1. Field of the Invention
The present invention relates to a planar display device, and more particularly, to a waveguide device for a planar display device and related planar display device.
2. Description of the Prior Art
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The image source 12 emits a plurality of modulated light beams disposed in the form of a matrix, the modulated light beams forming an image. The display panel 22 is installed to display the image. The slab waveguide 16 comprises a light entrance plane 24 and a light exit plane 26. The slab waveguide 16 guides the modulated light beams projected onto the light entrance plane 24 to the light exit plane 26, so as to extend the image formed by the modulated light beams. The projection lens 14 is installed to project the image (that is, the modulated light beams) generated by the image source 12 onto the light entrance plane 24 of the slab waveguide 16. The wedge waveguide 18 receives the extended image extended by the slab waveguide 16 (the extended image enters the wedge waveguide 18 via a light entrance plane 28 of the wedge waveguide 18), and, through a reflection effect performed by a wedge plane 30, gradually decreases the incident angles that the modulated light beams enter a plane 32 to form the image on the display panel 22 from bottom to top.
Though the projection lens 14 is capable of projecting all of the modulated light beams emitted from the image source 12 onto the light entrance plane 24 of the slab waveguide 16, it lacks of the capability to project each of the modulated light beams to a desired position on the light entrance plane 24 of the slab waveguide 16. For example, when projecting the modulated light beams onto the light entrance plane 24 of the slab waveguide 16, the projection lens 14 projects modulated light beams disposed in a central region of the image source 12 to a desired position. Therefore, the image displayed on the display panel 22 is distorted.
It is therefore a primary objective of the claimed invention to provide a waveguide device for a planar display device and related planar display device to overcome the above-mentioned problems.
The waveguide device includes a slab waveguide having a light entrance plane and a light exit plane opposite to the light entrance plane, a lens array, a wedge waveguide, and a fixing device for fixing the wedge waveguide to the slab waveguide. The lens array consists of a plurality of lens units disposed in the form of a matrix. The lens units correspond to a plurality of modulated light beams emitted by an image source and disposed in the form of a matrix. Each of the lens units is capable of tuning and guiding a corresponding modulated light beam to project onto a predetermined position of the light entrance plane of the slab waveguide. The wedge waveguide has a light entrance plane for receiving modulated light beams emitted from the light exit plane of the slab waveguide, and a light exit plane installed on a side of the display panel for projecting modulated light beams received by the light entrance plane of the wedge waveguide onto a display panel, so as to form the image on the display panel.
The planar display device includes an image source for emitting a plurality of modulated light beams disposed in the form of a matrix, a display panel for displaying an image, a slab waveguide having a light entrance plane and a light exit plane opposite to the light entrance plane, a lens array, a wedge waveguide, and a fixing device for fixing the wedge waveguide to the slab waveguide. The lens array comprises a plurality of lens units corresponding to the modulated light beams and disposed in the form of a matrix. Each of the lens units is capable of tuning and guiding a corresponding modulated light beam to project onto a predetermined position of the light entrance plane of the slab waveguide. The wedge waveguide has a light entrance plane for receiving modulated light beams emitted from the light exit plane of the slab waveguide, and a light exit plane installed on a side of the display panel for projecting modulated light beams received by the light entrance plane of the wedge waveguide onto the display panel, so as to form the image on the display panel.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
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The lens array 44 comprises a plurality of lens units 46 disposed in the form of a matrix and corresponding to the modulated light beams. Each of the lens units 46 is capable of individually tuning and guiding a corresponding modulated light beam onto a predetermined position on the light entrance plane 24 of the slab waveguide 16.
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In the first embodiment, the image source 12 comprises a light source for emitting light, and a digital micro-mirror device comprising a plurality of micro mirrors disposed in the form of a matrix for reflecting the light emitted from the light source and forming the modulated light beams. The image source 12 of the planar display device 40 can be a digital light processor (DLP), a liquid crystal display panel (LCD), or a liquid-crystal-on-silicon (LCOS) device.
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In addition to the slab waveguide 16 and wedge waveguide 18, the planar display device 50 further comprises a Dyson catadioptric system 52, and the planar display device 60 further comprises an Offner catadioptric system 62. Of course, the planar display devices 50 and 60 also comprise the image source 12, the fixing device 20, the display panel 22, and the lens array 44, which are omitted from
Both of the Dyson catadioptric system 52 and the Offner catadioptric system 62 are disposed near the light exit plane 26 of the slab waveguide 16 and the light entrance plane 28 of the wedge waveguide 18 for refracting and reflecting the modulated light beams emitted from the light exit plane 26 of the slab waveguide 16, i.e. along arrows shown in
Because the slab waveguide 16 is installed shoulder-to-shoulder with the wedge waveguide 18, the planar display devices 50 and 60 have structures more compact than that of the planar display device 40.
In contrast to the prior art, the planar display devices 40, 50, and 60 of the present invention comprise the lens array 44, which comprises the plurality of lens units 46. Because each of the lens units 46 is capable of individually tuning and guiding a corresponding modulated light beam onto a corresponding predetermined position on the light entrance plane 24 of the slab waveguide 16, the image displayed on the display panel 22 is not distorted. Moreover, the installation of the Dyson catadioptric system 52 or the Offner catadioptric system 62 enables the slab waveguide 16 to be located at a region behind the wedge waveguide 18, so that both the planar display device 50 and the planar display device 60 have compact structures.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.