Packaging box with built-in NFC chip

By incorporating an NFC chip and a pressing mechanism, the design solves the problem of insufficient information display on tea packaging boxes, enabling accurate display and secure, convenient storage of tea information, reducing consumer risk and enhancing the display effect.

CN224076054UActive Publication Date: 2026-04-03XIAMEN TAIYI BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-15
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing tea packaging boxes have a simple structure and cannot display detailed product information, making it difficult for consumers to accurately identify the type of tea they need and making them easily misled by merchants' exaggerated product information.

Method used

Design a packaging box with a built-in NFC chip, including an inner box, a pressing mechanism, and a sensing mechanism. By sensing the tea through a mobile phone, detailed information about the tea can be displayed. The pressing mechanism allows for easy operation of a transparent film to protect the packaging bag, ensuring both security and display effectiveness.

Benefits of technology

It enables accurate display of tea information, reduces consumer risk, improves customer search efficiency, avoids discrepancies in product information, and the transparent film design provides convenient storage protection and aesthetic display.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a packaging box with a built-in NFC (near field communication) chip, which relates to the technical field of packaging boxes, and aims to solve the technical problems that the current tea packaging box is poor in product information display effect and inconvenient for consumers to know the content of tea in detail, and comprises an inner box, a pressing mechanism and a sensing mechanism, the rear side of an opening in the upper end of the box body is connected with a box cover in a folded mode through an indentation, the interior of a notch in the upper end face of the inner box is divided into two storage openings through a bridge part, diaphragms are distributed in the storage openings at equal intervals, packaging bags are placed in the storage openings, and a nameplate is arranged in the middle of the upper end face of the bridge part. The pressing mechanisms are connected through the frame plate, and the sensing mechanism is installed in a notch in the upper side of the frame plate. The utility model has the advantages that the built-in NFC chip is additionally arranged, so that the tea information can be displayed in detail, consumers can quickly lock the required tea types, and the consumption risk is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of packaging box technology, and more specifically, to a packaging box with a built-in NFC chip. Background Technology

[0002] Tea packaging boxes are containers used to hold tea and protect its quality. They are generally made of paper, which is low-cost, environmentally friendly and recyclable. They can also be printed with various colors and exquisite patterns, giving people a warm and natural feeling.

[0003] Existing tea packaging boxes have a relatively simple structure, making it inconvenient to display detailed product information, including but not limited to the tea variety name, detailed origin information, harvest time, grading, processing method, brewing suggestions, tasting characteristics, and brand story. This also makes it difficult for consumers to accurately identify the type of tea they need. Therefore, we propose a packaging box with a built-in NFC chip. Utility Model Content

[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to the needs of reality, and provide a packaging box with a built-in NFC chip to solve the technical problem that the current tea packaging boxes have poor product information display effects and make it inconvenient for consumers to understand the contents of the tea in detail.

[0005] To solve the above technical problems, this utility model provides the following technical solution: a packaging box with a built-in NFC chip, including an inner box, a pressing mechanism, and a sensing mechanism. The inner box is inserted and installed inside the box body, and a box lid is connected to the upper opening of the box body by folding with indentations. The upper end face of the inner box is divided into two storage ports by a bridge section, and diaphragms are evenly distributed in the storage ports. A packaging bag is placed in the storage port. A label is provided in the middle of the upper end face of the bridge section. There are two pressing mechanisms, which are respectively embedded and installed at both ends of the bridge section. The pressing mechanisms are connected by a frame plate. The sensing mechanism is installed in the upper recess of the frame plate and corresponds to the label. Both ends of the upper end face of the inner box are provided with bending openings, and transparent films are inserted and installed in the bending openings.

[0006] In use, this invention involves rotating the lid to open the box, activating the NFC function on the mobile phone, and placing it against the label area. The phone then senses the sensor, displaying detailed information about the tea on the phone. This allows customers to quickly and accurately find and locate the desired tea type, while also preventing discrepancies caused by exaggerated claims from merchants, thus reducing consumer risk. The sensor is attached to the recessed area of ​​the shelf with adhesive backing. The shelf is attached to the lower side of the inner box's bridge section, corresponding to the label area, allowing customers to quickly locate the sensing area and improving efficiency. The built-in storage design ensures the security of the sensor mechanism. The tea packaging bag is placed in the storage opening between the membranes, and then the transparent film is folded and closed, making the transparent... The film covers the upper opening of the storage port. During the closing process, the pressing cap needs to be pressed down with a finger. The pressing cap squeezes the arch bridge component, causing it to bend. The two ends of the arch bridge component tilt upwards, causing the rotating pressure block to deflect. The rotating pressure block deflects upwards, causing the lower pressure opening to unfold. The top part of the transparent film is placed under the pressure opening of the rotating pressure block. When the pressing cap is released, the spring rebound causes the arch bridge component to return to its original position. The arch bridge component then causes the rotating pressure block to return to its original position, and the pressure opening of the rotating pressure block presses down to fix the transparent film. Through the above structural design, the transparent film can provide movable protection for the storage and handling of packaging bags. At the same time, corresponding patterns can be printed on the transparent film to improve the display effect. The pressing mechanism facilitates the positioning of the transparent film and reduces the difficulty of operation.

[0007] Preferably, the inner box has side openings at both ends, and a side pressing block is inserted into the side opening. The inner end of the side pressing block presses and fixes the transparent film through the lower end of the bend.

[0008] Preferably, the transparent film is bent to correspond to the upper opening of the storage port, and the transparent film is attached to the packaging bag, and the transparent film is printed with graphics.

[0009] Preferably, the pressing mechanism consists of a cylinder and a cap, with the cap fixed at the upper opening of the cylinder, the cylinder penetrating the cable tray section, and the frame plate fitting against the lower side of the cable tray section.

[0010] Preferably, a lifting rod is slidably inserted into the middle of the cylinder, a spring is fixed at the bottom of the cylinder, and the upper end of the spring is connected to the lifting rod. A pressing cap is installed on the upper end of the lifting rod.

[0011] Preferably, the top of the lifting rod is provided with an arc-shaped pressure port, and an arch bridge component is provided between the lifting rod and the pressing cap, with the middle of the arch bridge component corresponding to the arc-shaped pressure port at the top of the lifting rod.

[0012] Preferably, a pressure block is rotatably installed in the recesses on both sides of the cylinder cover via a rotating shaft. The pressure block has an L-shaped structure design, and the lower pressure port of the pressure block presses down to fix the outer end of the transparent film. The two ends of the arch bridge component are inserted and connected to the rear end of the corresponding pressure block.

[0013] Preferably, the sensing mechanism consists of a bottom adhesive layer, ferrite, a middle adhesive layer, a middle material separator, an ID coil sensing layer, an IC coil sensing layer, and a feeding separator.

[0014] Compared with the prior art, the beneficial effects of this utility model are:

[0015] 1. This utility model features an inner box design. Upon rotating the lid, the phone's NFC function is activated, and the phone is placed against the label area. The phone then senses the sensor, displaying detailed information about the tea on the phone. This allows customers to quickly and accurately find and locate the desired tea type, while also preventing discrepancies caused by exaggerated claims from merchants, thus reducing consumer risk. The sensor is attached to a recessed area of ​​the shelf with adhesive backing. The shelf is attached to the lower side of the inner box's bridge section, corresponding to the label area, allowing customers to quickly locate the sensing area and improving efficiency. The built-in storage design ensures the security of the sensor.

[0016] 2. This utility model also incorporates a pressing mechanism. The tea packaging bag is placed inside the storage opening between the diaphragms, and then the transparent film is bent and closed, covering the upper opening of the storage opening. During the closing process, the pressing cap needs to be pressed down with a finger. The pressing cap squeezes the arch bridge component, causing it to bend. The two ends of the arch bridge component tilt upwards, causing the rotating pressing block to deflect. The rotating pressing block deflects upwards, unfolding the lower pressing opening of the rotating pressing block. The top part of the transparent film is placed under the pressing opening of the rotating pressing block. When the pressing cap is released, the spring rebound causes the arch bridge component to return to its original position. The arch bridge component then causes the rotating pressing block to return to its original position, and the pressing opening of the rotating pressing block presses down to fix the transparent film. Through the above structural design, the transparent film can provide movable protection for the storage and handling of the packaging bag. At the same time, corresponding patterns can be printed on the transparent film to improve the display effect. The pressing mechanism facilitates the positioning of the transparent film and reduces the difficulty of operation. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the main structure of this utility model;

[0018] Figure 2 This is a schematic diagram of the inner box structure of this utility model;

[0019] Figure 3 This is a cross-sectional structural diagram of the present invention;

[0020] Figure 4 This is a schematic diagram of the unfolded structure of this utility model;

[0021] Figure 5 This is a schematic diagram of the storage port structure of this utility model;

[0022] Figure 6 This is a schematic diagram of the frame structure of this utility model;

[0023] Figure 7This is a schematic diagram of the pressing mechanism of this utility model;

[0024] Figure 8 This is a schematic diagram of the sensing mechanism of this utility model.

[0025] The labels in the diagram are as follows: 1. Box body; 101. Box lid; 2. Inner box; 201. Side pressure block; 202. Diaphragm; 203. Bending opening; 204. Side opening; 205. Cable tray section; 206. Storage port; 207. Label; 3. Transparent film; 4. Pressing mechanism; 401. Rotating pressure block; 402. Cylinder body; 403. Spring; 404. Lifting rod; 405. Side opening; 406. Arch bridge component; 407. Pressing cap; 408. Cylinder lid; 5. Packaging bag; 6. Shelf; 7. Sensing mechanism; 701. Bottom adhesive layer; 702. Ferrite; 703. Middle adhesive layer; 704. Middle material separator; 705. ID coil sensing layer; 706. IC coil sensing layer; 707. Loading separator. Detailed Implementation

[0026] like Figures 1 to 5 As shown, this utility model relates to a packaging box with a built-in NFC chip, including an inner box 2, a pressing mechanism 4, and a sensing mechanism 7. The inner box 2 is inserted into the inside of the box body 1, and a box cover 101 is connected to the upper opening of the box body 1 by folding through indentation. The upper end of the inner box 2 is divided into two storage ports 206 by a bridge portion 205, and a diaphragm 202 is evenly distributed in the storage ports 206. A packaging bag 5 is placed in the storage port 206. A label 207 is provided in the middle of the upper end of the bridge portion 205. Side openings 204 are provided at both ends of the inner box 2, and a side pressing block 201 is inserted into the side opening 204. The inner end of the side pressing block 201 presses and fixes the transparent film 3 through the lower end of the bending opening 203. After bending, the transparent film 3 corresponds to the upper opening of the storage port 206, and the transparent film 3 adheres to the packaging bag 5. Printing is printed on the transparent film 3. The sensor mechanism 7, which includes a bottom adhesive layer 701, ferrite 702, a middle adhesive layer 703, a middle material separator 704, an ID coil sensing layer 705, an IC coil sensing layer 706, and a material loading separator 707, is designed to be easily accessed. When the box lid 101 is opened by rotating it, and the phone's NFC function is enabled, it is placed against the label 207. The phone then senses the sensor mechanism 7, displaying detailed information about the tea on the phone. This allows customers to quickly and accurately find and locate the desired tea type, while also preventing discrepancies caused by exaggerated claims from merchants, thus reducing consumer risk. The sensor mechanism 7 is attached to the recessed area of ​​the shelf plate 6 by the bottom adhesive layer 701. The shelf plate 6 is attached to the lower side of the bridge section 205 of the inner box 2, corresponding to the label 207, allowing customers to quickly locate the sensing area and improving efficiency. The built-in storage design ensures the security of the sensor mechanism 7.

[0027] like Figures 3 to 8As shown, this utility model relates to a packaging box with a built-in NFC chip, including an inner box 2, a pressing mechanism 4, and a sensing mechanism 7. Two pressing mechanisms 4 are provided, and each pressing mechanism 4 is embedded and installed at both ends of the bridge section 205. The pressing mechanisms 4 are connected by a frame plate 6. The sensing mechanism 7 is installed in the upper recess of the frame plate 6 and corresponds to the label 207. Both ends of the upper surface of the inner box 2 have bending openings 203, and a transparent film 3 is inserted into the bending openings 203. The pressing mechanism 4 consists of a cylindrical body 402 and a cylindrical cover 408, and the cylindrical cover 408 is fixed. At the opening at the upper end of the cylinder 402, the cylinder 402 passes through the bridge frame part 205, and the frame plate 6 fits against the lower side of the bridge frame part 205. A lifting rod 404 is slidably inserted into the middle of the cylinder 402. A spring 403 is fixed at the bottom of the cylinder 402, and the upper end of the spring 403 is connected to the lifting rod 404. A pressing cap 407 is installed at the upper end of the lifting rod 404. The top of the lifting rod 404 is provided with an arc-shaped pressing port. An arch bridge 406 is provided between the lifting rod 404 and the pressing cap 407. The middle of the arch bridge 406 corresponds to the arc-shaped pressing port at the top of the lifting rod 404. A rotating shaft passes through the recesses on both sides of the cylinder cover 408. A rotating pressure block 401 is installed. The pressure block 401 has an L-shaped structure, and its lower pressure port presses down to fix the outer end of the transparent film 3. The two ends of the arch bridge member 406 are inserted and connected to the rear ends of the corresponding pressure block 401. The tea packaging bag 5 is placed in the storage opening 206 between the diaphragms 202. Then, the transparent film 3 is bent and closed, so that the transparent film 3 covers the upper opening of the storage opening 206. During the closing process, the pressing cap 407 needs to be pressed down with a finger. The pressing cap 407 squeezes the arch bridge member 406 to make it bend. The two ends of the arch bridge member 406 are raised, causing the pressure block 401 to deflect. 401 is deflected upwards to unfold the lower pressing part, placing the top part of the transparent film 3 under the pressing part of the pressing block 401. When the pressing cap 407 is released, the spring 403 returns the arch bridge 406 to its original position, and the arch bridge 406 returns the pressing block 401 to its original position. The pressing part of the pressing block 401 presses down to fix the transparent film 3. Through the above structural design, the transparent film 3 can provide protection for the storage and handling of the packaging bag 5. At the same time, the transparent film 3 can be printed with corresponding patterns to improve the display effect. The pressing mechanism 4 facilitates the positioning of the transparent film 3 and reduces the difficulty of operation.

[0028] Working Principle: This embodiment provides a packaging box with a built-in NFC chip. In use, the box lid 101 is opened by rotating it. After the mobile phone's NFC function is enabled, it is placed against the label 207. The mobile phone and the sensing mechanism 7 sense each other, displaying detailed information about the tea on the mobile phone. This allows customers to quickly and accurately find and locate the desired tea type, while avoiding discrepancies in product information due to excessive advertising by merchants, thus reducing consumer risk. The sensing mechanism 7 is attached to the recessed area of ​​the shelf plate 6 by the bottom adhesive 701. The shelf plate 6 is attached to the lower side of the bridge section 205 of the inner box 2, corresponding to the label 207. The tea packaging bag 5 is placed in the storage opening between the membranes 202. Inside 206, the transparent film 3 is then bent and closed, so that the transparent film 3 covers the upper opening of the storage port 206. During the closing process, the finger needs to press down on the pressing cap 407. The pressing cap 407 squeezes the arch bridge 406 to make it bend. The two ends of the arch bridge 406 are raised, which drives the rotating pressure block 401 to deflect. The rotating pressure block 401 deflects upward to unfold the lower pressure port. The top part of the transparent film 3 is placed under the pressure port of the rotating pressure block 401. When the pressing cap 407 is released, the arch bridge 406 is reset by the rebound of the spring 403. The arch bridge 406 drives the rotating pressure block 401 to reset. The pressure port of the rotating pressure block 401 presses down to fix the transparent film 3.

[0029] The embodiments disclosed herein are preferred embodiments, but are not limited thereto. Those skilled in the art can readily grasp the spirit of this utility model based on the above embodiments and make different extensions and variations. However, as long as they do not depart from the spirit of this utility model, they are all within the protection scope of this utility model.

Claims

1. A packaging box with built-in NFC chip, comprising an inner box (2), a pressing mechanism (4) and an induction mechanism (7), characterized in that: The inner box (2) is inserted and mounted in the inner part of the box body (1), and the rear side of the upper end opening of the box body (1) is connected with the box cover (101) through indentation folding, the upper end surface of the inner box (2) is divided into two storage openings (206) through the bridge part (205) in the recess, and the diaphragm (202) is equidistantly distributed in the storage opening (206), the packaging bag (5) is placed in the storage opening (206), the middle part of the upper end surface of the bridge part (205) is provided with the signboard (207), the pressing mechanism (4) is provided with two, and the two pressing mechanisms (4) are respectively embedded and mounted at both ends of the bridge part (205), the pressing mechanisms (4) are connected through the shelf plate (6), the induction mechanism (7) is mounted in the upper recess of the shelf plate (6), and the induction mechanism (7) corresponds to the signboard (207), the upper end surface of the inner box (2) is provided with the bending opening (203) at both ends, and the transparent film (3) is inserted and mounted in the bending opening (203).

2. The packaging box with a built-in NFC chip according to claim 1, characterized in that: The both ends of the inner box (2) are provided with the side opening (204), and the side pressing block (201) is inserted in the side opening (204).

3. The packaging box with a built-in NFC chip according to claim 2, characterized in that: The transparent film (3) is bent and corresponds to the upper opening of the storage opening (206), and the transparent film (3) is attached to the packaging bag (5).

4. The packaging box with a built-in NFC chip according to claim 3, characterized in that: The pressing mechanism (4) is composed of a cylinder (402) and a cylinder cover (408), and the cylinder cover (408) is fixed at the upper end opening of the cylinder (402), the cylinder (402) penetrates the bridge part (205), and the shelf plate (6) is attached to the lower side of the bridge part (205).

5. The packaging box with a built-in NFC chip according to claim 4, characterized in that: The middle part of the cylinder (402) is slidably inserted with a lifting rod (404), the bottom of the cylinder (402) is fixed with a spring (403), and the upper end of the spring (403) is connected with the lifting rod (404), the upper end of the lifting rod (404) is provided with a pressing cap (407).

6. The packaging box with a built-in NFC chip according to claim 5, characterized in that: The top of the lifting rod (404) is provided with an arc pressing opening, and the arch bridge piece (406) is arranged between the lifting rod (404) and the pressing cap (407).

7. The packaging box with a built-in NFC chip according to claim 6, characterized in that: The both sides of the cylinder cover (408) are provided with a rotating pressing block (401) in the recess, the rotating pressing block (401) is designed in L-shaped structure, and the lower side of the rotating pressing block (401) is provided with a pressing opening for pressing the outer end of the transparent film (3), the both ends of the arch bridge piece (406) are connected with the corresponding rear end of the rotating pressing block (401).

8. The packaging box with a built-in NFC chip according to claim 7, characterized in that: The induction mechanism (7) is composed of a bottom layer of adhesive (701), a ferrite (702), a middle layer of adhesive (703), a middle layer of spacer (704), an ID coil induction layer (705), an IC coil induction layer (706) and an upper layer of spacer (707).