Multiple data input / output device for ai data training

WO2026164452A1PCT designated stage Publication Date: 2026-08-06CT5 INC
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
CT5 INC
Filing Date
2026-01-29
Publication Date
2026-08-06

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  • Figure KR2026001730_06082026_PF_FP_ABST
    Figure KR2026001730_06082026_PF_FP_ABST
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Abstract

The present invention relates to a multiple data input / output device for AI data training, the device being communicatively connected to a user terminal so as to perform an input / output function for voice data and a function of capturing and transmitting image data. To this end, the multiple data input / output device for AI data training, according to the present invention, comprises: a body seated on the back of the neck; a first earphone fixed to a first cable connected to one side of the body; a second earphone detachably attached to a second cable connected to the other side of the body; and a camera detachably connected to the first earphone.
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Description

Multi-data I / O device for AI data training

[0001] The present invention relates to a multi-data input / output device for AI data learning that is connected to a user terminal and can perform voice data input / output functions and image data capture and transmission functions.

[0002] Generative AI is an artificial intelligence technology capable of generating new outputs, such as text, images, music, and code, based on input (prompt) by learning from a vast amount of data. This technology operates primarily based on deep learning and large-scale language models (LLM), with representative examples including OpenAI's ChatGPT and Google's Gemini.

[0003] When a generative AI application is installed and run on a smartphone, it connects to a generative AI server, and when the user enters a prompt, the results processed by the generative AI server are output as text, images, etc.

[0004] Meanwhile, most smartphone users can input voice commands via Bluetooth earphones and hear the corresponding feedback when using generative AI services. However, using Bluetooth earphones is limited to transmitting information with small data volumes, such as voice and text, and it is impossible to transmit large amounts of data, such as external information like documents or the surrounding environment.

[0005] Of course, data such as images or videos can be transmitted using a smartphone camera via communication standards like Wi-Fi, which are capable of large-scale data communication. However, using a smartphone camera causes the inconvenience of having to hold the smartphone in your hand along with the earphones.

[0006] In this regard, smart AI glasses equipped with cameras have recently been released, but they exhibit several drawbacks, primarily because they remain in the form of glasses.

[0007] First, there is the inconvenience of having to wear glasses even for people who do not normally wear them.

[0008] Secondly, in the case of glasses-type devices, weight is transferred to the nose, resulting in weight limitations and a shorter usage time.

[0009] Thirdly, since it is equipped with a fixed camera in addition to its glasses-like form, it raises the issue of privacy infringement due to indiscriminate filming.

[0010] Fourth, since the glasses are designed for a single user, it is difficult for two or more people to use a single pair of smart glasses, thus limiting multi-user usage.

[0011] Finally, since it maintains the shape of glasses while outputting sound, bone conduction earphones or regular speakers are used; however, bone conduction earphones have lower bass transmission capabilities compared to standard earphones, and because they operate on the principle of vibrating the bone in contact with the skin, users may experience discomfort depending on their individual needs.

[0012] The present invention was devised to solve the aforementioned problems, and the objective of the present invention is to enable a user to utilize generative AI services by transmitting voice data through a microphone and image or video data through a camera while freely using both hands.

[0013] Another objective of the present invention is to enable multiple users to simultaneously use generative AI services with a single device.

[0014] Another objective of the present invention is to enable the long-term use of generative AI services by increasing battery usage through the utilization of structural advantages.

[0015] Another objective of the present invention is to provide a device that deviates from the conventional form of glasses and can be used freely and conveniently by both users who wear glasses and users who do not wear glasses.

[0016] Another objective of the present invention is to provide a device capable of resolving the issue of unnecessary privacy infringement when collecting video data during the use of generative AI services.

[0017] To this end, a multi-data input / output device for AI data learning according to the present invention comprises a main body that is seated on the back of the neck, a first earphone fixed to a first cable connected to one side of the main body, a second earphone detachably attached to a second cable connected to the other side of the main body, and a camera detachably connected to the first earphone.

[0018] Here, the end of the second cable is provided with a detachable member that allows the second earphone to be attached or detached, and the detachable member is provided with a terminal that supplies power to the second earphone.

[0019] When the attachment surface of the second earphone body contacts the attachment surface of the detachable member, the end surface of the detachable member contacts the stepped wall of the second earphone body, and the end surface of the second earphone body contacts the stepped wall of the detachable member, thereby connecting the detachable member and the second earphone to each other.

[0020] The first earphone body has a connection hole formed therein, and the camera is inserted through the connection hole.

[0021] The camera body comprises a cylindrical first part that is screw-coupled to the connecting hole and a cuboid second part that extends seamlessly from the first part and has a camera module embedded therein, and the camera body is characterized by having a slide fastening member installed therein to secure the camera to the temple of the glasses worn by the user.

[0022] In addition, the main body is characterized by having a space for storing a camera separated from the connection hole.

[0023] The shape of the part of the main body that contacts the back of the neck is formed in an arch shape, and the surface of the contacting part is characterized by having a wave pattern formed thereon.

[0024] In addition, the main body is characterized by including a first communication module that receives voice data generated from the microphone of the second earphone, a second communication module that transmits voice data generated from the microphone of the first earphone and voice data received from the first communication module to a user terminal, and a third communication module that transmits image data generated from the camera to the user terminal.

[0025] In addition, the main body is characterized by including a first communication module that receives voice data generated from the microphone of the second earphone, and a second communication module that transmits voice data generated from the microphone of the first earphone, voice data received from the first communication module, and image data generated from the camera to the user terminal.

[0026] Here, the data received from the user terminal to the second communication module is processed by the processor of the main body, then output from the speaker of the first earphone and output from the speaker of the second earphone through the first communication module.

[0027] As described above, when wearing a multi-data input / output device for AI data learning according to the present invention, the user can use a generative AI service while having a voice conversation with an AI agent, and the user can naturally transmit external visual information, such as surrounding environments or documents, to the AI ​​agent while keeping both hands free.

[0028] The multi-data input / output device for AI data learning according to the present invention can be used without discomfort by people who do not wear glasses, as it deviates from the form of smart AI glasses, and can use a higher capacity battery by shifting the weight distribution to the neck instead of the nose, thereby enabling the use of AI services for a longer period of time compared to existing methods and the collection of a large amount of training data.

[0029] In addition, the multi-data input / output device for AI data learning according to the present invention is composed of a first earphone integrally connected to the main body and a second earphone detachably connected to the main body, so that when a user detaches the second earphone to allow the other person to use it, two people can simultaneously use the generative AI service.

[0030] In addition, the multi-data input / output device for AI data learning according to the present invention has a structure in which a camera can be detachably attached to the first earphone body, so that when external video information is needed and privacy protection is needed, the user can easily and conveniently attach or detach the camera accordingly.

[0031] The multi-data input / output device for AI data learning according to the present invention is composed of a main body and earphones, which can minimize the problem of loss that commonly occurs in conventional wireless earphones. Since the main body is worn securely on the back of the user's neck and the earphones are used in a form that hooks onto the ears, it can provide a trendy effect compared to the glasses form of recently released smart AI glasses, and has the effect of not causing headaches or dizziness problems that often occur in bone conduction earphones applied to smart AI glasses.

[0032] FIG. 1 is a diagram showing the configuration of a smart AI system to which a multi-data input / output device for AI data learning according to the present invention is applied.

[0033] FIG. 2 is a drawing showing the external appearance of a multi-data input / output device for AI data learning according to the present invention.

[0034] FIG. 3 is a diagram showing the internal configuration of a multi-data input / output device for AI data learning according to the present invention.

[0035] FIG. 4 is a diagram showing the structure of a first earphone of a multi-data input / output device for AI data learning according to the present invention.

[0036] FIG. 5 is a diagram showing the structure of the second earphone of a multi-data input / output device for AI data learning according to the present invention.

[0037] FIG. 6 is a diagram showing the main body structure of a multi-data input / output device for AI data learning according to the present invention.

[0038] Hereinafter, embodiments according to the present invention will be described in detail with reference to the attached drawings. The structure of the present invention and the resulting effects will be clearly understood through the following detailed description.

[0039] Prior to the detailed description of the present invention, it should be noted that identical components are indicated by the same reference numerals whenever possible, even if they are shown in different drawings, and that specific descriptions of known components are omitted if it is determined that such descriptions could obscure the essence of the present invention.

[0040] Throughout the specification, when a part is described as "including" a certain component, this means that, unless specifically stated otherwise, it does not exclude other components but may include additional components.

[0041] FIG. 1 shows the configuration of a smart AI system to which a multi-data input / output device for AI data learning according to the present invention is applied, FIG. 2 shows the external appearance of a multi-data input / output device for AI data learning according to the present invention, and FIG. 3 shows the internal configuration of a multi-data input / output device for AI data learning according to the present invention.

[0042] Referring to FIGS. 1 to 3, a multi-data input / output device (100) for AI data learning is connected to a user terminal (200) via short-range communication, and the user terminal (200) is connected to an AI server (300) via a network (a wireless communication network such as a WiFi network or 5G).

[0043] A multi-data input / output device (100) for AI data learning includes a main body (10), a first earphone (20), a second earphone (30), a camera (40), etc.

[0044] The main body (10) is a part that rests on the back of the user's neck, and contains various components such as a PCBA (PCB Assembly), a processor (CPU), memory, a battery, and a communication module. For convenience of explanation, in FIG. 3, the main body (10) is shown to include a first Bluetooth module (101), a second Bluetooth module (102), a Wi-Fi module (103), and a processor (104).

[0045] The first earphone (20) is fixed to a first cable (11) connected to one side of the main body (10), and the second earphone (30) is detachably attached to a second cable (12) connected to the other side of the main body (10). A camera (40) is detachably connected to the first earphone (20).

[0046] A multi-data input / output device (100) for AI data learning and a user terminal (200) transmit and receive data to and from each other via short-range communication, and the user terminal (200) and an AI server (300) transmit and receive data to and from each other via a network.

[0047] An AI application is installed on the user terminal (200). The AI ​​application can perform a generative AI service function that interprets the user's question and provides an answer accordingly, and a data collection function that collects user data for AI learning.

[0048] When an AI application is executed on a user terminal (200), a multi-data input / output device (100) for AI data learning transmits voice data generated from the microphone of the earphones (20, 30) and video data generated from the camera (40) to the user terminal (200).

[0049] Specifically, looking at the operation of the main body (10) of the multi-data input / output device (100) for AI data learning, the processor (104) receives voice data from the first earphone (20) and transmits it to the user terminal (200) through the second Bluetooth module (102).

[0050] When the processor (104) receives voice data from the second earphone (30) through the first Bluetooth module (101), it transmits it to the user terminal (200) through the second Bluetooth module (102).

[0051] Additionally, the processor (104) receives video data from the camera (40) and transmits it to the user terminal (200) via the Wi-Fi module (103). Here, the Wi-Fi module (103) can use Wi-Fi Direct communication as well as standard Wi-Fi.

[0052] The user terminal (200) converts voice data into text and compresses video data and transmits it to the AI ​​server (300).

[0053] The AI ​​server (300) can analyze data received from the user terminal (200) to generate feedback data, and store the data based on whether the user consents, and use it for learning to provide customized services.

[0054] The user terminal (200) transmits feedback data received from the AI ​​server (300) to the multi-data input / output device (100) for AI data learning.

[0055] Specifically, when examining the operation of the main body (10) of the multi-data input / output device (100) for AI data learning, the processor (104) receives feedback data from the user terminal (200) through the second Bluetooth module (102), processes the feedback data, outputs it to the first earphone (20), and transmits it to the second earphone (30) through the first Bluetooth module (101). Then, the feedback data is voice-outputted through the speakers of the first earphone (20) and the second earphone (30).

[0056] In FIG. 3, a second Bluetooth module (102) and a Wi-Fi module (103) are each present, and the second Bluetooth module (102) transmits voice data of the first earphone (20) and the second earphone (30) to the user terminal (200), and the Wi-Fi module (103) transmits image data of the camera (30) to the user terminal (200).

[0057] However, the Wi-Fi module (103) can transmit voice data of the first earphone (20) and the second earphone (30) and video data of the camera (30) to the user terminal (200), and can receive voice data from the user terminal (200).

[0058] That is, according to the embodiment, voice and video data can be transmitted separately by using different communication methods between the multi-data input / output device (100) for AI data learning and the user terminal (200), or voice and video data can be transmitted using a single communication method.

[0059] FIG. 4 shows the structure of a first earphone of a multi-data input / output device for AI data learning according to the present invention, FIG. 5 shows the structure of a second earphone of a multi-data input / output device for AI data learning according to the present invention, and FIG. 6 shows the structure of a main body of a multi-data input / output device for AI data learning according to the present invention.

[0060] Referring to FIGS. 4 through 6, the first earphone (20) body and the second earphone (30) body are composed of a part that rests on the back of the ear and a part that approaches the inside of the ear, and generally have a hook shape. A speaker is built into the part of the first earphone (20) body and the second earphone (30) body that approaches the inside of the ear. The part that approaches the inside of the ear is not inserted into or placed on the inside of the ear, but is positioned around the inside of the ear to transmit sound output from the speaker.

[0061] A connecting hole (21) is formed in the body of the first earphone (20) into which a camera (40) is inserted and connected. Inside the connecting hole (21), a male screw structure (not shown) that is screw-coupled with the camera (40) is installed.

[0062] The camera (40) body is composed of a first part (41) that is inserted into a connecting hole (21) and screw-coupled, and a second part (42) that extends seamlessly from the first part (41) and has a camera module built into it.

[0063] The first part (41) is formed as a cylindrical structure to be inserted into the connecting hole (21), and a female screw structure is installed inside the cylindrical structure to be coupled with a male screw installed in the connecting hole (21). The second part (41) is formed as a structure continuous with the first part (41) and can be configured as a cuboid structure that is different in shape from the cylindrical first part (41).

[0064] The user inserts the first part (41) of the camera (40) into the connection hole (21) of the first earphone (20) and rotates it so that the camera (40) is attached to the first earphone (20). When the camera (40) is attached to the body of the first earphone (20) in this way through screw connection, the camera (40) is electrically connected to the main body (10). Accordingly, image data captured by the camera (40) can be input into the processor (104) of the main body (10) and processed.

[0065] If the camera (40) is not used for reasons such as privacy protection, the user can rotate the camera (40) in the opposite direction to the rotation direction when connected to detach the camera (40) from the body of the first earphone (20) and store it in the space (14) provided in the main body (10).

[0066] Additionally, the camera (40) body is provided with a slide fastening member (43). The slide fastening member (43) is a part that can secure the camera (40) to the temple of the glasses when the user wears glasses. The slide fastening member (43) is installed in a sliding structure on the top of the camera (40) body, and the camera (40) can be secured to the temple of the glasses by having its end in the shape of a bracket and hooking onto the temple of the glasses.

[0067] The body of the second earphone (30) is detachably attached to a detachable member (50) installed at the end of the second cable (12). The body of the second earphone (30) and the detachable member (50) can be fastened by having their respective attachment surfaces (31, 51) in contact with each other.

[0068] That is, a magnet is provided on at least one side of the attachment surface (31) of the body of the second earphone (30) and the attachment surface (51) of the detachable member (50), so that when the two attachment surfaces (31, 51) come into contact, they can be mutually fastened by magnetism.

[0069] Specifically, when the attachment surface (31) of the second earphone (30) body contacts the attachment surface (51) of the detachable member (50), the end surface (53) of the detachable member (50) contacts the step wall (32) of the second earphone (30) body, and by the end surface (33) of the second earphone (30) body contacting the step wall (52) of the detachable member (50), the appearance after the detachable member (50) and the second earphone (30) body are connected becomes identical to the appearance of the first earphone (20) body.

[0070] Although not shown in FIG. 5, each of the two attachment surfaces (31, 51) is provided with a connection terminal for electrical connection. When the detachable member (50) and the body of the second earphone (30) are electrically connected through the connection terminal, the second earphone (30) can receive power from the battery of the main body (10) at all times.

[0071] Meanwhile, the shape of the part (13) that contacts the back of the neck in the main body (10) is formed in an arch shape, and a wave pattern is formed on the surface of the contact part.

[0072] In this way, the lower structure of the main body (10) is configured in an arch shape so that the main body (10) can be stably seated on the back of the neck, and also, by processing the lower contact surface with a wave pattern using a material such as silicone, a breathing space is provided for the contacting skin, thereby preventing sweat from accumulating in the contact area.

[0073] The above description is merely illustrative of the present invention, and various modifications may be made by those skilled in the art without departing from the technical spirit of the present invention.

[0074] Accordingly, the embodiments disclosed in the specification of the present invention are not intended to limit the present invention. The scope of the present invention should be interpreted by the claims below, and all technology within the equivalent scope should also be interpreted as being included within the scope of the present invention.

[0075] The present invention can be widely utilized across the fields of generative AI services, wearable devices, and AI learning data collection devices.

Claims

1. A main body that rests on the back of the neck, and A first earphone fixed to a first cable connected to one side of the main body, and A second earphone detachably attached to a second cable connected to the other side of the main body, and A multi-data input / output device for AI data learning comprising a camera detachably connected to the first earphone.

2. In Paragraph 1, A multi-data input / output device for AI data learning, characterized in that a detachable member is installed at the end of the second cable to allow the second earphone to be attached or detached, and the detachable member is provided with a terminal to supply power to the second earphone.

3. In Paragraph 2, A multi-data input / output device for AI data learning, characterized in that when the attachment surface of the second earphone body contacts the attachment surface of the detachable member, the end surface of the detachable member contacts the step wall of the second earphone body, and the end surface of the second earphone body contacts the step wall of the detachable member, thereby mutually connecting the detachable member and the second earphone.

4. In Paragraph 1, A multi-data input / output device for AI data learning, characterized in that a connection hole is formed in the first earphone body and the camera is inserted through the connection hole.

5. In Paragraph 4, A multi-data input / output device for AI data learning, characterized in that the camera body comprises a cylindrical first part screw-coupled to the connecting hole and a cuboid second part extending seamlessly from the first part and having a camera module embedded therein.

6. In Paragraph 4, A multi-data input / output device for AI data learning, characterized in that the main body is provided with a space for storing a camera separated from a connection hole.

7. In Paragraph 5, A multi-data input / output device for AI data learning, characterized in that the camera body has a slide fastening member installed therein to secure the camera to the temple of the glasses worn by the user.

8. In Paragraph 1, A multi-data input / output device for AI data learning, characterized in that the shape of the part in contact with the back of the neck of the main body is formed in an arch shape, and a wave pattern is formed on the surface of the contact part.

9. In Paragraph 1, The above main body comprises a first communication module that receives voice data generated from the microphone of the second earphone, and A second communication module that transmits voice data generated from the microphone of the first earphone and voice data received from the first communication module to a user terminal, and A multi-data input / output device for AI data learning characterized by including a third communication module that transmits image data generated from the camera to the user terminal.

10. In Paragraph 1, The above main body comprises a first communication module that receives voice data generated from the microphone of the second earphone, and A multi-data input / output device for AI data learning, characterized by including a second communication module that transmits voice data generated from the microphone of the first earphone, voice data received from the first communication module, and image data generated from the camera to the user terminal.

11. In Paragraph 9 or 10, A multi-data input / output device for AI data learning, characterized in that data received from the user terminal to the second communication module is processed by the processor of the main body, output from the speaker of the first earphone, and output from the speaker of the second earphone through the first communication module.