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NP42B2ME01

NEC
Part Number NP42B2ME01
Manufacturer NEC
Description COSMOPLASMA
Published Mar 6, 2006
Detailed Description DATA SHEET COLOR PLASMA DISPLAY MODULE Preliminary-1 (8th Nov.2001) NP42B2ME01 COSMOPLASMA 106 cm (42 type), Wide scr...
Datasheet PDF File NP42B2ME01 PDF File

NP42B2ME01
NP42B2ME01


Overview
DATA SHEET COLOR PLASMA DISPLAY MODULE Preliminary-1 (8th Nov.
2001) NP42B2ME01 COSMOPLASMA 106 cm (42 type), Wide screen (853 x 480 Pixels), Digital Module Digital RGB signal, 8bits signal each DESCRIPTION The NP42B2ME01 is a 42-inch wide color plasma display module with a power supply.
And its resolution is 853(H)x480(V) pixels.
The display offers vibrant colors we reproduced in a thin and low profile package.
This device uses AC plasma technology by NEC and includes an 8-bit of digital video signal interface for each RGB color.
FEATURES • Applied Capsulated Color Filter (CCF) technology, developed at NEC, which offers a high quality image match for CRT display.
To offer remarkably pure colors, t he color plasma display panel uses extremely clear, thin capsulated color filters to cut unnecessary light as the plasma discharges.
• Peak luminance of 700cd/m2 (typical value) is achieved through a new driving method, which offers extremely vivid image with good contrast.
• Applied Peak Luminance Enhancement (PLE) function that enables the display to operate with the ideal contrast.
The PLE function makes it possible to adjust the average luminance level of the PDP display automatically in accordance with the average luminance level of an input video signal.
APPLICATIONS • Wide Screen TV (aspect ratio 16:9) • Public Information Display • Video Conference Systems • Retail • Education and Training Systems m o .
c U 4 t e e h S a t a .
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c U 4 t e e The information in this document is subject to change without notice.
h S a at .
D w w w NP42B2ME01 Preliminary-1 (8th Nov.
2001) 2/34 STRUCTURE AND PRINCIPLE OPERATION OF PLASMA DISPLAY In a Plasma Display Panel, Row and Column electrodes are placed between two glass substrates.
A rare gas is then filled between each substrate.
When a high voltage is applied to these electrodes, the gas is activated resulting in the radiation of ultraviolet light, similar to the operation in fluorescent lamps.
These ultraviolet r...



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