An entrepreneurship and innovation talent data interaction and incubation management system

By using the data interaction and incubation management system for entrepreneurial and innovative talents, the system disconnects illegal data acquisition through a self-clutch module and a monitoring module, and provides anomaly warnings in conjunction with a signal transmitter. This solves the problem of data leakage in university innovation and entrepreneurship talent incubation devices, realizes a high-security data interaction platform, and promotes the steady development of innovation and entrepreneurship.

CN122114742APending Publication Date: 2026-05-29HEBEI WENXIN DIGITAL TECHNOLOGY SERVICE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
HEBEI WENXIN DIGITAL TECHNOLOGY SERVICE CO LTD
Filing Date
2026-03-18
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

There is a risk of illegal acquisition and leakage of user data in existing data interaction devices for incubating innovative and entrepreneurial talents in universities. Especially during cyberattacks, important data may be stolen, leading to the risk of entrepreneurial failure.

Method used

An entrepreneurial and innovative talent data interaction and incubation management system was designed. Through the cooperation of management terminal and interaction terminal, using self-clutch module and monitoring module, the intermediate storage module is disconnected from the interaction terminal to prevent illegal data acquisition. Signal transmitter is used for abnormal early warning, providing an interaction platform with a high level of data security.

Benefits of technology

It effectively prevented large-scale data leakage, protected user information security, ensured the security of the data interaction platform among innovative and entrepreneurial talents, reduced the risk of data leakage, and improved users' practical training capabilities and the steady progress of innovation and entrepreneurship.

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Abstract

The application relates to an entrepreneurship and innovation talent data interaction and incubation management system applied to the technical field related to data services. Through cooperation of a control terminal and an interaction terminal, when a user logs in, the interaction terminal serves as a transfer carrier, account information is carried on the transfer carrier when logging in, the interaction terminal cannot directly acquire information in the account, under monitoring of a monitoring module, when the control terminal illegally intrudes into the interaction terminal to acquire information, the control panel directly controls the transfer storage module and the interaction terminal to be disconnected through a self-clutching module, thereby interrupting the process of illegally acquiring data, effectively avoiding the case of large-scale data leakage, providing an interaction platform with high data security level for innovative talents, and facilitating experience exchange between talents.
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Description

Technical Field

[0001] This invention relates to a data interaction and incubation management system for entrepreneurial and innovative talents, and particularly to a data interaction and incubation management system for entrepreneurial and innovative talents applied in the field of data service technology. Background Technology

[0002] Innovation and entrepreneurship refer to entrepreneurial activities based on one or more innovations in areas such as technology, products, brands, services, business models, management, organization, markets, and channels. Innovation is the defining characteristic of innovation and entrepreneurship, while entrepreneurship is its goal. Innovation and entrepreneurship are entrepreneurial activities built upon innovation, differing from both simple innovation and simple entrepreneurship. Innovation emphasizes pioneering and originality, while entrepreneurship emphasizes the act of obtaining benefits through practical action. Contemporary university students are striving to cultivate their innovation and entrepreneurship abilities to achieve personal growth. Under the new circumstances, further research into the construction of innovation and entrepreneurship incubation platforms will help promote complementary advantages between universities, research institutions, and enterprises.

[0003] Chinese patent CN110851124A discloses a data interaction device for incubating innovative and entrepreneurial talents in universities. This device can facilitate data interaction for incubating innovative and entrepreneurial talents in universities. However, some users often need to log in to social media accounts that can transmit data on the management terminal to conduct data interaction. In this case, the information in the account is completely exposed on the management terminal. For some criminals, they may illegally read or obtain data information that other users have not directly interacted with through network attacks or some hidden programs, causing data leakage. The leakage of some important data, such as entrepreneurial projects, may directly lead to the failure of the business. There is a significant risk to user data during the interaction. Summary of the Invention

[0004] In view of the above-mentioned prior art, the technical problem to be solved by the present invention is that some data interaction methods of existing management systems have the potential for data leakage.

[0005] To address the aforementioned issues, this invention provides a data interaction and incubation management system for entrepreneurial and innovative talents, comprising a management terminal and an interactive terminal used in conjunction with the management terminal. The management terminal is equipped with an interactive platform, a training module, a signal receiver, and a login module. The interactive terminal is equipped with a transfer storage module, a monitoring module, a self-clutch module, and a signal transmitter. The signal transmitter and the signal receiver are connected by a signal. The interactive terminal includes a terminal body with a mounting slot at the top. The self-clutch module is snapped into the mounting slot at the top of the terminal body. The self-clutch module includes an outer frame. A clutch rod is fixedly connected to the inner wall of one end of the outer frame, and an electromagnetic plate is fixedly connected to the inner wall of the other end of the outer frame. The ends of the clutch rod and the electromagnetic plate that are close to each other are fixedly connected. A signal transmitter is installed on the inner wall of the outer frame. A follow-up monitoring unit is sleeved on the outer end of the clutch rod. A wire is fixedly connected to the lower end of the follow-up monitoring unit. The follow-up monitoring unit is connected in series with the relay storage module and the control board inside the terminal body through the clutch rod and the wire.

[0006] In the aforementioned data interaction and incubation management system for entrepreneurial and innovative talents, through the coordinated setup of the control terminal and the interactive terminal, the interactive terminal acts as a relay carrier when a user logs in. The account information is carried on the relay carrier during login, and the interactive terminal cannot directly access the information within the account. Under the monitoring of the monitoring module, when the control terminal illegally intrudes into the interactive terminal to obtain information, the control board directly controls the relay storage module to disconnect from the interactive terminal through the self-clutch module, thereby interrupting the process of illegally obtaining data. This effectively avoids the occurrence of large-scale data leakage and provides a high-security interactive platform for entrepreneurial and innovative talents, facilitating the exchange of experiences among talents.

[0007] As a further improvement to this application, the login module includes two login methods: administrator login and user login. When the interactive terminal is not used, only administrator login is possible. When the interactive terminal is used, both administrator login and user login are possible.

[0008] As a further improvement of this application, a rubber washer is fixedly sleeved on the outer end of the clutch lever near the outer frame, and the rubber washer contacts the electromagnetic plate.

[0009] As a further improvement of this application, the monitoring electrical unit includes a control sleeve movably sleeved on the outside of the clutch lever and a transformer sleeve fixedly connected to the outer end of the clutch lever. The signal transmitter is electrically connected to the transformer sleeve. The control sleeve includes a movable sleeve sleeved on the outside of the clutch lever, two elastic pull ropes fixedly connected between the movable sleeve and the inner wall of the outer frame away from the electromagnetic plate, and a conductive ring fixedly embedded in the inner wall of the movable sleeve and electrically connected to the wire. When energized, the electromagnetic plate generates a magnetic attraction force on the movable sleeve. A lever is also fixedly connected to the upper end of the movable sleeve. The lever movably passes through the upper end of the outer frame and extends outside the outer frame.

[0010] As a further improvement of this application, the clutch lever includes an energizing section, an energizing section, and an instantaneous energizing section that are fixedly connected to each other in sequence. The instantaneous energizing section is fixed to the electromagnetic plate, and the transformer sleeve is connected to the instantaneous energizing section. The conductive ring is flush with the left end of the movable sleeve, and when the elastic pull rope is at its original length, the two ends of the movable sleeve correspond to the energizing section and the instantaneous energizing section respectively, and the conductive ring only contacts the energizing section.

[0011] As a further improvement of this application, the energizing section is made of conductive material, while the energizing section and the transient section are both made of insulating material. When the energizing section contacts the conductive ring, the energizing section, the conductive ring, and the wire form a current path and are connected to the control board inside the terminal body.

[0012] As a further improvement of this application, the transformer bushing includes two piezoelectric modules connected in parallel to each other and fixedly connected to the left and right inner walls of the transient section, and an outer liquid sleeve fixedly wrapped around the transient section. Two liquid exchange holes are drilled on the surface of the transient section, and the liquid exchange holes connect the outer liquid sleeve and the inner cavity of the transient section. The space connected by the two is saturated with fluorescent liquid. Two isolation plates are fixedly connected to the inner cavity of the transient section. The two isolation plates are close to the two piezoelectric modules respectively, and the liquid exchange holes are located between the two piezoelectric modules.

[0013] As a further improvement of this application, the fluid replacement hole is located on the side of the electromagnetic plate deflected from the centerline of the outer fluid sleeve. The outer fluid sleeve is made of an elastic sealing transparent material, and the isolation plate is made of an elastic sealing material. The isolation plate does not contact the piezoelectric module.

[0014] In summary, through the coordinated setup of the control terminal and the interactive terminal, the interactive terminal acts as a relay carrier during user login. Account information is carried on this relay carrier, preventing the interactive terminal from directly accessing account information. Under the monitoring module, when the control terminal illegally intrudes into the interactive terminal to obtain information, the control board directly disconnects the relay storage module from the interactive terminal via the self-clutch module, thus interrupting the illegal data acquisition process. This effectively prevents significant data leakage and provides a high-security interactive platform for innovative and entrepreneurial talents, facilitating experience exchange among them. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the main principles of the first and second embodiments of this application; Figure 2 This is a schematic block diagram illustrating a user interacting with a control terminal via an interactive terminal in the first and second embodiments of this application. Figure 3 These are schematic diagrams illustrating two login methods for the first and second embodiments of this application; Figure 4 This is a top view of the interactive terminal according to the second embodiment of this application; Figure 5 This is a front view of the interactive terminal according to the second embodiment of this application; Figure 6 This is a top cross-sectional view of the interactive terminal portion according to the second embodiment of this application; Figure 7 This is a top cross-sectional view of the self-clutch module according to the second embodiment of this application; Figure 8 This is a front view of the clutch lever according to the second embodiment of this application; Figure 9 This is a schematic cross-sectional view of the transformer bushing according to the second embodiment of this application; Figure 10 This is a schematic diagram of the radial cross-section of the transformer bushing according to the second embodiment of this application; Figure 11 This is a schematic diagram of the self-disengaging module when the transfer storage module is disconnected from the interactive terminal in the second embodiment of this application.

[0016] Explanation of the labels in the diagram: 1 Terminal body, 2 Outer frame, 201 Toggle lever, 3 Clutch lever, 31 Power-on section, 32 Power-off section, 33 Instantaneous power-off section, 41 Elastic pull rope, 42 Movable sleeve, 43 Conductive ring, 5 Wire, 6 Electromagnetic plate, 7 Signal transmitter, 701 Rubber pad ring, 8 Outer liquid sleeve, 801 Liquid replacement hole, 802 Isolation plate, 9 Piezoelectric module. Detailed Implementation

[0017] The two embodiments of this application will be described in detail below with reference to the accompanying drawings.

[0018] First implementation method: Figure 1 This paper illustrates a data interaction and incubation management system for entrepreneurial and innovative talents, including a management terminal and an interactive terminal used in conjunction with the management terminal. The management terminal is equipped with an interactive platform, a training module, and a login module. The interactive terminal is equipped with a transfer storage module, a monitoring module, and a self-clutching module, such as... Figure 3 The login module includes two login methods: administrator login and user login. When not using the interactive terminal, only administrator login is available. When using the interactive terminal, both administrator login and user login are available.

[0019] In this embodiment, such as Figure 2As an intermediary, the interactive terminal requires users to insert it into the control terminal before they can interact with the control terminal. Users then log into social media accounts that can transmit data and exchange information. During this process, all information within the logged-in accounts is temporarily stored or exposed in the interactive terminal's intermediary storage module, rather than being directly exposed on the control terminal. When the interactive terminal's monitoring module detects a network attack or illegal intrusion, it can directly disconnect the intermediary storage module from the interactive terminal via a self-disconnecting module, thus preventing further intrusion and effectively protecting the data within the interactive terminal from significant leakage. For multi-user interactions on the platform, this effectively protects the data security of each user. When users log into the control terminal through the interactive terminal, they can use the training module for innovation and entrepreneurship training, effectively improving their practical skills and facilitating the steady progress of subsequent innovation and entrepreneurship.

[0020] In the aforementioned data interaction and incubation management system for entrepreneurial and innovative talents, through the coordinated setup of the control terminal and the interactive terminal, the interactive terminal acts as a relay carrier when a user logs in. The account information is carried on the relay carrier during login, and the interactive terminal cannot directly access the information within the account. Under the monitoring of the monitoring module, when the control terminal illegally intrudes into the interactive terminal to obtain information, the control board directly controls the relay storage module to disconnect from the interactive terminal through the self-clutch module, thereby interrupting the process of illegally obtaining data. This effectively avoids the occurrence of large-scale data leakage and provides a high-security interactive platform for entrepreneurial and innovative talents, facilitating the exchange of experiences among talents.

[0021] Second implementation method: This embodiment adds a signal transmitter and related settings that are electrically connected to the self-clutch module, based on the first embodiment; the rest remains the same as the first embodiment.

[0022] Figure 1 As shown, the interactive terminal is also equipped with a signal transmitter 7, and the control terminal is also equipped with a signal receiver. The signal transmitter 7 and the signal receiver are connected by signal. like Figure 4-6The interactive terminal includes a terminal body 1. A mounting slot is provided on the upper end of the terminal body 1. The self-clutch module is snapped into the mounting slot on the upper end of the terminal body 1. The self-clutch module includes an outer frame 2. A clutch rod 3 is fixedly connected to the inner wall of one end of the outer frame 2. An electromagnetic plate 6 is fixedly connected to the inner wall of the other end of the outer frame 2. The ends of the clutch rod 3 and the electromagnetic plate 6 that are close to each other are fixedly connected. A signal transmitter 7 is installed on the inner wall of the outer frame 2. A follow-up monitoring unit is sleeved on the outer end of the clutch rod 3. A wire 5 is fixedly connected to the lower end of the follow-up monitoring unit. The follow-up monitoring unit is connected in series with the relay storage module and the control board inside the terminal body 1 through the clutch rod 3 and the wire 5.

[0023] A rubber pad ring 701 is fixedly sleeved on the outer end of the clutch lever 3 near the outer frame 2. The rubber pad ring 701 is in contact with the electromagnetic plate 6. The rubber pad ring 701 is used for buffering. When the electromagnetic plate 6 is energized, it attracts the movable sleeve 42, effectively protecting the movable sleeve 42 and the electromagnetic plate 6, so that there is less chance of large impact between the two.

[0024] like Figure 7 The monitoring unit includes a control sleeve that is movably sleeved on the outside of the clutch lever 3 and a transformer sleeve that is fixedly connected to the outer end of the clutch lever 3. The signal transmitter 7 is electrically connected to the transformer sleeve. The control sleeve includes a movable sleeve 42 sleeved on the outside of the clutch lever 3, two elastic pull ropes 41 fixedly connected between the movable sleeve 42 and the inner wall of the outer frame 2 away from the electromagnetic plate 6, and a conductive ring 43 fixedly embedded in the inner wall of the movable sleeve 42 and electrically connected to the wire 5. When the electromagnetic plate 6 is energized, it generates a magnetic attraction force on the movable sleeve 42. When an illegal intrusion into the interactive terminal occurs and its data is obtained, the control board controls the electromagnetic plate 6 to be energized, so that it generates a magnetic attraction force, thereby driving the movable sleeve 42 to move towards the electromagnetic plate 6. After the relay storage unit and the interactive unit temporarily lose contact, when it is necessary to restore contact, the electromagnetic plate 6 can be de-energized, so that its magnetic attraction force disappears. At this time, under the elastic force of the elastic pull rope 41, the movable sleeve 42 can be restored to its original position, thereby making the conductive ring 43 contact and conduct with the energizing section 31 again.

[0025] The upper end of the movable sleeve 42 is also fixedly connected to a lever 201. The lever 201 moves through the upper end of the outer frame 2 and extends to the outside of the outer frame 2. When the elastic pull rope 41 is damaged after a long time and the elasticity is insufficient to reset the movable sleeve 42, the user can use the lever 201 to assist the movable sleeve 42 in resetting.

[0026] like Figure 8 The clutch lever 3 includes an energizing section 31, an energizing section 32, and an instantaneous energizing section 33, which are fixedly connected to each other in sequence. The instantaneous energizing section 33 is fixed to the electromagnetic plate 6, and the transformer sleeve is connected to the instantaneous energizing section 33. The conductive ring 43 is flush with the left end of the movable sleeve 42. Figure 7When the elastic pull rope 41 is at its original length, the two ends of the movable sleeve 42 correspond to the energizing section 31 and the instantaneous energizing section 33 respectively, and the conductive ring 43 only contacts the energizing section 31. The energizing section 31 is made of conductive material. At this time, the energizing section 31, the conductive ring 43, and the wire 5 can form a circuit to connect with the control board inside the terminal body 1. Then the relay storage module establishes a connection with the interactive terminal, and the interactive terminal can be used normally to assist the user in logging in to an account with interactive data on the control terminal. The closed section 32 and the instantaneous energizing section 33 are both made of insulating material. When there is an abnormality, the energized electromagnetic plate 6 adsorbs the movable sleeve 42 and moves, such as Figure 11 The conductive ring 43 is misaligned with the energizing section 31. When it reaches the energizing section 32 or the instantaneous energizing section 33, due to its insulation, the connection between the transfer storage module and this interactive terminal can be interrupted.

[0027] like Figure 9-10 The transformer housing includes two piezoelectric modules 9 connected in parallel to each other and fixedly connected to the inner walls of the transient section 33, and an outer liquid sleeve 8 fixedly wrapped around the transient section 33. The signal transmitter 7 is electrically connected to the piezoelectric modules 9. Two liquid exchange holes 801 are drilled on the surface of the transient section 33. The liquid exchange holes 801 connect the outer liquid sleeve 8 and the inner cavity of the transient section 33, and the space connected by the two is saturated with fluorescent liquid. Two isolation plates 802 are fixedly connected to the inner cavity of the transient section 33. The two isolation plates 802 are respectively close to the two piezoelectric modules 9, and the liquid exchange holes 801 are located between the two piezoelectric modules 9.

[0028] The fluid exchange hole 801 is located on one side of the electromagnetic plate 6 in the center of the outer fluid sleeve 8. The outer fluid sleeve 8 is made of elastic sealing transparent material, and the isolation plate 802 is made of elastic sealing material. The isolation plate 802 does not contact the piezoelectric module 9.

[0029] It is worth noting that when the fluorescent liquid connecting the outer liquid sleeve 8 and the transient segment 33 is saturated, the isolating sheet 802 is in a stretched but not elastically expanded state, and at this time, the isolating sheet 802 is also not in contact with the piezoelectric module 9; such as Figure 7 When the conductive ring 43 contacts the electrified section 31, most of the outer liquid-coated sleeve 8 is in a loose and exposed state, such as... Figure 11 When the movable sleeve 42 moves toward the electromagnetic plate 6, the outer liquid sleeve 8 is squeezed, and the fluorescent liquid inside is quickly squeezed into the inner cavity of the instantaneous section 33. This causes the isolation plate 802 to deform toward the piezoelectric module 9, thereby generating a squeezing force on the piezoelectric module 9 and causing the piezoelectric module 9 to generate an instantaneous voltage. This causes the signal transmitter 7 to be energized instantly, enabling the signal transmitter 7 to transmit a signal to the signal receiver simultaneously. This provides an early warning of possible abnormalities to the control terminal, allowing staff or the control terminal to take relevant actions simultaneously, thereby reducing the risk of information leakage within the control terminal.

[0030] In this embodiment, not only can the connection between the relay storage module and the interactive terminal be automatically disconnected in case of an anomaly, thereby protecting the data from leakage, but the signal transmitter 7 can also be triggered synchronously during the disconnection process, so that it can simultaneously detect potential data leakage risks to the control terminal, making it easier for the administrator or control terminal to conduct self-checks and further reducing the security risks of data leakage.

[0031] In light of current practical needs, the above-described embodiments adopted in this application are not limited to these. Any changes made within the scope of knowledge possessed by those skilled in the art without departing from the concept of this application still fall within the protection scope of this invention.

Claims

1. A data interaction and incubation management system for entrepreneurial and innovative talents, characterized in that: It includes a management terminal and an interactive terminal used in conjunction with the management terminal. The management terminal is equipped with an interactive platform, a training module, a signal receiver and a login module. The interactive terminal is equipped with a relay storage module, a monitoring module, a self-clutch module and a signal transmitter (7). The signal transmitter (7) is connected to the signal receiver. The interactive terminal includes a terminal body (1), and the terminal body (1) is provided with an installation slot at its upper end. The self-clutch module is snapped into the installation slot at the upper end of the terminal body (1). The self-clutch module includes an outer frame (2). A clutch rod (3) is fixedly connected to the inner wall of one end of the outer frame (2). An electromagnetic plate (6) is fixedly connected to the inner wall of the other end of the outer frame (2). The clutch rod (3) and the electromagnetic plate (6) are fixedly connected at their respective ends. The signal transmitter (7) is installed on the inner wall of the outer frame (2). A follow-up monitoring unit is sleeved on the outer end of the clutch rod (3). A wire (5) is fixedly connected to the lower end of the follow-up monitoring unit. The follow-up monitoring unit is connected in series with the relay storage module and the control board inside the terminal body (1) through the clutch rod (3) and the wire (5).

2. The data interaction and incubation management system for entrepreneurial and innovative talents according to claim 1, characterized in that: The login module includes two login methods: administrator login and user login. When not using the interactive terminal, only administrator login is possible. When using the interactive terminal, both administrator login and user login are possible.

3. The data interaction and incubation management system for entrepreneurial and innovative talents according to claim 1, characterized in that: The clutch lever (3) is fixedly fitted with a rubber gasket (701) at the outer end near the outer frame (2), and the rubber gasket (701) is in contact with the electromagnetic plate (6).

4. The data interaction and incubation management system for entrepreneurial and innovative talents according to claim 1, characterized in that: The power monitoring unit includes a control sleeve that is movably sleeved on the outside of the clutch lever (3) and a transformer sleeve that is fixedly connected to the outer end of the clutch lever (3). The signal transmitter (7) is electrically connected to the transformer sleeve. The control sleeve includes a movable sleeve (42) sleeved on the outside of the clutch lever (3), two elastic pull ropes (41) fixedly connected between the movable sleeve (42) and the inner wall of the outer frame (2) away from the electromagnetic plate (6), and a conductive ring (43) fixedly embedded in the inner wall of the movable sleeve (42) and electrically connected to the wire (5). After being energized, the electromagnetic plate (6) generates a magnetic attraction force on the movable sleeve (42). A lever (201) is also fixedly connected to the upper end of the movable sleeve (42). The lever (201) moves through the upper end of the outer frame (2) and extends to the outside of the outer frame (2).

5. The data interaction and incubation management system for entrepreneurial and innovative talents according to claim 4, characterized in that: The clutch lever (3) includes an energizing section (31), an energizing section (32), and an instantaneous energizing section (33) that are fixedly connected to each other in sequence. The instantaneous energizing section (33) is fixed to the electromagnetic plate (6). The transformer sleeve is connected to the instantaneous energizing section (33). The conductive ring (43) is flush with the left end of the movable sleeve (42). When the elastic pull rope (41) is at its original length, the two ends of the movable sleeve (42) correspond to the energizing section (31) and the instantaneous energizing section (33) respectively, and the conductive ring (43) only contacts the energizing section (31).

6. The data interaction and incubation management system for entrepreneurial and innovative talents according to claim 5, characterized in that: The energizing section (31) is made of conductive material, while the energizing section (32) and the instantaneous energizing section (33) are both made of insulating material. When the energizing section (31) comes into contact with the conductive ring (43), the energizing section (31), the conductive ring (43), and the wire (5) form a current path and are connected to the control board inside the terminal body (1).

7. The data interaction and incubation management system for entrepreneurial and innovative talents according to claim 6, characterized in that: The transformer sleeve includes two piezoelectric modules (9) fixedly connected to the inner walls of the left and right sides of the transient section (33) and an outer liquid sleeve (8) fixedly wrapped around the transient section (33). Two liquid exchange holes (801) are drilled on the surface of the transient section (33). The liquid exchange holes (801) connect the outer liquid sleeve (8) and the inner cavity of the transient section (33), and the space connected by the two is saturated with fluorescent liquid. Two isolation plates (802) are fixedly connected to the inner cavity of the transient section (33). The two isolation plates (802) are respectively close to the two piezoelectric modules (9), and the liquid exchange holes (801) are located between the two piezoelectric modules (9).

8. The data interaction and incubation management system for entrepreneurial and innovative talents according to claim 7, characterized in that: The fluid exchange hole (801) is located on one side of the electromagnetic plate (6) in the center of the outer fluid sleeve (8). The outer fluid sleeve (8) is made of elastic sealing transparent material. The isolation plate (802) is made of elastic sealing material and does not contact the piezoelectric module (9).

Citation Information

Patent Citations

  • College innovation and entrepreneurship talent incubation data interaction device

    CN110851124A