Mobile remote quality inspection terminal
The mobile remote quality inspection terminal solves the problem of non-fixed testing stations for small product inspection and acceptance, enabling rapid data collection and accurate recording, and improving inspection and acceptance efficiency and data authenticity.
Patent Information
- Application Number
- CN202422013470.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-19
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-08-19
AI Technical Summary
The delivery inspection and acceptance testing stations for small products are not fixed, which requires supervisors to change testing locations back and forth. Manual data recording is inaccurate and untimely, and it is impossible to inspect and accept multiple products in parallel.
A mobile remote quality inspection terminal is provided, including a mobile node vehicle, a monitor hovering bracket, a rotating arm, a pan-tilt camera, an omnidirectional microphone, audio and video processing equipment, a switch, an external interface panel, a power interface, a network cable telescopic component, a wireless communication module, and a control system, which completes test data collection and recording through hardware and software facilities.
It enables rapid collection and accurate recording of test data, allowing supervisors to inspect multiple products simultaneously, thus improving inspection and acceptance efficiency and data authenticity.
Smart Images

Figure CN223502928U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of intelligent manufacturing technology, and more specifically, to a mobile remote quality inspection terminal. Background Technology
[0002] For product delivery inspection and acceptance or testing, apart from some large products, small products often have no fixed testing station. The tested products need to be moved back and forth to different testing locations, and supervisors need to conduct on-site acceptance testing and manually record test data.
[0003] Currently, when most products undergo delivery inspection and acceptance, independent and decentralized testing stations are used. Supervisors need to oversee multiple testing locations and manually record data in order to complete the testing.
[0004] In automated production lines, test data from automated testing platforms needs to be exported to complete testing. Current solutions have problems: independent and dispersed testing stations prevent the seamless integration of inspection and acceptance processes; manually entered data is inaccurate and untimely; and supervisors cannot simultaneously conduct delivery inspections and acceptance of multiple products. Utility Model Content
[0005] The purpose of this application is to overcome the shortcomings of existing technologies and provide a mobile remote quality inspection terminal. The mobile remote quality inspection terminal is moved to the testing station, auxiliary hardware facilities are set up, and power and network are connected. Through the software and hardware deployed in the inspection terminal, the product test data is collected and the test process is recorded.
[0006] The objective of this application is achieved through the following technical solution:
[0007] In a first aspect, this application proposes a mobile remote quality inspection terminal, which includes a mobile node trolley, a display hovering bracket, a display, a rotating support arm, a pan-tilt camera, an omnidirectional microphone, an audio and video processing device, a switch, an external interface panel, a power interface, a network cable telescopic component, a cable coiling component, a wireless communication module, and a control system.
[0008] Two monitor hovering brackets are installed above the frame of the mobile node vehicle, and a monitor is installed at the end of each monitor hovering bracket.
[0009] Two rotating arms are set above the frame of the mobile node vehicle and are located on both sides of the display suspension bracket. A gimbal camera is set at the end of each rotating arm.
[0010] An omnidirectional microphone is positioned above the frame of the mobile node vehicle, while an audio / video processing device located in the middle of the mobile node vehicle is connected to the external interface panel and switch.
[0011] The external interface panel and power interface are respectively located on the side of the mobile node vehicle, the network cable retractable assembly is located on the left side of the mobile node vehicle, and the cable coil assembly is located on the right side of the mobile node vehicle.
[0012] The wireless communication module includes a Wi-Fi module and a 4G / 5G module, which are used to wirelessly transmit the collected product test data;
[0013] The control system is used to control the direction and focal length of the pan-tilt camera.
[0014] In one possible implementation, the terminal further includes a computer disposed below the mobile node vehicle.
[0015] In one possible implementation, the terminal further includes a storage drawer disposed on the upper part of the mobile node vehicle.
[0016] In one possible implementation, the terminal further includes a mouse and keyboard drawer and a mouse and keyboard disposed on the upper part of the mobile node vehicle.
[0017] In one possible implementation, the mobile node trolley uses anti-static casters.
[0018] In one possible implementation, the terminal further includes a ventilated rear door located at the rear of the mobile node vehicle.
[0019] In one possible implementation, the terminal further includes a combined blind plate disposed at the left end of the mobile node vehicle.
[0020] In one possible implementation, the terminal further includes a PDU unit.
[0021] In one possible implementation, the terminal further includes a fan assembly.
[0022] In one possible implementation, the terminal further includes a handle located at the right end of the mobile node vehicle.
[0023] The main solution and its various further alternatives described above can be freely combined to form multiple solutions, all of which are solutions that can be adopted and are claimed in this application; furthermore, the (non-conflicting alternatives) can also be freely combined with each other and with other alternatives. Those skilled in the art, after understanding the solution of this application, will realize from the prior art and common general knowledge that there are many combinations, all of which are technical solutions to be protected by this application, and will not be exhaustively listed here.
[0024] This application discloses a mobile remote quality inspection terminal. The monitor suspension bracket and monitor allow for flexible display. A rotating arm and pan-tilt camera enable omnidirectional monitoring and recording of the surrounding environment. An omnidirectional microphone allows for audio communication with a remote location. An external interface panel and power interface allow for connection to audio, video, and network interfaces for operation. A retractable network cable assembly connects to external devices; the device can be retracted when not in use for greater convenience. A cable management assembly stores external cables for easy relocation. The mobile remote quality inspection terminal is moved to the testing station, its auxiliary hardware is deployed, and power and network are connected. Through the hardware and software deployed on the inspection terminal, product test data is collected and the testing process is recorded. Attached Figure Description
[0025] To more clearly illustrate the technical solutions of the embodiments of this application, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this application and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0026] Figure 1 A front view of a mobile remote quality inspection terminal according to an embodiment of this application is shown.
[0027] Figure 2 The diagram shows a right-side view of a mobile remote quality inspection terminal according to an embodiment of this application.
[0028] Figure 3 The diagram shows a left-side view of a mobile remote quality inspection terminal according to an embodiment of this application.
[0029] Icons: 1-Mobile node vehicle; 2-Monitor hover bracket; 3-Monitor; 4-Rotating arm; 5-Pan-and-shoot camera; 6-Omnidirectional microphone; 7-Computer; 8-Audio / video processing equipment; 9-Switch; 10-Storage drawer; 11-Mouse and keyboard drawer; 12-Interface panel; 13-Cable coil assembly; 14-Network cable retractable assembly; 15-Ventilation rear door; 16-Combination blind plate; 17-Anti-static casters; 18-Handle; 19-Power interface; 20-PDU unit; 21-Fan assembly. Detailed Implementation
[0030] The following specific examples illustrate the implementation of this application. Those skilled in the art can easily understand other advantages and effects of this application from the content disclosed in this specification. This application can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this application. It should be noted that, unless otherwise specified, the following embodiments and features in the embodiments can be combined with each other.
[0031] Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0032] In automated production lines, test data from automated testing platforms needs to be exported to complete testing. Current solutions have problems: independent and dispersed testing stations prevent the seamless integration of inspection and acceptance processes; manually entered data is inaccurate and untimely; and supervisors cannot simultaneously conduct delivery inspections and acceptance of multiple products.
[0033] Therefore, to address the issues of scattered acceptance locations and manual data entry required during product delivery inspection and acceptance, this application proposes a mobile remote quality inspection terminal. This terminal is moved to the testing station, its auxiliary hardware is deployed, and it is connected to power and network. The hardware and software deployed on the terminal enable the collection of product test data and the recording of the testing process. A detailed description follows.
[0034] Please refer to Figure 1 , Figure 1 This diagram shows a front view of a mobile remote quality inspection terminal according to an embodiment of this application. It features mobile distributed deployment, rapid data acquisition, remote inspection process display, and tamper-proof data authenticity. The terminal includes a mobile node vehicle 1, a display hovering bracket 2, a display 3, a rotating arm 4, a pan-tilt camera 5, an omnidirectional microphone 6, an audio / video processing device 8, a switch 9, an external interface panel 12, a power interface 19, a network cable retractable assembly 14, a cable reel assembly 13, a wireless communication module, and a control system.
[0035] Two display hovering brackets 2 are installed above the frame body of the mobile node vehicle 1, and a display is installed at the end of each display hovering bracket 2.
[0036] Two rotating arms 4 are set above the frame of the mobile node trolley 1 and are located on both sides of the display suspension bracket. A gimbal camera 5 is set at the end of each rotating arm 4.
[0037] An omnidirectional microphone 6 is mounted on the top of the frame of the mobile node vehicle 1, and an audio and video processing device 8 located in the middle of the mobile node vehicle 1 is connected to the external interface panel 12 and the switch 9.
[0038] The external interface panel 12 and the power interface 19 are respectively located on the side of the mobile node vehicle 1, the network cable retractable assembly 14 is located on the left side of the mobile node vehicle 1, and the cable coil assembly 13 is located on the right side of the mobile node vehicle 1.
[0039] The wireless communication module includes a Wi-Fi module and a 4G / 5G module, which are used to wirelessly transmit the collected product test data;
[0040] The control system is used to control the direction and focal length of the pan-tilt camera.
[0041] Replacing the network cable retractable component with a ground wire, power wire, or other components can increase the possibilities.
[0042] The monitor hovering bracket 2 can support two monitors and can be adjusted in height, forward / backward position, tilt angle, and 360° orientation within a certain range to adapt to different user positions. The operator only needs to apply a suitable amount of pulling force to adjust it, and it will hover when released, similar to the rotating arm 4.
[0043] The Monitor Hover Stand 2 is crafted from high-quality aluminum alloy, making it both sturdy and elegant. Its design supports flexible tilt adjustment from 90 degrees to 25 degrees, ensuring comfortable viewing. The stand boasts excellent load-bearing capacity, stably supporting monitors weighing from 3 to 11 kg, offering wide compatibility. Its mechanical spring-loaded height adjustment mechanism not only makes monitor height adjustment effortless with a range of 285 mm, but also offers a lifespan of up to 200,000 lift cycles, ensuring durability and reliability. The 360-degree rotation function greatly increases the flexibility of viewing angle adjustment. Furthermore, this stand supports monitors up to 38 inches, fully meeting the needs of users with different screen sizes. Its standard 45 cm column height and 628 mm stand length, combined with excellent rotation and height adjustment functions, create a high level of ease of use and viewing comfort.
[0044] based on Figure 1 Please refer to Figure 2 and Figure 3 , Figure 2 The diagram shows a right-side view of a mobile remote quality inspection terminal according to an embodiment of this application. Figure 3The diagram shows a left-side view of a mobile remote quality inspection terminal according to an embodiment of this application. First, two flexibly adjustable hovering display brackets are installed above the frame of the mobile node vehicle 1, allowing for flexible adjustment of the display's horizontal, vertical, and tilt angles. Above the frame of the mobile node vehicle 1, two multi-section camera rotating and hovering arms with a 1.5-meter reach are installed. Each arm section can rotate 240° horizontally, and the last arm section can adjust its tilt angle by ±30°. Combined with a PTZ camera, the surrounding environment is monitored and filmed from all angles. Operators can simply pull the arm to the desired position for hovering, and retract the arms when not in use.
[0045] Secondly, the main body of the equipment is simplified to only expose the necessary physical interfaces—power, network, and audio / video interfaces—allowing for rapid setup and workflow initiation without complex assembly steps. A built-in omnidirectional microphone 6 on the tabletop captures sound from all directions, optimizing voice communication quality and facilitating clear and smooth audio conversations with remote devices. A specially designed external interface panel 12 on the side integrates multiple interfaces, including audio, video, and network, allowing users to connect peripherals according to their needs. Meanwhile, a well-designed power interface 19 supports power supply for on-site operations, enhancing operational flexibility.
[0046] The retractable network cable assembly 14 on the left allows users to extend a network cable up to 8 meters to connect to distant devices as needed. The cable automatically retracts after use, preventing clutter and protecting the cable from damage. The cable management assembly 13 on the right provides a storage solution for external cables, organizing and storing various connection cables in an orderly manner. This prevents inconvenience caused by tangled cables when moving the trolley, protects the cables from damage, and maintains a tidy work area.
[0047] In one possible implementation, the terminal further includes a storage drawer 10 disposed on the upper part of the mobile node vehicle 1.
[0048] A storage drawer 10 is installed on the upper part of the mobile node trolley 1, providing additional storage space for on-site inspection personnel to store tools, spare parts or documents, which takes into account both practicality and convenience, and further improves the efficiency of on-site operations.
[0049] In one possible implementation, the terminal also includes a mouse and keyboard drawer 11 and a mouse and keyboard disposed on the upper part of the mobile node vehicle 1.
[0050] The upper part of the mobile node vehicle 1 is equipped with a mouse and keyboard drawer 11 for storing a mouse and keyboard, so that on-site operators can quickly unfold the workbench when needed and use a standard mouse and keyboard for precise control and data entry, improving the convenience and efficiency of operation.
[0051] In one possible implementation, the mobile node trolley 1 uses anti-static casters 17.
[0052] The mobile node trolley 1 is constructed from a single welded frame, and its wheels are anti-static casters 17. All materials in contact with the product surface are anti-static, preventing ESD damage and providing anti-static functionality. In electronic manufacturing or other electrostatic-sensitive environments, the anti-static casters 17 effectively prevent static electricity buildup and release, protecting precision electronic equipment from electrostatic damage and ensuring the safety and stability of the inspection process.
[0053] In one possible implementation, the terminal also includes a ventilated rear door 15 located at the rear of the mobile node vehicle 1.
[0054] The addition of a ventilation door 15 in this embodiment can improve the heat dissipation performance inside the equipment, ensuring that key components such as the audio and video processing equipment 8 and the switch 9 can maintain a suitable operating temperature during long-term operation, preventing problems such as system instability or hardware damage caused by overheating.
[0055] In one possible implementation, the terminal also includes a combined blind plate 16 disposed at the left end of the mobile node vehicle 1.
[0056] The addition of a combined blind flange 16 enables modular management and maintenance of the equipment. It includes a detachable or adjustable panel to allow for flexible connection of different equipment and cables or quick maintenance as needed, while also maintaining the overall enclosure and neat appearance of the vehicle.
[0057] In one possible implementation, the terminal also includes a PDU unit 20.
[0058] The PDU (Power Distribution Unit) is integrated into the terminal as a key power management component. It is responsible for efficiently and safely distributing power to various electrical devices on the mobile node vehicle 1, including but not limited to computer systems, sensors, and communication equipment. This not only optimizes energy usage efficiency but also facilitates centralized monitoring and control of the power supply, enhancing system stability and security.
[0059] In one possible implementation, the terminal also includes a fan assembly 21.
[0060] The fan assembly 21 enhances airflow within the equipment, effectively reducing temperature and ensuring that electronic components operate within a safe temperature range under high loads, thereby improving system stability and extending hardware lifespan. This active cooling method enables the terminal to be suitable for long-term continuous operation or applications in high-temperature environments.
[0061] In one possible implementation, the terminal also includes a handle 18 located at the right end of the mobile node vehicle 1.
[0062] The mobile node trolley 1 is equipped with a handle 18 on the right end, which improves the portability and ease of operation of the terminal, allowing staff to easily move and position the trolley, and operate it flexibly even in narrow or limited spaces.
[0063] In one possible implementation, the terminal also includes a computer 7 disposed below the mobile node vehicle 1.
[0064] The mobile node vehicle 1 integrates a computer 7, which enables the terminal to have powerful data processing and analysis capabilities. It can directly perform complex data calculations, image processing, or run professional inspection software on-site, which not only optimizes the real-time feedback and decision-making process, but also reduces the dependence on external computing resources.
[0065] It is worth noting that all signal communication is via physical wired connection, effectively ensuring information security. Wireless communication is possible when no physical network connection is required, and it can operate on its own battery in environments without power supply.
[0066] The mobile remote quality inspection terminal proposed in this application only requires network and power access. The software system is deployed in a distributed manner to achieve mobile access. It integrates video, audio, and data acquisition terminals, which can collect, analyze, and process test results from the test station. It integrates an encoding and decoding terminal, which can fit video and audio signals and transmit them to the remote end to achieve remote multi-task parallel inspection and acceptance. The inspection node software deployed on the inspection terminal can encrypt test results (images, files, audio and video, and structured test data), reflecting the authenticity and feasibility of the inspection data. It integrates signal processing instruments and equipment internally and user accessories externally, and adopts a modular design, which can realize the rapid deployment or folding of hardware facilities.
[0067] Compared with the prior art, the embodiments of this application have the following beneficial effects:
[0068] First, the mobile remote quality inspection terminal proposed in this application is small, flexible, and easy to deploy, solving the problem of dedicated line mode and improving production efficiency.
[0069] Secondly, only power, signal source, and network interfaces are exposed to the outside, reducing the wear and tear on internal cables and connectors, thus lowering costs and risks.
[0070] Third, each test only requires power and network access, and the hardware can be set up to conduct the test. It automatically collects audio, video, pictures and test data at the test site, which improves test efficiency and the accuracy and timeliness of test data.
[0071] Fourth, supervisors can conduct parallel inspections and acceptance of multiple products simultaneously, improving efficiency.
[0072] Fifth, the camera and monitor have very flexible position and angle adjustment, which can adapt to various usage scenarios within the range.
[0073] Sixth, the extended camera arm and monitor bracket, the pull-out and push-in mouse and keyboard drawers, storage drawers, and network cable retractable device all make the vehicle more flexible and have better passability when folded, allowing it to reach narrower usage scenarios.
[0074] Seventh, the installation of instruments inside the vehicle and external panels adopts a standard structural interface design, which provides more possibilities for the maintenance, replacement and functional expansion of the equipment.
[0075] Therefore, the mobile remote quality inspection terminal disclosed in this application features a monitor suspension bracket and monitor for flexible display, a rotating arm and pan-tilt camera for comprehensive monitoring and capturing of the surrounding environment, an omnidirectional microphone for audio communication with remote devices, an external interface panel and power interface for connecting audio, video, and network interfaces, a retractable network cable assembly for connecting external devices, and a cable management assembly for storing external cables for easy movement. By moving the mobile remote quality inspection terminal to the testing station, deploying auxiliary hardware, and connecting to power and network, the terminal's hardware and software can collect product test data and record the testing process.
[0076] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A mobile remote quality inspection terminal, characterized in that, The terminal includes a mobile node vehicle, a display hovering bracket, a display, a rotating support arm, a pan-tilt camera, an omnidirectional microphone, audio and video processing equipment, a switch, an external interface panel, a power interface, a network cable telescopic assembly, a cable reel assembly, a wireless communication module, and a control system. Two monitor hovering brackets are installed above the frame of the mobile node vehicle, and a monitor is installed at the end of each monitor hovering bracket. Two rotating arms are set above the frame of the mobile node vehicle and are located on both sides of the display suspension bracket. A gimbal camera is set at the end of each rotating arm. An omnidirectional microphone is positioned above the frame of the mobile node vehicle, while an audio / video processing device located in the middle of the mobile node vehicle is connected to the external interface panel and switch. The external interface panel and power interface are respectively located on the side of the mobile node vehicle, the network cable retractable assembly is located on the left side of the mobile node vehicle, and the cable coil assembly is located on the right side of the mobile node vehicle. The wireless communication module includes a Wi-Fi module and a 4G / 5G module, which are used to wirelessly transmit the collected product test data; The control system is used to control the direction and focal length of the pan-tilt camera.
2. The mobile remote quality inspection terminal as described in claim 1, characterized in that, The terminal also includes a computer located below the mobile node vehicle.
3. The mobile remote quality inspection terminal as described in claim 1, characterized in that, The terminal also includes a storage drawer located on the upper part of the mobile node vehicle.
4. The mobile remote quality inspection terminal as described in claim 1, characterized in that, The terminal also includes a mouse and keyboard drawer and a mouse and keyboard located on the upper part of the mobile node vehicle.
5. The mobile remote quality inspection terminal as described in claim 1, characterized in that, The mobile node trolley uses anti-static casters.
6. The mobile remote quality inspection terminal as described in claim 1, characterized in that, The terminal also includes a ventilated rear door located at the rear of the mobile node vehicle.
7. The mobile remote quality inspection terminal as described in claim 1, characterized in that, The terminal also includes a combined blind plate disposed at the left end of the mobile node vehicle.
8. The mobile remote quality inspection terminal as described in claim 1, characterized in that, The terminal also includes a PDU unit.
9. The mobile remote quality inspection terminal as described in claim 1, characterized in that, The terminal also includes a fan assembly.
10. The mobile remote quality inspection terminal as described in claim 1, characterized in that, The terminal also includes a handle located on the right end of the mobile node vehicle.