Head wearable communication machine

By designing a head wearable communication machine that integrates host module, flexible display screen and multi-function module, the problem of insufficient convenience and display mode of communication equipment is solved, and multi-functional real-time translation and health monitoring is provided, which improves user experience and security.

CN120474574APending Publication Date: 2025-08-12陈华毅
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Patent Information

Application Number
CN202510724502.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-30
Publication Date
2025-08-12

AI Technical Summary

Technical Problem

Existing communication equipment has insufficient portability and display mode flexibility, and the translation equipment has limited translation capabilities when offline, which affects the user experience.

Method used

A head wearable communication machine is designed, integrating host module, flexible retractable display, stereo headphones, directional microphones and multi-function modules, supporting multi-modal input, real-time translation, health monitoring and environmental perception, and adopting a titanium alloy counterweight structure to improve wear comfort.

Benefits of technology

It realizes a convenient communication experience, adapts to different user vision needs, provides multi-mode display, real-time translation support, replaces independent devices, and enhances user safety and comfort.

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Abstract

The invention discloses a head wearable communication machine, and relates to the technical field of communication equipment, and the head wearable communication machine comprises a host module which is embedded with a mobile phone chip and integrates communication, data processing and storage functions; the flexible telescopic display screen moves through connecting rods located on the two sides of the head in a normal state, moves to the front of the eyes of a user in the using process, makes contact with the nose tip and the eyebrows through a nose support and a sensor, supports manual or voice adjustment of the display area, the width and the distance between the display screen and the eyes, and has the 2D / 3D display mode switching function. The stereo headphone is integrated at the two ends of the display screen and supports on-off control of voice input / output, the danger early warning function of the environment sensing unit can guarantee the safety of a user, and the non-contact shooting unit provides a novel and convenient shooting mode. In design and experience, the stereo headphone and the directional microphone optimize audio interaction, and the whole machine adopts a titanium alloy counterweight structure, so that the wearing is more balanced, the load bearing feeling is low, and the use comfort and experience of a user are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of communication equipment, in particular to a head-worn communication device. Background Art

[0002] Traditional communication devices, such as mobile phones, while powerful, have limitations in portability. Using mobile phones for communication and information acquisition is often limited in certain scenarios, such as during exercise or when your hands are busy. For example, answering a call while running is unsafe and inconvenient, and checking messages while working on tasks that require both hands is impossible. Therefore, the market demands a more convenient, readily available communication device that doesn't require handheld use.

[0003] Existing head-mounted display devices suffer from a single display mode and an inability to flexibly adjust display parameters according to user needs. Some head-mounted display screens cannot adapt to different users' vision conditions, resulting in a poor viewing experience for some users. Moreover, most display devices are large, difficult to store, and inconvenient to carry, which limits their use cases.

[0004] With the advancement of globalization, people's demand for translation services in scenarios such as international communication and travel is growing. However, existing translation devices and software have limited offline translation capabilities and struggle to effectively reduce noise in interpreting environments, impacting translation accuracy and user experience.

[0005] Based on the above content, a multifunctional head-mounted communication device is designed to solve the technical problems raised above, thereby requiring the use of such a head-mounted communication device. Summary of the Invention

[0006] In view of the deficiencies in the prior art, the present invention provides a head-worn communicator that solves the technical problems pointed out in the above background technology.

[0007] To achieve the above objectives, the present invention is implemented through the following technical solutions: a head-worn communication device, comprising:

[0008] Host module, with built-in mobile phone chip, integrating communication, data processing and storage functions;

[0009] The flexible, retractable display is normally movable via connecting rods located on both sides of the head. When in use, it moves in front of the user's eyes, contacting the tip of the nose and eyebrows through a nose support and sensors. The display area, width, and distance from the eyes can be adjusted manually or by voice, and it also has a 2D / 3D display mode switch function. Stereo headphones are integrated at both ends of the display and support voice input / output on / off control.

[0010] Directional microphone, integrated into the host module, supports noise reduction and privacy mode;

[0011] Functional module group, including:

[0012] a. Voice interaction unit, which realizes full-function voice command operation through stereo headphones 4 and voice recognition algorithm

[0013] b. A multimodal input unit that supports the compatibility and mutual conversion of voice, text laser scanning module, and visual command input for the deaf and mute, and synchronizes it to the flexible and scalable display in real time;

[0014] c. Real-time translation unit, supporting multi-language voice / text translation and noise reduction in the interpretation environment;

[0015] d. Health monitoring unit, which integrates biosensors to monitor heart rate, body temperature, and motion data, replacing independent wearable devices;

[0016] e. Environmental perception unit, which uses cameras, infrared and ultrasonic sensors to provide early warning of dangers;

[0017] f. Contactless shooting unit, which controls outdoor shooting through head micro-movement trajectory recognition and voice commands.

[0018] Preferably, the telescopic structure of the flexible and retractable display screen is driven by a micro motor, supports voice or gesture triggering of the telescopic action, and the screen curvature is adjustable to adapt to the user's vision.

[0019] Preferably, the visual command input for the deaf-mute person is realized through eye tracking technology and a preset gesture symbol library, and the command is output in the form of voice / text after conversion.

[0020] Preferably, the text scanning module adopts narrow-band laser scanning technology, the scanning range covers a 30° plane of the user's field of view, automatically identifies paper / electronic documents and converts them into editable text.

[0021] Preferably, the real-time translation unit has a built-in offline corpus, supports basic vocabulary conversion in an off-network environment, and calls an AI enhanced translation engine in an online state.

[0022] Preferably, the health monitoring unit integrates a PPG photoelectric sensor, a temperature sensor and a six-axis gyroscope, and the data is transmitted to the host module through an independent secure channel.

[0023] Preferably, the danger warning function of the environmental perception unit builds a real-time 3D model of the environment based on a SLAM algorithm and predicts collision risks in combination with an acceleration sensor.

[0024] Preferably, the head movement recognition accuracy of the contactless shooting unit is 0.1°, and it supports blinking to trigger continuous shooting and shaking the head to terminate shooting.

[0025] Preferably, the flexible and retractable display screen adopts an OLED flexible substrate, the surface of which is coated with an anti-glare nano-coating, and has a folding life of more than 200,000 times.

[0026] Preferably, the weight distribution of the whole machine adopts a titanium alloy counterweight structure to ensure wearing balance, and the weight feeling during continuous use is ≤80g.

[0027] Beneficial effects

[0028] This invention provides a head-worn communication device. In terms of functional integration, the host module incorporates a mobile phone chip, integrating communication, data processing, and storage. This eliminates the need for carrying separate communication and data processing equipment, significantly improving ease of use. The flexible, retractable display screen not only allows for adjustable display parameters and modes, but also features retractable and adjustable curvature to accommodate varying user vision. It can also be folded away for easy portability when not in use. The multimodal input unit accommodates various input methods, particularly visual input for the deaf and mute, demonstrating the product's inclusiveness and user-friendly design. The real-time translation unit provides translation support in both connected and offline environments, meeting the needs of diverse scenarios. The health monitoring unit monitors multiple health metrics, replacing standalone wearable devices and reducing the burden on users. The environmental sensing unit's hazard warning function ensures user safety, while the contactless camera unit provides a novel and convenient way to capture photos. In terms of design and user experience, the stereo headphones and directional microphone optimize audio interaction. The titanium alloy counterweight structure ensures a more balanced fit and minimizes the sense of weight, enhancing user comfort and user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 This is a schematic diagram of the axonometric structure of the head-worn communication device of the present invention.

[0030] Figure 2 This is a schematic diagram of the flexible and retractable display screen structure of the head-worn communication device of the present invention.

[0031] In the figure: 1. Main unit module; 2. Flexible and retractable display screen; 3. Connecting rod; 4. Stereo headphones; 5. Directional microphone; 6. Module splicing connection unit; 7. Auxiliary connecting tube; 8. Connection point; 9. Nose support; 10. Sensor; a. Voice interaction unit; b. Multimodal input unit; c. Real-time translation unit; d. Health monitoring unit; e. Environmental perception unit; f. Contactless shooting unit. DETAILED DESCRIPTION

[0032] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0033] See also Figure 1-2 ,The present invention provides a technical solution: a head-worn communication device, comprising: a host module 1, with an embedded mobile phone chip, integrating communication, data processing and storage functions;

[0034] The flexible and retractable display screen 2 is normally movable via connecting rods 3 located on both sides of the head. When in use, it moves in front of the user's eyes and contacts the tip of the nose and eyebrows via nose support 9 and sensor 10 respectively. The display area, width, and distance from the eyes can be adjusted manually or by voice, and it has a 2D / 3D display mode switching function.

[0035] Stereo headphones 4, integrated at both ends of the display, support voice input / output switch control;

[0036] Directional microphone 5, integrated into the host module, supports noise reduction and privacy mode;

[0037] Functional module group, including:

[0038] a. Voice interaction unit, which realizes full-function voice command operation through stereo headphones 4 and voice recognition algorithm

[0039] b. A multimodal input unit that supports the compatibility and mutual conversion of voice, text laser scanning module, and visual command input for the deaf and mute, and synchronizes it to the flexible and retractable display screen 2 in real time;

[0040] c. Real-time translation unit, supporting multi-language voice / text translation and noise reduction in the interpretation environment;

[0041] d. Health monitoring unit, which integrates biosensors to monitor heart rate, body temperature, and motion data, replacing independent wearable devices;

[0042] e. Environmental perception unit, which uses cameras, infrared and ultrasonic sensors to provide early warning of dangers;

[0043] f. Contactless shooting unit, which controls outdoor shooting through head micro-movement trajectory recognition and voice commands.

[0044] This embodiment is further configured such that the telescopic structure of the flexible and retractable display screen 2 is driven by a micro motor, supports voice or gesture triggering of the telescopic action, and the screen curvature is adjustable to adapt to the user's vision.

[0045] This embodiment is further configured such that the visual command input of the deaf-mute person is realized through eye tracking technology and a preset gesture symbol library, and the command is output in the form of voice / text after conversion.

[0046] This embodiment is further configured such that the text scanning module adopts narrow-band laser scanning technology, the scanning range covers a 30° plane of the user's field of view, automatically identifies paper / electronic documents and converts them into editable text.

[0047] This embodiment is further configured such that the real-time translation unit has a built-in offline corpus, supports basic vocabulary conversion in an off-network environment, and calls an AI enhanced translation engine in an online environment.

[0048] This embodiment is further configured such that the health monitoring unit integrates a PPG photoelectric sensor, a temperature sensor and a six-axis gyroscope, and the data is transmitted to the host module 1 through an independent secure channel.

[0049] This embodiment is further configured such that the danger warning function of the environmental perception unit constructs a real-time 3D environmental model based on a SLAM algorithm and predicts collision risks in combination with an acceleration sensor.

[0050] This embodiment is further configured such that the head movement recognition accuracy of the contactless shooting unit is 0.1°, and it supports blinking to trigger continuous shooting and shaking the head to terminate shooting.

[0051] This embodiment is further configured such that the flexible and retractable display screen 2 uses an OLED flexible substrate, the surface of which is coated with an anti-glare nano-coating, and has a folding life of more than 200,000 times.

[0052] This embodiment is further configured to use a titanium alloy counterweight structure for the weight distribution of the entire device to ensure wearing balance, and the weight feeling during continuous use is ≤80g.

[0053] The detailed connection means are well-known technologies in this field. The following mainly introduces the working principle and process. The specific operations are as follows.

[0054] Embodiment: The head-worn communication device has a variety of advanced functions and designs. It mainly includes a host module (1) with a mobile phone chip embedded inside, which can integrate communication, data processing and storage functions. The flexible and retractable display screen (2) can be moved by connecting rods (3) located on both sides of the head under normal conditions. When in use, it can be moved in front of the user's eyes and connected to the nose and eyebrows respectively through the nose support (9) and the sensor (10). The display screen supports manual or voice adjustment of the display area, width and distance from the eyes, and also has a 2D / 3D display mode switching function. Its retractable structure is driven by a micro motor and supports voice or gesture triggering of the retractable action. The screen curvature can be adjusted to adapt to the user's vision. It uses an OLED flexible substrate with an anti-glare nano-coating on the surface, and has a folding life of more than 200,000 times.

[0055] Stereo headphones (4) are integrated at both ends of the display screen and support switch control of voice input / output; a directional microphone (5) is integrated in the host module and supports noise reduction and privacy mode.

[0056] The functional module group is rich in functions. The voice interaction unit realizes full-function voice command operation through stereo headphones (4) and voice recognition algorithm; the multimodal input unit supports the compatibility and mutual conversion of voice, text laser scanning module, and visual command input for deaf and mute people, and synchronizes to the flexible and retractable display screen (2) in real time. The visual command input for deaf and mute people is realized through eye tracking technology and a preset gesture symbol library. The command is output in the form of voice / text after conversion. The text scanning module adopts narrowband laser scanning technology, and the scanning range covers the 30° plane of the user's field of view. It can automatically recognize paper / electronic documents and convert them into editable text. The real-time translation unit supports multi-language voice / text translation and noise reduction in the interpretation environment. It has a built-in offline corpus and supports basic vocabulary conversion in a non-network environment. It calls the AI enhanced translation engine in the network state. The health monitoring unit integrates PPG photoelectric sensor, temperature sensor and six-axis gyroscope, which can monitor heart rate, body temperature and movement data, replacing independent wearable devices. The data is transmitted to the host module (1) through an independent secure channel. The environmental perception unit uses cameras, infrared, and ultrasonic sensors to provide hazard warnings. Its warning function uses a SLAM algorithm to build a real-time 3D model of the environment and, combined with accelerometers, predict collision risks. The contactless shooting unit controls outdoor photography through head movement recognition and voice commands. Head movement recognition has an accuracy of 0.1°, and it supports blinking to trigger continuous shooting and shaking your head to terminate shooting.

[0057] In addition, the weight distribution of the entire device adopts a titanium alloy counterweight structure to ensure wearing balance, and the weight feeling during continuous use is ≤80g.

[0058] It should be noted that, in this document, relational terms such as first and second, etc. are merely used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations.

Claims

1. A head-worn communication device, characterized in that: include: A host module (1) having a built-in mobile phone chip and integrating communication, data processing and storage functions; The flexible and retractable display screen (2) is normally moved by connecting rods (3) located on both sides of the head, and is moved in front of the user's eyes when in use, and contacts the nose tip and eyebrows respectively through the nose support (9) and the sensor (10), and supports manual or voice adjustment of the display area, width and distance from the eyes, and has a 2D / 3D display mode switching function; Stereo headphones (4), integrated at both ends of the display screen, supporting voice input / output switch control; Directional microphone (5), integrated into the host module, supporting noise reduction and privacy mode; Functional module group, including: a. Voice interaction unit, which realizes full-function voice command operation through stereo headphones (4) and voice recognition algorithm b. A multimodal input unit that supports the compatibility and mutual conversion of voice, text laser scanning module, and visual command input for the deaf and mute, and synchronizes it to the flexible and retractable display in real time (2); c. Real-time translation unit, supporting multi-language voice / text translation and noise reduction in the interpretation environment; d. Health monitoring unit, which integrates biosensors to monitor heart rate, body temperature, and motion data, replacing independent wearable devices; e. Environmental perception unit, which uses cameras, infrared and ultrasonic sensors to provide early warning of dangers; f. Contactless shooting unit, which controls outdoor shooting through head micro-movement trajectory recognition and voice commands.

2. The head-worn communication device according to claim 1, characterized in that The telescopic structure of the flexible and retractable display screen (2) is driven by a micro motor, supports voice or gesture triggering of the telescopic action, and the screen curvature is adjustable to adapt to the user's vision.

3. The head-worn communication device according to claim 1, characterized in that The visual command input of the deaf-mute person is realized through eye tracking technology and a preset gesture symbol library, and the command is output in the form of voice / text after conversion.

4. The head-worn communication device according to claim 1, characterized in that ,The text scanning module adopts narrow-band laser scanning technology, and the ,scanning range covers the 30° plane of the user’s field of view, ,automatically identifying paper / electronic documents and converting them into editable text.

5. The head-worn communication device according to claim 1, characterized in that The real-time translation unit has a built-in offline corpus, supports basic vocabulary conversion in an offline environment, and calls the AI enhanced translation engine in an online state.

6. The head-worn communication device according to claim 1, characterized in that ,The health monitoring unit integrates a PPG photoelectric sensor, a temperature sensor and a six-axis gyroscope, and the data is transmitted to the host module (1) through an independent ,secure channel.

7. The head-worn communication device according to claim 1, characterized in that ,The danger warning function of the environmental perception unit builds a real-time 3D environment model based on the SLAM algorithm and ,predicts collision risks by combining the acceleration sensor.

8. The head-worn communication device according to claim 1, characterized in that The head movement recognition accuracy of the contactless shooting unit is 0.1°, and it supports blinking to trigger continuous shooting and shaking the head to terminate shooting.

9. The head-worn communication device according to claim 1, characterized in that The flexible and retractable display screen (2) adopts an OLED flexible substrate, the surface of which is coated with an anti-glare nano-coating, and has a folding life of more than 200,000 times.

10. The head-worn communication device according to claim 1-9, characterized in that The weight distribution of the whole machine adopts a titanium alloy counterweight structure to ensure wearing balance, and the weight feeling during continuous use is ≤80g.