Micro-module full-transparent closed turnover skylight

By combining a fully transparent frameless design with an electromagnetic locking mechanism, the problem of gaps not being tight during the flipping process of the micro-module sunroof system is solved, achieving seamless sealing and better transparency, thus improving the aesthetics and sealing effect of the sunroof system.

CN223482133UActive Publication Date: 2025-10-28SHENZHEN ITEAQ NETWORK POWER TECH CO LTD
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Patent Information

Application Number
CN202422955318.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2025-10-28
Estimated Expiration
2034-12-02

AI Technical Summary

Technical Problem

Existing micro-module sunroof systems suffer from gaps and poor permeability during the flipping process, affecting aesthetics and sealing performance.

Method used

Featuring a fully transparent frameless design, combined with a fully transparent sealing strip and an electromagnetic locking body, the sunroof glass achieves seamless flip-up and sealing. The sunroof is driven to flip using a push rod and push plate assembly and secured by an electromagnetic lock to ensure a tight seal.

Benefits of technology

It achieves a seamless seal for the sunroof system, improving transparency and lighting, eliminating jamming during rotation, and enhancing the customer experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

A micro-module full-transparent closed turnover skylight relates to the technical field of doors and windows and is mainly structurally characterized in that the upper ends of a front skylight supporting plate and a rear skylight supporting plate are fixedly connected with skylight fixing seats respectively, and the front end and the rear end of skylight glass are fixedly connected with horizontal parts at the bottoms of two L-shaped skylight connecting pieces respectively; the rotating shafts at the front end and the rear end horizontally penetrate through the through holes in the inner side wall of the skylight fixing base correspondingly to be fixedly connected with the vertical parts of the skylight connecting pieces. The rotating shafts are located on the right side of the longitudinal center line of the skylight glass. Full-transparent sealing strips are fixedly mounted at the left and right ends of the skylight glass respectively; a push rod is further slidably mounted on the skylight fixing seat at the front end, a push plate assembly is fixedly connected to the right end of the push rod, a reset rod extending outwards is fixedly connected to the top of the skylight connecting piece at the front end, the right end face of the push plate assembly makes movable contact with the reset rod, and the left end of the push rod is fixedly connected with the driving piece. According to the utility model, the problem that the skylight of a data center micromodule product is not tightly closed can be solved, and the whole skylight system is better in permeability.
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Description

Technical Field

[0001] This utility model relates to the field of door and window technology, and in particular to a micro-module fully transparent enclosed flip-up skylight. Background Technology

[0002] Sealed passageways in data centers typically require skylights. With technological advancements, micro-module skylight systems prioritize aesthetics while maintaining airtightness. Conventional skylight frames and electromagnetic locks occupy passageway space, resulting in poor overall transparency. Furthermore, during the closing process of flip-up skylights, gaps between adjacent skylights may not close tightly or may jam, significantly impacting the system's appearance and customer experience. For example, the micro-module flip-up skylight described in patent CN202121076917, "A Micro-module Flip-up Skylight for Data Centers with Aluminum Profile Structure," features skylight glass with profile frames on all four sides. Because these frames have a certain thickness, gaps inevitably exist between adjacent skylights to achieve proper flipping, hindering a good seal. Utility Model Content

[0003] Based on the above problems, the purpose of this utility model is to provide a fully transparent frameless flip-up skylight that is seamless after flipping and closing, solving the problem of incomplete sealing of skylights in data center micro-module products, and making the entire skylight system more transparent and realizing the integration of sealing channels.

[0004] The technical solution adopted in this utility model is a micro-module fully transparent enclosed tilting sunroof, including a sunroof support plate, a sunroof fixing base, a sunroof connector, a sunroof glass, a rotating shaft, a sealing strip, a push rod, a push plate assembly, and a reset rod, wherein:

[0005] Two vertically arranged sunroof support plates are fixedly connected to their upper ends with sunroof mounting bases, each with a groove with an upper opening. The sunroof connector is L-shaped, with the front and rear ends of the sunroof glass fixedly connected to the upper surface of the horizontal part at the bottom of the two sunroof connectors. The pivots at the front and rear ends pass horizontally through through holes on the inner sidewalls of the sunroof mounting bases and are fixedly connected to the vertical part of the sunroof connectors. The pivots are located to the right of the longitudinal centerline of the sunroof glass. Fully transparent sealing strips are fixedly installed at the left and right ends of the sunroof glass.

[0006] The vertical part of the sunroof connector is located on the right side of the pivot, which is higher than the part on the left side of the pivot, and a limiting inclined edge is formed between the right and left parts. A horizontal baffle is fixedly connected to the top of the inner wall of the sunroof fixing seat on the left side of the pivot, and the right end of the baffle is directly opposite the limiting inclined edge.

[0007] A push rod parallel to the sunroof mounting bracket is slidably installed on the front sunroof mounting bracket. A push plate assembly is fixedly connected to the right end of the push rod. A reset rod extending outward is fixedly connected to the top of the front sunroof connector through a fixedly connected vertical support. The reset rod is located to the right of the rotating shaft, parallel to the rotating shaft, and higher than the push rod. The right end face of the push plate assembly is in movable contact with the reset rod, and the left end of the push rod is fixedly connected to the drive component.

[0008] The skylight glass has no frame on either side and is only fitted with fully transparent sealing strips, which achieves a good sealing effect while making the skylight more transparent, better in terms of lighting, and more aesthetically pleasing.

[0009] When the sunroof needs to be closed, the drive unit drives the push rod to extend continuously to the right, the push plate assembly contacts the reset rod, and continues to push the reset rod to the right, causing the sunroof to flip and close.

[0010] As a preferred embodiment, the sealing strips at both ends of the sunroof glass are fully transparent U-shaped sealing strips, and the grooves of the U-shaped sealing strips are engaged with the sunroof glass.

[0011] As another preferred embodiment, the sealing strip at the left end of the sunroof glass is a fully transparent U-shaped sealing strip, with the groove of the U-shaped sealing strip engaging with the sunroof glass. The sealing strip at the right end is a fully transparent H-shaped sealing strip, with the U-shaped groove of the fully transparent H-shaped sealing strip engaging with the sunroof glass in a horizontal direction. The horizontal part at the top of the U-shaped groove is fixedly connected to a horizontal overlapping part in the opposite direction of the groove opening.

[0012] In this way, when the sunroof glass is rotated clockwise to the closed position, the horizontal overlap of the H-shaped sealing strip on the right end of the sunroof glass overlaps the upper surface of the U-shaped sealing strip on the left end of the adjacent sunroof glass on the right, further improving the sealing performance between adjacent sunroof glass panes. When the sunroof glass is rotated counterclockwise to open, because the horizontal overlap of the H-shaped sealing strip is located above the sunroof glass, it will not obstruct the opening of the sunroof glass.

[0013] Preferably, an electromagnetic locking body is fixedly installed in the groove of the sunroof fixing seat at the right position of the rotating shaft, and a locking plate is fixedly installed on the top of the vertical part of the sunroof connector extending outward, and the electromagnetic locking body and the locking plate are paired.

[0014] When the sunroof glass is flipped to the closed position, the electromagnetic locking body, which is powered on, engages the locking plate on the sunroof connector, thereby fixing the sunroof glass in place.

[0015] As a preferred embodiment, the driving component is a piston rod fixedly mounted on the left-side position of the electric cylinder, meaning the left end of the push rod is fixedly connected to the right end of the piston rod. In practice, besides using an electric cylinder, other existing products can also be used as the driving component, as long as they can drive the push rod to slide to the right.

[0016] As another preferred embodiment, the push plate assembly includes a first push plate, an upper horizontal fixing plate fixedly connected to the middle of its left side, and a lower horizontal fixing plate fixedly connected to the bottom of its left side. The upper and lower ends of the vertical fixing plate are respectively fixedly connected to the left ends of the upper and lower horizontal fixing plates. The right end of the push rod passes through the through hole on the vertical fixing plate and the through hole in the lower half of the first push plate in sequence. The push rod and the upper horizontal fixing plate are fixedly connected by screws. The driving component is the push rod of the left-side tilting sunroof. That is, when two or more tilting sunroofs provided by this utility model are used adjacent to each other, the left end of the push rod of the right-side tilting sunroof is fixedly connected to the right end of the push rod of the left-side tilting sunroof. In this way, except for the leftmost tilting sunroof which requires an electric cylinder or other active driving component, the other tilting sunroofs no longer require an electric cylinder or other active driving component, which greatly saves installation space and also greatly saves component costs.

[0017] In practice, the push rods for the right-side and left-side tilting sunroofs can be manufactured separately and then fixedly connected, or they can be manufactured as a single piece. In this method, the right end face of the first push plate serves as the right end face of the entire push plate assembly and makes movable contact with the reset rod.

[0018] As a further preferred embodiment, the push plate assembly also includes a second push plate, which is parallel to the right side of the first push plate. Two bolts located on both sides of the push rod pass through bolt through holes on the second and first push plates, respectively, and are secured with nuts on the left side of the first push plate. A spring is fitted onto the bolt on the smooth rod between the second and first push plates. The upper halves of the second and first push plates are fixedly connected by a connecting rod. The right end of the push rod also passes through a through hole in the lower half of the second push plate. In this configuration, the right end face of the second push plate serves as the right end face of the entire push plate assembly and is in movable contact with the reset rod.

[0019] In this way, because the lower halves of the second and first push plates are supported by bolts and springs, the second push plate has a certain degree of elasticity in its position. For example, if the first push plate is pushed too far to the right due to inaccurate control of the drive mechanism, the second push plate can be compressed to the left by the reset rod on the sunroof connector, preventing the reset rod from being forcibly pushed to the right and deformed after the sunroof glass has already flipped to the closed position. At the same time, due to the presence of the spring, when the second push plate moves to the right and contacts the reset rod, the spring acts as a buffer, reducing vibration and noise.

[0020] Preferably, the skylight support plate consists of a rectangular frame and supporting glass fixedly installed within the rectangular frame, which further enhances the lighting effect of the entire skylight sealing channel.

[0021] Preferably, a horizontal pressure plate is fixedly connected to the middle of the vertical part of the sunroof connector. The horizontal pressure plate presses against the upper surface of the sunroof glass, which can better protect the edge of the sunroof glass.

[0022] Preferably, a guide groove is also fixedly installed on the sunroof mounting base, and the push rod slides through the guide groove. This provides support and guidance for longer push rods.

[0023] This utility model is applicable to the enclosed skylight module of the data center. It can be combined arbitrarily in multiple scenarios according to different layouts. For example, multiple flip-up skylights can be combined adjacently, or multiple flip-up skylights and fixed skylights can be combined at intervals to form a whole row of panoramic skylights.

[0024] The beneficial effects of this utility model are as follows:

[0025] The frameless design between adjacent skylights, along with the use of sealing strips, ensures that the gaps between adjacent skylights are tightly closed, improves the overall transparency of the skylight system, enhances the lighting effect, and also ensures that there is no sticking or jamming when the skylights are rotated. Attached Figure Description

[0026] Figure 1 This is a three-dimensional structural diagram of the sunroof system according to an embodiment of the present utility model (open state);

[0027] Figure 2 This is a three-dimensional structural diagram of the sunroof system according to an embodiment of the present invention (closed state);

[0028] Figure 3 A three-dimensional structural diagram of a flip-up skylight according to an embodiment of this utility model (open state);

[0029] Figure 4 This is a three-dimensional structural diagram (closed state) of a flip-up skylight according to an embodiment of the present invention;

[0030] Figure 5 A three-dimensional assembly structure diagram of a flip-up skylight according to an embodiment of this utility model;

[0031] Figure 6 for Figure 5 Enlarged diagram of part A in the middle;

[0032] Figure 7 for Figure 5 Enlarged diagram of section B;

[0033] Figure 8 This is a schematic diagram (open state) of a flip-up sunroof with a drive mechanism in an embodiment of this utility model;

[0034] Figure 9This is a schematic diagram (closed state) of a flip-up sunroof with a drive mechanism in an embodiment of this utility model;

[0035] Figure 10 This is a three-dimensional structural diagram of the push rod and push plate assembly according to an embodiment of the present utility model;

[0036] Figure 11 This is a schematic diagram showing the arrangement of the sunroof glass and sealing strip before and after flipping in an embodiment of this utility model;

[0037] Figure 12 This is a schematic diagram of the overlap of the sealing strips of adjacent skylight glass in an embodiment of this utility model;

[0038] Figure 13 This is a partially enlarged schematic diagram (open state) showing the cooperation between the baffle and the limiting inclined side in an embodiment of this utility model.

[0039] Figure 14 This is a partially enlarged schematic diagram (closed state) showing the cooperation between the baffle and the limiting inclined side in an embodiment of this utility model.

[0040] in Figures 3-6 The drive mechanism, push rod, and push plate assembly have been omitted. Detailed Implementation

[0041] To better understand the above-mentioned objectives, features and advantages of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0042] Figures 1-14 This invention illustrates a specific embodiment of the micro-module fully transparent enclosed flip-up skylight, the specific structure of which is as follows:

[0043] The upper ends of the two vertically arranged skylight support plates 1 are respectively fixedly connected to skylight fixing seats 2. The skylight support plate 1 is composed of a rectangular frame 101 and a support glass 102 fixedly installed in the rectangular frame 101.

[0044] The sunroof mounting base 2 has a groove with an upper opening; the sunroof connector 3 is L-shaped, and the front and rear ends of the sunroof glass 4 are respectively fixedly connected to the upper surface of the horizontal part 301 at the bottom of the two sunroof connectors 3. The rotating shafts 5 at the front and rear ends pass horizontally through the through holes on the inner sidewall of the sunroof mounting base 2 and are fixedly connected to the vertical part 302 of the sunroof connector 3. The rotating shafts 5 are located to the right of the longitudinal center line of the sunroof glass 4. A horizontal pressure plate 15 is also fixedly connected to the middle of the vertical part 302 of the sunroof connector 3, and the horizontal pressure plate 15 presses against the upper surface of the sunroof glass 4.

[0045] The sunroof glass 4 is fitted with a fully transparent U-shaped sealing strip 8 on the left end and a fully transparent H-shaped sealing strip 9 on the right end. The U-shaped groove 901 of the fully transparent H-shaped sealing strip 9 is fitted horizontally onto the sunroof glass 4. The horizontal part of the upper part of the U-shaped groove 901 is fixedly connected to a horizontal overlapping part 902 in the opposite direction to the groove opening.

[0046] The vertical part 302 of the sunroof connector 3 is located on the right side of the pivot 5, which is higher than the part on the left side of the pivot 5. A limiting inclined edge 302a is formed between the right and left parts. A horizontal baffle 17 is fixedly connected to the top of the inner wall of the sunroof fixing seat 2 at the left side of the pivot 5. The right end of the baffle 17 is directly opposite the limiting inclined edge 302a. In this embodiment, the right end of the baffle 17 also has an inclined surface to more stably abut against the limiting inclined edge 302a.

[0047] An electromagnetic locking body 6 is fixedly installed in the groove of the sunroof fixing seat 2 at the right position of the rotating shaft 5. A locking plate 7 is fixedly installed on the top of the vertical part 302 of the sunroof connector 3 extending outward. The electromagnetic locking body 6 and the locking plate 7 are paired to form an electromagnetic lock.

[0048] A push rod 10 parallel to the sunroof mounting base 2 is slidably installed on the front sunroof mounting base 2. A push plate assembly 11 is fixedly connected to the right end of the push rod 10. A reset rod 13 extending outward is fixedly connected to the top of the front sunroof connector 3 through a fixedly connected vertical support member 12. The reset rod 13 is located on the right side of the rotating shaft 5, parallel to the rotating shaft 5, and higher than the push rod 10. The right end face of the push plate assembly 11 is in movable contact with the reset rod 13. The left end of the push rod 10 is fixedly connected to the drive member.

[0049] like Figure 1 and Figure 2 As shown, this embodiment uses a skylight system consisting of one fixed skylight, four tilting skylights, and two fixed skylights from left to right. The fixed skylight glass is the same as the tilting skylight, with a fully transparent U-shaped sealing strip installed on the left end and a fully transparent H-shaped sealing strip installed on the right end. Except for the pivot, the other structures of the fixed skylight are similar to the tilting skylight of this utility model, and will not be described in detail. The main difference is that the skylight glass is fixed and cannot be tilted.

[0050] like Figure 10As shown, the push plate assembly 11 includes a first push plate 1101, an upper horizontal fixing plate 1102 fixedly connected to the middle of its left side, and a lower horizontal fixing plate 1103 fixedly connected to the bottom of its left side. The upper and lower ends of the vertical fixing plate 1104 are respectively fixedly connected to the left ends of the upper horizontal fixing plate 1102 and the lower horizontal fixing plate 1103. The push rod 10 and the upper horizontal fixing plate 1102 are fixedly connected by screws 1105. The push plate assembly 11 also includes a second push plate 1106, which is arranged parallel to the right side of the first push plate 1101. Two bolts 1107, which are located on both sides of the push rod 10, pass through the bolt through holes on the second push plate 1106 and the first push plate 1101, respectively, and are fixed with nuts on the left side of the first push plate 1101. A spring 1108 is sleeved on the smooth rod between the second push plate 1106 and the first push plate 1101 on the bolts 1107. The upper half of the second push plate 1106 and the first push plate 1101 are fixedly connected by a connecting rod 1109. The right end of the push rod 10 passes through the through hole on the vertical fixing plate 1104, the through hole in the lower half of the first push plate 1101, and the through hole in the lower half of the second push plate 1106 in sequence.

[0051] In this embodiment, the electric cylinder 14 is fixedly installed on the outside of the sunroof mounting base at the front end of the first fixed sunroof on the left. The piston rod 1401 of the electric cylinder 14 extends to the right. The driving component used for the first tilting sunroof from the left is the piston rod 1401, that is, the left end of the push rod 10 of the first tilting sunroof from the left is fixedly connected to the right end of the piston rod 1401. The driving component used for the second tilting sunroof from the left is the push rod 10 of its left tilting sunroof, that is, the left end of the push rod 10 of the second tilting sunroof from the left is fixedly connected to the right end of the push rod 10 of the first tilting sunroof from the left, and so on, with the push rods 10 of the four tilting sunroofs fixedly connected end to end in sequence. In this embodiment, the push rod 10 of each tilting sunroof is also located outside the sunroof mounting base 2 and is coaxially arranged with the piston rod 1401. The reset rod 13 also extends to the outside of the sunroof mounting base 2.

[0052] In this embodiment, multiple square guide grooves 16 are fixedly installed on the outer side of each sunroof fixing seat 2 at the front end, and the push rod 10 connected as one piece slides through the multiple guide grooves 16.

[0053] When the sunroof glass 4 is in the open state, the limiting inclined edge 302a of the sunroof connector 3 is abutted by the right end of the baffle 17 at the top of the sunroof fixing seat 2.

[0054] The working process of this embodiment is as follows:

[0055] When the sunroof needs to be closed, the electric cylinder 14 is activated. The piston rod 1401 drives the four sets of push rods 10 and push plate assemblies 11, which are fixedly connected as one unit, to slide continuously to the right. The second push plate 1106 of each flip sunroof contacts the corresponding reset rod 13 and continues to push the reset rod 13 to the right, causing each sunroof glass 4 to flip clockwise. At the same time, the electromagnetic attraction lock body 6 is powered on. When the sunroof glass 4 flips to the horizontal closed position, the electromagnetic attraction lock body 6 attracts the attraction lock plate 7 on the sunroof connector 3, thereby fixing the sunroof glass 4. Then, the piston rod 1401 of the electric cylinder 14 is controlled to retract to the initial position, and the push plate assembly 11 also retracts to the initial position. Figure 11 This shows the closing and flipping process of two adjacent sunroof glass panes 4.

[0056] At this time, the horizontal overlap 902 of the right end of the H-shaped sealing strip 9 of the left sunroof glass overlaps with the upper surface of the left end of the U-shaped sealing strip 8 of the adjacent right sunroof glass, such as Figure 12 As shown, this allows for a complete seal between adjacent skylight panes.

[0057] When the sunroof needs to be opened, simply disconnect the power supply to each electromagnetic locking body 6. The electromagnetic locking body 6 loses its attraction force on the corresponding locking plate 7. Since the pivot 5 is located to the right of the longitudinal center line of the sunroof glass 4, each sunroof glass 4 and the sunroof connector 3 will rotate counterclockwise under the action of gravity until the limiting inclined edge 302a of the sunroof connector 3 is blocked by the right end of the baffle 17 at the top of the sunroof fixing seat 2, and the sunroof glass 4 will no longer rotate.

[0058] The electric cylinder 14 and the electromagnetic locking body 6 are controlled using existing electric cylinder controllers and electromagnetic lock controllers. Each electromagnetic locking body 6 can use a single electromagnetic lock controller to open all sunroof windows 4 simultaneously, or it can use its own electromagnetic lock controller to open each sunroof window independently. Because the four sets of push rods 10 and push plate assemblies 11 are fixedly connected as one unit in this embodiment, even when each sunroof window is opened independently, the opened sunroof windows will still close simultaneously.

Claims

1. A micro-module fully transparent enclosed flip-up skylight, characterized in that: The components include a sunroof support plate (1), a sunroof mounting base (2), a sunroof connector (3), a sunroof glass (4), a pivot (5), a sealing strip, a push rod (10), a push plate assembly (11), and a reset rod (13), wherein: The upper ends of the two vertically arranged sunroof support plates (1) are respectively fixedly connected to sunroof fixing seats (2), and the sunroof fixing seats (2) have grooves with upper openings; the sunroof connector (3) is L-shaped, and the front and rear ends of the sunroof glass (4) are respectively fixedly connected to the upper surface of the horizontal part (301) at the bottom of the two sunroof connectors (3), and the rotating shafts (5) at the front and rear ends respectively pass horizontally through the through holes on the inner side wall of the sunroof fixing seat (2) and are fixedly connected to the vertical part (302) of the sunroof connector (3), and the rotating shafts (5) are located to the right of the longitudinal center line of the sunroof glass (4); the left and right ends of the sunroof glass (4) are respectively fixedly installed with fully transparent sealing strips; The vertical part (302) of the sunroof connector (3) is located on the right side of the pivot (5) and is higher than the part on the left side of the pivot (5), and a limiting inclined edge (302a) is formed between the right side and the left side. A horizontal baffle (17) is fixedly connected to the top of the inner wall of the sunroof fixing seat (2) on the left side of the pivot (5), and the right end of the baffle (17) is directly opposite the limiting inclined edge (302a). A push rod (10) parallel to the sunroof mounting base (2) is slidably installed on the front sunroof mounting base (2). A push plate assembly (11) is fixedly connected to the right end of the push rod (10). A reset rod (13) extending outward is fixedly connected to the top of the front sunroof connector (3) through a support member (12). The reset rod (13) is located on the right side of the rotating shaft (5) and is parallel to the rotating shaft (5) and higher than the push rod (10). The right end face of the push plate assembly (11) is in contact with the reset rod (13). The left end of the push rod (10) is fixedly connected to the drive member.

2. The micro-module fully transparent enclosed flip-up skylight according to claim 1, characterized in that: The sealing strips at both ends of the sunroof glass (4) are all fully transparent U-shaped sealing strips (8).

3. The micro-module fully transparent enclosed flip-up skylight according to claim 1, characterized in that: The sealing strip at the left end of the sunroof glass (4) is a fully transparent U-shaped sealing strip (8), and the sealing strip at the right end is a fully transparent h-shaped sealing strip (9). The U-shaped groove (901) of the fully transparent h-shaped sealing strip (9) is horizontally engaged with the sunroof glass (4), and the horizontal part of the upper part of the U-shaped groove (901) is fixedly connected to a horizontal overlapping part (902) in the opposite direction to the groove.

4. The micro-module fully transparent enclosed flip-up skylight according to claim 1, characterized in that: An electromagnetic attraction lock body (6) is fixedly installed in the groove of the sunroof fixing seat (2) at the right position of the rotating shaft (5). A attraction lock plate (7) is fixedly installed on the top of the vertical part (302) of the sunroof connector (3) extending outward. The electromagnetic attraction lock body (6) and the attraction lock plate (7) are paired.

5. A micro-module fully transparent enclosed flip-up skylight according to claim 1, characterized in that: The driving component is a piston rod (1401) fixedly installed on the electric cylinder (14) on the left side.

6. A micro-module fully transparent enclosed flip-up skylight according to claim 1, characterized in that: The push plate assembly (11) includes a first push plate (1101), an upper horizontal fixing plate (1102) fixedly connected to the middle of its left side, and a lower horizontal fixing plate (1103) fixedly connected to the bottom of its left side. The upper and lower ends of the vertical fixing plate (1104) are fixedly connected to the left ends of the upper horizontal fixing plate (1102) and the lower horizontal fixing plate (1103), respectively. The right end of the push rod (10) passes through the through hole on the vertical fixing plate (1104) and the through hole in the lower half of the first push plate (1101) in sequence. The push rod (10) and the upper horizontal fixing plate (1102) are fixedly connected by screws (1105). The driving component is the push rod (10) of the left-side flip sunroof.

7. A micro-module fully transparent enclosed flip-up skylight according to claim 6, characterized in that: The push plate assembly (11) further includes a second push plate (1106), which is arranged parallel to the right side of the first push plate (1101). Two bolts (1107) on both sides of the push rod (10) pass through the bolt through holes on the second push plate (1106) and the first push plate (1101) respectively and are fixed with nuts on the left side of the first push plate (1101). A spring (1108) is sleeved on the smooth rod between the second push plate (1106) and the first push plate (1101) of the bolts (1107). The upper half of the second push plate (1106) and the first push plate (1101) are fixedly connected by a connecting rod (1109). The right end of the push rod (10) also passes through the through hole in the lower half of the second push plate (1106).

8. A micro-module fully transparent enclosed flip-up skylight according to claim 1, characterized in that: The skylight support plate (1) consists of a rectangular frame (101) and a support glass (102) fixedly installed inside the rectangular frame (101).

9. A micro-module fully transparent enclosed flip-up skylight according to claim 1, characterized in that: A horizontal pressure plate (15) is fixedly connected to the middle of the vertical part (302) of the sunroof connector (3), and the horizontal pressure plate (15) presses against the upper surface of the sunroof glass (4).

10. A micro-module fully transparent enclosed flip-up skylight according to claim 1, characterized in that: The sunroof mounting base (2) is also fixedly installed with a guide groove (16), and the push rod (10) slides through the guide groove (16).

Citation Information

Patent Citations

  • Skylight with data center micro-module capable of being turned over and of aluminum profile structure

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