Abstract:
PROBLEM TO BE SOLVED: To suppress degradation in insulation performance of a substrate by protecting it against chemical and radical used during a manufacturing process. SOLUTION: A band pass filter 3 includes a substrate 11 and a band pass filter element X1 which is a conductive structure being formed on the substrate 11, On the surface of the substrate 11, an oxide film 12 is formed which comprises a SiO 2 film formed with a surface resistivity of 40 KΩ/square or higher by using a TEOS-CVD method. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To adjust the pass bandwidth as well as the center frequency in the pass band in a filter. SOLUTION: A first resonance line 12 and a second resonance line 12b each extending from an input point 13 to which a high-frequency signal is input are provided, and a propagation length L 1 of the first resonance line 12a and a propagation length L 2 of the second resonance line 12b are set to L 1 =[λ 1 /4]×n and L 2 =[λ 2 /4]×n. Here, λ 1 and λ 2 are wavelengths of specific high-frequency signals and n is a positive odd number. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a new technique for an electrode which can be used for a gas discharge panel, a substrate for the gas discharge panel, the gas discharge panel and a gas discharge panel display device. SOLUTION: A self-organization film is formed on a rib formation surface of the substrate for the gas discharge panel, and a part of the self-organization film is activated so that a material serving as a plating catalyst can be adhered. The material serving as a plating catalyst is adhered to the activated part to be a plating catalyst. By an electroless plating method utilizing the plating catalyst, an electroless plating layer is formed in the upper part of the part of the self-organization film. Thus, an address electrode is formed. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To enhance contrast on a screen, by forming a deep groove part serving as a luminescent area and a shallow groove part serving as a non-luminescent area, in a recessed groove between partitioning walls, and by transferring a black material layer only to the shallow groove part to form the black material layer in the non-luminescent area. SOLUTION: In this panel assembly for a PDP provided with the partitioning walls for partitioning a discharge space on a substrate, the deep groove part serving as the luminescent area and the shallow groove part serving as the non-luminescent area are formed in the recessed groove between the adjacent partitioning walls, and black material layer is formed in the black material layer serving as the non-luminescent area. COPYRIGHT: (C)2004,JPO
Abstract:
PROBLEM TO BE SOLVED: To provide a manufacturing method of a substrate for an image display panel wherein ribs are not provided in the peripheral region of the panel and wherein chip-off of rib end parts can be prevented. SOLUTION: This substrate is constituted so that a light permeating molding die provided with a recess corresponding to the rib is prepared, a rib forming material composed of a photosensitive paste is filled into the recess of the molding die, that the face filled by the photosensitive paste of the molding die is made to be abutted on the light permeating substrate, that the rib forming material containing a part selectively cured by applying light exposure to a display region of the substrate is made to be adhered to at least either one of the substrate or the forming die, and that the rib forming material including the part selectively cured is transcribed onto the substrate by peeling off the molding die from the substrate still while the rib forming material filled in the peripheral region of the panel adjacent to the display region is not cured yet. COPYRIGHT: (C)2004,JPO
Abstract:
PROBLEM TO BE SOLVED: To provide a PDP of a new cell structure excellent in light emission efficiency. SOLUTION: Display electrodes are arranged on the first one of a pair of substrates, and each electrode is formed three-dimensionally from a thin, long current feeding part straddling a plurality of cells arranged in one direction and a discharge part overhung in the electrode arranging direction from the current feeding part for each cell and approaching the second substrate. COPYRIGHT: (C)2003,JPO
Abstract:
PROBLEM TO BE SOLVED: To improve accuracy of the total pitch of a pattern and to prevent the pattern form breaking, when forming a fine pattern extending over a large area in screen printing method. SOLUTION: An electron pattern 19 is formed on a panel substrate 11 by a process of forming an electrode pattern wider than a prescribed width of an electrode wire by screen printing method using a photosensitive paste 14, and a process of applying light exposure on the conductive paste pattern 16 formed by the screen printing method using a photomask 17 having an electrode pattern 18 of which, a width of wiring is narrower than the width of the conductive paste pattern. The electrode pattern 19 is formed through the developing of the pattern, after exposure.
Abstract:
PROBLEM TO BE SOLVED: To provide an advertisement provision system and method which can expect a sure propaganda and advertisement effect even to passive users with a smaller initial investment amount. SOLUTION: This system is connected to the Internet, incorporates the advertisement contents produced by an advertisement provider into first Web contents at a prescribed ratio, forms fresh second Web contents, receives the second Web contents through the Internet, analyzes the contents of the second Web contents, divides the second Web contents to image information and character information, converts the image information to a data type capable of inputting the image information to a TV monitor possessed by a user, converts the character information into speech data and synthesizes the converted image information and speech data to form fresh third Web contents. The user views the third Web contents on the TV monitor.
Abstract:
PROBLEM TO BE SOLVED: To form a barrier plate of a thin display device having a high aspect ratio by solving difficulties existing in the contemporary technique, even when forming it by a transfer method. SOLUTION: In the method to form the barrier plate 16 on a panel base by transferring a barrier plate material 14 filled in the groove of a transfer intaglio 13 to the panel base 11, a protrusion 14 having a width of not more than that of the opening of the groove formed in the transfer intaglio and a lower height than the depth of the groove is formed in advance at a prescribed position on the panel base, the groove of the transfer intaglio filled with the barrier plate material is aligned to the protrusion on the base, the panel base and the transfer intaglio are superposed under this condition, the transfer intaglio is separated from the panel base after that, and thereby the barrier plate having the protrusion as a core material (foundation) is formed on the panel base.
Abstract:
PROBLEM TO BE SOLVED: To form linear electrodes having a generally uniform line width on the bottom surfaces of grooves between barrier ribs by carrying out oblique exposure by using plural meandering barrier ribs as a photomask whose depths of the grooves between the barrier ribs are formed small where the groove width is small, and large where the groove width is large on a substrate. SOLUTION: Plural meandering ribs 29 are so formed on a back side substrate 21 by means of sand blasting as to set the depth of grooves between the ribs 29 small where the groove width is small, and large where the groove width is large. Then, an electrode material and a photo-sensitive material are applied to the whole surface of the substrate 21, and light is obliquely radiated on the substrate 21 by using the ribs 29 as a photomask so that only electrode formation regions in the grooves between the ribs 29 become non-exposed parts. Then, linear address electrodes A having generally uniform width are formed on the bottom surfaces of the grooves between the ribs 29 by carrying out development, and sustaining electrodes X, Y are formed on the inner surface side of a front side substrate 11. Thus, this plasma display panel(PDP) 1 is provided.