Industrial touch all-in-one machine with adjustable display screen brightness

Through the structural design of positioning connection components and relay control, the problem of difficult positioning of industrial control modules is solved, and the stability and security are improved, and separate control and real-time data acquisition are supported.

CN120255665AInactive Publication Date: 2025-07-04SHENZHEN TOUCH THINK INTELLIGENCE CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510759603.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-09
Publication Date
2025-07-04
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The positioning of the existing industrial touch integrated machine in the industrial control module is not easy to realize, which leads to inconvenient access and easy to fall off in the industrial control module, and poses a risk of leakage.

Method used

The positioning connection components are adopted, including support frames, insulating boxes, relays, charging heads and temperature sensors, and the industrial control module is fixed through limit partitions and outsourcing edge strips. The relay and conductive conveying pins are used to achieve separate control and current delivery, and the insulating strips and air-cooled radiator ensure safety and stability.

Benefits of technology

It realizes stable positioning of the industrial control module, avoids loosening and leakage, ensures the safety and stability of signal transmission, and prevents overheating through temperature sensor monitoring, and supports separate control and real-time data acquisition.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120255665A_ABST
    Figure CN120255665A_ABST
Patent Text Reader

Abstract

The invention discloses an industrial touch all-in-one machine with adjustable display screen brightness, and particularly relates to the technical field of industrial touch all-in-one machines, the industrial touch all-in-one machine comprises a charging cabinet main body, a positioning connection assembly is arranged on the charging cabinet main body, the positioning connection assembly comprises a support frame arranged in the charging cabinet main body, and the support frame is clamped with the charging cabinet main body. According to the invention, the current converter controls each relay to convert current through a wire, the current is transmitted to each industrial control module management and control cabin through a second enhanced conductive transmission pin, and each second enhanced conductive transmission pin supplies power to the corresponding industrial control module management and control cabin. Each industrial control module management and control cabin independently carries out current transmission and charging, each industrial control module management and control cabin independently controls each industrial control module management and control cabin, and an outer wrapping strip can be clamped on the outer side of the industrial control module to limit the industrial control module, so that the situation that the industrial control module is loosened during charging and data communication conversion due to infirm placement is avoided, and the service life of the industrial control module is prolonged. And the signal transmission stability is ensured.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of industrial touch all-in-one machines. More specifically, the present invention relates to an industrial touch all-in-one machine with adjustable display screen brightness. Background Art

[0002] An industrial touch all-in-one machine, abbreviated as an industrial touch computer, also called an industrial tablet computer or an industrial all-in-one machine, is an innovative device integrating advanced touch screens, industrial control, and computer technologies. Industrial touch all-in-one machines are widely used in various industrial scenarios, including but not limited to the equipment and machinery manufacturing industry, factory workshop operations, power automation industry, steel automation industry, environmental monitoring industry, intelligent transportation industry, municipal automation industry, building automation industry, logistics industry, medical equipment industry, and public facilities industry, etc. In these scenarios, industrial touch all-in-one machines play an important role in monitoring, control, data collection, and interaction.

[0003] Among them, the patent with the publication number CN214376117U discloses a peripheral replaceable capacitive touch cabinet, including: a cabinet, the cabinet includes a cabinet body, a support is provided at the bottom of the cabinet body, a display screen is provided on the cabinet body, and a function control module installation slot is reserved below the display screen on the cabinet body, and a module docking socket that can be inserted and docked with the function control module is reserved on the back side of the function control module installation slot; a function control module that can be pluggably installed in the function control module installation slot, and a plug corresponding to the module docking socket is provided on the back of the function control module; When this structure is in use, by reserving a function control module installation slot on the cabinet body of the cabinet, and reserving a module docking socket on the back side of the function control module installation slot, and performing modular design on the function control module, rapid installation and replacement of function modules can be realized, improving the adaptability of the cabinet. However, when this structure delivers signals to the industrial control module, it is not easy to position the industrial control module, resulting in inconvenient access to the industrial control module, and the industrial control module is prone to falling off during signal transmission, and electric leakage is likely to occur. Summary of the Invention

[0004] In order to overcome the above-mentioned defects of the prior art, the present invention provides an industrial touch all-in-one machine with adjustable display screen brightness, aiming to solve the problems raised in the above background art.

[0005] The present invention provides the following technical solutions: An industrial touch all-in-one machine with adjustable display screen brightness, including a charging cabinet main body, and a positioning connection component is provided on the charging cabinet main body; The positioning connection component includes a support frame arranged in the charging cabinet main body, the support frame is clamped with the charging cabinet main body, two insulating boxes are arranged at the top of the support frame, and a number of industrial control module control chambers for limiting industrial control modules are arranged in each insulating box; On one side of the surface of the support frame, a number of relays are provided, and at the bottom of each of the relays, a first reinforced conductive transmission pin is provided. A second reinforced conductive transmission pin is provided on the relay. The first reinforced conductive transmission pin and the second reinforced conductive transmission pin are both connected to the relay through electrodes. In the middle of the industrial control module control cabin, a limit partition is fixedly provided. The cross-sectional shapes of the limit partition and the industrial control module control cabin are both set to be L-shaped. On the outside of the industrial control module control cabin, an outer edge strip for limiting the industrial control module is provided. On both sides of the top of the limit partition, upward extension plates are fixedly provided, and temperature sensors are inserted on each of the upward extension plates. On one side of the industrial control module control cabin, an insulating strip is fixedly provided. The insulating strip is clamped with the insulating box. On both sides of the insulating strip, charging heads are provided. The charging heads are detachably connected to the industrial control module control cabin through bolts. On the first reinforced conductive transmission pin and the second reinforced conductive transmission pin, a number of insulating pads are installed through bolts, and one end of each of the insulating pads extends to the support frame. The insulating pads are clamped with the support frame; It can be seen that in the above technical solution, after each industrial control module control cabin separates the industrial control modules, when the industrial control modules are placed in the industrial control module control cabin, the outer edge strip can be clamped outside the industrial control modules to limit the industrial control modules, avoiding loosening of the industrial control modules during charging and data connection conversion due to insecure placement. The temperature sensors detect the temperature of the industrial control modules during use to avoid damage caused by overheating due to large load during data transmission. At the same time, during signal transmission, the charging heads are connected to the electrodes on the industrial control modules, and the current converter controls each relay to convert the current through wires. The current is transmitted to each industrial control module control cabin through the second reinforced conductive transmission pin. The insulating strip makes there be a certain distance between the industrial control module control cabin and the insulating box, and at the same time facilitates the flow of air between the industrial control module control cabin and the insulating box for heat dissipation, and also avoids the leakage of electricity from the industrial control module control cabin to the insulating box to ensure the safety of the industrial control modules during signal transmission; Optionally, in a possible implementation manner, a current converter is installed on the surface of the support frame through bolts. The current converter is located on one side of the relay. On one side of the surface of the charging cabinet main body, a cabinet door is hinged through a hinge. An electromagnetic lock is installed on the outside of the cabinet door. On the cabinet door, two outer connectors both connected to the relay through wires are provided. On the top of the outer connectors, a number of exhaust fans for guiding air flow are provided. The exhaust fans are fixedly connected to the cabinet door. On one side of the surface of the charging cabinet main body, a control screen is embedded. A protective plate is clamped on the surface of the support frame. A sub-control button is embedded on the control screen. On the top of the control screen, a number of touch screens are provided. The protective plate covers the outside of the relay, the first reinforced conductive transmission pin and the second reinforced conductive transmission pin. An air-cooled radiator is provided at the top of the charging cabinet main body; It can be seen that in the above technical solution, the staff operate on the control panel to cut off the current of the corresponding relay, and then take out the industrial control module. By supplying power to the corresponding industrial control module control compartments through the respective second enhanced conductive transmission pins, the function of separately controlling each industrial control module control compartment is realized, and separate current transmission charging for each industrial control module control compartment is achieved. At the same time, when the device is in use, through the setting of the external connector, various sensors and detection devices can be connected to collect and display data in the production process in real time, such as temperature, pressure, flow rate, liquid level, etc., to help the operator timely understand the production status. When the air-cooled radiator is started, external air flow can be drawn into the main body of the charging cabinet and discharged through the exhaust fan, which is conducive to the heat dissipation of the device.

[0006] Technical effects and advantages of the present invention: In the present invention, each industrial control module control compartment separates the industrial control module. When the industrial control module is placed in the industrial control module control compartment, the outer edge strip can be stuck on the outside of the industrial control module to position the industrial control module, avoiding looseness during charging and data connection conversion due to unstable placement of the industrial control module. In the present invention, the temperature sensor detects the temperature of the industrial control module during use to avoid damage caused by overheating due to a large load during data transmission. At the same time, when signal transmission is carried out, the charging head is connected to the electrode on the industrial control module, and the current converter controls each relay to convert the current through the wire. The current is transmitted to each industrial control module control compartment through the second enhanced conductive transmission pins, which is conducive to the separate control of each industrial control module control compartment. The insulating strip in the present invention enables a certain distance to exist between the industrial control module control compartment and the insulating box. At the same time, it also facilitates the flow of air for heat dissipation between the industrial control module control compartment and the insulating box, and also avoids the leakage current situation of the industrial control module control compartment being transmitted to the insulating box to ensure the safety of the industrial control module during signal transmission. In the present invention, by operating on the control panel, the corresponding relay can cut off the current, and then the industrial control module can be taken out. By supplying power to the corresponding industrial control module control compartments through the respective second enhanced conductive transmission pins, the function of separately controlling each industrial control module control compartment is realized, and separate current transmission charging for each industrial control module control compartment is achieved. In summary, through the corresponding cooperation of each structure, the charging head is connected to the electrodes on the industrial control module. The current converter controls the conversion of current of each relay through a wire, and the current is transported to each industrial control module control chamber through the second enhanced conductive transport pin. Each second enhanced conductive transport pin supplies power to the corresponding industrial control module control chamber respectively, so as to realize the separate current transport and charging of each industrial control module control chamber, and realize the function of separate control of each industrial control module control chamber. Moreover, the outer edge strip can be stuck on the outside of the industrial control module to limit the industrial control module, avoiding looseness during charging and data connection conversion caused by the unstable placement of the industrial control module, and ensuring the stability during its signal transmission. BRIEF DESCRIPTION OF THE DRAWINGS

[0007] In order to more clearly illustrate the technical solutions in the present disclosure, the following will briefly introduce the drawings required to be used in some embodiments. Obviously, the drawings described below are only the drawings of some embodiments of the present disclosure. For those of ordinary skill in the art, other drawings can also be obtained based on these drawings. In addition, the drawings described below can be regarded as schematic diagrams, and are not limitations on the actual dimensions of the products, the actual processes of the methods, the actual timings of the signals, etc. involved in the embodiments of the present disclosure.

[0008] Figure 1 It is the front view of the overall structure of the present invention.

[0009] Figure 2 It is the side view of the overall structure of the present invention.

[0010] Figure 3 It is the three-dimensional view of the industrial control module control chamber, the limiting partition, the outer edge strip and the upper extension plate of the present invention.

[0011] Figure 4 It is the three-dimensional view of the charging head and the insulating strip installed on the industrial control module control chamber of the present invention.

[0012] Figure 5 It is the three-dimensional view of the support frame, the relay, the first enhanced conductive transport pin and the second enhanced conductive transport pin of the present invention.

[0013] Figure 6 It is the three-dimensional view of the cabinet door, the electromagnetic lock, the external connector and the exhaust fan of the present invention.

[0014] Figure 7 It is the side view of the overall structure of the present invention.

[0015] The attached drawing reference numerals are as follows: 1, charging cabinet main body; 2, support frame; 3, insulating box; 4, industrial control module control cabin; 5, limit partition; 6, outer edge strip; 7, upper extension plate; 8, temperature sensor; 9, insulating strip; 10, charging head; 11, relay; 12, first enhanced conductive conveying pin; 13, second enhanced conductive conveying pin; 14, insulating pad; 15, current converter; 16, cabinet door; 17, electromagnetic lock; 18, external connector; 19, exhaust fan; 20, control panel; 21, air-cooled radiator; 22, protection plate; 23, touch screen; 24, sub-control button. Detailed implementation manners

[0016] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0017] As shown in the attached Figure 1 - Figure 7 For an industrial touch all-in-one machine with adjustable display screen brightness shown, through the positioning connection component provided on the charging cabinet main body 1, through the corresponding cooperation of each structure, the charging head 10 is connected to the electrode on the industrial control module, and the current converter 15 controls the conversion of current of each relay 11 through a wire. The current is conveyed to each industrial control module control cabin 4 through the second enhanced conductive conveying pin 13. The way that each second enhanced conductive conveying pin 13 supplies power to the corresponding industrial control module control cabin 4 separately realizes the separate current conveying and charging of each industrial control module control cabin 4, and realizes the function of separate control of each industrial control module control cabin 4. Moreover, the outer edge strip 6 can be stuck on the outside of the industrial control module to limit the industrial control module, avoiding looseness during charging and data connection conversion due to unstable placement of the industrial control module, ensuring the stability of its signal transmission, and the specific structure of the component is set as follows; The positioning connection component includes a support frame 2 arranged in the charging cabinet main body 1. The support frame 2 is snap-connected to the charging cabinet main body 1. Two insulating boxes 3 are arranged at the top of the support frame 2, and several industrial control module control cabins 4 for limiting the industrial control module are arranged in each insulating box 3; On one side of the surface of the support frame 2, several relays 11 are provided, and at the bottom of each relay 11, a first enhanced conductive conveying pin 12 is provided. A second enhanced conductive conveying pin 13 is provided on the relay 11. Both the first enhanced conductive conveying pin 12 and the second enhanced conductive conveying pin 13 are connected to the relay 11 through electrodes. In the middle of the industrial control module control chamber 4, a limit partition 5 is fixedly provided. The cross-sectional shapes of both the limit partition 5 and the industrial control module control chamber 4 are set to be L-shaped. On the outside of the industrial control module control chamber 4, an outer edge strip 6 for limiting the industrial control module is provided. On both sides of the top of the limit partition 5, upward extension plates 7 are fixedly provided, and temperature sensors 8 are inserted on each upward extension plate 7. On one side of the industrial control module control chamber 4, an insulating strip 9 is fixedly provided. The insulating strip 9 is snap-fitted with the insulating box 3. On both sides of the insulating strip 9, charging heads 10 are provided. The charging heads 10 are detachably connected to the industrial control module control chamber 4 by bolts. On both the first enhanced conductive conveying pin 12 and the second enhanced conductive conveying pin 13, several insulating pads 14 are installed by bolts, and one end of each insulating pad 14 extends to the support frame 2. The insulating pad 14 is snap-fitted with the support frame 2; On the surface of the support frame 2, a current converter 15 is installed by bolts. The current converter 15 is located on one side of the relay 11. On one side of the surface of the charging cabinet main body 1, a cabinet door 16 is hinged by a hinge. On the outside of the cabinet door 16, an electromagnetic lock 17 is installed by bolts. On the cabinet door 16, two external connectors 18 both connected to the relay 11 by wires are provided. On the top of the external connector 18, several exhaust fans 19 for guiding current are provided. The exhaust fans 19 are fixedly connected to the cabinet door 16. On one side of the surface of the charging cabinet main body 1, a control panel 20 is embedded. A protection plate 22 is snap-fitted on the surface of the support frame 2. On the control panel 20, a sub-control button 24 is embedded. On the top of the control panel 20, several touch screens 23 are provided. The protection plate 22 covers the outside of the relay 11, the first enhanced conductive conveying pin 12, and the second enhanced conductive conveying pin 13. On the top end of the charging cabinet main body 1, an air-cooled radiator 21 is provided.

[0018] During use according to the above structure, the staff installs the device at a designated position. When transmitting signals to the industrial control module, the cabinet door 16 is opened through the electromagnetic lock 17, and then the industrial control module is placed in the insulating box 3. The industrial control module is partitioned by each industrial control module control chamber 4. When the industrial control module is placed in the industrial control module control chamber 4, the outer edge strip 6 can be stuck on the outside of the industrial control module to limit the industrial control module, avoiding loosening during charging and data connection conversion caused by the unstable placement of the industrial control module; Meanwhile, the temperature sensor 8 is used to detect the temperature of the industrial control module during use, avoiding damage caused by overheating due to a large load during data transmission. At the same time, when signal transmission is carried out, the charging head 10 is connected to the electrodes on the industrial control module. The current converter 15 controls each relay 11 to convert the current through wires, and the current is transmitted to each industrial control module control chamber 4 through the second enhanced conductive transmission pin 13. The insulating strip 9 makes a certain distance between the industrial control module control chamber 4 and the insulating box 3. At the same time, it also facilitates the flow of air for heat dissipation between the industrial control module control chamber 4 and the insulating box 3, and also avoids the leakage of electricity from the industrial control module control chamber 4 to the insulating box 3 to ensure the safety of the industrial control module during signal transmission; After the industrial control module is fully charged, the operator operates on the control screen 20 and controls each touch screen 23 separately through wires, so that the corresponding relay 11 can cut off the current, and then the industrial control module is taken out. By supplying power to each industrial control module control chamber 4 through each second enhanced conductive transmission pin 13 respectively, the function of individually controlling each industrial control module control chamber 4 is realized, and the individual current transmission and charging of each industrial control module control chamber 4 is achieved; During the use of the device, through the setting of the external connector 18, an external temperature sensor can also be connected to detect other areas, collect and display the data in the production process in real time, and help the operator understand the production status in a timely manner. When the air-cooled radiator 21 is started, the external air flow can be extracted into the charging cabinet main body 1 and discharged through the exhaust fan 19, which is conducive to the heat dissipation of the device.

[0019] Different from the prior art, the present application discloses an industrial touch all-in-one machine with adjustable display screen brightness. Through the corresponding cooperation of each structure, the charging head 10 is connected to the electrodes on the industrial control module. The current converter 15 controls each relay 11 to convert the current through wires, and the current is transmitted to each industrial control module control chamber 4 through the second enhanced conductive transmission pin 13. By supplying power to each industrial control module control chamber 4 through each second enhanced conductive transmission pin 13 respectively, the individual current transmission and charging of each industrial control module control chamber 4 is achieved, and the outer edge strip 6 can be stuck on the outside of the industrial control module to limit the industrial control module, avoiding loosening during charging and data connection conversion due to unstable placement of the industrial control module, and ensuring the stability during its signal transmission.

[0020] The above are only the preferred embodiments of the present invention and are not used to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. An industrial touch all-in-one machine with adjustable display brightness, comprising a charging cabinet main body (1), characterized in that: A positioning and connecting component is provided on the charging cabinet main body (1); The positioning and connecting component includes a support frame (2) arranged inside the charging cabinet main body (1), the support frame (2) is snap-connected to the charging cabinet main body (1), two insulating boxes (3) are arranged at the top of the support frame (2), and a number of industrial control module control compartments (4) for limiting the industrial control module are arranged in each insulating box (3); A number of relays (11) are arranged on one side of the surface of the support frame (2), a first enhanced conductive transmission pin (12) is arranged at the bottom of each relay (11), a second enhanced conductive transmission pin (13) is arranged on the relay (11), and the first enhanced conductive transmission pin (12) and the second enhanced conductive transmission pin (13) are both connected to the relay (11) through electrodes.

2. The industrial touch all-in-one computer with adjustable display screen brightness according to claim 1, wherein: A limiting partition (5) is fixedly arranged in the middle of the industrial control module control compartment (4), the vertical cross-sectional shapes of the limiting partition (5) and the industrial control module control compartment (4) are both L-shaped, and an outer edge strip (6) for limiting the industrial control module is arranged outside the industrial control module control compartment (4).

3. The industrial touch all-in-one computer with adjustable display screen brightness according to claim 2, characterized in that: Upper extension plates (7) are fixedly arranged on both sides of the top of the limiting partition (5), and temperature sensors (8) are inserted on each upper extension plate (7).

4. The industrial touch all-in-one computer with adjustable display screen brightness according to claim 1, characterized in that: An insulating strip (9) is fixedly arranged on one side of the industrial control module control compartment (4), the insulating strip (9) is snap-connected to the insulating box (3), charging heads (10) are arranged on both sides of the insulating strip (9), and the charging heads (10) are detachably connected to the industrial control module control compartment (4) through bolts.

5. The industrial touch all-in-one computer with adjustable display screen brightness according to claim 1, characterized in that: A number of insulating pads (14) are installed on the first enhanced conductive transmission pin (12) and the second enhanced conductive transmission pin (13) through bolts, and one end of each insulating pad (14) extends to the support frame (2), and the insulating pad (14) is snap-connected to the support frame (2).

6. The industrial touch all-in-one computer with adjustable display screen brightness according to claim 1, wherein: A current converter (15) is installed on the surface of the support frame (2) through bolts, and the current converter (15) is located on one side of the relay (11).

7. The industrial touch all-in-one computer with adjustable display screen brightness according to claim 1, characterized in that: A cabinet door (16) is hinged on one side of the surface of the charging cabinet main body (1) through a hinge, and an electromagnetic lock (17) is installed on the outside of the cabinet door (16) through bolts.

8. The industrial touch all-in-one computer with adjustable display screen brightness according to claim 7, characterized in that: Two external connectors (18) both connected to the relay (11) through wires are arranged on the cabinet door (16), a number of exhaust fans (19) for guiding current are arranged at the top of the external connector (18), and the exhaust fans (19) are fixedly connected to the cabinet door (16).

9. The industrial touch all-in-one computer with adjustable display screen brightness according to claim 1, wherein: A control screen (20) is embedded on one side of the surface of the charging cabinet main body (1), a protective plate (22) is snap-connected to the surface of the support frame (2), a sub-control button (24) is embedded on the control screen (20), and a number of touch screens (23) are arranged at the top of the control screen (20).

10. The industrial touch all-in-one computer with adjustable display screen brightness according to claim 9, characterized in that: The protective plate (22) covers the outside of the relay (11), the first enhanced conductive transmission pin (12) and the second enhanced conductive transmission pin (13), and an air-cooled radiator (21) is arranged at the top of the charging cabinet main body (1).