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    • 62. 发明申请
    • Indicator control system with camera section
    • 带相机部分的指示灯控制系统
    • US20070120660A1
    • 2007-05-31
    • US10584112
    • 2004-12-16
    • Hideo YamadaIsao MurotaTomoaki OnoSatoshi Fujii
    • Hideo YamadaIsao MurotaTomoaki OnoSatoshi Fujii
    • B60Q1/00H04N7/18G03B17/18
    • E02F9/26
    • [PROBLEMS] An indicator control system with a camera section provided with a switching means for switching from a measurement value display mode to a camera display mode and vice versa to display a selected mode on a monitor section of an indicator, the measurement value display mode showing the measurement data of an object to be monitored of a construction machine, and the camera display mode being for the camera section mounted on the construction machine. [MEANS FOR SOLVING PROBLEMS] In an indicator (1) in which switching between the measurement value display mode and the camera display mode is performed by an input switching means (14) and a selected mode is displayed on a monitor section (2), the input switching means (14) consists of manual switching effected by an input means such as a predetermined switch provided near the operator's seat or on the indicator (1) or automatic switching effected by the detection of a previously registered operation of a predetermined operation member or effected when an indicator alarm judging means judges that the display of an alarm screen is necessary. Also, the camera section is connected to the indicator (1) through a camera control input means for sending a control signal to a camera control unit (65).
    • [问题]一种具有相机部分的指示器控制系统,其具有切换装置,用于从测量值显示模式切换到相机显示模式,反之亦然,以在指示器的监视器部分上显示所选择的模式,测量值显示模式 显示施工机械的待监测物体的测量数据,摄像机显示模式是安装在施工机器上的摄像机部分。 解决问题的手段在由输入切换装置(14)进行测量值显示模式与相机显示模式之间的切换并且在监视器部分(2)上显示所选模式的指示器(1)中, 输入切换装置(14)包括由诸如设置在驾驶员座椅附近的预定开关或者指示器(1)上的输入装置进行的手动切换,或通过检测预定操作构件的预先登记的操作而进行的自动切换 或者当指示器报警判断装置判断出需要显示报警画面时进行。 另外,摄像机部分通过摄像机控制输入装置连接到指示器(1),用于向摄像机控制单元(65)发送控制信号。
    • 63. 发明申请
    • Horizontally continuously cast rod of aluminum alloy and method and equipment for producing the rod
    • 水平连续铸造铝合金棒及其制造方法和设备
    • US20060254679A1
    • 2006-11-16
    • US10550270
    • 2004-03-26
    • Yasuhide OdashimaSatoshi FujiiShigeru Yanagimoto
    • Yasuhide OdashimaSatoshi FujiiShigeru Yanagimoto
    • C22F1/04
    • B22D11/003B22D11/143C22F1/04C22F1/043
    • Horizontally continuously cast aluminum alloy rods excellent in quality are efficiently manufactured using a melting/holding furnace (101) to produce molten aluminum alloy, a molten-metal treatment apparatus (201) to remove aluminum oxide and hydrogen gas from the molten aluminum alloy, a horizontally continuously casting apparatus (301) to cast the treated molten aluminum alloy into horizontally continuously cast aluminum alloy rods, a cutting machine (408A, 408B) to cut to a standard length the cast rods, a first straightening apparatus (1001) to straighten bend of the cut rods, a peeling apparatus (1101) to peel skin portions of the straightened rods, a nondestructive inspection apparatus (1401) to inspect surface and internal portions of the peeled rods, a sorting apparatus (1501) to sort the inspected rods judged non-defective based on results of the nondestructive inspection step and a packing apparatus to pack the sorted rods, and continuously using at least the first straightening apparatus (1001) et seq.
    • 使用熔融保温炉(101)高效率地制造水平连续铸造的铝合金棒,以生产熔融铝合金,用于从熔融铝合金中除去氧化铝和氢气的熔融金属处理设备(201) 水平连续铸造设备(301)将经处理的熔融铝合金铸造成水平连续铸造的铝合金棒,切割机(408A,408B)以将铸棒切割成标准长度,第一矫直设备(1001)至 矫直切割杆的弯曲部,剥离矫正杆的皮肤部分的剥离装置(1101),检查剥离杆的表面和内部的无损检查装置(1401),对检查对象进行分类的分拣装置(1501) 基于非破坏性检查步骤的结果判断为无缺陷的棒和用于包装分选杆的包装设备,并且连续使用至少 第一矫直装置(1001)等。
    • 66. 发明申请
    • Vacuum pump
    • 真空泵
    • US20050254969A1
    • 2005-11-17
    • US10515221
    • 2003-05-20
    • Eiji MasushigeSatoshi Fujii
    • Eiji MasushigeSatoshi Fujii
    • F04C18/16F04C29/04F04B17/00F04B35/00
    • F04C29/04F04C18/16F04C2240/10F05C2225/04F05C2251/048
    • The invention relates to a heat insulation structure having the function of retaining a high temperature in a vacuum exhaust chamber in a rotary type vacuum pump and the function of cooling bearings at the same time, and particularly has for its object the provision of a structure for preventing bearings or shaft seals from becoming so high in temperature as to be damaged when a high temperature is to be retained in an exhaust chamber with respect to a vacuum pump for exhausting reactive gases as in a semiconductor process. As a means to achieve the object, in a vacuum pump comprising an introduction device having a vacuum exhaust chamber and adapted to introduce a process gas into the vacuum exhaust chamber, an exhaust device for exhausting the process gas out of the vacuum exhaust chamber, a housing for separating the vacuum exhaust chamber from outside, with a rotor installed fro rotation in the housing through a bearing, a heat insulation device is provided between the vacuum exhaust chamber and the bearing. Further, a metal whose thermal conductivity is higher than that of the material of the housing is incorporated as a heat transmission device into the housing.
    • 本发明涉及一种具有在旋转式真空泵中真空排气室中保持高温并且同时冷却轴承的功能的隔热结构,特别是其目的在于提供一种用于 防止轴承或轴密封件变得如此高的温度,以便在半导体工艺中相对于用于排出反应性气体的真空泵在排气室中保持高温时被损坏。 作为实现该目的的手段,在包括具有真空排气室的引入装置并适于将工艺气体引入真空排气室的真空泵中,用于将处理气体排出真空排气室的排气装置, 用于将真空排气室从外部分离的壳体,其中通过轴承在壳体中旋转安装的转子,在真空排气室和轴承之间设置隔热装置。 此外,导热率高于壳体的材料的金属作为热传递装置并入壳体中。
    • 68. 发明授权
    • Surface acoustic wave device
    • 表面声波装置
    • US06469416B1
    • 2002-10-22
    • US09959954
    • 2001-11-13
    • Katsuhiro ItakuraAkihiro HachigoHideaki NakahataSatoshi FujiiShinichi Shikata
    • Katsuhiro ItakuraAkihiro HachigoHideaki NakahataSatoshi FujiiShinichi Shikata
    • H03H925
    • H03H9/02984H03H9/02574H03H9/02582
    • A surface acoustic wave (SAW) device is provided that is suitable for mass production and that has excellent operational performance at the superhigh-frequency range. The SAW device comprises (a) a diamond layer 3; (b) a ZnO layer 4, with a thickness of tz, formed on the diamond layer 3; (c) interdigital transducers (IDTs) 5, which excite and receive a SAW, formed on the ZnO layer 4; and (d) an SiO2 layer 6, with a thickness of ts, formed on the ZnO layer 4 so that the SiO2 layer can cover the IDTs 5. The structure of the SAW device is determined by specific numeric ranges of the parameters kh1 and kh2, which are given in equations kh1=5·2&pgr;·(tz/&lgr;) and kh2=5·2&pgr;(ts/&lgr;), where &lgr; signifies the wavelength of the fundamental wave of the second mode of the SAW. The SAW device uses the fifth harmonic of the second mode of the SAW.
    • 提供了适用于批量生产并且在超高频范围内具有优异的操作性能的表面声波(SAW)装置。 SAW器件包括(a)金刚石层3; (b)在金刚石层3上形成厚度为tz的ZnO层4; (c)在ZnO层4上形成的用于激发和接收SAW的叉指换能器(IDT)5; 和(d)在ZnO层4上形成厚度为ts的SiO 2层6,使得SiO 2层可以覆盖IDT 5. SAW器件的结构由参数kh1和kh2的特定数值范围确定 ,其方程式为kh1 = 5.2pi(tz / lambd)和kh2 = 5.2pi(ts / lambd),其中lambd表示SAW的第二模式的基波的波长。 SAW器件使用SAW的第二模式的第五谐波。