Abstract:
PROBLEM TO BE SOLVED: To make it possible to easily perform correction and change of a figure, a letter and the like printed on a printing surface by making it possible to repetitively print different figures, letters and the like a plurality of times on the printing surface in an information recording medium wherein printing can be performed on the printing surface such as a label side. SOLUTION: In the information recording medium 10 wherein data can be recorded, a plurality of sheet layers 22A, 22b, 22C, 22D and 22E which are layered via adhesive layers 24A, 24B, 24C and 24D are provided on the printing surface 20a side opposite to a data recording surface 10a, each of the sheet layers 22A, 22B, 22C, 22D and 22E includes a base layer 222A(B, C, D, E) consisting essentially of synthetic resin and an ink receiving layer 224A(B, C, D, E) formed on the surface of the base layer 222A(B, C, D, E) and containing inorganic fine particles and a binder, and the sheet layers 22A, 22B, 22C and 22D can be peeled from the direct under sheet layers 22B, 22C, 22D and 22E which are made to adhere to the upper sheet layers 22A to 22D. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To prevent change of concentration, and deposition and fixing of a substance in a medium caused by drying of the medium stored or retained in a reaction area providing a place for interaction of the substances. SOLUTION: This bioassey device 2 comprises at least a medium supply means for supplying the medium including the substance relating to the interaction, to the reaction area R providing a place for interaction between substances such as hybridization, and a moisture resupply means for automatically resupplying the necessary moisture to the reaction area. The device 2 may have a constitution having a volume detecting means capable of automatically detecting a volume of the medium retained on the reaction area R. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To speed up interaction in a channel part that is a field of the interaction between substances. SOLUTION: This detection part has: a reservoir part R storing or holding a medium M; the channel part C that is the field between the substances progressing inside the medium sent from the reservoir part R, communicating with the reservoir part R; an outside air communication part A communicating with the channel part C; and counter electrodes E 1 -E 2 oppositely disposed such that the counter electrodes E 1 -E 2 face the channel part C, capable of applying an electric field to the medium M inside the channel part C. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To perform hybridization at high speed. SOLUTION: As for a substrate 1 for bioassay, the main surface similar to an optical disk such as a CD has an annular flat shape. The substrate 1 is driven rotatively on a center hole 2. The substrate 1 has the surface 1a on which a plurality of wells 8 are formed, which are fields for a hybridization reaction between a probe DNA and a sample DNA. A transparent electrode film 4 is formed on the lower layer of the wells 8 on the substrate 1. At the hybridization time, an external electrode 18 is brought close from the upper surface 1a side of the substrate 1, and an alternating-current power is applied between the transparent electrode film 4 and the external electrode 18, to thereby apply an alternating-current field in the vertical direction to the substrate 1. An application method of the field to the transparent electrode film 4 is performed from a chucking mechanism through the center hole. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To perform hybridization at a high speed. SOLUTION: The substrate 1 for hybridization is constituted so that the main surface, which is the same as that of an optical disk such as CD or the like, thereof shows a circular flat plate-like shape. This substrate 1 is rotationally driven, centered about a center hole 2 and a plurality of wells 8, each of which becomes a field of hybridation reaction of probe DNA and sample DNA, are formed on a surface 1a of the substrate 1. The surface of the substrate 1 is coated, for example, with a polymer containing a π-conjugated unit, such as polyvinyl carbazole, polyphenazarsine. By this method, the probe DNA can be fixed to the inside of the well, in a stretched state with the probe DNA streched. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide an electrode ring in which the extraction efficiency of secondary electrons emitted from a test piece is improved, and provide an electron microscope having the same. SOLUTION: The electrode ring 1 is constructed of an insulating tube 2 having a hollow part 6, an electrode membrane 3 for voltage impression which is formed on the end face opposed to the test piece with a fine gap and has an equal potential to the test piece, a grounding electrode membrane 4 which is formed and grounded on the other end face, and a resistance membrane 11 which is formed on the inner face of the hollow part 6 and connects between the electrode membrane 3 for voltage impression and the grounding electrode membrane 4. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a master disk for manufacturing an optical recording medium which is capable of forming the sectional shape of minute rugged patterns with good controllability in forming the minute rugged patterns by utilizing a focused electron beam capable of performing the pattern exposure suitable for a higher recording density. SOLUTION: The master disk for manufacturing the optical recording medium having the minute rugged patterns which manufactures the optical recording medium having the minute rugged patterns is provided with a substrate 1 which consists of silicon and a minute rugged pattern layer 2 which consists of a silicon oxidized film and is subjected to pattern etching corresponding to the minute rugged patterns 5 on this substrate 1. COPYRIGHT: (C)2003,JPO
Abstract:
PROBLEM TO BE SOLVED: To provide a high quality optical master disk by high precisely controlling the development of the pit and/or the groove of the optical master disk. SOLUTION: In the method of manufacturing the optical master disk for forming projecting and recessed patterns by developing an exposed photoresist, the photoresist layer is irradiated with the second harmonic of solid laser as reference beam in the development and the developing process is finished based on the level of a diffracted light in the projecting and recessed pattern.
Abstract:
PROBLEM TO BE SOLVED: To provide a small-sized, light and simplified exposure device using an electron beam without requiring much manhour when a substrate is exposed and to provide a master disk and an information recording medium easily formed using the exposure device. SOLUTION: This device is the exposure device 1 using the electron beam irradiating/exposing the electron beam emitted from an electron gun 11 on a resist layer 51 formed on the substrate 50 through an objective lens 23. In such a case, the electron gun 11 and the objective lens 23 are housed in a pressure vessel 2 of 10 Pa or below, and a membrane 5 is provided on the part of the vessel 2 through which the electron beam transmits.
Abstract:
PROBLEM TO BE SOLVED: To prepare a disk original plate having a precise and fine pattern by properly plotting a desired pattern to a resist material applied onto a substrate to be rotatively operated through electron beams. SOLUTION: The current density J being the size of a current per the unit area of electron beams is set to satisfy J>=A×S/ P×1 [h]×π⊗W} at the time of setting the area of the recording area of an optical recording medium to be A, the track pitch of the optical recording medium to be P, an electric charge quantity per the unit area to be required for plotting a chemical amplifying type resist 2 to be S and the radius of the spot of the electron beams to be irradiated to the resist 2 to be W.