Abstract:
An atomizer (2) with a rotary atomizing head (4) is mounted on the front side of a housing member (6) in which an air motor (3) is accommodated. A primary external electrode (8) is located around the outer peripheral side of the housing member (6) in such a way as to encircle the housing member (6). A secondary external electrode (10) is located on the front side of the housing member (6), in a position closer to the rotary atomizing head (4) than the primary external electrode (8). A first high voltage (V1) in the form of a direct-current voltage is supplied to the primary external electrode (8) from a first high voltage generator (11). On the other hand, a second high voltage (V2), in the form of a pulsating voltage (V2p) consisting of a series of intermittent pulses in a range lower than the first high voltage (V1), is supplied to the secondary external electrode (10) from a second high voltage generator (12).
Abstract:
An atomizer including an air motor and a rotary atomizing head, mounted in a front side of a housing member, while a high voltage generator applying a high voltage to paint through the air motor is mounted in a rear side of the housing member. A cover member is fitted on the housing member to cover an outer surface of the housing member. Opposite axial ends of the cover member are fitted on and attached to opposite axial ends of the housing member so as to leave an annular gap space between the cover member and the housing member. The annular gap space keeps almost entire radially confront areas of the cover member and the housing member, preventing high voltage electrostatic charges on the outer surfaces of the cover member from leaking through the housing member.
Abstract:
Buffer solution and blood are streamed in a channel of a micro chip so as to form layers. Aggregation inducing agent for aggregating platelets in blood is coated at a wall face on a buffer solution streaming side. If streaming amount of blood is increased in this state, a layer width of blood can be increased, and detail analysis between the aggregation inducing agent and the platelets is possible thereby. Even if it is necessary to take an image or a moving image for comparison between a pre-aggregation state and an aggregation state, it is sufficient to take only a portion where the aggregation inducing agent is coated, that is, a reaction portion. Then, a device can be made cheaper without two cameras or a moving mechanism for the camera or a micro chip.
Abstract:
An optical termination unit is provided for allowing an optical cable to be easily projected straight in any of five directions, including upward, downward, rightward, leftward, and rearward directions, thereby enhancing the efficiency of cable laying or the like. An end securing box 150 of the optical termination unit 100 includes a two-stage multi-tiered box structure separable to two bodies, the first stage including a clamp tray 120 and the second stage including a fusion tray 130 which is provided with a lid (lid 140) thereupon. An inlet Im (m=1, 2, 3, 4, 5) for introducing the end of a second optical cable to be embedded in a wall or a pillar is provided at each face of the enclosure. Holes H1 and H2 formed on the rear face 115 are provided for securing the end securing box 150 with a nylatch n. The end securing box 150 having a rectangular solid shape has multiple holes formed therein. This allows the end securing box 150 to be secured to a rear face 115 so as to be arbitrarily oriented on a right angle basis.
Abstract:
An atomizer (1) which is composed of an air motor (2) and a rotary atomizing head (3) is mounted in a front side of a housing member (9), outer surfaces (9A) of which are covered in a cover member (10). Further, a high voltage discharge electrode assembly (15) is provided around a front side of the housing member (9), with outer periphery of the cover member (10) circumvented by a blade ring (17) of the high voltage discharge electrode assembly (15). An edge portion (19) in the shape of a thin blade is provided at a projected rear end of the blade ring (17). Thus, electric field is concentrated at the edge portion (19) to induce a corona discharge on and around entire blade ring (17).
Abstract:
To provide a method for preparing optically active compounds, which mainly contain (R)-amino compounds, by microbial enzymes efficiently and inexpensively; a polypeptide having stereoselective transaminase activity which can be suitably used for the above preparation method; and a DNA encoding the polypeptide. A method for preparing an optically active amino compound, characterized in stereoselectively transaminating by acting a transaminase on an amino group acceptor, a ketone compound in the presence of an amino group donor, a primary amine; a DNA comprising a nucleotide sequence encoding a polypeptide having stereoselective transaminase activity; and a polypeptide having stereoselective transaminase activity obtainable from a culture of a microorganism belonging to the genus Arthrobacter.
Abstract:
An anisotropically electroconductive connection body, in which two elements, each having electrodes on a confronting face, are connected with each other. The connection body is made up of a connecting material containing an adhesive component constituted mainly of a thermosetting resin, the connecting material being interposed between the two elements to be connected, and an extraneous portion of the connecting material protruding from the periphery of one of the elements on the other one of the elements, wherein the degree of hardening of the thermosetting resin in the connecting material in the extraneous portion is at least 60%.
Abstract:
The present invention relates to an emission cleaning installation which is easy to connect continuously even to existing large-scale incineration furnaces and which is able to oxidatively break down and eliminate environmental pollutants contained in the emissions, for example dioxins, dibenzofurans, coplanar PCBs, nitrogen oxides (NOx) and the like without temperature control of the emission temperature, by the photocatalytic action of the photocatalyst, and to a method for emission cleaning and elimination which uses the abovementioned emission cleaning installation.
Abstract:
A method for detecting or assaying one constituting member in a specific binding pair, for example, the antigen in an antigen/antibody pair, by utilizing specific binding such as binding between an antigen and an antibody, together with redox reaction for detecting a label, wherein an oxygen micro-electrode with a sensing surface area of 1 mm2 or less is used; and an apparatus to which the method is applicable. According to the method and by using the apparatus, redox reaction for assaying the label can be completed in such a short time as several minutes. Therefore, an inexpensive disposable apparatus for household use can be realized.
Abstract:
A process for mounting a semiconductor device whereby electrodes of a fine-pitch semiconductor device and a wiring board can be surely connected to each other. A process for mounting a semiconductor by electrically connecting an electrode 42a of an IC chip 4 to an electrode 10a of a wiring board 1 by using an anisotropic conductive adhesive film 3 having conductive particles 31 dispersed in an insulating adhesive, which process involves: the step of tentatively thermocompression bonding an insulating adhesive layer 2 free from conductive particle 31 onto the wiring board 1 and then forming a concave 20 of a definite size in the insulating adhesive layer 2; and the step of putting in the concave 20 of the insulating adhesive layer 2 an anisotropic conductive adhesive film 3 and then putting an IC chip 4 into the concave 20 followed by positioning and thermocompression bonding.