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    • 31. 发明授权
    • Curing vessel in a gel-coated seed processing device
    • 固化容器在凝胶涂覆的种子处理装置中
    • US5609684A
    • 1997-03-11
    • US562815
    • 1995-11-27
    • Yoichi IdoYasushi Kohno
    • Yoichi IdoYasushi Kohno
    • A01C1/06A23G3/00
    • A01C1/06
    • The present invention provides a gel-coated seed processing device that comprises a gel-processing nozzle for coating the seed supplied thereto, a curing vessel which is disposed under the gel-processing nozzle and accommodate a curing agent for curing the surface of the gel-coated seeds, and a washing vessel for washing off the surface of the gel-coated seeds after being immersed in the curing vessel, wherein the curing vessel is composed of; a curing vessel main body for accommodating a gelatinizing agent in a receiving section thereof for receiving the gel-coated seeds dropped down thereto and in a gel conveying channel in connection with the receiving section, a pump for circulating the curing agent from the receiving section to the upstream thereof by way of the gel conveying channel, a rectifying plate disposed in the upstream of the receiving section to make the curing agent overflow the horizontal upper end brim thereof, and a horizontal guide wall extendedly disposed in the downstream side of the rectifying plate for horizontally guiding the overflown curing agent toward the downstream.
    • 本发明提供了一种凝胶涂覆的种子处理装置,其包括用于涂覆供应的种子的凝胶加工喷嘴,固化容器,其设置在凝胶加工喷嘴下方,并且容纳用于固化凝胶状表面的固化剂, 涂覆的种子和用于在浸渍在固化容器中之后从凝胶涂覆的种子的表面上洗涤的洗涤容器,其中固化容器由以下组成: 一种固化容器主体,用于在其接收部分中容纳凝胶化剂,用于接收下降到其上的凝胶涂覆的种子和与接收部分相关的凝胶输送通道,用于使固化剂从接收部分循环到 其上游通过凝胶输送通道,整流板设置在接收部分的上游,以使固化剂溢出其水平上端边缘;以及水平引导壁,其延伸设置在整流板的下游侧 用于将溢出的固化剂水平地引向下游。
    • 32. 发明授权
    • Seed supplying and coating apparatus
    • 种子供应和涂装设备
    • US5512101A
    • 1996-04-30
    • US408308
    • 1995-03-22
    • Yasushi Kohno
    • Yasushi Kohno
    • A01C1/06A01C7/04B05C5/00
    • A01C7/042A01C1/06
    • In the bottom of a seed vessel containing seeds is provided a throughhole through which a seed supply rod is longitudinally movably passed. The supply rod is connected to an actuator to be movably driven. When the supply rod is moved upwardly, it carries a small number of seeds on the top surface thereof to bring the seeds close to a suction tip so that the suction tip sucks one seed therefrom. Since the suction tip sucks one seed from the limited number of seeds on top of the supply rod, it becomes unlikely that a plurality of seeds sucked into the suction tip interfere with each other to cause the suction tip to make errors in sucking seeds.
    • 在含有种子的种子容器的底部设置有通孔,通过该通孔可以纵向移动通过种子供应杆。 供应杆连接到致动器以可移动地驱动。 当供应杆向上移动时,其在其顶表面上携带少量种子以使种子靠近抽吸尖端,使得吸头从其吸入一个种子。 由于抽吸头从供应杆顶部的有限数量的种子中吸取一个种子,因此吸入吸头的多个种子不太可能相互干扰,导致吸嘴在吸吮种子时出错。
    • 34. 发明授权
    • Thermal type flow rate sensor
    • 热式流量传感器
    • US5321382A
    • 1994-06-14
    • US910844
    • 1992-07-07
    • Masahito MizukoshiShinji OtaNorikazu HosokawaYasushi Kohno
    • Masahito MizukoshiShinji OtaNorikazu HosokawaYasushi Kohno
    • G01F1/68G01F1/684H01C1/08H01C3/04H01C3/12
    • G01F1/684G01F1/68
    • A thermal type flow rate sensor comprising a sensor chip having a rectangular shape. The sensor chip is supported between supporting pins through ribbon-like leads connected to opposite ends of the sensor chip. The ribbon-like leads serve to correctly locate the surface of the sensor chip with respect to flow of fluid. The surfaces of the sensor chip is formed with a thin film heater. A heater portion of the thin film heater comprises a plurality of straight portions and a plurality of turn portions connecting the straight portions to each other. Each turn portion is formed in a smoothly curved shape to avoid the concentration of electric currents and is disposed at an end portion of the sensor chip which has a comparatively low temperature. This structure is effective in preventing generation of cracks in the turn portions. In addition, the plurality of straight portions are alternatively inclined to effectively utilize the surface of the sensor chip to form a long heating portion.
    • 一种热式流量传感器,包括具有矩形形状的传感器芯片。 传感器芯片通过连接到传感器芯片的相对端的带状引线支撑在支撑引脚之间。 带状引线用于相对于流体流正确定位传感器芯片的表面。 传感器芯片的表面形成有薄膜加热器。 薄膜加热器的加热器部分包括多个直线部分和连接直线部分的多个转弯部分。 每个匝部形成为平滑弯曲的形状,以避免电流的集中,并且设置在具有较低温度的传感器芯片的端部。 该结构对于防止匝部产生裂纹是有效的。 此外,多个直线部分交替地倾斜以有效地利用传感器芯片的表面以形成长的加热部分。
    • 37. 发明授权
    • Flow quantity measuring apparatus including branched conductive lines connected to midpoints of series circuits of the bridge circuit
    • 流量测量装置,包括连接到桥式电路的串联电路的中点的分支导线
    • US08844350B2
    • 2014-09-30
    • US13242130
    • 2011-09-23
    • Junzo YamaguchiYasushi Kohno
    • Junzo YamaguchiYasushi Kohno
    • G01F1/68G01F1/00
    • G01F1/00
    • A sensor chip in a flow quantity measuring apparatus includes a first conductive line, through which a midpoint electric potential of a first series circuit of a bridge circuit is outputted, is branched from a first midpoint connection on a sensor chip. A second conductive line, through which a midpoint electric potential of a second series circuit of the bridge circuit is outputted, is branched from a second midpoint connection on the sensor chip. The output point of the midpoint electric potential of the first series circuit is provided at a midpoint between two temperature sensor resistors, and the first midpoint connection is provided on a center line of a heater resistor. The output point of the midpoint electric potential of the second series circuit is provided at a midpoint between two temperature sensor resistors, and the second midpoint connection is provided on the center line of the heater resistor.
    • 流量测量装置中的传感器芯片包括:输出桥电路的第一串联电路的中点电位的第一导线从传感器芯片上的第一中点连接分支。 输出桥电路的第二串联电路的中点电位的第二导线从传感器芯片上的第二中点连接分支。 第一串联电路的中点电位的输出点设置在两个温度传感器电阻之间的中点处,并且第一中点连接设置在加热电阻器的中心线上。 第二串联电路的中点电位的输出点设置在两个温度传感器电阻之间的中点处,第二中点连接设置在加热电阻器的中心线上。