A detection platform
Patent Information
- Application Number
- CN202521747586.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-15
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-08-15
AI Technical Summary
由于载带封装设备的器件多,功能复杂,维修和保养后,各器件的机械位置可能变动,电气插头可能被触碰,安装到生产线后可能出现故障报警,需要反复从生产线上拆下维修后再次上机验证,不能在载带封装设备的实际生产时工作状态下进行测试,造成时间的浪费,影响设备生产效率
[0019] The testing platform of this utility model embodiment includes a testing table and testing equipment mounted on the testing table. The testing equipment is equipped with a control module and a drive component, a temperature control module, a pneumatic structure, and a connecting base electrically connected to the control module. The drive component, temperature control module, and pneumatic structure are configured to connect to the device under test, and the connecting base is configured to connect the testing equipment and the device under test. This testing platform utilizes the control module to electrically connect the drive component, temperature control module, pneumatic structure, and other modules, allowing for the overall connection of the device under test. By operating the control module, the various components of the device under test can work collaboratively, facilitating the testing of each component of the device under test during actual operation, thereby reducing costs and improving testing efficiency.
Smart Images

Figure CN224758633U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of maintenance and testing equipment technology, specifically to a testing platform. Background Technology
[0002] Carrier tape packaging equipment is an important piece of equipment in the semiconductor industry used for packaging and transporting chips. It has functions such as carrier tape feeding, pocket recognition, carrier tape sealing, indentation recognition, and carrier tape cutting. The working principle of carrier tape packaging equipment is as follows: After connecting the carrier tape packaging equipment to electricity and gas, the sealing blades are heated to a suitable temperature, and the carrier tape and gas pressure are adjusted. The SMD component is placed into the carrier tape by manual or automatic feeding equipment. The motor rotates and pulls the cover tape and the forming carrier tape to the packaging position. At the packaging position, the cover tape is on top and the carrier tape is on the bottom. The two heated sealing blades press on the cover tape and the carrier tape, so that the cover tape seals the opening of the SMD component on the carrier tape. This achieves the purpose of SMD component packaging. Then, the packaged carrier tape is cut and collected according to requirements.
[0003] After a period of operation, the carrier packaging equipment needs to be removed from the production line for maintenance and repair. Following maintenance, it's necessary to test the functionality of each component. Current testing methods involve performing continuity tests on each operating part of the equipment individually. However, due to the large number and complex functions of the components, the mechanical positions of these components may change after maintenance, electrical connectors may be touched, and fault alarms may occur after reinstallation on the production line. This necessitates repeated removal and reinstallation for verification, preventing testing during actual production operation and wasting time, thus impacting equipment efficiency. Utility Model Content
[0004] In view of this, the purpose of this utility model is to provide a testing platform that enables the testing of various components of the device under test in actual working condition, thereby reducing costs and improving testing efficiency.
[0005] This utility model embodiment provides a detection platform, the detection platform comprising:
[0006] Testing station;
[0007] The testing equipment is mounted on the testing platform. The testing equipment is equipped with a control module, as well as a drive component, a temperature control module, a pneumatic structure, and a connecting base that are electrically connected to the control module.
[0008] The drive assembly, the temperature control module, and the pneumatic structure are configured to be connected to the device under test.
[0009] The connector is configured to connect the testing device and the device to be tested.
[0010] Optionally, the driving component includes a servo drive module and a stepper drive module, which are electrically connected to the servo motor and stepper motor of the device under test, respectively.
[0011] Optionally, the temperature control module includes a temperature setting unit and a temperature display unit.
[0012] Optionally, the pneumatic structure includes a pressure detection module, a pressure control module, and an air source. The pressure detection module is configured to detect the pressure of the working state of the device under test. The pressure control module is configured to adjust the pressure of the working state of the device under test according to the pressure detected by the pressure detection module. The air source is configured to provide driving force to the device under test.
[0013] Optionally, the pneumatic structure further includes a pressure display module configured to display the pressure value detected by the pressure detection module.
[0014] Optionally, the connector includes a gas source connector and a circuit socket.
[0015] Optionally, the detection device is further provided with multiple operation buttons, each of which is connected to the control module.
[0016] Optionally, the detection device is further provided with an indicator module, which is configured to indicate whether the detection device is connected to the device under test.
[0017] Optionally, the testing platform further includes a device fixing component configured to fix the device to be tested.
[0018] Optionally, the testing platform further includes a cover strip release structure configured to provide a cover strip to the device under test connected to the testing equipment.
[0019] The testing platform of this utility model embodiment includes a testing table and testing equipment mounted on the testing table. The testing equipment is equipped with a control module and a drive component, a temperature control module, a pneumatic structure, and a connecting base electrically connected to the control module. The drive component, temperature control module, and pneumatic structure are configured to connect to the device under test, and the connecting base is configured to connect the testing equipment and the device under test. This testing platform utilizes the control module to electrically connect the drive component, temperature control module, pneumatic structure, and other modules, allowing for the overall connection of the device under test. By operating the control module, the various components of the device under test can work collaboratively, facilitating the testing of each component of the device under test during actual operation, thereby reducing costs and improving testing efficiency. Attached Figure Description
[0020] The above and other objects, features and advantages of the present invention will become clearer from the following description of embodiments of the present invention with reference to the accompanying drawings, in which:
[0021] Figure 1 This is a structural schematic diagram of the detection platform of this utility model from a first angle;
[0022] Figure 2 This is a second-angle structural schematic diagram of the detection platform according to an embodiment of the present invention;
[0023] Figure 3 This is a schematic diagram of the framework of each functional module of the detection platform according to an embodiment of the present utility model.
[0024] Figure label:
[0025] 1-Testing table; 2-Testing equipment; 3-Control module; 4-Servo drive module; 5-Stepper drive module; 6-Pneumatic structure; 7-Pressure detection module; 8-Pressure regulation module; 9-Air source; 10-Air source connector; 11-Circuit socket; 12-Equipment fixing component; 120-Fixing slot; 121-First bracket; 122-Second bracket; 123-Third bracket; 13-Cover strap release structure; 131-Fourth bracket; 132-Cover strap release driver; 133-Cover strap reel; 14-Operation button; 15-Temperature control module; 151-Temperature setting unit; 152-Temperature display unit; 16-Pressure display module; 17-Indicator module; 19-Rotating maintenance bracket; 191-Active rotating part; 192-Driven rotating part; 20-Supporting foot; X-Length direction; Y-Width direction. Detailed Implementation
[0026] The present application is described below based on embodiments, but it is not limited to these embodiments. In the detailed description of the present application below, certain specific details are described in detail. Those skilled in the art can fully understand the present application without these details. To avoid obscuring the substance of the present application, well-known methods, processes, flows, elements, and circuits are not described in detail.
[0027] Furthermore, those skilled in the art should understand that the accompanying drawings provided herein are for illustrative purposes only and are not necessarily drawn to scale.
[0028] Unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0029] Unless the context explicitly requires it, words such as "including" or "contains" throughout the application should be interpreted as including rather than exclusive or exhaustive; that is, meaning "including but not limited to".
[0030] In the description of this application, it should be understood that the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance. Furthermore, in the description of this application, unless otherwise stated, "a plurality of" means two or more.
[0031] Tape packaging equipment is a crucial piece of equipment in the semiconductor industry used for packaging and transporting chips. It integrates functions such as carrier tape transport, pocket identification, carrier tape sealing, indentation recognition, and carrier tape dicing. Specifically, a carrier tape packaging machine includes LED lights, servo motors, stepper motors, DC motors, solenoid valves, electromagnets, heating rods, PT100 temperature sensors (or other temperature sensors), and six proximity sensors. The LED lights provide a light source for the camera on the equipment, which captures images for indentation recognition, etc. The servo motors drive the carrier tape, allowing it to move to different positions to complete different packaging processes. The stepper motors control the movement of the LED lights to improve the image quality captured by the camera. The DC motors drive the dicing blade to cut the packaged carrier tape. The energized solenoid valves control the cylinders that move the sealing block up and down to seal the carrier tape. The electromagnets limit the movement of the sealing block, controlling its position or range of motion by energizing it. The heating rods heat the sealing blades of the packaging carrier tape to the set heat-sealing temperature. The PT100 temperature sensor is used to measure the temperature of the sealing blade to ensure that it remains within the ideal heat-sealing temperature range. Six proximity sensors are used to detect the initial position of the stepper motor, the initial position, waiting position, and working position of the sealing blade, the initial position of the servo motor, and the initial position of the DC motor.
[0032] The testing platform of this application embodiment can test the equipment under actual working conditions after maintenance and repair, which can quickly resolve faults, reduce downtime, and improve maintenance efficiency and equipment reliability. The equipment under test can be the carrier tape packaging equipment described above, such as the Newleopard DS20000 equipment track.
[0033] like Figure 1 , Figure 2 and Figure 3 As shown, the testing platform includes a testing table 1 and a testing device 2, with the testing device 2 mounted on the testing table 1. The testing table 1 provides a mounting platform for various test components. The testing device 2 is equipped with a control module 3, a drive assembly, a temperature control module 15, a pneumatic structure 6, and a connecting base. The drive assembly, temperature control module 15, and pneumatic structure 6 are electrically connected to the control module 3.
[0034] During testing, the carrier tape packaging equipment to be tested is first installed onto the testing platform. Then, the drive assembly, temperature control module 15, and pneumatic structure 6 are connected to the carrier tape packaging equipment to be tested. The connecting seat connects the testing equipment 2 and the carrier tape packaging equipment to be tested. Finally, by controlling the control module 3, the various components of the carrier tape packaging equipment can work together, thereby enabling the testing of each component of the carrier tape packaging equipment in its actual working state.
[0035] Specifically, the drive components include a servo drive module 4 and a stepper drive module 5, both of which are electrically connected to the control module 3. During testing, the servo drive module 4 is electrically connected to the servo motor of the carrier packaging device, and the stepper drive module 5 is electrically connected to the stepper motor of the carrier packaging device. In one embodiment, the control module 3 can be an Atmega16 microcontroller, and the stepper drive module 5 can be an A4988 model stepper drive module.
[0036] During testing, the carrier tape packaging equipment is in operation. The control module 3 of the testing platform sends command signals to the servo drive module 4. The servo drive module 4 adjusts the speed and position of the servo motor according to these command signals. Since the servo motor drives the carrier tape, the testing personnel can complete the testing by monitoring whether the actual performance of the servo motor meets the set requirements (e.g., checking whether the carrier tape moves smoothly at the predetermined speed, whether there is any jitter or deviation, whether it moves to the designated position within the predetermined time, etc.). Simultaneously, because the sensors installed inside or outside the servo motor can provide real-time feedback of the servo motor's position and speed information to the servo drive module 4, the status information of the servo motor, including current position and speed parameters, can be read through the interface provided by the servo drive module 4. This information is then compared with the target position and target speed to determine whether the servo motor is working properly.
[0037] During testing, the carrier tape packaging equipment is in operation. The control module 3 of the testing platform sends pulse signals to the stepper drive module 5. The stepper drive module 5 adjusts the speed, acceleration, and other parameters of the stepper motor based on these pulse signals. Since the stepper drive module 5 is used to control the movement of the LED light to provide the best light source for the camera, the testing personnel can complete the testing of the stepper motor by monitoring whether the actual performance of the stepper motor meets the set requirements (for example, checking whether the LED light moves smoothly at the predetermined speed, whether there is any jitter or deviation, whether it moves to the designated position at the predetermined time, and indirectly verifying the effect of the stepper motor driving the LED light through the results of camera shooting).
[0038] like Figure 1 and Figure 2 As shown, the temperature control module 15 includes a temperature setting unit 151 and a temperature display unit 152, both of which are electrically connected to the control module 3. The temperature setting unit 151 allows the tester to input the target heating temperature value of the heating rod of the carrier packaging equipment or the target sealing temperature value. The temperature display unit 152 displays the sealing temperature measured by the PT100 temperature sensor of the carrier packaging equipment. The temperature setting unit 151 can be implemented as a knob, button, or digital interface. The temperature display unit 152 can be an LED display screen, an LCD screen, or other forms of display.
[0039] During testing, the carrier tape packaging equipment is in operation. The heating rod and PT100 temperature sensor of the carrier tape packaging equipment are electrically connected to the control module 3. For example, the heating rod can be directly connected to the power controller or solid-state relay (SSR) in the control module 3. The operator inputs the desired target sealing knife temperature or the target heating temperature of the heating rod through the temperature setting unit 151. The control module 3 sends a command to the heating rod based on the target temperature value received from the temperature setting unit 151. The heating rod adjusts its heating power according to the command to precisely control the sealing knife temperature. The PT100 temperature sensor monitors the sealing knife temperature in real time and feeds back the actual sealing knife temperature to the control module 3. The control module 3 sends the actual temperature measured by the PT100 temperature sensor to the temperature display unit 152 for display by the operator. Testers can set different target temperature values to observe whether the heating rod can quickly reach and maintain that temperature, whether the temperature fluctuation range is within an acceptable range, whether the PT100 temperature sensor can accurately reflect the actual temperature change, and whether the reading on the temperature display unit 152 changes reasonably under different temperature conditions. This allows for the testing of both the heating rod and the PT100 temperature sensor. Simultaneously, it is important to observe for any abnormal noise or overheating during the heating process.
[0040] like Figure 1 and Figure 2 As shown, the pneumatic structure 6 includes a pressure detection module 7, a pressure regulation module 8, an air source 9, and a pressure display module 16. The pressure detection module 7, pressure regulation module 8, and pressure display module 16 are all electrically connected to the control module 3. The pressure detection module 7 is configured to detect the pressure of the device under test (i.e., the carrier tape packaging device) during its operating state. Specifically, the pressure detection module 7 detects the pressure of the cylinder of the carrier tape packaging device when the sealing knife presses against the cover tape and carrier tape. The pressure regulation module 8 is configured to adjust the pressure of the device under test based on the pressure detected by the pressure detection module 7, thereby adjusting the output pressure of the air source. The pressure display module 16 is configured to display the pressure value detected by the pressure detection module 7. The air source 9 provides driving force to the device under test. Specifically, the air source 9 is connected to the pressure regulation module 8 via a pipeline, and then further connected to the solenoid valve of the device under test, which is connected to the cylinder of the device under test. The pressure detection module 7 can be a pressure sensor, such as a weighing module HX711; the pressure display module 16 can be an LED display, an LCD screen, or a digital tube, or other forms of display. Pressure control module 8 can be a pneumatic pressure regulating valve.
[0041] During testing, pressure detection module 7 is installed on the air supply line of the cylinder of the carrier tape packaging equipment, pressure regulation module 8 is connected to the solenoid valve of the carrier tape packaging equipment, and the solenoid valve of the carrier tape packaging equipment is connected to control module 3. The tester can set a target pressure value in control module 3. Based on the set target pressure value, control module 3 sends an adjustment signal to pressure regulation module 8. Pressure regulation module 8 adjusts the air pressure supplied by air source 9 to the solenoid valve of the carrier tape packaging equipment according to the received adjustment signal. When a preset time point is reached or other conditions are met, control module 3 sends a signal to the solenoid valve, causing the solenoid valve to switch states, allowing compressed air to enter one side of the cylinder, pushing the piston rod and moving the sealing blade downwards. Pressure detection module 7 continuously monitors the actual working pressure of the cylinder and feeds the data back to control module 3. Control module 3 compares the actual pressure value with the target pressure value. If there is a deviation, it adjusts the air source output pressure by adjusting pressure regulation module 8 to ensure stable pressure output. After the pressing action is completed, control module 3 sends a signal to the solenoid valve again, changing its state so that compressed air enters the cylinder from the other side, pushing the piston rod upward to return to the initial position. During this process, control module 3 also sends the pressure checked by pressure detection module 7 to pressure display module 16 for real-time display. Testers can test the cylinder and solenoid valve of the carrier tape packaging equipment by observing the working status of the cylinder and solenoid valve, including the cylinder stroke time, the time required to reach the set pressure, the solenoid valve response time, and whether the reading on pressure display module 16 changes reasonably.
[0042] The connector is used to connect the testing device 2 to the device under test. Specifically, the connector includes a gas source connector 10 and a circuit socket 11, such as... Figure 1 and Figure 2 As shown. The air source connector 10 is used to connect the air source 9 and the cylinder of the device under test, so that the air source 9 can supply air to the cylinder during testing, thereby realizing the testing of the cylinder of the device under test in the actual working state and improving the testing accuracy. The circuit socket 11 is used to supply power to the device under test, ensuring that its electrical parts can operate normally, thereby enabling it to be tested in the actual working state, improving the overall reliability and production efficiency of the equipment.
[0043] like Figure 3 As shown, the detection platform also includes an indicator module 17, which is connected to the control module 3. The indicator module 17 is configured to indicate whether the detection device 2 is connected to the device under test, specifically whether the proximity sensor of the detection device 2 is connected to the device under test.
[0044] At the start of testing, the control module is connected to the six proximity sensors of the carrier tape packaging equipment. The carrier tape packaging equipment is then controlled to operate. When the stepper motor moves to the initial position, the sealing blade sequentially moves to the initial position, the waiting position, and the working position, the servo motor moves to the initial position, and the DC motor moves to the initial position, if the proximity sensor at the corresponding position is properly connected, the proximity sensor generates an electrical signal and sends it to the control module 3 to trigger it. The control module 3 then controls the corresponding indicator module 17 to indicate (e.g., an LED light will illuminate), indicating that the proximity sensor is working properly. The number of indicator modules 17 is the same as the number of proximity sensors, and their positions are set in a one-to-one correspondence. Optionally, the indicator module 17 is an LED light.
[0045] Furthermore, when the carrier tape packaging equipment is installed on the testing platform, the DC motor of the carrier tape packaging equipment also needs to be connected to the circuit socket 11, which is used to supply power to the DC motor. During testing, the testing platform only needs to be turned on and power is supplied to the DC motor. The tester can determine whether the DC motor is normal by observing whether it is running; running when powered on indicates normal operation, while not running indicates a fault.
[0046] like Figure 1 and Figure 2 As shown, the testing platform also includes a device fixing component 12, which is used to fix the device to be tested. In this embodiment, the pneumatic structure 6 is disposed on the testing table 1 and located on one side of the testing device 2 along its length. The air source connection seat 10 and the circuit socket 11 are respectively disposed above the pneumatic structure 6. The arrangement of the testing device 2 and the pneumatic structure 6 allows the subsequent carrier tape packaging equipment to be mounted on them, resulting in a compact overall structure and miniaturization.
[0047] The equipment fixing assembly 12 is fixed on the testing platform 1 and located outside the testing equipment 2 and the pneumatic structure 6. The carrier tape packaging device can be fixedly connected to the equipment fixing assembly 12. The top of the equipment fixing assembly 12 is provided with a fixing groove 120, which extends above the testing equipment 2, the air source connection seat 10, and the circuit socket 11 (that is, the equipment fixing assembly 12 is set above the top of the testing equipment 2, the air source connection seat 10, and the circuit socket 11). The carrier tape packaging device can be connected above the testing equipment 2, the air source connection seat 10, and the circuit socket 11 by cooperating with the fixing groove 120 through its own connecting shaft, which facilitates the observation of the operating testing status of each device and the connection with the various test components of the testing platform.
[0048] In one embodiment, such as Figure 1 and Figure 2 As shown, the equipment fixing assembly 12 includes a first bracket 121, a second bracket 122, and a third bracket 123. The first bracket 121 and the second bracket 122 are symmetrically arranged on both sides of the testing equipment 2 along the width direction Y, and the third bracket 123 is arranged on the side of the pneumatic structure 6 away from the testing equipment 2 along the length direction X. The tops of the first bracket 121, the second bracket 122, and the third bracket 123 are all provided with fixing grooves 120, and the three connecting shafts of the carrier tape packaging device can be placed in the three fixing grooves 120 respectively, thereby fixing the carrier tape packaging device. After the carrier tape packaging device is fixed in the equipment fixing assembly 12, it is located above the testing equipment 2, the air source connection seat 10, and the circuit socket 11, facilitating observation of the operating status of each device and easy connection with the various test components of the testing platform.
[0049] In this embodiment, the fixing grooves 120 are all recessed from the top surface and extend through the thickness direction of each bracket, facilitating the fixed installation of the carrier tape packaging equipment. It should be noted that the number, position, and structure of the brackets can be adaptively varied according to the structure, number, and position of the corresponding connecting parts on the carrier tape packaging equipment to meet the requirements for fixing the carrier tape packaging equipment during testing.
[0050] like Figure 1 and Figure 2 As shown, the testing platform also includes a cover strip release structure 13, which is configured to provide a cover strip to the device to be tested connected to the testing equipment, thereby enabling the testing platform to meet the actual working conditions of the track equipment.
[0051] like Figure 1 and Figure 2As shown, the cover tape release structure 13 is located on the side of the detection device 2 away from the pneumatic structure 6 along the length direction X. The cover tape release structure 13 is used during the electronic component packaging process to control the release of unused cover tape, ensuring that the cover tape can smoothly and accurately cover the carrier tape containing electronic components (such as chips), and is sealed by the carrier tape packaging equipment to protect the electronic components from external environmental influences. The unused cover tape is in a wound form.
[0052] like Figure 1 and Figure 2 As shown, the cover tape release structure 13 includes a fourth bracket 131, a cover tape release driver 132, and a cover tape reel 133. The fourth bracket 131 can be fixed to the outside of the testing device 2 by bolts, welding, snap-fitting, etc. The cover tape release driver 132 is fixed to the top of the fourth bracket 131, and the cover tape reel 133 is fixed to the cover tape release driver 132. The cover tape reel 133 is used to fix the wound cover tape, and the cover tape release driver 132 releases the cover tape by driving the cover tape reel 133 to rotate. The central axis of the cover tape reel 133 is perpendicular to the direction of rotation of the carrier tape, so that the cover tape release can be used in conjunction with the carrier tape. The fourth bracket 131 extends above the testing device 2, so that the cover tape release driver 132, the cover tape reel 133, and the wound cover tape are located above the testing device 2, which can effectively reduce the footprint and help to achieve a compact overall layout.
[0053] like Figure 3 As shown, the cover tape release driver 132 is connected to the control module 3. The control module 3 controls the cover tape release driver 132 to rotate and release the cover tape, enabling the testing platform to perform tests under the actual working conditions of the carrier tape packaging equipment, thereby improving the accuracy of the tests. The cover tape release driver 132 can be a motor.
[0054] It should be noted that the cover belt release structure 13 may also include a tension wheel, a guide wheel, and other structures. The tension wheel can adjust its position through a sliding component to achieve tensioning of the cover belt.
[0055] like Figure 1 and Figure 2 As shown, the outer surface of the testing device 2 is equipped with multiple operation buttons 14, which are connected to the control module 3. Each operation button 14 is used to trigger the generation of different commands, allowing the control module 3 to control the corresponding modules or structures to operate when different commands are received. For example, the operation buttons 14 can control power on / off and the switching on / off of different tests.
[0056] like Figure 1 and Figure 2As shown, the testing platform also includes a rotating maintenance bracket 19. The rotating maintenance bracket 19 is mounted on the testing table 1 and located on one side of the testing equipment 2 along its width direction, which can avoid interference with the testing equipment. When the carrier tape packaging equipment needs repair or maintenance, the carrier tape packaging equipment can be fixed on the rotating maintenance bracket 19. Then, by rotating the rotating maintenance bracket 19, the working position requiring repair or maintenance can be quickly and accurately located, shortening the repair or maintenance time and improving the convenience and efficiency of equipment maintenance and repair.
[0057] In this embodiment, the rotating maintenance bracket 19 includes an active rotating part 191 and a driven rotating part 192, which are respectively mounted opposite each other on the testing table 1 via a mounting bracket. The active rotating part 191 and the driven rotating part 192 are rotatably connected to the mounting bracket, and are used to detachably fix both ends of the carrier tape packaging equipment. The active rotating part 191 is connected to a manual or electric rotator to meet different operational requirements.
[0058] like Figure 2 As shown, the lower surface of the testing platform 1 is fixedly connected with multiple support legs 20 to support the entire testing platform.
[0059] The testing platform of this application embodiment includes a testing table and testing equipment mounted on the testing table. The testing equipment is equipped with a control module and a drive component, a temperature control module, a pneumatic structure, and a connecting base electrically connected to the control module. The drive component, temperature control module, and pneumatic structure are configured to connect to the device under test, and the connecting base is configured to connect the testing equipment and the device under test. This testing platform utilizes the control module to electrically connect the drive component, temperature control module, pneumatic structure, and other modules, allowing for the overall connection of the device under test. By operating the control module, the various components of the device under test can work collaboratively, facilitating the testing of each component of the device under test during actual operation and improving testing efficiency.
[0060] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A detection platform, characterized in that, The detection platform includes: Testing station; The testing equipment is mounted on the testing platform. The testing equipment is equipped with a control module, as well as a drive component, a temperature control module, a pneumatic structure, and a connecting base that are electrically connected to the control module. The drive assembly, the temperature control module, and the pneumatic structure are configured to be connected to the device under test. The connector is configured to connect the testing device and the device to be tested.
2. The detection platform according to claim 1, characterized in that, The drive assembly includes a servo drive module and a stepper drive module, which are electrically connected to the servo motor and stepper motor of the device under test, respectively.
3. The detection platform according to claim 1, characterized in that, The temperature control module includes a temperature setting unit and a temperature display unit.
4. The detection platform according to claim 1, characterized in that, The pneumatic structure includes a pressure detection module, a pressure control module, and an air source. The pressure detection module is configured to detect the pressure of the device under test in its operating state. The pressure control module is configured to adjust the pressure of the device under test in its operating state according to the pressure detected by the pressure detection module. The air source is configured to provide driving force to the device under test.
5. The detection platform according to claim 4, characterized in that, The pneumatic structure also includes a pressure display module, which is configured to display the pressure value detected by the pressure detection module.
6. The detection platform according to claim 4, characterized in that, The connector includes a gas source connector and a circuit socket.
7. The detection platform according to claim 1, characterized in that, The detection device is also equipped with multiple operation buttons, each of which is connected to the control module.
8. The detection platform according to claim 1, characterized in that, The detection device is also provided with an indicator module, which is configured to indicate whether the detection device is connected to the device under test.
9. The detection platform according to any one of claims 1-8, characterized in that, The testing platform also includes a device fixing component, which is configured to fix the device to be tested.
10. The detection platform according to claim 9, characterized in that, The testing platform also includes a cover strip release structure configured to provide a cover strip to the device under test connected to the testing equipment.