INTELLIGENT VIRTUAL DISPLAY DEVICE
20220187626 ยท 2022-06-16
Assignee
Inventors
- MANG OU-YANG (HSINCHU CITY, TW)
- Sheng Chun HUNG (Dongshan Township, TW)
- Yen Jui CHEN (Hsinchu City, TW)
- YUNG-JHE YAN (TAIPEI CITY, TW)
- Jin-Chern CHIOU (Hsinchu City, TW)
- Cheng-Wei TSAI (Taichung City, TW)
Cpc classification
H02J50/80
ELECTRICITY
G02C7/086
PHYSICS
H02J2207/50
ELECTRICITY
H02J50/00
ELECTRICITY
International classification
G02C7/10
PHYSICS
Abstract
The present invention provides an intelligent virtual display device including a contact lens. The contact lens has a central area thereon, a micro display disposed outside the central area, a wearable reflector disposed corresponding to the micro display and configured to receive and to reflect images of the micro display, and a controller. The controller is connected with the micro display and configured to send the control signals to the micro display so as to generate the images. The contact lens is designed for being worn on a user's eyeball. When the eyeball rotates, the micro display changes its projection direction simultaneously to match the user's visual angle.
Claims
1. An intelligent virtual display device, comprising a contact lens, including a central area thereon and a micro display disposed outside said central area; and a wearable reflector, disposed corresponding to said micro display, receiving and reflecting images of said micro display, and including a controller, wherein said controller is connected with said micro display and sends out control signals to said micro display to control said micro display to generate said images.
2. The intelligent virtual display device according to claim 1, wherein said wearable reflector includes a frame, further including a pair of rims and at least two temples, wherein said at least two temples are respectively disposed at two sides of said pair of rims, and said controller is disposed on at least one of said temples; and at least one reflecting mirror, disposed on said pair of rims of said frame and disposed corresponding to said micro display, and receiving and reflecting said images of said micro display.
3. The intelligent virtual display device according to claim 2, wherein said reflecting mirror is a curved-surface reflecting mirror.
4. The intelligent virtual display device according to claim 2, wherein said reflecting mirror is a light splitter, an anti-blue ray lens, or a plastic lens.
5. The intelligent virtual display device according to claim 1, wherein said micro display is a micro light emitting diode (micro LED) display or a mini light emitting diode (mini LED) display.
6. The intelligent virtual display device according to claim 1, wherein said controller further includes a wireless charging device, which is wirelessly connected with said micro display to provide wireless charging signals to said micro display and supply electric energy for operation of said micro display.
7. The intelligent virtual display device according to claim 6, wherein said micro display further includes a substrate; a receiver, disposed on said substrate, wherein said receiver is connected with said wireless charging device and said controller, and configured to receive said wireless charging signals of said wireless charging device and said control signals generated by said controller; a rectifier, disposed on said substrate, wherein said rectifier is connected with said receiver, and configured to receive and rectifying said wireless charging signals; an energy storage element, disposed on said substrate, wherein said energy storage element is connected with said rectifier, and configured to receive said wireless charging signals having been rectified and to convert said wireless charging signals having been rectified into electric energy for storage; a driver circuit, disposed on said substrate, wherein the driver circuit is connected with said energy storage element and said receiver, and configured to receive said electric energy and said control signals; and a light-emitting diode array, connected with said driver circuit, wherein said driver circuit supplies said electric energy to said light-emitting diode array and controls said light-emitting diode array to emit light according to said control signals.
8. The intelligent virtual display device according to claim 7, wherein said energy storage element is an energy storage capacitor.
9. The intelligent virtual display device according to claim 7, wherein said light-emitting diode array is a micro light-emitting diode (micro LED) array or a mini light-emitting diode (mini LED) array.
10. The intelligent virtual display device according to claim 7, wherein said controller further includes a signal transmission device, which is connected with said receiver of said micro display and transmits said control signals to said receiver of said micro display.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
DETAILED DESCRIPTION OF THE INVENTION
[0022] The intelligent virtual display device of the present invention can immediately present information before the eyes of the user and features simultaneity and privacy. Further, the present invention enables the micro display to be worn on the eyeball of the user. While the eyeball rotates, the micro display can synchronously change the projection direction to match the viewing angle of the user.
[0023] The structure of the intelligent virtual display device of the present invention is described below to demonstrate how the technology of the present invention achieves the abovementioned functions. Refer to
[0024] Refer to
[0025] Next is described the structure of the contact lens 10. Refer to
[0026] Next, the structure of the micro display 12 is described in detail below. Refer to
[0027] Next, the operation of the intelligent virtual display device 1 is described in detail below. Refer to
[0028] The present invention is characterized in that the micro display 12 is installed on the eyeball of the user. While the eyeball rotates, the projection angle of the micro display 12 also moves to the viewing angle of the user correspondingly. Therefore, the present invention can omit the pupil tracking device, lower the cost, and decrease the thickness of the device. Moreover, the present invention can guarantee that the projected images match the viewing angle of the user.
[0029] In conclusion, the present invention can instantly present information in front of the eyes of the user, featuring simultaneity and privacy. Further, the micro display is worn on the eyeball of the user. Therefore, while the eyeball rotates, the micro display can synchronously change the projection direction to match the viewing angle of the user.
[0030] The embodiments described above are only to exemplify the present invention but not to limit the scope of the present invention. Any equivalent modification or variation according to the spirit or characteristics of the present invention is to be also included by the scope of the present invention.