CN220543538U - Embedded digital integrated display screen - Google Patents

Embedded digital integrated display screen Download PDF

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Publication number
CN220543538U
CN220543538U CN202322215933.XU CN202322215933U CN220543538U CN 220543538 U CN220543538 U CN 220543538U CN 202322215933 U CN202322215933 U CN 202322215933U CN 220543538 U CN220543538 U CN 220543538U
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China
Prior art keywords
display screen
shell
wall
screen body
pin end
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CN202322215933.XU
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Chinese (zh)
Inventor
赵能全
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Shanghai Jimai Medical Technology Co ltd
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Shanghai Jimai Medical Technology Co ltd
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Priority to CN202322215933.XU priority Critical patent/CN220543538U/en
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Abstract

The utility model discloses an embedded digital integrated display screen, which comprises a display screen body, a shell, a clamping block and a limiting groove, wherein the clamping block is arranged on the shell; the display screen body is inserted into the shell and can be kept relatively fixed; the shell is embedded in the wall body; the clamping block is fixedly arranged at the back of the display screen body, and a pin end is rotatably arranged at the end part of the clamping block through a rotating shaft; the outer wall of the rotating shaft is sleeved with a torsion spring; the limiting groove is arranged on the inner wall of the shell and comprises a sliding groove and a deflection groove which are sequentially arranged from outside to inside and are mutually communicated; when the display screen body is attached to the outer wall of the shell, the pin end is deflected by the acting force of the torsion spring to be attached to the inner wall of the deflection groove. The utility model achieves the purpose of realizing the rapid installation of the display screen body without tools through the matched use of the device.

Description

Embedded digital integrated display screen
Technical Field
The utility model relates to the field of display screens, in particular to an embedded digital integrated display screen.
Background
The operating room lamp light environment is: the blue light operating room, the highlight cold light operating room and the highlight warm light operating room are suitable for different operation types; the operating rooms with different lights have different illumination levels, and the illumination levels are different from 1500k to 8000 k. The display screen used in the operating room is very important so as to be able to view the condition of the patient at any time. At present, in order to ensure the sterile environment in an operating room, an embedded mode is often adopted to install a display screen, namely, a gap is not formed between the display screen and a wall body, so that the aim of ensuring the sterile environment is fulfilled, however, the embedded installation mode still needs to carry out punching operation by means of tools such as an electric drill and the like so as to complete fastening by matching with screws or bolts, and the operation is relatively inconvenient.
Therefore, there is a need for an embedded digital integrated display screen to solve the above-mentioned problems.
Disclosure of Invention
The utility model aims to provide an embedded digital integrated display screen, which can realize the rapid installation of a display screen body without tools.
In order to solve the technical problems, the utility model provides an embedded digital integrated display screen, which comprises a display screen body, a shell, a clamping block and a limiting groove;
the display screen body is inserted into the shell and can be kept relatively fixed;
the shell is embedded in the wall body;
the clamping block is fixedly arranged at the back of the display screen body, and a pin end is rotatably arranged at the end part of the clamping block through a rotating shaft;
the outer wall of the rotating shaft is sleeved with a torsion spring;
the limiting groove is arranged on the inner wall of the shell and comprises a sliding groove and a deflection groove which are sequentially arranged from outside to inside and are mutually communicated;
when the display screen body is attached to the outer wall of the shell, the pin end is deflected by the acting force of the torsion spring to be attached to the inner wall of the deflection groove.
Further, the clamping block is arranged to be of a cylindrical structure.
Further, when the display screen body is attached to the outer wall of the shell, one end, away from the clamping block, of the pin end is exposed to the outside of the deflection groove.
Further, two clamping blocks are arranged and symmetrically arranged on the back of the display screen body.
Further, a control member is arranged in the shell;
the control piece is used for pulling the two pin ends to deflect to be positioned in the same horizontal plane with the sliding groove, so that the clamping block can slide out of the sliding groove along the horizontal direction.
Further, the control member has an energized state and a de-energized state;
when the control piece is in an electrified state, a repulsive force is provided for the pin end so as to control the pin end to deflect along a direction deviating from the acting force of the torsion spring.
Further, the pin end is made of a magnetic material;
the control piece is arranged as an electromagnet;
the electromagnet is fixedly arranged in the shell and is connected with an external power supply through a conductive wire harness.
Further, the electromagnet and the deflection groove are positioned in the same vertical plane.
Compared with the prior art, the utility model has at least the following beneficial effects:
through setting up casing and the display screen body of inlaying in the wall to set up joint piece and spacing groove in display screen body back and casing respectively, and because joint piece tip has a pin end through pivot and torsional spring connection, when the joint piece inserts to spacing groove assigned position, when the sliding tray is arranged in to the pin end and the groove intercommunication position deflects under the torsional spring effect, the pin end can deflect to the inslot, can carry out spacingly to the joint piece along inserting the end direction this moment, make display screen body and casing keep relatively fixed, operating personnel only need to aim at the spacing groove with joint piece and pin end and insert can realize display screen body and casing lug connection fixed function promptly, reach the purpose that can realize display screen body quick installation with the help of the instrument.
In addition, because when the pin end is arranged in the deflection groove, the display screen body is attached to the outer wall of the shell, and then gaps can not be formed when the display screen body is installed, and the sterile environment in an operating room is ensured.
Further, through setting up the electro-magnet, and be provided with the magnetism material with the pin end, through the switching of electro-magnet at break-make state for the pin end swings between sliding tray and deflection tank, when the electro-magnet was in the circular telegram state promptly, the pin end receives the electro-magnet repulsion to influence deflection to be located same horizontal plane with the sliding tray, and then can follow the direction of inserting this moment with display screen body pull to the separation with the casing, in order to reach convenient to detach overhauls's purpose.
Drawings
FIG. 1 is an exploded view of the structure of an embedded digital integrated display screen of the present utility model;
FIG. 2 is a cross-sectional view of the structure of the embedded digital integrated display of the present utility model when the display body is connected to the housing;
fig. 3 is a cross-sectional view of the structure of the embedded digital integrated display screen of the present utility model when the pin end is rotated to be positioned in the same level with the sliding groove by the control member.
Reference numerals: 1. a display screen body; 2. a housing; 3. a clamping block; 31. a pin end; 4. a limit groove; 41. a sliding groove; 42. a deflection tank; 5. and (5) a control member.
Detailed Description
The embedded digital integrated display of the present utility model will be described in more detail below with reference to the drawings, in which preferred embodiments of the present utility model are shown, it being understood that the utility model described herein may be modified by those skilled in the art while still achieving the advantageous effects of the utility model. Accordingly, the following description is to be construed as broadly known to those skilled in the art and not as limiting the utility model.
The utility model is more particularly described by way of example in the following paragraphs with reference to the drawings. The advantages and features of the present utility model will become more apparent from the following description. It should be noted that the drawings are in a very simplified form and are all to a non-precise scale, merely for convenience and clarity in aiding in the description of embodiments of the utility model.
As shown in fig. 1 to 3, an embodiment of the present utility model provides an embedded digital integrated display screen, which includes a display screen body 1, a housing 2, a clamping block 3 and a limiting groove 4.
The display screen body 1 is inserted into the shell 2 and can be kept relatively fixed, namely, the display screen body 1 is connected with the shell 2, and the shell 2 is embedded into the wall body, so that the display screen body 1 and the wall body are installed, and the purpose of embedding the display screen body 1 into the wall body is achieved.
The clamping block 3 is fixedly arranged on the back of the display screen body 1, and a pin end 31 is rotatably arranged at the end part through a rotating shaft and used for connecting the display screen body 1 and the shell 2.
It should be noted that, the outer wall of the rotating shaft is sleeved with a torsion spring, that is, when no external force is applied, the pin end 31 deflects in a self-adaptive manner under the action of the torsion spring.
The limiting groove 4 is disposed on the inner wall of the housing 2, and includes a sliding groove 41 and a deflection groove 42 which are sequentially disposed from outside to inside and are mutually communicated.
When the display screen body 1 is attached to the outer wall of the housing 2, the pin end 31 is deflected by the force of the torsion spring to be attached to the inner wall of the deflection groove 42, that is, the pin end 31 is clamped with the deflection groove 42, so that the clamping block 3 is limited in the plugging direction, that is, the clamping block 3 cannot be pulled away from the sliding groove 41 along the insertion direction, so that the display screen body 1 and the housing 2 are fixed.
Therefore, the device is embedded in the shell 2 and the display screen body 1 in the wall body, the clamping block 3 and the limiting groove 4 are respectively arranged at the back of the display screen body 1 and in the shell 2, and as the end part of the clamping block 3 is connected with the pin end 31 through the rotating shaft and the torsion spring, when the clamping block 3 is inserted into the appointed position of the limiting groove 4, namely, the pin end 31 is arranged at the communication part of the sliding groove 41 and the deflection groove 42, under the action of the torsion spring, the pin end 31 can deflect into the deflection groove 42, and at the moment, the clamping block 3 can be limited along the direction of the insertion end, so that the display screen body 1 and the shell 2 are kept relatively fixed, namely, an operator only needs to insert the clamping block 3 and the pin end 31 into the limiting groove 4 to realize the quick connection and fixation of the display screen body 1 and the shell 2, and the aim of quickly installing the display screen body 1 can be achieved without tools.
In addition, since the display screen body 1 is attached to the outer wall of the housing 2 when the pin end 31 is disposed in the deflection groove 42, it is ensured that no gap is formed when the display screen body 1 is installed, and a sterile environment in an operating room is ensured.
The engaging block 3 is configured to have a cylindrical structure, so that frictional resistance generated when the engaging block 3 is inserted into the limiting groove 4 is reduced.
With continued reference to fig. 2, when the display screen body 1 is attached to the outer wall of the housing 2, an end of the pin end 31, which is far away from the clamping block 3, is exposed to the outside of the deflection groove 42, that is, a gap can be formed between the end of the pin end 31 and the inner wall of the housing 2, so that a force can be applied subsequently to control the deflection of the pin end 31, thereby realizing the function of disassembling the display screen body 1 and the housing 2.
Wherein, the joint piece 3 is provided with two, and two the joint piece 3 is the symmetry and sets up the back of display screen body 1.
In this embodiment, a control member 5 is further disposed on the housing 2, so as to facilitate the rapid detachment and separation of the display screen body 1 from the housing 2.
Specifically, the inside of the housing 2 is provided with a control member 5.
As shown in fig. 3, the control member 5 is configured to pull two pin ends 31 to deflect to be located in the same horizontal plane with the sliding groove 41, so that the clamping block 3 can slide out of the sliding groove 41 along the horizontal direction, that is, the clamping block 3 is separated from the limiting groove 4, and further, the display screen body 1 and the housing 2 are rapidly disassembled, so as to achieve the purpose of convenient maintenance.
Wherein the control member 5 has an energized state and a de-energized state.
Specifically, when the control member 5 is in the energized state, a repulsive force is provided for the pin end 31, so as to control the pin end 31 to deflect along a direction deviating from the acting force of the torsion spring, that is, the repulsive force should be far greater than the acting force of the torsion spring at this time, so as to control the pin end 31 to deflect to be in the same horizontal plane with the sliding groove 41, that is, interference is not caused to the sliding of the clamping block 3 along the insertion direction, and the purpose of quick disassembly is achieved.
In addition, when the control member 5 is in the power-off state, no force is applied to the pin end 31, that is, the pin end 31 deflects into the deflection groove 42 under the action of the torsion spring, the clamping block 3 is limited in the insertion direction of the clamping block 3, and the fixed connection between the display screen body 1 and the housing 2 is completed.
It should be noted that, the pin end 31 is made of a magnetic material, the control member 5 is an electromagnet, that is, the pin end 31 is driven to deflect by using the principle that like poles of the magnet repel each other, so as to realize the quick-dismantling function.
The electromagnet is fixedly arranged in the shell 2 and is connected with an external power supply through a conductive wire harness.
It should be noted that, the wall should be further provided with a control switch for controlling the conductive wire harness, the external power supply and the electromagnet to form a closed loop, so as to control the electromagnet to switch between the power-on state and the power-off state, so that the display screen body 1 and the housing 2 can be conveniently and rapidly installed and disassembled.
In order to improve the control effect of the electromagnet on the pin end 31, the electromagnet and the deflection groove 42 are located in the same vertical plane, so that the repulsive force formed on the electromagnet can directly act on the pin end 31, the repulsive force is not too small due to too far distance, and the condition that the pin end 31 is deflected to a specified angle cannot be met.
It will be apparent to those skilled in the art that various modifications and variations can be made to the present utility model without departing from the spirit or scope of the utility model. Thus, it is intended that the present utility model also include such modifications and alterations insofar as they come within the scope of the appended claims or the equivalents thereof.

Claims (8)

1. An embedded digital integrated display screen is characterized by comprising a display screen body, a shell, a clamping block and a limiting groove;
the display screen body is inserted into the shell and can be kept relatively fixed;
the shell is embedded in the wall body;
the clamping block is fixedly arranged at the back of the display screen body, and a pin end is rotatably arranged at the end part of the clamping block through a rotating shaft;
the outer wall of the rotating shaft is sleeved with a torsion spring;
the limiting groove is arranged on the inner wall of the shell and comprises a sliding groove and a deflection groove which are sequentially arranged from outside to inside and are mutually communicated;
when the display screen body is attached to the outer wall of the shell, the pin end is deflected by the acting force of the torsion spring to be attached to the inner wall of the deflection groove.
2. The embedded digital integrated display of claim 1, wherein the snap-in block is configured as a cylindrical structure.
3. The embedded digital integrated display of claim 1, wherein when the display body is attached to the outer wall of the housing, an end of the pin end remote from the clip block is exposed to the outside of the deflection slot.
4. The embedded digital integrated display screen of claim 1, wherein two clamping blocks are arranged and are symmetrically arranged on the back of the display screen body.
5. The embedded digital integrated display screen of claim 4, wherein a control is disposed inside the housing;
the control piece is used for pulling the two pin ends to deflect to be positioned in the same horizontal plane with the sliding groove, so that the clamping block can slide out of the sliding groove along the horizontal direction.
6. The embedded digital integrated display of claim 5, wherein the control has an energized state and a de-energized state;
when the control piece is in an electrified state, a repulsive force is provided for the pin end so as to control the pin end to deflect along a direction deviating from the acting force of the torsion spring.
7. The embedded digital integrated display screen of claim 6, wherein the pin end is made of a magnetic material;
the control piece is arranged as an electromagnet;
the electromagnet is fixedly arranged in the shell and is connected with an external power supply through a conductive wire harness.
8. The embedded digital integrated display of claim 7, wherein the electromagnet and the deflection slot are located in the same vertical plane.
CN202322215933.XU 2023-08-17 2023-08-17 Embedded digital integrated display screen Active CN220543538U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322215933.XU CN220543538U (en) 2023-08-17 2023-08-17 Embedded digital integrated display screen

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322215933.XU CN220543538U (en) 2023-08-17 2023-08-17 Embedded digital integrated display screen

Publications (1)

Publication Number Publication Date
CN220543538U true CN220543538U (en) 2024-02-27

Family

ID=89961448

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322215933.XU Active CN220543538U (en) 2023-08-17 2023-08-17 Embedded digital integrated display screen

Country Status (1)

Country Link
CN (1) CN220543538U (en)

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