Abstract:
A straddle electric vehicle comprises a seat on which a rider is seated in a straddle state; right and left foot steps on which the rider puts feet, an electric motor for generating driving power for moving the straddle electric vehicle; a battery unit which is an electric power supply for activating the electric motor; and a battery case for storing the battery unit. The battery case is placed between the steering shaft and the seat in a forward or rearward direction and includes a seat vicinity portion which faces the seat in the forward or rearward direction. The seat vicinity portion is smaller in dimension in a rightward or leftward direction than a portion of the battery case which is other than the seat vicinity portion.
Abstract:
A compound of the following general formula [I]: wherein each symbol has the same meaning as defined herein, or a pharmaceutically acceptable salt thereof, or a solvate thereof, and a pharmaceutical use of the same in treating organ transplant rejection, graft versus host reaction after transplantation, autoimmune disease, allergic disease and chronic myeloproliferative disease.
Abstract:
An object of the present invention is to provide a new insecticidal compound by paying attention to the insecticidal activity contained in the flower part of marigold, and to provide an insecticide containing the compound as an active ingredient. There are provided an insecticidal compound represented by the following chemical formula: [Formula 1], and an insecticide containing the insecticidal compound as an active ingredient or an insecticide containing, as active ingredients, the insecticidal compound and an insecticidal compound represented by the following chemical formula: [Formula 2], wherein the insecticide can exhibit extraordinary insecticidal efficacy compared with existing pyrethroid-based insecticidal compounds.
Abstract:
In an electronic components mounting process fabricating a mount circuit board due to an electronic components mounting system formed of a plurality of electronic components mounting apparatuses by connecting them to each other, data of solder paste position which is printed on the circuit board is transmitted as feedforward data to an electronic components placement apparatus and a placement state inspecting apparatus. A control parameter which controls a placing position in a components placement operation due to the electronic components placement apparatus and an inspection parameter which indicates a standard position of the components in a placement state inspection are updated on the basis of the soldering position data. Therefore, it is possible to achieve a precise mounting by effectively and properly using inspection information obtained from each process.
Abstract:
The present invention is a pick-up style utility vehicle with an expandable cargo bed, including a front seat, a rear seat, a stationary bottom plate serving as a bottom face of the cargo bed, an expansion bottom plate for expanding the bottom face of the cargo bed, and a shared linkage mechanism for holding the rear seat at a use position where the rear seat is positioned on the upper side of the stationary bottom plate and a shunting position where the rear seat is shunted into a rear leg room provided on the front lower side of the stationary bottom plate, and also for holding the expansion bottom plate at a storage position where the expansion bottom plate is placed out of the upper side of the leg room and an expansion position where the expansion bottom plate is positioned on the upper side of the leg room.
Abstract:
In electronic component mounting for a plurality of individual substrates held on a carrier, solder position deviation data is calculated for each individual substrate based on a mark position recognition result on a carrier after solder printing, a solder position recognition result, and electrode position information indicating the position of an electrode on each individual substrate, an operation of calculating position correction data, which is used to correct the positional deviation to mount electronic components at proper positions, is performed for each individual substrate based on the calculated solder position deviation data and the calculated position correction data is feed-forwarded to an electronic component mounting apparatus, and an electronic component mounting operation of a component mounting mechanism is controlled based on the mark position recognition result and the position correction data.
Abstract:
A polishing apparatus includes a loading section (14) for placing therein a cassette (12) in which a plurality of polishing objects are housed; a first polishing line (20) and a second polishing line (30) for polishing a polishing object; a cleaning line (40) having cleaning machines (42a, 42b, 42c, 42d) for cleaning the polishing object after polishing and a transport unit (44) for transporting the polishing object; a transport mechanism (50) for transporting the polishing object between the loading section (14), the polishing lines (20, 30) and the cleaning line (40); and a control section for controlling the polishing lines (20, 30), the cleaning line (40) and the transport mechanism (50). The control section determines a polishing start time in each of the first and second polishing lines (20, 30) based on a predicted polishing time in each of the first and second polishing lines (20, 30), a predicted transport time in the transport mechanism (50), a predicted cleaning time in the cleaning line (40) and a predicted cleaning start time to start cleaning by driving the transport unit (44) of the cleaning line (40).
Abstract:
The invention provides oligonucleotides for a simple, specific and/or sensitive test for the presence of Influenza A. In particular, the present invention provides a primer(s), probe(s) and/or test(s) for Influenza A Subtype H5N1. Kits comprising probe(s) and/or primer(s) useful in the test are also provided.
Abstract:
A vacuum evacuation device 2 of the invention comprises a vacuum pump 4,5 for exhausting a gas G2 in a process chamber 21 into which a process gas G1 is introduced and in which a process reaction is performed, to form a vacuum in said process chamber 21; and a control means 6 for performing a first control that regulates the rotational speed of said vacuum pump 4,5 such that a pressure condition in said process chamber 21 reaches a pressure condition suitable for said process reaction during said process reaction, wherein said control means 6 calculates a specified rotational speed for said vacuum pump 4,5 based on process information related to said process reaction, and performs a second control that brings said vacuum pump 4,5 to said specified rotational speed before said first control. The vacuum evacuation device 2 is capable of bringing the pressure in a process chamber 21 to the target pressure in a short period without a vacuum pump 4,5 being overloaded, regardless of the process reaction condition.
Abstract:
A polishing apparatus has a polishing table (12) with a polishing surface (10) attached thereon, and a top ring (20) for pressing a workpiece (W) against the polishing surface (10). The top ring (20) has a housing (40) and a retainer ring (44) vertically movable in the housing (40) for holding an outer circumferential edge of the workpiece (W). The polishing apparatus includes a vertically moving mechanism operable to vertically move the top ring (20), a bracket (28) vertically movable together with the top ring (20), a stopper (32) adjustable in vertical position to prevent downward movement of the bracket (28), and a sensor (36) for detecting a distance between the stopper (32) and the bracket (28). The polishing apparatus also includes a control unit (34) operable to adjust the stopper (32) in vertical position based on the distance signal from the sensor (36).