Pop-up vacuum insulated bottle with fingerprint authentication

The pop-up type vacuum insulated bottle addresses the lack of fingerprint recognition in existing models by integrating a fingerprint authentication module into the nozzle cover, ensuring secure and hygienic use through a compact and lightweight design.

JP3251641UActive Publication Date: 2025-06-17FOSHAN FENGSHI TECH CO LTD
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Patent Information

Application Number
JP2025001143U
Authority / Receiving Office
JP · JP
Patent Type
Utility models
Current Assignee / Owner
Priority Date
2024-11-15
Filing Date
2025-04-14
Publication Date
2025-06-17
Estimated Expiration
2035-04-14

AI Technical Summary

Technical Problem

Existing pop-up type vacuum insulated bottles lack fingerprint recognition, which compromises their security and hygiene by allowing unauthorized access and potential cross-infection.

Method used

A pop-up type vacuum insulated bottle with a fingerprint authentication module integrated into the nozzle cover, featuring a locking mechanism and engaging mechanism that utilize bevel gears and spur gears to securely lock and unlock the bottle.

Benefits of technology

The integration of fingerprint authentication ensures secure and hygienic use by preventing unauthorized access, while the compact and lightweight design maintains the bottle's functionality and ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

Relates to a pop-up type vacuum insulated bottle capable of fingerprint authentication. 【Solution means】It includes an upper lid body 1 and a nozzle lid body 2 hinged below the upper lid body. A bottle body 3 is screwed to the bottom of the nozzle lid body. It further includes a locking mechanism and an engaging mechanism located within the nozzle lid body. The locking mechanism includes an inner lid, a rotating lid is installed within the inner lid, a fixed lid is fitted onto the rotating lid, a sealing lid is attached to the top of the fixed lid, a motor, a main control board, and a battery are installed in the cavity between the sealing lid and the fixed lid. A first bevel gear is attached to the output end of the motor, a second bevel gear is meshed and transmitted on one side of the first bevel gear, and a third pin rod is inserted at one end of the second bevel gear. It is an innovative, compact, vacuum insulated bottle with accurate identification by the fingerprint identification module, high usage safety, a lightweight and simple structure, and is practical and convenient.
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Description

Technical Field

[0001] The present invention relates to the technical field of vacuum insulated bottles, and particularly to a pop-up type vacuum insulated bottle with fingerprint authentication.

Background Art

[0002] As a necessary daily necessity for people, with the progress of science and technology, people's requirements for vacuum insulated bottles are getting higher and higher, and vacuum insulated bottles with fingerprint authentication are also being recognized by people. A vacuum insulated bottle with fingerprint identification controls the opening of the vacuum insulated bottle by collecting and comparing fingerprint information, effectively preventing the misappropriation and misdrinking of the vacuum insulated bottle, ensuring the cleanliness and hygiene of the cup, and avoiding the cross-infection and transmission of viruses and bacteria. The pop-up type vacuum insulated bottle is one of the most popular vacuum insulated bottles, but most of the existing ones do not have fingerprint recognition. The control part with a fingerprint module is installed on the top cover, which affects the feeling when opening the top cover. Therefore, in the present application, a lightweight pop-up type vacuum insulated bottle with a fingerprint recognition module located on the nozzle cover is proposed.

Summary of the Invention

Means for Solving the Problems

[0003] The object of the present invention is to propose a portable pop-up type vacuum insulated bottle with a fingerprint authentication module located on the nozzle cover for the problems existing in the background art.

[0004] The present invention proposes the following technical means, a pop-up type vacuum insulated bottle capable of fingerprint authentication, including an upper cover and a nozzle cover hinged below the upper cover, and a bottle body is screwed to the bottom of the nozzle cover, further including a locking mechanism and an engaging mechanism located in the nozzle cover, The locking mechanism includes an inner cover, a rotating cover is installed in the inner cover, a fixed cover is fitted on the rotating cover, a sealing cover is installed on the top of the fixed cover, a motor, a main control board and a battery are installed in the cavity between the sealing cover and the fixed cover, a first bevel gear is installed at the output end of the motor, a second bevel gear is meshed and transmitted on one side of the first bevel gear, a third pin rod is inserted at one end of the second bevel gear, two sets of spur gears are provided on the outer ring of the third pin rod, a meshing push plate is provided on one side of one set of the spur gears, and a meshing push block is provided on the top of the other set of the spur gears. The engaging mechanism further includes a second pin rod and a spring installed in the inner cover and the rotating cover, and a charged rubber cap is installed on the outside of the inner cover.

[0005] Preferably, a waterproof rubber ring is installed below the rotating cover.

[0006] Preferably, a fingerprint module is fitted on the outside of the inner cover, and a fingerprint cover plate is crimped on the outer surface of the fingerprint module.

[0007] Preferably, a first pin rod is movably installed at the hinge connection position between the upper cover and the inner cover, and a torsion spring is movably covered on the outer surface of the first pin rod.

[0008] Preferably, an inner cover cover plate enclosed above the fixed cover is further provided on the inner wall of the inner cover.

[0009] Preferably, a connection port is further provided on the main control board, and a first elastic sheet and a second elastic sheet are installed on the connection port.

[0010] Preferably, the upper cover includes a top cover, a rotating ring is installed below the top cover, a sealing rubber cap is installed on the rotating ring, and a fixing pin is installed between the rotating ring and the top cover.

Advantages of the Invention

[0011] As described above, due to the adoption of the above technical solution, the beneficial effects of the present invention are as follows: The present invention collects fingerprint information through the fingerprint module of the nozzle cover body, conducts identification and processing, and only when the installed fingerprints are matched, the main control board drives the motor to operate. Through bevel gear and spur gear transmission, it drives the horizontal reciprocating movement of the push plate, and at the same time drives the vertical reciprocating movement of the push block, realizes the locking and unlocking of the top cover and the rotating cover, and realizes the dedicated protection function of the vacuum insulation bottle.

[0012] Both the fingerprint module and its locking member of the present invention are installed on the nozzle cover body, with fewer upper cover body structural parts, being lightweight and easy to use.

[0013] As described above, the structure of the present invention is innovative and compact, the identification of the fingerprint identification module of the vacuum insulation bottle is accurate, the use safety of the vacuum insulation bottle is high, the structure is light and simple, and it is practical and convenient.

Brief Description of the Drawings

[0014]

Figure 1

Figure 2

Figure 3

Modes for Carrying Out the Invention

[0015] Hereinafter, the technical aspects of the present disclosure will be clearly and completely described with reference to the drawings. Obviously, the described embodiments are some embodiments of the present disclosure, not all embodiments.

[0016] Generally, the components of the embodiments of the present disclosure described and shown herein can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present disclosure provided in the accompanying drawings is not intended to limit the scope of the present disclosure for which protection is claimed, but only shows selected embodiments of the present disclosure.

[0017] Based on the examples in the present disclosure, all other examples obtained by those skilled in the art without creative labor belong to the scope of protection of the present disclosure.

[0018] In the description of the present disclosure, the orientation or positional relationship indicated by terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the purpose of facilitating the description of the present disclosure and simplifying the description, and does not indicate or imply that the indicated device or element must be configured and operated in a specific orientation, so it cannot be understood as a limitation of the present disclosure. Furthermore, the terms "first", "second", "third" are used only for the purpose of description and are not understood to indicate or imply relative importance.

[0019] In the description of the present disclosure, unless otherwise clearly defined and limited, the terms "attach", "connect", "connection" should be understood in a broad sense. For example, it may be a fixed connection, a removable connection, an integral connection, a mechanical connection, an electrical connection, a direct connection, an indirect connection through an intermediate medium, or an internal connection between two elements. Those skilled in the art can specifically understand the specific meaning of the above terms in the present disclosure.

[0020] (Embodiment) As shown in FIGS. 1 to 3, the present invention presents a pop-up type vacuum insulated bottle capable of fingerprint authentication. It includes an upper cover 1 and a nozzle cover 2 hingedly connected below the upper cover 1. The upper cover 1 includes a top cover 101. A rotating ring 102 is attached below the top cover 101. A sealing rubber cap 103 is attached to the rotating ring 102. A fixing pin 104 is attached between the rotating ring 102 and the top cover 101. A first pin rod 212 is movably attached to the hinge connection portion between the upper cover 1 and the middle cover 211. A torsion spring 224 is movably covered on the outer surface of the first pin rod 212. Due to the installation of the torsion spring 224, the upper cover 1 and the nozzle cover 2 are reversely opened. A bottle body 3 is screwed to the bottom of the nozzle cover 2. It further includes a locking mechanism and an engaging mechanism located in the nozzle cover 2. The locking mechanism includes the middle cover 211. A fingerprint module 203 is fitted on the outer side of the middle cover 211, and a fingerprint cover plate 204 is crimped on the outer surface of the fingerprint module 203. A rotating cover 202 is installed inside the middle cover 211, and a waterproof rubber ring 201 is installed below the rotating cover 202. The installation of the waterproof rubber ring 201 realizes the sealing of the bottle body. A fixed cover 209 is fitted on the rotating cover 202, and an inner cover cover plate 213 enclosed above the fixed cover 209 is further provided on the inner wall of the middle cover 211. A sealing cover 223 is installed on the top of the fixed cover 209. A motor 207, a main control board 208 and a battery 210 are installed in the cavity between the sealing cover 223 and the fixed cover 209. The external power supply charges and stores the battery 210 through the typec interface, and the battery 210 supplies power to the main control board 208. The main control board 208 is further provided with a connection port, and a first elastic sheet 214 and a second elastic sheet 215 are installed on the connection port. The first elastic sheet 214, the second elastic sheet 215 and an elastic switch are formed. A first bevel gear 206 is installed at the output end of the motor 207. A second bevel gear 205 is meshed and transmitted on one side of the first bevel gear 206. A third pin rod 219 is inserted at one end of the second bevel gear 205. Two sets of spur gears 220 are provided on the outer ring of the third pin rod 219. A meshing push plate 222 is provided on one side of one set of spur gears 220, and a meshing push block 218 is provided on the top of the other set of spur gears 220. The engaging mechanism further includes a second pin rod 216 and a spring 217 installed in the middle cover 211 and the rotating cover 202, and a charged rubber cap 221 is installed on the outer side of the middle cover 211.

[0021] In this embodiment, the user touches through the fingerprint module 203, identifies the fingerprint information, provides it to the main control board 208 for verification and judgment. When matching the correct fingerprint, the main control board 208 instructs the motor 207 to operate. Through the transmission of the first bevel gear 206, the second bevel gear 205, and the spur gear 220, the push plate 222 is moved inward to realize the unlocking of the top cover 101 and the middle cover 211. At the same time, the push block 218 is moved downward to push out the second pin rod 216. After locking the rotating cover 202 and the middle cover 211, if the rotating middle cover 211 is realized, the rotational separation of the rotating cover 202 and the bottle body 3 can be realized.

[0022] When the top cover 101 opens, the elastic switch turns off, and the main control board 208 receives the off signal and maintains the current state until the top cover 1 closes again. When the elastic switch turns on, the main control board 208 resumes the operation of the motor 207 and moves the push plate 222 outward to realize the locking of the upper cover 1 and the middle cover 211. At the same time, the push block 218 moves upward, the second pin rod 216 is pulled out, and the rotating cover 202 is separated from the middle cover 211, that is, the middle cover 211 does not affect the locked state of the rotating cover 202 and the bottle body 3.

[0023] Here, the rotating ring 102 device is on the top cover 101 and is in a rotatable state. The sealing rubber cap 103 is set on the rotating ring 102. When the upper cover 1 is locked, the sealing rubber cap 103 and the rotating cover 202 are adhered together, and the waterproof rubber ring 201 and the bottle body 3 are adhered together to realize the sealing of the bottle. At the same time, the rotatable sealing rubber cap 103 rotates following the rotating cover 202.

[0024] The above specific embodiments are only alternative embodiments of the present invention. Based on the suggestions regarding the present invention and the above embodiments, those skilled in the art can make various alternative improvements and combinations to the above specific embodiments.

Explanation of Reference Numerals

[0025] 1. Upper cover; 101. Top cover; 102. Rotating ring; 103. Seal rubber cap; 104. Fixed pin; 2. Nozzle cover; 201. Waterproof rubber ring; 202. Rotating cover; 203. Fingerprint module; 204. Fingerprint cover plate; 205. Second bevel gear; 206. First bevel gear; 207. Motor; 208. Main control board; 209. Fixed cover; 210. Battery; 211. Middle cover; 212. First pin rod; 213. Middle cover plate; 214. First elastic sheet; 215. Second elastic sheet; 216. Second pin rod; 217. Spring; 218. Push block; 219. Third pin rod; 220. Spur gear; 221. Charging rubber cap; 222. Push plate; 223. Seal cover; 224. Torsion spring; 3. Bottle body.

Claims

1. A fingerprint authentication-enabled pop-up vacuum insulated bottle including an upper lid (1) and a nozzle lid (2) hinged to a lower portion of the upper lid (1), and a bottle body (3) screw-connected to a bottom of the nozzle lid (2), The nozzle cover further includes a lock mechanism and an engagement mechanism located within the nozzle cover. The lock mechanism includes an inner lid (211), a rotating lid (202) is attached inside the inner lid (211), a fixed lid (209) is fitted onto the rotating lid (202), a sealing lid (223) is attached to the top of the fixed lid (209), a motor (207), a main control plate (208) and a battery (210) are attached in the cavity between the sealing lid (223) and the fixed lid (209), and a first bevel gear (206) is attached to the output end of the motor (207). A second bevel gear (205) is engaged with one side of the first bevel gear (206) to transmit power, a third pin rod (219) is inserted into one end of the second bevel gear (205), two sets of spur gears (220) are provided on the outer ring of the third pin rod (219), one side of one set of the spur gears (220) is provided with a push plate (222) that engages with it, and the top of the other set of the spur gears (220) is provided with a push block (218) that engages with it. The engagement mechanism further includes a second pin rod (216) and a spring (217) attached within the inner lid (211) and the rotating lid (202), and a charged rubber cap (221) is attached to the outside of the inner lid (211).

2. 2. The pop-up type vacuum insulated bottle with fingerprint authentication according to claim 1, characterized in that a waterproof rubber ring (201) is attached to the lower part of the rotating lid (202).

3. The pop-up type vacuum insulated bottle capable of fingerprint authentication according to claim 1, characterized in that a fingerprint module (203) is fitted to the outside of the inner lid (211), and a fingerprint cover plate (204) is crimped to the outer surface of the fingerprint module (203).

4. A first pin rod (212) is provided at the hinge connection between the upper cover (1) and the inner cover (211).

2. The fingerprint authentication-enabled pop-up type vacuum insulated bottle according to claim 1, characterized in that the first pin rod (212) is movably attached, and the outer surface of the first pin rod (212) is movably covered with a torsion spring (224).

5. The fingerprint authentication-enabled pop-up type vacuum insulated bottle according to claim 1, characterized in that an inner lid cover plate (213) sealed above a fixed cover (209) is further provided on the inner wall of the inner lid (211).

6. The fingerprint authentication-enabled pop-up type vacuum insulated bottle according to claim 1, characterized in that the main control plate (208) is further provided with a connection port, and a first elastic sheet (214) and a second elastic sheet (215) are attached to the connection port.

7. The fingerprint authentication-enabled pop-up type vacuum insulated bottle according to claim 1, characterized in that the upper lid body (1) includes a top cover (101), a rotating ring (102) is attached to the lower part of the top cover (101), a sealing rubber cap (103) is attached to the rotating ring (102), and a fixing pin (104) is attached between the rotating ring (102) and the top cover (101).