Seiichirou
Seiichirou Kawai, Kokubunji-Shi JP
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20130292024 | TIRE - Provided is a pneumatic tire in which a display part of the tire is made less susceptible to dirt and damages and is also improved in appearance. The tire of the present invention includes, on a tire side portion ( | 11-07-2013 |
20140216623 | TIRE - Provided is a pneumatic tire in which a display part of the tire is made less susceptible to dirt and damages and is also improved in appearance. The tire of the present invention includes, on a tire side portion ( | 08-07-2014 |
Seiichirou Nagai, Otawara-Shi JP
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20130163726 | X-RAY EQUIPMENT - The X-ray equipment related to the embodiment is configured from a plurality of pressure rising units, a switching unit, and a switching control unit. The plurality of pressure rising units are connected to the battery unit and generate direct current voltage. The switching unit switches over the plurality of pressure rising units and supplies direct current voltage to the X-ray generating unit. The switching control unit transmits switching instructions to the switching unit for switching over the pressure rising unit after receiving voltage supply instructions with respect to the X-ray generating unit until said voltage supply instructions terminate. The switching control unit controls discharging of the condenser inside the pressure rising unit switched over by the switching instructions and the control of commencing charging of the condenser inside the pressure rising unit following termination of discharging. | 06-27-2013 |
20130287175 | PHOTON COUNTING TYPE IMAGE DETECTOR, X-RAY DIAGNOSIS APPARATUS AND X-RAY COMPUTED TOMOGRAPHY APPARATUS - A photon counting type image detector has: a semiconductor cell that detects an X-ray photon; a charge amplifier that generates a plurality of electric pulses each being based on an electric charge collected in response to the detected X-ray photon; a comparator that discriminates a peak value of each of the electric pulses; a threshold logic circuit that performs control so as to count none of the peak-discriminated electric pulses corresponding to energy of characteristic X-rays produced in the semiconductor cell; and a counter that counts the discriminated electric pulses as controlled by the threshold logic circuit. | 10-31-2013 |
Seiichirou Nagai, Otawara JP
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20150146850 | MANAGEMENT SYSTEM FOR X-RAY DETECTOR AND X-RAY DIAGNOSIS APPARATUS - The management system of the X-ray detectors according to the embodiments detects X-rays irradiated from the X-ray generator when X-ray imaging is carried out, and includes an inspection unit and a validity period setting unit. The inspection unit inspects at least one of performance, function, and operation of an actual operation state of the X-ray detector. The validity period setting unit sets a validity period which is a criterion for determining whether the inspection results inspected are valid or not. The system is configured that the X-ray imaging is not performed on a subject when the inspection results are determined to be invalid based on the validity period. | 05-28-2015 |
Seiichirou Takahashi, Tokyo JP
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20130037957 | FLUX COMPOSITION, PROCESS FOR PRODUCING ELECTRICALLY CONNECTED STRUCTURES, ELECTRICALLY CONNECTED STRUCTURE, AND SEMICONDUCTOR DEVICE - A flux composition includes an alditol (A) and a polymer (B) which has a repeating structural unit represented by Formula (1): | 02-14-2013 |
20130285217 | SUBSTRATE TREATING METHOD, TEMPORARY FIXING COMPOSITION AND SEMICONDUCTOR DEVICE - The invention provides a substrate treating method which can favorably prevent damages to a substrate when the substrate is separated from a support, thus achieving a high yield. The substrate treating method includes, in the sequence set forth, a step | 10-31-2013 |
20130299946 | SUBSTRATE TREATING METHOD, STACK AND SEMICONDUCTOR DEVICE - A method that includes, in the sequence set forth, (1) temporarily fixing a substrate onto a support via a temporary fixing material including a central section (A) having two or more layers and a peripheral section (B) with solvent resistance, section (B) being in contact with a peripheral portion of the support on the substrate side and with a peripheral portion of the substrate on the support side, section (A) being in contact with a central portion of the support on the substrate side and with a central portion of the substrate on the support side, the temporary fixing thus resulting in a stack in which section (A) is covered with the support, section (B) and the substrate; (2) processing the substrate and/or transporting the stack; (3) dissolving section (B) with a solvent; and (4) heating the residue of the temporary fixing material and separating the substrate from the support. | 11-14-2013 |