Necklace wearing type intelligent glasses
Abstract
A necklace wearable smart glasses, comprising: a control device, an input device, a wearable near-eye display module and a opening and closing component, wherein the control device is configured as a main board, and the control device can be placed behind the neck, thereby Improve the wireless signal transmission and reception effect, and at the same time reduce the weight of the glasses end, and the glasses can not be easily slipped when worn. At the same time, the length of the electrical connection line between the control device and the glasses end can be shortened, and the video signal attenuation is less, and the control device has the first The camera lens allows the user to notice the rear image from the glasses end, and the backup device module is provided at the input device end to extend the use time of the smart glasses, and the removable battery is designed to be replaced at any time without shutting down, and the three-dimensional control and input device are utilized. The microphone module and the second USB interface enable the creation to be light, comfortable, convenient, and smooth to operate.

Term
No projected expiry on record.
- Priority and filed
- Granted
- Today
6 claims: 1 independent, 5 dependent
- 1A necklace wearable smart glasses, comprising:a control device, comprising a first processor, a multimedia interface, a sound effect module, a first camera lens, a first communication module and a first USB interface;The first processor is electrically connected to the multimedia interface, the sound effect module, the first camera lens, the first communication module and the first USB interface;and an input device is provided with a battery module and a backup battery a module, a switch module, a microphone module, a second USB interface, and a three-dimensional motion control module, wherein the second USB interface is electrically connected to the battery module, and the battery module and the backup battery module are electrically The switch module is electrically connected to the control device, and the microphone module is electrically connected to the sound effect module;a wearable near-eye display module is provided with an image drive module, and the image drive mode is The group is electrically connected to the first processor;an opening and closing component is coupled to the control device and the input device. 一種項鍊穿戴式智能眼鏡,其包含:一控制裝置,係設有一第一處理器、一多媒體接口、一音效模組、一第一攝像鏡頭、一第一通信模組和一第一USB接口,該第一處理器電性連接該多媒體接口、該音效模組、該第一攝像鏡頭、該第一通信模組和該第一USB接口;一輸入裝置,係設有一電池模組、一備用電池模組、一開關模組、一麥克風模組、一第二USB接口和一三維運動控制模組,該第二USB接口電性連接該電池模組,該電池模組和該備用電池模組電性連接該開關模組,該開關模組電性連接該控制裝置,該麥克風模組電性連接該音效模組;一穿戴式近眼顯示模組,係設有一影像驅動模組,該影像驅動模組電性連接該第一處理器;一開合組件,係結合於該控制裝置和該輸入裝置上。 一種項鍊穿戴式智能眼鏡,其包含:一控制裝置,係設有一第一處理器、一多媒體接口、一音效模組、一第一攝像鏡頭、一第一通信模組和一第一USB接口,該第一處理器電性連接該多媒體接口、該音效模組、該第一攝像鏡頭、該第一通信模組和該第一USB接口;一輸入裝置,係設有一電池模組、一備用電池模組、一開關模組、一麥克風模組、一第二USB接口和一三維運動控制模組,該第二USB接口電性連接該電池模組,該電池模組和該備用電池模組電性連接該開關模組,該開關模組電性連接該控制裝置,該麥克風模組電性連接該音效模組;一穿戴式近眼顯示模組,係設有一影像驅動模組,該影像驅動模組電性連接該第一處理器;一開合組件,係結合於該控制裝置和該輸入裝置上。
23 paragraphs, as filed
Necklace wearable smart glasses
This creation is a wearable near-eye display device, especially a necklace-worn smart glasses that can be attached to the head and neck in a separate manner.
A common wearable near-eye display module, also known as smart and smart glasses, is disclosed in the Japanese Patent Publication No. 201346332, which discloses a "wearable device having an input and output structure", and FIG. 4 and FIG. 5A of the case No. 201346332 It is shown that in this technical solution, the display, the processor, the memory, the battery and the like are all hung on the glasses end, except that the weight will be heavier, the battery has a poorer endurance, and there will be no power soon. Further, an "optical device, an image projection device, and an electronic device" is also disclosed in the Patent Publication No. 201537217, which is shown in FIG. 1 of No. 201537217. In this technical solution, the control unit is provided with a main board and a battery. It is a heavier host unit, and the battery has a longer battery life, but it is not easy to wear the host on the body, and the cable between the host and the glasses is long, which causes the video signal to attenuate more, and the host is placed. In the pocket or the waist, it will not be conducive to the wireless signal transmission and reception of the antenna on the host, which is easily shielded and the network and wireless signals are unstable. In addition, the current smart, smart glasses on the market, the optical machine in front of the eyes, the control method is mostly using the touchpad, the use is relatively inconvenient, especially when typing, can not be completed at a very fast speed, causing user inconvenience. Therefore, how to improve the above-mentioned deficiencies, that is, the technical difficulties that the applicant of this case wants to solve.
In view of the lack of custom, the purpose of this creation is to develop a smart wearable necklace with lightness, comfort, convenience and smooth handling.
In order to achieve the above objective, the present invention provides a necklace wearable smart glasses, comprising: a control device, a first processor, a multimedia interface, a sound effect module, a first camera lens, and a first communication The module and a first USB interface, the first processor is electrically connected to the multimedia interface, the sound effect module, the first camera lens, the first communication module and the first USB interface; an input device a battery module, a backup battery module, a switch module, a microphone module, a second USB interface and a three-dimensional motion control module, the second USB interface electrically connecting the battery module, the battery The module and the backup battery module are electrically connected to the switch module, the switch module is electrically connected to the control device, the microphone module is electrically connected to the sound effect module; and a wearable near-eye display module is provided with a The image driving module is electrically connected to the first processor; an opening and closing component is coupled to the control device and the input device.
The three-dimensional motion control module is provided with a second processor, an active button, a multi-axis motion sensor and a second communication module. The second processor is electrically connected to the active button and the multi-axis motion sense. And the second communication module, the second communication module is communicatively connected to the first communication module, and the control device is a main board, the opening and closing component is a zipper structure, and the wearable near-eye display The second camera lens is electrically connected to the first processor, and the multimedia interface is a High Definition Multimedia Interface (HDMI).
Therefore, the creation device adopts the control device, the input device, and the wearable near-eye display a module, the opening and closing assembly, and using the three-dimensional control, the microphone module of the input device, and the second USB interface, the control device is configured as a main board, by moving the control device to the neck In the rear, the wireless signal transmission and reception effect is better, and the weight of the glasses end is less likely to fall when worn. The electrical connection line between the control device and the glasses end is shorter, and the video signal attenuation is less. The first camera lens is provided on the control device. The user notices the rear image from the glasses end, and the backup device module is provided at the input device end to extend the use time of the smart glasses, and the replaceable backup battery is designed to be replaced at any time without shutting down, and a new effect is achieved.
<p>[this creation]</p><p>1Control device</p><p>10First processor</p><p>11Multimedia interface</p><p>12Audio Module</p><p>13First camera lens</p><p>14First Communication Module</p><p>15First USB interface</p><p>2Input device</p><p>20Battery module</p><p>21Spare battery module</p><p>22Switch Module</p><p>23Microphone module</p><p>24Second USB interface</p><p>253D motion control module</p><p>250second processor</p><p>251active button</p><p>252Multi-axis motion sensor</p><p>253Second communication module</p><p>3Wearing near-eye display module</p><p>30Image Drive Module</p><p>31Second camera lens</p><p>32 display screen</p><p>4Opening and closing components</p><p>40 zipper clasp</p><p>100 neck</p><p>200 head</p><p>300Photos or live images</p><p>400Hands</p>
The first figure is a schematic structural view of a necklace wearable smart glasses according to a preferred embodiment of the present invention.
The second drawing is a block diagram showing the input device and the control device of the preferred embodiment of the present invention.
The third figure is a schematic diagram of the wearable implementation of the necklace wearable smart glasses of the preferred embodiment of the present invention.
The fourth figure is a schematic diagram of the block structure control actions of the input device, the control device and the wearable near-eye display module of the preferred embodiment of the present invention.
The fifth figure is a schematic diagram of the implementation of the wearing and operating input device of the necklace wearable smart glasses of the preferred embodiment of the present invention.
In order to enable your review board to clearly understand the content of this work, please refer to the following examples with diagrams and symbols, please refer to it.
Referring to the first and second figures, the present invention provides a necklace wearable smart glasses, comprising: a control device 1, an input device 2, a wearable near-eye display module 3, and an opening and closing assembly 4.
In this embodiment, the control device 1 can be a main board. The control device 1 is provided with a first processor (CPU) 10, a multimedia interface 11, an audio module 12, and a first The first lens 10 is electrically connected to the multimedia interface 11, the sound effect module 12, the first camera lens 13, and the first communication. The first lens 10 is electrically connected to the first interface. The module 14 and the first USB interface 15, the multimedia interface 11 is a High Definition Multimedia Interface (HDMI), and the sound module 12 has an audio input and output function, which is not described in the prior art. The first imaging lens 13 can be a photosensitive-coupled device (CCD) or an image sensor (CMOS). The first communication module 14 can be any type of antenna communication module and has a function of transmitting and receiving signals. The first USB interface 15 and the multimedia interface 11 are both used for transmitting and receiving external data, and the external data may be multimedia materials.
In addition, the input device 2 is provided with a battery module 20, a backup battery module 21, a switch module 22, a microphone module 23, a second USB interface 24, and a three-dimensional motion control module 25, The USB module 24 is electrically connected to the battery module 20 , and the battery module 20 and the backup battery module 21 are electrically connected to the switch module 22 . The switch module 22 is electrically connected to the control device 1 . The group 23 is electrically connected to the sound module 12, and the battery module 20 is a rechargeable battery. The battery module 21 is a module that can be removed at any time. The switch module 22 serves as the control device. 1 Whether to start the operation mechanism, switch to decide whether to provide power, the microphone module 23 can adopt a module with a miniature microphone to reduce the volume, and the second USB interface 24 serves as an interface for charging the battery module 20, It is easy to connect to the power bank for charging. The three-dimensional motion control module 25 is provided with a second processor (CPU) 250, an active button 251, a multi-axis motion sensor 252 and a second communication module. 253. The second processor 250 is electrically connected. Active key 251, the multi-axis motion sensor 252 and the second communication module 253, the second communication module 253 may pass The first communication module 14 is connected to the first communication module 14. The active button 251 can be a micro or small switch. The second communication module 253 can also be any type of antenna communication module and has a function of transmitting and receiving signals. The first communication module 14 is configured as a communication module capable of corresponding communication. The multi-axis motion sensor 252 can be selected as gyroscopes for measuring angular velocity, accelerometers for measuring linear acceleration and earth gravity vector, and magnetometers for measuring the direction of the earth's magnetic field. Or measuring one or a combination of pressure sensors to determine the height of the pressure sensor, mainly by sensing the change in the direction of the hand, and then converting the amount of motion generated by the touch to the displacement distance of the screen mouse and The direction, so that the user can control the screen mouse in any posture and action, known as the air mouse, mainly by the multi-axis motion sensor 252, because the application of the air mouse is quite mature, here is not Give a brief description.
Furthermore, please refer to the second and third figures, wherein a wearable near-eye display module 3 is worn on the head 200, the control device 1 is placed behind the neck 100, and the opening and closing assembly 4 The zipper structure may have a zipper 40 that is worn on the neck 100 to adjust the wearing tightness by the zipper 40 and place the input device 2 on the chest.
The control device 1 is provided with an image driving module 30, and the image driving module 30 can be composed of an image display card or other conventional image circuits. 30 is electrically connected to the first processor 10, and the data image is projected on the display screen 32, and the wearable near-eye display module 3 is provided with a second imaging lens 31, and the second imaging lens 31 can also be a photosensitive coupling element. (Charge-coupled Device, CCD) or image sensor (CMOS), the second imaging lens 31 is electrically connected to the first processor 10, and the second imaging lens 31 is disposed at an angle viewed by the user, and can be performed. Taking the front picture and the image, the electrical connection between the wearable near-eye display module 3 and the control device 1 can utilize a soft signal cable or any The electrical signal line is achieved, and the control device 1 and the input device 2 are the same, and are not limited thereto. In this embodiment, the frame of the wearable near-eye display module 3 and the image driving module 30, the second imaging lens 31, and the display screen 32 may be integrally formed, and only The examples are not limited to this.
Therefore, the weight of the glasses end can be reduced and the wearing is comfortable, and the glasses end is not easy to fall due to the weight, and the electrical connection between the control device 1 and the glasses end can reduce the attenuation of the video signal, and the control device 1 is placed on the neck 100. The wireless signal transmission and reception between the first communication module 14 and the second communication module 253 is better. When the control device 1 is placed on the neck 100, the sound module 12 can be easily connected to the earphone connector and the microphone and the earphone are placed on the ear and the mouth to facilitate voice conversation. The backup battery module 21 is placed on the chest, and the capacity can be greatly increased to extend the use time of the wearable near-eye display module 3. The backup battery module 21 is a replaceable backup battery, which can be replaced at any time. The fully charged battery continues to be used without shutting down. Moreover, the control device 1 is disposed on the back side of the neck portion of the neck portion and the main input portion of the input device 2 is placed on the front side of the chest. Therefore, the wearable near-eye display module 3 can feel balanced when worn. Lightweight and comfortable, the input device 2 is placed on the chest and its weight can be slightly larger than that of the control device 1, so that the control device 1 and the input device 2 will naturally sag when worn, and the comfort and convenience of wearing can be felt.
Please refer to the fourth and fifth figures, wherein the first camera lens 13 of the control device 1 can capture a photo or an instant image 300 behind the user, and via the first processor 10, the image. The driving module 30 is transmitted to the display screen 32 of the wearable near-eye display module 3, so that the user can observe the immediate situation at the rear. The user's hand 400 holds the input device 2 to move freely, and generates a function such as an air mouse by the three-dimensional motion control module 25 and the multi-axis motion sensor 252 and the active button 251. Generated by the second communication module 253 A communication module 14 controls the communication, and can be set to, for example, Bluetooth communication, can be used to replace the touch control conventionally used on the wearable near-eye display module 3, and the cursor is only manipulated by the hand movement to perform on the display screen 32. Icon selection operation, its control is smoother.
Since the input device 2 is operated by the input device 2 and the input device 2 is provided with the microphone module 23, the user can also move the input device 2 to the mouth side for voice conversation, thereby avoiding sound interference to the surrounding person and considerable Convenience. The first processor 10 of the control device 1 can be equipped with a software algorithm such as a somatosensory motion detection or optical track handwriting, and the second camera lens 31 on the wearable near-eye display module 3, by the The second camera lens 31 captures the non-contact finger writing track and transmits it to the first processor 10 for image processing, such as median filtering, erosion and expansion, and performs image cutting by the background subtraction method, and discriminates the fingertip. Position, and finally, the handwritten characters are judged by the algorithm, which is not described here for the prior art, so that the user can select the function of the air mouse, and there are non-contact body motion and optical track. The handwriting input enables the person who is unfamiliar with the typesetting and operation of the icon displayed on the display screen 32 to achieve the convenience of operation.
The above discussion is only for the preferred embodiment of the present invention, and is not intended to limit the scope of the present invention; therefore, changes in equivalent shapes, configurations, or combinations that do not depart from the spirit and scope of the present invention should be It is covered by the patent application scope of this creation.
5 sheets
Sheet 1 Sheet 2 Sheet 3 Sheet 4 Sheet 5
Every citation, both ways
| Document | Relation | Office | Cited during |
|---|---|---|---|
| US11081836B2 | Cited by | United States of America | Applicant |
| TWI731179B | Cited by | Taiwan Province of China | Examiner |
| US10938151B2 | Cited by | United States of America | Applicant |
| TWI644199B | Cited by | Taiwan Province of China | Examiner |
2 priority claims, no other members on record
Priority claims2
| Document | Office | Kind | Date |
|---|---|---|---|
| 104220900 | Taiwan Province of China | U | |
| TW20150220900U | – | – | – |
1 legal event, as the office reported them to INPADOC
Events
| Event | Code | |
|---|---|---|
| Annulment or lapse of a utility model due to non-payment of feesLapsedMM4K | MM4K |
Numbers
- Publication
- M520647
- Publication, DOCDB
- M520647
- Publication, EPODOC
- TWM520647U
- Application
- 104220900
- Application, DOCDB
- 104220900
- Application, EPODOC
- TW20150220900U
Titles2
- English
- Necklace wearing type intelligent glasses
- Chinese
- ?????????
Classification
- IPC, 1
- G02C5 20