Light supplementing structure of face-scanning payment machine
By adjusting the angle of the facial recognition payment machine by rotating the supplementary lighting device, the problem of not being able to effectively supplement the lighting according to the installation location and height in the existing technology is solved, which improves payment efficiency and supplementary lighting effect, and is easy to maintain.
Patent Information
- Application Number
- CN202423014062.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-07
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-07
AI Technical Summary
The existing facial recognition payment machine's supplementary lighting structure cannot effectively supplement the light according to the installation location of the merchant and the height of the payer, resulting in low payment efficiency.
A rotating supplementary lighting device was designed, including a mounting base plate, a support plate, a connecting block, a rotating positioning component, and a rotating tensioning component. These components are used to adjust the angle of the facial recognition device and the supplementary light to ensure that the supplementary lighting effect meets the needs of different installation positions and heights.
It enables the adjustment of the supplementary lighting angle according to the installation location of the merchant and the height of the payer, improving payment efficiency and supplementary lighting effect, and facilitating maintenance and assembly.
Smart Images

Figure CN223501428U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of facial recognition payment machine technology, and in particular to a supplementary lighting structure for a facial recognition payment machine. Background Technology
[0002] Facial recognition payment machines are now widely used. Although they can enable users to make payments by recognizing their faces, in actual use, there are occasional instances where insufficient lighting can cause facial recognition to fail, resulting in the inability to make a payment.
[0003] Current technology incorporates a supplementary light inside the facial recognition device, with multiple reflectors mounted on the outside of the light. The reflectors are quickly positioned and installed by plugging them into the device. The reflectors are coated with a reflective material to effectively refract the light from the supplementary light, resulting in better illumination. A quick-release mechanism for the lampshade is also provided on the outside of the light, facilitating the assembly of the internal lighting components by staff.
[0004] However, in the above technology, the supplementary light is installed on the face recognition device, but the face recognition device is fixedly installed on the mounting base. Since the face recognition device is installed in different locations depending on the merchant, it cannot provide supplementary lighting based on the height of the payer, which affects payment efficiency and causes payment failure. Utility Model Content
[0005] The purpose of this utility model is to provide a supplementary lighting structure for a facial recognition payment machine, which solves the problem that existing facial recognition machines are fixedly installed on a fixed base, and therefore cannot provide supplementary lighting based on the height of the payer because the installation location of the facial recognition machine varies depending on the merchant.
[0006] To achieve the above objectives, this utility model provides a supplementary lighting structure for a facial recognition payment machine, including a facial recognition device body, a supplementary light, and a reflector. The supplementary light is disposed inside the facial recognition device body, and the reflector is installed on the outside of the supplementary light.
[0007] It also includes a rotating fill light device;
[0008] The rotating supplementary lighting device includes a mounting base plate, two support plates, a connecting block, a rotating positioning component, and two rotating tensioning components. The two support plates are fixedly connected to the mounting base plate and are located at both ends of the mounting base plate. The connecting block is located between the two support plates and is connected through the rotating positioning component. The rotating positioning component is fixedly connected to the connecting block and is mounted on the two support plates. The two rotating tensioning components are respectively mounted on the rotating positioning component and are located on the opposite side of the two support plates.
[0009] The rotating positioning assembly includes a rotating shaft, two sleeves, and two washers. The rotating shaft is fixedly connected to the connecting block and passes through the connecting block. The two sleeves are fixedly connected to the two supporting plates respectively and are located in the through holes of the two supporting plates. The two washers are fixedly connected to the rotating shaft and are respectively sleeved on both ends of the rotating shaft.
[0010] The sleeve has a limiting cavity and a connecting hole. The limiting cavity is located inside the sleeve and mates with the washer. The connecting hole is located on the side of the sleeve near the connecting block and connects with the limiting cavity, and mates with the rotating shaft.
[0011] The rotating tensioning assembly includes a locking bolt and a rotating nut. The locking bolt is threadedly connected to the sleeve and is located on the side of the sleeve away from the connecting block. The rotating nut is fixedly connected to the locking bolt and is located at one end of the locking bolt. The sleeve also has a threaded hole, which is located at the end of the sleeve near the locking bolt and is threadedly engaged with the locking bolt, and communicates with the limiting cavity.
[0012] The rotating tensioning assembly further includes an abutment pad, which is fixedly connected to the locking bolt and located at the end of the locking bolt near the rotating shaft.
[0013] This utility model discloses a supplementary lighting structure for a facial recognition payment machine. When the angle of facial recognition and supplementary lighting needs to be adjusted, the facial recognition machine body is moved to drive the connecting block to rotate between the two support plates. The rotation is coordinated with the rotation positioning component. Once the rotation reaches a suitable angle, the angle support is provided by the rotation positioning component. The angle support force of the rotation positioning component is adjusted by the two rotation tensioning components. Therefore, the angle position of the facial recognition machine body and the supplementary light can be adjusted through the rotation supplementary lighting device, and the payment supplementary lighting can be adjusted according to the different installation positions of the merchants and the height of the payers. Attached Figure Description
[0014] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0015] Figure 1 This is a front view of the supplementary lighting structure of the facial recognition payment machine of this utility model.
[0016] Figure 2 This is a front sectional view of the rotating supplementary lighting device of this utility model.
[0017] Figure 3 This is an exploded view of the rotating supplementary lighting device of this utility model.
[0018] In the diagram: 101-Face recognition device body, 102-Fill light, 103-Reflector, 104-Mounting base plate, 105-Support plate, 106-Connecting block, 107-Rotating shaft, 108-Sleeve, 109-Washer, 110-Limiting cavity, 111-Connecting hole, 112-Threaded hole, 113-Locking bolt, 114-Rotating nut, 115-Abutting pad. Detailed Implementation
[0019] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0020] First embodiment:
[0021] Please see Figures 1 to 3 ,in Figure 1 This is a front view of the supplementary lighting structure of the facial recognition payment machine of this utility model. Figure 2 This is a front sectional view of the rotating supplementary lighting device of this utility model. Figure 3 This is an exploded view of the rotating supplementary lighting device of this utility model.
[0022] This utility model discloses a supplementary lighting structure for a facial recognition payment machine, comprising a facial recognition machine body 101, a supplementary light 102, a reflector 103, and a rotating supplementary lighting device. The rotating supplementary lighting device includes a mounting base plate 104, two support plates 105, a connecting block 106, a rotating positioning assembly, and two rotating tensioning assemblies. The rotating positioning assembly includes a rotating shaft 107, two sleeves 108, and two washers 109. Each sleeve 108 has a limiting cavity 110, a connecting hole 111, and a threaded hole 112. The rotating tensioning assemblies include a locking bolt 113, a rotating nut 114, and an abutment washer 115. This solution solves the problem that existing facial recognition machine bodies 101, when fixedly mounted on a fixed base, cannot provide supplementary lighting based on the user's height due to varying installation locations. The aforementioned solution allows adjustment of the angle and position of the facial recognition machine body 101 and the supplementary light 102, providing supplementary lighting based on the user's installation location and height.
[0023] In this embodiment, the facial recognition device 101 houses a supplementary light 102, and a reflector 103 is mounted on the outer side of the supplementary light 102. A quick-release mechanism for the lamp cover is provided on the outer side of the supplementary light 102, facilitating its separation from the facial recognition device 101. This allows for easier internal maintenance by staff, effectively accelerating maintenance efficiency. Furthermore, the reflector 103 is quickly positioned and installed on the facial recognition device 101 via a snap-fit connector, facilitating the assembly of the internal supplementary lighting components. When light is insufficient, the user can connect the power supply to the supplementary light 102, illuminating it in conjunction with the reflector 103 to ensure the normal operation of the facial recognition payment machine.
[0024] Two support plates 105 are fixedly connected to the mounting base plate 104 and are located at both ends of the mounting base plate 104 respectively. The connecting block 106 is located between the two support plates 105 and is connected through the rotation positioning assembly. The rotation positioning assembly is fixedly connected to the connecting block 106 and is installed on the two support plates 105. Two rotation tensioning assemblies are respectively installed on the rotation positioning assembly and are located on the opposite side of the two support plates 105. The mounting base plate 104 is a cuboid structure, with two support plates 105 symmetrically arranged on its top along a central axis. Each support plate 105 has a circular through hole, the diameter of which matches the diameter of the sleeve 108 of the rotating positioning assembly. The rotating positioning assembly is mounted between the two support plates 105 through the through holes, and a connecting block 106 is fixedly sleeved on the rotating positioning assembly. The end of the connecting block 106 near the mounting base plate 104 is arc-shaped, allowing for angle adjustment by rotating the connecting block 106 via the rotating positioning assembly. Rotational tensioning components are installed at both ends of the rotating positioning assembly. Adjust the rotational fixing tightness of the rotational positioning component and adjust the rotational positioning strength of the connecting block 106; therefore, when it is necessary to adjust the face recognition and supplementary lighting angles, move the face recognition body 101 to drive the connecting block 106 to rotate between the two support plates 105, and rotate it in cooperation with the rotational positioning component. When it is rotated to a suitable angle, the angle support is provided by the rotational positioning component, and the angle support force of the rotational positioning component is adjusted by the two rotational loosening components. Therefore, the angle position of the face recognition body 101 and the supplementary light 102 can be adjusted by the rotational supplementary lighting device, and the payment supplementary lighting is adjusted according to the different installation positions of the merchants and the height of the payers.
[0025] Secondly, the rotating shaft 107 is fixedly connected to the connecting block 106 and passes through the connecting block 106; the two sleeves 108 are respectively fixedly connected to the two support plates 105 and are located in the through holes of the two support plates 105; the two washers 109 are fixedly connected to the rotating shaft 107 and are respectively sleeved on both ends of the rotating shaft 107. The limiting cavity 110 is disposed in the sleeve 108 and cooperates with the washer 109; the connecting hole 111 is disposed on the side of the sleeve 108 near the connecting block 106, and is connected to the limiting cavity 110 and cooperates with the rotating shaft 107. The rotating shaft 107 extends laterally through the lower end of the connecting block 106, and both ends of the rotating shaft 107 extend out of the connecting block 106 by the same length. The diameter of the rotating shaft 107 matches the diameter of the connecting hole 111 of the sleeve 108, so that both ends of the rotating shaft 107 can respectively extend into the limiting cavities 110 of the two sleeves 108. Both ends of the rotating shaft 107 are fitted with annular washers 109, and the outer diameter of the washers 109 matches the diameter of the limiting cavity 110. The washers 109 are made of rubber. The two washers 109 are used to achieve frictional limiting connection between the rotating shaft 107 and the two sleeves 108 at both ends, thereby realizing the rotational positioning of the rotating shaft 107.
[0026] Meanwhile, the locking bolt 113 is threadedly connected to the sleeve 108 and is located on the side of the sleeve 108 away from the connecting block 106; the rotating nut 114 is fixedly connected to the locking bolt 113 and is located at one end of the locking bolt 113; the threaded hole 112 is provided at one end of the sleeve 108 near the locking bolt 113, and is threadedly engaged with the locking bolt 113, and communicates with the limiting cavity 110. The abutment pad 115 is fixedly connected to the locking bolt 113 and is located at one end of the locking bolt 113 near the rotating shaft 107. Each of the two sleeves 108 has a threaded hole 112 on its opposite side. The threaded holes 112 communicate with the limiting cavity 110 of each sleeve 108. The inner side of each threaded hole 112 has a thread that mates with the locking bolt 113. The two locking bolts 113 are threadedly inserted into the two sleeves 108 and locked in place by the threads. Each of the inserted ends of the two locking bolts 113 is fixed with an abutment pad 115. The abutment pad 115 is circular and made of rubber. The material is used to increase the contact friction with the rotating shaft 107, and the abutment pads 115 are all elastic. The intensity of the friction is changed by the squeezing contact with the rotating shaft 107. The ends of the two locking bolts 113 are provided with rotating nuts 114. The rotating nuts 114 are hexagonal nuts, which facilitate manual rotation to adjust the thread rotation of the locking bolts 113. Therefore, the contact friction with the rotating shaft 107 is adjusted by the two rotating loosening components, thereby adjusting the rotation fixing force of the rotating shaft 107.
[0027] When using the supplementary lighting structure of the facial recognition payment machine of this utility model, when it is necessary to adjust the angle of facial recognition and supplementary lighting, the facial recognition machine body 101 is moved to drive the connecting block 106 to rotate between the two support plates 105. The rotation is coordinated with the rotation positioning component to rotate. When the rotation reaches a suitable angle, the angle support is provided by the rotation positioning component, and the angle support force of the rotation positioning component is adjusted by the two rotation tensioning components. Therefore, the angle position of the facial recognition machine body 101 and the supplementary light 102 can be adjusted by the rotation supplementary lighting device, and the payment supplementary lighting is adjusted according to the different installation positions of the merchants and the height of the payers.
[0028] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A supplementary lighting structure for a facial recognition payment machine, comprising a facial recognition device body, a supplementary light, and a reflector, wherein the supplementary light is disposed inside the facial recognition device body, and the reflector is mounted on the outside of the supplementary light, characterized in that, It also includes a rotating fill light device; The rotating supplementary lighting device includes a mounting base plate, two support plates, a connecting block, a rotating positioning component, and two rotating tensioning components. The two support plates are fixedly connected to the mounting base plate and are located at both ends of the mounting base plate. The connecting block is located between the two support plates and is connected through the rotating positioning component. The rotating positioning component is fixedly connected to the connecting block and is mounted on the two support plates. The two rotating tensioning components are respectively mounted on the rotating positioning component and are located on the opposite side of the two support plates.
2. The supplementary lighting structure of the facial recognition payment machine as described in claim 1, characterized in that, The rotation positioning assembly includes a rotating shaft, two sleeves, and two washers. The rotating shaft is fixedly connected to the connecting block and passes through the connecting block. The two sleeves are fixedly connected to the two supporting plates respectively and are located in the through holes of the two supporting plates. The two washers are fixedly connected to the rotating shaft and are respectively sleeved on both ends of the rotating shaft.
3. The supplementary lighting structure of the facial recognition payment machine as described in claim 2, characterized in that, The sleeve has a limiting cavity and a connecting hole. The limiting cavity is located inside the sleeve and mates with the washer. The connecting hole is located on the side of the sleeve near the connecting block and connects with the limiting cavity, and mates with the rotating shaft.
4. The supplementary lighting structure of the facial recognition payment machine as described in claim 3, characterized in that, The rotating tensioning assembly includes a locking bolt and a rotating nut. The locking bolt is threadedly connected to the sleeve and is located on the side of the sleeve away from the connecting block. The rotating nut is fixedly connected to the locking bolt and is located at one end of the locking bolt. The sleeve also has a threaded hole, which is located at the end of the sleeve near the locking bolt and is threadedly engaged with the locking bolt, and communicates with the limiting cavity.
5. The supplementary lighting structure of the facial recognition payment machine as described in claim 4, characterized in that, The rotating tensioning assembly also includes an abutment pad, which is fixedly connected to the locking bolt and located at the end of the locking bolt near the rotating shaft.