Intelligent interactive sensing glasses

TWM686891UActive Publication Date: 2026-09-01JORJIN TECH
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Patent Information

Application Number
TW114213974
Authority / Receiving Office
TW · TW
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-12-31
Publication Date
2026-09-01
Estimated Expiration
2035-12-30

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Abstract

This invention provides a pair of intelligent interactive sensing glasses, comprising: a glasses body having at least one frame, lenses, nose pads, nose bridge, and temples; a processor disposed within the glasses body; and a light sensor, an inertial measurement unit, a temperature and humidity sensor, a millimeter-wave radar, a microphone, an eye-tracking module, a flight time-series camera, a miniature near-eye display, a vibrator, and a directional speaker, all disposed within the glasses body and electrically connected to the processor. By integrating multiple sensors and a high-efficiency processor, environmental information can be sensed and analyzed in real time without the use of a camera device, thereby enhancing the interactivity of the sensing glasses and simultaneously addressing the shortcomings of camera devices in infringing on the privacy and portrait rights of others.
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Claims

1. A pair of intelligent interactive sensing glasses, comprising: a glasses body having at least one frame, at least one lens, at least one nose bridge, at least one temple, and at least one nose pad; a processor disposed on the glasses body, having a calculation module and an output module electrically connected to each other; at least one photosensor disposed on the glasses body, and electrically connected to the calculation module of the processor; an inertial measurement unit disposed on the glasses body, and electrically connected to the calculation module of the processor; and a temperature and humidity sensor disposed on the glasses body, and electrically connected to the calculation module of the processor. At least one millimeter-wave radar, disposed on the glasses body, and electrically connected to the processor's calculation module; at least one microphone, disposed on the glasses body, and electrically connected to the processor's calculation module; at least one eye tracking module, disposed on the glasses body, and electrically connected to the processor's calculation module; at least one time-of-flight camera, disposed on the glasses body, and electrically connected to the processor's calculation module; a miniature near-eye display device, disposed on the glasses body, and electrically connected to the processor's output module; and a vibrator, disposed on the glasses body, and electrically connected to the processor's output module. At least one directional speaker is provided on the glasses body and is electrically connected to the output module of the processor.

2. The intelligent interactive sensing glasses as described in claim 1, wherein the processor, the light sensor, the inertial measurement unit, the temperature and humidity sensor, the millimeter-wave radar, the microphone, the eye tracking module, the time of flight camera, the miniature near-eye display, the vibrator, and the directional speaker are disposed on the frame, nose pad, nose bridge, or temples of the glasses body.

3. The intelligent interactive sensing glasses as described in claim 1, wherein the millimeter-wave radar is a pulse radar, an FMCW radar (Frequency Modulated Continuous Wave Radar), a MIMO phased-array radar, a single-input single-output (SISO) miniaturized radar, a multi-band hybrid radar, etc.

4. The intelligent interactive sensing glasses as described in claim 1, wherein the at least one microphone receiving device is provided with a pair of internal microphones and an external microphone.

5. The intelligent interactive sensing glasses as described in claim 4, wherein the internal microphone and the external microphone are disposed opposite each other on one side of the temple.

6. The intelligent interactive sensing glasses as described in claim 1, wherein the inertial measurement unit includes at least one set of three-axis, six-axis, or nine-axis gyroscopes and at least one set of three-axis, six-axis, or nine-axis accelerometers.

7. The intelligent interactive sensing glasses as described in claim 1, wherein the processor is an artificial intelligence (AI) processor, a central processing unit (CPU), a graphics processing unit (GPU), a microcontroller (MCU), a programmable logic controller (PLC), a digital signal processor (DSP), or an advanced reduced instruction set machine (ARM) architecture processor.

8. The intelligent interactive sensing glasses as described in claim 1, wherein the light sensor is a photodiode, a phototransistor, a light sensing array, an ambient light sensor, or a multispectral sensor.

9. The intelligent interactive sensing glasses as described in claim 1, wherein the temperature and humidity sensor is an NTC / PTC thermistor, an RTD (platinum resistance thermometer), a thermocouple, a semiconductor temperature sensor, a capacitive humidity sensor, a resistive humidity sensor, or a dew point sensor.