Sony BVME250A Brochure (BVM / PVM Series OLED Monitor) - Page 6
TRIMASTER EL - RGB 10-bit, Full HD
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Advantages of TRIMASTER EL Technology TRIMASTER EL - RGB 10-bit, Full HD 24.5" panel* 16.5" panel* Sony's unique Super Top Emission technology Deep black with wide dynamic range * 623.4 mm, and 419.7 mm (respectively), measured diagonally. Quick response with virtually no motion blur Wide color gamut and accurate color reproduction TRIMASTER EL - Self-emitting Display Device TRIMASTER EL creates light by recombining an electron and a hole within certain organic materials. The process of emitting light is extremely efficient when compared to other technologies currently used for display. Its organic materials react to the control of the electrical current immediately, and do not emit light in the absence of an electrical current. In this way, the OLED display panel features superb black performance and quick response to fast-motion pictures. In addition, Sony's OLED display panel delivers a wider color gamut. Super Top Emission Technology Sony's Super Top Emission OLED panel is designed to deliver light emission with the TFT layer on the rear side of the panel. Therefore, the top emission structure offers more efficient light emission than is typical with bottom emission structures where TFT layers are placed on the front side of the panel, limiting the light-emission aperture. This Super Top Emission technology has a micro-cavity structure which incorporates color filters. This cavity structure uses an optical resonance effect to enhance color purity and improve light-emission efficiency. In addition, the color filter of each RGB also enhances the color purity of emitted light, and reduces ambient light reflection. Sony's Super Top Emission OLED panel is completely sealed by a glass substrate, and the electroluminescent layer is fully isolated from outside air and moisture. This contributes to stability and reliability. Optical Resonance (Multiple Re ection Interference Effect) Glass Substrate Color Filter Semi-transparent Cathode Emission Layer Anode TFT Glass Substrate Micro-cavity Structure Intensity (A.U.) Green Light Emitting Spectrum 1.2 1.0 With cavity Without cavity 0.8 Reduces 0.6 unnecessary optical ingredients 0.4 0.2 0.0 400 500 600 700 800 Wavelength (nm) 6