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The technology was quickly applied to the entire Trinitron range, from 13 to 40 inch along with high resolution versions; Hi-Scan and Super Fine Pitch. With the introduction of the FD Trinitron, Sony also introduced a new industrial style, leaving the charcoal-colored sets introduced in the 1980s for a new silver styling.
Initially introduced on their 27, 32 and 36 inch models in 1998, the new tubes were offered in a variety of resolutions for different uses. The basic WEGA models supported normal 480i signals, but a larger version offered 16:9 aspect ratios. The technology was quickly applied to the entire Trinitron range, from 13 to 36 inch.
In 1995, Fujitsu introduced the first 42-inch (107 cm) plasma display panel; [17] [18] it had 852×480 resolution and was progressively scanned. [19] Two years later, Philips introduced at CES and CeBIT the first large commercially available flat-panel TV, using the Fujitsu panels. Philips had plans to sell it for 70,000 french francs.
The following table compares cathode-ray tube (CRT), liquid-crystal display (LCD), plasma and organic light-emitting diode (OLED) display device technologies. These are the most often used technologies for television and computer displays.
For sale in Japan on July 30, 2008, Sony's green product, a new flat-panel 32-inch TV for ¥150,000 (US$1,400; €900) BRAVIA KDL-32JE1 offers ecological consumers the advantage of 70% less energy consumption than regular models with same image quality.
A 140 cm (56 in) DLP rear-projection TV Large-screen television technology (colloquially big-screen TV) developed rapidly in the late 1990s and 2000s.Prior to the development of thin-screen technologies, rear-projection television was standard for larger displays, and jumbotron, a non-projection video display technology, was used at stadiums and concerts.
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