Foot measurement scanning device

CN224627676UActive Publication Date: 2026-08-14YOUYOU TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-21
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0002]传统的足部扫描装置主要依赖于少数几个扫描仪以固定的方式对着足背扫描,难以覆盖足部的所有部位,尤其是足底部分,容易导致扫描范围有限,只能覆盖足部的某些特定部位,生成的三维模型精度较低,无法准确反映足部的形状和特征,影响应用效果

Benefits of technology

[0016]本实用新型所涉及的足部测量扫描装置,通过多角度、多方向的扫描,能够生成高精度的足部三维模型,确保数据的全面性和准确性。

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Abstract

This utility model discloses a foot measurement scanning device, including a bottom support platform, a transparent support platform mounted on the bottom support platform, a plantar scanning component mounted on the bottom support platform, and a dorsum scanning component mounted on the transparent support platform. The dorsum scanning component includes a first dorsum scanning element mounted on one side of the transparent support platform and a second dorsum scanning element mounted on the other side of the transparent support platform. The plantar scanning component includes a first plantar scanning element, a second plantar scanning element, and a third plantar scanning element arranged in a circumferential array on the outer edge of the bottom support platform. This foot measurement scanning device can generate a high-precision three-dimensional model of the foot through multi-angle and multi-directional scanning, ensuring the comprehensiveness and accuracy of the data.
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Description

Technical Field

[0001] This utility model relates to the field of scanning device technology, and in particular to a foot measurement scanning device. Background Technology

[0002] Traditional foot scanning devices mainly rely on a few scanners to scan the instep in a fixed manner, which makes it difficult to cover all parts of the foot, especially the sole. This can result in a limited scanning range, covering only certain specific parts of the foot. The generated 3D model has low accuracy and cannot accurately reflect the shape and characteristics of the foot, thus affecting the application effect. Utility Model Content

[0003] Therefore, the purpose of this utility model is to provide a high-precision foot measurement and scanning device.

[0004] The present invention adopts the following technical solution:

[0005] A foot measurement scanning device includes a bottom support platform, a transparent support platform mounted on the bottom support platform, a plantar scanning assembly mounted on the bottom support platform, and a dorsum scanning assembly mounted on the transparent support platform. The dorsum scanning assembly includes a first dorsum scanning element mounted on one side of the transparent support platform and a second dorsum scanning element mounted on the other side of the transparent support platform. The plantar scanning assembly includes a first plantar scanning element, a second plantar scanning element, and a third plantar scanning element arranged in a circumferential array on the outer edge of the bottom support platform. The scanning directions of the first dorsum scanning element, the second dorsum scanning element, the first plantar scanning element, the second plantar scanning element, and the third plantar scanning element are arranged towards the center of the transparent support platform.

[0006] Furthermore, the first dorsal foot scanner includes a first dorsal foot bracket mounted on the outer edge of the transparent support platform and a first dorsal foot scanner mounted on the first dorsal foot bracket.

[0007] Furthermore, the first instep scanning component also includes a first angle adjustment part installed between the first instep support and the first instep scanner; the first angle adjustment part includes a first adjustment base installed on the first instep support, a first adjustment slide rail disposed on the first adjustment base, a first slider slidably disposed on the first adjustment slide rail, and a first locking block installed on the first slider for fixing the first slider to the first adjustment slide rail; the first instep scanner is installed on the first slider.

[0008] Furthermore, the first dorsum of the foot scanner also includes a first charging port, a first flash lens, and a first scanning lens disposed on the first dorsum of the foot scanner; the first scanning lens is disposed on one side of the first flash lens.

[0009] Furthermore, the second dorsalis scanning component includes a second dorsalis bracket mounted on the outer edge of the transparent support platform and a second dorsalis scanner mounted on the second dorsalis bracket.

[0010] Further, the first instep scanning component includes a first instep bracket mounted on the outer edge of the transparent support platform and a first instep scanner mounted on the first instep bracket; the second instep scanning component includes a second instep bracket mounted on the outer edge of the transparent support platform and a second instep scanner mounted on the second instep bracket; the first instep bracket includes a first connecting plate mounted on the transparent support platform and a first support plate mounted on the first connecting plate; the first instep scanner is mounted on the first support plate; the second instep bracket includes a second connecting plate mounted on the transparent support platform and a second support plate mounted on the second connecting plate; the second instep scanner is mounted on the second support plate; the length of the first connecting plate is greater than the length of the second connecting plate.

[0011] Furthermore, the first foot scanning component includes a foot support plate rotatably mounted on the bottom support platform, a rotating groove disposed on the foot support plate, an adjusting bolt installed between the rotating groove and the bottom support platform, a second angle adjusting part installed on the foot support plate, and a foot scanner mounted on the second angle adjusting part.

[0012] Furthermore, the second angle adjustment unit includes a second adjustment base mounted on the foot support plate, a second adjustment slide rail disposed on the second adjustment base, a second slider slidably disposed on the second adjustment slide rail, and a second locking block mounted on the second slider for fixing the second slider to the second adjustment slide rail; the foot scanner is mounted on the second slider.

[0013] Furthermore, the first foot scanner also includes a second charging port, a second flash lens, and a second scanning lens disposed on the foot scanner; the second scanning lens is disposed on the foot scanner on one side of the second flash lens.

[0014] Furthermore, there are two first dorsal foot scanners, which are arranged adjacent to each other on the outer edge of the transparent support platform; there are also two second dorsal foot scanners, which are arranged adjacent to each other on the outer edge of the transparent support platform; the first and second dorsal foot scanners are arranged in a circumferential array on the outer edge of the transparent support platform.

[0015] The beneficial effects of this utility model are as follows:

[0016] The foot measurement and scanning device involved in this utility model can generate a high-precision three-dimensional model of the foot through multi-angle and multi-directional scanning, ensuring the comprehensiveness and accuracy of the data. Attached Figure Description

[0017] Figure 1 This is a perspective view of a foot measurement and scanning device according to an embodiment of the present invention;

[0018] Figure 2 for Figure 1 Exploded view of the first dorsum of the foot scanner of the foot measuring scanning device;

[0019] Figure 3 for Figure 1 Exploded view of the first foot scan of the foot measuring scanning device;

[0020] Figure 4 for Figure 1 A three-dimensional schematic diagram of the second dorsalis pedis scanner of the foot measurement scanning device.

[0021] Reference numerals: 10, bottom support platform; 20, transparent support platform; 30, foot scanning assembly; 40, dorsum of the foot scanning component; 41, first dorsum of the foot scanner; 42, second dorsum of the foot scanner; 31, first foot scanning component; 32, second foot scanning component; 33, third foot scanning component; 410, first dorsum of the foot support; 411, first dorsum of the foot scanner; 412, first adjusting base; 413, first adjusting slide rail; 414, first slider; 415, first locking block; 416, first charging port; 417, first flash lens; 418, first... 420. Scanning lens; 421. Second dorsalis foot support; 4100. Second dorsalis foot scanner; 4101. First connecting plate; 4200. Second connecting plate; 4201. Second support plate; 310. Foot support plate; 311. Rotating slide; 313. Second angle adjustment part; 314. Foot scanner; 3130. Second adjustment base; 3131. Second adjustment slide rail; 3132. Second slider; 3133. Second locking block; 315. Second charging port; 316. Second flash lens; 317. Second scanning lens. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] In the description of this utility model, it should be noted that the terms "vertical direction," "up," "down," and "horizontal," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0024] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or a connection through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0025] Please see Figures 1 to 4This invention relates to a foot measurement and scanning device, comprising a bottom support platform 10, a transparent support platform 20 mounted on the bottom support platform 10, a foot scanning assembly 30 mounted on the bottom support platform 10, and a foot dorsum scanning assembly 40 mounted on the transparent support platform 20. The foot dorsum scanning assembly 40 includes a first foot dorsum scanning element 41 mounted on one side of the transparent support platform 20 and a second foot dorsum scanning element 42 mounted on the other side of the transparent support platform 20. The foot scanning assembly 30 includes a first foot dorsum scanning element 31, a second foot dorsum scanning element 32, and a third foot dorsum scanning element 33 arranged in a circumferential array on the outer edge of the bottom support platform 10. The scanning directions of the first foot dorsum scanning element 41, the second foot dorsum scanning element 42, the first foot dorsum scanning element 31, the second foot dorsum scanning element 32, and the third foot dorsum scanning element 33 are arranged towards the center of the transparent support platform 20. Specifically, there are two first dorsal foot scanners 41, which are arranged adjacently on the outer edge of the transparent support platform 20; there are two second dorsal foot scanners 42, which are arranged adjacently on the outer edge of the transparent support platform 20; the first dorsal foot scanners 41 and the second dorsal foot scanners 42 are arranged in a circumferential array on the outer edge of the transparent support platform 20.

[0026] The working principle of the foot measurement and scanning device of this utility model is as follows: The user places their foot on the transparent support platform 20; the transparent support platform 20 ensures that all parts of the foot (including the sole and the instep) can be clearly scanned; the first sole scanning element 31, the second sole scanning element 32, and the third sole scanning element 33 are activated simultaneously, scanning the sole from the outer edge of the bottom support platform 10 toward the center of the transparent support platform 20; the circumferential array installation of the three sole scanning elements ensures that all parts of the sole are covered, providing comprehensive sole scanning data; two first instep scanning elements 41 scan the instep from one side of the transparent support platform 20 toward the center; two second instep scanning elements 42 scan the instep from the other side of the transparent support platform 20 toward the center; the circumferential array installation of the first instep scanning elements 41 and the second instep scanning elements 42 ensures that all parts of the instep are covered, providing comprehensive instep scanning data; the scanning data is integrated by the data processing system inside the device to generate a complete three-dimensional model of the foot.

[0027] Compared to existing technologies, this foot measurement and scanning device generates a high-precision 3D foot model through multi-angle and multi-directional scanning, ensuring the comprehensiveness and accuracy of the data. It ensures that all parts of the sole are covered, providing comprehensive scanning data of the sole and instep. The transparent support platform 20 ensures that all parts of the foot (including the sole and instep) can be clearly scanned without obstruction, improving scanning clarity and accuracy. Users simply place their foot on the transparent support platform 20 to complete the scan; the operation is simple and convenient, requiring no professional knowledge or complex procedures. The design of the transparent support platform 20 allows users to intuitively see the scanning process, increasing user trust and comfort. The generated 3D foot model can be used to customize insoles, shoes, and other personalized products, ensuring a perfect match between the product and the user's foot, improving wearing comfort and support. For users with special foot needs, such as diabetic patients or athletes, it can provide more precise and personalized support.

[0028] Please refer to Figure 1 and Figure 2 The first dorsum of the foot scanner 41 includes a first dorsum of the foot bracket 410 mounted on the outer edge of the transparent support platform 20 and a first dorsum of the foot scanner 411 mounted on the first dorsum of the foot bracket 410. The first dorsum of the foot bracket 410 is mounted on the outer edge of the transparent support platform 20 and its position and angle can be flexibly adjusted. This allows the first dorsum of the foot scanner 411 to scan from multiple angles and positions, covering all parts of the dorsum of the foot and avoiding scanning blind spots. Compared with traditional fixed-position scanners, this design can more comprehensively capture the complex structure of the foot, ensuring that the generated 3D model is more accurate and complete. The adjustable bracket design allows the operator to adjust the angle and height of the scanner according to specific scanning needs. This flexibility ensures that the scanner can scan in the optimal position, capturing every detail of the foot; by precisely adjusting the scanning angle, data distortion caused by improper angle can be avoided, improving the accuracy of the scanned data.

[0029] The first instep scanner 41 further includes a first angle adjustment part installed between the first instep support 410 and the first instep scanner 411. The first angle adjustment part includes a first adjustment base 412 installed on the first instep support 410, a first adjustment slide rail 413 disposed on the first adjustment base 412, a first slider 414 slidably disposed on the first adjustment slide rail 413, and a first locking block 415 installed on the first slider 414 for fixing the first slider 414 to the first adjustment slide rail 413. The first instep scanner 411 is installed on the first slider 414. The first angle adjustment part includes a first adjustment base 412 installed on the first instep support 410, a first adjustment slide rail 413 disposed on the first adjustment base 412, a first slider 414 slidably disposed on the first adjustment slide rail 413, and a first locking block 415 installed on the first slider 414. This design allows the first instep scanner 411 to be flexibly adjusted at multiple angles and positions. By adjusting the position of the first slider 414, the first instep scanner 411 can be precisely aligned with different parts of the instep, ensuring the comprehensiveness and accuracy of the scan data. Different users may have different foot shapes and sizes. The flexible design of the first angle adjustment part allows the scanner to adapt to the curves and contours of different feet, ensuring the accuracy of the scan data. For example, for users with high arches or wide insteps, the position and angle of the first slider 414 can be adjusted to ensure that the scanner can cover these special areas. Through the sliding of the first slider 414 and the fixing of the first locking block 415, the operator can finely adjust the position and angle of the first instep scanner 411 to ensure that the scanner can scan in the optimal position.

[0030] The first dorsalis pedis scanner 41 also includes a first charging port 416, a first flash lens 417, and a first scanning lens 418 disposed on the first dorsalis pedis scanner 411; the first scanning lens 418 is disposed on one side of the first flash lens 417. The first charging port 416 is located on the first foot dorsum scanner 411, allowing users to conveniently charge the scanner and ensure that the device is always operational when needed. The charging port allows for charging with a universal charger or power bank, improving the device's portability and flexibility. With the first charging port 416, users can replenish the device's power in a timely manner, avoiding scanning interruptions due to battery depletion and ensuring long-term use. The first flash lens 417 is located on the first foot dorsum scanner 411, providing a stable light source during scanning to ensure the clarity and accuracy of the foot dorsum image. The flash lens provides uniform illumination under different lighting conditions, reducing shadows and reflections and ensuring the quality of the scanned data. Whether indoors or outdoors, the first flash lens 417 provides consistent illumination under different lighting conditions, ensuring the scanner can operate normally in various environments. This adaptability makes the first foot dorsum scanner 411 suitable not only for professional environments but also for retail stores, homes, and other scenarios.

[0031] Please refer to Figure 2 and Figure 4 The second dorsum of the foot scanner 42 includes a second dorsum of the foot bracket 420 mounted on the outer edge of the transparent support platform 20, and a second dorsum of the foot scanner 421 mounted on the second dorsum of the foot bracket 420. The second dorsum of the foot bracket 420 is mounted on the outer edge of the transparent support platform 20 and its position and angle can be flexibly adjusted. This allows the second dorsum of the foot scanner 421 to scan from multiple angles and positions, covering all parts of the dorsum of the foot and avoiding scanning blind spots. Compared with traditional fixed-position scanners, this design can more comprehensively capture the complex structure of the foot, ensuring that the generated 3D model is more accurate and complete. The adjustable bracket design allows the operator to adjust the angle and height of the scanner according to specific scanning needs. This flexibility ensures that the scanner can scan in the optimal position, capturing every detail of the foot. By precisely adjusting the scanning angle, data distortion caused by improper angle can be avoided, improving the accuracy of the scanned data.

[0032] The first instep scanner 41 includes a first instep support 410 mounted on the outer edge of the transparent support platform 20 and a first instep scanner 411 mounted on the first instep support 410; the second instep scanner 42 includes a second instep support 420 mounted on the outer edge of the transparent support platform 20 and a second instep scanner 421 mounted on the second instep support 420; the first instep support 410 includes a first connecting plate 4100 mounted on the transparent support platform 20 and a first support plate 4101 mounted on the first connecting plate 4100; the first instep scanner 411 is mounted on the first support plate 4101; the second instep support 420 includes a second connecting plate 4200 mounted on the transparent support platform 20 and a second support plate 4201 mounted on the second connecting plate 4201; the second instep scanner 421 is mounted on the second support plate 4201; the length of the first connecting plate 4100 is greater than the length of the second connecting plate 4200. The first dorsum support 410 and the second dorsum support 420 are respectively mounted on the outer edge of the transparent support platform 20, allowing the first dorsum scanner 411 and the second dorsum scanner 421 to scan from multiple angles and positions, ensuring that all parts of the dorsum are fully covered. The combined design of the two scanners results in a wider scanning range, avoiding scanning blind spots that may exist with a single scanner, ensuring that the generated 3D model is more complete and accurate. The design of the first dorsum support 410 and the second dorsum support 420 allows the operator to adjust the angle and height of the scanner according to specific needs. This flexibility ensures that the scanner can scan in the optimal position, capturing every detail of the foot; by precisely adjusting the scanning angle, data distortion caused by improper angle can be reduced, improving the accuracy of the scanned data; the combined use of the first dorsum scanner 411 and the second dorsum scanner 421 can further improve the accuracy of the data through complementary scanning. The two scanners can capture the details of the dorsum from different angles, ensuring the comprehensiveness and accuracy of the data.

[0033] Please refer to Figure 1 and Figure 3The first foot scanning component 31 includes a foot support plate 310 rotatably mounted on the bottom support platform 10, a rotating slide 311 disposed on the foot support plate 310, an adjusting bolt (not shown in the figure) installed between the rotating slide and the bottom support platform 10, a second angle adjustment part 313 mounted on the foot support plate 310, and a foot scanner 314 mounted on the second angle adjustment part 313. The foot support plate 310 is rotatably mounted on the bottom support platform 10, allowing for flexible adjustment of its angle to ensure that the foot scanner 314 can scan from multiple angles. The design of the rotating slide 311 and adjusting bolt allows the foot support plate 310 to slide within a certain range, further increasing the range of scanning angle adjustment and ensuring that all parts of the sole are fully covered. The second angle adjustment part 313 allows the foot scanner 314 to be adjusted at multiple angles to adapt to the shape and size of different users' feet. For example, for users with high or low arches, the accuracy of the scanned data can be ensured by adjusting the angle of the foot support plate 310 and the scanner. The combined design of the foot support plate 310 and the second angle adjustment part 313 allows the operator to precisely adjust the position and angle of the scanner, ensuring that the scanner can scan in the optimal position. This precise focusing capability reduces data distortion caused by improper angles and improves the accuracy of the scanned data.

[0034] The second angle adjustment unit 313 includes a second adjustment base 3130 mounted on the foot support plate 310, a second adjustment slide rail 3131 disposed on the second adjustment base 3130, a second slider 3132 slidably disposed on the second adjustment slide rail 3131, and a second locking block 3133 mounted on the second slider 3132 for fixing the second slider 3132 to the second adjustment slide rail 3131; the foot scanner 314 is mounted on the second slider 3132. Specifically, the structures of the first foot scanner 31, the second foot scanner 32, and the third foot scanner 33 are all the same. The design of the second adjustment base 3130 and the second adjustment slide rail 3131 allows the second slider 3132 to slide on the slide rail, thereby adjusting the position and angle of the foot scanner 314. This increases the scanner's flexibility, ensuring it can adapt to different users' foot shapes and sizes. Through a sliding and locking mechanism, operators can precisely adjust the scanner's position to ensure the optimal scanning angle. The combined design of the second slider 3132 and the second locking block 3133 allows the foot scanner 314 to be adjusted at multiple angles to adapt to different users' foot shapes, such as high arches and flat feet. For example, operators can adjust the scanner's angle according to specific needs to ensure the accuracy of the scanned data. The second slider 3132 can slide on the second adjusting slide rail 3131, allowing operators to precisely adjust the position of the foot scanner 314 to ensure it scans in the optimal position. The design of the second locking block 3133 ensures that once the optimal position is found, it can be immediately fixed, preventing data distortion caused by positional changes.

[0035] The first foot scanner 31 also includes a second charging port 315 disposed on the foot scanner 314, a second flash lens 316 disposed on the foot scanner 314, and a second scanning lens 317 disposed on the foot scanner 314; the second scanning lens 317 is disposed on the foot scanner 314 on one side of the second flash lens 316. The second charging port 315 is located on the foot scanner 314, allowing users to conveniently charge the scanner and ensure that the device is always operational when needed. The charging port allows for charging with a universal charger or power bank, improving portability and flexibility. With the second charging port 315, users can replenish the device's power in a timely manner, preventing scanning interruptions due to battery depletion and ensuring long-term use. This is especially important for long-duration scanning tasks or continuous use scenarios, ensuring the device is always in optimal working condition. The second flash lens 316, located on the foot scanner 314, provides a stable light source during scanning, ensuring the clarity and accuracy of the foot image. The flash lens provides uniform illumination under different lighting conditions, reducing shadows and reflections and ensuring the quality of the scanned data. Whether indoors or outdoors, under different lighting conditions, the second flash lens 316 provides consistent illumination, ensuring the scanner can operate normally in various environments. This adaptability makes the first foot scanner 31 suitable not only for professional environments but also for retail stores, homes, and other scenarios.

[0036] There are two first dorsal foot scanners 41, which are arranged adjacently on the outer edge of the transparent support platform 20; there are two second dorsal foot scanners 42, which are arranged adjacently on the outer edge of the transparent support platform 20; the first dorsal foot scanners 41 and the second dorsal foot scanners 42 are arranged in a circumferential array on the outer edge of the transparent support platform 20. Two of each of the first and second dorsum-of-the-foot scanners 41 and 42 are arranged in a circumferential array on the outer edge of the transparent support platform 20, allowing scanning from multiple angles and positions. This ensures that every part of the dorsum of the foot is fully covered, avoiding blind spots that may exist with a single scanner, resulting in a more complete and accurate 3D model. By combining multiple scanners, stereo scanning can be achieved, capturing the 3D structure of the dorsum of the foot and ensuring that data from each angle is accurately recorded. This stereo scanning capability is particularly suitable for complex foot structures, such as the arch and heel. Each scanner can independently adjust its angle and position to ensure scanning at the optimal position and capturing every detail of the dorsum of the foot. Through multi-focusing of multiple scanners, data distortion caused by improper angles can be reduced, improving the accuracy of the scanned data. Data from multiple scanners can be corrected and fused using algorithms to generate a more accurate 3D model. Multiple corrections and fusions of data can further improve the accuracy and reliability of the scanning results.

[0037] The above description merely illustrates the preferred technical solution of this utility model, and while the description is relatively specific and detailed, it should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and this utility model also intends to include these modifications and variations.

Claims

1. A foot measuring scanning device, characterized by, The device includes a bottom support platform, a transparent support platform mounted on the bottom support platform, a foot scanning assembly mounted on the bottom support platform, and a foot dorsum scanning assembly mounted on the transparent support platform. The foot dorsum scanning assembly includes a first foot dorsum scanning element mounted on one side of the transparent support platform and a second foot dorsum scanning element mounted on the other side of the transparent support platform. The foot scanning assembly includes a first foot scanning element, a second foot scanning element, and a third foot scanning element arranged in a circumferential array on the outer edge of the bottom support platform. The scanning directions of the first foot dorsum scanning element, the second foot dorsum scanning element, the first foot scanning element, the second foot scanning element, and the third foot scanning element are arranged towards the center of the transparent support platform.

2. The foot scanning apparatus of claim 1, wherein, The first dorsal foot scanner includes a first dorsal foot bracket mounted on the outer edge of the transparent support platform and a first dorsal foot scanner mounted on the first dorsal foot bracket.

3. The foot scanning apparatus of claim 2, wherein, The first instep scanning component further includes a first angle adjustment part installed between the first instep support and the first instep scanner; the first angle adjustment part includes a first adjustment base installed on the first instep support, a first adjustment slide rail disposed on the first adjustment base, a first slider slidably disposed on the first adjustment slide rail, and a first locking block installed on the first slider for fixing the first slider to the first adjustment slide rail; the first instep scanner is installed on the first slider.

4. The foot scanning apparatus of claim 2, wherein, The first dorsalis pedis scanner further includes a first charging port, a first flash lens, and a first scanning lens disposed on the first dorsalis pedis scanner; the first scanning lens is disposed on one side of the first flash lens.

5. The foot scanning apparatus of claim 1, wherein, The second dorsalis scanning component includes a second dorsalis bracket mounted on the outer edge of the transparent support platform and a second dorsalis scanner mounted on the second dorsalis bracket.

6. The foot scanning apparatus of claim 1, wherein, The first instep scanning component includes a first instep bracket mounted on the outer edge of the transparent support platform and a first instep scanner mounted on the first instep bracket; the second instep scanning component includes a second instep bracket mounted on the outer edge of the transparent support platform and a second instep scanner mounted on the second instep bracket; the first instep bracket includes a first connecting plate mounted on the transparent support platform and a first support plate mounted on the first connecting plate; the first instep scanner is mounted on the first support plate; the second instep bracket includes a second connecting plate mounted on the transparent support platform and a second support plate mounted on the second connecting plate; the second instep scanner is mounted on the second support plate; the length of the first connecting plate is greater than the length of the second connecting plate.

7. The foot scanning apparatus of claim 1, wherein, The first foot scanning component includes a foot support plate rotatably mounted on the bottom support platform, a rotating groove disposed on the foot support plate, an adjusting bolt installed between the rotating groove and the bottom support platform, a second angle adjusting part mounted on the foot support plate, and a foot scanner mounted on the second angle adjusting part.

8. The foot scanning apparatus of claim 7, wherein, The second angle adjustment unit includes a second adjustment base mounted on the foot support plate, a second adjustment slide rail disposed on the second adjustment base, a second slider slidably disposed on the second adjustment slide rail, and a second locking block mounted on the second slider for fixing the second slider to the second adjustment slide rail; the foot scanner is mounted on the second slider.

9. The foot scanning apparatus of claim 7, wherein, The first foot scanner further includes a second charging port, a second flash lens, and a second scanning lens disposed on the foot scanner; the second scanning lens is disposed on the foot scanner on one side of the second flash lens.

10. The foot scanning apparatus of claim 9, wherein, There are two first dorsal foot scanners, which are arranged adjacently on the outer edge of the transparent support platform; there are also two second dorsal foot scanners, which are arranged adjacently on the outer edge of the transparent support platform; the first and second dorsal foot scanners are arranged in a circumferential array on the outer edge of the transparent support platform.