Computer software development multi-screen test system
By introducing a combination structure of inserts, sleeves, locking plates, and motor drives into a multi-screen testing system for computer software development, the problem of inconvenient screen angle and height adjustment is solved, improving the operational comfort and efficiency of testers.
Patent Information
- Application Number
- CN202520510290.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-22
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-03-22
AI Technical Summary
Existing multi-screen testing systems for computer software development cannot easily adjust the screen angle, resulting in poor visibility for testers and increased visual fatigue.
The software testing screen is rotated and its height adjusted by using a combination of connecting devices and lifting devices, including inserts, sleeves, locking plates, and motor drives.
It enables convenient rotation and height adjustment of the software testing screen, reducing visual fatigue for testers and improving testing efficiency.
Smart Images

Figure CN223782470U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of software testing technology, specifically referring to a multi-screen testing system for computer software development. Background Technology
[0002] Software development is the process of building a software system or a software component of a system according to user requirements. It is a systematic engineering project that includes requirements capture, requirements analysis, design, implementation, and testing. Software is generally implemented using a programming language and is usually developed using software development tools. In computer software development, a multi-screen testing system is needed to test the developed software.
[0003] A search revealed CN221629394U, which discloses a multi-screen testing system for computer software development. In use, activating the motor in the support box rotates the lead screw on the output shaft. The sleeve threaded onto the lead screw moves, causing the base to adjust its height. The display screen is placed in a slot on the placement plate. Rotating the threaded rod on the upright plate causes the threaded pressure plate to move, pressing against a wedge plate at both ends. The wedge plate's structure causes a sliding plate to move, pushing a push plate against the display screen to fix it in the slot. This achieves height adjustment and fixation of the test display screen. However, some shortcomings exist: During testing, personnel must sit in front of the test screen, which cannot rotate. This can lead to poor visibility for testers, requiring them to turn sideways to observe, increasing visual fatigue. Therefore, improvements are needed. Utility Model Content
[0004] The technical problem this invention aims to solve is that in the prior art, when conducting multi-screen testing of computer software, it is inconvenient to adjust the screen rotation angle, resulting in poor visibility for testers and easy fatigue during testing.
[0005] To achieve the above functions, the technical solution adopted by this utility model is as follows: A multi-screen testing system for computer software development includes a test platform, a lifting plate passing through the test platform, horizontal plates on both sides of the lifting plate, a connecting device in both the lifting plate and the horizontal plates, a software testing screen on the connecting device, a locking device in both the horizontal plates and the lifting plate, a lifting device at the bottom of the test platform and poweredly connected to the lifting plate; the connecting device includes a sleeve, the sleeve is fixed to the rear side of the software testing screen, the sleeve has bolt holes, a pin is inserted downward through the horizontal plates and the lifting plate, the pin can be inserted into the sleeve, a limiting plate is provided on the pin, the limiting plate can limit the pin, and rotating the pin can realize the rotation adjustment of the software testing screen.
[0006] Furthermore, the locking device includes a fixing plate disposed on a horizontal plate, a locking plate passing through the fixing plate, a handle at one end of the locking plate, a spring sleeved on the locking plate, one end of the spring being fixed to the handle and the other end being fixed to the fixing plate, and an embedding groove at the bottom of the insertion post being arranged in a circumferential array. By inserting the locking plate into the embedding groove, the insertion post can be locked.
[0007] Furthermore, the lifting device includes a base frame, which is fixed to the bottom of the test platform. A motor is fixedly connected to the base frame, and the output end of the motor is provided with a lead screw and threadedly connected to the lifting plate. The lifting is driven by the lead screw, which can realize the height adjustment of the lifting plate, thereby enabling the height adjustment of the software test screen.
[0008] Preferably, the test bench is equipped with a switch, which is electrically connected to the motor.
[0009] Preferably, after the insert is inserted into place, the spring maintains a pushing force on the locking plate, so that the locking plate can be inserted into the embedding groove.
[0010] Preferably, the upper end of the lead screw is provided in the shape of an end cap to prevent the lead screw from detaching from the lifting plate.
[0011] The beneficial effects achieved by adopting the above-described structure are as follows:
[0012] 1. This utility model, by setting a connecting device, allows the insertion post to be inserted into the sleeve and locked in place through the bolt hole, thus enabling the rapid installation of the software test screen. The limiting plate can limit and block the position of the insertion post. After the insertion post is inserted into place, releasing the handle allows the locking plate to be inserted into the embedding groove under the action of the spring, thus locking and fixing the insertion post. Rotating the insertion post allows the software test screen to rotate freely, thereby enabling multi-screen testing of computer software development from multiple angles.
[0013] 2. This utility model, by setting up a lifting device, uses a motor to drive a lead screw to rotate, and the lead screw to drive the lifting plate to rise and fall in the test platform, thereby adjusting the height of the software test screen. Attached Figure Description
[0014] Figure 1 This is an overall structural diagram of a multi-screen testing system for computer software development according to this utility model;
[0015] Figure 2 This is a structural diagram of the software test screen back-side connection device of a multi-screen testing system for computer software development according to this utility model;
[0016] Figure 3 for Figure 1Enlarged view of a portion of point A in the middle;
[0017] Figure 4 for Figure 3 A rigid 3D view of the central locking mechanism;
[0018] Figure 5 This is a diagram showing the connection between the lifting device at the bottom of the test bench and the lifting plate.
[0019] The components include: 1. Test platform, 2. Lifting plate, 3. Horizontal plate, 4. Connecting device, 5. Software test screen, 6. Locking device, 7. Lifting device, 8. Sleeve, 9. Bolt hole, 10. Insert post, 11. Limiting plate, 12. Fixing plate, 13. Locking plate, 14. Pull handle, 15. Spring, 16. Embedded groove, 17. Base frame, 18. Motor, 19. Lead screw, and 20. Switch. Detailed Implementation
[0020] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0021] In the description of this utility model, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0022] like Figure 1-5 This utility model discloses a multi-screen testing system for computer software development, including a test platform 1, a switch 20 on the test platform 1, the switch 20 being electrically connected to a motor 18, a lifting plate 2 passing through the test platform 1, horizontal plates 3 on both sides of the lifting plate 2, a connecting device 4 in both the lifting plate 2 and the horizontal plates 3, a software testing screen 5 on the connecting device 4, a locking device 6 on both the horizontal plates 3 and the lifting plate 2, and a lifting device 7 at the bottom of the test platform 1 that is poweredly connected to the lifting plate 2.
[0023] like Figure 1-2The connecting device 4 includes a sleeve 8, which is fixed to the rear side of the software test screen 5. The sleeve 8 is provided with bolt holes 9. A pin 10 is inserted downward through the horizontal plate 3 and the lifting plate 2. After the pin 10 is inserted into place, the spring 15 maintains a pushing force on the locking plate 13, so that the locking plate 13 can be inserted into the embedding groove 16 and the pin 10 can be inserted into the sleeve 8. A limiting plate 11 is provided on the pin 10, which can limit the pin 10. Rotating the pin 10 can realize the rotation adjustment of the software test screen 5.
[0024] like Figure 1-4 The locking device 6 includes a fixing plate 12, which is mounted on the horizontal plate 3. A locking plate 13 passes through the fixing plate 12. A handle 14 is provided at the end of the locking plate 13. A spring 15 is sleeved on the locking plate 13. One end of the spring 15 is fixed to the handle 14 and the other end is fixed to the fixing plate 12. The bottom of the insertion post 10 is provided with an embedding groove 16, which is arranged in a circumferential array. By inserting the locking plate 13 into the embedding groove 16, the insertion post 10 can be locked.
[0025] like Figure 5 The lifting device 7 includes a base frame 17, which is fixed to the bottom of the test platform 1. A motor 18 is fixedly connected to the base frame 17. The output end of the motor 18 is provided with a lead screw 19 and is threadedly connected to the lifting plate 2. The upper end of the lead screw 19 is set in the shape of an end cap to prevent the lead screw 19 from disengaging from the lifting plate 2. The height of the lifting plate 2 can be adjusted by driving the lifting through the lead screw 19, thereby allowing the height of the software test screen 5 to be adjusted.
[0026] In practical use, when installing the software test screen 5, the insert 10 is inserted into the sleeve 8 on the back of the software test screen 5. The insert 10 and the sleeve 8 can be fastened through the bolt hole 9. Then, the insert 10 is inserted into the horizontal plate 3 and the lifting plate 2. When inserting the insert 10, the handle 14 needs to be pulled first to retract the locking plate 13. When the insert 10 is inserted into the position and blocked by the limiting plate 11, the handle 14 is released. Under the action of the spring 15, the locking plate 13 will be inserted into the embedded groove 16 to lock the insert 10. This completes the overall installation of the software test screen 5, which is very convenient.
[0027] When the software test screen 5 needs to be rotated, first pull the handle 14, then rotate the insert 10. After rotating to the correct position, release the handle 14 to lock the angle of the software test screen 5.
[0028] When the height of the software test screen 5 needs to be adjusted, the motor 18 is started by the switch 20. The motor 18 drives the lead screw 19 to rotate, and the lead screw 19 drives the lifting plate 2 to rise and fall in the test platform 1, thereby achieving the purpose of adjusting the height of the software test screen 5. When using the software test screen 5, the tester can operate multiple screens to complete the software testing work.
[0029] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.
Claims
1. A multi-screen testing system for computer software development, comprising a test platform, wherein a lifting plate extends through the test platform, and horizontal plates are provided on both sides of the lifting plate, characterized in that: Both the lifting plate and the horizontal plate are equipped with connecting devices, and the connecting devices are equipped with software testing screens. Both the horizontal plate and the lifting plate are equipped with locking devices, and the bottom of the testing platform is equipped with a lifting device that is poweredly connected to the lifting plate.
2. The multi-screen testing system for computer software development according to claim 1, characterized in that: The connecting device includes a sleeve, which is fixed to the rear side of the software test screen. The sleeve has bolt holes, and a pin is inserted downward through the horizontal plate and the lifting plate. The pin can be inserted into the sleeve, and a limiting plate is provided on the pin.
3. The multi-screen testing system for computer software development according to claim 2, characterized in that: The locking device includes a fixing plate, which is disposed on a horizontal plate. A locking plate passes through the fixing plate. A handle is provided at the end of the locking plate. A spring is sleeved on the locking plate. One end of the spring is fixed to the handle and the other end is fixed to the fixing plate. The bottom of the insertion post is provided with an embedding groove, which is arranged in a circumferential array.
4. The multi-screen testing system for computer software development according to claim 3, characterized in that: The lifting device includes a base frame, which is fixed to the bottom of the test platform. A motor is fixedly connected to the base frame, and the output end of the motor is provided with a lead screw that is threadedly connected to the lifting plate.
5. A multi-screen testing system for computer software development according to claim 4, characterized in that: The test bench is equipped with a switch, which is electrically connected to the motor.
6. A multi-screen testing system for computer software development according to claim 5, characterized in that: After the insert is inserted into place, the spring maintains a pushing force on the locking plate.
7. A multi-screen testing system for computer software development according to claim 6, characterized in that: The upper end of the lead screw is provided in the shape of an end cap.
Citation Information
Patent Citations
Computer software development multi-screen test system
CN221629394U