Computer application wireless detection device and method
By introducing protective components into the computer testing equipment, and using driving components to rotate the shield to cover the operation panel and display screen, the wear problem when the equipment is not in use is solved, ensuring normal use of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-04
- Publication Date
- 2026-04-07
AI Technical Summary
When not in use, the control panel and display screen of existing computer testing equipment are easily worn or damaged by external impacts, affecting normal use.
A wireless detection device for computer applications is designed, which includes a protective component. The protective component comprises a fixed frame, a sliding frame, a sliding block, a rotating rod, a shield, and a driving component. The driving component drives the sliding block and the connecting block to move, and the rotating rod flips the shield to cover the operation panel and the display screen to prevent bumps and knocks.
It effectively protects the control panel and display screen from impact damage when not in use, ensuring the normal functioning of the equipment during use.
Smart Images

Figure CN121815583A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of computer application, and particularly relates to a computer application wireless detection device and method. BACKGROUND
[0002] Some conventional office places use a large number of computers, and should be equipped with corresponding application detection devices, but a large number of computers need to be managed by multiple people to prevent economic losses caused by failure to discover faults in time.
[0003] The existing detection device is usually a system that automatically measures, processes data, and displays or outputs test results in an appropriate manner without the participation of personnel, so as to facilitate the operation personnel to understand the occurrence of faults in time.
[0004] However, the existing device does not have a protection mechanism when not in use, so that the interface and display screen on the operation panel are usually susceptible to external bumps and are prone to wear or damage, so that the detection device cannot be normally used when in use. SUMMARY
[0005] The present application relates to the technical field of computer application, and particularly relates to a computer application wireless detection device and method.
[0006] To achieve the above object, the present application provides a computer application wireless detection device and method, which comprises a detection body, an operation panel and a display screen, the operation panel is arranged on the detection body and located on one side of the detection body, the display screen is arranged on the detection body and located on the side of the detection body close to the operation panel,
[0007] Further comprising a protection assembly,
[0008] The protection assembly comprises a fixing frame, a sliding frame, a sliding block, a connecting block, a rotating rod, a shielding plate and a driving member, the fixing frame is fixedly connected with the detection body and located at one side of the detection body, the sliding frame is fixedly connected with the detection body and the fixing frame respectively, the sliding frame is located at one side of the detection body close to the fixing frame, the sliding block is connected with the fixing frame through the driving member and slidably connected with the sliding frame and located at one side of the fixing frame close to the sliding frame, the connecting block is fixedly connected with the sliding block and slidably connected with the sliding frame and located at one side of the sliding block close to the sliding frame, the rotating rod is fixedly connected with the connecting block and located at one side of the connecting block, the shielding plate is rotationally connected with the rotating rod and located at one side of the rotating rod, and the driving member is arranged on the fixing frame and connected with the sliding block.
[0009] The driving member comprises an electric push rod and a connecting frame, the electric push rod is fixedly connected with the fixing frame and located at one side of the fixing frame, and the connecting frame is connected with the output end of the electric push rod and fixedly connected with the sliding block and located at one side of the electric push rod close to the sliding block.
[0010] The protection assembly further comprises a first magnet and a second magnet, the first magnet is fixedly connected with the detection body and located at one side of the detection body, and the second magnet is fixedly connected with the shielding plate and located at one side of the shielding plate close to the first magnet.
[0011] The protection assembly further comprises a buffering member, the buffering member comprises a mounting frame and a sponge block, the mounting frame is fixedly connected with the shielding plate and located at one side of the shielding plate, and the sponge block is fixedly connected with the mounting frame and located at one side of the mounting frame.
[0012] The computer application wireless detection device further comprises a portable assembly, the portable assembly comprises a portable handle and a connecting member, the portable handle is connected with the detection body through the connecting member and located at one side of the detection body, and the connecting member is arranged on the detection body and connected with the portable handle.
[0013] The connecting member comprises a fixing seat and a rotating shaft, the fixing seat is fixedly connected with the detection body and located at one side of the detection body, and the rotating shaft is rotationally connected with the fixing seat and fixedly connected with the portable handle and located at one side of the fixing seat close to the portable handle.
[0014] The application further comprises a computer application wireless detection method, comprising the following steps:
[0015] The shielding plate is picked up and turned to be parallel to the upper plane of the detection body;
[0016] The driving member is operated to move the shielding plate to the upper plane of the detection body;
[0017] The external connecting line is connected with the socket on the operation panel, the detection body is operated, and the information is displayed through the display screen;
[0018] After use, the driving member is operated to move the shielding plate out of the upper plane of the detection body, and the shielding plate is automatically turned to cover the operation panel and the display screen.
[0019] The computer application wireless detection device of the application can drive the two sliding blocks to move along the driving direction of the driving member through the driving member when the detection body is used, so that the movement of the sliding blocks can drive the movement of the connecting block, the movement of the connecting rod can drive the rotation of the rotating rod, the shielding plate can be turned on the rotating rod along the axis of the rotating rod, so that when the connecting block moves to the leftmost side of the sliding frame, the turning of the shielding plate is not blocked by the detection body, the shielding plate can be turned to cover the operation panel and the display screen on the detection body, so that the operation panel and the display screen are protected by the shielding plate, and the operation panel and the display screen are prevented from being scratched or damaged by external impact when not in use. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to more clearly illustrate the technical solutions in the embodiments of the application or the prior art, the drawings needed in the embodiment or the prior art description will be briefly introduced.
[0021] Figure 1 is a structural schematic diagram of the computer application wireless detection device of the first embodiment of the application.
[0022] Figure 2 is a structural schematic diagram of the protection assembly of the first embodiment of the application.
[0023] Figure 3 is a structural schematic diagram of the computer application wireless detection device of the second embodiment of the application.
[0024] Figure 4 is a structural schematic diagram of the buffer member of the second embodiment of the application.
[0025] Figure 5 is a structural schematic diagram of the computer application wireless detection device of the third embodiment of the application.
[0026] Figure 6 This is a schematic diagram of the structure of the portable component according to the third embodiment of the present invention.
[0027] Figure 7 This is a step diagram of the steel structure node installation method according to the fourth embodiment of the present invention.
[0028] In the diagram: 101-Detection body, 102-Operation panel, 103-Display screen, 104-Protective component, 105-Fixed frame, 106-Sliding frame, 107-Sliding block, 108-Connecting block, 109-Rotating rod, 110-Baffle plate, 111-First magnet, 112-Second magnet, 113-Electric push rod, 114-Connecting frame, 115-Limiting slide groove, 201-Buffer component, 202-Mounting frame, 203-Sponge block, 301-Portable component, 302-Portable handle, 303-Rubber sleeve, 304-Fixed base, 305-Rotating shaft. Detailed Implementation
[0029] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0030] The first embodiment of this application is:
[0031] Please see Figure 1 and Figure 2 ,in Figure 1 This is a schematic diagram of the structure of a computer application wireless detection device according to the first embodiment of the present invention. Figure 2 This is a schematic diagram of the structure of the protection component according to the first embodiment of the present invention.
[0032] This invention provides a wireless testing device for computer applications, including a testing body 101, an operation panel 102, a display screen 103, and a protective component 104. The protective component 104 includes a fixed frame 105, a sliding frame 106, a sliding block 107, a connecting block 108, a rotating rod 109, a shielding plate 110, a driving component, a first magnet 111, and a second magnet 112. The driving component includes an electric push rod 113 and a connecting frame 114. The sliding frame 106 has a limiting groove 115. This solution addresses the problem that existing devices lack protective mechanisms when not in use, making the interfaces on the operation panel and the display screen susceptible to wear and damage from external impacts, thus preventing normal operation of the testing device. Therefore, this solution can be used when protection of the operation panel and display screen is required when not in use.
[0033] In this embodiment, the operation panel 102 is disposed on the detection body 101. The operation panel 102 enables control of the detection body 101 and external wiring. The display screen 103 is disposed on the detection body 101. The display screen 103 displays information. Thus, the detection body 101 automatically performs measurements, processes data, and displays or outputs test results in an appropriate manner through the display screen 103 with minimal or no human intervention.
[0034] The fixed frame 105 is fixedly connected to the detection body 101 and located on one side of the detection body 101. The sliding frame 106 is fixedly connected to both the detection body 101 and the fixed frame 105, and is located on the side of the detection body 101 closer to the fixed frame 105. The sliding block 107 is connected to the fixed frame 105 via the driving member and is slidably connected to the sliding frame 106, located on the side of the fixed frame 105 closer to the sliding frame 106. The connecting block 108 is fixedly connected to the sliding block 107 and slidably connected to the sliding frame 106, located on the side of the sliding block 107 closer to the sliding frame 106. The rotating rod... 109 is fixedly connected to the connecting block 108 and located on one side of the connecting block 108. The baffle plate 110 is rotatably connected to the rotating rod 109 and located on one side of the rotating rod 109. The driving component is disposed on the fixed frame 105 and connected to the sliding block 107. The fixed frame 105 is bolted to the detection body 101, and the detection body 101 provides connection support for the fixed frame 105. There are two sliding frames 106, which are bolted to the detection body 101 and the fixed frame 105. The detection body 101 and the fixed frame 105 provide connection support for the two sliding frames 106. There are two sliding blocks 107, which are connected to the fixed frame 105 via the driving member. The driving member can drive the two sliding blocks 107 to move along the driving direction of the driving member. The two sliding blocks 107 are slidably connected in two corresponding sliding frames 106. The sliding frames 106 can directionally limit the movement of the sliding blocks 107 within the sliding frame 106. There are two connecting blocks 108, which are welded to the two corresponding sliding blocks 107. The movement of the sliding blocks 107 can drive the movement of the connecting blocks 108. The rotating rod 109 is welded to the two connecting blocks 107. 8. The connecting block 108 provides connection and support for the rotating rod 109. The shielding plate 110 is rotatably connected to the rotating rod 109. The shielding plate 110 can rotate and flip along the axis of the rotating rod 109, thereby shielding the operation panel 102 and the display screen 103. The driving component is mounted on the fixed frame 105 and connected to the sliding block 107. The driving component provides the corresponding power source for the movement of the sliding block 107, thus enabling the detection body 101 to move after use.The driving component enables the two sliding blocks 107 to move along the driving direction of the driving component. The movement of the sliding blocks 107 drives the movement of the connecting block 108, which in turn drives the rotation of the rotating rod 109. The baffle plate 110 can rotate and flip along the axis of the rotating rod 109. This ensures that when the connecting block 108 moves to the leftmost side of the sliding frame 106, the rotation of the baffle plate 110 is not obstructed by the detection body 101. This allows the baffle plate 110 to flip and cover the operation panel 102 and the display screen 103 directly above the detection body 101, thus protecting the operation panel 102 and the display screen 103 from external impacts and wear or damage when not in use.
[0035] Secondly, the electric push rod 113 is fixedly connected to the fixed frame 105 and located on one side of the fixed frame 105; the connecting frame 114 is connected to the output end of the electric push rod 113 and fixedly connected to the sliding block 107, and located on the side of the electric push rod 113 close to the sliding block 107. The electric push rod 113 is bolted and fixedly installed in the fixed frame 105, and the fixed frame 105 provides connection support for the electric push rod 113. The connecting frame 114 is connected to the output end of the electric push rod 113. The driving output of the electric push rod 113 can drive the connecting frame 114 to move along the extension and retraction direction of the electric push rod 113. The two sliding blocks 107 are welded to the left and right sides of the connecting frame 114. The movement of the connecting frame 114 can drive the sliding blocks 107 to move.
[0036] Meanwhile, the first magnet 111 is fixedly connected to the detection body 101 and located on one side of the detection body 101; the second magnet 112 is fixedly connected to the shielding plate 110 and located on the side of the shielding plate 110 closer to the first magnet 111. There are two first magnets 111, and the two first magnets 111 are bolted and fixedly installed on the detection body 101, so that the detection body 101 provides connection and support for the first magnets 111. There are also two second magnets 112, and the two second magnets 112 are bolted... The bolts are fixedly installed on the left and right sides of the shield 110. The shield 110 provides connection and support for the second magnet 112. The first magnet 111 and the second magnet 112 attract each other, so that when the second magnet 112 on the shield 110 contacts the first magnet 111, the second magnet 112 can be attracted to the first magnet 111. This restricts the rotation of the shield 110 and prevents the shield 110 from rotating and shaking when the detection body 101 is moved.
[0037] Finally, the limiting groove 115 is located on the side of the limiting frame close to the sliding block 107 and cooperates with the sliding block 107. The groove opening of the limiting groove 115 faces the sliding block 107. The limiting groove 115 enables the sliding block 107 to move along the length of the limiting groove 115 within the sliding frame 106, thereby achieving the purpose of directional limiting movement of the sliding block 107 within the sliding frame 106.
[0038] When using the wireless detection device for computer applications according to this embodiment, after the detection body 101 is used, the driving component can drive the two sliding blocks 107 to move along the driving direction of the driving component. The movement of the sliding blocks 107 can drive the movement of the connecting block 108. The movement of the connecting rod can drive the rotation of the rotating rod 109. The shielding plate 110 can rotate and flip along the axis of the rotating rod 109. When the connecting block 108 moves to the leftmost side of the sliding frame 106, the rotation and flipping of the shielding plate 110 is not blocked by the detection body 101. This allows the shielding plate 110 to flip and cover the operation panel 102 and the display screen 103 on the detection body 101. The shielding plate 110 provides protection for the operation panel 102 and the display screen 103, thereby preventing them from being worn or damaged by external impacts when not in use.
[0039] The second embodiment of this application is as follows:
[0040] Based on the first embodiment, please refer to Figure 3 and Figure 4 , Figure 3 This is a schematic diagram of the structure of the computer application wireless detection device according to the second embodiment. Figure 4 This is a schematic diagram of the structure of the buffer component according to the second embodiment of the present invention.
[0041] The present invention provides a computer application wireless detection device, which also includes a buffer component 201, the buffer component 201 including a mounting frame 202 and a sponge block 203.
[0042] The mounting bracket 202 is fixedly connected to the shielding plate 110 and located on one side of the shielding plate 110; the sponge block 203 is fixedly connected to the mounting bracket 202 and located on one side of the mounting bracket 202. The mounting bracket 202 is bolted and installed inside the shielding plate 110, and the shielding plate 110 provides connection and support for the mounting bracket 202. The sponge block 203 is adhered inside the mounting bracket 202, and the mounting bracket 202 provides connection and support for the sponge block 203. The sponge block 203 can prevent damage to the operation panel 102 and the display screen 103 caused by the rapid impact when the shielding block is flipped.
[0043] The third embodiment of this application is as follows:
[0044] Based on the second embodiment, please refer to Figure 5 and Figure 6 , Figure 5 This is a schematic diagram of the structure of the computer application wireless detection device according to the third embodiment. Figure 6 This is a schematic diagram of the structure of the portable component according to the third embodiment of the present invention.
[0045] The present invention provides a computer application wireless detection device, which also includes a portable component 301. The portable component 301 includes a portable handle 302, a connecting member and a rubber sleeve 303. The connecting member includes a fixed base 304 and a rotating shaft 305.
[0046] The portable handle 302 is connected to the detection body 101 via the connecting member and is located on one side of the detection body 101. The connecting member is disposed on the detection body 101 and connected to the portable handle 302. The portable handle 302 is connected to the detection body 101 via the connecting member. The portable handle 302 facilitates the lifting of the detection body 101 by the operator, thereby facilitating the handling and movement of the detection body 101. The connecting member is disposed on the detection body 101 and connected to the portable handle 302, which allows the portable handle 302 to be fixedly connected to the detection body 101.
[0047] The fixing base 304 is fixedly connected to the detection body 101 and is located on one side of the detection body 101; the rotating shaft 305 is rotatably connected to the fixing base 304 and fixedly connected to the portable handle 302, and is located on the side of the fixing base 304 near the portable handle 302. There are two fixing bases 304, which are bolted to the left and right sides of the detection body 101. The detection body 101 provides connection and support for the fixing bases 304. The rotating shaft 305 is rotatably connected to the corresponding two fixing bases 304. Within the fixed base 304, the rotating shaft 305 is connected and supported during rotation. The two rotating shafts 305 are welded to the portable handle 302. While the rotating shafts 305 and the fixed base 304 connect and fix the portable handle 302 to the detection body 101, the portable handle 302 can also rotate under the rotation of the rotating shafts 305. This allows the portable handle 302 to rotate and rest on the detection body 101 when not in use, thereby reducing space occupation.
[0048] The rubber sleeve 303 is fixedly connected to the portable handle 302 and is located on one side of the portable handle 302. The rubber sleeve 303 is adhered to the portable handle 302, and the rubber sleeve 303 can improve the comfort of the operator when holding the portable handle 302.
[0049] The fourth embodiment of this application is as follows:
[0050] Please see Figure 7 , Figure 7 This is a step diagram of the steel structure node installation method according to the fourth embodiment of the present invention.
[0051] This invention provides a method for installing steel structure nodes, comprising the following steps:
[0052] S401: Pick up the baffle plate 110 and flip it so that it is parallel to the upper plane of the detection body 101;
[0053] S402: The operation drive component is activated to move the baffle 110 to the upper plane of the detection body 101;
[0054] S403: Connect the external line to the socket on the operation panel 102, operate the detection body 101 to run, and display the information through the display screen 103;
[0055] S404: After use, start the drive component to move the cover plate 110 out of the upper plane of the detection body 101, and automatically flip over under the action of gravity to cover the operation panel 102 and the display screen 103 directly above.
[0056] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A computer application wireless testing device, comprising a testing body, an operation panel, and a display screen, wherein the operation panel is disposed on the testing body and located on one side of the testing body, and the display screen is disposed on the testing body and located on the side of the testing body closer to the operation panel, characterized in that, It also includes protection components, The protective assembly includes a fixed frame, a sliding frame, a sliding block, a connecting block, a rotating rod, a baffle plate, and a driving component. The fixed frame is fixedly connected to the detection body and located on one side of the detection body. The sliding frame is fixedly connected to both the detection body and the fixed frame, and is located on the side of the detection body closer to the fixed frame. The sliding block is connected to the fixed frame via the driving component and is slidably connected to the sliding frame, and is located on the side of the fixed frame closer to the sliding frame. The connecting block is fixedly connected to the sliding block and is slidably connected to the sliding frame, and is located on the side of the sliding block closer to the sliding frame. The rotating rod is fixedly connected to the connecting block and is located on one side of the connecting block. The baffle plate is rotatably connected to the rotating rod and is located on one side of the rotating rod. The driving component is disposed on the fixed frame and connected to the sliding block.
2. The computer application wireless detection device as described in claim 1, characterized in that, The driving component includes an electric push rod and a connecting frame. The electric push rod is fixedly connected to the fixed frame and is located on one side of the fixed frame. The connecting frame is connected to the output end of the electric push rod and fixedly connected to the sliding block, and is located on the side of the electric push rod closer to the sliding block.
3. The computer application wireless detection device as described in claim 1, characterized in that, The protective component further includes a first magnet and a second magnet. The first magnet is fixedly connected to the detection body and is located on one side of the detection body. The second magnet is fixedly connected to the shield and is located on the side of the shield closer to the first magnet.
4. The computer application wireless detection device as described in claim 1, characterized in that, The protective assembly further includes a buffer component, which comprises a mounting bracket and a sponge block. The mounting bracket is fixedly connected to the shield and located on one side of the shield; the sponge block is fixedly connected to the mounting bracket and located on one side of the mounting bracket.
5. The computer application wireless detection device as described in claim 1, characterized in that, The computer application wireless testing device also includes a portable component, which includes a portable handle and a connecting member. The portable handle is connected to the testing body via the connecting member and is located on one side of the testing body. The connecting member is disposed on the testing body and connected to the portable handle.
6. The computer application wireless detection device as described in claim 5, characterized in that, The connecting member includes a fixed base and a rotating shaft. The fixed base is fixedly connected to the detection body and is located on one side of the detection body. The rotating shaft is rotatably connected to the fixed base and fixedly connected to the portable handle, and is located on the side of the fixed base near the portable handle.
7. A method for detecting wireless computer applications, applicable to the wireless computer application detection device as described in any one of claims 1 to 6, characterized in that, Includes the following steps: Pick up the baffle and flip it until it is parallel to the upper plane of the detection body; The operation drive component is activated to move the baffle plate to the upper plane of the detection body; Connect the external cable to the port on the control panel, operate and test the main unit to run, and display information on the display screen. After use, the drive mechanism is activated, causing the shield to move out of the upper plane of the detection body and automatically flip over under the action of gravity to cover the operation panel and display screen.