Test apparatus and method of testing thereof, test system
By using integrated remote control testing equipment, the button functions and brightness of remote controls can be automatically tested using drive components and detection modules. This solves the problems of low efficiency and poor stability of manual testing, and achieves efficient and accurate remote control testing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- GOERTEK INC
- Filing Date
- 2022-11-18
- Publication Date
- 2026-04-24
AI Technical Summary
The button functions and brightness detection of the remote control mainly rely on manual methods, which leads to high labor costs, low efficiency, poor stability and consistency, and is prone to false detection or missed detection.
An integrated testing device was designed, comprising a body, a clamping module, a button detection module, and a brightness detection module. The clamping structure is driven to move on the movable port by a drive component, thereby realizing the automated detection of remote control button functions, button force, and brightness.
It has enabled automated testing of remote control button functions and brightness, improving testing efficiency and stability, reducing labor costs, and ensuring the accuracy and consistency of test results.
Smart Images

Figure CN115753053B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of remote control testing equipment technology, and in particular to a testing device and a testing method and system using the testing device. Background Technology
[0002] As an important form of entertainment, television sets have greatly enriched people's daily lives. With technological advancements and social progress, television functions have become increasingly diverse, with higher levels of integration and technological sophistication. Remote controls, as the control devices for televisions, have also evolved, supporting more and more functions and becoming increasingly integrated. Feature-rich remote controls often incorporate various electronic components such as accelerometers, microphones, and LEDs, enabling functions like voice input, sound output, and flashing. Therefore, the testing and detection of various remote control functions are crucial for quality control.
[0003] In related technologies, the button functions, button force detection, and button brightness detection of remote controls are mostly carried out manually. However, manual inspection has high labor costs, low efficiency, and cannot be quantitatively analyzed. It is also very easy to make false or missed detections due to fatigue, resulting in poor stability and consistency. Summary of the Invention
[0004] The main objective of this invention is to provide a testing device, testing method, and testing system, which aims to provide a testing device that realizes the function of an automated testing remote control. This testing device not only has a high degree of integration, but also has high testing efficiency and stability, effectively reducing labor costs.
[0005] To achieve the above objectives, the present invention proposes a testing device for testing the buttons on a remote control, the testing device comprising:
[0006] The body has a mounting platform and a mounting cavity located below the mounting platform. The mounting platform has a movable port communicating with the mounting cavity. The movable port has a first detection position and a second detection position.
[0007] A clamping module, comprising a clamping structure and a driving component, wherein the driving component is disposed on the mounting platform and connected to the clamping structure, the clamping structure corresponds to the movable port and is slidably connected to the mounting platform, and the clamping structure is provided with a placement slot communicating with the movable port, the placement slot being used to fix the remote control;
[0008] A button detection module is disposed within the mounting cavity and corresponding to the first detection position. The button detection module is used to detect the performance of the button.
[0009] A brightness detection module is disposed in the mounting cavity and is set corresponding to the second detection position. The brightness detection module is used to detect the brightness of the button.
[0010] The driving component drives the clamping structure to move along the movable opening, so that the clamping structure is located at the first detection position or the second detection position.
[0011] In one embodiment, the clamping structure includes:
[0012] A support plate, which is slidably connected to the mounting platform and corresponds to the movable opening, and the support plate is provided with a through-hole communicating with the movable opening;
[0013] A connecting plate, the connecting plate being connected to the support plate, the connecting plate having a placement groove, and the bottom wall of the placement groove having a through opening corresponding to the through opening; and
[0014] A clamping assembly includes multiple clamping cylinders and multiple clamping components. Each clamping cylinder is connected to the connecting plate, and each clamping component is disposed adjacent to the placement slot and connected to the output end of the clamping cylinder. Each clamping component is provided with a clamping connecting rod.
[0015] The pressing cylinder drives the pressing component to press or release the remote control in the placement slot via the pressing connecting rod.
[0016] In one embodiment, the clamping structure further includes:
[0017] Multiple linear bearings are arranged around the opening, one end of each linear bearing is connected to the support plate, and the other end of each linear bearing movably passes through the connecting plate. The linear bearings are used to lock or release the connecting plate.
[0018] A vibrating cylinder is connected to the support plate, and the output end of the vibrating cylinder is connected to the connecting plate.
[0019] The clamping structure has a locked state in which the linear bearing locks the connecting plate and a released state in which the linear bearing releases the connecting plate; in the released state, the vibrating cylinder drives the connecting plate to move up and down along the linear bearing.
[0020] In one embodiment, the button detection module includes a mounting base, a lifting assembly, and a detection element. The mounting base is disposed within the mounting cavity and corresponds to the first detection position. The lifting assembly includes a lifting cylinder and a mounting plate. The lifting cylinder is connected to the mounting base, and a pressing block is provided at the output end of the lifting assembly. The mounting plate is disposed on the lifting cylinder, and the detection element is disposed on the mounting plate and electrically connected to the lifting cylinder. The lifting cylinder drives the pressing block to move closer to or away from the pressing structure to press the button, and the detection element is used to collect the button pressing force.
[0021] And / or, the brightness detection module includes a base, a light source and a camera. The base is disposed in the mounting cavity and is set corresponding to the second detection position. The base is provided with a bracket. The light source is disposed on the bracket. The camera is connected to the base and adjacent to the bracket.
[0022] In one embodiment, the mounting platform is provided with at least two movable openings, which are spaced apart along a first direction, and the first direction is set at an angle to the moving direction of the pressing structure;
[0023] The clamping module includes two, and each clamping module is provided with a corresponding movable port;
[0024] The testing equipment further includes a first driving module and a second driving module disposed in the mounting cavity. The first driving module is disposed corresponding to the first detection position and extends along the first direction. The second driving module is disposed corresponding to the second detection position and extends along the first direction. The button detection module is disposed in the first driving module, and the brightness detection module is disposed in the second driving module.
[0025] Wherein, the first driving module drives the button detection module to move along the first direction, so that the button detection module corresponds to the first detection position of the active port; the second driving module drives the brightness detection module to move along the first direction, so that the brightness detection module corresponds to the first detection position of the active port.
[0026] The present invention also proposes a testing method using the testing equipment described above, the testing method comprising:
[0027] Acquire detection signals;
[0028] Based on the detection signal, the pressing module is controlled to move to the first detection position or the second detection position, and the button detection module or the brightness detection module is controlled to detect the remote control on the pressing module.
[0029] In one embodiment, the detection signal includes a button performance detection signal and a button brightness detection signal, and the clamping module includes a clamping structure and a driving component, wherein the clamping structure is provided with a placement slot for fixing the remote control;
[0030] The steps of controlling the pressing module to move to the first or second detection position according to the detection signal, and controlling the button detection module or brightness detection module to detect the remote control on the pressing module include:
[0031] The detection signal is a button performance detection signal, which controls the driving component to drive the pressing structure to move to the first detection position, and controls the button detection module to detect the remote control in the placement slot;
[0032] The detection signal is a brightness detection signal of the button, which controls the driving component to drive the pressing structure to move to the second detection position, and controls the brightness detection module to detect the remote control in the placement slot.
[0033] In one embodiment, the clamping structure includes a support plate, a connecting plate, a clamping assembly, a linear bearing, and a vibrating cylinder. The connecting plate is provided with the placement groove, the linear bearing connects the support plate and the connecting plate, and the output end of the vibrating cylinder is connected to the connecting plate.
[0034] Before the step of acquiring the detection signal, the test method further includes:
[0035] Place the remote control into the placement slot;
[0036] The clamping assembly is controlled to clamp the remote control on the placement slot;
[0037] The detection signal is a button performance detection signal, and the step of controlling the driving component to drive the pressing structure to move to the first detection position includes:
[0038] The linear bearing is controlled to lock the connecting plate onto the support plate;
[0039] The drive assembly is controlled to drive the support plate to move the connecting plate to the first detection position, so that the placement slot is opposite to the button detection module;
[0040] The detection signal is a brightness detection signal of the button, and the step of controlling the driving component to drive the pressing structure to move to the second detection position includes:
[0041] Control the linear bearing to release the connecting plate, making the connecting plate movable relative to the support plate;
[0042] The drive assembly is controlled to drive the support plate to move the connecting plate to the second detection position, so that the placement slot is opposite to the brightness detection module;
[0043] The vibration cylinder is controlled to drive the connecting plate to move up and down relative to the support plate.
[0044] In one embodiment, the button detection module includes a lifting assembly and a detection element, and the output end of the lifting assembly is provided with a pressing block;
[0045] The steps for controlling the button detection module to detect the remote control in the placement slot include:
[0046] The lifting assembly is controlled to drive the pressing block closer to or further away from the pressing structure, so that the pressing block presses the button on the remote control;
[0047] The detection element is controlled to collect the button pressing force;
[0048] And / or, the brightness detection module includes a light source and a camera;
[0049] The steps for controlling the brightness detection module to detect the remote control in the placement slot include:
[0050] Adjust the brightness of the light source;
[0051] Control the camera to collect brightness information of the buttons on the remote control;
[0052] Determine whether the brightness information has reached the preset brightness;
[0053] If so, the output result is OK;
[0054] If not, output an alarm signal.
[0055] The present invention also proposes a testing system, the testing system comprising:
[0056] The testing equipment described above;
[0057] A terminal, the terminal being used to interact with a remote control; and
[0058] The controller is electrically connected to the terminal, the test equipment, and the remote controller.
[0059] The testing equipment of this invention features a mounting platform and a mounting cavity beneath the platform. The platform houses the clamping module, while the cavity houses the button detection module and brightness detection module, thus integrating them for improved integration. Simultaneously, the driving component of the clamping module is positioned on the mounting platform and connected to the clamping structure. The clamping structure aligns with the movable opening and slides along the platform. The remote control is secured in the clamping structure's placement slot, and the driving component moves the clamping structure along the movable opening. When the clamping structure is in the first detection position, the button detection module passes through the movable opening to detect the button performance of the remote control within the placement slot. When the clamping structure is in the second detection position, the brightness detection module passes through the movable opening to detect the brightness of the buttons on the remote control within the placement slot. This automated testing of the remote control's button functions, including button function, button force, and button brightness, is achieved. This testing equipment is not only compact and highly integrated but also improves testing efficiency and stability while effectively reducing labor costs. Attached Figure Description
[0060] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0061] Figure 1 This is a schematic diagram of the structure of the test device in one embodiment of the present invention;
[0062] Figure 2 This is a schematic diagram of the test equipment from another perspective in one embodiment of the present invention;
[0063] Figure 3 This is a schematic diagram of the pressing structure in one embodiment of the present invention;
[0064] Figure 4 This is a schematic diagram of the key detection module in one embodiment of the present invention;
[0065] Figure 5 This is a schematic diagram of the brightness detection module in one embodiment of the present invention.
[0066] Explanation of icon numbers:
[0067] label name label name 100 Test equipment 215 Vibrating cylinder 1 body 22 Driver components 11 Mounting cavity 221 electric cylinder 12 Mounting stand 222 Connector 13 Activity Port 3 Key detection module 14 slide rail 31 Mounting base 2 Compressing module 32 Lifting components 21 Compression structure 321 Lifting cylinder 211 support plate 322 Mounting plate 2111 chute 323 Pressing block 212 Connecting plate 33 Test pieces 2121 Placement slot 4 Brightness detection module 213 Clamping components 41 base 2131 Cushioning cylinder 411 support 2132 Clamping parts 42 light source 2133 clamping link 43 camera 214 linear bearings 5 First drive module 2141 Fixed base 6 Second drive module 2142 Guide rod 7 remote control 2143 Locking ring
[0068] The realization of the objective, functional features and advantages of the present invention will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0069] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0070] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present invention are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indication will also change accordingly.
[0071] Meanwhile, the meaning of "and / or" or "and / or" appearing throughout the text is that it includes three options. Taking "A and / or B" as an example, it includes option A, option B, or an option that satisfies both A and B.
[0072] Furthermore, in this invention, descriptions involving "first," "second," etc., are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of that feature. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. When the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed by this invention.
[0073] As an important form of entertainment, television sets have greatly enriched people's daily lives. With technological advancements and social progress, television functions have become increasingly diverse, with higher levels of integration and technological sophistication. Remote controls, as the control devices for televisions, have also evolved, supporting more and more functions and becoming increasingly integrated. Feature-rich remote controls often incorporate various electronic components such as accelerometers, microphones, and LEDs, enabling functions like voice input, sound output, and flashing. Therefore, the testing and detection of various remote control functions are crucial for quality control.
[0074] In related technologies, the button functions, button force detection, and button brightness detection of remote controls are mostly carried out manually. However, manual inspection has high labor costs, low efficiency, and cannot be quantitatively analyzed. It is also very easy to make false or missed detections due to fatigue, resulting in poor stability and consistency.
[0075] Based on the above concepts and problems, this invention proposes a testing device 100. It is understood that the testing device 100 is used to test the performance of a remote control, such as the button function, button force detection, and button brightness detection of the remote control buttons. In this embodiment, the remote control includes a housing and buttons. The housing has a mounting cavity and a button hole communicating with the mounting cavity. The remote control also includes a control circuit or control circuit board located within the mounting cavity. One end of the button is connected to the control circuit or control circuit board, and the other end of the button passes through the button hole and protrudes from the outer wall of the housing.
[0076] Please refer to the reference. Figures 1 to 5 As shown, in this embodiment of the invention, the testing device 100 includes a body 1, a clamping module 2, a button detection module 3, and a brightness detection module 4. The body 1 has a mounting platform 12 and a mounting cavity 11 located below the mounting platform 12. The mounting platform 12 has a movable opening 13 communicating with the mounting cavity 11. The movable opening 13 has a first detection position and a second detection position. The clamping module 2 includes a clamping structure 21 and a driving component 22. The driving component 22 is located on the mounting platform 12 and connected to the clamping structure 21. The clamping structure 21 corresponds to the movable opening 13 and is connected to the mounting platform 12. 2. Sliding connection, the pressing structure 21 is provided with a placement groove 2121 communicating with the movable port 13. The placement groove 2121 is used to fix the remote control 7. The button detection module 3 is located in the mounting cavity 11 and is set corresponding to the first detection position. The button detection module 3 is used to detect the performance of the button. The brightness detection module 4 is located in the mounting cavity 11 and is set corresponding to the second detection position. The brightness detection module 4 is used to detect the brightness of the button. The driving component 22 drives the pressing structure 21 to move along the movable port 13 so that the pressing structure 21 is located at the first detection position or the second detection position.
[0077] In this embodiment, the body 1 is used to install, fix, and support components such as the clamping module 2, the button detection module 3, and the brightness detection module 4. In other words, the body 1 provides the mounting base for these components. It is understood that the body 1 can be a frame, support frame, mounting bracket, mounting platform, mounting box, or mounting shell, etc., and is not limited thereto.
[0078] like Figure 1 and Figure 2 As shown, the main body 1 includes a fixed base plate, a fixed top plate, and a support column. The fixed base plate and the fixed top plate are positioned opposite each other and spaced apart. The support column supports and connects the fixed base plate and the fixed top plate, so that the fixed base plate, the fixed top plate, and the support column enclose and form a mounting cavity 11. It is understood that a mounting platform 12 is formed on the side of the fixed top plate facing away from the fixed base plate. The button detection module 3 and the brightness detection module 4, located within the mounting cavity 11, are mounted and fixed on the fixed base plate.
[0079] Understandably, to facilitate the detection or testing of the remote control 7 within the slot 2121 on the pressing structure 21 of the pressing module 2 by the button detection module 3 and the brightness detection module 4, a movable opening 13 is provided on the fixed top plate. The movable opening 13 passes through the mounting platform 12 and connects to the mounting cavity 11. At this time, the pressing structure 21 is located on the side of the fixed top plate facing away from the mounting cavity 11. In this embodiment, the pressing structure 21 is slidably connected to the mounting platform 12 and is mounted above the movable opening 13. The driving component 22 is located on the mounting platform 12 and connected to the pressing structure 21, so that the driving component 22 can be used to drive the pressing structure 21 to move along the movable opening 13.
[0080] In this embodiment, the button detection module 3 and the brightness detection module 4 are installed alternately on the fixed base plate and correspond to the movable port 13. At this time, the position of the movable port 13 corresponding to the button detection module 3 is defined as the first detection position, and the position of the movable port 13 corresponding to the brightness detection module 4 is defined as the second detection position. When the driving component 22 drives the pressing structure 21 to move along the movable port 13 to the first detection position, the pressing structure 21 corresponds to the button detection module 3, so as to facilitate the use of the button detection module 3 to perform button performance testing on the remote control 7 in the placement slot 2121 on the pressing structure 21; when the driving component 22 drives the pressing structure 21 to move along the movable port 13 to the second detection position, the pressing structure 21 corresponds to the brightness detection module 4, so as to facilitate the use of the brightness detection module 4 to perform button brightness testing on the remote control 7 in the placement slot 2121 on the pressing structure 21.
[0081] Understandably, the testing equipment 100 enables the remote control 7, which is fixed in the slot 2121 on the clamping structure 21, to simultaneously detect the button function and button force, as well as the button brightness. This makes the testing equipment 100 not only compact and highly integrated, but also improves testing efficiency and stability, and effectively reduces labor costs.
[0082] In this embodiment, the clamping structure 21 is provided with a through hole or via structure connecting the placement slot 2121 and the movable opening 13. The buttons of the remote control 7 fixed in the placement slot 2121 face the movable opening 13, so that the clamping structure 21 moves back and forth between the first detection position and the second detection position along the movable opening 13 under the driving action of the driving component 22, so that the remote control 7 in the placement slot 2121 can respectively realize the detection of button function, button force and button brightness. Optionally, the clamping structure 21 and the mounting platform 12 can be slidably connected by a slide rail and a slide groove. Of course, the clamping structure 21 and the mounting platform 12 can also adopt other structures, as long as the structure can realize a slidable connection, which is not limited here.
[0083] The testing device 100 of the present invention uses a mounting platform 12 and a mounting cavity 11 located below the mounting platform 12 on the body 1. The mounting platform 12 is used to mount and fix the clamping module 2, and the mounting cavity 11 is used to mount and fix the button detection module 3 and the brightness detection module 4. This integrates the clamping module 2, the button detection module 3, and the brightness detection module 4, improving integration. Simultaneously, the driving component 22 of the clamping module 2 is placed on the mounting platform 12 and connected to the clamping structure 21. The clamping structure 2 is aligned with the movable port 13 and slidably connected to the mounting platform 12. Thus, the placement slot 2121 of the clamping structure 21 is used to fix the remote control 7, and... The driving component 22 drives the clamping structure 21 to move along the movable opening 13. When the clamping structure 21 is in the first detection position, the button detection module 3 passes through the movable opening 13 to detect the performance of the buttons of the remote control 7 in the placement slot 2121. When the clamping structure 21 is in the second detection position, the brightness detection module 4 passes through the movable opening 13 to detect the brightness of the buttons of the remote control 7 in the placement slot 2121. This achieves automated testing of the button function of the remote control 7, realizing the detection of button function, button force and button brightness of the remote control 7. This testing device 100 is not only compact and highly integrated, but also improves the testing efficiency and stability, and effectively reduces labor costs.
[0084] In one embodiment, the clamping structure 21 includes a support plate 211, a connecting plate 212, and a clamping assembly 213. The support plate 211 is slidably connected to the mounting platform 12 and corresponds to the movable opening 13. The support plate 211 has a through-hole communicating with the movable opening 13. The connecting plate 212 is connected to the support plate 211 and has a placement groove 2121. The bottom wall of the placement groove 2121 has a through-hole corresponding to the through-hole. The clamping assembly 213 includes multiple clamping cylinders 2131 and multiple clamping members 2132. Each clamping cylinder 2131 is connected to the connecting plate 212. Each clamping member 2132 is disposed adjacent to the placement groove 2121 and connected to the output end of the clamping cylinder 2131. The clamping member 2132 has a clamping connecting rod 2133. The clamping cylinder 2131 drives the clamping member 2132 to drive the clamping connecting rod 2133 to clamp or release the remote controller 7 in the placement groove 2121.
[0085] In this embodiment, as Figures 1 to 3 As shown, the clamping structure 21 includes a support assembly and a clamping assembly 213. The support assembly has a placement groove 2121, and the clamping assembly 213 is disposed on the support assembly and adjacent to the placement groove 2121. It can be understood that the clamping assembly 213 includes multiple clamping cylinders 2131 and multiple clamping elements 2132, which are arranged around the placement groove 2121.
[0086] Understandably, the support assembly is provided with multiple placement slots 2121, which are spaced apart and arranged in parallel. In this embodiment, each of the placement slots 2121 is provided with a clamping cylinder 2131 and a clamping member 2132 at opposite ends, that is, the two ends of the remote control 7 placed in the placement slot 2121 are clamped by two clamping rods 2133 respectively.
[0087] It should be noted that, as Figures 1 to 3 As shown, the support assembly of the clamping structure 21 includes a support plate 211 and a connecting plate 212. Optionally, the support plate 211 and the connecting plate 212 are plate-shaped. To facilitate the button detection module 3 and the brightness detection module 4 in the mounting cavity 11 to detect the remote control 7 in the placement slot 2121, in this embodiment, both ends of the support plate 211 are slidably connected to the mounting platform 12 and are mounted above the movable opening 13, and the support plate 211 has a through-hole communicating with the movable opening 13. The connecting plate 212 is connected to the side of the support plate 211 facing away from the mounting platform 12, and the connecting plate 212 has a placement slot 2121. Understandably, the bottom wall of the placement slot 2121 is provided with a through-hole corresponding to the through-hole, so that the through-hole, through-hole and movable port 13 correspond and connect in sequence. Thus, when the remote control 7 is placed in the placement slot 2121, the buttons of the remote control 7 face the through-hole and correspond to the through-hole and movable port 13, thereby facilitating the button detection module 3 and the brightness detection module 4 to detect the buttons of the remote control 7 through the movable port 13 and through-hole.
[0088] In this embodiment, as Figures 1 to 3 As shown, the clamping cylinder 2131 of the clamping assembly 213 is connected to the side of the connecting plate 212 facing the support plate 211 and is located at the opening. The clamping member 2132 is disposed through the connecting plate 212 and connected to the output end of the clamping cylinder 2131. The clamping member 2132 is disposed adjacent to the placement groove 2121, and a clamping connecting rod 2133 is provided at the end of the clamping member 2132 located on the side of the connecting plate 212 facing away from the support plate 211.
[0089] Understandably, the clamping linkage 2133 extends toward the center of the slot opening of the placement groove 2121. In this way, the clamping cylinder 2131 drives the clamping component 2132 to move the clamping linkage 2133 to clamp or release the remote control 7 in the placement groove 2121, thereby improving the clamping stability.
[0090] In this embodiment, as Figure 1 and Figure 2 As shown, the mounting platform 12 is provided with a slide rail 14, which is located near the movable opening 13 and extends along the moving direction of the pressing structure 21. The support plate 211 is provided with a slide groove 2111, which slides in cooperation with the slide rail 14.
[0091] Understandably, by providing a slide rail 14 in one of the mounting platform 12 and a slide groove 2111 in the other, the slide groove 2111 slides into the slide rail 14, thereby achieving a sliding connection between the pressing structure 21 and the mounting platform 12. Of course, to prevent the slide groove 2111 of the pressing structure 21 from disengaging from the slide rail 14, sensors or encoders can be installed at both ends of the slide rail 14 to sense or detect the sliding position of the pressing structure 21.
[0092] It should be noted that the groove wall of the slide 2111 and the outer wall of the slide rail 14 are respectively provided with a limiting protrusion and a limiting groove, so as to achieve the limiting engagement between the slide 2111 and the slide rail 14 by means of the cooperation of the limiting protrusion and the limiting groove. Optionally, the limiting protrusion and the limiting groove extend along the extension direction of the slide rail 14, which is not limited here.
[0093] In one embodiment, such as Figures 1 to 3 As shown, the drive assembly 22 includes an electric cylinder 221 and a connecting seat 222. The electric cylinder 221 is mounted on the mounting platform 12 and located adjacent to the movable opening 13. The connecting seat 222 is located at the output end of the electric cylinder 221 and is connected to the support plate 211. It can be understood that the electric cylinder 221 is mounted on the mounting platform 12 and located on one side of the movable opening 13, and the extension direction of the telescopic shaft of the electric cylinder 221 or the direction in which it drives the connecting seat 222 to move is consistent with the extension direction of the slide rail 14.
[0094] In this embodiment, one end of the connecting seat 222 is connected to the electric cylinder 221, and the other end of the connecting seat 222 is connected to the pressing structure 21, that is, connected to the support plate 211. In this way, the electric cylinder 221 can drive the connecting seat 222 to move the pressing structure 21 back and forth along the slide rail 14, so that the pressing structure 21 is located at the first detection position or the second detection position.
[0095] In one embodiment, the clamping structure 21 further includes a plurality of linear bearings 214 and a vibrating cylinder 215. The plurality of linear bearings 214 are arranged around the opening, one end of each linear bearing 214 is connected to the support plate 211, and the other end of each linear bearing 214 movably passes through the connecting plate 212. The linear bearings 214 are used to lock or release the connecting plate 212. The vibrating cylinder 215 is connected to the support plate 211, and the output end of the vibrating cylinder 215 is connected to the connecting plate 212. The clamping structure 21 has a locked state in which the linear bearings 214 lock the connecting plate 212 and a released state in which the linear bearings 214 release the connecting plate 212. In the released state, the vibrating cylinder 215 drives the connecting plate 212 to move up and down along the linear bearings 214.
[0096] In this embodiment, by providing a linear bearing 214, the connecting plate 212 can be locked onto the support plate 211, and the connecting plate 212 can also be released, allowing the connecting plate 212 to move relative to the support plate 211. It can be understood that the support assembly of the clamping structure 21 has both a locked state where the linear bearing 214 locks the connecting plate 212 and a released state where the linear bearing 214 releases the connecting plate 212.
[0097] It should be noted that when the linear bearing 214 locks the connecting plate 212, the relative positions of the connecting plate 212 and the support plate 211 are fixed; when the linear bearing 214 releases the connecting plate 212, the connecting plate 212 can move relative to the support plate 211. In this embodiment, the connecting plate 212 can move up and down relative to the support plate 211 along the linear bearing 214.
[0098] In this embodiment, by setting the connecting plate 212 and the support plate 211 as a movable connection structure and setting a vibration cylinder 215, the vibration cylinder 215 is fixed on the support plate 211, and the output shaft of the vibration cylinder 215 is connected to the connecting plate 212. When the linear bearing 214 releases the connecting plate 212, the vibration cylinder 215 drives the connecting plate 212 to move up and down along the linear bearing 214, so that the distance between the connecting plate 212 and the support plate 211 changes. This causes the acceleration sensor inside the remote control 7 placed in the slot 2121 of the connecting plate 212 to sense the change, thereby causing the LED light under the button on the remote control 7 to flash. In this way, the brightness detection module 4 is used to detect the brightness of the button on the remote control 7.
[0099] In one embodiment, such as Figures 1 to 3 As shown, the connecting plate 212 is provided with multiple guide holes, which are located around the periphery of the placement groove 2121 and correspond to multiple linear bearings 214 respectively. Each linear bearing 214 includes a fixed seat 2141, a guide rod 2142 and a locking ring 2143. The fixed seat 2141 is located on the side of the support plate 211 facing the connecting plate 212. One end of the guide rod 2142 is connected to the fixed seat 2141, and the other end of the guide rod 2142 is movably inserted through a guide hole. The locking ring 2143 is sleeved on the guide rod 2142 and is located on the side of the connecting plate 212 facing away from the support plate 211. The locking ring 2143 locks or releases the connecting plate 212.
[0100] Of course, the specific structure of the linear bearing 214 can also be referred to the existing technical structure, which will not be elaborated here.
[0101] In one embodiment, the button detection module 3 includes a mounting base 31, a lifting assembly 32, and a detection element 33. The mounting base 31 is disposed in the mounting cavity 11 and is set corresponding to the first detection position. The lifting assembly 32 includes a lifting cylinder 321 and a mounting plate 322. The lifting cylinder 321 is connected to the mounting base 31. The output end of the lifting assembly 32 is provided with a pressing block 323. The mounting plate 322 is disposed on the lifting cylinder 321. The detection element 33 is disposed on the mounting plate 322 and is electrically connected to the lifting cylinder 321. The lifting cylinder 321 drives the pressing block 323 to approach or move away from the pressing structure 21 to press the button, and the detection element 33 is used to collect the button pressing force.
[0102] In this embodiment, as Figure 1 , Figure 2 and Figure 4 As shown, the mounting base 31 of the button detection module 3 provides a mounting foundation for the lifting assembly 32 and the detection component 33. It is understood that the mounting base 31 can be a mounting plate, mounting bracket, or other structure, and is not limited here. To improve the structural strength and stability of the mounting base 31, reinforcing ribs or reinforcing plates are provided on the mounting base 31, and is not limited here.
[0103] Understandably, the lifting cylinder 321 of the lifting assembly 32 is fixed to the mounting base 31. To facilitate the installation and fixing of the detection component 33, a mounting plate 322 is fixedly connected to the lifting cylinder 321. Alternatively, the mounting plate 322 and the mounting base 31 can be an integral structure, allowing the mounting plate 322 and the mounting base 31 to cooperate in forming a mounting groove, within which the lifting cylinder 321 is installed. Of course, the mounting plate 322 and the mounting base 31 can also be separate components, which facilitates the installation and removal of the lifting cylinder 321.
[0104] In this embodiment, the mounting plate 322 is provided with a mounting hole for the telescopic shaft of the lifting cylinder 321 to pass through, and the detection element 33 is disposed adjacent to the mounting hole. Optionally, the detection element 33 is movably sleeved on the telescopic shaft of the lifting cylinder 321 and connected to the mounting plate 322. It is understood that the detection element 33 is electrically connected to the lifting cylinder 321, so that the key force can be collected by the detection element 33. Optionally, the detection element 33 is a force sensor.
[0105] Of course, to further improve detection accuracy, the detection element 33 is connected to the pressing block 323, so that when the pressing block 323 presses the button, the detection element 33 can collect the button force. In this embodiment, the setting of the detection element 33 not only realizes the real-time detection and collection of button force, but also avoids damage to the buttons of the remote control 7 caused by the lifting cylinder 321 and the pressing block 323.
[0106] In one embodiment, the brightness detection module 4 includes a base 41, a light source 42, and a camera 43. The base 41 is disposed in the mounting cavity 11 and is set corresponding to the second detection position. The base 41 is provided with a bracket 411. The light source 42 is disposed on the bracket 411. The camera 43 is connected to the base 41 and is adjacent to the bracket 411.
[0107] In this embodiment, as Figure 1 , Figure 2 and Figure 5 As shown, a bracket 411 is provided on the base 41, which facilitates the mounting and fixing of the light source 42. It is understood that the light source 42 can be a light panel or a light strip structure. To improve brightness and lighting effect, two brackets 411 are provided on the base 41, located on both sides of the camera 43. Thus, there are two light sources 42, each positioned on the side of one of the two brackets 411 facing the movable opening 13.
[0108] Understandably, camera 43 can be directly fixed to base 41 and located between two supports 411. Of course, to facilitate adjustment of the position and height of camera 43, an adjustment bracket is provided on base 41, and camera 43 is mounted and fixed on this adjustment bracket. In this embodiment, camera 43 acquires images of the brightness of the buttons on remote control 7.
[0109] In this embodiment, the testing equipment 100 further includes a controller or control body, which is electrically connected to the electric cylinder 221 of the drive assembly 22, the clamping cylinder 2131 of the clamping assembly 213, the linear bearing 214, the vibration cylinder 215, the lifting cylinder 321 of the lifting assembly 32, the detection element 33, the light source 42, and the camera 43 to control the working status of the electric cylinder 221 of the drive assembly 22, the clamping cylinder 2131 of the clamping assembly 213, the linear bearing 214, the vibration cylinder 215, the lifting cylinder 321 of the lifting assembly 32, the detection element 33, the light source 42, and the camera 43.
[0110] It is understandable that the controller or control unit can be a control center or a control board that integrates control programs or control circuits, etc., and there are no restrictions here.
[0111] In one embodiment, such as Figure 1 and Figure 2 As shown, the mounting platform 12 is provided with at least two movable ports 13, which are spaced apart along a first direction, and the first direction is set at an angle to the moving direction of the clamping structure 21; the clamping module 2 includes two, and each clamping module 2 corresponds to one movable port 13. It can be understood that this arrangement can further improve the detection efficiency of the testing equipment 100.
[0112] In this embodiment, each movable port 13 is provided with a first detection position and a second detection position along the moving direction of the pressing structure 21 in the pressing module 2. Each movable port 13 is correspondingly provided with a pressing module 2, that is, the electric cylinder 221 of each driving component 22 drives the connecting seat 222 to drive a pressing structure 21 to reciprocate along the slide rail 14, so that the pressing structure 21 corresponds to the first detection position and the second detection position of the movable port 13.
[0113] like Figure 1 , Figure 2 , Figure 4 and Figure 5 As shown, the testing device 100 also includes a first driving module 5 and a second driving module 6 disposed in the mounting cavity 11. The first driving module 5 is set to a first detection position and extends along a first direction, and the second driving module 6 is set to a second detection position and extends along the first direction. A button detection module 3 is disposed in the first driving module 5, and a brightness detection module 4 is disposed in the second driving module 6. The first driving module 5 drives the button detection module 3 to move along the first direction so that the button detection module 3 corresponds to the first detection position of a movable port 13. The second driving module 6 drives the brightness detection module 4 to move along the first direction so that the brightness detection module 4 corresponds to the first detection position of a movable port 13.
[0114] Understandably, the first drive module 5 and the second drive module 6 can be drive mechanisms, any structure that can provide driving force for the button detection module 3 and the brightness detection module 4, such as a drive cylinder, electric cylinder, drive module or moving module, etc., without limitation.
[0115] In this embodiment, the first driving module 5 drives the button detection module 3 to move along the first direction, so that the button detection module 3 moves between the first detection positions of the two movable ports 13, corresponding to the first detection position of each movable port 13, thereby detecting the remote control 7 in the placement slot 2121 of the pressing structure 21 located at the first detection position on each movable port 13. The second driving module 6 drives the brightness detection module 4 to move along the first direction, so that the brightness detection module 4 moves between the first detection positions of the two movable ports 13, corresponding to the second detection position of each movable port 13, thereby detecting the remote control 7 in the placement slot 2121 of the pressing structure 21 located at the second detection position on each movable port 13.
[0116] Understandably, when one clamping structure 21 is located at the first detection position of one movable port 13, and the other clamping structure 21 is located at the second detection position of another movable port 13, the button detection module 3 and the brightness detection module 4 correspond to the first detection position of one movable port 13 and the second detection position of another movable port 13, respectively. This allows the remote control 7 in the two clamping structure 21 placement slots 2121 to simultaneously perform button performance and button brightness detection, thereby shortening the detection time and improving the detection effect. Of course, after the button detection module 3 and the brightness detection module 4 have respectively detected the remote control 7 in the two clamping structure 21 placement slots 2121 corresponding to the first detection position of one movable port 13 and the second detection position of another movable port 13, the driving component 22 drives the clamping structure 21 on each movable port 13 to change its position. At the same time, the first driving module 5 and the second driving module 6 drive the button detection module 3 and the brightness detection module 4 to change their corresponding movable ports 13.
[0117] The present invention also proposes a testing method using the above-described testing device 100. The specific structure of the testing device 100 is as described in the foregoing embodiments. Since this testing method adopts all the technical solutions of all the foregoing embodiments, it has at least all the beneficial effects brought about by the technical solutions of the foregoing embodiments, which will not be described in detail here.
[0118] In one embodiment, the testing method includes:
[0119] Acquire detection signals;
[0120] Based on the detection signal, the pressing module 2 is controlled to move to the first detection position or the second detection position, and the button detection module 3 or the brightness detection module 4 is controlled to detect the remote control 7 on the pressing module 2.
[0121] Understandably, the detection signals include button performance detection signals and button brightness detection signals. When a button performance detection signal is acquired, the pressing module 2 is controlled to move to the first detection position based on the button performance detection signal, and the button detection module 3 is controlled to detect the remote control 7 on the pressing module 2. When a button brightness detection signal is acquired, the pressing module 2 is controlled to move to the first detection position based on the button brightness detection signal, and the button detection module 3 is controlled to detect the remote control 7 on the pressing module 2.
[0122] In this embodiment, the button performance detection signal and the button brightness detection signal have no specific order. Alternatively, the button performance detection signal can be obtained first, causing the pressing module 2 to move to the first detection position and controlling the button detection module 3 to perform button function and button force detection on the remote control 7 on the pressing module 2. Then, the button brightness detection signal is obtained, and the pressing module 2 is controlled to move to the second detection position, and the brightness detection module 4 is controlled to perform button brightness detection on the remote control 7 on the pressing module 2.
[0123] Of course, it is also possible to first obtain the brightness detection signal of the button, control the pressing module 2 to move to the second detection position, and control the brightness detection module 4 to perform button brightness detection on the remote control 7 on the pressing module 2; then obtain the button performance detection signal, control the pressing module 2 to move to the first detection position, and control the button detection module 3 to perform button function and button force detection on the remote control 7 on the pressing module 2, which is not limited here.
[0124] In one embodiment, the detection signals include a button performance detection signal and a button brightness detection signal. The pressing module 2 includes a pressing structure 21 and a driving component 22. The pressing structure 21 is provided with a placement slot 2121 for fixing the remote control 7.
[0125] The steps of controlling the pressing module 2 to move to the first or second detection position according to the detection signal, and controlling the button detection module 3 or the brightness detection module 4 to detect the remote control 7 on the pressing module 2 include:
[0126] The detection signal is the performance detection signal of the button, which controls the drive component 22 to drive the pressing structure 21 to move to the first detection position, and controls the button detection module 3 to detect the remote control 7 in the placement slot 2121;
[0127] The detection signal is the brightness detection signal of the button. The control drive component 22 drives the pressing structure 21 to move to the second detection position, and controls the brightness detection module 4 to detect the remote control 7 in the placement slot 2121.
[0128] Understandably, the drive assembly 22 provides driving force to the clamping structure 21. The drive assembly 22 can be a drive cylinder, a drive motor with a lead screw structure, a drive module, etc., and is not limited here. In this embodiment, the drive assembly 22 includes an electric cylinder 221 and a connecting seat 222. The electric cylinder 221 is located on the mounting platform 12 and adjacent to the movable port 13. The connecting seat 222 is located at the output end of the electric cylinder 221 and is connected to the clamping structure 21. Thus, the electric cylinder 221 drives the connecting seat 222 to move the clamping structure 21 back and forth, so that the clamping structure 21 is located at the first detection position or the second detection position, so that the button detection module 3 or the brightness detection module 4 can detect the remote control 7 in the placement slot 2121.
[0129] In this embodiment, in order to facilitate the sliding of the pressing structure 21 by the driving component 22, the mounting platform 12 is provided with a slide rail 14. The slide rail 14 is located near the movable opening 13 and extends along the moving direction of the pressing structure 21. The support plate 211 is provided with a slide groove 2111, which slides in cooperation with the slide rail 14.
[0130] In one embodiment, the clamping structure 21 includes a support plate 211, a connecting plate 212, and a clamping assembly 213, wherein the connecting plate 212 is provided with a placement groove 2121;
[0131] Before acquiring the detection signal, the test method also includes:
[0132] Place the remote control 7 into the placement slot 2121;
[0133] The control clamping assembly 213 clamps the remote control 7 on the placement slot 2121.
[0134] In this embodiment, the clamping structure 21 includes a support assembly and a clamping assembly 213. The support assembly has a placement groove 2121, and the clamping assembly 213 is disposed on the support assembly and adjacent to the placement groove 2121. The support assembly of the clamping structure 21 includes a support plate 211 and a connecting plate 212. The clamping assembly 213 includes multiple clamping cylinders 2131 and multiple clamping members 2132, such that the clamping cylinders 2131 drive the clamping members 2132 to drive the clamping connecting rod 2133 to clamp or release the remote control 7 in the placement groove 2121.
[0135] Understandably, before testing, the remote control 7 is placed in the placement slot 2121 and then pressed and fixed by the clamping component 213 to prevent the remote control 7 from becoming loose or shaking when the button detection module 3 or the brightness detection module 4 tests the remote control 7 in the placement slot 2121, thus affecting the test results.
[0136] In one embodiment, the clamping structure 21 further includes a linear bearing 214 and a vibrating cylinder 215. The linear bearing 214 connects the support plate 211 and the connecting plate 212, and the output end of the vibrating cylinder 215 is connected to the connecting plate 212.
[0137] The detection signal is a performance detection signal for the button. The steps of controlling the drive component 22 to drive the pressing structure 21 to move to the first detection position include:
[0138] The linear bearing 214 controls the connecting plate 212 to be locked onto the support plate 211;
[0139] The control drive assembly 22 drives the support plate 211 to move the connecting plate 212 to the first detection position, so that the placement slot 2121 is opposite to the button detection module 3;
[0140] The detection signal is the brightness detection signal of the button. The steps of controlling the drive component 22 to drive the pressing structure 21 to move to the second detection position include:
[0141] Control the linear bearing 214 to release the connecting plate 212, so that the connecting plate 212 can move relative to the support plate 211;
[0142] The control drive assembly 22 drives the support plate 211 to move the connecting plate 212 to the second detection position, so that the placement slot 2121 is opposite to the brightness detection module 4;
[0143] The vibration cylinder 215 drives the connecting plate 212 to move up and down relative to the support plate 211.
[0144] In this embodiment, the clamping structure 21 further includes multiple linear bearings 214 and a vibration cylinder 215. It is understood that the support assembly of the clamping structure 21 has a locked state where the linear bearings 214 lock the connecting plate 212, and a released state where the linear bearings 214 release the connecting plate 212. That is, the linear bearings 214 can both lock the connecting plate 212 onto the support plate 211 and release the connecting plate 212, allowing the connecting plate 212 to move relative to the support plate 211.
[0145] It should be noted that when the linear bearing 214 locks the connecting plate 212, the relative positions of the connecting plate 212 and the support plate 211 are fixed; when the linear bearing 214 releases the connecting plate 212, the connecting plate 212 can move relative to the support plate 211. In this embodiment, the connecting plate 212 can move up and down relative to the support plate 211 along the linear bearing 214.
[0146] In this embodiment, when the linear bearing 214 releases the connecting plate 212, the vibration cylinder 215 drives the connecting plate 212 to move up and down along the linear bearing 214, so that the distance between the connecting plate 212 and the support plate 211 changes, thereby causing the acceleration sensor inside the remote control 7 placed in the slot 2121 of the connecting plate 212 to sense, so that the LED light under the button on the remote control 7 flashes, thus cooperating with the brightness detection module 4 to realize the brightness detection of the button on the remote control 7.
[0147] When the button detection module 3 detects the remote control 7 in the placement slot 2121, the linear bearing 214 needs to be locked to the connecting plate 212 so that the relative positions of the connecting plate 212 and the support plate 211 are fixed, thus ensuring the accuracy of the button detection module 3 in detecting button performance.
[0148] In one embodiment, the button detection module 3 includes a lifting component 32 and a detection element 33, and the output end of the lifting component 32 is provided with a pressing block 323;
[0149] The steps by which the control button detection module 3 detects the remote controller 7 in the placement slot 2121 include:
[0150] The control lifting component 32 drives the pressing block 323 to move closer to or further away from the pressing structure 21, so that the pressing block 323 presses the button of the remote control;
[0151] Control the button force of the detection component 33 to collect data.
[0152] In this embodiment, the lifting cylinder 321 of the lifting assembly 32 is fixed to the mounting base 31. To facilitate the installation and fixing of the detection component 33, a mounting plate 322 is fixedly connected to the lifting cylinder 321. Alternatively, the mounting plate 322 and the mounting base 31 can be an integral structure, allowing the mounting plate 322 and the mounting base 31 to cooperate in forming a mounting groove in which the lifting cylinder 321 is installed. Of course, the mounting plate 322 and the mounting base 31 can also be separate components, which facilitates the assembly and disassembly of the lifting cylinder 321.
[0153] Optionally, the detection element 33 is a force sensor. The detection element 33 is movably sleeved on the telescopic shaft of the lifting cylinder 321 and connected to the mounting plate 322. Understandably, the detection element 33 is electrically connected to the lifting cylinder 321, so that the force of the button can be collected by the detection element 33.
[0154] Of course, to further improve detection accuracy, the detection element 33 is connected to the pressing block 323, so that when the pressing block 323 presses the button, the detection element 33 can collect the button force. In this embodiment, the setting of the detection element 33 not only realizes the real-time detection and collection of button force, but also avoids damage to the buttons of the remote control 7 caused by the lifting cylinder 321 and the pressing block 323.
[0155] In one embodiment, the brightness detection module 4 includes a light source 42 and a camera 43;
[0156] The steps for the brightness detection module 4 to detect the remote control 7 in the placement slot 2121 include:
[0157] Adjust the brightness of light source 42;
[0158] Control camera 43 to collect brightness information of the buttons on the remote control;
[0159] Determine whether the brightness information has reached the preset brightness;
[0160] If so, the output result is OK;
[0161] If not, output an alarm signal.
[0162] In this embodiment, when performing button brightness detection, in order to avoid the brightness of the light source 42 affecting the brightness information of the button collected by the camera 43, the brightness of the light source 42 can be adjusted according to the actual situation, so as to ensure that the brightness information of the button collected by the camera 43 can be accurate, thereby improving the accuracy of brightness information comparison.
[0163] Understandably, the light source 42 can be a light panel or a light strip structure. To improve brightness and lighting effect, two brackets 411 are provided on the base 41, and the two brackets 411 are located on both sides of the camera 43. Thus, there are two light sources 42, and the two light sources 42 are respectively set on the side of the two brackets 411 facing the movable opening 13.
[0164] Understandably, camera 43 can be directly fixed to base 41 and located between two supports 411. Of course, to facilitate adjustment of the position and height of camera 43, an adjustment bracket is provided on base 41, and camera 43 is mounted and fixed on this adjustment bracket. In this embodiment, camera 43 acquires images of the brightness of the buttons on remote control 7.
[0165] The testing equipment 100 of this invention uses an automated testing method to detect the button function, button force, and button brightness of the remote control 7. The button function test of the remote control 7 is completed by having the lifting cylinder 321 of the button detection module 3 drive the pressing block 322 to press the button of the remote control 7 and transmit a signal. After the television receives the signal from the remote control 7, the television feedback signal is detected simultaneously. The button feel test is performed by having the lifting cylinder 321 of the button detection module 3 drive the pressing block 322 to press the button of the remote control 7, and the button force is collected by the detection element 33. The button brightness test is performed by having the camera 43 of the brightness detection module 4 capture a photo of the remote control 7 when the button is illuminated, and then analyze and compare the results to achieve the detection. To improve testing efficiency, the testing equipment 100 adopts a one-to-two mode. The main body 1 is equipped with at least two clamping modules 2. By setting the first drive module 5 and the second drive module 6 to be connected to the button detection module 3 and the brightness detection module 4 respectively, the first drive module 5 and the second drive module 6 can work together with the button detection module 3 and the brightness detection module 4 to simultaneously test the remote controller 7 in the two clamping module 2 placement slots 2121, thereby improving testing efficiency.
[0166] The present invention also proposes a testing system, which includes the aforementioned testing device 100, terminal and controller. The specific structure of the testing device 100 is as described in the foregoing embodiments. Since the present testing system adopts all the technical solutions of all the foregoing embodiments, it has at least all the beneficial effects brought about by the technical solutions of the foregoing embodiments, which will not be described in detail here.
[0167] In this embodiment, the terminal can be a television, speaker, air conditioner, or other electronic device terminal structure, etc., and is not limited thereto. The terminal is used to interact with the remote control 7, that is, the terminal's operating state can be controlled by operating the buttons on the remote control 7. The controller is electrically connected to the terminal, the testing equipment 100, and the remote control 7. In this way, the controller can be used to control the working state of the electric cylinder 221 of the drive assembly 22, the clamping cylinder 2131 of the clamping assembly 213, the linear bearing 214, the vibration cylinder 215, the lifting cylinder 321 of the lifting assembly 32, the detection element 33, the light source 42, the camera 43, the first drive module 5, and the second drive module 6 of the testing equipment 100.
[0168] The above description is merely an optional embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformations made under the concept of the present invention using the contents of the specification and drawings of the present invention, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present invention.
Claims
1. A testing device for testing the buttons of a remote control, characterized in that, The testing equipment includes: The body has a mounting platform and a mounting cavity located below the mounting platform. The mounting platform has a movable port communicating with the mounting cavity. The movable port has a first detection position and a second detection position. A clamping module includes a clamping structure and a driving assembly. The driving assembly is mounted on the mounting platform and connected to the clamping structure. The clamping structure corresponds to the movable port and is slidably connected to the mounting platform. The clamping structure has a placement groove communicating with the movable port for fixing the remote control. The clamping structure includes a support plate, a connecting plate, a clamping assembly, a vibration cylinder, and multiple linear bearings. The support plate is slidably connected to the mounting platform and corresponds to the movable port. The support plate has a through-hole communicating with the movable port. The connecting plate is connected to the support plate and has the placement groove. The bottom wall of the placement groove has a through-hole corresponding to the through-hole. The clamping assembly includes multiple clamping cylinders and multiple clamping elements. Each clamping cylinder is connected to the connecting plate. A clamping member is disposed adjacent to the placement slot and connected to the output end of the clamping cylinder. The clamping member is provided with a clamping connecting rod. A plurality of linear bearings are arranged around the opening. One end of each linear bearing is connected to the support plate, and the other end of each linear bearing movably passes through the connecting plate. The linear bearings are used to lock or release the connecting plate. The vibration cylinder is connected to the support plate, and the output end of the vibration cylinder is connected to the connecting plate. The clamping cylinder drives the clamping member to move the clamping connecting rod to clamp or release the remote control in the placement slot. The clamping structure has a locked state in which the linear bearings lock the connecting plate and a released state in which the linear bearings release the connecting plate. In the released state, the vibration cylinder drives the connecting plate to move up and down along the linear bearings. A button detection module is disposed within the mounting cavity and corresponding to the first detection position. The button detection module is used to detect the performance of the button. A brightness detection module is disposed in the mounting cavity and is set corresponding to the second detection position. The brightness detection module is used to detect the brightness of the button. The driving component drives the clamping structure to move along the movable opening, so that the clamping structure is located at the first detection position or the second detection position.
2. The testing equipment according to claim 1, characterized in that, The button detection module includes a mounting base, a lifting assembly, and a detection component. The mounting base is disposed within the mounting cavity and corresponds to the first detection position. The lifting assembly includes a lifting cylinder and a mounting plate. The lifting cylinder is connected to the mounting base, and a pressing block is provided at the output end of the lifting assembly. The mounting plate is disposed on the lifting cylinder, and the detection component is disposed on the mounting plate and electrically connected to the lifting cylinder. The lifting cylinder drives the pressing block to move closer to or away from the pressing structure to press the button, and the detection component is used to collect the button pressing force. And / or, the brightness detection module includes a base, a light source and a camera. The base is disposed in the mounting cavity and is set corresponding to the second detection position. The base is provided with a bracket. The light source is disposed on the bracket. The camera is connected to the base and adjacent to the bracket.
3. The testing equipment according to claim 1 or 2, characterized in that, The mounting platform is provided with at least two movable ports, which are spaced apart along a first direction, and the first direction is set at an angle to the moving direction of the pressing structure. The clamping module includes two, and each clamping module is provided with a corresponding movable port; The testing equipment further includes a first driving module and a second driving module disposed in the mounting cavity. The first driving module is disposed corresponding to the first detection position and extends along the first direction. The second driving module is disposed corresponding to the second detection position and extends along the first direction. The button detection module is disposed in the first driving module, and the brightness detection module is disposed in the second driving module. Wherein, the first driving module drives the button detection module to move along the first direction, so that the button detection module corresponds to the first detection position of the active port; the second driving module drives the brightness detection module to move along the first direction, so that the brightness detection module corresponds to the first detection position of the active port.
4. A testing method using the testing equipment as described in any one of claims 1 to 3, characterized in that, The testing method includes: Acquire detection signals; Based on the detection signal, the pressing module is controlled to move to the first detection position or the second detection position, and the button detection module or the brightness detection module is controlled to detect the remote control on the pressing module.
5. The test method according to claim 4, characterized in that, The detection signals include the button performance detection signal and the button brightness detection signal. The pressing module includes a pressing structure and a driving component. The pressing structure is provided with a placement slot for fixing the remote control. The steps of controlling the pressing module to move to the first or second detection position according to the detection signal, and controlling the button detection module or brightness detection module to detect the remote control on the pressing module include: The detection signal is a button performance detection signal, which controls the driving component to drive the pressing structure to move to the first detection position, and controls the button detection module to detect the remote control in the placement slot; The detection signal is a brightness detection signal of the button, which controls the driving component to drive the pressing structure to move to the second detection position, and controls the brightness detection module to detect the remote control in the placement slot.
6. The test method according to claim 5, characterized in that, The clamping structure includes a support plate, a connecting plate, a clamping assembly, a linear bearing, and a vibrating cylinder. The connecting plate is provided with the placement groove. The linear bearing connects the support plate and the connecting plate. The output end of the vibrating cylinder is connected to the connecting plate. Before the step of acquiring the detection signal, the test method further includes: Place the remote control into the placement slot; The clamping assembly is controlled to clamp the remote control on the placement slot; The detection signal is a button performance detection signal, and the step of controlling the driving component to drive the pressing structure to move to the first detection position includes: The linear bearing is controlled to lock the connecting plate onto the support plate; The drive assembly is controlled to drive the support plate to move the connecting plate to the first detection position, so that the placement slot is opposite to the button detection module; The detection signal is a brightness detection signal of the button, and the step of controlling the driving component to drive the pressing structure to move to the second detection position includes: Control the linear bearing to release the connecting plate, making the connecting plate movable relative to the support plate; The drive assembly is controlled to drive the support plate to move the connecting plate to the second detection position, so that the placement slot is opposite to the brightness detection module; The vibration cylinder is controlled to drive the connecting plate to move up and down relative to the support plate.
7. The test method according to claim 6, characterized in that, The button detection module includes a lifting component and a detection element, and the output end of the lifting component is provided with a pressing block; The steps for controlling the button detection module to detect the remote control in the placement slot include: The lifting assembly is controlled to drive the pressing block closer to or further away from the pressing structure, so that the pressing block presses the button on the remote control; The detection element is controlled to collect the button pressing force; And / or, the brightness detection module includes a light source and a camera; The steps for controlling the brightness detection module to detect the remote control in the placement slot include: Adjust the brightness of the light source; Control the camera to collect brightness information of the buttons on the remote control; Determine whether the brightness information has reached the preset brightness; If so, the output result is OK; If not, output an alarm signal.
8. A testing system, characterized in that, The testing system includes: The test equipment as described in any one of claims 1 to 3; A terminal, the terminal being used to interact with a remote control; and The controller is electrically connected to the terminal, the test equipment, and the remote controller.
Citation Information
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