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    • 1. 发明专利
    • Raw laver storing method, and raw laver storing apparatus for performing the same
    • 原始储存方法,以及用于执行其的原始储存装置
    • JP2008220275A
    • 2008-09-25
    • JP2007063732
    • 2007-03-13
    • Katsuya NagaoTaizo Yoshida泰造 吉田勝也 長尾
    • YOSHIDA TAIZONAGAO KATSUYA
    • A01G33/00A23L17/60
    • PROBLEM TO BE SOLVED: To provide an alive laver storing method, and an alive laver storing apparatus for performing the method, each enabling bringing collected alive laver to a condition of quality equal to or more excellent than when collected, i.e., enabling supply of the laver in an activated condition to a next processing step. SOLUTION: This raw laver storing method comprises, when charging alive laver and seaweed into a container holding seawater or freshwater and stirring the product to store, blowing oxygen from the bottom of the container to bring an initial oxygen concentration in storage water in the container to ≥15 mg/L, and charging seaweed thereinto followed by stirring and washing. The raw laver storing apparatus is composed of a container which holds storage water and into which alive laver and seaweed are charged, a stirrer which rotates and stirs laver and seaweed in the container, and an oxygen blowing apparatus which comprises connecting an oxygen supply pipe to a diffusing nozzle connected to an oxygen supply pipe and arranged on the bottom of the container, and blowing oxygen into the container. A cover nozzle is arranged around the diffusing nozzle. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了提供活的紫菜存储方法和用于执行该方法的活的紫菜存储装置,每个使得收集的活的紫菜成为等于或优于收集的质量的条件,即,启用 将激活条件下的紫菜供应到下一个处理步骤。 解决方案:该原料紫菜储存方法包括将活的紫菜和海藻充入容纳海水或淡水的容器中并搅拌产品以储存,从容器底部吹入氧气以使储存水中的初始氧浓度 容器≥15mg/ L,并加入海藻,搅拌洗涤。 原料紫菜储存装置由储存储存水的容器和活的紫菜和海藻所装载的容器组成,搅拌器将容器中的紫菜和海藻旋转并搅拌,并将氧气供给管连接到 扩散喷嘴,连接到供氧管并设置在容器的底部,并将氧气吹入容器。 扩散喷嘴周围布置有盖喷嘴。 版权所有(C)2008,JPO&INPIT
    • 2. 发明专利
    • Rotary valve and pressure swing type gas separator
    • 旋转阀和压力式气体分离器
    • JP2008221173A
    • 2008-09-25
    • JP2007066062
    • 2007-03-15
    • Ooita KenTaizo Yoshida泰造 吉田大分県
    • MIZUE HIROSHIJOMON YOSHITOYOSHIDA TAIZO
    • B01D53/04F16K11/076
    • PROBLEM TO BE SOLVED: To provide a rotary valve for a pressure swing type gas separator which has a cylindrical surface consisting of an airtight sliding surface and a simple structure while preventing leak from the sliding surface. SOLUTION: The rotary valve for a pressure swing type gas separator comprises a valve casing in which a valve chest having a cylindrical inner peripheral surface is formed, and a column-shaped valve element arranged so as to freely rotate around an axis while closely sliding on the inner surface of the valve chest. An air supply port, an exhaust port, a first air bleed port, and a second air bleed port are opened in the valve chest. First and second recesses formed in the outer surface of the column of the valve chest are installed to form vacant spaces between the valve element and the inner wall of the valve chest. The first and second recesses are airtightly separated by a sliding mating surface of the cylindrical inner peripheral surface of the valve casing and the cylindrical outer peripheral surface of the valve element. The opening and closing timing of the air supply port and the exhaust port with respect to the first air bleed port and the opening and closing timing of the air supply port and the exhaust port with respect to the second air bleed port are synchronized with a 180-phase difference of rotation of the valve element. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种用于压摆式气体分离器的旋转阀,其具有由气密滑动表面和简单结构组成的圆柱形表面,同时防止从滑动表面泄漏。 解决方案:用于压摆式气体分离器的旋转阀包括阀壳体,其中形成有具有圆柱形内周表面的阀室和布置成绕轴线自由旋转的柱状阀元件, 在阀门的内表面上紧密滑动。 空气供给口,排气口,第一排气口和第二排气口在阀室内开放。 安装在阀座的柱的外表面上形成的第一和第二凹槽以形成阀元件与阀体的内壁之间的空隙。 第一和第二凹部通过阀壳体的圆柱形内周表面和阀元件的圆柱形外周表面的滑动配合表面气密地分开。 空气供给口和排气口相对于第一排气口的打开和关闭时机以及供气口和排气口相对于第二排气口的打开和关闭正时与180度 阀元件的相位旋转差。 版权所有(C)2008,JPO&INPIT
    • 3. 发明申请
    • Inspection device for ultrasonic endoscope apparatus
    • 超声波内窥镜检查装置
    • US20080021320A1
    • 2008-01-24
    • US11825743
    • 2007-07-09
    • Taizo Yoshida
    • Taizo Yoshida
    • A61B8/00
    • A61B8/12A61B2560/0214G16H40/40
    • An inspection device automatically performs inspections including: inspection by a power source inspecting section of a power source that supplies power from a main ultrasonic observation unit to an ultrasonic endoscope; inspection by a transmission signal inspecting section of a transmission signal Tx and a 3D drive clock from the main ultrasonic observation unit to the ultrasonic endoscope; inspection by an encoder inspecting section of a Phase A and Phase Z; inspection by a code inspecting section of a scanner code and a frequency code from the ultrasonic endoscope to the main ultrasonic observation unit; and inspection by a position sensor signal inspecting section of a position sensor signal from the ultrasonic endoscope to the main ultrasonic observation unit.
    • 检查装置自动执行检查,包括:通过从主超声波观察单元向超声波内窥镜供电的电源的电源检查部的检查; 通过发送信号Tx的发送信号检查部检查和从主超声波观察部到超声波内窥镜的3D驱动时钟的检查; A期和Z期的编码器检查部门进行检查; 由扫描仪代码的代码检查部检查和从超声波内窥镜到主超声波观察部的频率代码; 以及由位置传感器信号检查部检测从超声波内窥镜到主超声波观察部的位置传感器信号。
    • 5. 发明授权
    • Image sensing
    • 影像感应
    • US4788522A
    • 1988-11-29
    • US759508
    • 1985-07-26
    • Masanori ItagakiKouji MoriTatsumi IshiwataTaizo Yoshida
    • Masanori ItagakiKouji MoriTatsumi IshiwataTaizo Yoshida
    • H01L27/146H01L31/08
    • H01L27/14665H01L27/14603H01L27/14692H01L27/14696
    • An image sensing device includes a plurality of photoelectric elements arranged in the form of a single array and divided into n number of blocks each of which includes m number of the photoelectric elements commonly connected at one end. In one form of the present invention, a single operational amplifier and m number of switching circuits are used to establish operational independency of the m.times.n photoelectric elements. In other forms, operational independecy of the m.times.n photoelectric elements is established by using an array of blocking diodes or operational amplifiers constructed in the form of IC, but all of the components of a driving or scanning circuit, including these blocking diodes or operational amplifiers, are so structured to be mounted on the same substrate which is remarkably compact in size. Also provided are various forms of photoelectric cells which are particularly suited to be incorporated into an image sensing device and methods for manufacturing the same.
    • 图像感测装置包括以单个阵列的形式布置的多个光电元件,并分成n个块,每个块包括m个在一端共同连接的光电元件。 在本发明的一种形式中,使用单个运算放大器和m个开关电路来建立mxn光电元件的操作独立性。 在其他形式中,通过使用以IC形式构造的阻塞二极管或运算放大器的阵列建立了mxn光电元件的操作独立性,但是包括这些阻塞二极管或运算放大器的驱动或扫描电路的所有组件, 被构造成安装在相当的基板上,其尺寸非常紧凑。 还提供了特别适合于并入图像感测装置的各种形式的光电池及其制造方法。
    • 6. 发明授权
    • Optical switching device
    • 光开关器件
    • US4648687A
    • 1987-03-10
    • US431020
    • 1982-09-30
    • Taizo YoshidaMasaaki MoriJiro KoyamaMasamitsu Haruna
    • Taizo YoshidaMasaaki MoriJiro KoyamaMasamitsu Haruna
    • G02F1/01G02B6/10
    • G02F1/0147
    • An optical switching device for switching the transmission of light waves is provided. The main feature of the present invention is the usage of a light-transmitting, crystalline material having a temperature dependent index of refraction. That is, the light transmission condition is altered by controlling the temperature of such a material. In one form of the present invention, a main waveguide and a branched waveguide are provided and light waves are switched between the main and branched waveguides by controlling the temperature of a particlar portion of the intersection region. In another form of the present invention, a pair of waveguides is oppositely arranged in an end-to-end relation with a gap therebetween, and a switching region is defined in the gap. When the switching region is heated, the waveguides are optically connected; whereas, they are optically disconnected at normal temperature condition.
    • 提供一种用于切换光波传输的光开关装置。 本发明的主要特征是使用具有温度依赖折射率的透光结晶材料。 也就是说,通过控制这种材料的温度来改变透光条件。 在本发明的一种形式中,提供主波导和分支波导,通过控制交叉区域的特征部分的温度,在主波导和分支波导之间切换光波。 在本发明的另一种形式中,一对波导以端对端的关系与它们之间的间隙相对地布置,并且间隙中限定了开关区域。 当开关区域被加热时,波导被光学连接; 而在常温条件下它们是光学断开的。