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    • 21. 发明授权
    • Microwave heating apparatus having impedance matching adjustable
waveguide
    • 微波加热装置具有阻抗匹配可调波形
    • US5200588A
    • 1993-04-06
    • US791535
    • 1991-11-14
    • Isao KondohYoshiyuki Kato
    • Isao KondohYoshiyuki Kato
    • H05B6/68H05B6/70
    • H05B6/66H05B6/6411
    • A microwave heating apparatus includes a microwave oscillator, a waveguide for transmitting microwave energy outputted from the microwave oscillator to an object to be heated, detectors for detecting the power of the microwave energy inputted from the microwave oscillator to the object to be heated and the reflected power of the microwave energy reflected from the object to be heated, a matching stub provided in the waveguide, and a driver for driving the matching stub. The driver calculates a VSWR value from the inputted power and the reflected power and includes a motor for driving the matching stub so that the VSWR value is maintained within a predetermined range. Matching of the waveguide impedance with the load impedance can be executed automatically and the VSWR value can be maintained in the range of good matching. Thus, lowering of heating efficiency can be prevented.
    • 微波加热装置包括微波振荡器,用于将从微波振荡器输出的微波能量发送到待加热物体的波导管,用于检测从微波振荡器输入到被加热物体的微波能量的功率的检测器, 从待加热物体反射的微波能量的功率,设置在波导中的匹配短截线以及用于驱动匹配短截线的驱动器。 驱动器根据输入的功率和反射功率计算VSWR值,并且包括用于驱动匹配短截线的电动机,使得VSWR值保持在预定范围内。 可以自动执行波导阻抗与负载阻抗的匹配,并将VSWR值保持在良好匹配的范围内。 因此,可以防止加热效率的降低。
    • 24. 发明授权
    • Image synthesis device
    • 图像合成装置
    • US08896699B2
    • 2014-11-25
    • US13808985
    • 2010-07-14
    • Takafumi KasugaYoshiyuki KatoKiyotaka KatoAkira ToriiMasaki HamadaEisuke Yonezawa
    • Takafumi KasugaYoshiyuki KatoKiyotaka KatoAkira ToriiMasaki HamadaEisuke Yonezawa
    • H04N7/18
    • H04N7/181
    • Disclosed is an image synthesis device including an area determining unit 3 for selecting a vehicle-mounted camera 1 used for generation of a bird's-eye view image viewed from an arbitrary point of view from vehicle-mounted cameras 1a to 1d mounted at different positions, and for determining an area corresponding to the bird's-eye view image in an image captured by the vehicle-mounted camera 1, and an input video signal control unit 4 for receiving image data about the area determined by the area determining unit 3, the image data being included in image data showing the image captured by the vehicle-mounted camera 1, to store the image data in an input frame buffer 5, in which an image processing device 6 generates a bird's-eye view image from the image data stored in the input frame buffer 5.
    • 公开了一种图像合成装置,包括:区域确定单元3,用于从安装在不同位置的车载摄像机1a至1d的任意角度选择用于生成俯瞰图像的鸟瞰图像1的车载摄像机1, 并且用于确定由车载摄像机1捕获的图像中与鸟瞰图图像对应的区域,以及用于接收关于由区域确定单元3确定的区域的图像数据的输入视频信号控制单元4,图像 数据被包括在表示由车载摄像机1拍摄的图像的图像数据中,以将图像数据存储在输入帧缓冲器5中,其中图像处理装置6从存储在图像数据中的图像数据生成鸟瞰图图像 输入帧缓冲区5。
    • 26. 发明申请
    • IMAGING APPARATUS AND IMAGING METHOD FOR TAKING MOVING IMAGE
    • 用于拍摄移动图像的成像装置和成像方法
    • US20120189263A1
    • 2012-07-26
    • US13352607
    • 2012-01-18
    • Yoshiyuki KATOTakeharu Takeuchi
    • Yoshiyuki KATOTakeharu Takeuchi
    • H04N5/91
    • H04N5/23245H04N5/772H04N5/783
    • An imaging apparatus including: an imaging section that sequentially takes images of an object; a moving image recording section that sequentially records the images of the object as a series of moving image data; an adjuster that adjusts an imaging condition for imaging the object in accordance with a change in state of the object during imaging and recording of the series of moving image data; a switching section that switches between a first recording frame rate and a second recording frame rate that is higher than the first recording frame rate; and an adjustment controller that controls adjustment of the imaging condition made by the adjuster during the recording of the moving image data at the second recording frame rate, when the switching section switches from the first recording frame rate to the second recording frame rate.
    • 一种成像装置,包括:成像部,其顺序地拍摄物体的图像; 运动图像记录部分,其顺序地将所述对象的图像记录为一系列运动图像数据; 调节器,其调整成像条件以根据所述对象在所述一系列运动图像数据的成像和记录期间的状态的变化来成像所述物体; 切换部分,其在第一记录帧速率和高于第一记录帧速率的第二记录帧速率之间切换; 以及调节控制器,当切换部从第一记录帧速率切换到第二记录帧速率时,控制在以第二记录帧速率记录运动图像数据期间由调节器进行的成像条件的调整。
    • 28. 发明申请
    • BANKNOTE PROCESSING APPARATUS
    • 银行加工设备
    • US20110248442A1
    • 2011-10-13
    • US13083638
    • 2011-04-11
    • Yoshiyuki KATOTomohisa Oe
    • Yoshiyuki KATOTomohisa Oe
    • B65H31/26
    • G07D11/0018B65H1/06B65H1/14B65H3/0607B65H3/063B65H3/5284B65H2301/42B65H2404/1116B65H2404/132B65H2701/1912G07D11/0024
    • A banknote processing apparatus according to the present invention includes a banknote separating and feeding portion which separates, from banknotes, one feed-out banknote closest to a banknote holding portion, and feeds out the feed-out banknote. The banknote separating and feeding portion includes a feed roller, a separating roller, a kick-on roller, and auxiliary rollers. The auxiliary rollers are positioned on an opposite side of the kick-on roller from the feed roller, protrude onto the banknote pressing portion side beyond the banknote holding surface, and contact with the feed-out banknote. Each of the auxiliary rollers has a plurality of large diameter portions formed intermittently in a circumferential direction of the auxiliary roller. The auxiliary rollers are positioned on the same axis and apart from each other such that phases of mutually adjacent auxiliary rollers in a rotation direction of the auxiliary rollers are offset from each other.
    • 根据本发明的纸币处理装置包括纸币分离和进给部分,其从纸币中分离最靠近钞票保持部分的一个送出纸币,并且馈送出出纸币。 纸币分离和进给部分包括进给辊,分离辊,踢搓辊和辅助辊。 辅助辊位于与进给辊相对的踢脚辊的相反侧,突出到钞票保持面以上的纸币按压部侧,并与送出纸币接触。 每个辅助辊具有在辅助辊的圆周方向上间歇地形成的多个大直径部分。 辅助辊定位在相同的轴线上并且彼此分开,使得相互邻近的辅助辊在辅助辊的旋转方向上的相位彼此偏移。
    • 29. 发明授权
    • Imaging apparatus with strobe consecutive shooting mode and optional pixel addition drive
    • 具有选通连续拍摄模式和可选像素加载驱动的成像设备
    • US07995912B2
    • 2011-08-09
    • US12720323
    • 2010-03-09
    • Tomohiko MurakamiYoshiyuki KatoTakeshi Sato
    • Tomohiko MurakamiYoshiyuki KatoTakeshi Sato
    • G03B15/05
    • G03B15/06H04N5/2354
    • When the mode is set to a strobe consecutive shooting mode, an imaging apparatus sets the mode to a pixel addition drive mode for reading out image data using pixel addition drive, performs metering operation using preliminary flashing and calculates an appropriate amount of flashing on the basis of the metering operation. Next, the imaging apparatus judges whether or not it is possible to flash three times consecutively with the calculated amount of flashing. If it is judged that it is not possible to flash three times consecutively with the calculated amount of flashing, the imaging apparatus limits the amount of flashing to the largest amount of flashing within the range of amounts of flashing with which flashing of strobe light three times consecutively is possible, and performs strobe consecutive shooting with the limited amount of flashing.
    • 当模式被设置为选通连续拍摄模式时,成像装置将该模式设置为使用像素相加驱动器读出图像数据的像素相加驱动模式,使用预先闪烁进行计量操作,并基于此计算适当的闪烁量 的计量操作。 接下来,成像装置判断是否可以用计算出的闪光量连续闪烁三次。 如果判断为不可能以计算出的闪光量连续三次闪烁,则成像装置将闪光量限制在闪光量的闪光量的最大闪光量的范围内,闪光灯闪烁三次 连续可能,并以有限量的闪烁进行频闪连续拍摄。
    • 30. 发明授权
    • Substrate processing apparatus inspection method and method for reducing quantity of particles on substrate
    • 基板处理装置检查方法和减少基板上的颗粒数量的方法
    • US07871471B2
    • 2011-01-18
    • US12023316
    • 2008-01-31
    • Yoshiyuki Kato
    • Yoshiyuki Kato
    • B08B7/00H01L21/302
    • H01L21/67069H01L21/67253H01L21/67288
    • It is intended to prevent an increase in the quantity of particles on a test-piece substrate having undergone processing executed at a low temperature equal to or lower than 0° C. In an inspection method adopted when inspecting the state inside a processing chamber by measuring the quantity of particles on a test-piece substrate, i.e., a test-piece wafer, the test-piece wafer W having undergone a specific type of test processing inside the processing chamber is carried out into a transfer chamber via a loadlock chamber after holding it in the loadlock chamber over a predetermined length of time while delivering a dried inert gas into the loadlock chamber. The predetermined length of time is set to a value at which the increase in the quantity of particles on the test-piece wafer can be kept down at least within an acceptable range.
    • 旨在防止在等于或低于0℃的低温下进行的经过处理的试验片基板上的颗粒数量的增加。在通过测量检查处理室内的状态时所采用的检查方法 在试片基片即试片晶片上,在处理室内进行了特定类型的试验处理的试片晶片W在保持后通过负载锁定室进行转印室 将其在负载锁定室中预定长度的时间,同时将干燥的惰性气体输送到负载锁定室中。 预定的时间长度被设定为可以将试片晶片上的颗粒数量的增加保持在至少在可接受的范围内的值。