Organ chip shaking table control device
By designing an organ-on-a-chip shaker control device that adapts to different sizes and interfaces, the problems of unstable fixation and poor fluid transmission in the existing technology have been solved, achieving stable fixation and fluid transmission, and supporting experimental operations without power cord for a long time.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2026-03-27
AI Technical Summary
Existing organ-on-a-chip shakers are ill-suited to the differences in size, interface, and fluid connection methods of organ-on-a-chip products from different manufacturers, leading to problems such as unstable fixation or poor fluid transmission.
An organ-on-a-chip shaker control device was designed, comprising components such as a rechargeable lithium battery, a universal clamp, a multi-functional box, and a heated glass. It can adapt to organ-on-a-chip of different sizes and achieve precise control via Bluetooth connection, ensuring stable fixation and fluid transport of the organ-on-a-chip during the culture process.
It enables stable fixation and fluid transport of organ-on-a-chip of different sizes, supports continuous operation for a long time without power cord, and improves the flexibility and reliability of experiments.
Smart Images

Figure CN224047405U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to organ chip technical field, concretely is an organ chip shaker control device. BACKGROUND
[0002] Organ chip is a kind of in vitro organ model constructed on microfluidic chip, it can simulate the physiological function and microenvironment of human organ. With the continuous progress of the technology, the precision control requirement of its culture and operating condition is higher and higher. Traditional culture mode is difficult to meet the simulation demand of organ chip to fluid dynamics, mechanical force and other complex factors, therefore, special control device is needed to optimize culture environment, and shaker control device can provide more close to physiological state dynamic culture environment for organ chip by accurately controlling shaking parameter.
[0003] The existing organ chip shaker has differences in size, interface, fluid connection mode and other aspects to organ chip produced by different manufacturers, and shaker control device can not be well adapted to part of chip, leading to unable normal fixation or fluid transmission not smooth. UTILITY MODEL CONTENT
[0004] The utility model aims at providing an organ chip shaker control device to solve the problems in the above background.
[0005] To achieve the above object, the utility model provides the following technical scheme: an organ chip shaker control device, including incubator, the inside installation of control block of incubator, fixed mounting is provided with support column on control block, the bottom installation of control block is provided with base, the inside installation of rechargeable lithium battery of base, the side of control block is provided with touch screen, fixed mounting is provided with support column on control block, the installation of motor on support column, the side installation of bracket of motor, the other side installation of left rotation axis of bracket, the side installation of right rotation axis of left rotation axis, the outer surface installation of photoelectric switch of right rotation axis, the top installation of a plurality of universal clamps of bracket, the top installation of a plurality of elastic sheets of universal clamp, the top of universal clamp is provided with multifunctional box, the bottom installation of lower heating glass of multifunctional box, the inside setting of water tank of multifunctional box, the side installation of first interface and second interface of multifunctional box, the top installation of upper heating glass of multifunctional box, the bottom of base is provided with charging port.
[0006] Preferably, the first interface and part of the multifunctional box are fixedly installed inside the multifunctional box.
[0007] Preferably, part of the motor is installed inside the bracket.
[0008] Preferably, the upper heating glass is installed on the multifunctional box, and the upper heating glass can be completely attached to the upper part of the multifunctional box.
[0009] Preferably, the left rotating shaft is connected with the support through the control block.
[0010] Preferably, a part of the right rotating shaft is installed in the photoelectric switch.
[0011] Compared with the prior art, the device has two schemes of cooperating with the incubator and not cooperating with the incubator, so that the device can be adjusted in time under different conditions, and the experiment can continue, the device is installed with the rechargeable lithium battery at the bottom, so that it can work continuously for more than one week in the traditional incubator without power supply through the power cord, and the universal clamp is installed on the support, so that the clamp can be adjusted for organ chips of different sizes. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 It is an overall structural schematic view of the organ chip shaking table control device.
[0013] Figure 2 It is a parts view of the organ chip shaking table control device.
[0014] Figure 3 It is a partially dissected view of the organ chip shaking table control device.
[0015] Figure 4 It is a schematic view of the organ chip shaking table control device with a universal box.
[0016] Figure 5 It is a parts view of the organ chip shaking table control device.
[0017] Figure 6 It is a sectional view of the organ chip shaking table control device.
[0018] In the figure: 1, incubator; 2, control block; 3, spring piece; 4, photoelectric switch; 5, charging port; 6, rechargeable lithium battery; 7, universal clamp; 8, motor; 9, touch screen; 10, multifunctional box; 11, first interface; 12, second interface; 13, upper heating glass; 14, water tank; 15, lower heating glass; 16, support column; 17, base; 18, support; 19, right rotating shaft; 20, left rotating shaft. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0020] Please refer to Figures 1 to 6 The utility model provides a kind of organ chip shaking table control device, including incubator 1, the inside of incubator 1 is equipped with control block 2, control block 2 is fixedly installed with support column 16, the lower portion of control block 2 is equipped with base 17, rechargeable lithium battery 6 is installed in the inside of base 17, the side of control block 2 is provided with touch screen 9, control block 2 is fixedly installed with support column 16, motor 8 is installed on support column 16, the side of motor 8 is installed with support 18, the other side of support 18 is installed with left rotating shaft 20, the side of left rotating shaft 20 is installed with right rotating shaft 19, right rotating shaft 19 is installed with photoelectric switch 4 on outer surface, the top of support 18 is installed with several universal clamps 7, the top of universal clamp 7 is installed with several elastic sheets 3, the top of universal clamp 7 is provided with multifunctional box 10, the bottom of multifunctional box 10 is installed with lower heating glass 15, water tank 14 is arranged in the inside of multifunctional box 10, the side of multifunctional box 10 is installed with first interface 11 and second interface 12 respectively, the top of multifunctional box 10 is installed with upper heating glass 13, the side of base 17 is installed with charging port 5.
[0021] When the device cooperates with incubator 1 to start working, at this time, several 2 universal clamps 7 installed on support 18 are not installed multifunctional box 10, left rotating shaft 20 is connected with right rotating shaft 19, part of right rotating shaft 19 is installed on photoelectric switch 4, and inductive sheet is installed on right rotating shaft 19, so that right rotating shaft 19 can set motor zero through photoelectric switch, each time starting and ending, keep organ chip in horizontal position, make left rotating shaft 20 connected with right rotating shaft synchronously rotate, because part of left rotating shaft 20 is installed in the inside of support 18, when left rotating shaft 20 receives the rotation reset of right rotating shaft 19, support 18 installed on left rotating shaft 20 will synchronously rotate, at this time, universal clamp 7 installed on support 18 will move with the rotation of support 18, so that universal clamp 7 is in horizontal state, more convenient to install organ chip to operate;
[0022] When the incubator 1 is not needed, the multifunctional box 10 is installed on the universal clamp 7 fixedly installed on the support 18, one side of the multifunctional box 10 is provided with the first interface 11 and the second interface 12, the first interface 11 can pour into the multifunctional box 10, the second interface can input the chemical products needed by the experiment into the multifunctional box 10, the upper heating glass 13 is installed above the multifunctional box, the lower heating glass 15 is installed below the multifunctional box, and the water tank 14 is arranged in the multifunctional box, so that the organ chip is not in the incubator 1, but can be in the multifunctional box 10 installed on the universal clamp 7, and the effect in the incubator 1 can be achieved.
[0023] In an optional embodiment, part of the first interface 11 and the second interface 12 is fixedly installed inside the multifunctional box 10, so that the device is more effective when running.
[0024] In an optional embodiment, part of the motor 8 is installed inside the support 18, so that the motor 8 can drive the support 18 installed on one side to rotate synchronously when rotating.
[0025] In an optional embodiment, the upper heating glass 13 is installed on the multifunctional box 10, and the upper heating glass 13 can completely adhere to the upper side of the multifunctional box 10, so that the organ chip installed on the universal clamp 7 can effectively conduct the experiment in the multifunctional box 10.
[0026] In an optional embodiment, the left rotating shaft 20 penetrates the control block 2 and is connected with the support 18, so that the device is more smooth when running.
[0027] In an optional embodiment, part of the right rotating shaft 19 is installed in the photoelectric switch 4, so that the device is more effective when running.
[0028] Working principle: when the device is matched with the incubator 1 to start working, at this time, the several universal clamps 7 installed on the support 18 are not installed with the multifunctional box 10, the left rotating shaft 20 and the right rotating shaft 19 are relatively connected, a part of the right rotating shaft 19 is installed on the photoelectric switch 4, and the inductive sheet is installed on the right rotating shaft 19, so that the right rotating shaft can pass through the photoelectric switch to set the motor zero position, and each time the machine is started and ended, the organ chip is kept in a horizontal position, so that the left rotating shaft 20 connected with the right rotating shaft is synchronously rotated, since a part of the left rotating shaft 20 is installed inside the support 18, when the left rotating shaft 20 receives the rotation reset of the right rotating shaft 19, the support 18 installed on the left rotating shaft 20 is synchronously rotated, at this time, the universal clamp 7 installed on the support 18 moves along with the rotation of the support 18, so that the universal clamp 7 is in a horizontal state, which is more convenient for installing the organ chip to operate, and the device can be connected to the control block through Bluetooth and control the support 18, without opening the culture to operate;
[0029] When the incubator 1 is not needed, the universal clamp 7 fixedly installed on the support 18 is installed with the multifunctional box 10, one side of the multifunctional box 10 is installed with the first interface 11 and the second interface 12, the first interface 11 can pour into the multifunctional box 10, and the second interface can input the chemical supplies required by the experiment into the multifunctional box 10, and the upper heating glass 13 is installed above the multifunctional box, the lower heating glass 15 is installed below the multifunctional box, and the water tank 14 is arranged in the multifunctional box, so that the organ chip is not in the incubator 1, but can achieve the effect in the incubator 1 by being installed in the multifunctional box 10 on the universal clamp 7.
[0030] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. An organ-on-a-chip incubator control device comprising an incubator (1), characterized in that, The inside of the incubator (1) is internally mounted with a control block (2), the control block (2) is fixedly installed with a support column (16), the lower portion of the control block (2) is installed with a base (17), the inside of the base (17) is installed with a rechargeable lithium battery (6), one side of the control block (2) is provided with a touch screen (9), the control block (2) is fixedly installed with a support column (16), the support column (16) is installed with a motor (8), one side of the motor (8) is installed with a bracket (18), the other side of the bracket (18) is installed with a left rotating shaft (20), one side of the left rotating shaft (20) is installed with a right rotating shaft (19), the outer surface of the right rotating shaft (19) is installed with a photoelectric switch (4), the upper portion of the bracket (18) is installed with a plurality of universal clamps (7), the upper portion of the universal clamp (7) is installed with a plurality of elastic sheets (3), the upper portion of the universal clamp (7) is provided with a multifunctional box (10), the bottom of the multifunctional box (10) is installed with a lower heating glass (15), the inside of the multifunctional box (10) is provided with a water tank (14), one side of the multifunctional box (10) is respectively installed with a first interface (11) and a second interface (12), the upper portion of the multifunctional box (10) is installed with an upper heating glass (13), the side of the base (17) is installed with a charging port (5).
2. The organ-on-a-chip rocker control device of claim 1, wherein, The first interface (11) and part of the multifunctional box (10) are fixedly installed inside the multifunctional box (10).
3. The organ-on-a-chip rocker control device of claim 1, wherein, Part of the motor (8) is installed inside the bracket (18).
4. The organ-on-a-chip rocker control device of claim 1, wherein, The upper heating glass (13) is installed on the multifunctional box (10), and the upper heating glass (13) can be completely attached to the upper portion of the multifunctional box (10).
5. The organ-on-a-chip rocker control device of claim 1, wherein, The left rotating shaft (20) penetrates the control block (2) and is connected with the bracket (18).
6. The organ-on-a-chip rocker control device of claim 1, wherein, Part of the right rotating shaft (19) is installed in the photoelectric switch (4).