This application claims priority of Application No. 109144113 filed in Taiwan on 14 Dec. 2020 under 35 U.S.C. ยง 119; the entire contents of all of which are hereby incorporated by reference.
The present invention relates to a VR (Virtual Reality) data processing technology, particularly to an intelligent virtual display device.
With rapid development of science and technology, various image display technologies are also fast evolving. At present, the related manufacturers are enthusiastic to develop VR head-mounted virtual display devices and AR (Augmented Reality) head-mounted virtual display devices. Thus, the VR and AR technologies have been extensively applied to the fields of entertainment, flight training, medicine, etc.
However, the additional optical components, which are used to enhance light projection efficiency, make the head-mounted virtual display devices become very bulky and significantly impair the convenience of users.
At present, there have been simplified AR glasses (such as the Google glass) whose appearances are similar to ordinary glasses. The lateral side of the frame of a simplified AR glass is normally equipped with a touch panel, which is used to control the pictures presented by the LED (Light Emitting Diode) display device disposed on the frame. The LED display device provides images and projects the images to the reflector on the frame, whereby the user can view the images projected by the LED display device.
No matter whether the head-mounted virtual display device is a bulky VR one or a simplified AR one, it needs a pupil tracking device to track the position of the pupil of the user. Thus can be adjusted the projection angle of the display device or the optical component. The pupil tracking device not only raises the cost but also increases the weight. Further, the data detected by the pupil tracking device may have errors. Therefore, using the pupil tracking device to adjust the projection angle is not the optimized technology for users.
Accordingly, the present invention proposes an intelligent virtual display device to overcome the abovementioned problems
The primary objective of the present invention is to provide an intelligent virtual display device, whose micro display is worn on the eyeball of the user, whereby while the eyeball rotates, the micro display can synchronously change the projection direction to meet the viewing angle of the user.
Another objective of the present invention is to provide an intelligent virtual display device, which can instantly present information in front of the eyes of the user, whereby the present invention features simultaneity and privacy.
In order to achieve the abovementioned objectives, the present invention provides an intelligent virtual display device, which comprises a contact lens and a wearable reflector. The contact lens has a central area and a micro display in the interior of the contact lens and outside the central area. The wearable reflector is disposed corresponding to the micro display, receiving and reflecting the images of the micro display. The wearable reflector includes a controller. The controller is wirelessly connected with the micro display and emits control signals to control the micro display to generate images.
In one embodiment, the wearable reflector includes a frame and at least one reflecting mirror. The frame further includes a pair of rims and at least two temples. The pair of temples are respectively disposed at two sides of the pair of rims. The controller is disposed on at least one temple. The reflecting mirror is disposed on the rim of the frame and corresponding to the micro display, receiving and reflecting the images of the micro display.
In one embodiment, the reflecting mirror is a curved-surface reflecting mirror.
In one embodiment, the micro display is a micro LED display or a mini LED display.
In one embodiment, the controller further includes a wireless charging device. The wireless charging device is wirelessly connected with the micro display, providing wireless charging signals to the micro display and thus supplying electric energy to the micro display for operation.
In one embodiment, the micro display includes a substrate, a receiver; a rectifier, an energy storage element, a driver circuit, and a LED array. The receiver, the rectifier, the energy storage element, the driver circuit, and the LED array are disposed on the substrate. The receiver is wirelessly connected with the micro display and the wireless charging device, and configured to receive the wireless charging signals from the wireless charging device and the control signals from the controller. The rectifier is connected with the receiver, and configured to receive and rectifying the wireless charging signal. The energy storage element is connected with the rectifier, and configured to receive the rectified wireless charging signal and converting the rectified wireless charging signal into electric energy for storage. The driver circuit is connected with the energy storage element and the receiver, and configured to receive electric energy and control signals. The LED array is connected with the driver circuit. The driver circuit provides electric energy for the LED array and controls the LED array to operate according to the control signals.
Below, embodiments are described in detail to make easily understood the objectives, technical contents, characteristics and accomplishments of the present invention.
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.
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
Refer to
Next is described the structure of the contact lens 10. Refer to
Next, the structure of the micro display 12 is described in detail below. Refer to
Next, the operation of the intelligent virtual display device 1 is described in detail below. Refer to
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.
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.
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.
Number | Date | Country | Kind |
---|---|---|---|
109144113 | Dec 2020 | TW | national |