Abstract:
A delivery service providing system includes an entrance and exit control unit, an identifier control unit, and a delivery service providing unit. The entrance and exit control unit inputs a ticket identifier of a user who has entered or exited a predetermined area and transmits the identifier to the identifier control unit. The identifier control unit registers the ticket identifier to a database and erases the ticket in case of exit. The identifier control unit receives an identifier set of a ticket identifier and a user's unit identifier from a user's unit, checks to judge whether an identifier set matching the received identifier set in the database. If the result is positive, the delivery service providing unit delivers digital contents to the user's unit. It then becomes possible to provide only the users existing in the area with the contents deliver service.
Abstract:
A photosensitive composition, which comprises (A) a compound capable of generating an organic acid represented by formula (I) upon irradiation with actinic ray or radiation: Z-A-X—B—R—(Y)n (I) wherein Z represents an organic acid group; A represents a divalent linking group; X represents a divalent linking group having a hetero atom; B represents an oxygen atom or —N(Rx)—; Rx represents a hydrogen atom or a monovalent organic group; R represents a monovalent organic group substituted with Y, and when B represents —N(Rx)—, R and Rx may be bonded to each other to form a cyclic structure; Y represents —COOH or —CHO, and when a plurality of Y's are present, the plurality of Y's may be the same or different; and n represents an integer of from 1 to 3.
Abstract translation:一种光敏组合物,其包含(A)在用光化射线或辐射照射时能够产生由式(I)表示的有机酸的化合物:<?在线公式描述=“在线式”末端=“铅 “(Z)ZXBR-(Y)(I)<?in-line-formula description =”In-line Formulas“end =”tail“?>其中Z表示有机酸基团; A表示二价连接基团; X表示具有杂原子的二价连接基团; B表示氧原子或-N(R x X) - ; R x表示氢原子或一价有机基团; R表示被Y取代的一价有机基团,当B表示-N(R x X))时,R和R x可彼此键合形成环状 结构体; Y表示-COOH或-CHO,当存在多个Y时,多个Y可以相同或不同; n表示1〜3的整数。
Abstract:
A photosensitive composition, which comprises (A) a compound capable of generating an organic acid represented by formula (I) upon irradiation with actinic ray or radiation: wherein Z represents a monovalent organic group, when two Z's are present, the two Z's may be the same or different, and they may be bonded to each other to form a cyclic structure; X represents —CO— or —SO2—, when two X's are present, the two X's may be the same or different; R represents a monovalent organic group, when two R's are present, the two R's may be the same or different, and they may be bonded to each other to form a cyclic structure; Z and R may be bonded to each other to form a cyclic structure; and n represents an integer of 1 or 2; and the compound capable of generating the organic acid represented by formula (I).
Abstract:
A photosensitive composition containing a compound capable of generating a specific acid having the plural number of sulfonic groups by irradiation with an actinic ray or a radiation and a pattern forming method using the same.
Abstract:
A method of manufacturing an optical element including the steps of: forming a through hole in a semiconductor element which has an optical section and an electrode electrically connected to the optical section; and forming a conductive layer extending from a first surface of the semiconductor element on which the optical section is formed, through an innerwall surface of the through hole, to a second surface opposite to the first surface.
Abstract:
There is provided a multi-layered structure forming method comprising: (A) forming a first insulating material layer containing a first photo-curing material on a substrate; (B) semi-hardening the first insulating material layer by radiating light having a first wavelength to the first insulating material layer; (C) forming a conductive material layer on the semi-hardened first insulating material layer by ejecting droplets of a conductive material to the semi-hardened first insulating material layer from a nozzle of a liquid droplet ejecting apparatus; (D) forming a second insulating material layer containing a second photo-curing material so as to cover the semi-hardened first insulating material layer and the conductive material layer; and (E) forming a first insulating layer, a conductive layer positioned on the first insulating material, and a second insulating layer covering the first insulating layer and the conductive layer by simultaneously heating the first insulating material layer, the conductive material layer, and the second insulating material layer.
Abstract:
A shield wire includes a first conductive wiring that is formed by discharging with a droplet discharging device, for passing electric current or an signal; a second conductive wiring that is formed by discharging with a droplet discharging device; and an insulating portion formed between the first conductive wiring and the second conductive wiring by discharging with a droplet discharging device.
Abstract:
A method for making layers includes (A) applying or supplying a liquid intermediate material on a first layer composed of a first insulating resin to form an intermediate material layer on the first layer; (B) applying or supplying a liquid conductive material containing a first metal on the intermediate material layer to form a conductive material layer on the intermediate material layer; and (C) activating the intermediate material layer and the conductive material layer to form an intermediate layer and a conductive layer on the intermediate layer. The liquid intermediate material contains a precursor of a second insulating resin and fine particles of a second metal.
Abstract:
A photosensitive composition comprising a compound capable of generating a specific sulfonic acid upon irradiation with actinic rays or a radiation; a compound capable of generating a specific sulfonic acid upon irradiation with an actinic ray or a radiation; and a pattern forming method using a photosensitive composition comprising a compound capable of generating a specific sulfonic acid upon irradiation with an actinic ray or a radiation.
Abstract:
A method of manufacturing a semiconductor device comprises a step of forming a through-hole in a semiconductor chip having an electrode and forming a conductive layer on a region comprising an inner side of the through-hole. An intermediate portion of the through-hole is formed to be larger than an edge portion thereof, and the conductive layer is formed by electroless plating.