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    • 7. 发明申请
    • MAGNETIC TAPE DRIVING APPARATUS
    • 磁带驱动装置
    • US20090231752A1
    • 2009-09-17
    • US12404962
    • 2009-03-16
    • Yoshiaki KudoSadamu Kuse
    • Yoshiaki KudoSadamu Kuse
    • G11B21/02
    • G11B33/144G11B5/00821G11B5/40G11B5/455G11B15/62
    • A magnetic tape driving apparatus includes a magnetic head 2, a temperature/humidity sensor 4, a Peltier element 11, and a controller 15. The temperature/humidity sensor 4 that detects the temperature and humidity of the magnetic head 2 or in the vicinity thereof. The Peltier element 11 that cools the magnetic head 2 and in the vicinity thereof based on detection results of the temperature/humidity sensor 4. The controller 15 that controls the Peltier element 11 based on the temperature and humidity information obtained by the temperature/humidity sensor 4. The controller 15 controls the Peltier element 11 so as to decrease the temperature of the magnetic head 2 and in the vicinity thereof when the humidity of the magnetic head 2 or in the vicinity thereof that the temperature/humidity sensor 4 detects is less than a predetermined value. By adopting this sort of configuration, it is possible to suppress an increase in error rate even in a low humidity environment.
    • 磁带驱动装置包括磁头2,温度/湿度传感器4,珀耳帖元件11和控制器15.检测磁头2或其附近的温度和湿度的温度/湿度传感器4 。 基于温度/湿度传感器4的检测结果冷却磁头2及其附近的珀耳帖元件11.控制器15根据由温度/湿度传感器获得的温度和湿度信息来控制珀耳帖元件11 当温度/湿度传感器4检测到的磁头2的湿度或其附近,控制器15控制珀尔帖元件11,以便降低磁头2的温度和附近的温度。 预定值。 通过采用这种配置,即使在低湿度环境下也可以抑制误码率的增加。
    • 9. 发明申请
    • Process for Producing Proteoglycan
    • 生产蛋白多糖的方法
    • US20100234580A1
    • 2010-09-16
    • US12224013
    • 2007-02-09
    • Yoshiaki KudoMasaki Narumi
    • Yoshiaki KudoMasaki Narumi
    • C07K1/14
    • C07K14/4725C08B37/0063C08B37/0066
    • An efficient low-cost method of proteoglycan recovery from natural resources. There is provided a process for producing proteoglycan, comprising the steps of immersing a biological sample containing proteoglycan in an alkali solution of 0.0025 to 0.1 N and recovering the solution after the immersion. As compared with the conventional extraction method, proteoglycan can be recovered in unaltered undecomposed form easily within a short period of time, thereby attaining substantial reduction of proteoglycan production cost. Further, proteoglycan highly useful in industry can be recovered from wasted portions of fin, feather, mammal, etc. having mainly been discarded, thereby contributing toward effective utilization of industrial waste and reduction of the volume of industrial waste per se.
    • 一种有效的低成本自然资源回收蛋白多糖的方法。 提供了一种生产蛋白多糖的方法,包括将含有蛋白多糖的生物样品浸入0.0025至0.1N的碱溶液中并在浸渍后回收该溶液的步骤。 与常规提取方法相比,蛋白多糖可以在短时间内容易地以未改变的未分解形式回收,从而大大降低了蛋白多糖的生产成本。 此外,主要被废弃的鳍,羽毛,哺乳动物等的浪费部分可以从工业中高度有用的蛋白多糖回收,从而有助于有效利用工业废物和减少工业废物的本身。
    • 10. 发明授权
    • Color measuring method and device for printed matter
    • 印刷品颜色测量方法和装置
    • US06671050B2
    • 2003-12-30
    • US10016135
    • 2001-11-01
    • Tohru SugiyamaYoshiaki Kudo
    • Tohru SugiyamaYoshiaki Kudo
    • G01N2125
    • G01N21/27G01N21/64
    • The indication of correct color evaluation standards of a printed matter including a paper containing a fluorescent whitening agent, is enabled even in the case where the printed matter is observed under a light source that differs from the light source used for color measurement. A spectral reflectance Pt(&lgr;) of the paper under a light source T and a spectral reflectance Pu(&lgr;) of the paper under a light source U are measured in advance and a differential component, due to the fluorescent whitening agent, is determined as Fp(&lgr;)=Pu(&lgr;)−Pt(&lgr;). For a printed matter of dot percent S, a spectral reflectance Rt(&lgr;, S) under light source T is measured, and the measured values are subject to a correction process of adding an effective component within the differential component Fp(&lgr;) that is in accordance to dot percent S to determine an estimated spectral reflectance Rtu(&lgr;, S) under light source U. Estimation in likewise manner can also be performed for XYZ tristimulus values.
    • 即使在与用于颜色测量的光源不同的光源下观察印刷物的情况下,也能够使用包括含有荧光增白剂的纸的印刷品的正确颜色评价标准的指示。 光源T下的纸张的光谱反射率Pt(λ)和光源U下的纸张的光谱反射率Pu(λ)被预先测量,并且由荧光增白剂引起的差分成分被确定为 Fp(λ)= Pu(λ)-Pt(λ)。 对于点百分数S的印刷品,测量光源T下的光谱反射率Rt(λ,S),测量值经受在差分分量Fp(λ)内加入有效成分的校正处理 根据点百分数S来确定光源U下的估计光谱反射率Rtu(λ,S)。对于XYZ三刺激值也可以进行同样的估计。