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    • 81. 发明专利
    • HUMIDITYYSENSITIVE ELEMENT
    • JPS5657946A
    • 1981-05-20
    • JP13452279
    • 1979-10-17
    • SHINEI KK
    • KOBAYASHI SUSUMUMAEHASHI YASUHIRO
    • G01N27/12
    • PURPOSE:To increase the accuracy for detection of moisture, by uniting the moisture-sensitive element with the temperature-sensitive element together. CONSTITUTION:The subject element provides with a moisture sentitive element 1, in which pair of parallel tandem electrodes 12 and 13 are set with a fixed interval on the outer surface of the ceramic substrate 11 formed into a cylindrical form, and at the same time the moisture-sensitive material applied so as at least to cover the space between the electrodes 12 and 13 to form the moisture-sensitive thin film 14, and a temperature sensitive element 2 which comprises the temperature-sensitive thermistor, the temperature compensating diode, the thermocouple etc. and have the same heat time constant as the element 1. Then the element 2 is fixed into the cavity of the element 1 via the filler 23 such as the resin having a high heat conductivity, the cement and the like. Thus both the elements 1 and 2 are unified together to realize a small size as well as a simple packing. Furthermore, the accuracy can be increased for both the detection of moisture and the control since those two elements have the same heat time constant.
    • 87. 发明专利
    • 骨強度測定装置及び骨強度測定方法
    • 骨强度测量装置和骨密度测量方法
    • JP2014204926A
    • 2014-10-30
    • JP2013085500
    • 2013-04-16
    • 神栄株式会社Shinei Kk
    • KAWANISHI MASARUUSUI TOYOHIRO
    • A61B8/08
    • 【課題】超音波が検体の内部を通過する時間及び超音波の到達速度を正確に求め、これにより、骨強度を正確に求めることができる装置を提供する。【解決手段】骨強度測定装置1は、被験者の指が接する接触体3と、該指を挟んで接触体3に対向し、接触体3との間で指を挟持する押さえ部4と、接触体3又は押さえ部4の少なくとも一方に設けられ、指に向けて超音波を発する送信子30及び該送信子30から指を通過した超音波を受信する受信子40と、送信子30及び受信子40に接続されて、送信子30から発せられた超音波が指内を通って受信子40に達する到達速度を求め、該到達速度から指の骨強度を演算するコントローラ10とを備えている。接触体3及び押さえ部4は、弾性材料から形成されて、該接触体3及び押さえ部4は指を挟持した状態で指に密着する。【選択図】図1
    • 要解决的问题:提供一种能够通过精确地测量通过试样内部的超声波的时间和超声波的到达速度来精确测定骨骼强度的装置。解决方案:骨强度测量装置1包括: 身体3与受试者的手指接触; 按压部4,其通过手指面对接触体3,并且将手指保持在接触体3和按压部4之间; 发送器30,设置在至少任一个接触体3或按压部4中,并向手指发射超声波;以及接收器40,其接收从发送器通过手指的超声波; 并且连接到发射机30和接收机40的控制器10计算从发射机30发射的超声波到达通过手指内侧的接收机40的到达速度,并计算手指的骨强度 到达速度的基础。 接触体3和按压部4由弹性材料形成,这使得接触体3和按压部4在手指夹在接触体3和按压部4之间的状态下与手指固定。
    • 89. 发明专利
    • Constant temperature generating device and its heat transferring structure
    • 恒温发电装置及其传热结构
    • JP2008121917A
    • 2008-05-29
    • JP2006303587
    • 2006-11-09
    • Shinei Kk神栄株式会社
    • SHIBATA SHINICHIHONDA SHINICHI
    • F25B9/00F25B9/14F25D17/00
    • F25B2309/001
    • PROBLEM TO BE SOLVED: To provide a constant temperature generating device capable of reducing its weight and dimension so that it is portable, and keeping an optional low temperature zone set in an ultra low temperature zone without using a cooling medium. SOLUTION: This constant temperature generating device comprises a free piston type Stirling refrigerating machine 2 for cooling a constant temperature block 3 to a prescribed temperature, and a control device 9 detecting a temperature of the constant temperature block 3 and controlling output of the free piston type Stirling refrigerating machine 2 to keep the constant temperature block 3 in a constant temperature state, and a heat absorbing portion 4 of the free piston type Stirling refrigerating machine 2 and the constant temperature block 3 are connected by a heat transfer material 6. The heat transfer material 6 is provided with a displacement absorbing portion 7 for absorbing vibration of the free piston type Stirling refrigerating machine 2 between a connecting portion with the heat absorbing portion 4 and a connecting portion with the constant temperature block 3. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种恒温发生装置,其能够减小其重量和尺寸,使其便于携带,并且在不使用冷却介质的情况下将可选的低温区域设置在超低温区域。 解决方案:该恒温发生装置包括用于将恒温块3冷却至规定温度的自由活塞型斯特林制冷机2,以及检测恒温块3的温度并控制恒温块3的输出的控制装置9。 自由活塞式斯特林制冷机2将恒温块3保持在恒温状态,自由活塞式斯特林制冷机2和恒温块3的吸热部4通过传热材料6连接。 传热材料6设置有位移吸收部分7,用于吸收自由活塞型斯特林制冷机2在与吸热部分4的连接部分和与恒温块体3的连接部分之间的振动。3.版权所有 (C)2008,JPO&INPIT
    • 90. 发明专利
    • Pollen sensor
    • POLLEN SENSOR
    • JP2005283152A
    • 2005-10-13
    • JP2004093140
    • 2004-03-26
    • Shinei Kk神栄株式会社
    • OKUMURA SATOSHI
    • G01N15/00G01N21/47
    • PROBLEM TO BE SOLVED: To provide a pollen sensor that can count the number of pollen particles in real time at a location to be measured without requiring any special experience, and can precisely identify pollen particles and dust.
      SOLUTION: The pollen sensor comprises an emission means for applying irradiation light in a prescribed polarization direction into air containing floating particles; a first light reception means for measuring intensity I in scattered light, by detecting scattered light by the floating particles; a second light reception means for measuring intensity Is in orthogonal scattered light, by detecting scattered light in the polarization direction orthogonally crossing the polarization direction of irradiation light in scattered light by the floating particles; and an identification means for identifying pollen particles and dust, on the basis of the intensity I in the scattered light and the intensity Is in the orthogonal scattered light.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种花粉传感器,其可以在不需要任何特殊经验的情况下实时计数待测量的位置处的花粉颗粒数量,并且可以精确地识别花粉颗粒和粉尘。 解决方案:花粉传感器包括用于将指定的偏振方向的照射光施加到含有浮动颗粒的空气中的发射装置; 用于通过检测浮动颗粒的散射光来测量散射光中的强度I的第一光接收装置; 第二光接收装置,用于通过检测由浮动颗粒在散射光中与照射光的偏振方向正交的偏振方向上的散射光来测量正交散射光中的强度Is; 以及基于散射光中的强度I和正交散射光中的强度Is来识别花粉颗粒和灰尘的识别装置。 版权所有(C)2006,JPO&NCIPI