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    • 4. 发明专利
    • Heat testing device
    • 热测试装置
    • JP2009139165A
    • 2009-06-25
    • JP2007314262
    • 2007-12-05
    • Nagano PrefectureThermogen Kkサーモジェン有限会社長野県
    • KUDO SEIICHIKOITABASHI TATSUOISHIZAKA KAZUAKIKAZAMA TAKESHIKOBAYASHI RYOJI
    • G01N25/00G01N17/00G01R31/26
    • PROBLEM TO BE SOLVED: To rapidly switch between high temperature environment and low temperature environment, to miniaturize the whole device, and to reduce power consumption.
      SOLUTION: This heat testing device includes a testing tub mechanism Ma where at least one or more thermo-modules 4 using a Peltier element is arranged on the top surface of a heat exchanger 3, a heat transfer plate 5 is arranged on the top surface of the thermo-modules 4, a cover section 6 opening and closing to this heat transfer plate 5 is disposed, and a testing tub 2 using the heat transfer plate 5 as the bottom section 2d when this cover section 6 is closed is disposed, a cooling mechanism Mb using a cooler 7 for obtaining cooling gas Ac for cooling the heat exchanger 3, and a controller 8 for controlling the operation of the thermo-modules 4 and the cooler 7.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:在高温环境和低温环境之间快速切换,使整个设备小型化,降低功耗。 解决方案:该热测试装置包括测试槽机构Ma,其中至少一个或多个使用珀尔帖元件的热模块4布置在热交换器3的顶表面上,传热板5布置在 设置热模块4的上表面,设置有向该传热板5打开和关闭的盖部6,并且在该盖部6闭合时使用传热板5作为底部2d的试验槽2 ,冷却机构Mb,使用冷却器7,用于获得用于冷却热交换器3的冷却气体Ac;以及控制器8,用于控制热模块4和冷却器7的运行。版权所有(C)2009, JPO和INPIT
    • 6. 发明专利
    • STORAGE
    • JP2002272541A
    • 2002-09-24
    • JP2001071438
    • 2001-03-14
    • KOYO STEEL KKNAGANO PREFECTURE
    • OGUCHI YASUAKIKOMATSU AKIHIROKUDO SEIICHIKOSUGI TAKASHI
    • A47B61/00A47B81/00F24F7/06
    • PROBLEM TO BE SOLVED: To provide a storage in which air is sufficiently and uniformly supplied into a housing part. SOLUTION: This storage 1 is provided with a case body 2 where the housing part 9 is formed and a door 3 attached on the front surface side of the case body 2. The storage 1 is provided with a partition wall 4 arranged in parallel to a wall 2a in the case body 2 on the inner side of the wall 2a for forming a space part 11 together with a part of the case body 2 including the wall 2a and forming the housing part 9 together with a part of the case body 2 including the door 3, a blowing mechanism 8 for blowing the air into the space part 11 from a communication port 11a formed on one side of the partition wall 4 in the space part 11 and a plurality of first straightening plates 7 arranged side by side in parallel to an air blowing direction inside the space part 11 for straightening the air blown by the blowing mechanism 8. On the partition wall 4, a plurality of blow-off ports 12 notched along a direction orthogonal to the air blowing direction for communication the space part 11 and the housing part 9 and blowing off the blown air are formed separately from each other.
    • 7. 发明专利
    • Motion sensor
    • 运动传感器
    • JP2003042768A
    • 2003-02-13
    • JP2001258763
    • 2001-07-26
    • Microstone CorpNagano PrefectureYoshiro Tomikawaマイクロストーン株式会社義朗 富川長野県
    • OKADA YOSHIYATAMURA HIDEKITOMIKAWA YOSHIROKUDO SEIICHIKOITABASHI TATSUOMISAWA MASAYOSHIYONEKUBO TAKASHIKUROKOCHI YASUKO
    • G01C19/56G01C19/5607G01P15/09G01P15/10G01P15/18H01L41/08G01P9/04
    • PROBLEM TO BE SOLVED: To provide a small-sized composite motion sensor with practical sensitivity and stability which can detect at least acceleration of one axis and an angular speed of one axis. SOLUTION: The composite motion sensor is constituted by arranging a tuning fork which has a tuning-fork base part connected to a base part fixed to a base, and also has legs almost in parallel to rod type vibration bodies in the space surrounded with the rod type vibration bodies on both sides, the base, and a load mass while equipped with one or one set of the rod type vibration bodies arranged on both the sides in parallel, each rod type vibrating body molded out of one plate type piezoelectric material and having one end fixed to the base and the other end connected to the common load mass. Here, the composite motion sensor detects the acceleration of a specific direction by detecting variation or flexure of the natural vibration frequency of the rod type vibration bodies based upon an inertial force operating on the load mass, and the angular speed of rotation on an axis in the specific direction by detecting a Colioris force operating on the tuning fork.
    • 要解决的问题:提供具有实际灵敏度和稳定性的小尺寸复合运动传感器,其可以检测至少一个轴的加速度和一个轴的角速度。 解决方案:复合运动传感器通过布置音叉构成,该音叉具有连接到固定到基座的基部的音叉基座部分,并且还具有与杆状包围的空间中的杆状振动体大致平行的腿 在两侧具有一个或一组棒状振动体,两个侧面均布置有两个侧面的振动体,基座和负载质量,每个棒状振动体由一个板状压电材料模制而成,并具有 一端固定到基座,另一端连接到公共载重块。 这里,复合运动传感器通过基于在负载质量上的惯性力检测棒状振动体的固有振动频率的变化或弯曲以及轴上的轴上的旋转角速度来检测特定方向的加速度 通过检测在音叉上操作的大气力的特定方向。
    • 9. 发明专利
    • Gyro sensor
    • GYRO传感器
    • JP2013170850A
    • 2013-09-02
    • JP2012033278
    • 2012-02-17
    • Microstone Corpマイクロストーン株式会社Nagano Prefecture長野県
    • SHIRATORI NORIHIKOHATAKEYAMA MINORUICHIKAWA KAZUTOYOYOSHIIKE TAKAYUKIKUDO SEIICHIYONEKUBO TAKASHIKUROKOCHI YASUKONISHIDA TAKASHI
    • G01C19/56H01L41/08H01L41/09H01L41/18
    • PROBLEM TO BE SOLVED: To provide a biaxial gyro sensor oscillator having excellent performance and high accuracy by giving optimal shape and structure to an integrated gyro sensor oscillator.SOLUTION: A gyro sensor comprises an oscillator including six oscillating legs arrayed radially in parallel with one plane while each forming an angle of 60° mutually from one common base part. The six legs are bent and oscillated within a plane normally, flexing deformation generated in the six oscillating legs vertically to the plane by Coriolis forces generated by rotation around a rotation axis in parallel with the plane is detected and out-of-plane flexing deformation of each leg is calculated, thereby outputting a direction of the rotation axis estimated parallel to the plane and a magnitude of an angular velocity. Furthermore, it is preferable to bend and oscillate neighboring legs so as to be opposed to each other.
    • 要解决的问题:提供一种具有优异性能和高精度的双轴陀螺仪传感器振荡器,其为集成陀螺仪传感器振荡器提供最佳形状和结构。解决方案:陀螺仪传感器包括振荡器,包括六个摆动腿,其平行于一个平面 而每个与一个共同的基部相互形成60°的角度。 六根腿正常弯曲并在平面内摆动,检测到六个摆动腿垂直于平面产生的变形,由科氏力围绕与该平面平行的旋转轴线旋转而产生的科里奥利力产生,并使其平面外的挠曲变形 计算每条腿,由此输出平行于平面的旋转轴的方向和角速度的大小。 此外,优选地使相邻的腿相互弯曲并振荡。
    • 10. 发明专利
    • Progressive press-working apparatus
    • 渐进的压力装置
    • JP2012139724A
    • 2012-07-26
    • JP2011069032
    • 2011-03-26
    • Misuzu Kogyo:KkNagano PrefectureUniv Of Yamanashi国立大学法人山梨大学株式会社ミスズ工業長野県
    • YOSHIHARA SHOICHIROKUDO SEIICHIISHIGURO SHUJIYAMAGISHI HIKARINAGASU YOSHINORIISHIZAKA KAZUAKISAKAGAMI EIMATSUMUKOUYAMA KENMATSUOKA AKIRAUCHIYAMA EISHINOHARA SHUNICHI
    • B21D22/20B21D24/00
    • PROBLEM TO BE SOLVED: To provide a progressive press-working apparatus which makes warm press-forming work attainable, in which, heat generated during performing the warm press-forming work does not cause negative effect on the peripheral part.SOLUTION: In the progressive press-working apparatus 10 in which press-working parts 200 by which a plurality of steps are performed are arranged on a die base 100 along the conveying direction of a workpiece and the press-working parts 200 perform the plurality of steps to the workpiece W to manufacture a product, the press-working parts 200 have heating parts 400 for heating the press-working range Wa of the workpiece W, each warm press-forming part (drawing part) 500 performing warm press-forming in the state where the press-working range Wa after press-working is held at prescribed temperature, and each cold press-forming part (punching part) 600 performing cold press-working of the press-working range Wa warm press-formed after warm press-forming. Here, the heating part 400 has a first cooling fluid flow passage 440 in which a fluid for cooling the heating part 400 is flowed.
    • 要解决的问题:提供一种可进行热压成型加工的渐进式加压装置,其中在进行热压成型加工时产生的热量不会对周边部分产生负面影响。 解决方案:在其中执行多个步骤的冲压加工部件200沿着工件的输送方向布置在模具基座100上的压实加工装置10中,并且加压部件200执行 加工部件200具有用于加热工件W的加压加工范围Wa的加热部件400,各加热部件(拉拔部件)500进行热压机 在压制后的加压范围Wa保持在规定温度的状态下,形成压制加工范围Wa的热压加工的各个冷压成形部(冲压部)600, 经过热压成型。 这里,加热部400具有用于冷却加热部400的流体流过的第一冷却流体流路440。 版权所有(C)2012,JPO&INPIT