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Autostereoscopy is any method of displaying stereoscopic images (adding binocular perception of 3D depth) without the use of special headgear, glasses, something that affects vision, or anything for eyes on the part of the viewer. Because headgear is not required, it is also called "glasses-free 3D" or "glassesless 3D".
This is a list of 3D-enabled mobile phones, which typically use autostereoscopic displays. Some devices may use other kinds of display technology, like holographic displays or multiscopic displays. Some devices employ eye tracking in aiming the 3D effect to the viewer's eye. Opic Technologies, Inc. offers a 3D smartphone with stereoscopic ...
Integral imaging is an autostereoscopic or multiscopic 3D display, meaning that it displays a 3D image without the use of special glasses on the part of the viewer. It achieves this by placing an array of microlenses (similar to a lenticular lens ) in front of the image, where each lens looks different depending on viewing angle.
Toshiba (TOSBF) unveiled a new 3-D TV that viewers can watch without wearing special glasses. The 3-D liquid crystal display TV uses a high-definition screen backlit with LEDs, a special sheet on ...
MasterImage 3D also produces auto-stereoscopic displays for smartphones and tablets, which allow devices to present 3D images without the need for glasses. MasterImage 3D provides screens ranging from 4.3 inches to 10.1 inches. They achieve the effect through its patented Cell-Matrix Parallax Barrier technology, which uses a cell-gap approach ...
Berthier's diagram: A-B=glass plate, with a-b=opaque lines, P=Picture, O=Eyes, c-n=blocked and allowed views (Le Cosmos 05-1896)The principle of the parallax barrier was independently invented by Auguste Berthier, who published an article on stereoscopic pictures including his new idea illustrated with a diagram and pictures with purposely exaggerated dimensions of the interlaced image strips ...
zSpace Inspire and Inspire Pro were launched in January 2022 [32] which allows users to experience AR/VR without a head-mounted display (HMD) or glasses. The system includes integrated face-tracking technology, a haptic-feedback stylus, and a stylus sensor module, which tracks the position of the stylus to create the AR/VR experience.
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