Newborn sole print scanning equipment
By designing a newborn footprint scanning device, the rapid collection of newborn footprints and association with parental information were achieved, solving the problem of difficult newborn identification and improving the efficiency and security of information entry.
Patent Information
- Application Number
- CN202422793574.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-14
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-11-14
AI Technical Summary
Existing technologies make it difficult to identify newborns, leading to frequent mix-ups, and wristbands are prone to detachment, resulting in identification errors. Furthermore, information collection efficiency is low.
Design a newborn footprint scanning device, comprising a housing, a high-transparency glass plate, a scanning motion mechanism, and a mother's fingerprint collector. The scanning motion mechanism enables rapid acquisition of newborn footprints and links them with parental information.
It improves the efficiency of newborn information entry, ensures the accuracy of identity recognition, reduces the risk of mix-ups, and enhances the security of newborn information.
Smart Images

Figure CN223529437U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of newborn information collection technology, specifically relating to a newborn footprint scanning device. Background Technology
[0002] Newborns are a special group in hospitals. Because their physical characteristics are similar and they lack the ability to express themselves or communicate, they can only be passively identified by nursing staff. This can easily lead to errors in newborn identification and mix-ups, resulting in mistakes in treatment and care. Therefore, we need more effective methods for newborn identification to ensure the safety of newborns.
[0003] Whether under normal physiological or pathological conditions, newborns will inevitably leave their parents' beds during hospitalization. In cases where this cannot be avoided, accurately identifying newborns is crucial to prevent mix-ups. Current newborn identification methods involve attaching wristbands and ankle straps with relevant information to the newborn's hands and feet. While these wristbands and ankle straps are very intuitive, they are prone to detachment. If two newborns' wristbands or ankle straps detach simultaneously, there is a risk of mix-ups. Therefore, intuitive and effective newborn information collection is essential.
[0004] Therefore, in order to solve the various inconveniences and low efficiency of biometric information collection in existing technologies, which are based on the fact that newborns' hand fingerprints have not yet been generated, a device is needed that can quickly collect newborns' palm prints and save them digitally. Utility Model Content
[0005] The purpose of this invention is to provide a newborn footprint scanning device. By setting up a device with footprint scanning function, the device can quickly and conveniently collect newborn footprint information, greatly improving the efficiency of newborn information entry. It can also realize the association between newborn information and parent information, effectively ensuring the safety of newborns.
[0006] The purpose of this utility model is achieved as follows: a newborn footprint scanning device, comprising:
[0007] case;
[0008] A high-transparency glass plate, wherein the high-transparency glass plate is fixedly disposed on the side plane of the housing;
[0009] The display screen is mounted on the housing and is located on the same plane as the high-transparency glass panel.
[0010] The scanning motion mechanism includes a guide rail assembly disposed along the length of the housing and a scanning probe module disposed at the moving end of the guide rail assembly. The scanning probe module reciprocates on the side close to the high-transparency glass plate.
[0011] Furthermore, a fingerprint collector for postpartum women is provided on the housing, and an integrated circuit is provided inside the housing. The fingerprint collector for postpartum women and the scanning motion mechanism are both electrically connected to the integrated circuit.
[0012] Furthermore, the guide rail assembly includes a first guide rail and a second guide rail respectively disposed on both sides of the housing, the first guide rail and the second guide rail being arranged in parallel, and a mounting base plate being slidably disposed on the first guide rail and the second guide rail; and
[0013] A drive assembly is fixedly mounted on the mounting base plate and is used to control the reciprocating motion of the mounting base plate on the first guide rail and the second guide rail.
[0014] Furthermore, the drive assembly includes a moving rack fixedly mounted on the housing and a drive motor fixedly mounted on the mounting base plate. The rotating end of the drive motor is provided with a gear, which meshes with the moving rack. The moving rack is arranged parallel to the first guide rail.
[0015] Furthermore, the acquisition and scanning probe module is fixedly arranged in the length direction of the mounting base plate. The acquisition and scanning probe module includes a mounting groove arranged in the length direction of the mounting base plate and a plurality of scanning probes arranged in the mounting groove. The plurality of scanning probes are evenly distributed in the length direction of the mounting groove.
[0016] Furthermore, the housing is equipped with multiple supplementary lights, which are evenly distributed along the width of the housing.
[0017] Furthermore, an operation confirmation button is provided on the exterior of any side of the housing.
[0018] Furthermore, the display screen is a touch-screen display.
[0019] Furthermore, a data communication and charging port is provided on either side of the housing, and a power switch is provided on either side of the housing.
[0020] Furthermore, the power source in the housing is a high-capacity battery, which is located at the bottom of the housing.
[0021] The beneficial effects of this utility model are reflected in:
[0022] 1. In this utility model, by providing a high-transparency glass plate on the side plane of the housing, it is beneficial for the scanning motion mechanism inside the housing to effectively scan and record the newborn's palm print through the high-transparency glass plate. More specifically, since the scanning motion mechanism consists of a guide rail assembly and a scanning probe module arranged in the length direction inside the housing, after the scanning probe module is installed and set by the guide rail assembly, the scanning probe module can perform uniform reciprocating motion at a position close to the high-transparency glass plate inside the housing, thereby achieving stable palm print acquisition.
[0023] 2. In this utility model, by setting a maternal fingerprint collector on the housing, the maternal fingerprint collector can be used to collect the fingerprints of the newborn's parents, thereby enabling effective association of the newborn's and parents' information within the scanning device, greatly enhancing the effectiveness of newborn information entry.
[0024] 3. In this utility model, since the guide rail assembly is configured as a first guide rail and a second guide rail respectively provided on both sides of the housing, and the sliding ends of the two guide rails are provided with mounting bases, the mounting bases can be guided to slide in the length direction of the housing. More specifically, the guide rail assembly is also provided with a driving assembly, which is fixedly mounted on the mounting base plate to drive the sliding of the guide rail assembly and realize the sliding control of the mounting base relative to the housing.
[0025] 4. In this utility model, by setting a motion rack and a drive motor in the drive assembly, fixing the drive motor to the mounting base plate, and fixing the motion rack to the housing, the mounting base plate can be relatively moved on the housing by the meshing of the drive motor and the motion rack through the guidance of the first guide rail and the second guide rail.
[0026] 5. In this utility model, since the acquisition scanning probe module is fixedly set in the length direction of the mounting base plate, when the mounting base plate moves on the housing by the drive of the guide rail assembly, it can move and scan in the length direction of the housing with the scanning line in the width direction of the housing, thereby scanning the surface through which the high-transparency glass plate passes, and realizing effective scanning and recording of the newborn's palm print.
[0027] 6. In this utility model, by providing multiple supplementary lights inside the housing and distributing them evenly along the width of the housing, the clarity and stability of the acquisition and scanning probe module during the scanning process can be improved. Attached Figure Description
[0028] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn to scale.
[0029] Figure 1 This is a schematic diagram of the overall structure of the scanning device of this utility model;
[0030] Figure 2 This is a side view of the scanning device of this utility model;
[0031] Figure 3 This is a schematic diagram of the internal structure of the scanning device of this utility model;
[0032] Figure 4 This is a schematic diagram of the scanning motion mechanism of this utility model.
[0033] In the attached diagram, 1-housing, 2-high-transparency glass plate, 3-display screen, 4-scanning motion mechanism, 5-guide rail assembly, 6-scanning probe module, 7-maternal fingerprint collector, 8-integrated circuit, 9-first guide rail, 10-second guide rail, 11-mounting base plate, 12-drive assembly, 13-motion rack, 14-drive motor, 15-gear, 16-mounting slot, 17-scanning probe, 18-fill light, 19-operation confirmation button, 20-data communication and charging port, 21-power switch, 22-high-capacity battery. Detailed Implementation
[0034] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings. These embodiments are merely illustrative of the present invention and should not be construed as limiting the scope of protection of the present invention.
[0035] It should be noted that, unless otherwise stated, the technical or scientific terms used in this application shall have the ordinary meaning as understood by one of ordinary skill in the art to which this utility model pertains.
[0036] Reference Figures 1-4 A newborn footprint scanning device, comprising:
[0037] Casing 1;
[0038] High-transparency glass plate 2, which is fixedly disposed on the side plane of the housing 1;
[0039] Display screen 3, the display screen 3 is disposed on the housing 1 and is located on the same plane as the high-transparency glass plate 2, and
[0040] The scanning motion mechanism 4 includes a guide rail assembly 5 disposed in the length direction inside the housing 1 and a data acquisition scanning probe module 6 disposed at the moving end of the guide rail assembly 5. The data acquisition scanning probe module 6 reciprocates on the side close to the high-transparency glass plate 2.
[0041] By providing a high-transparency glass plate 2 on the side plane of the housing 1, the scanning motion mechanism 4 installed inside the housing 1 can effectively scan and record the newborn's palm print through the high-transparency glass plate 2. More specifically, since the scanning motion mechanism 4 consists of a guide rail assembly 5 and a scanning probe module 6 installed along the length of the housing 1, the scanning probe module 6 can be installed and set up by the guide rail assembly 5, so that the scanning probe module 6 can perform uniform reciprocating motion inside the housing 1 near the high-transparency glass plate 2, thereby achieving stable palm print acquisition.
[0042] Preferably, the housing is provided with a postpartum fingerprint collector 7, and the housing 1 is provided with an integrated circuit 8. The postpartum fingerprint collector 7 and the scanning motion mechanism 4 are both electrically connected to the integrated circuit 8.
[0043] Understandably, by setting a maternal fingerprint collector 7 on the housing 1, the maternal fingerprint collector 7 can be used to collect the fingerprints of the newborn's parents, namely the mother, and can effectively link the information of the newborn and the parents within the scanning device, greatly enhancing the effectiveness of newborn information entry.
[0044] Preferably, the guide rail assembly 5 includes a first guide rail 9 and a second guide rail 10 respectively disposed on both sides of the housing 1, the first guide rail 9 and the second guide rail 10 being arranged in parallel, and a mounting base plate 11 being slidably disposed on the first guide rail 9 and the second guide rail 10; and
[0045] A drive assembly 12 is fixedly mounted on the mounting base plate 11 and is used to control the reciprocating motion of the mounting base plate 11 on the first guide rail 9 and the second guide rail 10.
[0046] Reference Figure 3 and Figure 4Since the guide rail assembly 5 is configured as a first guide rail 9 and a second guide rail 10 respectively on both sides of the housing 1, and the sliding ends of the two guide rails are provided with mounting bases, the mounting bases can be guided to slide in the length direction of the housing 1. More specifically, the guide rail assembly 5 is also provided with a drive assembly 12, which is fixedly mounted on the mounting base plate 11 to drive the sliding of the guide rail assembly 5 and realize the sliding control of the mounting base relative to the housing 1.
[0047] Preferably, the drive assembly 12 includes a moving rack 13 fixedly mounted on the housing 1 and a drive motor 14 fixedly mounted on the mounting base plate 11. The rotating end of the drive motor 14 is provided with a gear 15, which meshes with the moving rack 13. The moving rack 13 is arranged parallel to the first guide rail 9.
[0048] Understandably, by setting a motion rack 13 and a drive motor 14 in the drive assembly 12, and fixing the drive motor 14 to the mounting base plate 11, and fixing the motion rack 13 to the housing 1, the meshing of the drive motor 14 and the motion rack 13 allows the mounting base plate 11 to be relatively moved on the housing 1 by the guidance of the first guide rail 9 and the second guide rail 10.
[0049] Preferably, the acquisition scanning probe module 6 is fixedly disposed in the length direction of the mounting base plate 11. The acquisition scanning probe module 6 includes a mounting groove 16 disposed in the length direction of the mounting base plate 11 and a plurality of scanning probes 17 disposed in the mounting groove 16. The plurality of scanning probes 17 are evenly distributed in the length direction of the mounting groove 16.
[0050] Combination Figure 1 and Figure 3 Since the acquisition scanning probe module 6 is fixedly set in the length direction of the mounting base plate 11, when the mounting base plate 11 moves on the housing 1 by the drive of the guide rail assembly 5, it can move and scan in the length direction of the housing 1 with the scanning line in the width direction of the housing 1, thereby scanning the surface through which the high-transparency glass plate 2 is transmitted, so as to realize the effective scanning and recording of the newborn's palm print.
[0051] Preferably, the housing 1 is provided with a plurality of supplementary lights 18, which are evenly distributed in the width direction of the housing 1.
[0052] By arranging multiple supplementary lights 18 inside the housing 1 and distributing them evenly along the width of the housing 1, the clarity and stability of the acquisition scanning probe module 6 during the scanning process can be improved.
[0053] Preferably, an operation confirmation button 19 is provided on the exterior of any side of the housing 1.
[0054] By setting a separate operation confirmation button 19, the selected operation command can be confirmed individually, which can reduce the problem of touch prevention to a certain extent.
[0055] In a preferred embodiment, the display screen 3 is a touch screen.
[0056] Preferably, a data communication and charging port 20 is provided on any side of the housing 1, and a power switch 21 is provided on any side of the housing 1.
[0057] Preferably, the power source in the housing 1 is a high-capacity battery 22, which is disposed at the bottom of the housing 1.
[0058] The working principle and process of this utility model:
[0059] When using the newborn footprint scanning device provided by this utility model, the device enters the preparation state after the power button is pressed; the display screen 3 lights up and displays operable options, which can be selected by operating the buttons, such as recording the mother's fingerprint, the baby's footprint, information registration, printing, and other functions.
[0060] Select Information Registration to register your baby's information.
[0061] Selecting to record the mother's fingerprint allows you to link the mother's fingerprint to the registered baby's information. After pressing the confirmation button, press your finger on the corresponding mother's fingerprint collector 7. Once the screen displays confirmation, the recording is complete.
[0062] Select the baby footprint option and press the confirmation button. The supplementary light 18 will illuminate the footprint, and the baby's foot will be pressed onto the high-transparency glass panel. Press the confirmation button again. The integrated circuit 8 module will send a motor control command, driving the scanning probe module 6 to collect the footprint. The motor drives the gear 15 to rotate at a constant speed. The gear 15 moves up and down via a fixed rack, moving the slider and the scanner's fixed crossbar, allowing the scanning module to scan from top to bottom. The slider, crossbar, and left and right sliding rods allow the scanning module to move smoothly.
[0063] After scanning the footprint information, an image is generated and stored in integrated circuit 8. It can then be printed and archived by connecting to a printer via the Type-C data communication interface. Printing can also be done via Wi-Fi on a shared network printer.
[0064] The integrated circuit module also includes a battery charging protection circuit to prevent overcharging and over-discharging, thus extending battery life. A high-transparency glass plate 2 is provided on the side plane of the housing 1, allowing the scanning motion mechanism 4 inside the housing 1 to effectively scan and record the newborn's palm print through the glass plate 2. More specifically, the scanning motion mechanism 4 consists of a guide rail assembly 5 and a scanning probe module 6 arranged along the length of the housing 1. After the scanning probe module 6 is installed via the guide rail assembly 5, it achieves uniform reciprocating motion of the scanning probe module 6 inside the housing 1 near the high-transparency glass plate 2, thereby achieving stable palm print acquisition.
[0065] By setting a maternal fingerprint collector 7 on the housing 1, the maternal fingerprint collector 7 can be used to collect the fingerprints of the newborn's parents, namely the mother, and can effectively link the information of the newborn and the parents within the scanning device, greatly enhancing the effectiveness of newborn information entry.
[0066] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model, and they should all be covered within the scope of the claims and specification of this utility model.
Claims
1. A newborn footprint scanning device, characterized in that, include: Shell (1); High-transparency glass plate (2), the high-transparency glass plate (2) is fixedly disposed on the side plane of the housing (1); The display screen (3) is disposed on the housing (1) and is located on the same plane as the high-transparency glass plate (2). The scanning motion mechanism (4) includes a guide rail assembly (5) arranged in the length direction inside the housing (1) and a scanning probe module (6) arranged at the moving end of the guide rail assembly (5). The scanning probe module (6) reciprocates on the side close to the high-transparency glass plate (2).
2. The newborn footprint scanning device according to claim 1, characterized in that, The housing is provided with a postpartum fingerprint collector (7), and the housing (1) is provided with an integrated circuit (8). The postpartum fingerprint collector (7) and the scanning motion mechanism (4) are both electrically connected to the integrated circuit (8).
3. The newborn footprint scanning device according to claim 2, characterized in that, The guide rail assembly (5) includes a first guide rail (9) and a second guide rail (10) respectively disposed on both sides of the housing (1), the first guide rail (9) and the second guide rail (10) being arranged in parallel, and a mounting base plate (11) being slidably disposed on the first guide rail (9) and the second guide rail (10); and A drive assembly (12) is fixedly mounted on the mounting base plate (11) for controlling the reciprocating motion of the mounting base plate (11) on the first guide rail (9) and the second guide rail (10).
4. The newborn footprint scanning device according to claim 3, characterized in that, The drive assembly (12) includes a rack (13) fixedly mounted on the housing (1) and a drive motor (14) fixedly mounted on the mounting base plate (11). The rotating end of the drive motor (14) is provided with a gear (15), which meshes with the rack (13). The rack (13) is parallel to the first guide rail (9).
5. The newborn footprint scanning device according to claim 3, characterized in that, The acquisition scanning probe module (6) is fixedly arranged in the length direction of the mounting base plate (11). The acquisition scanning probe module (6) includes a mounting groove (16) arranged in the length direction of the mounting base plate (11) and a plurality of scanning probes (17) arranged in the mounting groove (16). The plurality of scanning probes (17) are evenly distributed in the length direction of the mounting groove (16).
6. The newborn footprint scanning device according to claim 1, characterized in that, The housing (1) is provided with a plurality of supplementary lights (18), which are evenly distributed in the width direction of the housing (1).
7. The newborn footprint scanning device according to claim 1, characterized in that, An operation confirmation button (19) is provided on the exterior of any side of the housing (1).
8. The newborn footprint scanning device according to claim 1, characterized in that, The display screen (3) is a touch screen.
9. The newborn footprint scanning device according to claim 1, characterized in that, A data communication and charging port (20) is provided on any side of the housing (1), and a power switch (21) is provided on any side of the housing (1).
10. The newborn footprint scanning device according to claim 1, characterized in that, The power source in the housing (1) is a high-capacity battery (22), which is located at the bottom of the housing (1).