1. Field of the Invention
The present invention relates to a display apparatus, and more particularly to a floating virtual display apparatus capable of being used as a screen.
2. Description of Related Art
Taiwan publishing patent NO. 200951771 discloses an apparatus with a virtue touch screen, including a screen, an optical mechanism, and a detection module, where the optical mechanism has at least one optical lens The picture on the screen is formed into a corresponding virtual screen image in a space through the optical mechanism by means of optical imaging principle. The detection module is used to detect whether a user touches the virtual screen image or not, detect and analyze the position of a contact position with the virtual screen, and transfer the position to a contact position with the screen corresponding thereto and signal commands so that the user can operate the digital contents displayed on the virtue screen with a touch control mode, thereby achieving the effect of operating the screen substantially instead of touching it directly. The above-mentioned Taiwan published patent still need use a general screen to provide the images needed for the virtual screen, and a traditional screen cannot be omitted to reduce the cost.
Referring to
Referring to
Referring to
To improve a conventional floating virtual display apparatus, the present invention is proposed.
The main object of the present invention is to provide a floating virtual real image display apparatus, including a scanning mechanism, and a real image imaging unit and a light source; when a light beam emitted from the light source, it will be reflected and refracted by the real image imaging unit to generate a real image corresponding to the light source; a floating virtual image is generated after the position of the real image is altered through the scanning of the scanning mechanism.
Another object of the present invention is to provide a floating virtual real image display apparatus, allowing a floating virtual image to display a variable virtual image like a floating moving screen by controlling a laser light source to emit bright, dark light beams corresponding to an image.
The present invention can be more fully understood by reference to the following description and accompanying drawings, in which:
Referring to
The light source 51, real image imaging unit 52 and image signal processing unit 54 are respectively coupled to the second bracket 536 of the scanning mechanism 53. The real image imaging unit 52 is a concave lens. The scanning way of the scanning mechanism 53 is first taking the first shaft. 532 as a rotating center scanning from left to right, and then taking the second shaft 535 as a rotating center rotating down-up a small angle. Thereafter, the scanning mechanism 53 takes the first shaft 532 as a rotating center again rotating from right to left, and repeats the above-mentioned procedures scanning from left to right and up to down over and over again.
When a light beam 511 is emitted from the light source 51, the light beam 511 is reflected and refracted by the real image imaging unit (concave lens) 52 to generate a real image 501. A floating virtual image 50 is displayed to a human's vision through human persistence of vision after the position of the real image 501 is altered through the scanning of the scanning mechanism 53 with a scanning speed of more than 24 times per second to the whole picture of the virtual image 50. The floating virtual image 50 is allowed to display a variable virtual image like a floating moving screen by controlling the light source 51 to emit different bright, dark light beams corresponding to an image through the image signal processing unit 54.
Referring to
In the present embodiment, a light beam emitted from the light source 51 is reflected by the mirror 521 to the convex lens 522 or Fresnel lens having an imaging function, and then refracted by the convex lens 522 or Fresnel lens having an imaging function to generate an real image 501, and a floating virtual image 50 is generated after the position of the real image 501 is altered through the scanning of the scanning mechanism 53.
Referring to
A light beam 611 is reflected and refracted by the real image imaging unit 62 to generate a real image 601 when the light beam 611 is emitted from the light source 61. A floating virtual image 60 is displayed to a human's vision through human persistence of vision after the position of the real image 601 is altered through the scanning of the scanning mechanism 63 with a scanning speed of more than 24 times per second to the whole picture of the virtual image 60.
In the present embodiment, the light beam 611 is emitted from the light source 61 is first reflected by the scanning mirror 631 to the convex 621 or Fresnel lens having an imaging function, and further refracted by the convex lens 621 or Fresnel lens having an imaging function to generate the real image 601. Thereafter, the position of the real image 601 is altered by means of the scanning of the scanning mirror 631, thereby generating a floating virtual image 60. The floating virtual image 60 is allowed to display a variable virtual image like a floating moving screen by controlling the light source 61 to emit different bright, dark light beams corresponding to an image through the image signal processing unit 64.
Referring to
A light beam 711 is reflected and refracted by the real image imaging unit (concave lens) 72 to generate a real image 701 when the light beam 711 is emitted from the light source 71. A floating virtual image 70 is displayed to a human's vision through human persistence of vision after the position of the real image 701 is altered through the scanning of the real image imaging unit (concave lens) 72 driven by the scanning unit 731 with a scanning speed of more than 24 times per second to the whole picture of the virtual image 70. The floating virtual image 70 is allowed to display a variable virtual image like a floating moving screen by controlling the light source 71 to emit different bright, dark light beams corresponding to an image through the image signal processing unit 74.
Referring to
The real image imaging unit 72′ of the present embodiment includes a combination of a convex lens 721 or a Fresnel lens and the scanning mirror 731′. The convex lens 721 or Fresnel lens having an imaging function is combined with the scanning mirror 731′ and can carry out a scanning with the scanning mirror 731′ in a way similar to the scanning of the scanning mirror in the third embodiment.
A light beam 711 is reflected and refracted by the real image imaging unit 72′ to generate a real image 701 when the light beam 711 is emitted from the light source 71. A floating virtual image 70 is displayed to a human's vision through human persistence of vision after the position of the real image 701 is altered through the scanning of the scanning mechanism 73′ with a scanning speed of more than 24 times per second to the whole picture of the virtual image 70. The floating virtual image 70 is allowed to display a variable virtual image like a floating moving screen by controlling the light source 71 to emit different bright, dark light beams corresponding to an image through the image signal processing unit 74.
When the light beam 711 emitted from the light source 71 of the present embodiment, the light beam 711 is reflected by the scanning mirror 731′ and then refracted by the convex lens 721 or Fresnel lens having an imaging function to generate a real image 701; a floating virtual image 70 is generated by driving the convex lens 721 or the Fresnel lens having an imaging function to scan through the scanning mirror 731′.
The scanning mechanism in the third to fifth embodiments of the present invention may be a conventional micro electro mechanical system (MEMS) scanning mechanism, and the light source in each embodiment mentioned above may be a light-emitting diode (LED) or laser light source.
In the floating virtual real image display apparatus of the present invention, a light beam is reflected and refracted by the real image imaging unit to generate a real image corresponding to the light source when the light beam is emitted from the light source; a floating virtual image like a floating virtual screen is generated after the position of the real image is altered through the scanning of the scanning mechanism; the floating virtual image is allowed to display a variable virtual image like a floating moving screen by controlling the light source to emit bright, dark lines corresponding to an image such that a traditional screen can be omitted thereby reducing the cost.
Additional advantages and modifications will readily occur to those skilled in the art. Therefore, the invention in its broader aspects is not limited to the specific details and representative embodiments shown and described herein. Accordingly, various modifications may be made without. departing from the spirit or scope of the general inventive concept as defined by the appended claims and their equivalents.
Number | Date | Country | Kind |
---|---|---|---|
100122661 | Jun 2011 | TW | national |