Multifunctional card insertion type learning machine
By setting up a card insertion area, a card reading area, a video output component, an audio output component and a keyboard input component on the learning machine, the problem of single function of the learning machine is solved, and rich learning machine functions and good user experience are achieved.
Patent Information
- Application Number
- CN202422331211.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-09-24
AI Technical Summary
Existing learning machines have single functions and few buttons, which are difficult to meet students' learning needs. In particular, when looking up unfamiliar words, they need to use other devices to search, which results in a poor user experience.
A multifunctional card-insertion learning machine is designed, which includes a card insertion area, a card reading area, a video output component, an audio output component and a keyboard input component. Card information is recognized by an infrared light component, and sufficient key areas are set in the shell to enrich the functions.
It realizes the multi-purpose use of the learning machine, provides audio and video interaction, enriches the functions of the learning machine, avoids the expansion of the device size, and improves the user's learning experience.
Smart Images

Figure CN223333444U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of learning supplies, and in particular discloses a multifunctional card-insertion learning machine. Background Art
[0002] A learning machine is an electronic teaching product and a relatively popular portable learning device. Common learning machines are mostly in the form of punch-in learning machines, which recognize the information on the learning card through a certain recognition device.
[0003] However, the functions of learning machines currently on the market are generally relatively simple. Most of them only have audio functions, or audio and video functions. Some devices provide button functions, but in order to avoid increasing the size of the learning machine, the number of buttons on the learning machine is small, usually only one or two. As a result, it is difficult to input information into the learning machine for interaction through buttons, which makes it difficult to meet students' learning requirements. For example, when encountering unfamiliar words that need to be looked up during English learning, other devices are also needed to search, resulting in a poor user experience. Utility Model Content
[0004] The utility model provides a multifunctional card-insertion type learning machine, aiming to solve the problem of single function of the existing card-insertion type learning machine.
[0005] The utility model provides a multifunctional card-insertion learning machine, which is characterized by comprising:
[0006] The housing is provided with a card insertion area and a card reading area, the card reading area is provided with a light transmission hole, a circuit board and an infrared light component electrically connected to the circuit board are provided in the housing, and the light transmission hole is directly opposite to the infrared light component;
[0007] A video output component is disposed on the outer surface of the housing and is electrically connected to the circuit board;
[0008] An audio output component is disposed in the housing and electrically connected to the circuit board;
[0009] The keyboard input component matches the size of the card insertion area and covers the card insertion area, and the keyboard input component is electrically connected to the circuit board.
[0010] As a further improvement of the present invention, the shell includes an upper shell, a lower shell and a cover plate. The upper shell and the lower shell are covered to form a cavity. The circuit board and the infrared light component are arranged in the cavity. The cover plate is covered on the upper surface of the upper shell. The cover plate is provided with a card insertion window facing the card insertion area and a baffle facing the card reading area. The baffle plate and the shell form a accommodating cavity with an open side, and the opening side of the accommodating cavity is adjacent to the card insertion area.
[0011] As a further improvement of the present invention, the infrared light assembly includes a lamp board and a plurality of infrared light sensors arranged on the lamp board. The infrared light sensors face the light-transmitting holes, and the lamp board and the circuit board are electrically connected by a flat cable.
[0012] As a further improvement of the present invention, shock-absorbing foam is provided on the cable.
[0013] As a further improvement of the present invention, a card sensing component is further provided on the light board, and the card sensing component extends through the housing to the card reading area.
[0014] As a further improvement of the present invention, anti-collision silica gel is provided on the corner of the housing adjacent to the video output component.
[0015] As a further improvement of the present invention, protective silica gel is provided on one side of the longer side of the housing adjacent to the video output component.
[0016] As a further improvement of the present invention, the keyboard input component is transparently arranged, and the keyboard input component extends from the card insertion area to the card reading area and covers the light transmission hole.
[0017] As a further improvement of the present invention, a concave portion is provided on a side of the card insertion area away from the card reading area.
[0018] As a further improvement of the present invention, a battery electrically connected to the circuit board is further provided in the shell, and a charging interface is also provided on the circuit board, and the charging interface extends through the shell to the outside.
[0019] The beneficial effects achieved by the utility model are:
[0020] The utility model provides a multifunctional card-insertion type learning machine, which comprises a card-insertion area and a card-reading area arranged on a shell, a light-transmitting hole arranged in the card-reading area, a circuit board and an infrared light component electrically connected to the circuit board arranged in the shell, and the light-transmitting hole facing the infrared light component, a video output component arranged on the outer surface of the shell and electrically connected to the circuit board, an audio output component arranged in the shell and electrically connected to the circuit board, a keyboard input component matched in size to the card-insertion area and arranged to cover the card-insertion area, thereby enabling the multifunctional card-insertion type learning machine to provide audio and video interaction, and also to interact through a keyboard, thereby enriching the functions of the learning machine and realizing the multi-purpose use of the learning machine, and arranging the keyboard input component in the card-insertion area, so that there is sufficient area to set multiple keys, and no other area needs to be occupied, thereby enriching the functions of the learning machine while avoiding expanding the size of the learning machine. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the multifunctional card-insertion learning machine of the present utility model;
[0022] Figure 2 This is a schematic diagram of the exploded structure of an embodiment of the multifunctional card-insertion learning machine of the present utility model;
[0023] Figure 3 This is a structural diagram of an infrared light component of an embodiment of the multifunctional card-insertion learning machine of the present utility model;
[0024] Figure 4 This is a partial cross-sectional structural diagram of an embodiment of the multifunctional card-inserting learning machine of the present utility model;
[0025] Figure 5 This is a structural schematic diagram of the lower shell of an embodiment of the multifunctional card-insertion learning machine of the present utility model. DETAILED DESCRIPTION
[0026] In order to better understand the above technical solution, the above technical solution will be described in detail below with reference to the accompanying drawings and specific implementation methods.
[0027] Figure 1 and Figure 2 The following is a schematic diagram showing the structure of an embodiment of the multifunctional card-insertion learning machine of the present utility model. Figure 1 It is a schematic diagram of the overall structure. Figure 2 This is a schematic diagram of the decomposition structure. Figure 1 and Figure 2 As shown, the multifunctional card-insertion learning machine includes: a shell 1, a video output component 2, an audio output component 3 and a keyboard input component 4.
[0028] The housing 1 is provided with a card insertion area 11 and a card reading area 12 , the card reading area 12 is provided with a light-transmitting hole 13 , a circuit board 5 and an infrared light component 6 electrically connected to the circuit board 5 are provided in the housing 1 , and the light-transmitting hole 13 faces the infrared light component 6 .
[0029] Specifically, the card insertion area 11 provides a space for inserting a card. This area is sized to fit the card and is not obstructed. This prevents the card from moving or falling out once inserted, while also allowing the user to easily view the card contents. The card reading area 12 is a semi-obscured area. When a card with a barcode containing card information is inserted into this area, infrared light emitted by the transmitting end of the infrared light assembly 6 passes through the light-transmitting hole 13 and strikes the barcode area of the card. The receiving end of the infrared tube assembly receives the infrared light signal reflected by the barcode area and identifies the relevant card information based on the infrared light signal.
[0030] The video output component 2 is disposed on the outer surface of the housing 1 and is electrically connected to the circuit board 5 .
[0031] Specifically, the video output component 2 can output video images to the user to improve the interactivity with the user. For example, the video output component 2 can be used to play card-related image content for the user to watch, thereby enriching the user's learning experience.
[0032] The audio output component 3 is disposed in the housing 1 and electrically connected to the circuit board 5 .
[0033] Specifically, the audio output component 3 is mainly used to play audio information related to the content in the card to facilitate user learning and memorization.
[0034] The keyboard input component 4 matches the card insertion area 11 in size and covers the card insertion area 11 . The keyboard input component 4 is electrically connected to the circuit board 5 .
[0035] Specifically, the size of the keyboard input component 4 matches the size of the card insertion area 11, so that the keyboard input component 4 covers the surface of the card insertion area 11. There is no need to find a separate location to set up the keyboard. The card insertion area 11 is usually larger and can provide enough space to set up more keys. The more keys there are, the more diversified the information that can be input, and the more functions the learning machine can realize, thereby making the learning machine more functional.
[0036] The card-insertion multifunctional learning machine of this embodiment is provided with a card-insertion area 11 and a card-reading area 12 on the shell 1, a light-transmitting hole 13 is provided in the card-reading area 12, a circuit board 5 and an infrared light component 6 electrically connected to the circuit board 5 are provided in the shell 1, and the light-transmitting hole 13 is opposite to the infrared light component 6, the video output component 2 is provided on the outer surface of the shell 1 and is electrically connected to the circuit board 5, the audio output component 3 is provided in the shell 1 and is electrically connected to the circuit board 5, the keyboard input component 4 is matched in size with the card-insertion area 11 and is provided to cover the card-insertion area 11, so that the multifunctional card-insertion learning machine can provide audio and video interaction, and can also interact through the keyboard, thereby enriching the functions of the learning machine and realizing the multi-purpose of the learning machine. Moreover, the keyboard input component 4 is provided in the card-insertion area 11, and there is sufficient area to set multiple keys, without occupying other areas, thereby enriching the functions of the learning machine while avoiding expanding the size of the learning machine.
[0037] Further, such as Figure 2 As shown, the shell 1 includes an upper shell 14, a lower shell 15 and a cover 16. The upper shell 14 and the lower shell 15 are covered to form a cavity. The circuit board 5 and the infrared light component 6 are arranged in the cavity. The cover 16 covers the upper surface of the upper shell 14. The cover 16 is provided with a card insertion window 161 facing the card insertion area 11 and a baffle 162 facing the card reading area 12. The baffle 162 and the shell 1 form a accommodating cavity with an open side, and the opening side of the accommodating cavity is adjacent to the card insertion area 11.
[0038] Specifically, it should be understood that the housing 1 sequentially arranges a functional area 17, a card insertion area 11, and a card reading area 12 side by side, wherein the circuit board 5 is arranged in the cavity at the functional area 17, and the infrared light component 6 is arranged in the cavity at the card reading area 12. The size of the card insertion window 161 of the cover 16 matches the size of the card insertion area 11 and is arranged just around the edge of the card insertion area 11, thereby limiting the position of the inserted card. The shielding plate 162 is arranged opposite the card reading area 12, and the side edges of the shielding plate 162 just surround the three sides of the card reading area 12 to form a accommodating cavity structure, leaving only one side adjacent to the card insertion area 11 open, so that one end of the card inserted into the card insertion area 11 is inserted into the card reading area 12 through the opening, and then the infrared light emitted by the infrared light component 6 passes through the light-transmitting hole 13 to illuminate the identification code of the card for card recognition.
[0039] Further, such as Figure 3 and Figure 5 As shown, the infrared light assembly 6 includes a lamp board 61 and a plurality of infrared light sensors 62 disposed on the lamp board 61 . The infrared light sensors 62 face the light holes 13 . The lamp board 61 is electrically connected to the circuit board 5 via a flat cable 63 .
[0040] Specifically, in order to be able to recognize a sufficient number of cards, in this embodiment, multiple infrared light sensors 62 and light-transmitting holes 13 can be provided, thereby being able to recognize longer identification codes. The longer the identification code, the more cards that can be accommodated. The light board 61 is disposed in the cavity of the card reading area 12, the circuit board 5 is disposed in the cavity of the functional area 17, and a wiring path is provided in the cavity of the card insertion area 11. The cable 63 is disposed in the wiring path, thereby achieving electrical connection between the light board 61 and the circuit board 5.
[0041] Further, such as Figure 5 As shown, shock-absorbing foam 64 is provided on the cable 63 .
[0042] Specifically, the shock-absorbing foam 64 is provided on the flat cable 63 to protect the flat cable 63 and reduce the possibility of damage to the flat cable 63 .
[0043] Further, such as Figure 3 As shown, a card sensing component 65 is also provided on the light board 61 , and the card sensing component 65 passes through the housing 1 and extends to the card reading area 12 .
[0044] Specifically, in order to realize the automatic identification process of the card, a card sensing component 65 is set on the light board 61 in this embodiment. The active button of the card sensing component 65 passes through the shell 1 and extends into the accommodating cavity. When the card is inserted into the accommodating cavity, the card squeezes the active button of the card sensing component 65, and the card sensing component 65 is triggered, sending a trigger signal to the circuit board 5. After receiving the trigger signal, the circuit board 5 controls the infrared sensing component to work and identify the identification code on the card.
[0045] Further, such as Figure 1 As shown, anti-collision silica gel 18 is provided on the corner of the housing 1 adjacent to the video output component 2.
[0046] Specifically, the video output assembly 2 and the audio output assembly 3 are arranged side by side in the functional area 17. Therefore, one long side and one short side of the video output assembly 2 are adjacent to the edge of the housing 1, the other long side is adjacent to the card insertion area 11, and the other short side is adjacent to the audio output assembly 3. The video output assembly 2 includes a display screen. To prevent the display screen from being damaged, anti-collision silicone 18 is provided near the corners of the video output assembly 2. When the learning machine is dropped, the anti-collision silicone 18 provided at these corners can reduce the impact force on the video output assembly 2, thereby reducing the possibility of damage to the display screen.
[0047] Further, such as Figure 1 As shown, a protective silicone 19 is provided on one side of the longer side of the housing 1 adjacent to the video output component 2 .
[0048] Specifically, to further protect the display screen, this embodiment provides protective silicone 19 on one side of the housing 1 adjacent to the longer side of the video output assembly 2. The longer side of the video output assembly 2 is also susceptible to damage during a collision. By providing protective silicone 19 on the side of the housing 1 parallel to this longer side, the longer side of the video output assembly 2 is protected during a collision. The shorter side of the video output assembly 2 adjacent to the edge of the housing 1, however, is adjacent to the anti-collision silicone 18 and does not require additional protection.
[0049] Further, such as Figure 4 As shown, the keyboard input component 4 is transparent, and the keyboard input component 4 extends from the card insertion area 11 to the card reading area 12 and covers the light transmission hole 13 .
[0050] Specifically, in order to prevent debris from falling into the shell 1 through the light-transmitting hole 13 or blocking the light-transmitting hole 13, resulting in inaccurate card recognition results, in this embodiment, the keyboard input component 4 is made of a translucent PVC material with good light transmittance. By extending the keyboard input component 4 to the card reading area 12 and covering the light-transmitting hole 13, debris can be prevented from falling into the shell 1 through the light-transmitting hole 13 or blocking the light-transmitting hole 13.
[0051] Further, such as Figure 1 and Figure 2 As shown, a concave portion 111 is provided on a side of the card insertion area 11 away from the card reading area 12 .
[0052] Specifically, an inner recess 111 is provided on a side of the card insertion area 11 away from the card reading area 12 , thereby facilitating the user to remove the inserted card.
[0053] Further, such as Figure 5 As shown, a battery (not shown in the figure) electrically connected to the circuit board 5 is also provided in the housing 1. A charging interface 51 is also provided on the circuit board 5. The charging interface 51 extends through the housing 1 to the outside.
[0054] Specifically, the battery is preferably made of a rechargeable lithium battery, which is used to supply power to the circuit board 5, the video output component 2, the audio output component 3, the keyboard input component 4, and the infrared light component 6. The charging port 51 is used to charge the battery.
[0055] Although preferred embodiments of the present invention have been described, those skilled in the art may make additional changes and modifications to these embodiments once they are aware of the basic inventive concepts. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications that fall within the scope of the present invention. Clearly, those skilled in the art may make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, to the extent such changes and modifications fall within the scope of the claims and their equivalents, the present invention is intended to encompass such changes and modifications.
Claims
1. A multifunctional card-insertion learning machine, characterized in that: It includes: A housing is provided with a card insertion area and a card reading area, the card reading area is provided with a light-transmitting hole, a circuit board and an infrared light component electrically connected to the circuit board are provided in the housing, and the light-transmitting hole is directly opposite to the infrared light component; a video output component, disposed on the outer surface of the housing and electrically connected to the circuit board; an audio output component, disposed in the housing and electrically connected to the circuit board; A keyboard input component is matched in size with the card insertion area and covers the card insertion area, and the keyboard input component is electrically connected to the circuit board.
2. The multifunctional card-insertion learning machine according to claim 1, characterized in that: The shell includes an upper shell, a lower shell and a cover plate, the upper shell and the lower shell are covered to form a cavity, the circuit board and the infrared light component are arranged in the cavity, the cover plate is covered on the upper surface of the upper shell, and a card insertion window facing the card insertion area and a shielding plate facing the card reading area are provided on the cover plate. The shielding plate and the shell form a accommodating cavity with an open side, and the open side of the accommodating cavity is adjacent to the card insertion area.
3. The multifunctional card-insertion learning machine according to claim 1, characterized in that: The infrared light assembly includes a lamp board and a plurality of infrared light sensors arranged on the lamp board. The infrared light sensors face the light-transmitting holes. The lamp board and the circuit board are electrically connected by a flat cable.
4. The multifunctional card-insertion learning machine according to claim 3, characterized in that: Shock-absorbing foam is provided on the cable.
5. The multifunctional card-insertion learning machine according to claim 3, characterized in that: The light board is also provided with a card sensing component, and the card sensing component extends through the housing to the card reading area.
6. The multifunctional card-insertion learning machine according to claim 1, characterized in that: Anti-collision silica gel is provided on the corner of the shell adjacent to the video output component.
7. The multifunctional card-insertion learning machine according to claim 1 or 6, characterized in that: A protective silica gel is provided on one side of the shell body adjacent to the longer side of the video output component.
8. The multifunctional card-insertion learning machine according to claim 1, characterized in that: The keyboard input component is transparently arranged, and the keyboard input component extends from the card insertion area to the card reading area and covers the light transmission hole.
9. The multifunctional card-insertion learning machine according to claim 1, characterized in that: A concave portion is provided on a side of the card insertion area away from the card reading area.
10. The multifunctional card-insertion learning machine according to claim 1, characterized in that: A battery electrically connected to the circuit board is also provided in the shell, and a charging interface is also provided on the circuit board. The charging interface extends through the shell to the outside.