Monitor fixing support for sickbed
By combining the bed connection unit, mounting base, lifting components, rotating seat, and placement platform, the problem of inconvenience in fixing the monitor in temporary bed scenarios and the instability of the equipment during transportation is solved. This achieves a stable connection and flexible adjustment between the monitor and the hospital bed, ensuring the continuity and safety of monitoring.
Patent Information
- Application Number
- CN202522353319.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-06
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2035-11-06
AI Technical Summary
Existing monitors suffer from inconvenience in securing them in temporary bed scenarios, poor adaptability, and instability during transport, leading to resource waste and safety risks.
The system employs a combination design of bed connection unit, mounting base, lifting components, rotating seat and placement platform to form a rigid triangular stable structure. Through multi-degree-of-freedom adjustment mechanism and universal limit components, it achieves a stable connection and flexible adjustment between the monitor and the hospital bed.
It achieves integrated connection between the monitor and the hospital bed, solving the problems of inconvenience in fixing the device in temporary bed scenarios and the stability of the equipment during transportation, ensuring the continuity of monitoring, and reducing resource waste and safety risks.
Smart Images

Figure CN223640833U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical auxiliary devices, and in particular to a bedside monitor fixing bracket. Background Technology
[0002] In clinical nursing care within medical institutions, especially in emergency rooms, ICUs, and general wards requiring temporary beds, patient monitors are crucial for continuously monitoring patients' vital signs. Currently, monitors are primarily mounted in two ways: for fixed beds against a wall, wall-mounted brackets are typically used; for other situations, independent mobile carts are commonly used, or the equipment is temporarily placed on bedside tables, stools, chairs, or even the floor. While these methods are applicable to standard ward environments, with increasing clinical demands and the growing number of temporary beds, the limitations of existing monitor mounting methods are becoming apparent.
[0003] Specifically, for fixed beds, cantilever brackets can be installed on the headboard wall to hold the monitors. However, for temporarily added beds, the equipment must be placed on the floor, a stool, or a separate trolley, resulting in a cluttered and disorganized placement. While trolleys offer some flexibility, they occupy valuable aisle space, making them inconvenient to move around in crowded environments. Furthermore, their fixed-size support structure makes them difficult to accommodate monitors of various brands and models, requiring departments to stock multiple types of trolleys or brackets, leading to resource waste and management challenges. In addition, during critical patient transfers, current methods cannot achieve a quick and stable connection between the monitor and the bed, requiring a cumbersome disassembly and reinstallation process. This not only increases the workload of medical staff but also poses safety risks such as equipment drops and monitoring interruptions due to unstable connections during transport. Therefore, there is an urgent need to improve existing technologies to address the core issue of the lack of compatible fixing devices for monitors in the context of added beds. Utility Model Content
[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology and provide a bedside monitor fixing bracket to solve the core problems of the existing monitors being inconvenient to fix in temporary bed scenarios, having poor compatibility with monitors of different specifications, and being unable to be carried stably and synchronously during patient transfer.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A bedside monitor mounting bracket includes a bed connection unit, a mounting base, a lifting component, a rotating seat, and a placement platform;
[0007] The bed connection unit includes a first mounting base, a second mounting base, a support cantilever, and a diagonal brace, wherein:
[0008] Both the first mounting base and the second mounting base are provided with mounting holes for fixing to the hospital bed by fasteners. The first mounting base is fixed to the longitudinal side beam of the hospital bed, and the second mounting base is fixed to the bed leg column of the hospital bed.
[0009] One end of the support cantilever is fixedly connected to the first mounting base, and the other end extends horizontally outward to the side of the hospital bed. The upper surface of the support cantilever is provided with a slide rail, and its lower surface is provided with a first connecting part. The second mounting base is provided with a second connecting part on one side.
[0010] One end of the diagonal brace is rotatably hinged to the first connecting part via a first quick-release member, and the other end is rotatably hinged to the second connecting part via a second quick-release member, so that the bed connecting unit forms a triangular stable structure.
[0011] The mounting base has a base and a guide portion on the base. The mounting base base is connected to a sliding component that is disposed on a slide rail and slides along the slide rail. It is slidably mounted on the upper surface of the support cantilever. The base is also provided with a first locking member for locking the position of the mounting base.
[0012] The lifting component is retractably disposed inside the guide portion and is fixed by a second locking component disposed on the side wall of the guide portion;
[0013] The rotating seat is fixedly mounted on the top of the lifting component;
[0014] The placement platform is fixedly connected to the rotating seat, and the platform surface is provided with a first limiting component that can be adjusted along a first direction and a second limiting component that can be adjusted along a second direction.
[0015] Furthermore, the first connecting part and the second connecting part are a pair of mounting ears arranged opposite each other, and the two ends of the diagonal brace are provided with connecting ears. The mounting ears and the connecting ears are provided with matching bolt holes. The first quick-release piece and the second quick-release piece are quick-release bolts that pass through the bolt holes on the corresponding mounting ears and connecting ears.
[0016] Furthermore, the slide rail consists of two parallel inverted T-shaped slide rails, and the sliding component is slidably installed inside the slide rail, with its shape and size adapted to the slide rail.
[0017] Preferably, the sliding assembly is provided with bolts, the base of the mounting base is provided with bolt holes, the bolt shank protrudes from the upper surface of the support cantilever and passes through the bolt hole on the base, and the first locking member is a knob provided at the bolt hole on the base and threadedly connected to the bolt on the sliding assembly. The first locking member engages with the bolt on the sliding assembly by tightening or loosening, thereby locking or unlocking the position of the mounting base.
[0018] Furthermore, the first limiting component includes a first sliding groove disposed on the placement platform, and a first slider and a second slider slidably disposed in the first sliding groove, both of which are provided with buckles.
[0019] Preferably, the second limiting component includes a second sliding groove disposed on the placement platform and a third slider slidably disposed in the second sliding groove, the third slider being provided with a buckle, and the extension direction of the second sliding groove being perpendicular to the extension direction of the first sliding groove.
[0020] More specifically, the third slider is connected to the placement platform via a spring assembly, one end of the spring assembly is fixedly connected to the third slider, and the other end of the spring assembly is fixedly connected to the end sidewall of the second slide groove.
[0021] Furthermore, the cross-sections of the first slide and the second slide are both inverted T-shaped, the cross-sectional shape and size of the first slider and the second slider are adapted to the first slide, and the cross-sectional shape and size of the third slider are adapted to the second slide.
[0022] Preferably, the rotating seat is a hemispherical hinge, with the ball head of the hemispherical hinge fixed to the top of the lifting component and the ball socket fixedly connected to the bottom surface of the placement platform, so that the placement platform can pitch and rotate horizontally.
[0023] Furthermore, the guide sidewall of the mounting base is provided with a mounting hole, and a connecting bolt passes through the mounting hole. The mounting base is detachably connected to a storage basket via the connecting bolt, and the storage basket is a mesh frame structure.
[0024] This utility model discloses a bedside monitor mounting bracket, the core of which lies in forming a rigid triangular stable structure with the bed through a bed-connecting unit, combined with a multi-degree-of-freedom adjustment mechanism and universally compatible limiting components. Compared with existing technologies, this utility model has significant advantages: First, the triangular stable structure formed by the first mounting base, the second mounting base, and the diagonal brace rigidly fixes the bracket to the bed, achieving an integrated connection between the monitor and the bed, completely solving the problems of lack of fixed support in the case of additional beds and equipment instability during transportation, ensuring the continuity of monitoring. Second, the sliding rail design of the mounting base, the height adjustment of the lifting rod, and the multi-angle rotation of the rotating seat together constitute a multi-dimensional adjustment system, allowing the viewing and operation position of the monitor to flexibly adapt to the usage habits of different medical staff. Finally, the bidirectionally adjustable limiting components on the placement platform, through the cooperation of sliders and spring groups, can quickly adapt to and securely clamp monitors of different brands and sizes, solving the problem of resource waste caused by the need to equip departments with multiple brackets, and achieving a balance between versatility and stability. Attached Figure Description
[0025] Figure 1 Schematic diagram of the overall structure of the bedside monitor mounting bracket provided by this utility model Figure 1 .
[0026] Figure 2 Schematic diagram of the overall structure of the bedside monitor mounting bracket provided by this utility model Figure 2 .
[0027] Figure 3 A schematic diagram of the bed connection unit and the hospital bed provided by this utility model.
[0028] Figure 4 A schematic diagram showing the connection between the mounting base and the supporting cantilever provided by this utility model.
[0029] Figure 5 This is a partial cross-sectional schematic diagram of the placement platform limiting component provided by this utility model.
[0030] Figure 6 A schematic diagram of the rotating seat structure provided by this utility model.
[0031] The labels in the attached diagram are as follows:
[0032] 100. Bed frame connecting unit; 110. First mounting base; 120. Second mounting base; 130. Support cantilever; 131. Slide rail; 132. First connecting part; 133. Second connecting part; 140. Diagonal brace; 141. Connecting ear; 150. Quick-release bolt; 200. Mounting base; 210. Base; 211. First locking element; 220. Guide part; 221. Second locking element; 230. Sliding assembly; 231. Bolt; 3 00. Lifting component; 400. Rotating seat; 410. Ball head; 420. Ball socket; 500. Placement platform; 510. First limiting component; 511. First slide groove; 512. First slider; 513. Second slider; 520. Second limiting component; 521. Second slide groove; 522. Third slider; 523. Spring assembly; 530. Buckle; 600. Storage basket; 700. Hospital bed; 710. Longitudinal side beam; 720. Bed leg upright. Detailed Implementation
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.
[0034] In the description of this utility model, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0035] Please refer to the following: Figure 1 and Figure 2 This embodiment provides a bedside monitor mounting bracket, which mainly includes a bed body connection unit 100, a mounting base 200, a lifting component 300, a rotating seat 400, and a placement platform 500.
[0036] It can be understood that the bed connection unit 100 is the base for the integrated connection between the entire support and the hospital bed. Its core function is to provide a rigid and stable support starting point, reliably transferring the weight of the support and the monitor it carries, as well as the dynamic load during transport, to the structural components of the hospital bed itself. Please refer to [link / reference]. Figure 1 and Figure 2 The bed frame connection unit 100 includes a first mounting base 110, a second mounting base 120, a support cantilever 130, and a diagonal brace 140. In some embodiments, the first mounting base 110 and the second mounting base 120 are preferably made of channel steel profiles, with multiple mounting holes, which are respectively fastened to the longitudinal side beam of the bed and the bed leg upright on the same side by bolts. This fixing method forms two spatially separated reliable fixing points, which can effectively overcome the torque and instability that may be generated by single-point fixing, and provide a stable installation foundation for the entire support.
[0037] Please see Figures 1 to 3 One end of the supporting cantilever 130 is welded to or integrally formed and fixed to the first mounting base 110, while the other end extends horizontally outward, protruding from the side of the bed, providing a cantilevered support platform for the monitor that does not occupy bed or floor space. The upper surface of the supporting cantilever 130 is provided with two parallel inverted T-shaped slide rails 131, and the lower surface is fixed with a first connecting part 132. Specifically, the first connecting part 132 can be a pair of oppositely arranged mounting ears. Correspondingly, a second connecting part 133 with the same structure is also fixed to the side of the second mounting base 120.
[0038] Connecting ears 141 are provided at both ends of the diagonal brace 140. Corresponding and matching bolt holes are provided on the first connecting part 132, the second connecting part 133, and the connecting ears 141 at both ends of the diagonal brace 140. The first and second quick-release components are quick-release bolts 150 that pass through these corresponding bolt holes. When the quick-release bolts 150 are tightened, the diagonal brace 140, the support cantilever 130, and the two mounting seats together form a stable triangular support structure. This effectively converts the downward bending moment and torsion generated by the support cantilever 130 bearing the monitor into the axial pressure and tension of the diagonal brace 140, and distributes them to the first mounting seat 110 and the second mounting seat 120, the two fixed points with the hospital bed. This greatly enhances the overall rigidity and anti-shaking ability, ensuring that the support will not sway or tip over when the hospital bed moves or is impacted.
[0039] The mounting base 200 is used to support subsequent adjustment and support components, and to achieve horizontal position adjustment. The mounting base 200 has a base 210 and a guide portion 220 extending vertically upward from the base. The base 210 mainly undertakes the function of connecting and positioning the cantilever 130; the guide portion 220 is an internally hollow cylindrical structure used to accommodate and guide the lifting component 300.
[0040] Please see Figure 4 The slide rails 131 on the cantilever 130 are two parallel inverted T-shaped slide rails. Correspondingly, the shape of the sliding component 230 is adapted to the inverted T-shaped slide rails 131, so that it can be embedded in the slide rails and slide smoothly along their length. The bottom of the base 210 is connected to the sliding component 230.
[0041] In some specific embodiments, the sliding assembly 230 is provided with a bolt 231, the thread of which extends upward through the slide rail 131 and passes through the corresponding bolt hole on the base 210. The first locking member 211 is a knob threadedly connected to the bolt 231, located above the corresponding bolt hole on the base 210. When the first locking member 211 is loosened, the clamping force between the mounting base 200 and the sliding assembly 230 and the slide rail 131 is released, at which point the mounting base can be pushed along the support cantilever 130 to the desired horizontal position; when the first locking member 211 is tightened, the knob presses downward on the base 210, thereby driving the sliding assembly 230 upward through the bolt 231 to tightly engage with the inverted T-groove of the slide rail 131, generating friction to firmly lock the mounting base 200 in the current position of the support cantilever 130.
[0042] The lifting member 300 is a columnar structure adapted to the guide portion 220, and it is telescopically inserted into the guide portion 220 of the mounting base 200. A second locking member 221 is screwed onto the side wall of the guide portion 220. In some embodiments, the second locking member 221 is preferably a hand-tightened bolt. It is understood that the lifting member 300 and the guide portion 220 are in clearance fit, allowing the lifting member 300 to slide freely up and down within the hollow cavity of the guide portion 220. Loosening the second locking member 221 allows manual adjustment of the extension height of the lifting member 300 to accommodate different observation lines of medical personnel; after adjustment, tightening the second locking member 221 so that its end presses against the outer wall of the lifting member 300, thereby fixing the height through the static friction generated.
[0043] Please see Figure 6 The rotating base 400 is fixed to the top of the lifting component 300. In this embodiment, the rotating base 400 is preferably a hemispherical hinge structure. Its ball head 410 is fixed to the top of the lifting component 300, and its ball socket 420 is fixed to the bottom surface of the placement platform 500. This structure, through the omnidirectional rotation of the ball head 410 within the ball socket 420, enables the placement platform 500 to have multi-degree-of-freedom adjustment capabilities in the pitch and horizontal directions, allowing medical personnel to easily adjust the monitor screen to the optimal viewing angle without blind spots.
[0044] Please see Figure 5 The placement platform 500 is the component that directly supports and fixes the monitor. A first limiting component 510 and a second limiting component 520 are provided on its surface. The first limiting component 510 includes a first groove 511 extending along the width direction of the placement platform 500, and a first slider 512 and a second slider 513 that can slide independently within it. Both the first slider 512 and the second slider 513 are provided with latches 530. The second limiting component 520 includes a second groove 521 extending along the length direction of the placement platform 500, and a third slider 522 that can slide within it. The third slider 522 is also provided with latches 530, and the third slider 522 is connected to the end sidewall of the second groove 521 via a spring assembly 523. It can be understood that the spring assembly 523 provides a continuous elastic preload force towards the edge of the placement platform 500 for the third slider 522.
[0045] The cross-sections of the first slide groove 511 and the second slide groove 521 are both inverted T-shaped. The first slider 512, the second slider 513 and the third slider 522 that cooperate with them also have corresponding inverted T-shaped cross-sections. This kind of cooperation can ensure that the slider slides smoothly and prevent it from falling out of the slide groove.
[0046] The installation and fixing principle of the monitor is as follows: First, place the monitor on the placement platform 500, with one side close to the first slider 512 and the second slider 513, and the other side close to the third slider 522. Then, push the monitor towards the third slider 522. The third slider 522, under pressure, slides along the second groove 521 and compresses the spring assembly 523. At this time, adjust the first slider 512 and the second slider 513 according to the actual distance between the two locking holes on the back of the monitor, so that the latches 530 on them are precisely aligned with the locking holes of the monitor. Finally, slowly release the pushing force on the monitor. Under the restoring force of the spring assembly 523, the third slider 522 will push the monitor towards the first and second sliders until all three latches 530 are engaged in the corresponding locking holes of the monitor. The monitor is then securely and adaptively clamped between the three latches 530. This design achieves rapid and universal adaptation to monitors of various brands and sizes.
[0047] In addition, a storage basket 600 with a mesh frame structure can be detachably installed on the side wall of the guide section 220 of the mounting base 200 via connecting bolts. This basket is used to store small items such as monitor wires and coupling agents, keeping the bed unit tidy.
[0048] The usage procedure of this bracket is as follows: First, the first mounting base 110 and the second mounting base 120 are fixed to the side beam and footpost of the bed respectively using bolts. Then, the diagonal brace 140 is connected and initially locked using the quick-release bolts 150. Next, the placement platform 500 assembly with the monitor is placed on the support cantilever 130 via the sliding component 230, and after being moved to a suitable horizontal position, the first locking member 211 is locked. Subsequently, the height of the lifting component 300 is adjusted and the second locking member 221 is locked, and then the monitor screen angle is finely adjusted via the rotating base 400. When the patient needs to be transferred, since the monitor is rigidly connected to the bed through this bracket, no disassembly steps are required. The monitor can be moved synchronously and stably by simply pushing the bed, completely avoiding the risks of monitoring interruption and equipment falling that may occur during the transfer process due to equipment separation and handling.
[0049] In summary, the core of this embodiment lies in the integrated connection between the rigid triangular support structure and the hospital bed, combined with multi-dimensional adjustment and universal limit design, providing a stable, flexible, and adaptable solution for monitors in temporary bed addition and transport scenarios, effectively overcoming the shortcomings of existing technologies.
[0050] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope of the claims.
Claims
1. A bedside monitor mounting bracket, characterized in that, Includes bed connection unit, mounting base, lifting components, rotating seat and placement platform; The bed connection unit includes a first mounting base, a second mounting base, a support cantilever, and a diagonal brace, wherein: Both the first mounting base and the second mounting base are provided with mounting holes for fixing to the hospital bed by fasteners. The first mounting base is fixed to the longitudinal side beam of the hospital bed, and the second mounting base is fixed to the bed leg column of the hospital bed. One end of the support cantilever is fixedly connected to the first mounting base, and the other end extends horizontally outward to the side of the hospital bed. The upper surface of the support cantilever is provided with a slide rail, and its lower surface is provided with a first connecting part. The second mounting base is provided with a second connecting part on one side. One end of the diagonal brace is rotatably hinged to the first connecting part via a first quick-release member, and the other end is rotatably hinged to the second connecting part via a second quick-release member, so that the bed connecting unit forms a triangular stable structure. The mounting base has a base and a guide portion on the base. The mounting base base is connected to a sliding component that is disposed on a slide rail and slides along the slide rail. It is slidably mounted on the upper surface of the support cantilever. The base is also provided with a first locking member for locking the position of the mounting base. The lifting component is retractably disposed inside the guide portion and is fixed by a second locking component disposed on the side wall of the guide portion; The rotating seat is fixedly mounted on the top of the lifting component; The placement platform is fixedly connected to the rotating seat, and the platform surface is provided with a first limiting component that can be adjusted along a first direction and a second limiting component that can be adjusted along a second direction.
2. The bedside monitor mounting bracket according to claim 1, characterized in that, The first connecting part and the second connecting part are a pair of mounting ears arranged opposite each other. The two ends of the diagonal brace are provided with connecting ears. The mounting ears and the connecting ears are provided with matching bolt holes. The first quick-release piece and the second quick-release piece are quick-release bolts that pass through the bolt holes on the corresponding mounting ears and connecting ears.
3. The bedside monitor mounting bracket according to claim 1, characterized in that, The slide rail consists of two parallel inverted T-shaped slide rails, and the sliding component is slidably installed inside the slide rail, with its shape and size adapted to the slide rail.
4. A bedside monitor mounting bracket according to claim 3, characterized in that, The sliding assembly is provided with bolts, and the base of the mounting base is provided with bolt holes. The bolt shank protrudes from the upper surface of the support cantilever and passes through the bolt hole on the base. The first locking member is a knob located at the bolt hole on the base and threadedly connected to the bolt on the sliding assembly. The first locking member engages with the bolt on the sliding assembly by tightening or loosening, thereby locking or unlocking the position of the mounting base.
5. A bedside monitor mounting bracket according to claim 1, characterized in that, The first limiting component includes a first sliding groove disposed on the placement platform, and a first slider and a second slider slidably disposed in the first sliding groove, both of which are provided with buckles.
6. A bedside monitor mounting bracket according to claim 5, characterized in that, The second limiting component includes a second slide groove disposed on the placement platform and a third slider slidably disposed in the second slide groove. The third slider is provided with a buckle, and the extension direction of the second slide groove is perpendicular to the extension direction of the first slide groove.
7. A bedside monitor mounting bracket according to claim 6, characterized in that, The third slider is connected to the placement platform via a spring assembly. One end of the spring assembly is fixedly connected to the third slider, and the other end of the spring assembly is fixedly connected to the end sidewall of the second slide groove.
8. A bedside monitor mounting bracket according to claim 7, characterized in that, The first and second slides both have inverted T-shaped cross sections. The cross-sectional shape and size of the first and second sliders are adapted to the first slide, and the cross-sectional shape and size of the third slider are adapted to the second slide.
9. A bedside monitor mounting bracket according to claim 1, characterized in that, The rotating seat is a hemispherical hinge, with the ball head of the hemispherical hinge fixed to the top of the lifting component and the ball socket fixedly connected to the bottom surface of the placement platform, enabling the placement platform to pitch and rotate horizontally.
10. A bedside monitor mounting bracket according to claim 1, characterized in that, The mounting base has a mounting hole on the side wall of the guide section, and a connecting bolt passes through the mounting hole. The mounting base is detachably connected to a storage basket via the connecting bolt. The storage basket has a mesh frame structure.