RFID card bag
By designing an RFID card package with a shielding plate and a driving motion, the problem that existing card packages cannot block RFID signals and are inconvenient to card acquisition is solved, and effective protection of RFID card information and convenient card acquisition operations are achieved.
Patent Information
- Application Number
- CN202422373975.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-09-27
AI Technical Summary
Existing RFID card packets cannot effectively block RFID transmission signals and are not convenient for users to get the card.
An RFID card pack is designed, including a housing, a shielding plate, a first push plate, a second push plate, a first dial block and a second dial block. The inner part of the housing is separated into an isolation cavity and a receptacle cavity by the shielding plate. The first and second lever blocks drive the push plate movement to realize the card protrusion or entry into the housing, so that the user can easily obtain the card.
Effectively block RFID transmission signals, protect users' RFID card information, and facilitate users to pick up cards, improving user experience.
Smart Images

Figure CN223025571U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electronic tag testing, and particularly relates to an RFID card wallet. Background Art
[0002] With the rapid development of the Internet of Things technology, RFID (Radio Frequency Identification) electronic tags, also known as RFID cards, which have functions such as identification, item tracking, and information collection, have been widely used in many fields such as industrial automation and commercial automation. RFID technology is a non-contact automatic identification technology. It identifies target objects through radio frequency signals and obtains relevant data, and the identification work does not require manual intervention. RFID cards have advantages such as waterproof, anti-magnetic, high temperature resistant, long service life, large reading distance, data on the tag can be encrypted, larger storage data capacity, and easy modification of stored information, which are not possessed by two-dimensional codes, barcodes, etc. Moreover, existing RFID cards mainly consist of an antenna, a chip, and a substrate. The antenna and the chip are arranged on the substrate, and an RFID reader can read and write the chip through the antenna.
[0003] Although RFID cards bring great convenience to people's lives, some people will steal users' personal information, bank information, etc. by holding a high-power reading and writing device close to the users' RFID cards. Therefore, users mostly use some card wallets with shielding functions to protect RFID cards. However, since such card wallets do not have a corresponding card-taking structure, it is not convenient for users to take cards.
[0004] It can be seen that the existing technology needs to be further improved. Summary of the Utility Model
[0005] In view of the above problems, the utility model provides an RFID card wallet to solve the problems that the existing card wallet cannot shield RFID transmission signals and is not convenient for taking cards.
[0006] The utility model provides an RFID card wallet, including:
[0007] A housing having a pick-up and placement space;
[0008] A shielding plate disposed in the pick-up and placement space for dividing the pick-up and placement space into an isolation chamber and a receiving chamber;
[0009] A first push plate located in the isolation chamber, having a first step formed at its bottom;
[0010] A second push plate located in the receiving chamber, having a second step formed at its bottom;
[0011] The first shifting block is connected to the side wall of the first push plate for driving the first step to move along the shifting direction of the first shifting block;
[0012] The second shifting block is connected to the side wall of the second push plate for driving the second step to move along the shifting direction of the second shifting block.
[0013] In some embodiments, first chutes and second chutes that are respectively communicated with the isolation cavity and the accommodation cavity are formed in the side wall of the housing;
[0014] The first shifting block and the second shifting block are respectively matched with the first chute and the second chute, so that the first shifting block moves along the extending direction of the first chute, and the second shifting block moves along the extending direction of the second chute.
[0015] In some embodiments, a first connection portion and a second connection portion are respectively arranged on the side walls of the first push plate and the second push plate, and a first assembly portion and a second assembly portion are respectively arranged at the bottoms of the first shifting block and the second shifting block;
[0016] The first connection portion is matched with the first assembly portion, and the second connection portion is matched with the second assembly portion to realize the connection between the first shifting block and the first push plate and between the second shifting block and the second push plate.
[0017] In some embodiments, the first connection portion is a first main tooth, and the first assembly portion is a first sub-tooth that is matched with the first main tooth;
[0018] The second connection portion is a second main tooth, and the second assembly portion is a second sub-tooth that is matched with the second main tooth.
[0019] In some embodiments, the first push plate includes a first plate body and a first elastic sheet. The first step is arranged at the bottom of the first plate body. The first elastic sheet is connected to the first plate body, and a first clamping area is formed between the first elastic sheet and the first plate body;
[0020] The second push plate includes a second plate body and a second elastic sheet. The second step is arranged at the bottom of the second plate body. The second elastic sheet is connected to the second step, and a second clamping area is formed between the second elastic sheet and the second plate body.
[0021] In some embodiments, both the first elastic sheet and the second elastic sheet are multiple, and the multiple first elastic sheets are uniformly arranged along the extending direction of the first step, and the multiple second elastic sheets are uniformly arranged along the extending direction of the second step.
[0022] In some embodiments, an isolation layer is provided on the inner wall of the housing, and an isolation cavity is formed by enclosing between the isolation layer and the shielding plate.
[0023] In some embodiments, the card holder further includes a first cover and a second cover respectively rotatably connected to the housing, for opening or closing the isolation cavity respectively, and for opening or closing the accommodation cavity.
[0024] In some embodiments, anti-slip portions are provided on both the surface of the first dial and the surface of the second dial.
[0025] In some embodiments, the card holder further includes a bracket. A receiving groove is formed in the rear wall of the housing, and the bracket is rotatably connected to the receiving groove.
[0026] Due to the adoption of the above technical solutions, the technical effects achieved by the present utility model are as follows:
[0027] The RFID card holder provided by the present utility model includes a housing, a shielding plate, a first push plate, a second push plate, a first dial and a second dial. First of all, through the setting of the shielding plate, the card-taking and placing space inside the housing can be divided into an isolation cavity and an accommodation cavity. The isolation cavity can be used to store cards with near-field communication functions such as RFID cards, and the accommodation cavity can be used to store ordinary cards. This way can prevent criminals from stealing relevant information of RFID cards and is beneficial to protecting the user's RFID cards. Secondly, through the connection between the first dial and the first push plate, and the connection between the second dial and the second push plate, the first dial and the second dial can drive the first push plate and the second push plate to move in the isolation cavity and the accommodation cavity respectively under the operation of the user, so as to drive the cards to extend out of or enter the housing, which is convenient for the user to take the card and is beneficial to improving the user experience. In addition, the first step and the second step formed on the first push plate and the second push plate are respectively used to support the cards, so that multiple cards can be presented in a staggered form in front of the user after extending out of the housing, which is convenient for the user to accurately select the required RFID card.
[0028] The above description is only an overview of the technical solutions of the embodiments of the present utility model. In order to be able to understand the technical means of the embodiments of the present utility model more clearly, it can be implemented according to the content of the specification. And in order to make the above and other purposes, features and advantages of the embodiments of the present utility model more obvious and understandable, the specific embodiments of the present utility model are specifically given below. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] The drawings are only used to illustrate the embodiments and are not considered as a limitation to the present utility model. And throughout the drawings, the same reference numerals are used to represent the same components. In the drawings:
[0030] Figure 1It is a schematic structural diagram of an RFID card wallet provided by the present utility model;
[0031] Figure 2 It is another schematic structural diagram of an RFID card wallet provided by the present utility model;
[0032] Figure 3 It is provided by the present utility model Figure 2 The enlarged schematic diagram of part A in
[0033] Figure 4 It is provided by the present utility model Figure 2 The enlarged schematic diagram of part B in
[0034] In the figure:
[0035] 100 housing, 110 isolation cavity, 120 accommodation cavity, 130 first cover, 140 second cover, 150 storage groove, 160 bracket;
[0036] 200 shielding plate;
[0037] 300 first push plate, 301 first connecting part, 310 first step, 320 first dialing block, 330 first plate body, 340 first elastic sheet;
[0038] 400 second push plate, 401 second connecting part, 410 second step, 420 second dialing block, 430 second plate body, 440 second elastic sheet. Specific embodiments
[0039] Hereinafter, the exemplary embodiments of the present utility model will be described in more detail with reference to the accompanying drawings. Although the exemplary embodiments of the present utility model are shown in the drawings, it should be understood that the present utility model can be implemented in various forms and should not be limited by the embodiments set forth herein.
[0040] Referring to Figures 1-4 As shown, the present utility model provides an RFID card wallet, including a housing 100, a shielding plate 200, a first push plate 300, a second push plate 400, a first dialing block 320 and a second dialing block 420. Among them, the housing 100 has a taking and placing space (not marked in the figure), and the shielding plate 200 is arranged in the taking and placing space to divide the taking and placing space into an isolation cavity 110 and an accommodation cavity 120; the first push plate 300 is located in the isolation cavity 110 and has a first step 310 formed at its bottom, and the second push plate 400 is located in the accommodation cavity 120 and has a second step 410 formed at its bottom; the first dialing block 320 is connected to the side wall of the first push plate 300 to drive the first step 310 to move along the dialing direction of the first dialing block 320, and the second dialing block 420 is connected to the side wall of the second push plate 400 to drive the second step 410 to move along the dialing direction of the second dialing block 420.
[0041] It should be noted that the dimensions of the housing 100 are not limited in this application. When designing the housing 100, those skilled in the art can set it with reference to the dimensions of existing RFID cards. On the one hand, the shielding plate 200 can divide the housing 100 into an isolation chamber 110 and a receiving chamber 120, and there can be multiple cards stored in the isolation chamber 110 and the receiving chamber 120, such as 6, 8, etc.; on the other hand, the shielding plate 200 is used to isolate the communication signal of RFID, and it can be a single-layer plate made of materials such as copper foil, aluminum foil, metal mesh, metal film, carbon fiber, conductive polymer, etc., or a composite plate made of at least two of the materials such as copper foil, aluminum foil, metal mesh, metal film, carbon fiber, conductive polymer, etc. The structure of the shielding plate 200 is not limited in this application.
[0042] It also should be noted that the first shifting block 320 and the second shifting block 420 are components used to drive the first push plate 300 and the second push plate 400. To facilitate the user's operation of the first shifting block 320 and the second shifting block 420. Preferably, by setting anti-slip parts on the surfaces of the first shifting block 320 and the second shifting block 420, the friction between the user's fingers and the first shifting block 320 and the second shifting block 420 can be increased, so as to greatly prevent the situation of slipping when the user operates the first shifting block 320 and the second shifting block 420, and further improve the user experience. Among them, the anti-slip parts can be anti-slip ribs, anti-slip grooves, etc. The specific structure of the anti-slip parts is not limited in this application.
[0043] Regarding the specific number of steps provided for the first step 310 and the second step 410, it can be set according to the maximum number of cards that can be stored in the isolation chamber 110 and the receiving chamber 120, so that multiple steps can respectively support multiple cards. The specific number of steps of the first step 310 and the second step 410 is not limited in this application.
[0044] The RFID card wallet provided by the present utility model, firstly, through the arrangement of the shielding plate 200, the card placement space inside the housing 100 can be divided into an isolation cavity 110 and a containing cavity 120. The isolation cavity 110 can be used to store cards with near-field communication functions such as RFID cards, and the containing cavity 120 can be used to store ordinary cards. This method can prevent criminals from stealing relevant information of RFID cards and is beneficial to protecting the user's RFID cards. Secondly, through the connection between the first dial block 320 and the first push plate 300, and the connection between the second dial block 420 and the second push plate 400, the first dial block 320 and the second dial block 420 can drive the first push plate 300 and the second push plate 400 to move in the isolation cavity 110 and the containing cavity 120 respectively under the operation of the user, so as to drive the cards to extend out of or enter the housing 100, which is convenient for the user to take the cards and beneficial to improving the user experience. In addition, the first step 310 and the second step 410 formed on the first push plate 300 and the second push plate 400 are respectively used to support the cards, so that after multiple cards extend out of the housing 100, they can be presented to the user in a staggered form, which is convenient for the user to accurately select the required RFID card.
[0045] In some embodiments, referring to Figure 2 and Figure 4 As shown, the side wall of the housing 100 is provided with a first sliding groove (not marked in the figure) and a second sliding groove (not marked in the figure) respectively communicating with the isolation cavity 110 and the containing cavity 120; the first dial block 320 and the second dial block 420 are respectively matched with the first sliding groove and the second sliding groove, so that the first dial block 320 moves along the extension direction of the first sliding groove, and the second dial block 420 moves along the extension direction of the second sliding groove.
[0046] Through the arrangement of the first sliding groove and the second sliding groove, the first dial block 320 and the second dial block 420 can move along the extension directions of the first sliding groove and the second sliding groove respectively, which is beneficial to the movement of the first push plate 300 and the second push plate 400 in the isolation cavity 110 and the containing cavity 120, and further facilitates the cards to enter or extend out of the housing 100 more smoothly.
[0047] In some embodiments, referring to Figure 4 As shown, the side walls of the first push plate 300 and the second push plate 400 are respectively provided with a first connecting portion 301 and a second connecting portion 401, and the bottoms of the first dial block 320 and the second dial block 420 are respectively provided with a first assembling portion (not shown in the figure) and a second assembling portion (not shown in the figure); the first connecting portion 301 is matched with the first assembling portion, and the second connecting portion 401 is matched with the second assembling portion to realize the connection between the first dial block 320 and the first push plate 300, and between the second dial block 420 and the second push plate 400.
[0048] Through the cooperation between the first connecting portion 301 and the first assembling portion, and the cooperation between the second connecting portion 401 and the second assembling portion, the detachable connection between the first shifting block 320 and the first pushing plate 300, and between the second shifting block 420 and the second pushing plate 400 can be realized. This detachable connection method facilitates the user to maintain and replace the components inside the card pack.
[0049] Optionally, the first connecting portion 301 is a first main tooth, and the first assembling portion is a first sub-tooth that cooperates with the first main tooth; the second connecting portion 401 is a second main tooth, and the second assembling portion is a second sub-tooth that cooperates with the second main tooth.
[0050] This way of matching the main tooth and the sub-tooth has a simple structure, stable transmission, and the user can adjust the movement stroke of the first pushing plate 300 and the second pushing plate 400 by adjusting the matching position of the sub-tooth on the main tooth, so as to make the distance that the card extends out of the housing 100 adjustable.
[0051] In addition, the first connecting portion 301 and the second connecting portion 401 can also be connecting holes, and the first assembling portion and the second assembling portion can be pin posts that are inserted and matched with the connecting holes; alternatively, the first connecting portion 301 and the second connecting portion 401 can be clamping grooves, and the first assembling portion and the second assembling portion can be buckles that are clamped and matched with the clamping grooves. The present application does not limit the specific structures of the first connecting portion 301, the second connecting portion 401, the first assembling portion, and the second assembling portion.
[0052] In some embodiments, continue to refer to Figure 4 As shown, the first pushing plate 300 includes a first plate body 330 and a first elastic sheet 340. The first step 310 is arranged at the bottom of the first plate body 330. The first elastic sheet 340 is connected to the first plate body 330, and a first clamping area is formed between the first elastic sheet 340 and the first plate body 330; the second pushing plate 400 includes a second plate body 430 and a second elastic sheet 440. The second step 410 is arranged at the bottom of the second plate body 430. The second elastic sheet 440 is connected to the second step 410, and a second clamping area is formed between the second elastic sheet 440 and the second plate body 430.
[0053] Through the arrangement of the first elastic sheet 340 and the second elastic sheet 440, the cards located in the isolation cavity 110 and the accommodation cavity 120 can be clamped, which is beneficial to improving the fixing effect of the card pack on the cards and can prevent the cards from easily falling out of the card pack.
[0054] Further, both the first elastic piece 340 and the second elastic piece 440 can be multiple. The multiple first elastic pieces 340 are evenly arranged along the extending direction of the first step 310, and the multiple second elastic pieces 440 are evenly arranged along the extending direction of the second step 410. The arrangement of the multiple first elastic pieces 340 and the multiple second elastic pieces 440 can further improve the clamping effect of the card pack on the cards. Among them, the first elastic piece 340 and the second elastic piece 440 can be metal elastic pieces, or rubber elastic pieces, silica gel elastic pieces, etc.
[0055] In some embodiments, an isolation layer (not shown in the figure) is provided on the inner wall of the housing 100, and an isolation cavity 110 is formed by enclosing between the isolation layer and the shielding plate 200. In order to improve the isolation effect of the isolation cavity 110 on the RFID card radio frequency signal, in addition to shielding the radio frequency signal transmitted from one side of the RFID card through the setting of the shielding plate 200, the radio frequency signal transmitted from the other side of the RFID card is also shielded by the isolation layer disposed opposite to the shielding plate 200, so that the shielding effect of the isolation cavity 110 is greatly improved. Among them, the isolation layer can be copper foil, aluminum foil, metal mesh, metal film, carbon fiber, conductive polymer, etc., and the present application does not limit the specific material of the isolation layer.
[0056] In some embodiments, referring to Figures 1-3 As shown, the card pack further includes a first cover 130 and a second cover 140 that are respectively rotatably connected to the housing 100, and are respectively used to open or close the isolation cavity 110, and to open or close the accommodation cavity 120. Among them, the first cover 130 and the housing 100 can be connected by a first rotating shaft (not marked in the figure), and the second cover 140 and the housing 100 can be connected by a second rotating shaft (not marked in the figure).
[0057] In order to enable the first cover 130 and the second cover 140 to automatically reset after the user takes the card, and realize the automatic closing of the isolation cavity 110 and the accommodation cavity 120 by the first cover 130 and the second cover 140. Preferably, the first rotating shaft and the second rotating shaft can also be provided with torsion springs (not marked in the figure). Through the rotational elastic force of the torsion springs, the first cover 130 and the second cover 140 can be automatically reset.
[0058] In some embodiments, referring to Figure 1 and Figure 2 As shown, the card pack further includes a bracket 160. A receiving groove 150 is formed in the rear wall of the housing 100, and the bracket 160 is rotatably connected to the receiving groove 150. On the one hand, through the setting of the bracket 160, the card pack can have the function of a mobile phone bracket 160, expanding the use of the card pack; on the other hand, the receiving groove 150 formed on the housing 100 can be used to receive the bracket 160, which is not only beneficial to the miniaturization of the volume of the card pack, but also beneficial to improving the aesthetic degree of the card pack.
[0059] In the description provided herein, a number of specific details are set forth. However, it will be understood that embodiments of the present invention may be practiced without these specific details. Similarly, in order to streamline the present invention and assist in understanding one or more of the various inventive aspects, in the foregoing description of exemplary embodiments of the present invention, the various features of the embodiments of the present invention are sometimes grouped together in a single embodiment, figure, or description thereof. Among them, the claims following the specific implementation manners are hereby expressly incorporated into the specific implementation manners, and each claim itself is taken as a separate embodiment of the present invention.
[0060] It should be noted that the above embodiments illustrate rather than limit the present invention, and alternative embodiments may be designed by those skilled in the art without departing from the scope of the appended claims. In the claims, any reference signs placed between parentheses shall not be construed as limiting the claim. The word "comprising" does not exclude the presence of elements or steps not listed in the claim. The word "a" or "an" preceding an element does not exclude the presence of a plurality of such elements. The present invention may be implemented by means of hardware including several different elements and by means of a suitably programmed computer. In a unit claim listing several devices, several of these devices may be embodied by the same item of hardware. The use of the words first, second, and third, etc. does not denote any order. These words may be interpreted as names. The steps in the above embodiments, unless otherwise specified, should not be construed as limiting the order of execution.
Claims
1. An RFID card package, characterized in that: include: A housing having a pick-and-place space; A shielding plate disposed in the access space, used to separate the access space into an isolation cavity and a receiving cavity; A first push plate located in the isolation chamber has a first step formed at the bottom thereof; A second push plate located in the accommodating cavity has a second step formed at the bottom thereof; A first shifting block connected to a side wall of the first push plate, for driving the first step to move along a shifting direction of the first shifting block; The second shifting block is connected to the side wall of the second push plate to drive the second step to move along the shifting direction of the second shifting block.
2. The RFID card package according to claim 1, characterized in that: The side wall of the shell is provided with a first slide groove and a second slide groove respectively connected with the isolation cavity and the accommodating cavity; The first shift block and the second shift block cooperate with the first slide slot and the second slide slot respectively, so that the first shift block moves along the extension direction of the first slide slot, and the second shift block moves along the extension direction of the second slide slot.
3. The RFID card package according to claim 2, characterized in that: The side wall of the first push plate and the side wall of the second push plate are respectively provided with a first connecting portion and a second connecting portion, and the bottom of the first shift block and the bottom of the second shift block are respectively provided with a first assembling portion and a second assembling portion; The first connecting portion cooperates with the first assembling portion, and the second connecting portion cooperates with the second assembling portion, so as to realize the connection between the first shifting block and the first push plate, and the connection between the second shifting block and the second push plate.
4. The RFID card package according to claim 3, characterized in that: The first connecting portion is a first main tooth, and the first assembling portion is a first auxiliary tooth matched with the first main tooth; The second connecting portion is a second main tooth, and the second assembling portion is a second auxiliary tooth matched with the second main tooth.
5. The RFID card package according to claim 1, characterized in that: The first push plate includes a first plate body and a first elastic sheet, the first step is arranged at the bottom of the first plate body, the first elastic sheet is connected to the first plate body, and a first clamping area is formed between the first elastic sheet and the first plate body; The second push plate includes a second plate body and a second elastic sheet. The second step is arranged at the bottom of the second plate body. The second elastic sheet is connected to the second step. A second clamping area is formed between the second elastic sheet and the second plate body.
6. The RFID card package according to claim 5, characterized in that: There are a plurality of the first elastic pieces and a plurality of the second elastic pieces, and the plurality of the first elastic pieces are evenly distributed along the extension direction of the first step, and the plurality of the second elastic pieces are evenly distributed along the extension direction of the second step.
7. The RFID card package according to claim 1, characterized in that: An isolation layer is disposed on the inner wall of the shell, and the isolation layer and the shielding plate are enclosed to form the isolation cavity.
8. The RFID card package according to claim 7, characterized in that: The card package further comprises a first stop cover and a second stop cover respectively rotatably connected to the shell, so as to be respectively used for opening or closing the isolation cavity and for opening or closing the accommodating cavity.
9. The RFID card package according to claim 1, characterized in that: The surface of the first shift block and the surface of the second shift block are both provided with anti-slip portions.
10. The RFID card package according to claim 1, characterized in that: The card package also includes a bracket, a storage slot is provided on the rear wall of the shell, and the bracket is rotatably connected to the storage slot.