Cell subpackaging consumable assembly and cell subpackaging equipment

By designing modular cell dispensing consumable components and equipment, simultaneous dispensing of multiple dispensing bags was achieved, solving the problems of low efficiency and high risk of contamination in existing technologies, improving dispensing accuracy and aseptic assurance, and simplifying the installation and disassembly process of consumables.

CN224117573UActive Publication Date: 2026-04-14SHANGHAI TOFFLON MEDICAL EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI TOFFLON MEDICAL EQUIP CO LTD
Filing Date
2025-04-11
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing cell dispensing equipment suffers from low efficiency, poor dispensing accuracy, and easy contamination due to manual operation. In particular, the installation and disassembly of soft bag consumables are cumbersome, affecting production efficiency and increasing the frequency of manual operation and the risk of error.

Method used

A cell dispensing consumable assembly was designed, including a fluid distribution pipeline, branch pipelines, and dispensing bags. It adopts a modular structure, combining multiple interfaces and pipeline design to achieve modular equipment design. Utilizing the patent CN118665799A, the patent proposes a new equipment design, providing a cell dispensing device including an equipment housing, a mother liquor supply unit, a fluid drive module, and a cell dispensing consumable assembly. This enables simultaneous dispensing of multiple dispensing bags and ensures uniformity and consistency in the dispensing process through a flow control mechanism.

Benefits of technology

It improves dispensing efficiency, reduces the risk of contamination from manual operation, enhances the level of aseptic protection, simplifies the installation and disassembly process of consumables, ensures the accuracy and stability of the dispensing process, and reduces the complexity and time cost of manual operation.

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Abstract

The utility model provides a cell subpackaging consumable assembly and cell subpackaging equipment. The consumable assembly comprises a fluid distribution pipeline, a plurality of branch pipelines and a plurality of subpackaging bags, the plurality of branch pipelines and the plurality of sub-packaging bags are arranged in a one-to-one correspondence manner, the plurality of branch pipelines are sequentially arranged along the length direction of the fluid distribution pipeline, one end of each branch pipeline is communicated with the fluid distribution pipeline, and the other end of each branch pipeline is connected with the corresponding sub-packaging bag; wherein the fluid distribution pipeline, the plurality of branch pipelines and the plurality of sub-packaging bags are connected into a whole. By arranging a combined structure of multiple groups of fluid distribution interfaces, multiple fluid distribution pipelines and branch pipelines, the function of synchronously sub-packaging multiple sub-packaging bags at one time is realized, and the sub-packaging efficiency is remarkably improved.
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Description

Technical Field

[0001] This utility model relates to the field of formulation packaging technology, and in particular to cell packaging consumables and cell packaging equipment. Background Technology

[0002] In the current field of cell dispensing, there are two main types of dispensing equipment: instrument-based and production line-based. Instrument-based dispensing equipment is typically suitable for scenarios where a small number of samples are dispensed at a time, relying on manual operation and control. However, this type of equipment has significant limitations in the soft bag dispensing process, such as the cumbersome installation and removal of consumables, which not only consumes manpower and time but also reduces production efficiency, limiting its application in a wider range of scenarios.

[0003] On the other hand, while automated packaging equipment on production lines improves production efficiency to some extent, its high cost and complex operation also limit its application. In actual production, the ease of use and operation of piping consumables become key factors affecting production efficiency and cost. Currently, most packaging piping consumables on the market focus on functionality while neglecting the importance of operability, resulting in a significant investment of manpower and time in actual production.

[0004] Furthermore, the equipment proposed in existing patent CN118665799A also suffers from similar problems. The installation and disassembly of soft bag consumables are difficult, affecting production efficiency, and the complex operation increases the risk of equipment use, posing a greater challenge to maintaining the sterility of the formulation. The consumable design in patent CN219821824U also fails to fully consider actual production application scenarios, resulting in a cumbersome preparation and installation process for consumables before soft bag dispensing in the dispensing equipment, especially for dispensing components such as clamp valves, which seriously wastes preparation time. During production, the replacement of tubing consumables is not only time-consuming and labor-intensive, reducing production efficiency, but also increases the frequency of manual operation, thereby increasing the risk of human error. Utility Model Content

[0005] The purpose of this invention is to solve the technical problems of low efficiency, poor accuracy and easy contamination caused by manual operation in the existing cell dispensing process.

[0006] The first aspect of this utility model provides a cell dispensing consumable assembly, comprising: a fluid distribution pipeline, multiple branch pipelines, and multiple dispensing bags;

[0007] The multiple branch pipes and multiple dispensing bags are set up one-to-one. The multiple branch pipes are arranged sequentially along the length of the fluid distribution pipe. One end of each branch pipe is connected to the fluid distribution pipe, and the other end is connected to the corresponding dispensing bag.

[0008] The fluid distribution pipeline, the multiple branch pipelines, and the multiple packaging bags are connected as one unit.

[0009] Furthermore, the fluid distribution pipeline is also provided with a pipeline plug, which is installed at the beginning of the fluid distribution pipeline.

[0010] Furthermore, the distribution pipeline is also provided with a first interface and a second interface, the first interface being used to connect an air filter or a pressure sensor, and the second interface being used to connect an air filter or a sealing bag.

[0011] Furthermore, the end of the fluid distribution line is connected to a drip chamber, which is used to prevent liquid from clogging the air filter.

[0012] Furthermore, it also includes: a fixed frame and multiple pipe clamps;

[0013] The fixed frame is rectangular in shape, and a support is provided between two opposite sides. The length direction of the side is consistent with the extension direction of the fluid distribution pipeline.

[0014] The multiple pipe clamps are divided into two groups and arranged on the two sides of the fixed frame, respectively. The pipe clamps on the two sides are used for guiding and limiting the branch pipes.

[0015] Furthermore, the pipe clamp has a through hole and a slot, the pipe clamp is engaged with the side of the fixed frame through the slot, and the branch pipe passes through the through hole.

[0016] A second aspect of this utility model provides a cell dispensing device, comprising: a device housing, a mother liquor supply unit, a fluid drive module, and cell dispensing consumable components as described above;

[0017] The equipment housing is provided with at least one dispensing station, and the cell dispensing consumable assembly is installed at the dispensing station;

[0018] The mother liquor supply unit includes a mother liquor container and a main distribution pipeline that corresponds to each of the cell dispensing consumables. The fluid distribution pipeline of each cell dispensing consumable is connected to the mother liquor container through the corresponding main distribution pipeline.

[0019] The fluid drive module includes a pump body that corresponds to each of the cell dispensing consumable components. The pump body is installed on the main distribution pipeline and is used to pump the liquid from the mother liquor container into the dispensing bag of the cell dispensing consumable component.

[0020] Furthermore, each sub-assembly station of the equipment housing has a strip-shaped protrusion structure. One end of the strip-shaped protrusion structure is provided with a slot, and one end of the fixing frame is engaged in the slot. The other end of the strip-shaped protrusion structure is provided with a hook, and the other end of the fixing frame is hung on the hook.

[0021] Furthermore, it also includes: flow rate detection pipeline, first clamp valve and second clamp valve;

[0022] The first pinch valve is fixed to the strip-shaped protrusion structure of the equipment box through the pinch valve mounting seat. The first pinch valve is used to control the opening and closing of the branch pipeline.

[0023] The flow rate detection pipeline is connected in parallel with the fluid distribution pipeline, and the second clamp valve is installed on the flow rate monitoring pipeline.

[0024] Furthermore, the cell dispensing device also includes:

[0025] The control unit includes a touch screen, which is mounted on the equipment housing and is used to control the working status of the pump body, the first clamp valve, and the second clamp valve.

[0026] Furthermore, the cell dispensing equipment also includes a combing unit, which includes a dispensing bag combing rack that corresponds to each dispensing station. Each dispensing bag combing rack is fixed to the corresponding dispensing station by a connector. Each dispensing bag combing rack is provided with multiple through holes, and multiple branch pipes pass through the through holes respectively.

[0027] Compared to existing technologies, this invention offers at least the following advantages: By combining multiple fluid distribution interfaces, multiple fluid distribution pipelines, and branch pipelines, it achieves simultaneous dispensing to multiple dispensing bags, significantly improving dispensing efficiency. Simultaneously, the flow control mechanism on each fluid distribution pipeline precisely adjusts the flow rate of each branch pipeline, ensuring uniformity and consistency in the dispensing process and effectively avoiding the volume error problems that easily occur in traditional manual dispensing methods. Furthermore, the pump's drive connection design enables automated control of the entire dispensing process, reducing the risk of contamination from manual operation and improving the aseptic assurance level of cell dispensing. The modular design allows for flexible disassembly and assembly of each pipeline component according to actual needs, facilitating equipment cleaning, disinfection, and daily maintenance. The mother liquor container, connected to each fluid distribution pipeline via the main distribution pipeline, ensures the stability and continuity of the mother liquor supply, providing reliable process assurance for batch cell dispensing. Attached Figure Description

[0028] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of this utility model. For those skilled in the art, other drawings can be obtained as provided without creative effort.

[0029] Figure 1 This is a schematic diagram of a cell dispensing consumable assembly in one embodiment of the present invention;

[0030] Figure 2 This is a schematic diagram of a fixed frame in one embodiment of the present invention;

[0031] Figure 3 This is a schematic diagram of a pipe clamp in one embodiment of the present invention;

[0032] Figure 4 This is a schematic diagram of the cell dispensing device in one embodiment of the present invention;

[0033] Figure 5 This is a side view and detailed schematic diagram of a cell dispensing device in one embodiment of the present invention;

[0034] Figure 6 This is a schematic diagram showing the connection between the cell dispensing consumable assembly and other components of the cell dispensing equipment in one embodiment of the present invention;

[0035] Figure 7 This is a schematic diagram of the installation of the pinch valve in one embodiment of the present invention;

[0036] Among them, 1-pressure sensor; 2-first clamp valve; 2'-second clamp valve; 3-pump body; 4-dispensing bag combing rack; 5-touch screen; 6-equipment box; 7-mother liquor container; 8-main distribution pipeline; 9-pipeline assembly; 10-pipeline plug; 11-te-way; 12-fluid distribution pipeline; 13-drip bucket; 14-drip bucket fixing clamp; 15-first interface; 16-fixing frame; 17-pipe clamp; 18-second interface; 19-branch pipeline; 20-dispensing bag; 21-slot; 22-clamp valve mounting seat. Detailed Implementation

[0037] The present invention will now be described in more detail with reference to the accompanying drawings, which illustrate preferred embodiments of the present invention. It should be understood that those skilled in the art can modify the present invention described herein while still achieving its advantageous effects. Therefore, the following description should be understood as being broadly known to those skilled in the art and is not intended to limit the present invention.

[0038] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0039] The present invention will be described in more detail below by way of example with reference to the accompanying drawings. The advantages and features of the present invention will become clearer as will be explained below. It should be noted that the drawings are in a very simplified form and use non-precise proportions, and are only used to facilitate and clarify the illustration of the embodiments of the present invention.

[0040] Example 1

[0041] This embodiment provides a cell dispensing consumable assembly; please refer to [reference needed]. Figure 1 It includes: a fluid distribution pipeline 12, multiple branch pipelines 19 and multiple packaging bags 20;

[0042] The multiple branch pipes 19 and multiple dispensing bags 20 are arranged in a one-to-one correspondence. The multiple branch pipes 19 are arranged sequentially along the length of the fluid distribution pipe 12. One end of each branch pipe 19 is connected to the fluid distribution pipe 12, and the other end is connected to the corresponding dispensing bag 20.

[0043] The fluid distribution pipeline 12, the multiple branch pipelines 19, and the multiple packaging bags 20 are connected as one unit.

[0044] Specifically, the fluid distribution line is used to distribute the mother liquor from the mother liquor container into each dispensing bag, while the branch lines are used to guide the mother liquor from the fluid distribution line into the corresponding dispensing bags. The dispensing bags are used to receive and store the dispensed mother liquor. The integrated design of the fluid distribution line, branch lines, and dispensing bags simplifies the installation and disassembly process of consumables and improves operational convenience.

[0045] In a preferred embodiment, the fluid distribution lines can be made of flexible materials to facilitate bending and repositioning, adapting to different dispensing station layouts. Branch lines can be made of transparent materials for easy observation of liquid flow. Dispensing bags can be made of sterile materials to ensure aseptic operation during the dispensing process.

[0046] In this embodiment, the multiple branch pipes 19 are arranged at equal intervals.

[0047] Since the number of dispensing bags 20 directly affects the size of the cell dispensing consumable assembly, a larger number results in a larger assembly, while a smaller number results in a smaller assembly. Considering that a large consumable assembly would be inconvenient to install and operate, and that too few dispensing bags 20 would lead to low dispensing efficiency, the preferred number of dispensing bags 20 is 10-20.

[0048] Furthermore, the fluid distribution pipeline 12 is also provided with a pipeline plug 10, which is installed at the beginning of the fluid distribution pipeline 12.

[0049] Specifically, the pipe plug 10 is used to prevent liquid leakage from the beginning of the pipe, ensuring the system's airtightness, helping to maintain stable pressure within the pipe, and preventing system pressure loss. It is also used to seal the pipe before consumable components are installed on the equipment, preventing foreign objects from entering the pipe system and protecting the system's cleanliness. This design ensures the airtightness of the entire pipe system, preventing contamination and cross-contamination. It allows for easy disassembly and cleaning when needed, facilitating pipe maintenance and replacement. It also prevents accidental liquid splashes, improving operator safety.

[0050] Furthermore, the distribution pipeline is also provided with a first interface 15 and a second interface 18. The first interface 15 is used to connect an air filter or a pressure sensor 1, and the second interface 18 is used to connect an air filter or a sealing bag.

[0051] Specifically, the air filter effectively filters the air entering the system, ensuring the system's sterility requirements; pressure sensor 1 is used for pipeline leak detection and exhaust pressure monitoring during the dispensing process, ensuring the stability and safety of the dispensing process. Preferably, in this embodiment, the air filter is a 0.2μm hydrophobic sterile filter.

[0052] For ease of installation, the first interface 15 and the second interface 18 can be arranged at a 90° orthogonal angle. By setting orthogonally arranged air filter interfaces and pressure monitoring interfaces on the distribution pipeline, both the aseptic requirements of the system are ensured, and the pressure within the pipeline can be monitored in real time, effectively guaranteeing the quality of the dispensing process. At the same time, the 90° orthogonal arrangement saves installation space, facilitates maintenance and replacement, and improves the practicality and reliability of the equipment. Furthermore, this arrangement effectively avoids mutual interference between the two interfaces, further enhancing the system's stability.

[0053] Furthermore, the end of the fluid distribution line 12 is connected to a drip chamber 13, which is used to prevent liquid from clogging the air filter.

[0054] In this embodiment, the dripping bucket 13 is used to monitor the fluid distribution process and is stably fixed by the dripping bucket fixing clamp 14. The fixing frame 16 provides a stable installation position for the dripping bucket 13, ensuring that the fluid distribution pipeline 12 remains stable during the dispensing process. The dripping bucket fixing clamp 14 firmly fixes the dripping bucket 13 to the fixing frame 16, preventing the dripping bucket 13 from shifting or loosening due to vibration or improper operation during the dispensing process. This improves the stability of the pipeline system and ensures precise control of the fluid distribution process. The installation and disassembly process of the dripping bucket 13 is simplified; operators can complete the installation with just a simple fixing operation. This design reduces the complexity of manual operation and improves the ease of use of the equipment. By simplifying the fixing method of the dripping bucket 13, the installation and disassembly time of pipeline consumables is reduced, avoiding cumbersome operating steps. This design significantly shortens the preparation time of the dispensing process, thereby improving overall production efficiency.

[0055] For further details, please refer to... Figure 2 and Figure 3 The cell dispensing consumables assembly also includes: a fixing frame 16 and multiple tube clamps 17.

[0056] The fixed frame 16 is rectangular in shape, and a support is provided between two opposite sides. The length direction of the side is consistent with the extension direction of the fluid distribution pipeline 12.

[0057] The multiple pipe clamps 17 are divided into two groups and arranged on the two sides of the fixed frame 16 respectively. The pipe clamps 17 on the two sides are used for guiding and limiting the branch pipes 19.

[0058] Specifically, the rectangular structure design of the fixed frame 16 makes installation and disassembly more convenient. The support components enhance the stability of the fixed frame 16, ensuring that it will not deform or shift during the assembly process. The grouped arrangement of the pipe clamps 17 allows the branch pipes to be fixed to the frame in an orderly manner, avoiding shaking or displacement of the pipes during the assembly process, thereby improving the accuracy and efficiency of the assembly. In this embodiment, the fixed frame 16 is made of round steel bent and welded, with three reinforcing ribs (i.e., support components) added in the middle to increase structural strength.

[0059] By introducing the design of the fixed frame 16 and pipe clamps 17, the problems of cumbersome, labor-intensive, and time-consuming consumable installation and disassembly processes in the existing technology are solved. The rectangular structure of the fixed frame 16 and the setting of the support components make the consumables more stable during the dispensing process, and the grouping arrangement of the pipe clamps 17 ensures the orderly fixation of the branch pipes, thereby improving dispensing efficiency and accuracy.

[0060] Furthermore, the pipe clamp 17 has a through hole and a slot, the pipe clamp 17 is engaged with the side of the fixing frame 16 through the slot, and the branch pipe 19 passes through the through hole.

[0061] In this embodiment, all fluid distribution pipes 12 are arranged vertically, and multiple branch pipes 19 are arranged equidistantly along the vertical direction and are all obliquely arranged, connected at predetermined positions and angles. Of the two clamps 17 corresponding to each branch pipe 19, the clamp 17 closer to the fluid distribution pipe 12 is higher than the clamp 17 farther from the fluid distribution pipe 12. Thus, liquid backflow will not occur during the dispensing process.

[0062] The through-hole design allows branch pipes to pass through smoothly and remain stable, while the slot ensures a tight connection between the pipe clamp and the side of the fixing frame, preventing displacement or loosening of the pipe clamp 17 during operation. Specifically, the diameter of the through-hole can be adjusted according to the size of the branch pipe to ensure that the branch pipe is not subjected to excessive friction or compression when passing through, thereby ensuring smooth fluid flow. The shape and size of the slot can also be optimized according to the side structure of the fixing frame to achieve a more secure clamping effect. As a preferred embodiment, the pipe clamp can be made of elastic material to better adapt to the side shape of the fixing frame during clamping, while providing a certain degree of cushioning to reduce vibration or impact on the branch pipe during operation.

[0063] Example 2

[0064] This embodiment provides a cell dispensing device; please refer to [reference needed]. Figure 4-6 It includes: equipment housing 6, mother liquor supply unit, fluid drive module, and cell dispensing consumables assembly as described in Example 1.

[0065] The equipment housing 6 is provided with at least one dispensing station, and the cell dispensing consumable assembly is installed at the dispensing station.

[0066] The mother liquor supply unit includes a mother liquor container 7 and a main distribution pipeline 8 that corresponds to each of the cell dispensing consumables. The fluid distribution pipeline 12 of each cell dispensing consumable is connected to the mother liquor container 7 through the corresponding main distribution pipeline 8.

[0067] The fluid drive module includes pump bodies 3, which are correspondingly arranged in one-to-one configuration with the cell dispensing consumables. The pump bodies 3 are installed on the main distribution pipeline 8 and are used to pump the liquid from the mother liquor container 7 into the dispensing bag 20 of the cell dispensing consumables.

[0068] Specifically, the equipment housing 6 can be equipped with multiple dispensing stations, each capable of housing cell dispensing consumables. During dispensing, the liquid in the mother liquor container 7 is transported through the main distribution pipeline 8, with each consumable component connected to the mother liquor container 7 via a corresponding main distribution pipeline 8. A pump 3 is installed on the main distribution pipeline 8, driving the liquid in the mother liquor container 7 through the fluid distribution pipeline 12 to the dispensing bag 20, thus completing the cell dispensing process. This design ensures that each dispensing station can operate independently without interference, improving dispensing efficiency.

[0069] For example, the equipment housing 6 has 5 dispensing stations, each equipped with one cell dispensing consumable assembly, and each assembly contains 15 dispensing bags. Thus, 75 bags of formulation can be dispensed simultaneously within the same batch.

[0070] Furthermore, each sub-assembly station of the equipment housing 6 has a strip-shaped protrusion structure. One end of the strip-shaped protrusion structure is provided with a slot 21, one end of the fixing frame 16 is engaged in the slot 21, and the other end of the strip-shaped protrusion structure is provided with a hook, and the other end of the fixing frame 16 is hung on the hook.

[0071] As a preferred embodiment, the strip-shaped protrusion structure can be made of metal or high-strength plastic materials to ensure its durability and load-bearing capacity. The surfaces of the slots and hooks can be smoothed to reduce frictional resistance during installation, making operation smoother. Furthermore, the length and width of the strip-shaped protrusion structure can be adjusted according to the specific dimensions of the assembly station to accommodate different sizes of fixing frames.

[0072] The slot and hook design of the strip-shaped protrusion structure allows the fixing frame to be installed through simple snap-fit ​​and hanging operations, avoiding the cumbersome steps required by screws or other fasteners in traditional installation methods, while also ensuring the orderly arrangement of the first clamp valves 2. The shape and size of the slot can be optimized according to the end structure of the fixing frame to ensure the stability of the snap-fit. The hook design further ensures the stability of the fixing frame after installation, preventing displacement or loosening during operation.

[0073] For further details, please refer to... Figure 7 The cell dispensing equipment also includes: a flow rate detection pipeline, a first clamp valve 2 and a second clamp valve 2'; the first clamp valve 2 is fixed to the strip-shaped protrusion structure of the equipment housing 6 by a clamp valve mounting seat 22, and the first clamp valve 2 is used to control the opening and closing of the branch pipeline 19.

[0074] The flow rate detection pipeline is connected in parallel with the fluid distribution pipeline 12, and the second clamp valve 2' is installed on the flow rate monitoring pipeline.

[0075] The flow rate monitoring line is designed to monitor the fluid flow in the pipeline in real time, ensuring a stable flow rate during the dispensing process. The flow rate is detected through this line before dispensing. During dispensing, the dispensing time is set based on the flow rate and the volume of the dispensing bag. As a preferred embodiment, the flow rate monitoring line can be made of a transparent material for easy observation of the fluid flow.

[0076] The first pinch valve 2 and the second pinch valve 2' can also be tightly connected to the equipment housing 6 by screws, clips, or other fixing methods. The design of the pinch valve mounting base 22 ensures that the pinch valve 2 will not loosen or shift during equipment operation, thereby guaranteeing the stability and reliability of flow control. The first pinch valve 2 and the second pinch valve 2' can be solenoid valves or pneumatic valves, achieving rapid response through control signals. The pinch valve mounting base 22 can be made of metal and fixed to the equipment housing by bolts or clips to ensure its stability. The setting of the first pinch valve 2 and the second pinch valve 2' allows for quick cutting off or opening of the pipeline when needed, improving operational flexibility and safety. The pinch valve mounting base 22 ensures that the pinch valves are firmly fixed to the equipment housing, preventing valve displacement or damage due to vibration or improper operation.

[0077] Furthermore, the cell dispensing device also includes:

[0078] The control unit includes a touch screen 5, which is mounted on the equipment housing 6 and is used to control the working status of the pump body 3, the first clamp valve 2, and the second clamp valve 2'.

[0079] Specifically, the touchscreen 5 serves as the device's operating interface, enabling human-machine interaction. Through the touchscreen 5, operators can easily set dispensing parameters (such as flow rate and dispensing volume) and monitor the device's operating status in real time. The touchscreen 5 is directly connected to the pump body 3, achieving precise control of the pump body 3's operating status through a built-in control program. The touchscreen 5 is installed in a prominent position within the device housing 6, allowing operators to quickly view and adjust device parameters during operation. The touchscreen 5 is typically installed in an embedded or bracket-fixed manner to ensure it does not shake or shift during device operation. In this embodiment, the touchscreen 5 is mounted on one side of the device housing 6 using a mounting bracket. Precisely setting dispensing parameters through the touchscreen 5 enables refined control of the dispensing process, avoiding human error.

[0080] Furthermore, the cell dispensing equipment also includes a combing unit, which includes a dispensing bag combing rack 4 that is arranged one-to-one with the dispensing station. Each dispensing bag combing rack 4 is fixed to the corresponding dispensing station by a connector. Each dispensing bag combing rack 4 is provided with multiple through holes, and multiple branch pipes 19 pass through the through holes respectively.

[0081] The bag sorting rack 4 is used to fix and organize the bag 20, ensuring that each bag 20 is accurately positioned and neatly arranged during the sorting process, preventing the bags 20 from getting tangled or knotted, which would affect the sorting process and production efficiency. The design of the bag sorting rack 4 facilitates quick bag 20 replacement by operators while preventing displacement of the bags 20 during sorting. The bag sorting rack 4 has multiple through holes, each corresponding to a branch pipe 19. The branch pipe 19 passes through the through holes and connects to the bag 20 to distribute the fluid to each bag 20. The bag sorting rack 4 is fixed to the sorting station by connectors, which can be screws, clips, or other fixing structures. This fixing method ensures that the bag sorting rack 4 will not shake or shift during the sorting process, thus guaranteeing the stability and consistency of the sorting process.

[0082] The above-described specific examples are for illustrative purposes only and are not intended to limit the scope of this invention. Those skilled in the art to which this invention pertains can make various simple deductions, modifications, or substitutions based on the concept of this invention.

Claims

1. A cell dispensing consumable assembly, characterized in that, include: One fluid distribution line (12), multiple branch lines (19) and multiple packaging bags (20); The multiple branch pipes (19) and multiple packaging bags (20) are arranged in a one-to-one correspondence. The multiple branch pipes (19) are arranged sequentially along the length of the fluid distribution pipe (12). One end of each branch pipe (19) is connected to the fluid distribution pipe (12), and the other end is connected to the corresponding packaging bag (20). The fluid distribution pipeline (12), the multiple branch pipelines (19), and the multiple packaging bags (20) are connected as one unit.

2. The cell dispensing consumable assembly as described in claim 1, characterized in that, The fluid distribution pipeline (12) is also provided with a pipeline plug (10), which is installed at the beginning of the fluid distribution pipeline (12).

3. The cell dispensing consumable assembly as described in claim 1, characterized in that, The fluid distribution pipeline (12) is provided with a first interface (15) and a second interface (18) at its end. The first interface (15) is used to connect an air filter and a pressure sensor, and the second interface (18) is used to connect a pressure sensor or a sealing bag.

4. The cell dispensing consumable assembly as described in claim 3, characterized in that, The end of the fluid distribution line (12) is connected to a drip chamber (13), which is used to prevent liquid from clogging the air filter.

5. The cell dispensing consumable assembly as described in claim 1, characterized in that, Also includes: A fixed frame (16) and multiple pipe clamps (17); The fixed frame (16) is rectangular in shape, and a support is provided between two opposite sides. The length direction of the side is consistent with the extension direction of the fluid distribution pipeline (12). The multiple pipe clamps (17) are divided into two groups and arranged on the two sides of the fixed frame (16). The pipe clamps (17) on the two sides are used for guiding and limiting the branch pipe (19).

6. The cell dispensing consumable assembly as described in claim 5, characterized in that, The pipe clamp (17) has a through hole and a slot. The pipe clamp (17) is engaged with the side of the fixed frame (16) through the slot. The branch pipe (19) passes through the through hole.

7. A cell dispensing device, characterized in that, include: The equipment housing (6), the mother liquor supply unit, the fluid drive module, and the cell dispensing consumables assembly as described in any one of claims 1 to 6; The equipment housing (6) is provided with at least one dispensing station, and the cell dispensing consumable assembly is installed on the dispensing station; The mother liquor supply unit includes a mother liquor container (7) and a main distribution pipeline (8) corresponding to each of the cell dispensing consumable components. The fluid distribution pipeline (12) of each cell dispensing consumable component is connected to the mother liquor container (7) through the corresponding main distribution pipeline (8). The fluid drive module includes a pump body (3) that corresponds to the cell dispensing consumables assembly. The pump body (3) is installed on the main distribution pipeline (8) and is used to pump the liquid from the mother liquor container (7) into the dispensing bag (20) of the cell dispensing consumables assembly.

8. The cell dispensing apparatus as described in claim 7, characterized in that, Each assembly station of the equipment housing (6) has a strip-shaped protrusion structure. One end of the strip-shaped protrusion structure is provided with a slot (21). One end of the fixing frame (16) is engaged in the slot (21). The other end of the strip-shaped protrusion structure is provided with a hook. The other end of the fixing frame (16) is hung on the hook.

9. The cell dispensing device as described in claim 8, characterized in that, Also includes: Flow rate detection pipeline, first clamp valve (2) and second clamp valve (2'); The first pinch valve (2) is fixed to the strip-shaped protrusion structure of the equipment box (6) by the pinch valve mounting seat (22). The first pinch valve (2) is used to control the opening and closing of the branch pipeline (19). The flow rate detection pipeline is connected in parallel with the fluid distribution pipeline (12), and the second clamp valve (2') is installed on the flow rate monitoring pipeline.

10. The cell dispensing device as described in claim 9, characterized in that, The cell dispensing equipment also includes: The control unit includes a touch screen (5), which is mounted on the equipment housing (6) and is used to control the working status of the pump body (3), the first clamp valve (2), and the second clamp valve (2').

11. The cell dispensing apparatus as described in claim 7, characterized in that, The cell dispensing equipment also includes a combing unit, which includes a dispensing bag combing rack (4) that is set one-to-one with the dispensing station. Each dispensing bag combing rack (4) is fixed to the corresponding dispensing station by a connector. Each dispensing bag combing rack (4) is provided with multiple through holes, and multiple branch pipes (19) pass through the through holes respectively.

Citation Information

Patent Citations

  • Sample split charging pipe set and system

    CN219821824U