes a drive source, a pressure member, and a connector. The connector is located on the sunroof assembly and has an inclined surface. The drive source drives the pressure member to contact or move away from the inclined surface.
[0009] Furthermore, the sunroof swing control also includes a movable rod, the drive source drives the movable rod to move back and forth, and the pressure member is disposed on the movable rod.
[0010] Furthermore, the movable rod is provided with a plurality of mounting holes, and the pressure member is rotatably connected to the mounting holes.
[0011] Furthermore, the sunroof swing control component also includes a swing limiter, which is located on the right support component and positioned above the sunroof assembly with spacing.
[0012] Furthermore, the swing limiting component includes a connecting plate and a stopper. The connecting plate is disposed on the right support member and has a plurality of adjustment holes. The stopper is installed in the adjustment holes and is used to stop the sunroof assembly.
[0013] Furthermore, the sunroof swing control includes a closing control, which includes a connecting part and a pressure plate connected to the connecting part. The connecting part is located on the left support and the right support, and the pressure plate is located directly above the sunroof assembly.
[0014] The beneficial effects of this invention are as follows: By machining elongated holes in the left and right support members respectively, the light-emitting body is installed inside the cover, and the light-transmitting sheet is connected to the cover to form a light strip assembly. The light strip assembly is installed above the elongated holes, and the light emitted by the light-emitting body shines into the machine room through the elongated holes via the light-transmitting sheet, thereby improving the linear effect of the illumination. The structure of installing the light strip assembly on the outer side of the top of the machine room facilitates the assembly and disassembly of the light strip assembly. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a schematic diagram of the partially disassembled three-dimensional structure of the present invention; Figure 3 This is a three-dimensional sectional view of the light strip sunroof assembly of the present invention; Figure 4 for Figure 3 A magnified view of part A in the middle; Figure 5 This is a schematic diagram of the disassembled structure of the LED strip assembly of the present invention; Figure 6 This is a schematic diagram of the light strip and sunroof assembly structure of the present invention; Figure 7 This is a schematic diagram of the disassembled structure of the sunroof swing control component of the present invention; Figure 8 This is a schematic diagram illustrating the working principle of the swing limiting component and the closing control component of the present invention. Figure 9 This is a three-dimensional structural diagram of the two sets of light strip sunroof assemblies and the sunroof swing control component of the present invention; Figure 10 for Figure 8 Enlarged view of part B in the diagram Figure 11 This is the state after the invention is assembled with the external cabinet.
[0016] The reference numerals in the figures include: 100—Light strip sunroof assembly; 11—Left support component; 12—Right support component 1101—First mounting plate; 1102—Elongated hole; 13—Sunroof assembly 131—Transparent panel; 132—Soft edging strip; 133—Hard edging strip 14—Light strip assembly; 141—Cover; 1411—Positioning hole 142—Light-emitting element; 143—Light-transmitting sheet; 1431—Protrusion 200—Electromagnetic lock 300—Sunroof swing control component; 31—Drive source; 32—Pressure component 33—Connector; 331—Sloping surface; 34—Modular rod 341—Mounting hole; 35—Swing limiter; 351—Connecting plate 3511—Adjusting hole; 352—Elastic element; 36—Closing control element 361—Connecting part; 362—Pressure plate 400—Rack. Detailed Implementation
[0017] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to embodiments and accompanying drawings. The content mentioned in the embodiments is not intended to limit the present invention.
[0018] Please see Figures 1 to 11 The present invention provides a panoramic sunroof with a light strip structure, comprising a light strip sunroof assembly 100, wherein the light strip sunroof assembly 100 includes a left support member 11, a right support member 12, a sunroof component 13, and a light strip component 14. The sunroof assembly 13 is disposed between the left support member 11 and the right support member 12, and the sunroof assembly 13 is rotatably connected to the left support member 11 and the right support member 12; The left support member 11 and the right support member 12 both include a first mounting plate 1101 and an elongated hole 1102 provided on the first mounting plate 1101. The length direction of the elongated hole 1102 is perpendicular to the rotation axis of the sunroof assembly 13. The light strip assembly 14 includes a cover 141, a light-emitting element 142, and a light-transmitting sheet 143. The light-emitting element 142 is disposed inside the cover 141, the light-transmitting sheet 143 is connected to the cover 141, the cover 141 is connected to the first mounting plate 1101, and the cover 141 is used to cover the elongated hole 1102.
[0019] Specifically, in this embodiment, a sealed server room is formed by installing a panoramic skylight with a light strip structure between two sets of server racks 400. The panoramic skylight with the light strip structure includes two sets of light strip skylight assemblies 100. Each set of light strip skylight assemblies 100 includes a left support member 11 and a right support member 12 with a symmetrical structure. Both the left support member 11 and the right support member 12 include a first mounting plate 1101. The first mounting plate 1101 includes a horizontal plate and a vertical plate. The horizontal plate and the vertical plate are sheet metal bent into an L-shaped structure. The horizontal plate is located above the vertical plate. The vertical plate is fixed to the server rack 400 by screw connectors. The horizontal plate is machined with elongated holes 1102. Light strip assemblies 14 are installed above the elongated holes 1102. The light strip assembly 14 includes a cover 141 formed by bending metal sheets, a light-transmitting sheet 143 formed by processing acrylic sheets, and a purchased light-emitting element 142. First, the light-emitting element 142 is fixedly installed inside the cover 141. Then, the light-transmitting sheet 143 is connected to the cover 141 to form the light strip assembly 14. Finally, the light strip assembly 14 is placed directly above the elongated hole 1102. External screws are used to fix the cover 141 to the first mounting plate 1101. The light emitted by the light strip assembly 14 passes through the light-transmitting sheet 143 and finally illuminates the passage between the two sets of server racks 400 through the elongated hole 1102, providing illumination to the passage between the two sets of server racks 400. The length direction of the elongated hole 1102 is perpendicular to the rotation axis of the skylight assembly 3. That is, when several sets of light strip skylight assemblies 100 are installed on the top of the computer room, the light emitted by several light strip assemblies 14 passes through the elongated hole 1102, ensuring that if... The light emitted by each light strip assembly 14 illuminates the computer room in a straight line. Light strip assemblies 14 are installed on the left support 11 and the right support 12 respectively, so that the light strip skylight assembly 100 has two sets of parallel light strip assemblies 14. Each light strip assembly 15 can be controlled to emit different colors of light as needed to meet usage requirements. The two sets of skylight assemblies 13 are arranged side by side, that is, the edges of the two adjacent sets of skylight assemblies 13 are close to each other. When the skylight assembly 13 needs to be opened, the two adjacent sets of skylight assemblies 13 rotate independently, forming an access passage between the two adjacent sets of skylight assemblies 13, which facilitates access to the computer room from the top of the computer room for fire protection of the equipment inside. When working normally, the skylight assembly 13 is in a horizontal state, and the edges of the two adjacent skylight assemblies 13 are close to each other, which serves to seal the top of the computer room. The structure of the two adjacent skylight assemblies 13 arranged side by side improves the light transmittance in the computer room.
[0020] By machining elongated holes 1102 on the left support member 11 and the right support member 12 respectively, the light emitter 142 is installed inside the cover 141. The light-transmitting sheet 143 is connected to the cover 141 to form a light strip assembly 14. The light strip assembly 14 is installed above the elongated holes 1102. The light emitted by the light emitter 142 is irradiated into the machine room through the elongated holes 1102 via the light-transmitting sheet 143, improving the linear effect of the lighting. The structure of the light strip assembly 14 installed on the outer side of the top of the machine room facilitates the assembly and disassembly of the light strip assembly 14.
[0021] The cover 141 includes a positioning hole 1411, and the light-transmitting sheet 143 is provided with a protrusion 1431. The protrusion 1431 is engaged with the positioning hole 1411. Multiple positioning holes 1411 are processed on both sides along the length direction of the cover 141, and multiple protrusions 1431 are processed on both sides along the length direction of the light-transmitting sheet 143. One protrusion 1431 is engaged in one positioning hole 1411, thus completing the assembly of the light-transmitting sheet 143 and the cover 141, achieving the purpose of quick assembly and disassembly, and facilitating on-site assembly and disassembly.
[0022] The skylight assembly 13 includes a transparent panel 131, a flexible edging strip 132, and a rigid edging strip 133. The flexible edging strip 132 includes the edge of the transparent panel 131. The rigid edging strip 133 is located on opposite sides of the transparent panel 131 and connected to the flexible edging strip 132. The rigid edging strip 133 is rotatably connected to the first mounting plate 1101. The transparent panel 131 is a glass plate, and the flexible edging strip 132 is a transparent magnetic strip. The flexible edging strip 132 is wrapped around the edge of the transparent panel 131. The transparent panel 131 is surrounded by a rigid edge band 133, which is a sheet metal structure. There are two rigid edge bands 133, which are located on the two sides of the transparent panel 31 in the width direction. The rigid edge bands 133 are connected to the flexible edge bands 132. The rigid edge bands 133 are rotatably connected to the first mounting plate 1101. When the sunroof assembly 13 is closed, the transparent panels 131 are held together by the flexible edge bands 132 to achieve a seal, increase the light transmission area, and meet the lighting requirements.
[0023] The panoramic skylight with light strip structure also includes an electromagnetic lock 200 and a skylight swing control component 300. The electromagnetic lock 200 is used to control the closing of the skylight assembly 13 with the left support 11 and the right support 12. The skylight swing control component 300 is used to control the swing of the skylight assembly 13 with the left support 11 and the right support 12. The working principle is as follows: When the electromagnetic lock 200 is energized, the skylight assembly 13 is in a horizontal state, making the computer room in a sealed state. When the computer room control system generates a fire alarm signal, the electromagnetic lock 200 is de-energized. Under the action of gravity, the skylight assembly 13 automatically rotates and opens around the eccentrically set rotation axis to form the entrance and exit of the top of the computer room, which facilitates the delivery of inert gas or other fire extinguishing materials from the skylight into the cold aisle, and timely handling of fire problems.
[0024] The skylight swing control component 300 includes a drive source 31, a pressing component 32, and a connecting component 33. The connecting component 33 is located on the skylight assembly 13 and has an inclined surface 331. The drive source 31 drives the pressing component 32 to contact or move away from the inclined surface 331. The drive source 31 drives the pressing component 32 to move in the horizontal direction. During the movement, the pressing component 32 contacts the inclined surface 331 and moves from the bottom end of the inclined surface 331 to the top end, pressing the connecting component 33 to tilt, and synchronously driving the skylight assembly 13 to swing. When the skylight assembly 13 reaches the horizontal position, the electromagnetic lock 200 re-engages, thereby closing the entrance and exit of the top of the machine room. It has the advantages of simple structure, low energy consumption, and low cost.
[0025] The sunroof swing control component 300 also includes a movable rod 34. The drive source 31 drives the movable rod 34 to reciprocate. The pressure member 32 is disposed on the movable rod 34. The output shaft of the drive source 31 is connected to the movable rod 34, so that the movable rod 34 and the pressure member 32 move horizontally synchronously. The movable rod 34 is provided with a number of mounting holes 341. The pressure member 32 is rotatably connected to the mounting holes 341. A number of mounting holes 341 are machined in the length direction of the movable rod 34. The pressure member 32 is installed in the appropriate mounting holes 341 as needed to press the connecting parts 33 of different specifications to achieve the swing purpose of the sunroof component 13.
[0026] The sunroof swing control component 300 also includes a swing limit component 35, which is disposed on the right support component 12. The swing limit component 35 is located above the sunroof assembly 13 and is spaced apart. The swing limit component 35 is used to stop the swing angle of the sunroof assembly 13 and effectively control the safe swing angle of the sunroof assembly 13.
[0027] like Figure 8 The swing limiting member 35 includes a connecting plate 351 and a stop member 352. The connecting plate 351 is disposed on the right support member 12 and has a plurality of adjustment holes 3511. The stop member 352 is installed in the adjustment holes 3511 and is used to stop the sunroof assembly 13. The stop member 352 is made of rubber. When the sunroof assembly 13 swings and comes into contact with the stop member 352, the sunroof assembly 13 stops swinging, effectively controlling the swing angle of the sunroof assembly 13 within a preset range and improving safety.
[0028] The sunroof swing control component 300 includes a closing control component 36, which includes a connecting part 361 and a pressure plate 362 connected to the connecting part 361. The connecting part 361 is located on the left support 11 and the right support 12, and the pressure plate 362 is located directly above the sunroof assembly 13. The closing control component 36 effectively controls the sealing effect of the sunroof assembly 13 relative to the cabinet, ensuring the accuracy of the sunroof assembly 13's reset.
[0029] The above description is only a preferred embodiment of the present invention. For those skilled in the art, there will be changes in the specific implementation and application scope based on the ideas of the present invention. The content of this specification should not be construed as a limitation of the present invention.
Claims
1. A panoramic sunroof with a light strip structure, comprising a light strip sunroof assembly (100), characterized in that: The light strip sunroof assembly (100) includes a left support member (11), a right support member (12), a sunroof assembly (13), and a light strip assembly (14). The sunroof assembly (13) is located between the left support member (11) and the right support member (12), and the sunroof assembly (13) is rotatably connected to the left support member (11) and the right support member (12). The left support member (11) and the right support member (12) both include a first mounting plate (1101) and an elongated hole (1102) provided on the first mounting plate (1101). The length direction of the elongated hole (1102) is perpendicular to the rotation axis of the sunroof assembly (13). The light strip assembly (14) includes a cover (141), a light-emitting element (142), and a light-transmitting sheet (143). The light-emitting element (142) is disposed inside the cover (141), and the light-transmitting sheet (143) is connected to the cover (141). The cover (141) is connected to the first mounting plate (1101), and the cover (141) is used to cover the elongated hole (1102).
2. The panoramic sunroof with a light strip structure according to claim 1, characterized in that: The cover (141) includes a positioning hole (1411), and the light-transmitting sheet (143) is provided with a protrusion (1431), which is engaged with the positioning hole (1411).
3. The panoramic sunroof with a light strip structure according to claim 1, characterized in that: The sunroof assembly (13) includes a transparent panel (131), a soft edging strip (132), and a hard edging strip (133). The soft edging strip (132) wraps around the edge of the transparent panel (131), and the hard edging strip (133) is located on opposite sides of the transparent panel (131) and wraps around the edge of the transparent panel (131). The hard edging strip (133) is connected to the soft edging strip (132), and the hard edging strip (133) is rotatably connected to the first mounting plate (1101).
4. The panoramic sunroof with a light strip structure according to claim 1, characterized in that: The panoramic sunroof with light strip structure also includes an electromagnetic lock (200) and a sunroof swing control component (300). The electromagnetic lock (200) is used to control the closing of the sunroof assembly (13) with the left support (11) and the right support (12). The sunroof swing control component (300) is used to control the swing of the sunroof assembly (13) with the left support (11) and the right support (12).
5. The panoramic sunroof with a light strip structure according to claim 4, characterized in that: The sunroof swing control component (300) includes a drive source (31), a pressure member (32) and a connector (33). The connector (33) is located on the sunroof assembly (13). The connector (33) has an inclined surface (331). The drive source (31) drives the pressure member (32) to contact the inclined surface (331) or move away from the inclined surface (331).
6. The panoramic sunroof with a light strip structure according to claim 5, characterized in that: The sunroof swing control component (300) also includes a movable rod (34), the drive source (31) drives the movable rod (34) to move back and forth, and the pressure member (32) is provided on the movable rod (34).
7. The panoramic sunroof with a light strip structure according to claim 6, characterized in that: The movable rod (34) is provided with a plurality of mounting holes (341), and the pressure member (32) is rotatably connected to the mounting holes (341).
8. The panoramic sunroof with a light strip structure according to claim 4, characterized in that: The sunroof swing control component (300) also includes a swing limit component (35), which is located on the right support component (12) and is positioned above the sunroof assembly (13) with spacing.
9. The panoramic sunroof with a light strip structure according to claim 8, characterized in that: The swing limiting member (35) includes a connecting plate (351) and a stop member (352). The connecting plate (351) is located on the right support member (12). The connecting plate (351) has a plurality of adjustment holes (3511). The stop member (352) is installed in the adjustment holes (3511) and is used to stop the sunroof assembly (13).
10. The panoramic sunroof with a light strip structure according to claim 4, characterized in that: The sunroof swing control (300) includes a closing control (36), which includes a connecting part (361) and a pressure plate (362) connected to the connecting part (361). The connecting part (361) is located on the left support (11) and the right support (12), and the pressure plate (362) is located directly above the sunroof assembly (13).