Insulin pen storage stand
Patent Information
- Application Number
- CN202520784725.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-04-23
AI Technical Summary
[0005]为了解决当前医疗实践中,医护人员在为批量住院病患注射胰岛素前,需通过在胰岛素笔上粘贴贴纸并标记床号来匹配病患,这一过程既繁琐又耗时;此外,由于多支胰岛素笔杂乱无章地存放在治疗车上,医护人员不得不花费额外时间寻找对应床号的胰岛素笔,从而降低了工作效率的问题,本实用新型提供一种胰岛素笔储存放置架
[0024] The beneficial effects of this invention are as follows: By setting a base plate with multiple slots, this invention allows medical staff to install the appropriate number of supports and trays according to actual needs. The mounting holes on the supports can secure insulin pens, while the information plate on one side of the support is used to label the insulin pen with the corresponding patient information. This ensures both orderly placement of the insulin pens and clear identification of patient information. During use, medical staff can quickly find the required information and indicate whether the patient has completed the injection by sliding the information plate. This invention is easy to operate and significantly improves the work efficiency of medical staff.
Smart Images

Figure CN224762264U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical device management technology, and in particular to an insulin pen storage rack. Background Technology
[0002] An insulin pen is a portable injection device designed specifically for diabetic patients. Resembling a pen in appearance, it is easy to carry. It uses a cartridge to store insulin, and injection is simple: just remove the cap. This eliminates the cumbersome process of drawing insulin from a vial, as with traditional syringes. In medical facilities, for hospitalized patients requiring regular insulin injections, healthcare staff prepare insulin cartridges in advance according to each patient's specific dosage and administer injections individually based on bed number markings.
[0003] In current technology, healthcare workers typically mark bed numbers on stickers and attach them to the corresponding insulin pens to ensure a match with the patient. However, this process is relatively cumbersome. Because multiple insulin pens are scattered around the treatment cart, healthcare workers need to spend time searching for the correct pen for each bed number when administering injections, reducing work efficiency.
[0004] Therefore, existing technologies still need to be improved and developed. Utility Model Content
[0005] To address the current medical practice where healthcare workers need to match patients with their insulin pens by attaching stickers and marking bed numbers before administering insulin to multiple hospitalized patients—a tedious and time-consuming process—and the fact that multiple insulin pens are stored haphazardly on the treatment cart, requiring healthcare workers to spend extra time searching for the correct pen for each bed number, thus reducing work efficiency, this invention provides an insulin pen storage rack.
[0006] This utility model is achieved through the following technical solution:
[0007] An insulin pen storage rack, wherein the insulin pen storage rack comprises:
[0008] A substrate, wherein a plurality of slots are provided on the substrate;
[0009] The support frame includes several supports, one side of which is provided with a tenon that is detachably adapted to the slot; a mounting hole is provided through the support frame for fixing the insulin pen; an information plate is provided on the other side of the support frame opposite to the tenon, and the information plate is slidably and detachably connected to the support frame.
[0010] The tray has several locking tabs on one side.
[0011] The insulin pen storage rack, wherein the support frame is provided with a groove corresponding to the position of the information board, and the support frame is the original magnet support frame;
[0012] A magnetic attractor is provided on the information board at the position corresponding to the slide groove, and the magnetic attractor is fitted and magnetically slidably disposed in the slide groove.
[0013] The insulin pen storage rack is wherein the latch and the support frame are integrally formed, and a locking element is provided inside the base plate corresponding to the position of the slot. The locking element is a permanent magnet locking element, and the latch engages with the slot and is magnetically connected.
[0014] The insulin pen storage holder includes a slot comprising a clearance slot hollowed out on one side of the substrate, a locking slot located inside the substrate and hollow, and a positioning slot penetrating the outer side of the substrate and the locking slot, wherein the positioning slot is connected to the clearance slot.
[0015] The latch includes an integrally formed latch plate, a connecting plate, and a positioning plate. The shape of the latch plate is adapted to the shape of the latching groove. The connecting plate connects the latch plate and the support frame. The positioning plate is connected to the corresponding side of the latch plate and the connecting plate and is adapted to the shape of the positioning groove.
[0016] The insulin pen storage rack has a tray with several placement slots, some of which have different shapes, or some of which have the same shape.
[0017] The insulin pen storage holder, wherein the substrate includes a first mounting surface, and a plurality of card slots are arranged in rows on the first mounting surface at predetermined intervals, and the card slot array has multiple rows.
[0018] The insulin pen storage holder, wherein the substrate includes a second mounting surface, and the second mounting surface is provided with a plurality of slots, and the second mounting surface is mirror-image of the first mounting surface.
[0019] The insulin pen storage holder has a handle at one end of the substrate for moving the substrate.
[0020] The insulin pen storage rack has an assembly part on the side of the first mounting surface opposite to the handle, and the assembly part includes slots corresponding to the number and position of the latches on the tray.
[0021] When the tray is mounted on the assembly, the bottom of the tray and the bottom of the base plate are in the same plane.
[0022] The insulin pen storage rack, wherein the substrate includes a third mounting surface, and the assembly portion is disposed on the third mounting surface;
[0023] When the tray is mounted on the assembly, the bottom of the tray and the side of the substrate facing away from the first mounting surface are in the same plane.
[0024] The beneficial effects of this invention are as follows: By setting a base plate with multiple slots, this invention allows medical staff to install the appropriate number of supports and trays according to actual needs. The mounting holes on the supports can secure insulin pens, while the information plate on one side of the support is used to label the insulin pen with the corresponding patient information. This ensures both orderly placement of the insulin pens and clear identification of patient information. During use, medical staff can quickly find the required information and indicate whether the patient has completed the injection by sliding the information plate. This invention is easy to operate and significantly improves the work efficiency of medical staff. Attached Figure Description
[0025] Figure 1 This is an exploded view of the structure of the insulin pen storage rack of this utility model;
[0026] Figure 2 This is a schematic diagram of the first embodiment of the insulin pen storage rack of this utility model;
[0027] Figure 3 This is a schematic diagram of the second embodiment of the insulin pen storage rack of this utility model;
[0028] Figure 4 This is a schematic diagram of the third embodiment of the insulin pen storage rack of this utility model.
[0029] exist Figures 1 to 4 In the middle: 100, base plate; 101, first mounting surface; 102, second mounting surface; 103, third mounting surface; 110, slot; 111, clearance slot; 112, engagement slot; 113, positioning slot; 120, handle; 130, assembly part; 200, support bracket; 210, mounting hole; 220, slide groove; 230, information board; 300, tray; 310, placement slot; 400, tenon; 410, locking plate; 420, connecting plate; 430, positioning plate. Detailed Implementation
[0030] To make the objectives, technical solutions, and effects of this utility model clearer and more explicit, the present utility model 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 only used to explain this utility model and are not intended to limit this utility model.
[0031] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicators will also change accordingly.
[0032] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, features defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. If the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0033] In current technology, healthcare workers typically mark bed numbers on stickers and attach them to the corresponding insulin pens to ensure a match with the patient. However, this process is relatively cumbersome. Because multiple insulin pens are scattered around the treatment cart, healthcare workers need to spend time searching for the correct pen for each bed number when administering injections, reducing work efficiency.
[0034] In view of the above-mentioned problems in the prior art, the present invention provides an insulin pen storage holder, such as... Figure 1 As shown, the insulin pen storage rack includes: a base plate 100, on which a plurality of slots 110 are provided; a support frame 200, on which a plurality of support frames 200 are provided, and on one side of each support frame 200 is a tenon 400 that is detachably adapted to the slots 110; a mounting hole 210 is provided through the support frame 200 for fixing the insulin pen; an information plate 230 is provided on the other side of the support frame 200 opposite to the tenon 400, and the information plate 230 is slidably and detachably connected to the support frame 200; and a tray 300, on one side of which a plurality of tenons 400 are provided.
[0035] This invention, by setting a base plate 100 with multiple slots 110, allows medical staff to install the appropriate number of support brackets 200 and trays 300 according to actual needs. The mounting holes 210 on the support brackets 200 can hold insulin pens, while the information board 230 on one side of the support bracket 200 is used to label the insulin pen with the corresponding patient information. This ensures both orderly placement of the insulin pens and clear identification of patient information. During use, medical staff can quickly find the required information and indicate whether the patient has completed injection by sliding the information board 230. This invention is easy to operate and significantly improves the work efficiency of medical staff.
[0036] In the above embodiments, such as Figure 1 As shown, the main body of the insulin pen storage holder of this utility model consists of a base plate 100, several support frames 200, and a tray 300. The base plate 100 is specifically a plate-shaped component. Several grooves 110 are recessed on the side of the base plate 100. Tenons 400 are respectively provided on the support frames 200 and the tray 300. Figure 1 As shown, the latch 400 is fixedly mounted on the support frame 200 and the tray 300. The diagram shows the structure separated for ease of understanding; those skilled in the art will understand the actual arrangement relationship between the latch 400 and the support frame 200 and the tray 300. The latch 400 is detachably adapted to the slot 110. In actual use, medical personnel can selectively install several support frames 200 and trays 300 on the base plate 100 according to actual needs, facilitating the transfer of insulin pens when injecting insulin into multiple patients.
[0037] In this embodiment, the support bracket 200 is provided with a through mounting hole 210. The diameter of the mounting hole 210 is adapted to the diameter of insulin pens in the prior art, so that medical staff can insert the configured insulin pen into the mounting hole 210 of the support bracket 200 to fix it. With multiple supports 200 provided on the base plate 100, several insulin pens can be arranged to facilitate access. On the other hand, by providing an information plate 230 on the side of the support bracket 200 away from the latch 400, patient information can be matched with the corresponding insulin pen, so as to facilitate quick access by medical staff.
[0038] Take a specific embodiment as an example:
[0039] The information board 230 can be preset with patient information, such as bed number information. There are 20 preset information boards 230, and each is set with a number from 1 to 20 as the corresponding bed information.
[0040] When patients in beds 1, 2, 5, 8, 10, 11, 12, 13, 15, and 18 require insulin injections, medical staff can remove and install corresponding number information tags 230 on several support frames 200, and then configure insulin pens according to the bed numbers. This allows for quick retrieval of insulin pens based on the bed number during subsequent injections, reducing the workload of medical staff during preparation and avoiding the time wasted by checking the information on each insulin pen before each injection. Furthermore, medical staff can directly carry the base plate 100 for insulin rounds, greatly improving operational convenience.
[0041] On the other hand, after an insulin injection is completed for a patient, the user can slide the information panel 230 to a predetermined position as an indication that the use is complete, for example... Figure 2 In the insulin pen storage rack shown, the second information card 230 on the left is slid down, which means that the patient corresponding to the information card 230 has completed the injection. The other information cards 230 located above are positioned as the corresponding patients who have not completed the injection. In this way, injection information can be recorded simply and quickly, avoiding medical accidents such as duplicate injections or missed injections.
[0042] In another possible embodiment of this utility model, such as Figure 1 As shown, to achieve the effect of the information board 230 being detachable, slidable, and preventing it from falling off during use, a groove 220 is specifically provided on the support frame 200 at the position corresponding to the information board 230. The groove 220 can be specifically designed as an oval shape. The support frame 200 is preferably a magnetic support frame 200. Correspondingly, a magnetic suction element is provided at the corresponding position on the side of the information board 230 corresponding to the groove 220. The shape of the magnetic suction element matches the shape of the groove 220 and is smaller than the length of the groove 220. The magnetic suction element is fitted and magnetically slidably disposed within the groove 220, ensuring the stability of the information board 230 when sliding on the support frame 200 and facilitating the disassembly and installation of the information board 230 by medical personnel. Furthermore, the cooperative design of the magnetic suction element and the groove 220 ensures that the information board 230 remains stable when slid to the predetermined position, preventing it from sliding or shifting due to accidental contact or other factors, further improving the practicality and reliability of this utility model.
[0043] Furthermore, during the actual installation of the slide groove 220, different colors can be applied to both ends of the slide groove 220, for example, in Figure 2 In the leftmost support 200, the information board 230 is located at the upper end of the slide 220, and the lower end of the slide 220 is exposed. The lower end of the slide 220 can then be painted red to indicate that the patient has not completed the injection; correspondingly, in Figure 2In the second support 200 on the left, the information board 230 is located at the lower end of the slide 220, and the upper end of the slide 220 is exposed. The upper end of the slide 220 can be painted green to indicate that the patient has completed the injection.
[0044] Based on the above embodiments, in another possible embodiment of this utility model, the above-mentioned tenon 400 and the support bracket 200 are integrally formed during the production process, or they can be manufactured separately and then fixedly connected. The support bracket 200 and the tenon 400 are made of the same material, both of which are made of original magnetic material. In order to make the tenon 400 more accurately and reliably engage in the slot 110, a locking member can also be provided inside the base plate 100 at the position corresponding to the slot 110. The locking member is embedded inside the base plate 100 (not shown in the figure), and the locking member is a permanent magnet component. Thus, when the tenon 400 and the slot 110 engage, the locking member corresponds to the tenon 400 and forms a magnetic connection, so as to achieve the effect of assisting installation and preventing falling off.
[0045] In another possible embodiment of this utility model, such as Figure 2 As shown, the aforementioned slot 110 is actually composed of three parts: a clearance slot 111, a locking slot 112, and a positioning slot 113. The clearance slot 111 is hollowed out on one side of the substrate 100 to provide space for the tenon 400 to enter. The locking slot 112 is located inside the substrate 100 and is hollow. The locking slot 112 is used to lock with the tenon 400. The positioning slot 113 extends through the outer side of the substrate 100 and the locking slot 112. The width of the positioning slot 113 is smaller than the width of the locking slot 112. In actual assembly, it has a corresponding structure with the tenon 400 to achieve a more stable locking effect.
[0046] Correspondingly, such as Figure 1 As shown, the aforementioned latch 400 includes an integrally formed latch plate 410, a connecting plate 420, and a positioning plate 430. The shape of the latch plate 410 is adapted to the shape of the latching groove 112, and plays the main role in latching and fixing during actual latching. The connecting plate 420 connects the latch plate 410 and the support bracket 200. The positioning plate 430 is connected to the corresponding sides of the latch plate 410 and the connecting plate 420 respectively, which plays the role of preventing deformation and breakage of the connection part of the connecting plate 420 and the latch plate 410. At the same time, it also forms a combination with the positioning groove 113 during the assembly process, thereby preventing the support bracket 200 from swinging after installation.
[0047] Furthermore, to further improve the stability and reliability of the connection between the support bracket 200 and the base plate 100, the engagement structure of the latch 400 and the slot 110 is designed to prevent mistaken insertion. Specifically, the shape and size of the latch 400 are designed to uniquely fit the slot 110, ensuring that the support bracket 200 can only be inserted and engaged in the slot 110 in a specific direction. This design effectively prevents misinsertion or misalignment of the support bracket 200 during installation, further enhancing the structural strength and safety of the entire insulin pen storage holder. In actual installation, the orientation of the slots 110 on the base plate 100 should be the same to prevent the support bracket 200 from falling off.
[0048] In another possible embodiment of this utility model, such as Figure 1 As shown, the tray 300 is provided with several placement slots 310, which have different shapes, or some of the placement slots 310 have the same shape. In actual use, the tray 300 is used to hold auxiliary tools such as alcohol swabs, cotton swabs, and gauze to meet the different needs of medical personnel during actual operations. This design not only improves the functionality of the tray 300 but also makes it easier for medical personnel to access the necessary auxiliary tools, further improving work efficiency.
[0049] In this utility model, the base plate 100, the support plate, and the tray 300 have multiple mounting and assembly methods, which are described in detail below:
[0050] For easier understanding, please refer to Figure 3 In this utility model, the side surface of the substrate 100 is divided into a first mounting surface 101, a second mounting surface 102 and a third mounting surface 103. By providing the above-mentioned slots 110 on the first mounting surface 101, the second mounting surface 102 and the third mounting surface 103 respectively, different mounting combination effects can be achieved.
[0051] First embodiment:
[0052] like Figure 2 As shown, in this embodiment, the substrate 100 includes a first mounting surface 101, and a plurality of slots 110 are arranged in rows at predetermined intervals on the first mounting surface 101. The slots 110 are arranged in multiple rows, allowing medical personnel to install multiple supports 200 in multiple rows on the substrate 100 according to actual usage needs, for placing multiple insulin pens. Simultaneously, a handle 120 is provided at one end (preferably the upper end) of the substrate 100, allowing the substrate 100 to be lifted to transfer multiple insulin pens on the substrate 100. Furthermore, an assembly portion 130 is also provided on the side of the first mounting surface 101 opposite to the handle 120 (see reference). Figure 1The assembly 130 includes slots 110 in the same number and position as the latches 400 on the tray 300, allowing the tray 300 to be mounted on the assembly 130. When the tray 300 is mounted on the assembly 130, the bottom of the tray 300 and the bottom of the base plate 100 are in the same plane, enabling the insulin pen storage holder of this invention to achieve the following... Figure 2 The upright placement shown facilitates the transport of the insulin pen. When an injection is needed, healthcare workers can simply pull the handle 120 to carry the pen to the patient, making the operation convenient and time-saving.
[0053] Second embodiment:
[0054] like Figure 3 As shown, in this embodiment, the substrate 100 further includes a second mounting surface 102, which is mirrored in configuration with the first mounting surface 101. A plurality of slots 110 are arranged in rows on the second mounting surface 102 at predetermined intervals. Thus, medical personnel can install multiple support brackets 200 in multiple rows on both sides of the substrate 100 according to actual usage needs, for placing multiple insulin pens. Simultaneously, a handle 120 is provided at one end (preferably the upper end) of the substrate 100, allowing the substrate 100 to be lifted to transfer multiple insulin pens on it. This embodiment is suitable for the transfer of large quantities of insulin pens and can be used in conjunction with existing auxiliary tools such as treatment carts in practical applications.
[0055] Third embodiment:
[0056] like Figure 4 As shown, in this embodiment, the substrate 100 further includes a third mounting surface 103, which is set at a certain angle to both the first mounting surface 101 and the second mounting surface 102, for example, perpendicularly (i.e.) Figure 3 (The bottom surface of the middle substrate 100). A similar assembly portion 130 as mentioned in the first embodiment is also provided on the third mounting surface 103. This assembly portion 130 includes slots 110 with the same number and position as the latches 400 on the tray 300, thereby allowing the tray 300 to be mounted on the assembly portion 130, thus forming a... Figure 4The planar installation style shown allows medical staff to install several support brackets 200 on the first mounting surface 101 in practical applications. The direction of the insulin pen placement corresponds to the direction of the placement slot 310 of the tray 300. This allows the insulin storage rack to be adapted as a large tray and placed flat on the treatment cart for use. This planar installation style not only saves space but also makes it easier for medical staff to access insulin pens and auxiliary tools, further improving work efficiency. Simultaneously, because the third mounting surface 103 is angled to both the first and second mounting surfaces 101, the insulin pen storage rack of this invention is more stable when placed and less prone to tipping over.
[0057] In the three embodiments described above, the design of the substrate 100, support frame 200, and tray 300 all demonstrate a high degree of modularity and combinability. Medical personnel can flexibly adjust the combination and quantity of each component according to actual needs to meet the usage requirements in different scenarios. Furthermore, the connection structure between the various components is stable and reliable, ensuring the safety and convenience of the insulin pen during storage and transportation.
[0058] In summary, this utility model provides an insulin pen storage rack, comprising: a base plate with several slots; several support brackets, each with a tenon on one side that detachably matches one of the slots; mounting holes through the support brackets for securing insulin pens; an information plate on the opposite side of the support bracket opposite the tenon, the information plate being slidably and detachably connected to the support bracket; and a tray with several tenons on one side. This utility model, by using a base plate with multiple slots, allows medical personnel to install the appropriate number of support brackets and trays according to actual needs. The mounting holes on the support brackets secure the insulin pens, while the information plates on one side of the support brackets label the insulin pens with the corresponding patient information, ensuring orderly placement of insulin pens and clear identification of patient information. During use, medical personnel can quickly find the required information and indicate whether the patient has completed injection by sliding the information plate. This utility model is easy to operate and significantly improves the work efficiency of medical personnel.
[0059] It should be understood that the application of this utility model is not limited to the examples above. Those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.
Claims
1. An insulin pen storage stand, characterized in that, Insulin pen storage rack includes: A substrate, wherein a plurality of slots are provided on the substrate; The support frame includes several supports, one side of which is provided with a tenon that is detachably adapted to the slot; a mounting hole is provided through the support frame for fixing the insulin pen; an information plate is provided on the other side of the support frame opposite to the tenon, and the information plate is slidably and detachably connected to the support frame. The tray has several locking tabs on one side.
2. The insulin pen storage stand of claim 1, wherein, The support frame is provided with a sliding groove corresponding to the position of the information board, and the support frame is the original magnet support frame; A magnetic attractor is provided on the information board at the position corresponding to the slide groove, and the magnetic attractor is fitted and magnetically slidably disposed in the slide groove.
3. The insulin pen storage stand of claim 2, wherein, The latch and the support frame are integrally formed. A locking element is provided inside the base plate corresponding to the position of the slot. The locking element is a permanent magnet locking element. The latch and the slot are engaged and magnetically connected.
4. The insulin pen storage stand of claim 1, wherein, The slot includes a clearance slot hollowed out on one side of the substrate, a locking slot located inside the substrate and hollowed out, and a positioning slot that passes through the outer side of the substrate and the locking slot. The positioning slot and the clearance slot are connected. The latch includes an integrally formed latch plate, a connecting plate, and a positioning plate. The shape of the latch plate is adapted to the shape of the latching groove. The connecting plate connects the latch plate and the support frame. The positioning plate is connected to the corresponding side of the latch plate and the connecting plate and is adapted to the shape of the positioning groove.
5. The insulin pen storage stand of claim 1, wherein, The tray is provided with several placement slots, and the shapes of the several placement slots are different, or some of the several placement slots have the same shape.
6. The insulin pen storage rack according to claim 1, characterized in that, The substrate includes a first mounting surface, and a plurality of the card slots are arranged in rows on the first mounting surface at predetermined intervals, and the card slot array has multiple rows.
7. The insulin pen storage stand of claim 6, wherein, The substrate includes a second mounting surface, on which a plurality of slots are provided, and the second mounting surface is mirror-image of the first mounting surface.
8. The insulin pen storage stand of claim 6, wherein, A handle is provided at one end of the substrate, and the handle is used to move the substrate.
9. The insulin pen storage stand of claim 8, wherein, A combination part is provided on the side of the first mounting surface opposite to the handle, and the combination part includes slots corresponding to the number and position of the latches on the tray; When the tray is mounted on the assembly, the bottom of the tray and the bottom of the base plate are in the same plane.
10. The insulin pen storage stand of claim 9, wherein, The substrate includes a third mounting surface, and the assembly portion is disposed on the third mounting surface; When the tray is mounted on the assembly, the bottom of the tray and the side of the substrate facing away from the first mounting surface are in the same plane.