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    • 1. 发明专利
    • 酸化物超電導体の製造方法
    • 生产氧化物超导体的方法
    • JP2014220257A
    • 2014-11-20
    • JP2014164242
    • 2014-08-12
    • 株式会社東芝Toshiba Corp
    • ARAKI TAKESHIHAYASHI MARIKOYAMADA HIROSHIFUKUYA HIROYUKI
    • H01B13/00C01F17/00C01G1/00C01G3/00
    • C01F17/00C01G1/00C01G3/00H01B13/00
    • 【課題】配向性の向上を図ることができる酸化物超電導体の製造方法を提供する。【解決手段】実施形態に係る酸化物超電導体の製造方法は、下地に配向部分を形成し、前記配向部分上及び前記配向部分以外の部分上に、金属トリフルオロ酢酸塩を含む溶液を接触させて、前記下地上に前記金属トリフルオロ酢酸塩に含まれる金属及びフッ化物を含むゲル膜を形成する工程と、前記下地を熱処理し、前記配向部分上及び前記配向部分以外の部分上に、前記配向部分といずれかの結晶軸が配向した配向超電導層を形成する工程と、を備える。【選択図】図1
    • 要解决的问题:提供能够改善取向的氧化物超导体的方法。解决方案:制造氧化物超导体的方法包括在基材上形成取向部分并使含有金属三氟乙酸盐的溶液与 定向部件和除定向部件之外的部件,以形成含有基材上的金属三氟乙酸盐中含有金属和氟化物的凝胶膜,以及对基材进行热处理以形成定向超导层的步骤,其中定向部分和 取向的取向部件和除定向部件以外的部件的晶轴取向。
    • 3. 发明专利
    • 不揮発性半導体記憶装置
    • 非易失性半导体存储器件
    • JP2015038994A
    • 2015-02-26
    • JP2014183130
    • 2014-09-09
    • 株式会社東芝Toshiba Corp
    • HATTORI SHIGEKIICHIHARA REIKATERAI KATSUYANISHIZAWA HIDEYUKITADA TSUKASAASAKAWA KOUJIFUKUYA HIROYUKIMIKOSHIBA SATOSHIFUKUZUMI YOSHIAKIAOCHI HIDEAKI
    • H01L21/8247H01L21/336H01L27/10H01L27/115H01L27/28H01L29/788H01L29/792H01L45/00H01L49/00H01L51/05
    • 【課題】3次元積層メモリにより集積度を向上させた不揮発性半導体記憶装置を提供する。【解決手段】揮発性半導体記憶装置は、第1積層構造体ML1と、第1半導体層SP1と、第1有機膜48p1と、第1半導体側絶縁膜42p1と、第1電極側絶縁膜43p1と、を備える。第1積層構造体ML1は、第1方向に沿って積層された複数の第1電極膜61aと、第1電極間絶縁膜43p1と、を有する。第1半導体層SP1は、複数の第1電極膜61aの側面に対向する。第1有機膜48p1は、複数の第1電極膜61aの側面と第1半導体層SP1との間に設けられ有機化合物を含む。第1半導体側絶縁膜42p1は、第1有機膜48p1と第1半導体層SP1との間に設けられる。第1電極側絶縁膜43p1は、第1有機膜48p1と複数の第1電極膜61aの側面との間に設けられる。第1有機膜48p1は、第1半導体側絶縁膜42p1と結合している。【選択図】図1
    • 要解决的问题:提供一种通过三维多层存储器提高整合度的非易失性半导体存储器件。解决方案:非易失性半导体存储器件包括第一多层结构ML1,第一半导体层SP1,第一有机膜48p1 第一半导体侧绝缘膜42p1和第一电极侧绝缘膜43p1。 第一多层结构ML1具有沿着第一方向堆叠的多个第一电极膜61a和第一电极间绝缘膜62a。 第一半导体层SP1面对多个第一电极膜61a的侧面。 第一有机膜48p1设置在多个第一电极膜61a和第一半导体层SP1的侧表面之间,并且含有有机化合物。 半导体侧绝缘膜42p1设置在第一有机膜48p1和第一半导体层SP1之间。 第一电极侧绝缘膜43p1设置在第一有机膜48p1和多个第一电极膜61a之间。 第一有机膜48p1耦合到第一半导体侧绝缘膜42p1。
    • 4. 发明专利
    • Radio transmitter-receiver
    • 无线电发射机接收机
    • JP2006136025A
    • 2006-05-25
    • JP2006007606
    • 2006-01-16
    • Toshiba Corp株式会社東芝
    • FUKUYA HIROYUKIKAYANO HIROYUKITERAJIMA YOSHIAKIAIGA FUMIHIKOYAMAZAKI MUTSUKIKATO RIICHI
    • H04B1/50
    • PROBLEM TO BE SOLVED: To provide a radio transmitter-receiver in which an excellent receiving state is obtained and a transmission frequency band is effectively utilized. SOLUTION: A radio transmitter-receiver which performs radio communication using two or more carrier frequencies includes a plurality of radio transmission/reception units, each of the radio transmission/reception units including at least one radio transmission unit and radio reception unit connected in parallel to one antenna and including one reception signal processing circuit to which a plurality of radio reception units included in the plurality of radio transmission/reception units are connected in parallel, and a superconductor receiver filter and a superconductor transmitter filter are mounted on lateral sides which are different from each other of a cooling member forming a parallelepiped, and are housed in a heat-insulating container while being separated from each other by a distance approximately as long as the wavelength of a transmission signal. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种无线电发射机 - 接收机,其中获得良好的接收状态并有效利用发射频带。 解决方案:使用两个或多个载波频率执行无线电通信的无线电发射机 - 接收机包括多个无线电发射/接收单元,每个无线电发射/接收单元包括至少一个无线电传输单元和连接的无线电接收单元 与一个天线并联,并且包括并行连接多个无线电发送/接收单元中包括的多个无线电接收单元的一个接收信号处理电路,并且超导体接收机滤波器和超导体发送器滤波器安装在侧面 它们彼此形成平行六面体的冷却构件彼此不同,并且被容纳在绝热容器中,同时彼此分离距离大约等于透射信号的波长。 版权所有(C)2006,JPO&NCIPI
    • 5. 发明专利
    • High frequency filter
    • 高频滤波器
    • JP2002368504A
    • 2002-12-20
    • JP2001176680
    • 2001-06-12
    • Toshiba Corp株式会社東芝
    • INO TSUNEHIROFUKUYA HIROYUKI
    • H01L39/00H01L23/34H01L35/28H01P1/203H01P1/205H01P1/30
    • H01L2924/0002H01L2924/00
    • PROBLEM TO BE SOLVED: To provide a modulative high frequency filter which suppresses the widening of an end part in a filter frequency and attains a waveform which is made to be rectangular as much as possible. SOLUTION: The filter is provided with a substrate 32, a resonator 33 formed on the substrate 32, a dielectric body 34 formed in the neighborhood of the resonator 33 and a temperature control element 35 which is formed in the neighborhood of the dielectric body 34 and can control heating and cooling. In the high frequency filter, the temperature control element 35 heats or cools the dielectric body 34 and, then, a dielectric constant of the dielectric body 34 is made variable so that the frequency can be modulated.
    • 要解决的问题:提供抑制滤波器频率中的端部加宽的调制高频滤波器,并且尽可能地获得被做成矩形的波形。 解决方案:滤波器设置有基板32,形成在基板32上的谐振器33,形成在谐振器33附近的电介质体34和形成在电介质体34附近的温度控制元件35,以及 可以控制加热和冷却。 在高频滤波器中,温度控制元件35加热或冷却电介质体34,然后使电介质体34的介电常数可变,使得能够调制频率。
    • 7. 发明专利
    • Leak measuring technique and leak measuring device
    • 泄漏测量技术和泄漏测量装置
    • JP2009156821A
    • 2009-07-16
    • JP2007338208
    • 2007-12-27
    • Toshiba Corp株式会社東芝
    • HIROTA MITSUOFUKUYA HIROYUKIYAMAZAKI MUTSUKIHASHIMOTO TATSUNORI
    • G01M3/20
    • PROBLEM TO BE SOLVED: To provide a simple leak measuring technique and a simple leak measuring device capable of measuring leak rate with high accuracy by means of a single component.
      SOLUTION: In the leak measuring technique for measuring the leak amount of a measured object 24, after implementing vacuum evacuation from a vacuum vessel 14, to which a mounting tool 30 containing the measured object is attached and a measuring vessel, to which a mass analyzer 18 is attached, connected to the vacuum vessel via a movable valve 20 is evacuated down to a predetermined pressure, detection gas is supplied into the vacuum vessel via the measured object; the movable valve between the vacuum vessel and the measuring vessel is closed for a given length of time; and then the partial pressure rise due to the gas emitted from the vacuum vessel and the partial pressure rise due to detection gas resulting from leak of the measured object are cumulated. Under a condition where vacuum evacuating from the vacuum vessel is stopped, by opening the movable valve, the cumulated gas inside the vacuum vessel is sent to the measuring vessel, to measure the partial pressure of gas in the measuring vessel by the mass analyzer.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种简单的泄漏测量技术和能够通过单个部件以高精度测量泄漏率的简单的泄漏测量装置。 解决方案:在用于测量被测物体24的泄漏量的泄漏测量技术中,在从真空容器14进行真空抽真空之后,将附有测量对象的安装工具30安装到真空容器14上, 安装了通过可动阀20连接到真空容器的质量分析器18被抽空到预定压力,检测气体经由测量对象被供给到真空容器中; 在真空容器和测量容器之间的可移动阀关闭一段给定的时间; 然后由于由真空容器发出的气体产生的分压和由测量对象的泄漏引起的检测气体引起的分压上升。 在从真空容器进行真空排气停止的状态下,通过打开可动阀,将真空容器内的累积气体送入测量容器,通过质量分析器测量测量容器中的气体分压。 版权所有(C)2009,JPO&INPIT
    • 8. 发明专利
    • Communication apparatus with built-in superconducting filter
    • 具有内置超级滤波器的通信设备
    • JP2008294779A
    • 2008-12-04
    • JP2007138532
    • 2007-05-25
    • Toshiba Corp株式会社東芝
    • HIROTA MITSUOFUKUYA HIROYUKIHASHIMOTO TATSUNORI
    • H04B1/3822H04B1/40
    • PROBLEM TO BE SOLVED: To provide a highly reliable communication apparatus with a built-in superconducting filter, by easily extending the service life of a refrigerator and a refrigeration system. SOLUTION: In the communication apparatus with the built-in superconducting filter, the superconducting filters 12a, 12b, 13a and 13b, etc., are attached to fixing plates 14 and 15 or the like and housed inside a vacuum container 11. Then, a first refrigerator 23 and a second refrigerator 24 cool the fixing plates 14 and 15 or the like loaded on a cold substrate 19 through a first cooling head 25 and a second cooling head 26, respectively. In the first refrigerator 23 and the second refrigerator 24, a parallel drive operation alternately switching a main operation which is in the operation mode for PID temperature control and a sub operation which is in the operation mode for output fixation control between the refrigerators is executed. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:通过容易地延长冰箱和制冷系统的使用寿命,提供具有内置超导滤波器的高度可靠的通信装置。 解决方案:在具有内置超导滤波器的通信装置中,超导滤波器12a,12b,13a和13b等附接到固定板14和15等,并且容纳在真空容器11内。 然后,第一冰箱23和第二冷藏箱24分别通过第一冷却头25和第二冷却头26冷却装载在冷基板19上的固定板14和15等。 在第一冰箱23和第二冰箱24中,执行交替切换处于PID温度控制的运转模式的主动作和在冰箱之间进行输出定影控制的操作模式的副操作的并行驱动动作。 版权所有(C)2009,JPO&INPIT