Infant incubator
By employing a hinged structure in the infant incubator, the base of the incubator can be flipped open to form a maintenance access port, which solves the problem of complex and time-consuming maintenance of traditional infant incubators, and achieves the effect of simplifying the maintenance process and improving equipment turnover efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NINGBO DAVID MEDICAL DEVICE CO LTD
- Filing Date
- 2025-05-12
- Publication Date
- 2026-04-24
AI Technical Summary
Traditional integrated infant incubators are complex and time-consuming to operate when the equipment fails and needs repair, which affects the equipment turnover efficiency.
The bed base and connecting plate are connected by a hinge structure. The bed base can be flipped open to form a maintenance access port, directly exposing internal components such as heating modules, sensors and circuit boards, simplifying the maintenance process.
It simplifies maintenance operations, improves equipment maintenance efficiency, reduces maintenance costs and the risk of equipment damage, and increases equipment turnover efficiency and utilization.
Smart Images

Figure CN224155943U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical equipment technology, and more specifically, to an infant incubator. Background Technology
[0002] Incubators are critical equipment in neonatal intensive care units, providing a constant temperature and humidity environment to ensure the survival of premature or sick infants. Incubators in this technology typically employ a one-piece enclosure structure, with internal components (such as heating modules, sensors, and circuit boards) fixed within the base. When equipment malfunctions and requires repair, technicians must completely disassemble the incubator's outer shell and even separate individual components to access the internal parts, resulting in complex and time-consuming repair operations and impacting equipment turnover efficiency. Utility Model Content
[0003] The problem this invention addresses is: how to solve the technical problem that traditional integrated box-type infant incubators are complex and time-consuming to operate during equipment failure repairs, thus affecting equipment turnover efficiency.
[0004] To address the aforementioned problems, this utility model provides an infant incubator, comprising a bed base and a connecting plate. The top of the bed base is connected to an incubator body, and the bottom of the connecting plate is connected to a support frame. A heating module, a sensor, and a circuit board are installed inside the bed base. One end of the bed base is connected to the connecting plate via a hinge structure, and the other end of the bed base can be flipped open relative to the connecting plate around the hinge structure to form a maintenance access port. The position of the maintenance access port corresponds to the maintenance area space of the heating module, the sensor, and the circuit board exposed after flipping.
[0005] Optionally, a support rod is rotatably connected to the inner side of the end of the connecting plate away from the hinge structure, and the support rod is used to provide multi-angle positioning support when the bed base is flipped open.
[0006] Optionally, the connecting plate is provided with a limiting block on the outer side of one end of the hinge mechanism. When the bed base is flipped open relative to the connecting plate to the maximum preset position, the bottom of the incubator abuts against the limiting block.
[0007] Optionally, the end of the bed base away from the hinge structure is provided with an inwardly extending support plate. The surface of the support plate is provided with anti-slip texture. When the bed base is flipped open relative to the connecting plate, the support plate is used to abut against one end of the support rod.
[0008] Optionally, the support plate is provided with a positioning hole, and the end of the connecting plate away from the hinge mechanism is provided with a positioning protrusion. When the bed base is in a closed state relative to the connecting plate, the positioning protrusion is inserted into the positioning hole.
[0009] Optionally, one end of the support rod is connected to a support column, and a rubber buffer pad is fitted around the outer periphery of the support column. The support column is used to abut against one side of the support plate.
[0010] Optionally, the bed base is provided with a clearance hole on the side near the connecting plate. When the bed base is in a closed state relative to the connecting plate, one end of the support column extends out of the outside of the bed base through the clearance hole to form a force application handle.
[0011] Optionally, the bed base is provided with a modular mounting frame, and the heating module, the sensor and the circuit board are fixed to the mounting frame by quick-release buckles, and the electrical connection interfaces of the heating module, the sensor and the circuit board are arranged facing the maintenance operation port.
[0012] Optionally, the side wall of the bed base is provided with a heat dissipation hole array to assist the internal components in heat dissipation during normal operation of the equipment and prevent overheating damage.
[0013] Optionally, the hinge structure is a hinge, and there are two hinges, respectively located on both sides of the connection end between the bed base and the connecting plate, to ensure the stability of the bed base when it is tilted.
[0014] The beneficial effects of this infant incubator: The top of the bed base connects to the incubator body, and the bottom of the connecting plate connects to the support frame, achieving overall structural support and stability. The bed base houses core components necessary for ensuring the infant's survival environment, such as heating modules, sensors, and circuit boards. One end of the bed base is connected to the connecting plate via a hinge structure, allowing the other end of the bed base to rotate relative to the connecting plate around this hinge structure. When the equipment malfunctions and requires repair, the bed base can be rotated open around the hinge structure, forming a repair access port. The position of this repair access port precisely corresponds to the repair area of the exposed heating module, sensors, and circuit boards after rotation, providing maintenance personnel with a direct channel to access and operate the internal components. In related technologies, when incubators malfunction and require repair, technicians must completely disassemble the incubator shell or even separate various parts of the body to access the internal components, a complex and time-consuming operation. However, the infant incubator of this invention, through its hinge structure, allows the bed base to be rotated open to form a repair access port. Maintenance personnel can directly repair the internal components through the repair access port without disassembling the shell or separating body parts, greatly simplifying the repair process. Because maintenance operations are simplified and quicker, the time required for equipment repair is reduced. In a medical environment, equipment turnaround efficiency is crucial; faster repair and deployment improves equipment utilization and meets the treatment needs of more newborns. Simplified maintenance operations reduce the risk of equipment damage that could result from complex disassembly and assembly processes, lowering component wear and labor costs during maintenance, and also reducing operating costs associated with prolonged equipment downtime for repairs. Furthermore, the inclusion of maintenance access ports allows maintenance personnel to more easily observe and operate internal components, improving the accuracy and efficiency of repairs, while also providing a more comfortable working environment and reducing the difficulty of maintenance work.
[0015] This invention relates to an infant incubator with a hinged structure that allows the base of the incubator to be flipped open to form a maintenance access port. Maintenance personnel can directly repair internal components through the maintenance access port without disassembling the outer shell or separating the incubator parts, which greatly simplifies the maintenance process, improves equipment maintenance efficiency, and thus increases equipment turnover efficiency and reduces maintenance costs. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of one embodiment of the present utility model. Figure 1 ;
[0017] Figure 2 This is a schematic diagram of one embodiment of the present utility model. Figure 2 ;
[0018] Figure 3 This is a partial structural diagram of one embodiment of the present utility model.
[0019] Explanation of reference numerals in the attached figures:
[0020] 1. Bed base; 11. Support plate; 111. Positioning hole; 12. Clearance hole; 13. Heat dissipation hole array; 2. Connecting plate; 21. Support rod; 211. Support column; 212. Force application handle; 22. Positioning protrusion; 3. Incubator body; 4. Support frame; 5. Hinge structure; 6. Maintenance access port; 7. Limit block. Detailed Implementation
[0021] To make the above-mentioned objects, features, and advantages of this utility model more apparent and understandable, specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings. Although some embodiments of this utility model are shown in the drawings, it should be understood that this utility model can be implemented in various forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of this utility model. It should be understood that the drawings and embodiments of this utility model are for illustrative purposes only and are not intended to limit the scope of protection of this utility model.
[0022] The term "comprising" and its variations as used herein are open-ended, meaning "including but not limited to"; the term "based on" means "at least partially based on"; the term "one embodiment" means "at least one embodiment"; the term "another embodiment" means "at least one additional embodiment"; the term "some embodiments" means "at least some embodiments"; and the term "optionally" means "optional embodiments". Definitions of other terms will be given in the following description. It should be noted that the concepts of "first," "second," etc., mentioned in this utility model are only used to distinguish different devices, modules, or units, and are not used to limit the order of functions performed by these devices, modules, or units or their interdependencies.
[0023] It should be noted that the terms "one" and "multiple" used in this utility model are illustrative rather than restrictive. Those skilled in the art should understand that, unless otherwise expressly indicated in the context, they should be understood as "one or more".
[0024] like Figure 1 , Figure 2As shown in the figure, an infant incubator provided by this utility model includes: a bed base 1 and a connecting plate 2. The bed base 1 is located on the connecting plate 2. An incubator body 3 is connected to the top of the bed base 1. A support frame 4 is connected to the bottom of the connecting plate 2. A heating module, a sensor, and a circuit board are installed inside the bed base 1. One end of the bed base 1 is connected to the connecting plate 2 through a hinge structure 5. The other end of the bed base 1 can be flipped open relative to the connecting plate 2 around the hinge structure 5 to form a maintenance access port 6. The position of the maintenance access port 6 corresponds to the maintenance area space of the heating module, sensor, and circuit board exposed after flipping.
[0025] Specifically, the infant incubator in this embodiment consists of a bed base 1 and a connecting plate 2 forming a basic frame. The top of the bed base 1 is connected to the incubator body 3, providing space for the infant; the bottom of the connecting plate 2 is connected to a support frame 4, which supports the entire incubator. Key internal components such as heating modules, sensors, and circuit boards are installed inside the bed base 1. Through the coordinated work of these components, a constant temperature and humidity environment suitable for the infant's survival is provided in the incubator. The bottom of the bed base 1 can be set as an open opening or have a window to expose the internal components such as heating modules, sensors, and circuit boards. One end of the bed base 1 is connected to the connecting plate 2 via a hinge structure 5, allowing the bed base 1 to be flipped relative to the connecting plate 2 around the hinge point. When maintenance of the incubator is required, the other end of the bed base 1 is flipped open around the hinge structure 5, thereby forming a maintenance access port 6. The location of the maintenance access port 6 corresponds to the maintenance area of key internal components such as heating modules, sensors, and circuit boards exposed after flipping. This allows technicians to perform maintenance operations on the internal components directly through the maintenance access port 6 without completely disassembling the incubator shell or separating the various parts of the chamber.
[0026] In this embodiment, when an incubator in the related art malfunctions and requires repair, technicians must completely disassemble the incubator's outer shell and even separate various components to access the internal parts, a complex and time-consuming operation. However, the infant incubator in this embodiment features a foldable, openable base 1 forming a maintenance access port 6. Technicians can directly repair the internal components through this port, greatly simplifying the repair process. Because the repair operation is simpler and more convenient, repair time is significantly reduced, allowing the repaired incubator to be put back into use more quickly. This improves the equipment's turnover efficiency in the neonatal intensive care unit and helps better meet clinical needs. Compared to repair methods that require completely disassembling the outer shell or separating components, this embodiment only requires flipping the base 1 for repair, reducing damage and potential harm to the overall structure of the incubator caused by excessive disassembly, and thus extending the incubator's service life.
[0027] Optionally, such as Figure 1As shown, a support rod 21 is rotatably connected to the inner side of the end of the connecting plate 2 away from the hinge structure 5. The support rod 21 is used to provide multi-angle positioning support when the bed base 1 is flipped open.
[0028] Specifically, the inner side is the end of the connecting plate near its central position. The support rod 21 is rotatably connected to the connecting plate 2, allowing the support rod 21 to rotate at a certain angle relative to the connecting plate 2. After the bed base 1 is rotated to a suitable angle, technicians can operate the support rod 21 to rotate it to a position matching the bed base 1, so that one end of the support rod 21 contacts the bed base 1 and provides support force. This achieves multi-angle positioning support for the bed base 1, ensuring that the bed base 1 remains in a stable open state during maintenance, facilitating maintenance operations by technicians.
[0029] In this optional embodiment, the support rod 21 provides multi-angle positioning support when the bed base 1 is flipped open, effectively preventing the bed base 1 from shaking or closing due to its own weight or other external forces. This provides a stable and reliable working platform for maintenance operations, improving the safety and accuracy of maintenance. Since the maintenance of different internal components may require different operating angles and spaces, the multi-angle positioning support function of the support rod 21 allows the bed base 1 to be adjusted to a suitable opening angle according to actual maintenance needs, meeting the operational requirements of different maintenance scenarios and further improving the flexibility and convenience of maintenance. Compared to other complex support structures or methods requiring additional tools for fixation, the support rod 21 in this embodiment adopts a rotating connection design, which is simple and convenient to operate. Technicians only need to rotate the support rod 21 after the bed base 1 is flipped to a suitable angle to achieve positioning support, without the need for additional tools or complex installation and disassembly operations, saving maintenance time and effort.
[0030] Optionally, such as Figure 1 As shown, the connecting plate 2 is provided with a limiting block 7 on the outer side of one end of the hinge mechanism. When the bed base 1 is flipped open relative to the connecting plate 2 to the maximum preset position, the bottom of the incubator 3 abuts against the limiting block 7.
[0031] Specifically, when the bed base 1 is flipped open relative to the connecting plate 2 around the hinge structure 5, the bed base 1 moves the incubator 3 along with it as the flipping angle gradually increases. When the bed base 1 is flipped open to the maximum preset position, the bottom of the incubator 3 will abut against the limiting block 7 on the outer side of the connecting plate 2. At this time, the limiting block 7 acts as a stop, restricting the bed base 1 from continuing to flip, thereby fixing the bed base 1 in the maximum preset open position and providing a stable working space for subsequent maintenance operations. The limiting block 7 is a key component for limiting the flipping angle of the bed base 1. Its material, shape, and size need to be reasonably selected and designed according to factors such as the overall structure of the incubator, the weight of the bed base 1, and the flipping torque. For example, the limiting block 7 should have sufficient strength and wear resistance to withstand the pressure and friction when the bottom of the incubator 3 abuts; its shape should match the contact surface of the bottom of the incubator 3 to ensure stability and reliability during abutment.
[0032] In this optional embodiment, by setting a limiting block 7, when the bed base 1 is flipped open to the maximum preset position, the bottom of the incubator 3 abuts against the limiting block 7. This accurately determines the maximum opening angle of the bed base 1, helping technicians to clearly understand the stable state of the bed base 1 during maintenance operations. This avoids damage to the incubator 3 or inconvenience in maintenance operations due to excessive flipping, improving the accuracy and safety of maintenance operations. The presence of the limiting block 7 effectively prevents damage to the incubator 3 and other related structures caused by excessive opening of the bed base 1 during flipping. For example, it avoids violent collisions between the incubator 3 and the connecting plate 2 or other components, reducing the risk of structural deformation and breakage, and extending the service life of the incubator. Since the limiting block 7 can quickly and accurately position the bed base 1 at the maximum preset opening position, technicians do not need to spend extra time and effort adjusting the angle of the bed base 1 and can directly perform maintenance operations in this stable state, thereby improving maintenance efficiency, shortening equipment downtime, and facilitating the rapid restoration of the incubator to normal use.
[0033] Optionally, such as Figure 3 As shown, the end of the bed base 1 away from the hinge structure 5 is provided with a support plate 11 extending inward. The surface of the support plate 11 is provided with anti-slip texture. When the bed base 1 is flipped open relative to the connecting plate 2, the support plate 11 is used to abut against one end of the support rod 21.
[0034] Specifically, when the bed base 1 is opened to a suitable maintenance angle, the support plate 11 can just abut against one end of the support rod 21. The surface of the support plate 11 is provided with anti-slip texture. During the abutment process, the anti-slip texture is in close contact with the surface of the support rod 21, increasing the friction between the two and preventing relative sliding between the support plate 11 and the support rod 21. Through the abutment and cooperation between the support plate 11 and the support rod 21, the bed base 1 is provided with stable support, allowing it to remain stably in the open position. This creates a safe and stable operating space for maintenance personnel, facilitating the maintenance and upkeep of the components inside the incubator.
[0035] In this optional embodiment, the abutting cooperation between the support plate 11 and the support rod 21 provides an additional support point for the bed base 1, greatly enhancing the stability of the bed base 1 in the open state. During maintenance, it effectively prevents the bed base 1 from shaking or accidentally closing due to its own weight, minor external impacts, or accidental touch by the operator, providing a solid safety guarantee for maintenance operations and improving the accuracy and safety of maintenance work. The anti-slip texture significantly increases the coefficient of friction between the support plate 11 and the support rod 21, ensuring a tight fit between the two and preventing slippage due to insufficient friction. Even with some external interference or operator hand movements during maintenance, the stable cooperation between the support plate 11 and the support rod 21 can be guaranteed, further ensuring the stable open state of the bed base 1 and making maintenance operations smoother and more efficient.
[0036] Optionally, such as Figure 3 As shown, the support plate 11 is provided with a positioning hole 111, and the end of the connecting plate 2 away from the hinge mechanism is provided with a positioning protrusion 22. When the bed base 1 is in a closed state relative to the connecting plate 2, the positioning protrusion 22 is inserted into the positioning hole 111.
[0037] Specifically, when the bed base 1 needs to be in a closed state relative to the connecting plate 2, that is, when the bed base 1 and the connecting plate 2 are roughly horizontally parallel and there is no maintenance access port 6 between them, the positioning protrusion 22 at the end of the connecting plate 2 away from the hinge mechanism will move closer to the support plate 11 as the bed base 1 moves. Since the support plate 11 is pre-equipped with positioning holes 111 that match the positioning protrusion 22, during the closing process of the bed base 1, the positioning protrusion 22 will gradually insert into the positioning hole 111, achieving precise positioning and fixed connection between the two. The insertion and engagement of the positioning hole 111 and the positioning protrusion ensures that the bed base 1 and the connecting plate 2 can be tightly joined in the closed state, preventing shaking or relative displacement between the two, and ensuring the stability and sealing of the overall structure of the incubator.
[0038] In this optional embodiment, the insertion and engagement of the positioning protrusion 22 with the positioning hole 111 provides precise positioning for the closure of the bed base 1 and the connecting plate 2. During the closure process, the positioning protrusion 22 guides the bed base 1 to accurately align with the connecting plate 2, avoiding installation difficulties or structural instability caused by inaccurate positioning, thus improving the assembly efficiency and quality of the incubator. When the positioning protrusion 22 is inserted into the positioning hole 111, a tight connection is formed between the two, effectively preventing relative shaking or displacement between the bed base 1 and the connecting plate 2 in the closed state. This ensures that the incubator maintains good structural stability during normal use, reduces noise and vibration caused by structural loosening, and improves the performance and reliability of the incubator.
[0039] Optionally, such as Figure 3 As shown, one end of the support rod 21 is connected to a support column 211, and a rubber buffer pad is sleeved on the outer periphery of the support column 211. The support column 211 is used to abut against one side of the support plate 11.
[0040] Specifically, one end of the support rod 21 is connected to a support column 211, and a rubber buffer pad is fitted around the outer periphery of the support column 211. When the bed base 1 is flipped open relative to the connecting plate 2 to a certain angle for maintenance or other operations, the support column 211 moves closer to the support plate 11 as the support rod 21 moves. Eventually, the support column 211 will abut against one side of the support plate 11. At this time, the rubber buffer pad is located between the support column 211 and the support plate 11. When the support column 211 is subjected to gravity, pressure, or other forces from the support plate 11 or the bed base 1, the rubber buffer pad will undergo elastic deformation, absorbing and dispersing part of the force, thus playing a buffering role and preventing excessive impact force from being generated between the support column 211 and the support plate 11 due to direct rigid contact, thereby ensuring the stability and reliability of the entire support structure.
[0041] In this optional embodiment, the elastic properties of the rubber buffer pad can effectively absorb and disperse the impact force between the support column 211 and the support plate 11, avoiding rigid contact between the support column 211 and the support plate 11, and preventing surface wear, scratches, or even deformation caused by collision. Furthermore, the buffering effect of the rubber buffer pad makes the contact between the support column 211 and the support plate 11 more stable. The elastic deformation of the buffer pad can compensate for gaps caused by manufacturing errors, installation deviations, or deformation during use, ensuring that the support column 211 can always be tightly pressed against the support plate 11, providing stable support for the bed base 1 and ensuring the safety and accuracy of maintenance operations.
[0042] Optionally, such as Figure 2As shown, the bed base 1 has a clearance hole 12 on the side near the connecting plate 2. When the bed base 1 is in a closed state relative to the connecting plate 2, one end of the support column 211 extends out of the outside of the bed base 1 through the clearance hole 12 to form a force application handle 212.
[0043] Specifically, when the bed base 1 is in the closed state relative to the connecting plate 2, the support column 211, which is originally connected to one end of the support rod 21, is positioned such that one end of it can extend out of the outside of the bed base 1 through the clearance hole 12. At this time, the end of the support column 211 extending out of the outside of the bed base 1 naturally forms a force-applying handle 212, which facilitates the operator to apply force to the bed base 1 to open or close the bed base 1.
[0044] In this optional embodiment, the force-applying handle 212 greatly facilitates the operator's operation of the bed base 1. When it is necessary to open or close the bed base 1, the operator does not need to find other tools or suitable force-applying points. They can easily apply force by simply holding the force-applying handle 212 formed by the support column 211 to open or close the bed base 1, thus improving the convenience and efficiency of operation.
[0045] Optionally, the bed base 1 is provided with a modular mounting frame, and the heating module, sensor and circuit board are fixed to the mounting frame by quick-release buckles, and the electrical connection interfaces of the heating module, sensor and circuit board are arranged facing the maintenance operation port 6.
[0046] Specifically, the quick-release clip consists of a clip body and a corresponding slot. During installation, simply align the clip body on the heating module, sensor, and circuit board with the slot on the mounting frame and press gently to achieve quick fixation. For disassembly, press the release button on the clip to easily remove the component from the mounting frame. Furthermore, for ease of maintenance, the electrical connection interfaces of the heating module, sensor, and circuit board are all arranged facing the maintenance access port 6. When these components need repair, replacement, or adjustment, maintenance personnel can directly operate on their electrical connection interfaces through the maintenance access port 6 without disassembling the entire bed base 1 or other numerous components, greatly improving maintenance efficiency and convenience.
[0047] In this optional embodiment, the electrical connection interface is arranged towards the maintenance access port 6, enabling maintenance personnel to quickly and accurately locate the interface requiring operation, significantly shortening maintenance time. The quick-release clip design makes component disassembly and installation very simple, allowing maintenance personnel to easily replace or repair components without using complex tools, reducing maintenance difficulty and cost.
[0048] Optionally, such as Figure 1As shown, the side wall of the bed base 1 is provided with a heat dissipation hole array 13, which is used to assist the internal components in heat dissipation during normal operation of the equipment and prevent overheating damage.
[0049] Specifically, during the operation of the infant incubator, various electronic components inside (such as heating modules, sensors, circuit boards, etc.) generate heat. If this heat cannot be dissipated in time, it will cause the internal temperature to rise, affecting the performance and lifespan of the components, and may even cause component damage, thus affecting the normal operation of the infant incubator. A heat dissipation hole array 13 is provided on the side wall of the bed base 1. The heat dissipation hole array 13 consists of multiple heat dissipation holes arranged in a certain pattern. These heat dissipation holes provide channels for the heat generated by the internal components to dissipate outwards. When the internal components are working, heat is transferred to the air inside the bed base 1 and the surface of the components in contact with the air through thermal conduction. As the internal air temperature rises, the air will generate convection due to the principle of thermal expansion and contraction. Hot air flows outwards through the heat dissipation hole array 13, while relatively cooler external air is replenished, forming a natural air convection circulation. Through this air convection, the heat generated by the internal components is continuously carried away, thereby achieving the purpose of assisting in the heat dissipation of the internal components and preventing damage to the components due to overheating.
[0050] In this optional embodiment, the heat dissipation hole array 13 effectively prevents internal components from being damaged by overheating, extends the service life of the components, and reduces the maintenance cost and frequency of component replacement. Good heat dissipation performance enables the equipment to maintain stable performance during long-term operation, reduces the probability of failures due to overheating, and improves the overall reliability of the equipment.
[0051] Optionally, such as Figure 2 As shown, the hinge structure 5 is a hinge, and there are two hinges, which are respectively set on both sides of the connection end between the bed base 1 and the connecting plate 2 to ensure the stability of the bed base 1 when it is turned over.
[0052] Specifically, a hinge is a common mechanical component used to connect two objects and allow them to rotate relative to each other. It typically consists of two blades and a shaft connecting these two blades. When the bed base 1 needs to be flipped, the hinge's shaft connection allows the bed base 1 to rotate around the hinge's shaft. In this embodiment, there are two hinges, respectively located on both sides of the connection between the bed base 1 and the connecting plate 2. This ensures that both sides of the bed base 1 receive effective support and guidance from the hinges during the flipping process. When a flipping force is applied to the bed base 1, the hinges on both sides simultaneously bear the torque and guide the bed base 1 to rotate smoothly and steadily around the shaft, thus ensuring the stability of the bed base 1 during flipping.
[0053] In this optional embodiment, two hinges are respectively installed on both sides of the connection end between the bed base 1 and the connecting plate 2, which greatly improves the stability of the bed base 1 when it is flipped. During the flipping process, the hinges on both sides can evenly distribute the torque, avoiding problems such as flipping wobbling and jamming caused by uneven force on one side, and ensuring that the bed base 1 can flip smoothly in the expected direction and angle.
[0054] Although the present invention has been disclosed above, its protection scope is not limited thereto. Those skilled in the art can make various changes and modifications without departing from the spirit and scope of the present invention, and all such changes and modifications will fall within the protection scope of the present invention.
Claims
1. An infant incubator, characterized in that, include: The bed base (1) and the connecting plate (2) are provided. The bed base (1) is located on the connecting plate (2). The top of the bed base (1) is connected to the incubator (3). The bottom of the connecting plate (2) is connected to the support frame (4). The bed base (1) is equipped with a heating module, a sensor, and a circuit board. One end of the bed base (1) is connected to the connecting plate (2) through a hinge structure (5). The other end of the bed base (1) can be flipped open relative to the connecting plate (2) around the hinge structure (5) to form a maintenance operation port (6). The position of the maintenance operation port (6) corresponds to the maintenance area space of the heating module, the sensor, and the circuit board exposed after flipping.
2. The infant incubator according to claim 1, characterized in that, A support rod (21) is rotatably connected to the inner side of the end of the connecting plate (2) away from the hinge structure (5). The support rod (21) is used to provide multi-angle positioning support when the bed base (1) is flipped open.
3. The infant incubator according to claim 2, characterized in that, The connecting plate (2) is provided with a limiting block (7) on the outer side of one end of the hinge mechanism. When the bed base (1) is flipped open relative to the connecting plate (2) to the maximum preset position, the bottom of the culture box (3) abuts against the limiting block (7).
4. The infant incubator according to claim 2, characterized in that, The bed base (1) has a support plate (11) at one end away from the hinge structure (5). The surface of the support plate (11) has anti-slip texture. When the bed base (1) is flipped open relative to the connecting plate (2), the support plate (11) is used to abut against one end of the support rod (21).
5. The infant incubator according to claim 4, characterized in that, The support plate (11) is provided with a positioning hole (111), and the end of the connecting plate (2) away from the hinge mechanism is provided with a positioning protrusion (22). When the bed base (1) is in a closed state relative to the connecting plate (2), the positioning protrusion (22) is inserted into the positioning hole (111).
6. The infant incubator according to claim 5, characterized in that, One end of the support rod (21) is connected to a support column (211), and a rubber buffer pad is sleeved on the outer periphery of the support column (211). The support column (211) is used to abut against one side of the support plate (11).
7. The infant incubator according to claim 6, characterized in that, The side wall of the bed base (1) is provided with a clearance hole (12). When the bed base (1) is in a closed state relative to the connecting plate (2), one end of the support column (211) extends out of the outside of the bed base (1) through the clearance hole (12) to form a force application handle (212).
8. The infant incubator according to claim 1, characterized in that, The bed base (1) is provided with a modular mounting frame. The heating module, the sensor and the circuit board are fixed on the mounting frame by quick-release buckles, and the electrical connection interfaces of the heating module, the sensor and the circuit board are arranged in the direction of the maintenance operation port (6).
9. The infant incubator according to claim 8, characterized in that, The bed base (1) has a heat dissipation hole array (13) on its side wall, which is used to assist the internal components in heat dissipation during normal operation of the equipment.
10. The infant incubator according to any one of claims 1-9, characterized in that, The hinge structure (5) is a hinge, and there are two hinges, which are respectively located on both sides of the connection end between the bed base (1) and the connecting plate (2).