一种多功能监护屏支架及重症监护吊塔
By designing a multi-functional monitoring screen bracket, and utilizing a combination structure of support shafts and support components, the monitoring screen can be flexibly adjusted and stably positioned in a multi-dimensional space. This solves the problem of insufficient adjustment freedom in traditional brackets and improves operational efficiency and structural stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- THE SIXTH MEDICAL CENT OF THE CHINESE PEOPLES LIBERATION ARMY GENERAL HOSPITAL
- Filing Date
- 2025-09-17
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional monitor stands have limited adjustment freedom, making it difficult to achieve precise positioning of the screen in three-dimensional space. Especially in high-density equipment environments such as intensive care units and operating rooms, medical staff need to frequently adjust the angle of the monitor to avoid obstruction or optimize the viewing angle, which is cumbersome and time-consuming.
A multifunctional monitoring screen bracket was designed, which adopts a combination structure of support shaft and support component. Through the cooperation of threaded tube and threaded rod, the support component and support shaft can be quickly locked. Combined with damping and anti-slip structure, the monitoring screen can be flexibly adjusted and stabilized in multi-dimensional space. The bracket includes a combination of support shaft, locking mechanism and locking mechanism to achieve multi-dimensional angle adjustment and stable positioning.
It improves the installation adaptability and spatial positioning flexibility of the monitoring screen, makes operation convenient and efficient, avoids angular deviation caused by vibration or external force, ensures structural stability and adaptability, and meets diverse clinical use needs.
Smart Images

Figure CN224516382U_ABST
Abstract
Claims
1. A multi-function monitor arm, characterized by, include: The support shaft (1) has connecting pipes (2) at both ends, and the connecting pipes (2) at both ends are arranged in parallel. The two connecting pipes (2) are respectively connected to two support mechanisms (3). The support member (4) is rotatably mounted on the support shaft (1), and the support member (4) is provided with an extension shaft (5). Mounting component (6) is mounted on the extension shaft (5), and the mounting component (6) is provided with a plurality of assembly holes; A threaded tube (7) is installed on the support member (4), and a threaded rod (8) is installed inside the threaded tube (7). The threaded rod (8) is used to lock the rotation of the support member (4) and the support shaft (1).
2. The multi-function monitor arm of claim 1, wherein, The support mechanism (3) includes: Assembly mechanism (31); A threaded post (32) is mounted on the assembly mechanism (31), and a connector (33) is rotatably mounted on the threaded post (32). The support beam (34) is slidably installed in the inner groove of the connector (33), and a support column (35) is installed at one end of the support beam (34). The connecting pipe (2) is rotatably connected to the support column (35). A locking mechanism (36) is installed on the threaded post (32). The locking mechanism (36) is used to lock the connection position and angle between the support beam (34) and the threaded post (32).
3. The multi-function monitor arm of claim 2, wherein, The locking mechanism (36) includes: The clamping member (36a) is provided with a limiting post (36b), the limiting post (36b) is slidably connected to the adjustment groove of the support beam (34), and the threaded post (32) passes through the through hole of the clamping member (36a); Fastener (36c) is connected to the threaded post (32) and is used by the clamping member (36a) to apply pressure to the support beam (34).
4. The multi-function monitor arm of claim 3, wherein, The fastener (36c) is provided with an extension rod (36d), which is used for manual operation.
5. The multi-function monitor arm of claim 2, wherein, The assembly mechanism (31) includes: The fixed beam (31a) has a toothed groove at one end; The adapter (31b) is rotatably mounted on the tooth groove of the fixed beam (31a), and the threaded post (32) is mounted on the adapter (31b); A connecting mechanism (31c) is installed on the adapter (31b), and the connecting mechanism (31c) is used to limit the connection angle between the adapter (31b) and the fixed beam (31a).
6. The multi-function monitor arm of claim 5, wherein, The connecting mechanism (31c) includes: A piston cylinder (31c1) is mounted on the adapter (31b), and a positioning pin (31c2) is installed inside the piston cylinder (31c1). The positioning pin (31c2) is connected to the tooth groove of the fixed beam (31a). The spring (31c3) is connected at both ends to the inner wall of the piston cylinder (31c1) and the positioning pin (31c2), respectively.
7. The multi-function monitor arm of claim 1, wherein, Damping is provided at the rotatable connection between the support shaft (1) and the support member (4).
8. The multi-function monitor arm of claim 1, wherein, A drive component (9) is coaxially mounted on the threaded rod (8). The drive component (9) is rotatably connected to the outer wall of the threaded tube (7). An anti-slip structure is provided on the drive component (9).
9. An intensive care tower employing the multi-function monitor arm of any one of claims 1-8.