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    • 2. 发明授权
    • Laser scanning microscope
    • 激光扫描显微镜
    • US08129697B2
    • 2012-03-06
    • US12858557
    • 2010-08-18
    • Shigeyuki ManoKoichi SatohErik Martinus Marie MandersAntonius Ronald Hoebe
    • Shigeyuki ManoKoichi SatohErik Martinus Marie MandersAntonius Ronald Hoebe
    • G01J1/58
    • G02B21/0076G02B21/008
    • The present invention relates to a laser scanning microscope capable of acquiring suitable fluorescent images. A fluorescence detection unit 26 measures a plurality of intensities of fluorescent light of different wavelengths that is excited by irradiation of laser light and emitted from a sample 12. Moreover, a CLEM processing unit 28 performs control, for each single pixel scanning time that is the amount of time during which a range corresponding to a single pixel of the image is scanned, to discontinue irradiation of the laser light in at least one of the case in which all of the plurality of intensities of fluorescent light are less than a lower limit threshold value at a lower limit value judgment time that is shorter than the time during which a range corresponding to a single pixel of the image is scanned, and the case in which any one of the plurality of intensities of fluorescent light exceeds an upper limit threshold value during the time during which a range corresponding to a single pixel of the image is scanned.
    • 本发明涉及能够获取合适的荧光图像的激光扫描显微镜。 荧光检测单元26测量通过照射激光并从样品12发射而激发的不同波长的多个强度的亮度。此外,CLEM处理单元28对于每个像素扫描时间 扫描与图像的单个像素相对应的范围的时间量,在多个强度的荧光的所有亮度都小于下限阈值的情况下,中止激光的照射 在比扫描对应于图像的单个像素的范围的时间短的下限值判定时间的值以及多个强度的荧光中的任一个超过上限阈值的情况下, 在扫描对应于图像的单个像素的范围的时间期间。
    • 3. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US07293768B2
    • 2007-11-13
    • US10375067
    • 2003-02-28
    • Koichi Satoh
    • Koichi Satoh
    • B65H7/02
    • B65H7/12B65H2511/51B65H2511/528B65H2513/53B65H2701/11132B65H2220/01B65H2220/03
    • Disclosed is an image forming apparatus allowing travel of a tabbed sheet, in which even when a tabbed sheet is made to travel, no erroneous jamming detection occurs, thus allowing the tabbed sheet to travel in the same manner as in the case of an ordinary sheet. The image forming apparatus includes: a sheet detecting unit arranged in a sheet transport path for transporting a sheet and adapted to detect the sheet; and a control unit which, when the tabbed sheet is made to travel, performs control so as to make a set value for a reference timer for a jamming judgment to be made through detection of a sheet by the sheet detecting unit different from a set value for an ordinary sheet.
    • 公开了一种允许标签片移动的图像形成装置,其中即使当片状片材行进时,也不发生错误的卡纸检测,从而允许标签片材以与普通片材相同的方式行进 。 图像形成装置包括:片材检测单元,布置在纸张传送路径中,用于传送片材并适于检测片材; 以及控制单元,当标签片行进时,进行控制,以便通过片材检测单元检测不同于设定值的纸张来作出用于干扰判断的参考定时器的设定值 用于普通纸。
    • 5. 发明授权
    • Pressure die-casting process of magnesium alloys
    • 压铸镁合金压铸工艺
    • US06467527B1
    • 2002-10-22
    • US09586760
    • 2000-06-05
    • Kohei KubotaKoichi SatohMasaru YamamotoYoichi NosakaYasuhisa GotoTakeshi Doi
    • Kohei KubotaKoichi SatohMasaru YamamotoYoichi NosakaYasuhisa GotoTakeshi Doi
    • B22D2709
    • B22D17/08B22D21/007
    • A method for die-casting a magnesium alloy comprises the step of casting a die cast product free of any hot tearing, shrinkage tearing and shrinkage cavity starting from a magnesium alloy comprising i) 1 to 10% by weight of aluminum; ii) at least one member selected from the group consisting of 0.2 to 5% by weight of a rare earth metal, 0.02 to 5% by weight of calcium and 0.2 to 10% by weight of silicon; and iii) not more than 1.5% by weight of manganese, and the balance of magnesium and inevitable impurities, using a cold chamber type die-casting machine, wherein a) the temperature of the molten magnesium alloy is maintained at 650 to 750°C.; b) the charging velocity of the molten metal is set at {fraction (1/100)} to {fraction (10/100)} second; and c) the intensified pressure after the charging is set at a level of not less than 200 kgf/cm2. Thus, a die cast product free of any hot tearing, shrinkage tearing and shrinkage cavity can be produced by appropriately specifying injection conditions, mold conditions, conditions for melting a magnesium alloy and mold plan in the cold chamber type die-casting machine, or by appropriately controlling the temperature of the molten metal from the molten metal-accommodating pot to the gate portion of the machine.
    • 压铸镁合金的方法包括以下步骤:铸造不含任何热裂纹,收缩撕裂和收缩空腔的压铸产品,该镁合金包括:i)1至10重量%的铝; ii)选自0.2至5重量%的稀土金属,0.02至5重量%的钙和0.2至10重量%的硅中的至少一种; 和iii)使用冷室式压铸机不超过1.5重量%的锰,剩余的镁和不可避免的杂质,其中a)熔融镁合金的温度保持在650-750℃ 。 b)熔融金属的充电速度设定为{分数(1/100)}至{分数(10/100)}秒; 和c)充电后的增压压力设定在不低于200kgf / cm2的水平。 因此,通过在冷室型压铸机中适当地指定注射条件,模具条件,熔融镁合金条件和模具计划,或者由冷却室型压铸机中的模具计划,可以通过适当地指定没有任何热撕裂,收缩撕裂和收缩腔的压铸产品 适当地将熔融金属的温度从熔融金属容纳罐适当地控制到机器的浇口部分。
    • 6. 发明授权
    • Up/down counter device with reduced number of discrete circuit elements
    • 具有减少数量的分立电路元件的上/下计数器件
    • US4741006A
    • 1988-04-26
    • US754398
    • 1985-07-12
    • Akira YamaguchiKoichi SatohHidemi IsekiHiroshi Shigehara
    • Akira YamaguchiKoichi SatohHidemi IsekiHiroshi Shigehara
    • H03K23/56H03K23/00H03K23/04
    • H03K23/56
    • An up/down counter device includes a D-type flip-flop circuit for producing a count signal of the 0th bit in synchronism with a clock signal, and 1st to n-th flip-flop circuits for producing count signals of the 1st to the n-th bits in synchronism with a clock signal. The first logic circuit is connected between the output of the D-type flip-flop circuit and the JK terminals of the first flip-flop circuit. The first stage logic circuit includes a first logic circuit section supplied with an up/down mode signal and the output signal of the D-type flip-flop circuit, and a second logic circuit connected in series with with the first logic circuit. Each of the 2nd to the n-th stage logic circuits includes a first logic circuit which is connected between the output terminal of the prestage flip-flop circuit and the JK terminals of the post stage flip-flop circuit, and a second logic circuit section connected to the first logic circuit. The output of the first logic circuit section of each of the first to the n-th logic circuits is connected to the input of the first logic circuit section of the post stage logic circuit.
    • 上/下计数器装置包括用于产生与时钟信号同步的第0位的计数信号的D型触发器电路,以及用于产生第1至第1位计数信号的第1至第n触发器电路 第n位与时钟信号同步。 第一逻辑电路连接在D型触发器电路的输出端与第一触发器电路的JK端子之间。 第一级逻辑电路包括被提供有上/下模式信号和D型触发器电路的输出信号的第一逻辑电路部分和与第一逻辑电路串联连接的第二逻辑电路。 第二至第n级逻辑电路中的每一个包括连接在前级触发器电路的输出端子和后级触发器电路的JK端子之间的第一逻辑电路,以及第二逻辑电路部分 连接到第一逻辑电路。 第一至第n逻辑电路中的每一个的第一逻辑电路部分的输出连接到后级逻辑电路的第一逻辑电路部分的输入端。
    • 7. 发明申请
    • LASER SCANNING MICROSCOPE
    • 激光扫描显微镜
    • US20110036993A1
    • 2011-02-17
    • US12858557
    • 2010-08-18
    • Shigeyuki MANOKoichi SatohErik Martinus Marie MandersAntonius Ronald Hoebe
    • Shigeyuki MANOKoichi SatohErik Martinus Marie MandersAntonius Ronald Hoebe
    • G01J1/58
    • G02B21/0076G02B21/008
    • The present invention relates to a laser scanning microscope capable of acquiring suitable fluorescent images. A fluorescence detection unit 26 measures a plurality of intensities of fluorescent light of different wavelengths that is excited by irradiation of laser light and emitted from a sample 12. Moreover, a CLEM processing unit 28 performs control, for each single pixel scanning time that is the amount of time during which a range corresponding to a single pixel of the image is scanned, to discontinue irradiation of the laser light in at least one of the case in which all of the plurality of intensities of fluorescent light are less than a lower limit threshold value at a lower limit value judgment time that is shorter than the time during which a range corresponding to a single pixel of the image is scanned, and the case in which any one of the plurality of intensities of fluorescent light exceeds an upper limit threshold value during the time during which a range corresponding to a single pixel of the image is scanned.
    • 本发明涉及能够获取合适的荧光图像的激光扫描显微镜。 荧光检测单元26测量通过照射激光并从样品12发射而激发的不同波长的多个强度的亮度。此外,CLEM处理单元28对于每个像素扫描时间 扫描与图像的单个像素相对应的范围的时间量,在多个强度的荧光的所有亮度都小于下限阈值的情况下,中止激光的照射 在比扫描对应于图像的单个像素的范围的时间短的下限值判定时间的值以及多个强度的荧光中的任一个超过上限阈值的情况下, 在扫描对应于图像的单个像素的范围的时间期间。