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    • 51. 发明授权
    • Microwave detector
    • 微波探测器
    • US6154166A
    • 2000-11-28
    • US162347
    • 1998-09-28
    • Motoshi SawadaYuichi KajitaMitsuhiro ImuraShinji KoikeAkira ItoHisao Ono
    • Motoshi SawadaYuichi KajitaMitsuhiro ImuraShinji KoikeAkira ItoHisao Ono
    • G01S7/38G01S7/00G01S7/02G01S7/40H04B17/00
    • G01S7/00G01S7/021
    • In order to detect microwaves from radar type speed measurement devices and microwaves leaking out of reverse detectors without being detected by such reverse detectors, a microwave detector is provided with a super-heterodyne type reception circuit for cyclically performing reception operations to receive target microwave frequencies of prescribed microwave bands, the reception circuit including a first local oscillator which can carry out a fixed oscillation at a prescribed frequency or a sweep of a prescribed frequency range established slightly outside the frequency range of the local oscillator of a reverse detector, and a plurality of second local oscillators having different oscillation frequencies, whereby the reception circuit is able to receive microwaves in the target bands and microwaves leaking out of the local oscillator of a reverse detector.
    • 为了从雷达式速度测量装置和从反向检测器泄漏的微波中检测微波而不被这种反向检测器检测到,微波检测器设置有超外差型接收电路,用于循环执行接收操作以接收目标微波频率 规定的微波频带,所述接收电路包括能够以规定频率执行固定振荡的第一本地振荡器或略微超出反向检测器的本地振荡器的频率范围的规定频率范围的扫描,以及多个 第二本地振荡器具有不同的振荡频率,由此接收电路能够接收目标频带中的微波和从反向检测器的本地振荡器泄漏的微波。
    • 56. 发明授权
    • Method of setting belt areas in an image to locate bands of biopolymers
    • 设置图像中的带区域以定位生物聚合物带的方法
    • US5671289A
    • 1997-09-23
    • US452681
    • 1995-05-30
    • Hiromi ShibataAkira Ito
    • Hiromi ShibataAkira Ito
    • G01N27/447G06T7/00G06K9/00
    • G06T7/004
    • A method for determining the location and density of bands of biopolymers which are formed by developing and resolving a mixture of biopolymers on a supporting medium in one direction to form a lane of plural bands. The method includes the steps of inputting an image of the lane to a computer in the form of digital data comprising information of location and density, displaying the image, and setting a belt area along the lane which encompasses the aimed bands of the biopolymer. The belt area is then scanned a plurality of times in parallel directions crossing the lane with sufficiently small spacing so as to scan every band present within the belt area, in order to detect relationships of location and density on the digital data in the direction of the lane within the belt area. One dimensional data is then prepared to enable a determination of the location and density of the aimed bands.
    • 通过在一个方向上在支撑介质上显影和分解生物聚合物的混合物以形成多条带的通道而形成的生物聚合物条带的位置和密度的确定方法。 该方法包括以数字数据的形式将计算机的图像输入到计算机的步骤,该数字数据包括位置和密度的信息,显示图像,以及沿包含生物聚合物的目标条带的通道设置皮带区域。 然后,皮带区域在平行方向上以足够小的间隔跨过车道扫描多次,以扫描皮带区域中存在的每个频带,以便检测数字数据上的位置和密度在方向上的关系 在皮带区内的车道。 然后准备一维数据以确定目标条带的位置和密度。
    • 57. 发明授权
    • Veneer hoisting apparatus
    • 单板起重机
    • US5669602A
    • 1997-09-23
    • US617130
    • 1996-03-18
    • Akira Ito
    • Akira Ito
    • B65G61/00B65G59/02B65H3/22
    • B65H3/22
    • A veneer hoisting apparatus in which even a top veneer of piled veneers is inclined, a piercing unit is adapted to the inclination to pierce and hoist the veneer by piercing members. The veneer hoisting apparatus comprises: a piercing unit with a sharp piercing member; an elevating member for vertically moving the piercing unit fixed thereto; a device for supporting the elevating member, the supporting device having an angle adjusting mechanism for adjusting an angle between the piercing unit and the top veneer when the piercing member contacts the top veneer; and a controller for controlling motion of the elevating member.
    • 一种单板起重设备,其中即使是顶层单板的平板单板倾斜,穿孔单元适于倾斜以刺穿并通过穿孔构件提升单板。 单板起重装置包括:具有尖锐穿孔构件的穿孔单元; 用于使固定在其上的穿刺单元垂直移动的升降构件; 用于支撑升降构件的装置,所述支撑装置具有角度调节机构,用于当穿孔构件接触顶部单板时调节穿孔单元和顶部单板之间的角度; 以及用于控制升降构件的运动的控制器。
    • 60. 发明授权
    • Distance measuring device
    • 距离测量装置
    • US5614984A
    • 1997-03-25
    • US505518
    • 1995-04-19
    • Yoichi SekiTomihiko AoyamaMichio KawaiAkira Ito
    • Yoichi SekiTomihiko AoyamaMichio KawaiAkira Ito
    • G01C3/06G01S17/46G02B7/32H01L21/68G03B13/36
    • G02B7/32G01S17/46
    • A distance measuring device for ensuring accuracy of the positional relationship between the optical axis of a light-receiving lens and the optical center of a light-receiving element obtains distance information data by measuring the distance to a target plate which is 1 meter from the distance measuring device. If the distance information is not smaller than 1.625 meter, a switch is connected to one pair of terminals and the difference between reference output data stored in a control circuit and output data of an AF-IC obtained when the distance to the target plate is measured with the switch connected to the pair of terminals is calculated and stored in a memory circuit. When the value of the distance information data is not greater than 0.375 meter, the switch is connected to another pair of terminals, and output deviation data is stored in the memory circuit 11 in the same way. When the value of the distance information value is smaller than 1.625 meter and greater than 0.375 meter, the switch is connected to a further pair of terminals, and output deviation data is stored in the memory circuit in the same way.
    • 用于确保光接收透镜的光轴与光接收元件的光中心之间的位置关系的精确度的距离测量装置通过测量距离距离为1米的目标板的距离来获得距离信息数据 测量工具。 如果距离信息不小于1.625米,则开关连接到一对端子,并且存储在控制电路中的参考输出数据与当到目标板的距离被测量时获得的AF-IC的输出数据之间的差异 连接到一对终端的开关被计算并存储在存储器电路中。 当距离信息数据的值不大于0.375米时,开关连接到另一对端子,并且输出偏差数据以相同的方式存储在存储器电路11中。 当距离信息值小于1.625米且大于0.375米时,开关与另一对端子连接,输出偏差数据以相同的方式存储在存储器电路中。