Quality inspection equipment, quality inspection method and device of pressure monitoring device and storage medium
Through the quality inspection equipment composed of a controller and a pressure source device, the pressure value is automatically output and the measured value is compared, which solves the problem of low quality inspection efficiency of pressure sensors in the prior art, and realizes an efficient and automated quality inspection process.
Patent Information
- Application Number
- CN202510363785.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2025-08-19
AI Technical Summary
In the prior art, manual operation is required when performing quality inspection of pressure sensors, resulting in cumbersome operation and low efficiency.
The quality inspection equipment consisting of a controller, a pressure source device and a gas pipeline unit is used to automatically output the pressurized gas of the set pressure value, and quality inspection is carried out by comparing the measured pressure value to reduce manual manual operation.
It improves the efficiency of the quality inspection of the pressure monitoring device, can conduct independent quality inspections on multiple equipment at the same time, reduces manual intervention, and improves the degree of automation and efficiency of quality inspection.
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Figure CN120507082A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of pressure monitoring, and in particular to a quality inspection device, a quality inspection method, a device and a storage medium for a pressure monitoring device. Background Art
[0002] Blood purification equipment is a medical device. When used in clinical practice, blood is drawn from the patient's body, purified in an extracorporeal circulation circuit, and then the purified blood is returned to the patient's body to complete the blood purification process and achieve the purpose of purifying the blood and treating the disease. During the blood purification treatment of patients using blood purification equipment, in order to ensure the safety of the patient's blood purification treatment, a pressure sensor is usually used to monitor the pressure monitoring port corresponding to the extracorporeal circulation circuit to prevent excessive pressure from causing discomfort to the patient, such as chest tightness, etc., which can even endanger the patient's life in severe cases. Therefore, it is necessary to ensure the accuracy of the pressure sensor in monitoring the pressure. Based on this, it is very necessary to conduct quality inspection of the pressure sensor.
[0003] In the related art, when quality inspection is performed on the pressure sensor, the output pressure of the pressure monitoring port is generally adjusted to a preset pressure value by manually pushing and pulling the syringe. The quality inspection process requires the user to perform repeated manual operations, which is cumbersome and inefficient. Summary of the Invention
[0004] The present application provides a quality inspection device, quality inspection method, device and storage medium for a pressure monitoring device, aiming to improve the efficiency of quality inspection of the pressure monitoring device.
[0005] To achieve the above objectives, the present application provides a quality inspection device for a pressure monitoring device, the quality inspection device comprising:
[0006] A controller, configured to obtain a set first pressure value;
[0007] a pressure source device, connected to the controller, and configured to output pressurized gas at the first pressure value according to the first pressure value;
[0008] a gas transmission pipeline unit, connected to the pressure source device, for transmitting pressurized gas output by the pressure source device to a pressure monitoring port corresponding to at least one electronic device, wherein each of the pressure monitoring ports is provided with a pressure monitoring device to be inspected;
[0009] The controller is further configured to obtain a second pressure value actually measured by each of the pressure monitoring devices, and perform quality inspection on the pressure monitoring device corresponding to each of the second pressure values based on the first pressure value and each of the second pressure values.
[0010] In addition, to achieve the above-mentioned purpose, the present application also provides a quality inspection method of a pressure monitoring device, which is applied to the above-mentioned quality inspection equipment, and the method includes:
[0011] Obtaining a set first pressure value;
[0012] Controlling the pressure source device to output pressurized gas of the first pressure value, and delivering the pressurized gas to a pressure monitoring port corresponding to at least one electronic device based on a gas pipeline unit, wherein each of the pressure monitoring ports is provided with a pressure monitoring device to be inspected;
[0013] The second pressure value actually measured by each of the pressure monitoring devices is obtained, and quality inspection is performed on the pressure monitoring device corresponding to each of the second pressure values based on the first pressure value and each of the second pressure values.
[0014] In addition, to achieve the above-mentioned purpose, the present application also provides a quality inspection device, which includes a memory and a processor;
[0015] The memory is used to store computer programs;
[0016] The processor is configured to execute the computer program and implement the steps of the above-mentioned quality inspection method for the pressure monitoring device when executing the computer program.
[0017] In addition, to achieve the above-mentioned purpose, the present application also provides a computer-readable storage medium, which stores a computer program. When the computer program is executed by a processor, it implements the steps of the quality inspection method of the pressure monitoring device mentioned above.
[0018] The present application discloses a quality inspection device, quality inspection method, device and storage medium for a pressure monitoring device, the quality inspection device including a controller, a pressure source device and a gas pipeline unit, the controller being connected to the pressure source device, and the pressure source device being connected to the gas pipeline unit, wherein the controller is used to obtain a set first pressure value, the pressure source device is used to output pressurized gas of the first pressure value, the gas pipeline unit is used to deliver the pressurized gas to a pressure monitoring port corresponding to at least one electronic device, each pressure monitoring port being provided with a pressure monitoring device to be inspected, the controller being further used to obtain a second pressure value actually measured by each pressure monitoring device, and performing quality inspection on the pressure monitoring device corresponding to each second pressure value based on the first pressure value and each second pressure value, the quality inspection process does not require repeated manual operation by the user, thereby improving the efficiency of quality inspection of the pressure monitoring device. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following is a brief introduction to the drawings required for use in the description of the embodiments. Obviously, the drawings described below are some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0020] Figure 1 This is a structural diagram of a quality inspection device for a pressure monitoring device provided in an embodiment of the present application;
[0021] Figure 2 This is a structural diagram of another quality inspection device for a pressure monitoring device provided in an embodiment of the present application;
[0022] Figure 3 This is a front view of a quality inspection device for a pressure monitoring device provided in an embodiment of the present application;
[0023] Figure 4 This is a structural diagram of another quality inspection device for a pressure monitoring device provided in an embodiment of the present application;
[0024] Figure 5 This is a rear view of a quality inspection device for a pressure monitoring device provided in an embodiment of the present application;
[0025] Figure 6 This is a system diagram of a quality inspection device, an electronic device, and a local server provided in an embodiment of the present application;
[0026] Figure 7 This is a schematic flow chart of the steps of a quality inspection method for a pressure monitoring device provided in an embodiment of the present application;
[0027] Figure 8 This is a schematic block diagram of a quality inspection device provided in an embodiment of the present application. DETAILED DESCRIPTION
[0028] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are part of the embodiments of this application, not all of them. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0029] The flowcharts shown in the accompanying drawings are for illustrative purposes only and do not necessarily include all contents and operations / steps, nor must they be executed in the order described. For example, some operations / steps may be decomposed, combined, or partially merged, so the actual execution order may vary depending on the actual situation.
[0030] It should be understood that the terms used in this specification are only for the purpose of describing specific embodiments and are not intended to limit the present application. As used in this specification and the appended claims, the singular forms "a", "an", and "the" are intended to include the plural forms unless the context clearly indicates otherwise.
[0031] It will also be understood that the term "and / or" used in this specification and the appended claims refers to and includes any and all possible combinations of one or more of the associated listed items.
[0032] Embodiments of the present application provide a quality inspection device, a quality inspection method, a device, and a storage medium for a pressure monitoring device, which are used to improve the efficiency of quality inspection of the pressure monitoring device.
[0033] See also Figure 1 , Figure 1 1 is a schematic diagram of the structure of the quality inspection equipment of the pressure monitoring device provided in one embodiment of the present application. The pressure monitoring device includes but is not limited to a pressure sensor, which is not limited in this application.
[0034] Exemplarily, a pressure monitoring device is provided at a pressure monitoring port corresponding to an electronic device, and the pressure monitoring port is monitored by the pressure monitoring device. The electronic device includes, but is not limited to, a blood purification device. For example, the electronic device may also be various devices in other fields that include pressure monitoring ports. For example, taking a blood purification device as an example, the pressure monitoring ports corresponding to the blood purification device include a filter inlet pressure monitoring port, a venous pressure monitoring port, a transmembrane pressure monitoring port, a plasma inlet pressure monitoring port, a primary membrane pressure monitoring port, a secondary membrane pressure monitoring port, an arterial pressure monitoring port, and the like. These pressure monitoring ports are respectively provided with pressure sensors, and these pressure sensors can realize test items such as filter inlet pressure monitoring, venous pressure monitoring, transmembrane pressure monitoring, plasma inlet pressure monitoring, primary membrane pressure monitoring, secondary membrane pressure monitoring, and arterial pressure monitoring.
[0035] In order to ensure the accuracy of pressure monitoring performed by the pressure monitoring device, in this application, the pressure monitoring device is quality inspected by the quality inspection equipment of the pressure monitoring device.
[0036] like Figure 1As shown, the quality inspection equipment 1000 includes a controller 10, a pressure source device 20, and a gas pipeline unit 30. The controller 10 is connected to the pressure source device 20, and the pressure source device 20 is connected to the gas pipeline unit 30. Among them, the pressure source device 20 is an intelligent digital pressure measurement and control product that integrates pressure measurement, display, output, and control. The pressure source device 20 is integrated with the electromagnetic regulating valve and has a PID (Proportional Integral Derivative, proportional integral differential control) adjustment function. As a pressure source, the controller 10 only needs to give a set first pressure value, and the pressure source device 20 can automatically control the output of the pressurized gas of the first pressure value and keep the pressure stable within the set range. For example, the pressure range of the pressure source device 20 to control the output is between -100kpa-200kpa, and the control accuracy can reach 0.001kpa.
[0037] The pressurized gas is delivered to the pressure monitoring port corresponding to at least one electronic device through the gas pipeline unit 30. The pressure monitoring device installed at each pressure monitoring port performs pressure monitoring. The controller 10 obtains the second pressure value measured by each pressure monitoring device, and performs quality inspection on the pressure monitoring device corresponding to each second pressure value based on the first pressure value and each second pressure value. The first pressure value is compared with each second pressure value, and the performance of the pressure monitoring device corresponding to each second pressure value is judged based on the difference between the first pressure value and each second pressure value. It is judged whether it meets the quality requirements and the quality inspection results of the pressure monitoring device corresponding to each second pressure value are obtained. The quality inspection process of the pressure monitoring device does not require repeated manual operations by the user, thereby improving the efficiency of quality inspection of the pressure monitoring device.
[0038] For example, Figure 2 As shown, the quality inspection device 1000 further includes a communication module 40, which is connected to the controller 10 and the electronic device 2000. For example, the communication module 40 and the electronic device 2000 are connected via an interface such as RS232 or RS485. The communication module 40 is used to obtain current operating status data of the electronic device 2000 and send the current operating status data to the controller 10. The current operating status data includes the second pressure value measured by the pressure monitoring device.
[0039] For example, Figure 2 As shown, the quality inspection device 1000 further includes an input module 50, which includes but is not limited to a keyboard. The input module 50 is connected to the controller 10 and is configured to transmit user input information to the controller 10. For example, a user may edit a command through the input module 50 and transmit it to the controller 10. The edited command includes at least one first pressure value set for quality inspection of the pressure monitoring device.
[0040] For example, Figure 2 and Figure 3 As shown, the quality inspection device 1000 also includes a barcode recognition module 60, wherein the barcode recognition module 60 includes but is not limited to a barcode scanner. The barcode recognition module 60 is connected to the controller 10, and the barcode recognition module 60 is used to identify the identification code on the electronic device 2000, read the information stored in the identification code, and send the information stored in the identification code to the controller 10. The identification code includes but is not limited to UDI (Unique Device Identification). The information stored in the identification code includes but is not limited to a quality inspection program, and the quality inspection program includes at least one first pressure value set for quality inspection of the pressure monitoring device. The controller 10 performs quality inspection on the pressure monitoring device by executing the quality inspection program.
[0041] Controller 10 is equipped with an internal development software platform with multi-level user permission settings (administrator, operator, etc.) for easy management. The software also includes program editing capabilities, allowing users to create, delete, and modify parameters and programs for quality inspection tests; a recipe function, allowing users to customize quality inspection programs by selecting the type of electronic device; and a test item editing function, allowing users to individually enable or disable any test item.
[0042] For example, Figure 2 and Figure 3 As shown, the quality inspection device 1000 further includes a display module 70, which includes but is not limited to a display screen. The display module 70 is connected to the controller 10 and is configured to display operation-related information of the quality inspection device 1000, including at least one of the following: operating information of the quality inspection device 1000 and quality inspection results of the pressure monitoring device.
[0043] For example, Figure 2 and Figure 3 As shown, the quality inspection device 1000 further includes an alarm module 80, which includes, but is not limited to, an alarm light. The alarm module 80 is connected to the controller 10. When the controller 10 detects an abnormality, such as the pressure of the pressurized gas exceeding a preset threshold, the quality inspection device 1000 being in an abnormal state, or the pressure monitoring device receiving a poor quality inspection result, the controller 10 sends a signal to the alarm module 80. Upon receiving the signal, the alarm module 80 issues an alert, such as a flashing alarm light or a beeping sound.
[0044] For example, Figure 2As shown, the quality inspection equipment 1000 also includes a storage module 90, which is connected to the controller 10 and is used to receive and store work-related information of the quality inspection equipment 1000. The work-related information includes at least one of the operating information of the quality inspection equipment 1000 and the quality inspection results of the pressure monitoring device.
[0045] The quality inspection device 1000 has a memory function. When the quality inspection device 1000 is shut down, loses power, or the software freezes, it automatically sends various setting data (such as test mode, test parameters, etc.) and test results to the storage module 90 for storage. The data will not be lost due to shutdown, power failure, etc. When the quality inspection device 1000 returns to normal, if no new settings have been made, the controller 10 directly retrieves the most recently stored data from the storage module 90 for use, without the need to restart the test, which is more efficient and provides a better user experience.
[0046] For example, Figure 2 As shown, the quality inspection equipment 1000 also includes a backup power supply module 100. Exemplarily, the backup power supply module 100 is a built-in UPS (Uninterruptible Power Supply), which is used to maintain the working state of the quality inspection equipment 1000 during a power outage, for example, to maintain the quality inspection equipment 1000 working for 10-20 minutes during a power outage.
[0047] For example, Figure 3 As shown, the quality inspection equipment 1000 also includes an emergency emptying button 110, which is electrically connected to the on / off key of the pressure source device 20. After pressing the emergency emptying button 110, the pressure in the gas pipeline unit 30 can be released, thereby achieving the effect of rapid pressure relief.
[0048] In some embodiments, as Figure 2 and Figure 4 As shown, the gas pipeline unit 30 includes a main gas pipe 31, a gas distribution device 32, and multiple gas distribution pipes 33, wherein the gas distribution device 32 includes but is not limited to a gas distribution row. The gas distribution device 32 includes an inlet and multiple outlets, and the number of gas distribution pipes 33 is consistent with the number of outlets of the gas distribution device 32. One end of the main gas pipe 31 is connected to the pressure source device 20, and the other end is connected to the inlet of the gas distribution device 32. Each outlet of the gas distribution device 32 is connected to a gas distribution pipe 33. The main gas pipe 31 is used to transport the pressurized gas output by the pressure source device 20 to the gas distribution device 32. The gas distribution device 32 is used to divide the pressurized gas into multiple branch airflows. Each gas distribution pipe 33 is used to transport the branch airflow to the pressure monitoring port corresponding to the corresponding electronic device 2000.
[0049] For example, Figure 2 and Figure 4As shown, each gas distribution pipe 33 is provided with an on-off valve 34. The number of on-off valves 34 corresponds to the number of gas distribution pipes 33. The on-off valves 34 include, but are not limited to, solenoid valves. Each on-off valve 34 is connected to a controller 10. The controller 10 controls the opening or closing of each on-off valve 34, thereby controlling the flow or blocking of the corresponding gas distribution pipe 33.
[0050] The quality inspection device 1000 can be used to perform quality inspection on the pressure monitoring devices corresponding to multiple electronic devices at the same time. The quality inspection of each pressure monitoring device does not interfere with each other and is processed independently, thereby further improving the efficiency of quality inspection of the pressure monitoring devices.
[0051] For example, Figure 2 and Figure 4 As shown, the main gas pipe 31, the gas distribution device 32, and multiple gas distribution pipes 33 are arranged inside the quality inspection equipment 1000, and the gas pipeline unit 30 also includes a connecting gas pipe 35 arranged outside the quality inspection equipment 1000. The connecting gas pipe 35 is the gas pipe connecting the quality inspection equipment 1000 and the electronic device 2000.
[0052] like Figure 5 As shown, the quality inspection device 1000 includes a pressure output port 120. Exemplarily, the pressure output port 120 is located on the back of the quality inspection device 1000. The gas distribution pipe 33 connects the outlet of the gas distribution device 32 to the pressure output port 120 of the quality inspection device 1000. The inlet of the connecting air pipe 35 is connected to the pressure output port 120 on the quality inspection device 1000. The outlet of the connecting air pipe 35 can be connected to the pressure monitoring port of the electronic device 2000 via a conventional Luer connector or a custom connector.
[0053] For example, Figure 5 As shown, the quality inspection device 1000 includes a data interaction interface 130, which can be provided on the back of the quality inspection device 1000. One end of the data cable is connected to the data interaction interface 130 of the quality inspection device 1000, and the other end is connected to the electronic device 2000, thereby realizing data interaction between the quality inspection device 1000 and the electronic device 2000.
[0054] For example, before the quality inspection equipment 1000 enters the test, the connecting air pipe 35 and the data cable must be connected. After the connection is completed, it automatically determines whether the status of the electronic device 2000 meets the requirements for starting the test. If it meets the test requirements, it enters the test; if it does not meet the requirements, the controller 10 sends a signal to the alarm module 80. After receiving the signal, the alarm module 80 issues an alarm, for example, the alarm light flashes, a beeping sound is emitted, etc.
[0055] For example, the controller 10 has a data analysis function, for example, automatically counting the number of tested products and the qualified rate, and classifying and counting the faults of defective products, etc., and controlling the alarm module 80 to issue fault alarms. For example, taking the electronic device as a blood purification device as an example, the fault alarm type statistics table is shown in Table 1:
[0056] Table 1
[0057]
[0058]
[0059] For example, the controller 10 has the function of intelligently managing various data, for example, it can query and export the quality inspection results according to time, identification code, group, qualified status, etc.; it has the function of generating, editing, exporting, storing, and querying the quality inspection report; it can send the quality inspection report and other data to the storage module 90. And / or, if Figure 6 As shown, the data is sent to the local server 3000 for storage, such as being uploaded to the local server 3000 wirelessly via a local area network.
[0060] See also Figure 7 , Figure 7 This is a flow chart of a quality inspection method for a pressure monitoring device provided in one embodiment of the present application. This method can be applied to a quality inspection device or to a quality inspection device for a pressure monitoring device. This application does not limit the application scenario of this method.
[0061] like Figure 7 As shown, the quality inspection method of the pressure monitoring device specifically includes steps S101 to S103.
[0062] S101: Acquire a set first pressure value.
[0063] S102. Control the pressure source device to output pressurized gas of the first pressure value, and deliver the pressurized gas to the pressure monitoring port corresponding to at least one electronic device based on the gas pipeline unit, wherein each pressure monitoring port is provided with a pressure monitoring device to be inspected.
[0064] S103: Obtain the second pressure value actually measured by each of the pressure monitoring devices, and perform quality inspection on the pressure monitoring devices corresponding to each of the second pressure values based on the first pressure value and each of the second pressure values.
[0065] Exemplarily, the quality inspection device obtains an instruction including a set first pressure value, and the controller sends the instruction to the pressure source device, which outputs pressurized gas with the set first pressure value.
[0066] In some embodiments, obtaining the set first pressure value includes: obtaining information stored in an identification code on the electronic device, the information stored in the identification code including the first pressure value; or obtaining user input information, the user input information including the first pressure value.
[0067] For example, the barcode recognition module scans the UDI code of the electronic device, obtains the quality inspection program stored in the UDI code, and then feeds the quality inspection program back to the controller, wherein the quality inspection program includes at least one first pressure value set for quality inspection of the pressure monitoring device.
[0068] For another example, the user edits an instruction through the input module and sends it to the controller, wherein the edited instruction includes at least one first pressure value set for quality inspection of the pressure monitoring device.
[0069] The pressurized gas is transported to the pressure monitoring port of the electronic equipment through the gas transmission pipeline unit. The pressure monitoring device on the electronic equipment monitors the actual value of the pressure monitoring port, obtains a second pressure value, and returns the second pressure value to the communication module. The communication module returns the second pressure value to the controller. The controller automatically compares the second pressure value with the first pressure value, calculates the difference between the first pressure value and the second pressure value, judges the performance of the pressure monitoring device based on the difference, and obtains the quality inspection result of the pressure monitoring device.
[0070] For example, a corresponding quality inspection report is generated based on the quality inspection result, and the quality inspection report is output, for example, by displaying the quality inspection report through a display module.
[0071] For further descriptions of the relevant descriptions and relevant features in the embodiment of the method of the present application, reference can be made to the relevant parts of the introduction in the embodiment of the quality inspection equipment of the aforementioned pressure monitoring device, which will not be repeated here.
[0072] In the above embodiment, by obtaining a set first pressure value, the pressure source device is controlled to output pressurized gas of the first pressure value, and the pressurized gas is delivered to the pressure monitoring port corresponding to at least one electronic device based on the gas pipeline unit. The pressure monitoring device provided at each pressure monitoring port performs pressure monitoring, obtains the second pressure value actually measured by each pressure monitoring device, and performs quality inspection on the pressure monitoring device corresponding to each second pressure value based on the first pressure value and each second pressure value. The quality inspection process of the pressure monitoring device does not require repeated manual operations by the user, thereby improving the efficiency of quality inspection of the pressure monitoring device. In addition, the pressure monitoring devices corresponding to multiple electronic devices can be quality inspected at the same time, and the quality inspections of each pressure monitoring device do not interfere with each other and are processed independently, thereby further improving the efficiency of quality inspection of the pressure monitoring device.
[0073] See also Figure 8 , Figure 8This is a schematic block diagram of a quality inspection device provided in an embodiment of the present application. The quality inspection device can be configured in a quality inspection device to execute the aforementioned quality inspection method of the pressure monitoring device.
[0074] like Figure 8 As shown, the quality inspection device 200 may include a processor 210 and a memory 220, wherein the processor 210 and the memory 220 are connected via a bus, such as an I2C (Inter-integrated Circuit) bus.
[0075] Specifically, the processor 210 may be a micro-controller unit (MCU), a central processing unit (CPU), or a digital signal processor (DSP).
[0076] Specifically, the memory 220 may be a Flash chip, a read-only memory (ROM) disk, an optical disk, a USB flash drive, or a mobile hard disk, etc. The memory 220 stores various computer programs for execution by the processor 210 .
[0077] The processor 210 is configured to run a computer program stored in a memory and implement the aforementioned quality inspection method for the pressure monitoring device when executing the computer program.
[0078] The quality inspection device 200 can execute the quality inspection method of the pressure monitoring device provided in the embodiment of the present application. Therefore, it can achieve the beneficial effects that can be achieved by the quality inspection method of the pressure monitoring device provided in the embodiment of the present application. Please refer to the previous embodiment for details and will not be repeated here.
[0079] An embodiment of the present application further provides a computer-readable storage medium having a computer program stored thereon. When the computer program is executed by a processor, the steps of the quality inspection method for the pressure monitoring device as described above are implemented.
[0080] The computer-readable storage medium may be an internal storage unit of the quality inspection apparatus or quality inspection equipment described in the aforementioned embodiment, such as a hard disk or memory of the quality inspection apparatus or quality inspection equipment. The computer-readable storage medium may also be an external storage device of the quality inspection apparatus or quality inspection equipment, such as a plug-in hard disk, a smart memory card (SmartMediaCard, SMC), a secure digital card (SecureDigitalCard, SDCard), a flash memory card (FlashCard), etc. equipped with the quality inspection apparatus or quality inspection equipment.
[0081] Since the computer program stored in the storage medium can execute any quality inspection method for a pressure monitoring device provided in the embodiments of the present application, the beneficial effects that can be achieved by any quality inspection method for a pressure monitoring device provided in the embodiments of the present application can be achieved. Please refer to the previous embodiments for details and will not be repeated here.
[0082] It should be noted that, in this document, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or system comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or system. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or system comprising the element.
[0083] The above description is only a specific implementation method of the present application, but the scope of protection of the present application is not limited thereto. Any technician familiar with the technical field can easily think of various equivalent modifications or replacements within the technical scope disclosed in the present application, and these modifications or replacements should be included in the scope of protection of the present application.
Claims
1. A quality inspection device for a pressure monitoring device, characterized in that: The quality inspection equipment includes: A controller, configured to obtain a set first pressure value; a pressure source device, connected to the controller, and configured to output pressurized gas at the first pressure value according to the first pressure value; a gas transmission pipeline unit, connected to the pressure source device, for transmitting pressurized gas output by the pressure source device to a pressure monitoring port corresponding to at least one electronic device, wherein each of the pressure monitoring ports is provided with a pressure monitoring device to be inspected; The controller is further configured to obtain a second pressure value actually measured by each of the pressure monitoring devices, and perform quality inspection on the pressure monitoring device corresponding to each of the second pressure values based on the first pressure value and each of the second pressure values.
2. The quality inspection equipment according to claim 1, characterized in that: The gas transmission pipeline unit includes a main gas pipe, a gas distribution device, and multiple gas distribution pipes. The gas distribution device includes an inlet and multiple outlets, and the number of the gas distribution pipes is consistent with the number of outlets of the gas distribution device; one end of the main gas pipe is connected to the pressure source device, and the other end is connected to the inlet of the gas distribution device, and each outlet of the gas distribution device is connected to one gas distribution pipe; the main gas pipe is used to transport the pressurized gas output by the pressure source device to the gas distribution device, and the gas distribution device is used to divide the pressurized gas into multiple branch airflows, and the gas distribution pipes are used to transport the branch airflows to the pressure monitoring port.
3. The quality inspection equipment according to claim 2, characterized in that: Each of the gas distribution pipes is provided with a switch valve, and each of the switch valves is connected to the controller; the controller is also used to control each of the switch valves to open or close, so as to control the gas distribution pipe corresponding to each of the switch valves to be connected or blocked.
4. The quality inspection equipment according to claim 1, characterized in that: The quality inspection device further includes a barcode recognition module, which is connected to the controller and is used to recognize an identification code on the electronic device, read information stored in the identification code, and send the information to the controller.
5. The quality inspection equipment according to claim 1, characterized in that: The quality inspection equipment also includes a communication module, which is connected to the controller. The communication module is used to obtain current operating status data of the electronic device and send the current operating status data to the controller. The current operating status data includes the second pressure value measured by the pressure monitoring device.
6. The quality inspection equipment according to claim 1, characterized in that: The quality inspection device further includes an input module, which is connected to the controller and is used to send user input information to the controller.
7. A quality inspection method for a pressure monitoring device, characterized in that: Applied to the quality inspection device according to any one of claims 1 to 6, the method comprises: Obtaining a set first pressure value; Controlling the pressure source device to output pressurized gas of the first pressure value, and delivering the pressurized gas to a pressure monitoring port corresponding to at least one electronic device based on a gas pipeline unit, wherein each of the pressure monitoring ports is provided with a pressure monitoring device to be inspected; The second pressure value actually measured by each of the pressure monitoring devices is obtained, and quality inspection is performed on the pressure monitoring device corresponding to each of the second pressure values based on the first pressure value and each of the second pressure values.
8. The method according to claim 7, wherein The obtaining of the set first pressure value includes: Acquire information stored in an identification code on an electronic device, where the information stored in the identification code includes the first pressure value; or User input information is acquired, where the user input information includes the first pressure value.
9. A quality inspection device, characterized in that: The quality inspection device includes a memory and a processor; The memory is used to store computer programs; The processor is configured to execute the computer program and implement the steps of the quality inspection method for the pressure monitoring device according to claim 7 or 8 when executing the computer program.
10. A computer-readable storage medium, characterized in that The computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the steps of the quality inspection method for the pressure monitoring device according to claim 7 or 8 are implemented.
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