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    • 4. 发明申请
    • Lighting method, lighting apparatus and components used therefor
    • 照明方法,照明装置及其组件
    • US20050062445A1
    • 2005-03-24
    • US10941101
    • 2004-09-15
    • Makoto ToyotaTatsuo SekiYasuhiko FukunagaShuji Shikano
    • Makoto ToyotaTatsuo SekiYasuhiko FukunagaShuji Shikano
    • B41J2/44B41J2/45B41J2/455H05B33/08H05B37/02H05B37/00H05B39/00
    • H05B33/0848H05B33/0803Y10S362/80
    • A lighting method capable of lighting individual light emitting devices in a lighting head connected to a power supply each at a rated current irrespective of the specification of the lighting head by using a power supply of an identical specification, and a lighting apparatus used for the lighting method, the lighting apparatus comprises lighting heads each having one or more light emitting devices arranged in any optional pattern and comprising a lighting circuit that supplies a current to light emitting devices when an application voltage is at or higher than the lower limit voltage VLmin for lighting determined by the arrangement of the light emitting devices, and an identification circuit that outputs a current identification signal in accordance with an appropriate current for the lighting circuit when the application voltage is lower than the lower limit value for lighting, and the power supply comprises a driving power supply that applies a lighting voltage at or higher than the lower limit voltage for lighting, an identification power supply that applies an identification voltage at or lower than the lower limit voltage for lighting, a current setter that sets an appropriate current to be supplied to the lighting circuit based on the current identification signal outputted from the identification circuit, and a lighting current control circuit that keeps the current flowing in the light circuit to an appropriate current in a lighting-up state of the light emitting devices 2 during accordance with the current setting signal.
    • 一种照明方法,其能够通过使用相同规格的电源,以与额定电流不同的照明头的规格来照亮连接到电源的照明头中的各个发光装置,以及用于照明的照明装置 方法中,照明装置包括各自具有以任何可选图案布置的一个或多个发光装置的照明头,并且包括照明电路,当施加电压等于或高于用于照明的下限电压VLmin时,向发光装置提供电流 由发光装置的配置决定的识别电路,以及当施加电压低于点亮用下限值时,根据照明电路的合适电流输出电流识别信号的识别电路,电源包括 驱动电源,其施加在th以上的点亮电压 e用于照明的下限电压,识别电源,其施加等于或低于用于点亮的下限电压的识别电压;电流设定器,其基于从所述点亮电路输出的当前识别信号设定要提供给点亮电路的适当电流; 识别电路和照明电流控制电路,其根据当前设置信号将发光装置2的点亮状态下的电流流过光电路中的适当电流。
    • 6. 发明授权
    • Fuel channel box and a method of manufacturing the same
    • 燃油通道箱及其制造方法
    • US06704386B2
    • 2004-03-09
    • US10285421
    • 2002-11-01
    • Michio NakayamaTakehiro SetoTatsuo SekiIsao Kurihara
    • Michio NakayamaTakehiro SetoTatsuo SekiIsao Kurihara
    • G21C307
    • G21C3/324G21C21/00G21Y2004/201Y02E30/40
    • A fuel channel box manufacturing method processes a fuel channel box of a zirconium-base alloy by a beta-quench treatment that heats the fuel channel box by a heating coil. The distance between the heating coil and the opposite walls of the fuel channel box is controlled so that temperature differences between the opposite walls of the fuel channel box are reduced. The fuel channel box of a zirconium-base alloy is heated at a temperature in a temperature range including &bgr;-phase temperatures so that temperature difference between the opposite walls is 50° C. or below. The fuel channel box manufacturing method is capable of manufacturing a fuel channel box that is not subject to significant irradiated bow even if a deflection is produced therein originally when the same is manufactured and of manufacturing the fuel channel box at a high production efficiency.
    • 燃料通道箱制造方法通过加热线圈对燃料通道箱加热的β-淬火处理来处理锆基合金的燃料通道箱。 控制加热线圈与燃料通道箱的相对壁之间的距离,使得燃料通道箱的相对壁之间的温度差减小。 锆基合金的燃料通道箱在包括β相温度的温度范围内被加热,使得相对壁之间的温度差为50℃或更低。 燃料通道箱的制造方法能够制造即使在其制造时原来产生偏转并且以高生产效率制造燃料通道箱时,也不会受到显着的照射弓的燃料通道箱的影响。
    • 7. 发明授权
    • Facsimile bandwidth compression method system and apparatus
    • 传真带宽压缩方法系统和装置
    • US4353095A
    • 1982-10-05
    • US6245
    • 1979-01-24
    • Kenzou TatematsuYasuhiro SugiharaHiroyuki AndouTatsuo SekiYoshito DezakiYasukazu Nishino
    • Kenzou TatematsuYasuhiro SugiharaHiroyuki AndouTatsuo SekiYoshito DezakiYasukazu Nishino
    • H04N1/415H04N7/12
    • H04N1/415
    • A facsimile bandwidth compression method using a facsimile signal comprising a synchronizing signal part, a control signal part having digital signals made by coding signals of existence or non-existence of substantial picture information in blocks which are made by dividing the picture information signal into a specified uniform length segment, and a picture information part consisting of picture information signal of the blocks containing at least one black picture element. A reference signal having an inverted carrier phase from that of the synchronizing signal part is inserted between the synchronizing signal part and the control part. The coding of the digital signal is made by inverting the carrier phase. Guard bands having specified levels are inserted between the blocks, thereby assuring more accurate and fine synchronization than the known WBS (white block skipping) art, and hence, a very clear reproduced picture.
    • 一种使用传真信号的传真带宽压缩方法,该传真信号包括同步信号部分,具有数字信号的控制信号部分,所述控制信号部分通过将通过将图像信息信号分成指定的块中的大块图像信息存在或不存在实质图像信息 以及由包含至少一个黑色图像元素的块的图像信息信号组成的图像信息部分。 具有与同步信号部分相反的载波相位的参考信号插入同步信号部分和控制部分之间。 通过反相载波相位来进行数字信号的编码。 具有指定级别的保护带被插入在块之间,从而确保比已知的WBS(白色块跳过)技术更准确和精细的同步,因此,非常清楚的再现图像。
    • 8. 发明授权
    • Image pickup apparatus, image pickup lens, and data writing method to image pickup lens
    • 图像拾取装置,图像拾取透镜和数据写入方法
    • US07808541B2
    • 2010-10-05
    • US10597250
    • 2005-01-31
    • Shuji ShikanoNaohiro TsudaTatsuo SekiYasuhiko FukunagaTomoki NishiyamaMakoto Toyota
    • Shuji ShikanoNaohiro TsudaTatsuo SekiYasuhiko FukunagaTomoki NishiyamaMakoto Toyota
    • H04N5/222
    • H04N5/23209G02B21/368G03B17/18H04N5/23293
    • To enable to display a scale indicative of a reference length on a screen of a display at an accurate length even when exchanging the lens in an image pickup apparatus to any lens.In a case of mounting an exchange lens (4F, 4Z) to an image pickup apparatus main body (3) and displaying an image of an object picked up by an image sensor (2) and a scale (5) indicative of a reference length in juxtaposition on a screen of a display (6), a previously measured optical magnification or an actual magnification is outputted from optical magnification outputting means (8) provided to the exchange lens (4F, 4Z) is outputted, an actual magnification on the screen of the display (6) is calculated based on the optical magnification, the size for the image sensor and the screen size, and the size of the scale on the screen is set based on the actual magnification and the reference length of the scale by a scale setting means (17).
    • 即使在图像拾取装置中将透镜更换为任何透镜时,也能够以准确的长度在显示器的屏幕上显示表示参考长度的刻度。 在将交换透镜(4F,4Z)安装到图像拾取装置主体(3)并显示由图像传感器(2)拾取的对象的图像和指示参考长度的刻度(5)的情况下 在显示器(6)的屏幕上并置时,从设置在交换镜(4F,4Z)的光学倍率输出装置(8)输出先前测量的光学倍率或实际倍率,屏幕上的实际倍率 基于光学倍率,图像传感器的尺寸和屏幕尺寸以及屏幕上的刻度尺寸,基于实际倍率和刻度的参考长度来设置显示器(6)的尺寸的基准 刻度设定装置(17)。
    • 9. 发明申请
    • AIR-CONDITIONER, METHOD OF CONTROLLING AIR DIRECTION OF AIR-CONDITIONER, AND METHOD OF CONTROLLING ACTUATOR
    • 空气调节器,空气调节器空气方向的控制方法和控制执行器的方法
    • US20090090125A1
    • 2009-04-09
    • US12182689
    • 2008-07-30
    • Tatsuo Seki
    • Tatsuo Seki
    • F25D17/04F24F13/08G05D7/00
    • F24F11/79F24F2120/12
    • A control device 15 includes: a target area deciding unit 21 for setting either of binary values of 0 and 1 to plural area sections and deciding a targeted area section for air-conditioning; and an area air direction control unit 22 for carrying out control operation, so that when controlling at least one of air direction control stepping motors directed to the targeted area section for air-conditioning, a left/right air direction control stepping motor carries out control operation based on depth direction one-dimensional data obtained by calculating a logical sun of each column in depth direction of each area section in a group of area sections, and an up/down air direction control stepping motor carries out control operation based on left/right direction one-dimensional data obtained by calculating a logical sum of each column in left/right direction of each area section in the group of area sections.
    • 控制装置15包括:目标区域判定单元21,用于将0和1的二进制值中的任一个设置为多个区域区域,并且确定用于空调的目标区域部分; 以及区域空气方向控制单元22,用于执行控制操作,使得当控制朝向空调的目标区域部分的空气方向控制步进电机中的至少一个时,左/右风向控制步进电机执行控制 基于通过计算一组区域部分中的每个区域部分的深度方向上的每列的逻辑太阳而获得的深度方向一维数据的操作,以及上/下风向控制步进电机基于左/ 通过计算区域区域中的每个区域区域的左/右方向上的每列的逻辑和获得的右方向一维数据。