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    • 5. 发明授权
    • Guidewire
    • 导丝
    • US08608670B2
    • 2013-12-17
    • US12977121
    • 2010-12-23
    • Satoru MatsumotoMasayuki Takahashi
    • Satoru MatsumotoMasayuki Takahashi
    • A61B5/00
    • A61M25/09A61M2025/09083A61M2025/09133A61M2025/09175
    • An object of the present invention is to provide a guidewire having high safety and improved flexibility and rotation followability, and capable of directing a catheter with ease. A guidewire of the present invention has an inner coil that surrounds a distal side portion of a core shaft, and an outer coil that surrounds the inner coil and the distal side portion of the core shaft. The core shaft has a second flat part in flattened shape in substantially contact with an inner peripheral surface of the inner coil. With this configuration, the distal side portion of the guidewire is protected by a double coil structure, while having high torsional stiffness. This leads to improvement in safety and rotation followability, while allowing a catheter to be directed with ease.
    • 本发明的目的是提供一种具有高安全性和改进的柔性和旋转跟随性的导丝,并且能够容易地引导导管。 本发明的导线具有围绕芯轴的前端部的内侧线圈和围绕芯轴的内侧线圈和前端侧部的外侧线圈。 芯轴具有与内圈的内周面基本接触的扁平形状的第二扁平部。 利用这种构造,导丝的远侧部分被双线圈结构保护,同时具有高的扭转刚度。 这导致安全性和旋转跟随性的改善,同时容易地引导导管。
    • 9. 发明授权
    • Remote control of laundry appliance
    • 洗衣机远程控制
    • US06778868B2
    • 2004-08-17
    • US09950001
    • 2001-09-12
    • Fumihiro ImamuraTakahiro NishimuraHiroshi IkedaSatoru Matsumoto
    • Fumihiro ImamuraTakahiro NishimuraHiroshi IkedaSatoru Matsumoto
    • G05B1500
    • D06F39/005H04L12/2825H04L2012/285
    • A remote control system for a laundry appliance which includes a remote control device externally accessible via a communication network, the remote control device including a data base storing coping information used to cope with an abnormal condition occurring during operation of the laundry appliance, a laundry appliance control device connected via the communication network to the remote control device so as to transmit information about an abnormal condition via the communication network to the remote control device when the abnormal condition has occurred in the laundry appliance, and an analyzer for analyzing the coping information corresponding to the abnormal condition in the laundry appliance to infer a cause of the abnormal condition of the laundry appliance. When the analyzer analyzes a plurality of pieces of the analytic information, a higher priority is given to the analytic information corresponding to a cause of the abnormal condition with a larger number of times of occurrence.
    • 一种用于洗衣设备的遥控系统,其包括经由通信网络可外部访问的遥控设备,所述遥控设备包括存储用于处理在洗衣设备操作期间发生的异常状况的应对信息的数据库,洗衣设备 所述控制装置经由所述通信网络连接到所述遥控装置,以便当所述洗衣用具中发生异常时,经由所述通信网络向所述遥控装置发送关于异常的信息;以及分析器,用于分析所述应对信息对应 到洗衣用具的异常情况,推测洗衣用具的异常状态的原因。 当分析器分析多条分析信息时,对于具有更多次出现次数的异常状况的原因的分析信息给予较高的优先级。
    • 10. 发明授权
    • Luminous glass ceramics
    • 发光玻璃陶瓷
    • US06197710B1
    • 2001-03-06
    • US09204260
    • 1998-12-03
    • Kazuo {overscore (O)}haraSatoru MatsumotoNaoyuki Goto
    • Kazuo {overscore (O)}haraSatoru MatsumotoNaoyuki Goto
    • C03C1012
    • C03C23/0025C03C4/12C03C10/0027C03C10/0045
    • A luminous glass ceramic comprising, in percent by weight, the following components: SiO2  50-65 (%) P2O5   0-10 Al2O3  18-30 Li2O   2-6 MgO 0.2-6 ZnO   0-2 CaO   0-4 BaO 0.5-6 TiO2   1-4 ZrO2   1-4 As2O3 + Sb2O3   0-2 wherein a total amount of SiO2 and P2O5 is 50-70 wt. %, a ratio of P2O5 to SiO2 is 0-0.18, a ratio of Al2O3 to SiO2 is 0.30-0.55, one or more rare earth elements are added to the glass ceramic on an oxide basis of 0.1-30 wt. % to an total amount of other components, Na2O component, K2O component, and PbO component are not essentially contained, and the glass ceramic has a thermal shock resistance |&Dgr;t|° C. of not less than 150, which is obtained by following equation, |&Dgr;t|=[flexural strength]×(1−[Poisson's ratio])/([coefficient of thermal expansion]×[Young's modulus]).
    • 一种发光玻璃陶瓷,其以重量百分比计包含以下组分:其中SiO 2和P 2 O 5的总量为50-70重量%。 %时,P 2 O 5与SiO 2的比例为0〜0.18,Al 2 O 3与SiO 2的比例为0.30〜0.55,则以0.1-30重量%的氧化物将一种或多种稀土元素加入到玻璃陶瓷中。 不包含Na 2 O成分,K 2 O成分和PbO成分的总量的%,玻璃陶瓷的耐热冲击性| DELTAt |℃为150以上,通过下述式 ,| DELTAt | = [弯曲强度]×(1- [泊松比])/([热膨胀系数]×[杨氏模量])。