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    • 2. 发明专利
    • Non-destructive inspection device and non-destructive inspection method
    • 非破坏性检查装置和非破坏性检查方法
    • JP2008051653A
    • 2008-03-06
    • JP2006228254
    • 2006-08-24
    • Toshiba Corp株式会社東芝
    • MAIDA MITSUHIROHAMADA TOMOHIRONITTO KOICHIKIMURA HIRONOBUNIRASAWA HITOSHI
    • G01N23/04
    • PROBLEM TO BE SOLVED: To narrow the installation space of a non-destructive inspection device for piping, and to shorten the inspection time.
      SOLUTION: This non-destructive inspection device 1a is equipped with a radiation source 3 for radiating a piping 2 that is the target of inspection with radiation, such as X rays, γ rays, a color image intensifier 6 for capturing the radiation radiated from the radiation source 3 that has been transmitted through a piping 2 to receive an image; a positioning mechanism 5 for setting the relative position and the attitude of the radiation source 3 and a color I.I.6 both of which should face each other, pinching the piping 2; and an image processing device 7 for resolving the color signal that is output from the color I.I.6 into respective wavelength component, and for carrying out image processing.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:缩小管道无损检测装置的安装空间,缩短检修时间。 解决方案:该非破坏性检查装置1a配备有用于照射作为X射线,γ射线等的放射线检查对象的管路2的放射源3,用于捕获放射线的彩色图像增强器6 从已经通过管道2传送的辐射源3辐射以接收图像; 定位机构5,用于设定辐射源3的相对位置和姿态以及两者应彼此面对的夹持管道2的颜色I.I.6; 以及图像处理装置7,用于将从颜色I.I.6输出的颜色信号分解为相应的波长分量,并进行图像处理。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Diagnostic nuclear medicine imaging system and manufacturing control method of radiopharmaceutical used therfor
    • 诊断核医学成像系统及其使用的无线电技术的制造控制方法
    • JP2006084432A
    • 2006-03-30
    • JP2004272006
    • 2004-09-17
    • Toshiba Corp株式会社東芝
    • YAMAMOTO KEIICHIKAWAZU SHIYOUJIKIMURA HIRONOBUABE HIROAKI
    • G01T1/161G06Q50/22G06Q50/24
    • PROBLEM TO BE SOLVED: To provide a diagnostic nuclear medicine imaging system and manufacturing control method of radiopharmaceutical used therefor with easy administrative of radiopharmaceutical, prompt and easy confirmation of kinds and amount of nuclides contained in the radiopharmaceutical and enhanced degree of freedom of the system installation. SOLUTION: In the diagnostic nuclear medicine imaging system 10 which is comprised of an accelerator 13 manufacturing radioactive nuclide 12 emitting positron, a medicine synthesizing apparatus 15 manufacturing radiopharmaceutical 14 using this radioactive nuclide 12, and diagnostic test device 16 utilizing positron emission tomography, a recording disclosure means 24 is utilized to record required information, such as kinds and amount of radioactive nuclide contained in the radiopharmaceutical 14 manufactured by the medicine synthesizing apparatus 15, manufacturing date and the like. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供用于放射性药物的放射性药物的诊断性核医学成像系统和制造控制方法,容易地管理放射性药物,迅速且容易地确认放射性药物中所含的核素的种类和数量以及增强的自由度 系统安装。 解决方案:在由制造放射性核素12发射正电子的加速器13构成的诊断性核医学成像系统10中,使用该放射性核素12制造放射性药物14的药物合成装置15以及利用正电子发射断层摄影术的诊断检查装置16 记录公开装置24用于记录由药物合成装置15制造的放射性药剂14中所含的放射性核素的种类和数量等的制造日期等所需的信息。 版权所有(C)2006,JPO&NCIPI
    • 8. 发明专利
    • PULSE POWER UNIT
    • JPH11136100A
    • 1999-05-21
    • JP30028897
    • 1997-10-31
    • TOSHIBA CORPTOSHIBA F A SYSTEM ENG
    • KOBAYASHI NORIYASUAOKI NOBUTADAKIMURA HIRONOBUBABA YOSUKE
    • H05H7/02H03K3/53
    • PROBLEM TO BE SOLVED: To provide a pulse power unit which can supply high-voltage, large- current output pulses of high repetitive frequency rising fast without disordering rectangular waveform. SOLUTION: This unit is equipped with a pulse forming network 3 as a pulse forming circuit equipped with a series of stages of circuit elements which accumulate charging electric charges and use coils 2 and capacitors 3 and a magnetic switch 10 which is interposed between this network 3 and a load 12 and discharge the accumulated electric charges as output pulses P. Further, the unit is equipped with a charging power circuit 4 which accumulates electric charges in the circuit elements and parallel charging paths (7...7) which are connected from the circuit 4 to the charging ends of the respective stages of the circuit elements individually in parallel. A reverse current preventing element 7 which stops a current in the opposite direction from the charging current is inserted into each charging path. The circuit elements may be line elements obtained by equally dividing a distribution constant line of specific length.
    • 9. 发明专利
    • PROTECTIVE APPARATUS FOR MICROCHANNEL PLATE DETECTOR
    • JPH07201303A
    • 1995-08-04
    • JP477295
    • 1995-01-17
    • JAPAN ATOMIC ENERGY RES INSTTOSHIBA CORP
    • TAKEUCHI HIROSHIKITA YOSHIOKIMURA HIRONOBU
    • H01J43/24G01T1/17
    • PURPOSE:To prevent dielectric breakdown of facing faces of a microchannel plate detector even if the vacuum degree is degraded by installing a bypass element in which a pair of facing electrodes connected with the facing faces of the detector are set so as to have lower dielectric strength than that between the facing faces. CONSTITUTION:Regarding a microchannel plate detector 14 in an analyzer main body 10, a large number of glass tubes C with a small diameter are bundled and put between facing faces A, B to be connected respectively with a high voltage electric power supply 15 and thus a secondary electron multiplying part 16 is formed. A plurality of glass tubes 62 are put between one pair of facing electrodes 21, 22 connected with the facing faces A, B and a bypass element 20 is installed so as to make the dielectric strength between the electrodes lower than that between the facing faces A, B of the secondary electron multiplying part 16. As a result, even if the vacuum degree near the secondary electron multiplying part is lowered, dielectric breakdown of the bypass element 20 occurs before dielectric breakdown occurs between the facing faces A, B and voltage to be applied to the facing faces A, B is short-circuited and thus high voltage application to the facing faces A, B is prevented and dielectric breakdown between the facing faces never occurs.
    • 10. 发明专利
    • METALLIC VAPOR LASER DEVICE
    • JPH02117189A
    • 1990-05-01
    • JP26931588
    • 1988-10-27
    • TOSHIBA CORP
    • KIMURA HIRONOBU
    • H01S3/097H01S3/03H01S3/134
    • PURPOSE:To stabilize the laser output and lengthen the lifetime of a device by installing a controlling means to stop a means to apply discharge voltage for a certain period, close a first passage closing means, and open a second passage closing means if detected voltage exceeds the preset value. CONSTITUTION:When discharge begins, an impurity such as water adsorbed to heat insulators 3 and ceramic tubes 1 is liberated by heat generated by the discharge, enters a discharge tube 22, makes the discharge unstable, and increases the breakdown voltage. Therefore, a current flowing to a charging resistor 20 installed between voltage 4 in parallel increases. This signal is detected by a current detector 31, amplified by an amplifier 32, and sent to a comparator 33. This signal, it reaches or exceeds the preset value, is sent to a controller 34 and a high-voltage direct-current electric source is shut off. At the same time, the signal is sent from the controller 34 to a stop valve 30 to open, therefore, buffer gas stops flowing into the discharge tube 22. And at the same time the signal is also sent to an exhaust bypass valve 29 to open, therefore, the gas in the discharge tube 22 is exhausted.