Display screen supporting and balancing structure of digital operating room

By designing a display screen support balance structure including a first frame, a first telescopic component, a lifting adjustment component and a first horizontal adjustment component, the installation uneven problem caused by mechanical mechanism error, installation error and gravity factors of the digital operating room display screen is solved, and the ideal installation effect of the display screen is achieved.

CN119983106APending Publication Date: 2025-05-13SHANGHAI INSTALLATION ENGINEERING GROUP CO LTD
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Patent Information

Application Number
CN202510446960.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

The display screen in the digital operating room is unevenly installed due to mechanical mechanism errors, installation errors and gravity factors, which affects the beauty and user operability.

Method used

A display screen support balance structure including a first frame, a first telescopic assembly, a lifting adjustment assembly and a first horizontal adjustment assembly are designed. By embedding the first frame into the wall, and adjusting the height and front and rear positions of the display screen respectively using the first telescopic component, the lifting adjustment component and the first horizontal adjustment component, the balanced installation of the display screen is achieved.

Benefits of technology

The display screen is adjusted at will and balanced at will, so that its installation achieves ideal results, and the adverse phenomena caused by mechanical mechanism errors, installation errors and gravity factors are solved.

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Abstract

The invention discloses a display screen supporting and balancing structure of a digital operating room. The display screen supporting and balancing structure comprises a first frame body, a first telescopic assembly, a lifting adjusting assembly and a first horizontal adjusting assembly. One side of the first frame body is provided with a first opening. The first telescopic assembly is arranged in the first frame body. The first telescopic assembly is used for being movably connected with the first display screen so as to drive the first display screen to stretch out and draw back in the first frame body through the first opening. The lifting adjusting assembly is arranged in the first frame body. The lifting adjusting assembly comprises a lifting part and a supporting part, the lifting part is connected with the supporting part, the supporting part is used for bearing the first display screen, and the lifting part drives the supporting part to ascend and descend so as to adjust the height of the first display screen. The first horizontal adjusting assembly is arranged in the first frame body, and the adjusting end of the first horizontal adjusting assembly abuts against the first display screen and is used for adjusting the front-back position of the first display screen. Therefore, the position and the balance of the first display screen can be adjusted at will, and the installation of the first display screen achieves an ideal effect.
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Description

Technical Field

[0001] The invention relates to medical equipment, in particular to a display screen supporting balance structure of a digital operating room. Background Art

[0002] Currently, the display screens in digital operating rooms are usually installed on TV stands commonly used in the market, so that the display screen can be extended and retracted forward and backward. After the equipment is embedded in the wall, the gap between the equipment and the wall is uneven and uneven, which affects the appearance and integrity of the wall and affects the operability of the user.

[0003] In the process of implementing the present invention, the inventors found that the reasons for the above phenomenon are mainly the following three points: 1. The gravity factor of the display screen itself; 2. The mechanical structure error of the telescopic bracket; 3. The error caused by manual installation. Summary of the invention

[0004] In order to solve the above problems, an embodiment of the present invention provides a display screen support balance structure for a digital operating room. The specific technical solution is as follows: In the first aspect, a display screen support balance structure for a digital operating room is provided, which includes a first frame, a first telescopic component, a lifting and adjusting component and a first horizontal adjusting component. One side of the first frame has a first opening. The first telescopic component is disposed in the first frame. The first telescopic component is used to be movably connected to the first display screen to drive the first display screen to be extended and retracted in the first frame through the first opening. The lifting and adjusting component is disposed in the first frame. The lifting and adjusting component includes a lifting member and a supporting member, the lifting member is connected to the supporting member, the supporting member is used to carry the first display screen, and the lifting member adjusts the height of the first display screen by driving the supporting member to rise and fall. The first horizontal adjusting component is disposed in the first frame, and the adjusting end of the first horizontal adjusting component abuts against the first display screen, and is used to adjust the front and rear position of the first display screen.

[0005] In the embodiment of the present invention, after the first frame is embedded in the wall, the first display screen is movably set in the first frame through the first telescopic component, and then the height and the front and rear position of the first display screen in the first frame are adjusted respectively by the lifting adjustment component and the first horizontal adjustment component. In this way, the position and balance of the first display screen can be adjusted at will, so that the installation of the first display screen can achieve an ideal effect, thereby solving the current undesirable phenomenon of the display screen caused by mechanical structure errors, installation errors and display screen gravity factors. BRIEF DESCRIPTION OF THE DRAWINGS

[0006] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of the present invention. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings: Figure 1It is a three-dimensional diagram of a display screen supporting balance structure of a digital operating room according to an embodiment of the present invention; Figure 2 It is a three-dimensional diagram of a display screen supporting balance structure of a digital operating room supporting a first display screen according to an embodiment of the present invention; Figure 3 is a three-dimensional diagram of a lifting and lowering adjustment assembly according to an embodiment of the present invention; Figure 4 is a perspective view of a first level adjustment assembly according to an embodiment of the present invention; Figure 5 It is a three-dimensional diagram of a second frame of a display screen supporting balance structure of a digital operating room according to an embodiment of the present invention; Figure 6 The present invention is a three-dimensional diagram of a second frame supporting a second display screen in a display screen support balance structure of a digital operating room according to an embodiment of the present invention.

[0007] The following is a description with reference to the accompanying drawings: 100: display screen support balance structure of digital operating room; 1: first frame; 11: first opening; 2: first telescopic assembly; 21: first rotating member; 22: second rotating member; 23: hanging member; 231: vertical rod; 232: horizontal rod; 3: lifting adjustment assembly; 31: lifting member; 32: supporting member; 4: first horizontal adjustment assembly; 41: connecting block; 42: supporting pad; 5: second frame; 51: second opening; 6: second telescopic assembly; 7: second horizontal adjustment assembly; S1: first display screen; S2: second display screen. DETAILED DESCRIPTION

[0008] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0009] In the description of the present invention, it is necessary to understand that the terms "upper", "lower", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship are based on the orientation or position relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0010] In addition, the terms “first”, “second”, etc. used in this document do not specifically refer to an order or sequence, nor are they used to limit the present invention. They are merely used to distinguish components or operations described with the same technical terms.

[0011] See also Figure 1 and Figure 2 , which are three-dimensional diagrams of a display screen supporting and balancing structure of a digital operating room according to an embodiment of the present invention and the first display screen supported by it; as shown in the figure, the display screen supporting and balancing structure 100 of a digital operating room includes a first frame 1, a first telescopic component 2, a lifting and lowering adjustment component 3 and a first horizontal adjustment component 4. One side of the first frame 1 has a first opening 11, such as Figure 1 As shown, the first frame 1 is a rectangular frame, and the first opening 11 is located at the front side of the rectangular frame. The first frame 1 can be embedded in a wall, or fixed to a wall or placed on a supporting platform.

[0012] The first telescopic component 2 is disposed in the first frame 1. The first telescopic component 2 is used to be movably connected with the first display screen S1, and the movably connected here means that the first display screen S1 can be lifted and moved in the vertical direction. The first telescopic component 2 is used to drive the first display screen S1 to be telescoped in the first frame 1 through the first opening 11. Specifically, after the first frame 1 is embedded in the wall, the first display screen S1 can be pushed into the first frame 1 to embed the first display screen S1 into the wall. In this embodiment, the first telescopic component 2 includes a first rotating member 21, a second rotating member 22 and a hanging member 23, one end of the first rotating member 21 is pivotally connected to one end of the second rotating member 22, the other end of the first rotating member 21 is pivotally connected to the side of the first frame 1 opposite to the first opening 11, and the other end of the second rotating member 22 is pivotally connected to the hanging member 23. The first display screen S1 is hung on the hanging member 23.

[0013] As described above, the first display screen S1 can be extended and retracted in the first frame 1 by pushing the second rotating member 22 and the first rotating member 21 to rotate relative to each other through the hanging member 23. In this embodiment, the hanging member 23 includes two vertical rods 231 and two horizontal rods 232. The two vertical rods 231 are respectively connected to the two horizontal rods 232, and the two vertical rods 231 and the two horizontal rods 232 form a tic-tac-toe shape. The two horizontal rods 232 are pivotally connected to the other end of the second rotating member 22. The first display screen S1 is hung on the two vertical rods 231, and the first display screen S1 moves up and down along the direction of the vertical rods 231.

[0014] See also Figure 3 Also see Figure 1 and Figure 2 , Figure 3: is a three-dimensional diagram of a lifting and adjusting component of an embodiment of the present invention; as shown in the figure, the lifting and adjusting component 3 is arranged in the first frame body 1. In this embodiment, the number of the lifting and adjusting components 3 is two, and the two lifting and adjusting components 3 are symmetrically arranged on both sides of the bottom wall of the first frame body 1. The lifting and adjusting component 3 includes a lifting member 31 and a supporting member 32, and the lifting member 31 is connected to the supporting member 32. The supporting member 32 is used to carry the first display screen S1, and the lifting member 31 adjusts the height of the first display screen S1 by driving the supporting member 32 to rise and fall. Before the first display screen S1 is pushed into the first frame body 1, the height of the supporting member 32 can be adjusted in advance by the lifting member 31, and after the first display screen S1 is pushed into the first frame body 1, the supporting member 32 carries the first display screen S1. At the same time, after the first display screen S1 is pushed into the first frame body 1 and the supporting member 32 carries the first display screen S1, the height of the supporting member 32 can also be adjusted by the lifting member 31 to continue to adjust the height of the first display screen S1. The lifting member 31 uses a screw rod, and the supporting member 32 uses a support block.

[0015] See also Figure 4 Also see Figure 1 and Figure 2 , Figure 4 : is a three-dimensional diagram of a lifting and lowering adjustment component of an embodiment of the present invention; as shown in the figure, the first horizontal adjustment component 4 is arranged in the first frame 1. The adjustment end of the first horizontal adjustment component 4 abuts against the first display screen S1, and is used to adjust the front and rear position of the first display screen S1. In this embodiment, the number of the first horizontal adjustment components 4 is four, and the four first horizontal adjustment components 4 are symmetrically arranged on the rear wall of the first frame 1. The first horizontal adjustment component 4 includes a connecting block 41 and a supporting pad 42, and one end of the connecting block 41 is arranged on the side (rear wall) of the first frame 1 opposite to the first opening 11. One end of the supporting pad 42 is threadedly connected to the other end of the connecting block 41, and the other end of the supporting pad 42 abuts against the first display screen S1. The supporting pad 42 adjusts the front and rear position of the first display screen S1 by adjusting the depth of the supporting pad 42 screwed into the connecting block 41. Before the first display screen S1 is pushed into the first frame 1, the depth of the supporting pad 42 screwed into the connecting block 41 can be pre-adjusted, and after the first display screen S1 is pushed into the first frame 1, the first display screen S1 abuts against the supporting pad 42. Meanwhile, after the first display screen S1 is pushed into the first frame 1 and abuts against the support pad 42 , the front and rear position of the first display screen S1 can be adjusted by further adjusting the depth of the support pad 42 screwed into the connecting block 41 .

[0016] See also Figure 1 and Figure 2As shown, when the display screen support and balance structure 100 of this embodiment is applied to a digital operating room, the first frame 1 can be pre-embedded in the wall of the digital operating room, and then the first display screen S1 can be hung on the first telescopic component 2, and then the height and front and rear position of the first display screen S1 in the first frame 1 can be adjusted respectively by the lifting and adjusting component 3 and the first horizontal adjusting component 4, and then the first display screen S1 can be pushed into the first frame 1 by the first telescopic component 2, so that the support member 32 of the lifting and adjusting component 3 carries the first display screen S1 and the adjustment end of the first horizontal adjusting component 4 abuts against the back of the first display screen S1. In this way, the position and balance of the first display screen S1 can be adjusted at will by the lifting and adjusting component 3 and the first horizontal adjusting component 4, so that the installation of the first display screen S1 can achieve an ideal effect, thereby solving the current undesirable phenomenon of the display screen caused by mechanical mechanism errors, installation errors and display screen gravity factors.

[0017] See also Figure 5 and Figure 6 , which are three-dimensional diagrams of the second frame of the display screen supporting balance structure of the digital operating room according to an embodiment of the present invention and the second display screen supported by it; as shown in the figure, the display screen supporting balance structure 100 of the digital operating room includes a second frame 5. The second frame 5 is arranged side by side with the first frame 1, and the second opening 51 of the second frame 5 is in the same direction as the first opening 11 of the first frame 1, as shown in FIG. Figure 5 As shown, the second frame 5 is located on the right side of the first frame 1. The second frame 5 is used to accommodate the second display screen S2, so that the first display screen S1 and the second display screen S2 can form a dual-screen structure. In this embodiment, a second telescopic component 6 is provided in the second frame 5, and the second telescopic component 6 is used to connect with the second display screen S2 to drive the second display screen S2 to telescope in the second frame 5 through the second opening 51. The structure of the second telescopic component 6 in this embodiment is the same as that of the first telescopic component 2 described above, and will not be repeated here.

[0018] The display screen support balance structure 100 of the digital operating room further includes a second horizontal adjustment component 7. The second horizontal adjustment component 7 is arranged in the second frame 5. The adjustment end of the second horizontal adjustment component 7 abuts against the second display screen S2, and the second horizontal adjustment component 7 is used to adjust the front and rear positions of the second display screen S2. In this embodiment, the number of the second horizontal adjustment components 7 is four, and the four second horizontal adjustment components 7 are symmetrically arranged on the upper wall and the lower wall of the first frame 1. The difference between the second horizontal adjustment component 7 of this embodiment and the above-mentioned first horizontal adjustment component 4 is that one end of the connecting blocks of the four second horizontal adjustment components 7 are respectively arranged on the bottom wall and the top wall of the second frame 5.

[0019] In summary, the present invention provides a display screen support balance structure for a digital operating room. The present invention embeds the first frame into the wall, and then movably sets the first display screen on the first frame through the first telescopic component, and then adjusts the height and front and rear position of the first display screen on the first frame through the lifting adjustment component and the first horizontal adjustment component respectively, so that the position and balance of the first display screen can be adjusted at will, so that the installation of the first display screen can achieve an ideal effect, thereby solving the current undesirable phenomenon of the display screen caused by mechanical mechanism error, installation error and display screen gravity factor.

[0020] It should be noted that, in this article, the terms "include", "comprises" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, an element defined by the sentence "comprises a ..." does not exclude the existence of other identical elements in the process, method, article or device including the element.

[0021] The embodiments of the present invention are described above in conjunction with the accompanying drawings, but the present invention is not limited to the above-mentioned specific implementation modes, which are merely illustrative rather than restrictive. Under the guidance of the present invention, ordinary technicians in this field can also make many forms without departing from the scope of protection of the present invention and the claims, all of which are within the protection of the present invention.

Claims

1. A display screen support balance structure for a digital operating room, characterized in that: include: A first frame having a first opening on one side thereof; A first telescopic component is disposed in the first frame, and the first telescopic component is used to be movably connected to the first display screen to drive the first display screen to be telescoped in the first frame through the first opening; A lifting and adjusting component is disposed in the first frame, the lifting and adjusting component comprises a lifting member and a supporting member, the lifting member is connected to the supporting member, the supporting member is used to carry the first display screen, and the lifting member adjusts the height of the first display screen by driving the supporting member to rise and fall; The first horizontal adjustment component is disposed in the first frame, and the adjustment end of the first horizontal adjustment component abuts against the first display screen, so as to adjust the front and rear position of the first display screen.

2. The display screen support balance structure of the digital operating room according to claim 1 is characterized in that: The first telescopic component includes a first rotating member, a second rotating member and a hanging member, one end of the first rotating member is pivotally connected to one end of the second rotating member, the other end of the first rotating member is pivotally connected to a side of the first frame opposite to the first opening, the other end of the second rotating member is pivotally connected to the hanging member, and the first display screen is hung on the hanging member.

3. The display screen support balance structure of the digital operating room according to claim 2 is characterized in that: The hanging member includes two vertical rods and two horizontal rods. The two vertical rods are respectively connected to the two horizontal rods. The two vertical rods and the two horizontal rods form a tic-tac-toe shape. The two horizontal rods are pivotally connected to the other end of the second rotating member. The first display screen is hung on the two vertical rods.

4. The display screen support balance structure of a digital operating room according to claim 1, characterized in that: The lifting and adjusting assembly comprises a lifting member and a supporting member, wherein the lifting member is arranged on the bottom wall of the frame body, the lifting member is connected to the supporting member, the supporting member is used to carry the display screen, and the lifting member adjusts the height of the first display screen by driving the supporting member to rise and fall.

5. The display screen support balance structure of the digital operating room according to claim 4, characterized in that: The lifting member uses a screw rod, and the supporting member uses a supporting block.

6. The display screen support balance structure of a digital operating room according to claim 1, characterized in that: The first horizontal adjustment component includes a connecting block and a support pad, one end of the connecting block is arranged on a side of the first frame opposite to the first opening, one end of the support pad is threadedly connected to the other end of the connecting block, and the other end of the support pad abuts against the first display screen. The support pad adjusts the front and rear position of the first display screen by adjusting the depth of the support pad screwed into the connecting block.

7. The display screen support balance structure of a digital operating room according to claim 1, characterized in that: Also includes: The second frame body is arranged side by side with the first frame body, and the second opening of the second frame body is in the same direction as the first opening of the first frame body. The second frame body is used to accommodate a second display screen.

8. The display screen support balance structure of a digital operating room according to claim 7, characterized in that: Also includes: The second telescopic component is disposed in the second frame, and is used to connect with the second display screen to drive the second display screen to be telescoped in the second frame through the second opening.

9. The display screen support balance structure of a digital operating room according to claim 8, characterized in that: The first telescopic assembly and the second telescopic assembly have the same structure.

10. The display screen supporting balance structure of a digital operating room according to claim 7, characterized in that: Also includes: The second horizontal adjustment component is disposed in the second frame, and the adjustment end of the second horizontal adjustment component abuts against the second display screen for adjusting the front and rear position of the second display screen.

Citation Information

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