Radio frequency identification device
By setting card slots and insert blocks on the top of the radio frequency identification device, setting support components on both sides and using shock absorbing springs, the problems of inconvenient pick-up and placement of magnetic cards in the device and poor stability of the equipment are solved, achieving higher convenience and safety in use.
Patent Information
- Application Number
- CN202420186132.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-25
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-01-25
AI Technical Summary
The existing RFID devices are inconvenient to pick up and place the magnetic card when reading it, which can easily lead to falling of the magnetic card. The equipment has poor stability and low safety in the vertical state.
A wireless radio frequency identification device is designed, including a body, an identification component, a support component, a base and a shock absorbing component. By setting the card slot and insertion block on the top, the stable insertion and extraction of the magnetic card is achieved; supporting components are provided on both sides, and the stability of the equipment is enhanced by using shock absorbing springs.
It solves the problem of inconvenience in picking and placement of magnetic cards when reading, reduces the risk of magnetic cards falling, and improves the safety of equipment by enhancing the stability of the equipment.
Smart Images

Figure CN222897431U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of radio frequency identification, and in particular relates to a wireless radio frequency identification device. Background Art
[0002] Radio frequency identification, also known as wireless radio frequency identification, is a communication technology that can identify specific targets and read and write related data through radio signals without establishing mechanical or optical contact between the identification system and the specific target. It is one of the core technologies of the Internet of Things. It is embedded in various documents we use, such as identity cards, passports and even work badges, through electronic tags to identify one's own identity. At the same time, it solves many problems such as logistics and transportation, and highway tolls.
[0003] In the existing radio frequency identification device, the vertical standing function of the device is generally achieved only by combing the support plate, but the stability after placement is poor. The device is easy to overturn when encountering collision and shaking, thereby causing damage to internal parts. At the same time, the device requires manual control to place the magnetic card in the fitting position, which is inconvenient when taking it out and the magnetic card is easy to fall. In view of the above problems, a wireless radio frequency identification device is provided here to solve the above defects and shortcomings. Summary of the invention
[0004] In order to solve the above-mentioned technical defects in the prior art, the utility model proposes a wireless radio frequency identification device, which aims to improve the poor convenience of taking and placing magnetic cards when reading, and the problem that the magnetic card is easily dropped due to unstable card holding. At the same time, the stability of the device is poor in the vertical state, and the safety of the device is low.
[0005] The technical solution to achieve the purpose of this utility model is:
[0006] A wireless radio frequency identification device comprises a body, an identification component, a support component, a base and a shock absorbing component;
[0007] The identification component is arranged inside the body, support components are arranged on both sides of the body, a base is arranged at the bottom of the body, and a shock absorbing component is arranged inside the base.
[0008] Furthermore, the identification component includes a radio frequency scanning area, a slide rail, an insert block, a card slot, a shell cover, and a drawer plate;
[0009] The radio frequency scanning area is arranged inside the body, a slide rail is arranged at one end of the radio frequency scanning area, and the plug block is arranged on the slide rail;
[0010] The card slot is arranged on the top of the body, the shell cover is arranged on the side of the body, a drawer plate is arranged on the bottom of the shell cover, and the drawer plate is arranged on the slide rail.
[0011] Furthermore, the shell cover and the drawer plate are integrally arranged.
[0012] Furthermore, the support assembly includes a clamping block, a support rod, and a support base pad;
[0013] The clamping blocks are arranged in two groups, which are respectively connected to the two sides of the body. The clamping blocks on the two sides are respectively connected to the support rods, and a support base pad is arranged at the bottom of the support rods.
[0014] Furthermore, the support assembly also includes a threaded locking member;
[0015] The support rod is a telescopic rod, and the threaded locking piece is arranged on one side of the support rod and is used to lock the support rod.
[0016] Furthermore, the shock absorbing assembly includes a support plate and a shock absorbing spring;
[0017] The support plate is slidably connected to the base, and a plurality of shock-absorbing springs are arranged inside the support plate.
[0018] Furthermore, it also includes a casing and a dust shield;
[0019] The sleeve is arranged on the top of the main body, and the dust shielding plate is slidably connected inside the sleeve.
[0020] Furthermore, a locking knob is provided on the housing;
[0021] The locking knob is arranged through the casing and is used to limit the position of the dust shielding plate.
[0022] Furthermore, a display screen is also provided on the main body, and the display screen is electrically connected to the identification component.
[0023] Furthermore, a charging port is provided on the body for charging the device.
[0024] Compared with the prior art, the utility model has the following significant advantages:
[0025] (1) The solution of the utility model is to insert the magnetic card to be scanned into the top card slot, limit the position by the insert block, and after the scanning and identification is completed, manually pull the drawer plate out of the interior of the device body from the slide rail to complete the magnetic card placement and removal work, thereby solving the existing problem of the inconvenience of the user taking the magnetic card after the magnetic card is attached and identified during the magnetic card radio frequency identification scanning;
[0026] (2) The solution of the utility model sets support components on both sides of the device to strengthen the vertical stability of the overall structure. By pulling out the bottom support plate and using the shock-absorbing spring to provide a buffering effect for the support plate, the stabilization effect is further enhanced.
[0027] The utility model is further described in detail below in conjunction with the accompanying drawings and specific implementation methods. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1It is a schematic diagram of the three-dimensional structure of the wireless radio frequency identification device of the present utility model.
[0029] Figure 2 It is a side view of the wireless radio frequency identification device of the present utility model.
[0030] Figure 3 It is a partial schematic diagram of the identification component of the utility model.
[0031] Figure 4 It is a rear view of the wireless radio frequency identification device of the present utility model. DETAILED DESCRIPTION
[0032] It is easy to understand that according to the technical solution of the utility model, without changing the essential spirit of the utility model, a person skilled in the art can imagine a variety of implementation methods of the utility model. Therefore, the following specific implementation methods and drawings are only exemplary descriptions of the technical solution of the present invention, and should not be regarded as the whole of the utility model or as a limitation or limitation of the technical solution of the utility model. On the contrary, the purpose of providing these embodiments is to enable those skilled in the art to understand the utility model more thoroughly. The preferred embodiments of the utility model are described in detail below in conjunction with the accompanying drawings, wherein the drawings constitute a part of this application and are used together with the embodiments of the utility model to illustrate the innovative concept of the present invention.
[0033] Example
[0034] Combination Figure 1 , a wireless radio frequency identification device, comprising a body 1, an identification component 2, a support component 3, a base 4 and a shock absorbing component 5;
[0035] The identification component 2 is arranged inside the body 1 , support components 3 are arranged on both sides of the body 1 , a base 4 is arranged at the bottom of the body 1 , and a shock absorbing component 5 is arranged inside the base 4 .
[0036] The identification component 2 includes a radio frequency scanning area 201, a slide rail 202, an insert block 203, a card slot 204, a shell cover 205, and a drawer plate 206;
[0037] The radio frequency scanning area 201 is arranged inside the body 1, a slide rail 202 is arranged at one end thereof, and the insert block 203 is arranged on the slide rail 202;
[0038] The card slot 204 is arranged on the top of the body 1 , the shell cover 205 is arranged on the side of the body 1 , a drawer plate 206 is arranged on the bottom of the shell cover 205 , and the drawer plate 206 is arranged on the slide rail 202 .
[0039] The shell cover 205 and the drawer plate 206 are integrally arranged.
[0040] The card slot 204 and the insert block 203 are arranged on the same vertical plane, and the magnetic card can be put in through the card slot 204 at the top of the body 1 and inserted into the insert block 203, thereby entering the scanning area of the radio frequency scanning area 201 and completing the radio frequency scanning;
[0041] The volume of the insert block 203 can be made larger to ensure that the magnetic card can be inserted into the insert block 203 after passing through the card slot 204;
[0042] After the scanning is completed, the scanning result can be obtained through the display screen, and the inserting block 203 can be taken out of the main body 1 through the drawer plate 206 , and the magnetic card can be pulled out of the inserting block 203 at this time.
[0043] In addition, when the device is not in use, the body 1 can be sealed by the shell cover 205.
[0044] The support assembly 3 includes a clamp block 301, a support rod 302, and a support base pad 303;
[0045] The clamping blocks 301 are provided in two groups, which are respectively connected to the two sides of the body 1 . The clamping blocks 301 on both sides are respectively connected to the support rods 302 . The bottom of the support rods 302 is provided with a support base pad 303 .
[0046] Furthermore, the support assembly 3 also includes a thread locking member 304;
[0047] The support rod 302 is a telescopic rod, and the threaded locking member 304 is disposed on one side of the support rod 302 for locking the support rod 302 .
[0048] When the device is in use, the angle of the support rod 302 is adjusted through the movable connecting rod, which facilitates the support base pad 303 to contact the ground, thereby completing the support work on both sides of the main device 1 and ensuring the stability of the device in a vertical state. At the same time, grooves are provided on both sides of the main body 1 corresponding to the support rod 302. The support rod 302 is taken out from the grooves on both sides of the main body 1, and the length of the support rod 302 is adjusted as needed. The length is locked and fixed using the threaded locking piece 304 to adapt to different scene support requirements.
[0049] The shock absorbing assembly 5 includes a support plate 501 and a shock absorbing spring 502;
[0050] The support plate 501 is slidably connected to the base 4, and a plurality of shock-absorbing springs 502 are arranged inside the support plate 501; the support plate 501 is slidably connected to the inside of the base 4, and by pulling the support plate 501 out from the inside of the base 4 and using the internal shock-absorbing springs 502 as buffer components, the stability of the vertical placement of the entire device is further enhanced.
[0051] Furthermore, the device also includes a casing 6 and a dust shielding plate 7;
[0052] The casing 6 is arranged on the top of the main body 1 , and a dust shielding plate 7 is slidably connected inside the casing 6 .
[0053] Furthermore, a locking knob 8 is provided on the housing 6;
[0054] The locking knob 8 is arranged through the casing 6 and is used to limit the position of the dust shielding plate 7;
[0055] By pulling the dust shield 7 out of the casing 6 and turning the locking knob 8 to limit the structure of the dust shield 7, dust can be prevented from falling into the RF scanning area 201 through the groove when not in use, thereby affecting the reading status of internal parts.
[0056] The main body 1 is also provided with a display screen 9, which is electrically connected to the identification component 2. In this embodiment, the display screen 9 is also provided with an operation button 10, or the display screen 9 is a touch screen, which can be used to select the identified information.
[0057] Furthermore, a charging port 11 is provided on the body 1 for charging the device.
[0058] When the device is in use, the shell cover 205 is opened, the dust shield 7 is retracted into the inside of the shell 6, and then the magnetic card is placed into the internal radio frequency scanning area 201 through the card slot 204 opened on the top of the body 1, and the magnetic card is connected by the insert block 203 structure. After the scanning is completed, the information is identified through the display screen 9;
[0059] The draw plate 206 is then driven to slide on the slide rail 202, and the draw plate 206 is used to bring the plug block 203 out of the device body 1, so that the magnetic card can be pulled out from the top of the plug block 203 later. When not in use, the card cover 205 is sealed and connected to the rear end of the device body 1. Then the dust shield 7 is pulled out of the sleeve shell 6, and the locking knob 8 is turned to limit the dust shield 7 structure to prevent dust from falling into the RF scanning area 201 through the groove when not in use, affecting the reading state of internal parts. At the same time, the support rod 302 can be taken out from the grooves on both sides of the device body 1, and the length of the support rod 302 can be adjusted as needed. The length is locked and fixed by the threaded locking piece 304, and the support base pad 303 is supported by the ground to complete the vertical placement of the main device 1. By pulling the support plate 501 out of the bottom of the bottom block 4 and using the internal shock-absorbing spring 502 as a buffer component, the stability of the vertical placement of the entire device is further enhanced, and the main device 1 can be charged through the charging port 11 on one side.
[0060] The above embodiments show and describe the basic principles and main features of the utility model. Those skilled in the art should understand that the utility model is not limited by the above embodiments, and the above embodiments and descriptions are only for explaining the principles of the utility model. Without departing from the spirit and scope of the present invention, the utility model may have various changes and improvements, and these changes and improvements fall within the scope of the invention claimed for protection.
Claims
1. A wireless radio frequency identification device, characterized in that: It comprises a body (1), an identification component (2), a support component (3), a base (4) and a shock absorbing component (5); The identification component (2) is arranged inside the body (1), support components (3) are arranged on both sides of the body (1), a base (4) is arranged at the bottom of the body (1), and a shock absorbing component (5) is arranged inside the base (4); The identification component (2) comprises a radio frequency scanning area (201), a slide rail (202), an insert block (203), a card slot (204), a shell cover (205), and a draw plate (206); The radio frequency scanning area (201) is arranged inside the main body (1), a slide rail (202) is arranged at one end thereof, and the insert block (203) is arranged on the slide rail (202); The card slot (204) is arranged on the top of the body (1), the shell cover (205) is arranged on the side of the body (1), a drawer plate (206) is arranged on the bottom of the shell cover (205), and the drawer plate (206) is arranged on the slide rail (202); The support assembly (3) comprises a clamping block (301), a support rod (302), and a support base pad (303); Two groups of the clamping blocks (301) are provided, respectively connected to two sides of the body (1); the clamping blocks (301) on both sides are respectively connected to the support rods (302); and a support base pad (303) is provided at the bottom of the support rods (302).
2. The wireless radio frequency identification device according to claim 1, characterized in that: The shell cover (205) and the drawer plate (206) are integrally arranged.
3. The wireless radio frequency identification device according to claim 1, characterized in that: The support assembly (3) further comprises a thread locking member (304); The support rod (302) is a telescopic rod, and the threaded locking member (304) is arranged on one side of the support rod (302) and is used to lock the support rod (302).
4. The wireless radio frequency identification device according to claim 1, characterized in that: The shock absorbing assembly (5) comprises a support plate (501) and a shock absorbing spring (502); The support plate (501) is slidably connected to the base (4), and a plurality of shock-absorbing springs (502) are arranged inside the support plate (501).
5. The wireless radio frequency identification device according to claim 1, characterized in that: It also includes a casing (6) and a dust shield (7); The casing (6) is arranged on the top of the main body (1), and the dust shielding plate (7) is slidably connected inside the casing (6).
6. The radio frequency identification device according to claim 5, characterized in that: A locking knob (8) is provided on the casing (6); The locking knob (8) is arranged to penetrate the casing (6) and is used to limit the position of the dust shielding plate (7).
7. The radio frequency identification device according to claim 1, characterized in that: A display screen (9) is also provided on the body (1), and the display screen (9) is electrically connected to the identification component (2).
8. The radio frequency identification device according to claim 1, characterized in that: The body (1) is provided with a charging port (11) for charging the device.