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    • 1. 发明授权
    • Direct-current switch
    • 直流开关
    • US08902550B2
    • 2014-12-02
    • US13182907
    • 2011-07-14
    • Hirofumi MatsuoKazuaki MinoHiroyuki OtaToru HosenHironobu Shiroyama
    • Hirofumi MatsuoKazuaki MinoHiroyuki OtaToru HosenHironobu Shiroyama
    • H01H9/38H01H9/54H01H33/59
    • H01H9/542H01H9/548H01H33/596
    • A miniaturized direct-current switch with which power loss is reduced when establishing continuity of a direct-current path is provided. The direct-current switch includes an electronic open/close switch inserted in a direct-current path along which a direct current flows in order to make the direct-current path an open circuit or a closed circuit, a parallel mechanical open/close switch connected in parallel to the electronic open/close switch, and a switch control circuit that controls the opening or closing time difference mutually between the parallel mechanical open/close switch and the electronic open/close switch, wherein the switch control circuit makes the parallel mechanical open/close switch a closed circuit a predetermined time after the electronic open/close switch has been made a closed circuit.
    • 提供了一种在建立直流路径的连续性时功率损耗减小的小型化直流开关。 直流开关包括插入直流电流流过的直流路径中的电子开关开关,以使直流路径成为开路或闭路,并联机械开闭开关连接 并联于电子打开/关闭开关,以及开关控制电路,其控制并联机械开/关开关和电子开关开关之间相互的打开或关闭时间差,其中开关控制电路使并联机械打开 在电子打开/关闭开关已经闭合之后的预定时间内闭合闭合闭合电路。
    • 3. 发明授权
    • Sensor network system, base station, and method to forward measured data
    • 传感器网络系统,基站和转发测量数据的方法
    • US07398164B2
    • 2008-07-08
    • US11677128
    • 2007-02-21
    • Munoru OgushiKeiro MuroHiroyuki Ota
    • Munoru OgushiKeiro MuroHiroyuki Ota
    • G06F19/00
    • G06Q10/0875
    • The object of the invention is to facilitate the entry of a sensor node and the adoption of a protocol in the existing sensor network system effectively utilizing limited resources of radiocommunication. To achieve the object, the following are provided. A sensor node has a radiocommunication unit that transmits a measured value sensed by a sensor and an identifier of a sensor node as binary measured data. A base station has a radiocommunication controller that receives the measured data from the sensor node, a wire communication controller that transmits the received measured data to a server, a conversion definition information selector that selects conversion definition information corresponding to the identifier included in the measured data out of preset plural conversion definition information and a conversion engine that converts the binary measured data to measured data in a text format based upon the selected conversion definition information.
    • 本发明的目的是为了便于传感器节点的进入和在现有的传感器网络系统中采用有限的无线电通信有限资源的协议。 为了实现该目的,提供以下内容。 传感器节点具有无线电通信单元,其传送由传感器感测的测量值和传感器节点的标识符作为二进制测量数据。 基站具有从传感器节点接收测量数据的无线电通信控制器,将接收到的测量数据发送到服务器的有线通信控制器,选择与包括在测量数据中的识别符相对应的转换定义信息的转换定义信息选择器 以及基于所选择的转换定义信息将二进制测量数据转换成文本格式的测量数据的转换引擎。
    • 8. 发明授权
    • Ear type clinical thermometer
    • 耳式体温计
    • US07063458B1
    • 2006-06-20
    • US10009595
    • 2000-06-09
    • Makoto TabataHiroyuki OtaTetsuya Sato
    • Makoto TabataHiroyuki OtaTetsuya Sato
    • G01J5/04G01K1/00A61B5/01
    • G01J5/02G01J5/025G01J5/04G01J5/049G01J5/089
    • An object of the present invention is to provide an ear type clinical thermometer in which the main body can be held according to the position of the eardrum of the person whose temperature is being measured. There is provided an ear type clinical thermometer comprising: a main body to be held by hand at a time when an eardrum temperature is to be measured; and a probe fixed to the main body while protruding from the main body and to be inserted into an external auditory canal of a person whose eardrum temperature is to be measured at the time when the measurement is to be taken. The main body has a side at which the probe protrudes from the main body and a side opposite to this side, and the side opposite to the side at which the probe protrudes from the main body is constructed of a curved surface having a substantially constant curvature along a direction perpendicular to a reference plane containing the center axis of the probe. Further, the main body has an indicator for allowing a user to recognize a plurality of methods of holding the main body which differ according to directions in which the probe is to be inserted into the external auditory canal of the person whose temperature is to be measured.
    • 本发明的目的是提供一种耳式体温计,其中主体可以根据正在测量温度的人的鼓膜的位置来保持。 提供了一种耳式体温计,其包括:在要测量鼓膜温度的时候用手握持的主体; 以及固定到主体的探针,同时从主体突出并插入到要测量鼓膜温度的人的外耳道中。 主体具有探针从主体突出的一侧和与该侧相反的一侧,并且与探头从主体突出的一侧相反的一侧由具有基本恒定曲率的曲面构成 沿垂直于包含探针的中心轴的参考平面的方向。 此外,主体具有指示器,用于使用户能够识别根据要测量的探针插入到要测量的人的外耳道的外耳道中的方向不同的多个保持方法 。
    • 10. 发明授权
    • Nitride semiconductor laser and method of fabricating the same
    • 氮化物半导体激光器及其制造方法
    • US06711192B1
    • 2004-03-23
    • US09567024
    • 2000-05-09
    • Kiyofumi ChikumaHiroyuki OtaToshiyuki Tanaka
    • Kiyofumi ChikumaHiroyuki OtaToshiyuki Tanaka
    • H01S500
    • H01S5/22H01L2224/48463H01S5/0202H01S5/0215H01S5/0217H01S5/32341H01S2304/04
    • A method for fabricating a nitride semiconductor laser device having crystal layers each made of a group III nitride semiconductor (AlxGa1−x)1−YInyN (0≦x≦1, 0≦y≦1) layered in order on a ground layer (Alx′Ga1−x′)1−y′Iny′N (0≦x′≦1, 0≦y′≦1). The method including a step of forming a plurality of crystal layers each made of group III nitride semiconductor on a ground layer formed on a substrate such as sapphire; a step of applying a light beam from the substrate side toward the interface between the substrate and the ground layer thereby forming the decomposed-matter area of a nitride semiconductor; a step of separating the ground layer carrying the crystal layers from the substrate along the decomposed-matter area; and a step of cleaving the ground layer thereby forming a cleavage plane of the crystal layers.
    • 一种用于制造氮化物半导体激光器件的方法,该器件具有各自由III族氮化物半导体(Al x Ga 1-x)1-Y In y N(0 <= x <= 1,0 <= y <= 1) 接地层(Al x Ga 1-x')1-y'In y'N(0 <= x'<= 1,0 <= y'<= 1)。 该方法包括在形成在诸如蓝宝石的衬底上的接地层上形成由III族氮化物半导体制成的多个晶体层的步骤; 从基板侧朝向基板和接地层之间的界面施加光束,从而形成氮化物半导体的分解物区域的步骤; 沿着分解物区域从基板分离携带晶体层的接地层的步骤; 以及切割接地层从而形成晶体层的解理面的步骤。