Point-reading automatic storage interaction device
By using a wear-proof mechanism with sliding head and fixed screw in the museum storage interactive device, the problem of wear of the USB interface is solved, and the durability and reliability of the equipment are improved, ensuring stable data transmission.
Patent Information
- Application Number
- CN202422168529.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-09-05
AI Technical Summary
The USB interface of the existing museum storage interactive device is prone to wear during frequent plug-in and unplugging operations, resulting in poor contact and unstable signal transmission, affecting the life of the equipment and the experience of tourists.
A point-read automatic storage interactive device is designed, and an anti-wear mechanism of the sliding head and the fixed screw is used to achieve contact between the USB storage device and the USB disk contact line through the up and down movement of the sliding head, avoiding lateral friction, and combining rubber buffer gaskets and fixing protrusions to stabilize the USB disk and prevent wear.
It effectively prevents wear of the USB interface contact cable, extends the service life of the device, improves the durability and reliability of the device, and ensures the stability of data transmission.
Smart Images

Figure CN223284597U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of data interaction, in particular to a point-reading automatic storage interactive device. Background Art
[0002] Visitors often develop a fascination with multiple exhibits at modern museums. However, due to limited time available, visitors are unable to memorize detailed information about all of the exhibits they were interested in. This makes it difficult for them to recall their favorite exhibits and related content after leaving the museum. To enhance the visitor experience, modern museums have introduced interactive storage devices. These devices allow visitors to scan and store information about the exhibits they were interested in onto a USB drive during their visit. Visitors can then purchase the USB drive and take it home for easy access.
[0003] However, in practice, museums experience large crowds during peak visitor times. This situation results in the USB (Universal Serial Bus) interface that stores the interactive device requiring frequent insertion and removal of the USB flash drive (full name: USB flash drive). Statistics show that a USB interface can withstand up to 1,000 insertions and removals. After exceeding 1,000 insertions and removals, the contact wires in the USB interface will wear out significantly. Therefore, when this interactive device is used in a museum with a large number of visitors, it is very likely to cause wear and damage to the contact wires in the USB interface. This manifests as poor contact, unstable signal transmission, and even malfunction of the interface. This wear not only shortens the device's service life but also reduces the visitor experience and may even lead to device failure or data loss.
[0004] In order to solve this problem, a point-reading automatic storage interactive device is needed, which can effectively prevent the contact wire in the USB interface from being worn during the frequent plugging and unplugging of the USB flash drive, thereby improving the durability and reliability of the device. Utility Model Content
[0005] The purpose of the utility model is to solve the deficiencies in the prior art and provide a point-reading automatic storage interactive device that can effectively prevent the contact wires in the USB interface from being worn during the frequent plugging and unplugging of the USB flash drive, thereby improving the durability and reliability of the device.
[0006] The utility model is achieved through the following technical solutions:
[0007] A point-reading automatic storage interactive device includes a shell and a control mechanism, wherein the end of the shell is provided with an opening, and the information output end of the control mechanism is arranged outside the shell through the opening, and further includes a U disk plugged into the information output end of the control mechanism and an anti-wear mechanism arranged at the end of the shell; the anti-wear mechanism includes a sliding head and a fixing screw, the sliding head is slidably arranged at the end of the shell, the sliding head is provided with a through hole, the fixing screw is arranged on the sliding head through the through hole, the end of the shell is provided with a blind hole, and the blind hole is provided with an internal thread, and the sliding head can be fixed by the cooperation of the fixing screw and the blind hole; the sliding head is also provided with a through slot, and the U disk can be fixed on the sliding head through the through slot; the shell is used to protect The control mechanism and the anti-wear mechanism include a sliding head and a fixing screw. The through groove can fix the USB flash drive on the sliding head, and the fixing screw can fix the sliding head in a required position. The fixing method adopted by the device avoids the contact friction between the contact line of the USB storage device and the contact line of the USB flash drive during the plugging and unplugging of the USB flash drive in the prior art. The contact line of the USB storage device and the contact line of the USB flash drive are brought into contact through the up and down movement of the sliding head, thereby avoiding the lateral friction between the contact line of the USB storage device and the contact line of the USB flash drive when the USB flash drive is plugged and unplugged in the prior art, changing the contact process between the contact line of the USB storage device and the contact line of the USB flash drive, fundamentally solving the problem of contact line wear, and extending the service life of the interactive device.
[0008] Furthermore, the control mechanism includes a scanning camera, a control motherboard, a USB storage device, and a battery module. The scanning camera is used to scan QR codes or barcode images and output the scanned information to the control motherboard. The control motherboard is used to receive the scanned information and transmit it to the USB storage device. The USB storage device is used to receive the scanned information and transfer it to a USB flash drive. The battery module is used to provide power to the control mechanism. The control mechanism enables visitors to scan the QR code of a museum exhibit and smoothly transfer and store the exhibit information to the USB flash drive.
[0009] Furthermore, a first slide groove is provided at the end of the shell, and a slider matching the first slide groove is provided on the side of the sliding head in contact with the shell, and the sliding head slides on the end of the shell through the cooperation between the first slide groove and the slider; a protrusion is provided on the slider, and a second slide groove is provided on the sliding head for the protrusion to slide, and the first slide groove cooperates with the slider and the second slide groove to enable the sliding head to slide smoothly on the shell, and the cooperation between the protrusion and the second slide groove can prevent the sliding head from falling off the shell.
[0010] Furthermore, a fixing protrusion is provided on the outer shell of the U disk, and a first groove matching the fixing protrusion is provided at a corresponding position on the sliding head. The cooperation between the fixing protrusion and the first groove can more firmly fix the U disk on the sliding head, and can prevent the U disk from being displaced after the contact line of the USB storage device contacts the contact line of the U disk to generate an interaction force. At the same time, it can also prevent the U disk from falling off the sliding head due to the impact force when the device is accidentally dropped by a tourist.
[0011] Furthermore, a rubber buffer gasket is provided in the first groove, and the rubber buffer gasket can prevent the first groove from loosening during high-frequency plugging and unplugging. When the rubber buffer gasket is worn, the staff can replace the rubber buffer gasket.
[0012] Furthermore, the outer wall of the shell is provided with a button for controlling the scanning camera, and the end of the shell is also connected to a protective shell for protecting the anti-wear mechanism through a thread. The protective shell is linked to the end of the shell, which can protect the anti-wear mechanism while being convenient for the user to grasp.
[0013] Furthermore, there are two fixing screws that are centrally symmetrically arranged at the end of the sliding head, and a cross bar is provided at the end of the fixing screw. The two fixing screws are centrally symmetrically arranged, which can better fix the sliding head, and the cross bar can facilitate the staff to screw the fixing screws. Compared with the existing technology, this utility model has the following advantages and beneficial effects:
[0014] 1. This device is equipped with an anti-wear mechanism, which enables the contact wires of the USB storage device and the USB flash drive to come into contact through the up and down movement of the sliding head. This avoids the lateral friction between the contact wires of the USB storage device and the USB flash drive when the USB flash drive is plugged in or unplugged in the prior art, changes the contact process between the contact wires of the USB storage device and the USB flash drive, fundamentally solves the problem of contact wire wear, and extends the service life of the interactive device.
[0015] 2. This device is equipped with a control mechanism that allows visitors to store detailed information about exhibits in a USB flash drive by scanning with one click. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The drawings described herein are used to provide a further understanding of the embodiments of the present invention, constitute a part of this application, and do not constitute a limitation of the embodiments of the present invention, wherein:
[0017] Figure 1 It is a left view of the utility model;
[0018] Figure 2 This is the left side view of the anti-wear mechanism;
[0019] Figure 3 It is the main view of the anti-wear mechanism;
[0020] Figure 4 This is the left view of the USB flash drive.
[0021] Markings and corresponding parts names in the accompanying drawings:
[0022] 1-button, 2-housing, 3-protective housing, 4-sliding head, 5-fixing screw, 6-U disk, 7-through slot, 8-fixing protrusion, 9-contact line of USB storage device. DETAILED DESCRIPTION
[0023] In order to make the purpose, technical solutions and advantages of the utility model clearer, the utility model is further described in detail below in conjunction with embodiments. The schematic implementation methods of the utility model and their descriptions are only used to explain the utility model and are not intended to limit the utility model.
[0024] like Figure 1-4 As shown, a point-reading automatic storage interactive device includes a shell 2 and a control mechanism. The shell 2 has an opening at the end, and the information output end of the control mechanism is arranged on the outside of the shell 2 through the opening. It also includes a U disk 6 plugged into the information output end of the control mechanism and an anti-wear mechanism arranged at the end of the shell 2; the anti-wear mechanism includes a sliding head 4 and a fixed screw 5, the sliding head 4 is slidably arranged at the end of the shell 2, the sliding head 4 is provided with a through hole, the fixed screw 5 is passed through the sliding head 4 through the through hole, the shell 2 end is provided with a blind hole, the blind hole is provided with an internal thread, and the sliding head 4 can be fixed by the cooperation of the fixed screw 5 and the blind hole; the sliding head 4 is also provided with a through slot 7, and the U disk 6 can be fixed on the sliding head 4 through the through slot 7. After the U disk 6 is inserted into the sliding head 4 and the sliding head 4 is fixed, the contact line 9 of the USB storage device contacts the contact line of the U disk 6; the end of the shell 2 is also connected to a protective shell 3 for protecting the anti-wear mechanism through a thread, and there are two fixing screws 5 and they are centrally symmetrically arranged at the end of the sliding head 4, and a cross bar is provided at the end of the fixing screw 5.
[0025] In the above scheme, after the U disk 6 is fixed on the sliding head 4 through the through slot 7 on the sliding head 4, the contact line of the U disk 6 is located directly below the contact line 9 of the USB storage device, and the contact line 9 of the USB storage device is located inside the output end of the U disk 6. At this time, the contact line of the output end of the U disk 6 has no contact with the contact line 9 of the USB storage device. Since the sliding head 4 can slide at the end of the shell 2, when the U disk 6 is fixed on the sliding head 4, the staff starts to slide the sliding head 4 until the contact line of the U disk 6 and the contact line 9 of the USB storage device contact each other. At this time, the end of the fixing screw 5 also corresponds to the blind hole at the end of the shell 2. The staff can fix the sliding head 4 to the end of the shell 2 by rotating the fixing screw 5, thereby ensuring During use of the device, the contact line of the U disk 6 and the contact line 9 of the USB storage device can maintain contact to realize data transmission; similarly, when the U disk 6 needs to be removed from the device, the staff first unscrews the fixing screw 5, at which time the sliding head 4 is disengaged from the shell, and then slides the sliding head 4 until the contact line of the U disk 6 is disengaged from the contact line 9 of the USB storage device, at this time, the U disk 6 can be unplugged; more specifically, there are two fixing screws 5, and they are symmetrically arranged at the ends of the sliding head 4. This arrangement can fix the sliding head 4 more firmly to the end of the shell 2 to prevent the U disk 6 from shifting; the cross bar at the end of the fixing screw 5 can facilitate the staff to screw the fixing screw 5 to increase the speed of replacing the U disk 6.
[0026] More specifically, the control mechanism includes a scanning camera, a control mainboard, a USB storage device and a battery module; the scanning camera is used to scan a QR code or barcode image and output the scanning information to the control mainboard; the control mainboard is used to receive the scanning information and transmit the processed information to the USB storage device; the USB storage device is used to store data and transmit the extracted data to a USB disk 6; the battery module is used to provide power to the control mechanism, and a button 1 for controlling the scanning camera is provided on the outer wall of the shell 2.
[0027] In the above technical solution, the specific structure of the control mechanism in the device is defined. When a visitor sees an exhibit he likes, he can aim the scanning camera at the QR code of the exhibit and then press the button 1 on the shell 2. The scanning camera recognizes the QR code of the exhibit and transmits the data to the control main board. The control main board analyzes and processes the data and transmits the processed information to the USB storage device. The USB storage device is connected to the U disk 6. Therefore, the USB storage device can transmit its internal information to the U disk 6.
[0028] More specifically, a first slide groove is provided at the end of the shell 2, and a slider matching the first slide groove is provided on the side of the sliding head 4 in contact with the shell 2. The sliding head 4 slides at the end of the shell 2 through the cooperation between the first slide groove and the slider. A protrusion is provided on the slider, and a second slide groove is provided on the sliding head 4 for the protrusion to slide. The cooperation between the protrusion and the second slide groove can prevent the sliding head 4 from falling off the shell 2; a fixed protrusion 8 is provided on the outer shell of the U disk 6, and a first groove matching the fixed protrusion 8 is provided at the corresponding position on the sliding head 4, and a rubber buffer gasket is provided in the first groove.
[0029] The above technical solution defines the sliding mode of the sliding head 4 at the end of the housing 2. The cooperation between the first slide groove and the slider can realize the smooth sliding of the sliding head 4 at the end of the housing 2. Preferably, the length of the first slide groove is controlled so that when the sliding head 4 slides to the bottom of the first slide groove, the contact line 9 of the USB storage device is just located inside the output end of the USB flash drive 6, and the contact line of the USB flash drive 6 is located directly below the contact line 9 of the USB storage device; when the sliding head 4 slides to the top of the first slide groove, the contact line of the USB flash drive 6 is just in contact with the contact line 9 of the USB storage device; The fixing protrusion 8 on the U disk 6 shell can better fix the U disk 6 on the sliding head 4. More specifically, the fixing protrusion 8 can be one and in the form of a rectangular parallelepiped, which is arranged on the outer wall of the U disk 6 shell. This arrangement can avoid affecting the normal use of the U disk 6 in other environments. If the device is mostly used by children, in order to more effectively fix the U disk 6, the fixing protrusion 8 can be set to multiple. More specifically, the rubber buffer gasket is replaceable, which can avoid the first groove from loosening during high-frequency use, causing unstable fixation of the U disk 6.
[0030] The specific implementation methods described above further illustrate the purpose, technical solutions and beneficial effects of the utility model in detail. It should be understood that the above description is only a specific implementation method of the utility model and is not intended to limit the scope of protection of the utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the utility model should be included in the scope of protection of the utility model.
Claims
1. A point-reading automatic storage interactive device, comprising a housing (2), characterized in that: It also includes a control mechanism, an opening is provided at the end of the housing (2), an information output end of the control mechanism is arranged outside the housing (2) through the opening, and further includes a U disk (6) plugged into the information output end of the control mechanism and an anti-wear mechanism arranged at the same end of the housing (2) as the opening; The anti-wear mechanism comprises a sliding head (4) and a fixed screw (5), wherein the sliding head (4) is slidably arranged at the end of the housing (2), the sliding head (4) is provided with a through hole, the fixed screw (5) is passed through the sliding head (4) through the through hole, the end of the housing (2) is provided with a blind hole, the blind hole is provided with an internal thread, and the sliding head (4) can be fixed by the cooperation of the fixed screw (5) and the blind hole; The sliding head (4) is also provided with a through slot (7), and the U disk (6) can be fixed on the sliding head (4) through the through slot (7).
2. The point-reading automatic storage interactive device according to claim 1, characterized in that: The control mechanism includes a scanning camera, a control mainboard, a USB storage device and a battery module; The scanning camera is used to scan the QR code or barcode image and output the scanning information to the control mainboard; The control mainboard is used to receive the scan information and transmit the processed information to the USB storage device; The USB storage device is used to store data and transfer the extracted data to the USB flash drive (6); The battery module is used to provide power to the control mechanism.
3. The point-reading automatic storage interactive device according to claim 2, characterized in that: The end of the housing (2) is provided with a first sliding groove, and the side of the sliding head (4) in contact with the housing (2) is provided with a sliding block matching the first sliding groove. The sliding head (4) slides on the end of the housing (2) through the cooperation between the first sliding groove and the sliding block.
4. The point-reading automatic storage interactive device according to claim 3, characterized in that: The slider is provided with a protrusion, and the sliding head (4) is provided with a second sliding groove for the protrusion to slide. The protrusion cooperates with the second sliding groove to prevent the sliding head (4) from falling off the housing (2).
5. The point-reading automatic storage interactive device according to claim 4, characterized in that: A fixing protrusion (8) is provided on the outer shell of the USB disk (6), and a first groove matching the fixing protrusion (8) is provided at a corresponding position on the sliding head (4).
6. The point-reading automatic storage interactive device according to claim 5, characterized in that: A rubber buffer gasket is provided in the first groove.
7. The point-reading automatic storage interactive device according to claim 6, characterized in that: After the USB disk (6) is inserted into the sliding head (4) and the sliding head (4) is fixed, the contact line (9) of the USB storage device contacts the contact line of the USB disk (6).
8. The point-reading automatic storage interactive device according to claim 1, characterized in that: The outer wall of the housing (2) is provided with a button (1) for controlling a scanning camera.
9. The point-reading automatic storage interactive device according to claim 1, characterized in that: The end of the housing (2) is also connected to a protective housing (3) for protecting the anti-wear mechanism via threads.
10. The point-reading automatic storage interactive device according to claim 2, characterized in that: There are two fixed screw rods (5) which are centrally symmetrically arranged at the end of the sliding head (4), and a cross bar is provided at the end of the fixed screw rod (5).