A detachable medical parameter socket assembly and a monitor thereof

By connecting the rigid material spiral base to the slot structure of the socket and the faceplate, the medical parameter socket can be detached, which solves the problems of high replacement cost and unstable connection in the existing technology, and improves the stability and durability of the socket.

CN115939841BActive Publication Date: 2026-05-22GUANGDONG BIOLIGHT MEDITECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
GUANGDONG BIOLIGHT MEDITECH CO LTD
Filing Date
2022-12-26
Publication Date
2026-05-22

AI Technical Summary

Technical Problem

Existing medical parameter sockets are usually soldered onto the circuit board of the measurement module, which means that the entire module needs to be replaced when needed, resulting in high maintenance costs and unstable connections.

Method used

The rigid rotating base, made of a rigid material, is rigidly connected to the socket body and the faceplate body through a groove structure. The rotating rotating body enables the socket to be disassembled, and the groove structure improves stability and durability.

Benefits of technology

This improves the connection stability and durability of medical parameter sockets and reduces maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application provides a detachable medical parameter socket assembly and a monitor thereof, comprising a face shell body, a front side of which is provided with a face shell hole position, a front side of the face shell hole position is provided with a spiral mounting part, and a rear side of the spiral mounting part is provided with spiral mounting grooves distributed in a circumferential direction; a spiral base body made of hard material, an inner side of which is provided with a socket mounting hole, the spiral base body is provided with spiral clamping blocks and a spiral clamping part distributed in a circumferential direction; and a socket body, a front side of which is provided with an anti-falling part and a socket external connecting part, and the anti-falling part and the socket external connecting part form a socket anti-falling groove; when the spiral base body rotates in a circumferential direction to lock the socket body in the face shell hole position, the spiral clamping part is clamped in the spiral mounting groove, and the spiral clamping block is clamped in the socket anti-falling groove. The spiral base body made of hard material is hard-connected with the socket body and the face shell body through a groove structure, durability and stability of the assembly are improved, and the detachable socket body can be realized by rotating the spiral body, thereby reducing maintenance cost.
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Description

Technical Field

[0001] This invention belongs to the field of medical equipment technology, and particularly relates to a detachable medical parameter socket assembly and its monitor. Background Technology

[0002] Patient monitors are commonly used medical devices, typically used to measure and monitor patients' physiological parameters. They can also compare the acquired physiological parameters with set values ​​and issue alarms if any exceed the limits. Patient monitors usually contain multiple measurement modules, each equipped with a corresponding medical parameter socket for connecting to the appropriate measuring device.

[0003] Currently, medical parameter sockets are typically soldered onto the circuit board of the measurement module and secured to the monitor's casing with clips. When a medical parameter socket malfunctions or needs to be replaced due to functional adjustments, the entire measurement module must be replaced. While some technologies employ elastic structures to allow for the detachment of medical parameter sockets, these structures are prone to detachment and deformation under significant external forces, increasing maintenance costs. Summary of the Invention

[0004] This invention provides a detachable medical parameter socket assembly and its monitor, which can improve the connection stability of the medical parameter socket and reduce maintenance costs.

[0005] In a first aspect, embodiments of the present invention provide a detachable medical parameter socket assembly, comprising:

[0006] The face shell body has a face shell hole on its front side, a rotating ring mounting part on the front side of the face shell hole, and a rotating ring mounting groove distributed circumferentially on the rear side of the rotating ring mounting part.

[0007] The rotating ring body includes a rotating ring base, the inner side of which is a socket mounting hole. The rotating ring base is provided with a rotating ring locking block and a rotating ring locking part distributed circumferentially. The rotating ring locking block is a protrusion extending into the inner side of the rotating ring base, and the rotating ring locking part matches the rotating ring mounting groove.

[0008] The socket body has an anti-disengagement part and an external socket connection part on its front side, and an anti-disengagement groove is formed between the anti-disengagement part and the external socket connection part;

[0009] When the socket body is inserted into the faceplate hole through the socket mounting hole, the rotating ring base can rotate circumferentially to lock the socket body in the faceplate hole. In the locked state, the rotating ring locking part is locked into the rotating ring mounting groove, and the rotating ring locking block is locked into the socket anti-disengagement groove.

[0010] According to some embodiments of the present invention, a rotating ring positioning engaging part is further provided on the front side of the face shell hole, and a rotating ring positioning engaging groove is provided on the inner side of the rotating ring positioning engaging part, and the rotating ring positioning engaging groove extends from the rear side to the front side of the rotating ring positioning engaging part;

[0011] The spiral base is also provided with a spiral positioning block that protrudes outward;

[0012] In the locked state, the rotating ring positioning block is engaged with the rotating ring positioning slot.

[0013] According to some embodiments of the present invention, a first notch is formed between the rotating ring positioning engagement portion and the rotating ring mounting portion, and a limiting portion is provided in the first notch. The limiting portion extends inward to the inner side of the faceplate hole, and the inner side of the limiting portion is the faceplate mounting hole, which matches the socket mounting hole. The limiting portion is used to abut against the rotating ring positioning portion.

[0014] According to some embodiments of the present invention, the rotating ring base is further provided with a rotating ring mounting clearance groove, the rotating ring mounting clearance groove is matched with the rotating ring mounting part, and the rotating ring mounting clearance groove is adjacent to the rotating ring snap-fit ​​part.

[0015] According to some embodiments of the present invention, the faceplate hole is further provided with at least one socket anti-rotation groove;

[0016] The outer part of the socket is provided with at least one socket anti-rotation part, and the number of socket anti-rotation parts is the same as the number of socket anti-rotation slots and their positions match.

[0017] When the socket body is inserted into the socket mounting hole and the faceplate mounting hole, each of the socket anti-rotation parts is locked in the corresponding socket anti-rotation groove.

[0018] According to some embodiments of the present invention, a socket positioning groove is provided on the inner side of the rotating ring positioning block;

[0019] A socket positioning block is provided on the rear side of the socket external part. The socket positioning block matches the socket positioning groove. In the unlocked state, the socket positioning block is locked into the socket positioning groove.

[0020] According to some embodiments of the present invention, the number of the rotating ring mounting clearance groove, the rotating ring mounting part, the rotating ring snap-fit ​​part, the rotating ring positioning block and the socket positioning block is at least two.

[0021] According to some embodiments of the present invention, the spiral body further includes:

[0022] At least one rotating handle is integrally formed with the rotating ring base.

[0023] According to some embodiments of the present invention, the number of the anti-detachment part and the rotating locking block is at least two, and at least two anti-detachment grooves are formed between at least two of the anti-detachment parts and the outer part of the socket.

[0024] Secondly, embodiments of the present invention also provide a patient monitor, characterized in that it includes a detachable medical parameter socket assembly as described in the first aspect.

[0025] This invention includes: a faceplate body, the front side of which has a faceplate hole, the front side of which has a rotating ring mounting part, and the rear side of which has a rotating ring mounting groove distributed circumferentially; and a rotating ring body, the rotating ring base being made of a rigid material, the rotating ring body including a rotating ring base, the inner side of which has a socket mounting hole, the rotating ring base having a rotating ring locking block and a rotating ring engaging part distributed circumferentially, the rotating ring locking block being a protrusion extending into the inner side of the rotating ring base. The rotating ring engaging portion matches the rotating ring mounting groove; the socket body has an anti-disengagement portion and a socket external connection portion on its front side, forming a socket anti-disengagement groove between the anti-disengagement portion and the socket external connection portion; when the socket body is inserted into the face shell hole through the socket mounting hole, the rotating ring base can rotate circumferentially to lock the socket body in the face shell hole, wherein, in the locked state, the rotating ring engaging portion engages with the rotating ring mounting groove, and the rotating ring locking block engages with the socket anti-disengagement groove. According to the technical solution of this embodiment, the rotating ring base is made of rigid material, and a rigid connection is achieved with the socket body and the face shell body through the groove structure, improving the durability and stability of the component, and rotating the rotating ring body enables the socket body to be disassembled, reducing maintenance costs. Attached Figure Description

[0026] Figure 1 This is a disassembled perspective view of a detachable medical parameter socket assembly provided in one embodiment of the present invention;

[0027] Figure 2 This is a perspective view of the rotating body provided in one embodiment of the present invention;

[0028] Figure 3 This is a perspective view of the socket body provided in one embodiment of the present invention;

[0029] Figure 4 This is a front view of a medical parameter socket assembly provided in an embodiment of the present invention after installation in the unlocked state;

[0030] Figure 5 This is a front view of a medical parameter socket assembly provided in an embodiment of the present invention in a locked state after installation;

[0031] Figure 6This is a schematic diagram of the operation of unlocking the medical parameter socket assembly provided in another embodiment of the present invention. Detailed Implementation

[0032] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.

[0033] It should be noted that although functional modules are divided in the device schematic diagram and a logical order is shown in the flowchart, in some cases, the steps shown or described may be performed in a different order than the module division in the device or the order in the flowchart. Terms such as "first," "objective," etc., in the specification, claims, or the aforementioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence.

[0034] This invention provides a detachable medical parameter socket assembly, comprising: a faceplate body, the front side of which has a faceplate hole, the front side of which has a rotating ring mounting portion, and the rear side of which has a rotating ring mounting groove distributed circumferentially; and a rotating ring body, the rotating ring base being made of a rigid material, the rotating ring body including a rotating ring base, the inner side of which has a socket mounting hole, the rotating ring base being provided with a rotating ring locking block and a rotating ring locking portion distributed circumferentially, the rotating ring locking block being oriented towards the rotating ring base. The inner side of the socket has an extended protrusion, and the rotating ring engaging portion matches the rotating ring mounting groove. The socket body has an anti-disengagement portion and an external socket connection portion on its front side, forming an anti-disengagement groove between them. When the socket body is inserted into the faceplate hole through the socket mounting hole, the rotating ring base can rotate circumferentially to lock the socket body in the faceplate hole. In the locked state, the rotating ring engaging portion engages with the rotating ring mounting groove, and the rotating ring locking block engages with the anti-disengagement groove. According to the technical solution of this embodiment, the rotating ring base is made of a rigid material and achieves a rigid connection with the socket body and faceplate body through a groove structure, improving the durability and stability of the components. Furthermore, rotating the rotating ring body allows for the detachment of the socket body, reducing maintenance costs.

[0035] Reference Figure 1 Embodiments of the present invention provide a detachable medical parameter socket assembly, comprising:

[0036] The face shell body 1 has a face shell hole 11 on its front side, a rotating ring mounting part 12 on the front side of the face shell hole 11, and a rotating ring mounting groove 121 distributed circumferentially on the rear side of the rotating ring mounting part 12.

[0037] The rotating ring body 2 includes a rotating ring base 21. The rotating ring base 21 is made of a hard material. The inner side of the rotating ring base 21 is a socket mounting hole 26. The rotating ring base 21 is provided with a rotating ring locking block 24 and a rotating ring locking part 27 distributed in the circumferential direction. The rotating ring locking block 24 is a protrusion extending into the inner side of the rotating ring base 21. The rotating ring locking part 27 matches the rotating ring mounting groove 121.

[0038] The socket body 3 has an anti-disengagement part 31 and a socket external part 35 on its front side, and an anti-disengagement groove 32 is formed between the anti-disengagement part 31 and the socket external part 35.

[0039] When the socket body 3 is inserted into the faceplate hole 11 through the socket mounting hole 26, the rotating base 21 can rotate circumferentially to lock the socket body 3 in the faceplate hole 11. In the locked state, the rotating ring locking part 27 is locked into the rotating ring mounting groove 121, and the rotating ring locking block 24 is locked into the socket anti-disengagement groove 32.

[0040] It should be noted that the faceplate hole 11 can be a protrusion and a cylindrical structure of the faceplate body 1. The size of the faceplate hole 11 can be determined according to the size of the socket body 3, ensuring that the measuring module in the monitor can be connected after the socket body 3 is plugged in.

[0041] It should be noted that the rotating ring mounting part 12 is achieved by providing a protrusion at the foremost side of the face shell hole 11, so that the protrusion and the side wall of the face shell hole 11 form a rotating ring mounting groove 121, that is, a circumferentially distributed rotating ring mounting groove 121 is provided from the inside to the outside, so that the front side of the rotating ring mounting part 12 serves as the groove wall of the rotating ring mounting groove 121.

[0042] It should be noted that the material of the rotating base 21 can be a hard material such as hard plastic or metal. This embodiment does not limit the specific material.

[0043] It should be noted that the spiral base 21 can be a ring structure, as long as its outer contour matches the faceplate hole 11 and can be installed. A rotating ring engaging portion 27 is integrally formed on the outer side of the rotating ring base 21, and a rotating ring positioning block 24 is integrally formed on the inner side. Both the rotating ring positioning block 24 and the rotating ring engaging portion 27 are distributed circumferentially. The thickness of the rotating ring engaging portion 27 matches the rotating ring mounting groove 121. The outer diameter of the rotating ring engaging portion 27 is larger than the inner diameter of the foremost side of the rotating ring mounting portion 12. When the rotating ring base 21 rotates, the rotating ring engaging portion 27 can rotate circumferentially into the rotating ring mounting groove 121 and abut against the groove wall of the rotating ring mounting groove 121. Since the faceplate body 1 must be made of hard material, when the rotating ring base 21 is also made of hard material, the rotating ring base 21 will not be displaced in the front-back direction under the action of external force due to the abutment of the rotating ring engaging portion 27 and the rotating ring mounting groove 121, thus ensuring the stability of the rotating ring base 21 when locked.

[0044] It should be noted that the diameter of the socket mounting hole 26 can be greater than or equal to the size of the socket body 3 to accommodate different types of medical parameter sockets, ensuring that the socket body 3 can be inserted into the faceplate hole 11.

[0045] It should be noted that the anti-disengagement part 31 can be a protrusion provided on the outer surface of the socket body 3, and the socket external connection part 35 is the area in the medical parameter socket used to set the external connection structure. The diameter of the socket external connection part 35 can be larger than the diameter of the socket body 3, thus forming a height difference with the socket body 3. When there is a certain distance between the anti-disengagement part 31 and the socket external connection part 35, the gap between them serves as the socket anti-disengagement groove 32. It can be understood that the distance between the anti-disengagement part 31 and the socket external connection part 35 is greater than or equal to the thickness of the rotating ring locking block 24, ensuring that the rotating ring locking block 24 can rotate into the socket anti-disengagement groove 32 when rotating the rotating ring base 21, thereby achieving the locking of the socket body 3.

[0046] It should be noted that in this embodiment, a rotating ring mounting groove 121 is provided on the front side of the faceplate hole 11, a socket anti-disengagement groove 32 is provided on the socket body 3, a rotating ring locking part 27 is provided circumferentially on the outer side of the rotating ring base 21 made of rigid material, and a rotating ring locking block 24 is provided circumferentially on the inner side. Figure 1 After inserting the socket body 3 into the socket mounting hole 26 and the faceplate hole 11 in the indicated direction, the rotating base 21 fits against the faceplate hole 11 and the socket body 3. By rotating the rotating base 21 (for example...) Figure 1 The installation method shown is clockwise, causing the rotating ring locking block 24 to rotate and engage with the socket anti-disengagement groove 32. The socket body 3 is locked in the front-to-back direction by the contact of the rigid material. Simultaneously, the rotating ring engaging part 27 rotates and engages with the rotating ring mounting groove 121, locking the faceplate hole 11 in the front-to-back direction by the contact of the rigid material. The rigid rotating ring base 21 locks the socket body 3 in the faceplate hole 11. After rotating the rotating ring base 21 in the opposite direction, the rotating ring locking block 24 disengages from the socket anti-disengagement groove 32, and the rotating ring engaging part 27 disengages from the rotating ring mounting groove 121, thereby achieving the detachability of the medical parameter socket. Furthermore, compared to elastic structure fixation, the use of a rigid material for the rotating ring base 21 in this embodiment effectively improves stability, preventing loosening and deformation under external force, and improving the reliability of the medical parameter socket assembly.

[0047] Additionally, in one embodiment, reference is made to Figure 1 The front side of the faceplate hole 11 is also provided with a rotating ring positioning locking part 13, and the inner side of the rotating ring positioning locking part 13 is provided with a rotating ring positioning locking groove 131, which extends from the rear side to the front side of the rotating ring positioning locking part 13.

[0048] The rotating ring base 21 is also provided with a rotating ring positioning block 25 that protrudes outward;

[0049] In the locked state, the rotating ring positioning block 25 is engaged with the rotating ring positioning slot 131.

[0050] It should be noted that the rotating ring mounting groove 121 and the socket anti-disengagement groove 32 are grooves arranged circumferentially. The corresponding structure of the rotating ring base 21 cannot achieve circumferential locking to ensure that the medical parameter socket assembly can remain stable after entering the locked state. In this embodiment, a rotating ring positioning locking part 13 is provided on the front side of the face shell hole 11, and a rotating ring positioning locking groove 131 extending in the front and rear directions is provided in the rotating ring positioning locking part 13. At the same time, a rotating ring positioning locking block 25 is provided in the rotating ring base 21. Since the rotating ring base 21 is made of rigid material, after rotating the rotating ring base 21 to the locked state, the rotating ring positioning locking block 25 slides into the rotating ring positioning locking groove 131. Since the rotating ring positioning locking groove 131 is distributed in the front and rear direction, and the rotation direction of the rotating ring positioning locking block 25 is circumferential, the groove wall of the rotating ring positioning locking groove 131 can lock the rotating ring positioning locking block 25, thereby realizing the circumferential locking of the rotating ring base 21.

[0051] It should be noted that, in addition to providing a locking function in the circumferential direction, since the rotating ring base 21 is made of a hard material and the rotating ring positioning groove 131 is located in the middle of the rotating ring positioning engagement part 13, the rotating ring positioning block 25 will abut against the rotating ring positioning engagement part 13 during rotation until it reaches the rotating ring positioning groove 131. The dynamic friction generated therein provides a tactile feedback for locking and unlocking the rotating ring base 21, improving the convenience of operation.

[0052] Additionally, in one embodiment, reference is made to Figure 1 A first notch is formed between the rotating ring positioning engagement part 13 and the rotating ring mounting part 12. A limiting part 16 is provided in the first notch. The limiting part 16 extends to the inside of the faceplate hole 11. The inside of the limiting part 16 is the faceplate mounting hole 14. The faceplate mounting hole 14 matches the socket mounting hole 26. The limiting part 16 is used to abut against the rotating ring engagement part 27.

[0053] It should be noted that the rotating ring positioning latching part 13 and the rotating ring mounting part 12 are not continuous, thus forming a first gap between them. By setting a limiting part 16 in the first gap, the area where the limiting part is located is later than the rotating ring positioning latching part 13 and the rotating ring mounting part 12. The rotating ring positioning latching block 25 and the rotating ring latching part 27 are also separated in the rotating ring base 21, so that the rotating ring base 21 can be inserted into the first gap in the area between them, thereby abutting against the limiting part 16, which serves as a prompt for the installation position of the rotating ring base 21.

[0054] It should be noted that the limiting part 16 is provided in the faceplate hole 11, which can divide the faceplate hole 11 into two cavities. The front cavity is used to install the rotating base 21, and the rear cavity is used to insert the socket body 3, thereby improving the convenience of installation.

[0055] It should be noted that since the rotating base 21 is a ring structure, the first notch can ensure accurate positioning during the connection. When the rotating base 21 can be inserted into the first notch, the position can be determined to be aligned. That is, the rotating base 27 is located at the opening of the rotating base mounting groove 121, the rotating base 24 is located at the opening of the socket anti-disengagement groove 32, and the rotating base positioning block 25 abuts against the edge of the rotating base positioning block 13. At this time, rotating the rotating base 21 will make the above structure snap into place to lock the medical parameter socket assembly.

[0056] It should be noted that the faceplate mounting hole 14 and the socket mounting hole 26 are coaxially arranged to ensure that the socket body 3 can be inserted into both at the same time. This embodiment does not limit the specific hole diameter and shape.

[0057] Additionally, in one embodiment, reference is made to Figure 1 and Figure 2 The rotating ring base 21 is also provided with a rotating ring mounting clearance groove 23, which matches the rotating ring mounting part 12 and is adjacent to the rotating ring snap-fit ​​part 27.

[0058] It should be noted that, based on the description of the above embodiments, the front side of the rotating ring mounting part 12 has an inwardly extending structure. To avoid interference when installing the rotating ring base 21, this embodiment provides a rotating ring mounting clearance groove 23 at a position corresponding to the rotating ring base 21 and the rotating ring mounting part 12. The rotating ring mounting clearance groove 23 can be... Figure 1 and Figure 2 The inwardly recessed structure shown can avoid the mounting part 12 of the rotating ring.

[0059] It should be noted that, since the mounting clearance groove 23 of the rotating ring is a concave structure, after the mounting clearance groove 23 of the rotating ring is concave, a height difference is formed on the outer side of the rotating ring base 21, thereby obtaining the rotating ring locking part 27.

[0060] It should be noted that the cooperation between the rotating ring mounting clearance groove 23 and the first notch can improve the installation convenience of the rotating ring base 21. By matching the rotating ring mounting clearance groove 23 and the first notch, the installation position of the rotating ring base 21 can be quickly located. After the rotating ring base 21 is installed with clearance, the rotating ring snap-fit ​​part 27 on the side of the rotating ring mounting clearance groove 23 can be directly aligned with the rotating ring mounting groove 121, which can reduce the rotation range required during installation and improve installation efficiency.

[0061] It should be noted that the arc length of the rotating ring snap-fit ​​part 27 can be the same as that of the rotating ring mounting groove 121 in order to achieve the maximum force-bearing area and improve the snap-fit ​​effect.

[0062] Additionally, in one embodiment, reference is made to Figure 1 and Figure 3 The faceplate hole 11 is also provided with at least one socket anti-rotation groove 15;

[0063] The socket external portion 35 is provided with at least one socket anti-rotation portion 33, and the number of socket anti-rotation portions 33 is the same as the number of socket anti-rotation slots 15 and their positions match.

[0064] When the socket body 3 is inserted into the socket mounting hole 26 and the faceplate mounting hole 14, each socket anti-rotation part 33 is locked in the corresponding socket anti-rotation groove 15.

[0065] It should be noted that in this embodiment, the locking of the socket body 3 and the faceplate body 1 is achieved by rotating the rotating body 2. Since the socket body 3 needs to ensure that the position of the plug is fixed, at least one socket anti-rotation part 33 can be provided on the socket external part 35, and at least one socket anti-rotation groove 15 can be provided on the faceplate hole 11. When the socket body 3 is inserted into the faceplate mounting hole 14, the socket anti-rotation part 33 is engaged with the socket anti-rotation groove 15, so that the socket body 3 is fixed in the circumferential direction, improving the stability of the socket body 3. The socket anti-rotation part 33 and the socket anti-rotation groove 15 can also achieve the alignment of the socket body 3 during installation, improving the convenience and accuracy of installation.

[0066] It should be noted that, as Figure 1 As shown, the socket anti-rotation groove 15 can be a groove provided on the side of the faceplate hole 11, such as... Figure 3 As shown, the anti-rotation part 33 of the socket can be an arc-shaped structure with inclined surfaces at both the top and bottom ends. The anti-rotation groove 15 of the socket is inserted through the inclined surfaces to achieve circumferential fixation.

[0067] It should be noted that there can be multiple anti-rotation grooves 15 and anti-rotation parts 33 in the socket. This embodiment does not limit the specific number, shape and position, as long as they can provide force at different positions and improve the stability of the connection.

[0068] Additionally, in one embodiment, reference is made to Figures 1 to 3 The inner side of the rotating locking block 24 is provided with a socket positioning groove 241;

[0069] A socket positioning block 34 is provided on the rear side of the socket external part 35. The socket positioning block 34 matches the socket positioning groove 241. In the unlocked state, the socket positioning block 34 is locked in the socket positioning groove 241.

[0070] It should be noted that in this embodiment, a socket positioning groove 241 is provided on the inner side of the rotating ring locking block 24, and a socket positioning block 34 is provided on the rear side of the socket external connection part 35. This allows the socket positioning block 34 to slide and engage with the socket positioning groove 241 after the rotating ring base 21 is unlocked. The socket positioning groove 241 and the rotating ring positioning groove 131 are set in the same direction. Since the rotating ring base 21 is made of hard material, after unlocking, the socket positioning block 34 can be abutted and fixed by the socket positioning groove 241, ensuring that the socket body 3 can also be fixed in the unlocked state.

[0071] Additionally, in one embodiment, reference is made to Figure 2 and Figure 3 The number of the rotating ring mounting clearance groove 23, rotating ring mounting part 12, rotating ring snap-fit ​​part 27, rotating ring locking block 24 and socket positioning block 34 is at least two.

[0072] It should be noted that the rotating ring installation clearance groove 23, rotating ring installation part 12, rotating ring snap-fit ​​part 27, rotating ring snap-fit ​​block 24 and socket positioning block 34 are all provided in more than two forms, which can provide more force points and achieve uniform force distribution.

[0073] It should be noted that, referring to Figure 2 The two rotating ring mounting clearance slots 23, the rotating ring locking part 27, and the rotating ring positioning block 24 can be arranged symmetrically in the rotating ring base 21, for example, the two rotating ring mounting clearance slots 23 can be arranged axially symmetrically. It is understood that, in order to match the above structure, the rotating ring mounting part 12 and the socket positioning block 34 can also be arranged symmetrically in corresponding positions. Of course, when the number is odd, they can also be arranged at equal intervals. This embodiment does not impose any limitations on this.

[0074] Additionally, in one embodiment, reference is made to Figure 2 The spiral body 2 also includes:

[0075] At least one rotating handle 22 is integrally formed with the rotating base 21.

[0076] It should be noted that, in order to achieve the rotation of the rotating ring base 21, this embodiment provides at least one rotating handle 22 in the rotating ring body 2, for example... Figure 2 As shown, two rotating handles 22 are arranged symmetrically for easy operation.

[0077] Of course, it can also be done in Figure 2 A blind hole is provided at the position where the rotating handle 22 is located. The rotating base 21 is rotated by connecting the blind hole with a fixture. The rotating handle 22 can easily protrude from the socket body 3, improving the convenience of operation.

[0078] It should be noted that the integral molding of the rotating handle 22 and the rotating ring base 21 simplifies the manufacturing of the rotating ring body 2 and also improves the stability of the connection, preventing the rotating handle from falling off during rotation.

[0079] It should be noted that the reference Figure 1 As shown, the rotating handle 22 can be positioned adjacent to the rotating ring locking part 27, so that after the rotating ring locking part 27 rotates into the rotating ring mounting groove 121, the rotating handle 22 abuts against the side wall of the rotating ring mounting part 12 to achieve a limit, thereby improving the convenience of operation.

[0080] Additionally, in one embodiment, reference is made to Figure 2 and Figure 3 The number of anti-detachment parts 31 and rotating locking blocks 24 is at least two, and at least two anti-detachment grooves 32 are formed between the at least two anti-detachment parts 31 and the socket external part 35.

[0081] It should be noted that the number of anti-detachment parts 31 and rotating locking blocks 24 is at least two, which can provide force from at least two points, making the force distribution more uniform and improving stability.

[0082] To better illustrate the technical solution of this embodiment, the following is combined with... Figure 1 , Figure 4 , Figure 5 and Figure 6 The installation method of this application is illustrated by way of example, wherein, in the following two examples, such as Figure 6 As shown, clockwise rotation is the unlocking direction, and counterclockwise rotation is the locking direction.

[0083] Example 1:

[0084] After installing the rotating body 2 and the socket body 3 into the faceplate hole 11, the resulting structure is as follows: Figure 4 As shown, by rotating the handle 22 clockwise, the socket positioning groove 241 of the rotating ring body 2 disengages from the socket positioning block 34 of the socket body 3, causing the rotating ring locking block 24 to disengage from the socket positioning block 34 and simultaneously engage with the rotating ring locking groove 32 in the socket body 3. The rotating ring positioning locking block 25 of the rotating ring body 2 enters the rotating ring positioning locking groove 131 on the faceplate hole 11. Simultaneously, the rotating ring locking part 27 engages with the rotating ring mounting groove 121 on the faceplate hole 11, thereby achieving a tight fastening between the rotating ring body 2 and the socket body 3. The resulting structure is as shown. Figure 5As shown; during disassembly, simply rotate the rotating handle 22 counterclockwise, and the rotating ring positioning block 25 on the rotating ring base 21 disengages from the rotating ring positioning slot 131 on the face shell hole 11. Then, the rotating ring positioning block 24 engages with the socket positioning block 34 on the socket body 3. The engagement of the rotating ring positioning block 24 with the socket positioning block 34 also serves as a disassembly completion indicator. At the same time, the rotating ring engaging part 27 rotates out of the rotating ring mounting slot 121 on the face shell hole 11, and the rotating ring positioning block 24 rotates out of the rotating ring positioning slot 32 on the socket body 3, thereby separating the socket body 3 from the rotating ring body 2 from the face shell hole 11.

[0085] Example 2:

[0086] In this example, the rotating ring body 2 does not have a rotating handle 22. When assembling the rotating ring body 2, the lugs extending from the rotating ring base 21 can be used to rotate clockwise to secure the rotating ring body 2 to the socket body 3, followed by soldering the circuit board. When it is necessary to disassemble the socket body 3, a special clamp can be made, which extends through the faceplate hole 11 to hold the rotating ring base 21 in place. Figure 6 Rotate the indicated point clockwise to separate the rotating body 2 from the socket body 3 from the faceplate hole 11.

[0087] This invention also provides a patient monitor, including the detachable medical parameter socket assembly described above.

[0088] It should be noted that by setting up the detachable medical parameter socket assembly as described above in the monitor, the durability and stability of the assembly are improved because the rotating coil base is made of rigid material and is rigidly connected to the socket body and the faceplate body through the groove structure. Furthermore, rotating the rotating coil body enables the socket body to be detached, reducing maintenance costs.

[0089] Other embodiments of this application will readily occur to those skilled in the art upon consideration of the specification and practice of the embodiments disclosed herein. This application is intended to cover any variations, uses, or adaptations of this application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein.

[0090] It should be understood that this application is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this application is limited only by the appended claims.

[0091] The above is a detailed description of the preferred embodiments of the present invention. However, the present invention is not limited to the above embodiments. Those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of the present invention. All such equivalent modifications or substitutions are included within the scope defined by the claims of the present invention.

Claims

1. A detachable medical parameter socket assembly, characterized in that, include: The face shell body has a face shell hole on its front side, a rotating ring mounting part on the front side of the face shell hole, and a rotating ring mounting groove distributed circumferentially on the rear side of the rotating ring mounting part. The rotating ring body includes a rotating ring base, which is made of a rigid material. The inner side of the rotating ring base is a socket mounting hole. The rotating ring base is provided with a rotating ring locking block and a rotating ring locking part distributed circumferentially. The rotating ring locking block is a protrusion extending into the inner side of the rotating ring base. The rotating ring locking part matches the rotating ring mounting groove. The socket body has an anti-disengagement part and an external socket connection part on its front side, and an anti-disengagement groove is formed between the anti-disengagement part and the external socket connection part; When the socket body is inserted into the faceplate hole through the socket mounting hole, the rotating ring base can rotate circumferentially to lock the socket body in the faceplate hole. In the locked state, the rotating ring locking part is locked into the rotating ring mounting groove, and the rotating ring locking block is locked into the socket anti-disengagement groove. The inner side of the rotating locking block is provided with a socket positioning groove; A socket positioning block is provided on the rear side of the socket external part. The socket positioning block matches the socket positioning groove. In the unlocked state, the socket positioning block is locked into the socket positioning groove.

2. The detachable medical parameter socket assembly according to claim 1, characterized in that: The front side of the faceplate hole is also provided with a rotating ring positioning locking part, and the inner side of the rotating ring positioning locking part is provided with a rotating ring positioning locking groove, which extends from the rear side to the front side of the rotating ring positioning locking part. The spiral base is also provided with a spiral positioning block that protrudes outward; In the locked state, the rotating ring positioning block is engaged with the rotating ring positioning slot.

3. The detachable medical parameter socket assembly according to claim 2, characterized in that: A first notch is formed between the rotating ring positioning engagement part and the rotating ring mounting part. A limiting part is provided in the first notch. The limiting part extends to the inside of the faceplate hole. The inside of the limiting part is the faceplate mounting hole, which matches the socket mounting hole. The limiting part is used to abut against the rotating ring positioning part.

4. The detachable medical parameter socket assembly according to claim 3, characterized in that: The rotating ring base is also provided with a rotating ring mounting clearance groove, which matches the rotating ring mounting part and is adjacent to the rotating ring snap-fit ​​part.

5. A detachable medical parameter socket assembly according to claim 3, characterized in that: The faceplate hole is also provided with at least one socket anti-rotation groove; The outer part of the socket is provided with at least one socket anti-rotation part, and the number of socket anti-rotation parts is the same as the number of socket anti-rotation slots and their positions match. When the socket body is inserted into the socket mounting hole and the faceplate mounting hole, each of the socket anti-rotation parts is locked in the corresponding socket anti-rotation groove.

6. A detachable medical parameter socket assembly according to claim 4, characterized in that: The number of the rotating ring mounting clearance groove, the rotating ring mounting part, the rotating ring snap-fit ​​part, the rotating ring positioning block, and the socket positioning block is at least two.

7. A detachable medical parameter socket assembly according to claim 1, characterized in that, The spiral body also includes: At least one rotating handle is integrally formed with the rotating ring base.

8. A detachable medical parameter socket assembly according to claim 1, characterized in that: The number of the anti-detachment part and the rotating locking block is at least two, and at least two anti-detachment grooves are formed between the anti-detachment parts and the external part of the socket.

9. A patient monitor, characterized in that, Includes the detachable medical parameter socket assembly as described in any one of claims 1 to 8.