Abstract:
PROBLEM TO BE SOLVED: To provide a non-volatile semiconductor device having high integration density, and to provide a method of manufacturing the same.SOLUTION: A non-volatile memory device comprises selection element layers containing silicon and nanomaterial aggregate layers stacked on the selection element layers. Each nanomaterial aggregate layer includes a plurality of micro conductive bodies and fine particles dispersed in a plurality of gaps between the micro conductive bodies. At least a surface of each fine particle is made of an insulating material other than silicon oxide.
Abstract:
PROBLEM TO BE SOLVED: To provide an image display device having high display capability. SOLUTION: The image display device comprises an enclosure 10 including a first board 11 which has an outer surface and an inner surface, the inner surface being provided with a fluorescent screen 16 having fluorescent layers of three or more colors including red, green, and blue, and a second board 12 which is disposed to be opposite to the first board 11 across a gap and carries an exciting source that excites the fluorescent layers. The image display device also comprises a color filter 30 disposed between the inner surface of the first board 11 and the fluorescent screen 16. The color filter 30 has filter layers 30G that are arranged opposite to green fluorescent layers 16G of the fluorescent screen 16, respectively, and that have a high transmission factor to light having a wavelength within a range of ±20 nm to a maximum emission spectrum wavelength among light emitted from the green fluorescent layers 16G. This transmission factor is higher than a transmission factor of light having a wavelength of 300 to 400 nm. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a display device capable of forming an excellent image, enhancing yield and reliability. SOLUTION: The SED is composed of a front panel having many phosphor layers R, G, B, a back panel having many electron emitting elements corresponding to the phosphor layers, side walls sealing and fixing peripheral part of the panels to each other, and a plurality of columnar spacers interposed between the panels and supporting pressure of atmospheric air. The phosphors R, G, B are formed by arraying a plurality of pixel rows 20 arrayed in wave-shaped pattern along long side direction of the front panel, in short side direction with a distance from each other. Spacer contact positions T are set at a widened area between the adjacent phosphor layers of the pixel rows separated from each other. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a display device which can be manufactured with relative ease at low cost and can improve a yield, and a method for manufacturing the display device. SOLUTION: An SED comprises a front substrate 2 having a phosphor screen and a metal back, a rear substrate having a plurality of electron emitting elements, an interlock spacer 8 placed between the front substrate 2 and the rear substrate, and a side wall to seal the periphery of the substrates. The interlock spacer 8 has a structure which couples a plurality of pillar spacers 8a with a metal wire 8b flat and beltlike, where both ends of the pillar spacers 8a are attached to the inner surfaces of the respective substrates. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an image display device of which the charging of a spacer is suppressed, withstand voltage characteristics can be improved, and atmospheric pressure resistance strength is improved. SOLUTION: Between a first substrate 10 in which a fluorescent screen 16 is formed and a second substrate in which a plurality of electron emitting sources 18 are installed, a plurality of spacers 30 supporting atmospheric pressure loads to act on these substrates are installed. Respective spacers are formed in nearly disk shapes, and have center axes extending almost in parallel with the first and the second substrates. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide an image display device which can be made large in size, and high in definition. SOLUTION: A plurality of spacer assemblies 22 are provided between a first substrate 10, on which a fluorescent face is formed and a second substrate 12 on which a plurality of electron emission sources 18 are provided. Each spacer assembly has a band-like support substrate 24 having a first surface 24a facing the first substrate and a second surface 24a facing the second substrate 24b, the plurality of spacers 30 erected on the second surface of the supporting substrate, arranged in a row along the longitudinal direction of the supporting substrate and abutted to the second substrate, respectively, and a recessed part 26 formed on the first surface of the support substrate to face the spacer. The plurality of spacer assemblies are arranged in parallel with each other and with an interval in between. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide an image display apparatus wherein voltage endurance property and reliability are improved by suppressing damage and electrification of a spacer. SOLUTION: An envelope of the image display apparatus has a first substrate 10 on which a fluorescent screen 16 containing a phosphor layer is formed and a second substrate 12 arranged to face the first substrate with a gap and provided with a plurality of electron emission sources 18 exciting the phosphor layer. A plurality of pillar-shaped spacers 30 supporting atmospheric-pressure load acting on the first substrate and the second substrate are provided between the first substrate and the second substrate. The plurality of spacers are glued on the first substrate with an adhesives 34 having electric resistance below electric resistance of the spacer and erected on the first substrate, respectively. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide an image display device capable of intending to enhance strength of a substrate and forming a phosphor screen with good precision while having enhanced reliability and display quality, and its manufacturing method. SOLUTION: An envelope 15 has a first substrate 10 and a second substrate 12 disposed face to face with the first substrate with a gap kept between. A support substrate 24 is provided on the inner surface of the first substrate while making surface contact with it. The support substrate has a plurality of bored holes 26 disposed side by side and its surface is coated with a blackened film. A phosphor layer is embedded in each bored hole of the support substrate and it faces the first substrate. A plurality of electron emitting sources 18 to emit electrons toward the phosphor layer is provided on the second substrate. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide an image display device having enhanced reliability and display quality by suppressing generation of an electric field caused by a gap between a spacer and a substrate. SOLUTION: An envelope 15 is equipped with a first substrate 10 on which a fluorescent screen 16 is formed, and a second substrate 12 on which a plurality of electron emitting sources 18 are provided. A plurality of columnar spacers 30 are raised between the first substrate and the second substrate to support the atmospheric pressure acting on the first and second substrates. The second substrate side ends of a plurality of the spaces are electrically connected each other by connecting members 60, and abut on the second substrate through the connecting members. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide an image display device achieving improvements in reliability and display quality by suppressing a deviation of an electron beam from its course. SOLUTION: A first substrate 10 with a fluorescent screen formed thereon and a second substrate 12 with a plurality of electron emission sources 18 provided thereon are opposed to each other. A plurality of spacers 30 to support an atmospheric pressure load acting on the first and second substrates are arranged in a standing condition between the first and second substrates. A plurality of projections 34a, 34b for correcting the movement of electron beams emitted from the electron emission sources are provided to project from the side of the first substrate toward the second substrate, and are opposed to the second substrate with a gap in between. COPYRIGHT: (C)2006,JPO&NCIPI