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    • 91. 发明申请
    • COMPONENT SEPARATING DEVICE AND CHEMICAL ANALYSIS DEVICE USING THE SAME
    • 组分分离装置和使用该组分分析装置的化学分析装置
    • US20100078323A1
    • 2010-04-01
    • US12444485
    • 2007-11-15
    • Makoto TakahashiMasaya Nakatani
    • Makoto TakahashiMasaya Nakatani
    • G01N35/08B01D21/28
    • B01L3/502761B01D21/283B01D21/32B01D2221/10B01L2200/0652B01L2300/0816B01L2400/0439C12M47/02
    • A vibrator has a large strength of a standing wave even with a low driving voltage, thereby improving the accuracy of component separation. A device according to the present invention includes a substrate having a channel groove provided in an upper surface of the substrate, a seal provided above the substrate so as to cover an upper opening of the channel groove, a projection provided on an outer side wall opposite to the channel groove, and a vibrator causing the projection to warp and vibrate in a depth direction of the channel groove. The warping vibration of the projection is amplified due to effect of leverage, and generates a large stress on the outer wall of the channel groove having the projection provided thereon. Consequently, the strength of a standing wave in the channel groove increases even for a low driving voltage, thereby improving the accuracy of component separation.
    • 振动器即使具有低驱动电压也具有大的驻波强度,从而提高了元件分离的精度。 根据本发明的装置包括:衬底,其具有设置在衬底的上表面中的沟槽;密封件,设置在衬底上方以覆盖通道槽的上开口;突出部,设置在相对的外侧壁上 并且使振动器沿着沟槽的深度方向翘曲而振动。 突起的翘曲振动由于杠杆作用而被放大,并且在其上设置有突起的通道槽的外壁上产生大的应力。 因此,即使对于低驱动电压,通道槽中驻波的强度也增加,从而提高部件分离的精度。
    • 92. 发明授权
    • Cell electro-physiological sensor and method of manufacturing the same
    • 细胞电生理传感器及其制造方法
    • US07608417B2
    • 2009-10-27
    • US11272892
    • 2005-11-14
    • Masaya NakataniHiroshi UshioSoichiro HiraokaAbdellah Menikh
    • Masaya NakataniHiroshi UshioSoichiro HiraokaAbdellah Menikh
    • C12Q1/02
    • G01N33/48728
    • A cell electro-physiological sensor includes a sensor chip including a partition board having a first surface and a second surface opposite to the first surface, a member for forming a first region provided on the first surface of the partition board, and a member for forming a second region provided on the second surface of the partition board. The partition board has a through-hole provided therein, the through-hole having a first opening which opens to the first surface, a second opening which opens to the second surface, and a wall. The first region contacts the first opening of the through-hole. The first region is arranged to contain cell suspension. The atomic ratio of carbon at the first surface of the partition board is not greater than 15 atomic percent of the composition of the first surface. The cell electro-physiological sensor causes the cell to be tightly held at the first opening of the through-hole in the partition board, thereby measuring a potential of the cell efficiently.
    • 细胞电生理传感器包括传感器芯片,其包括具有第一表面和与第一表面相对的第二表面的隔板,用于形成设置在隔板的第一表面上的第一区域的构件和用于形成 设置在隔板的第二表面上的第二区域。 分隔板具有设置在其中的通孔,该通孔具有通向第一表面的第一开口,通向第二表面的第二开口和壁。 第一区域接触通孔的第一开口。 第一个区域被设置成包含细胞悬浮液。 分隔板的第一表面处的碳的原子比不大于第一表面的组成的15原子%。 细胞电生理传感器使细胞紧密地保持在隔板的通孔的第一开口处,从而有效地测量细胞的电位。
    • 97. 发明授权
    • Fluid ejection device and process for the production thereof
    • 流体喷射装置及其制造方法
    • US06554408B1
    • 2003-04-29
    • US09506751
    • 2000-02-18
    • Katsumasa MikiMasaya NakataniIsaku KannoRyoichi TakayamaKoji Nomura
    • Katsumasa MikiMasaya NakataniIsaku KannoRyoichi TakayamaKoji Nomura
    • B41J2045
    • B41J2/1623B41J2/14233B41J2/161B41J2/1628B41J2/1631B41J2/1632B41J2/1646B41J2002/14387
    • A fluid ejection device, such as for an ink jet printer or the like, having increased increasing nozzle density. A through-hole (15) is provided in a glass substrate (18) to which a second silicon substrate (19) is directly bonded to form an ink outlet (14). The first silicon substrate (17) is etched to form a pressure chamber (12), an ink channel (13) and an ink inlet (16), and bonded directly to the glass substrate (18). A piezoelectric thin film (11), having a conductive, elastic body (20), is bonded to the first substrate covering the pressure chamber (12). The elastic body (20) is sandwiched between the piezoelectric thin film (11) and a resin layer (25). The second substrate (19) has a thickness of less than about 0.8 mm in a range of thickness comprising about 1.2 to about 1.9 times (rg-rs), wherein rg is the diameter of the wide end of the through-hole (15) and rs is the diameter of the narrow end of the through-hole (15).
    • 诸如用于喷墨打印机等的流体喷射装置具有增加的喷嘴密度的增加。 在玻璃基板(18)上设置有通孔(15),第二硅基板(19)直接接合在该玻璃基板(18)上形成出墨口(14)。 蚀刻第一硅衬底(17)以形成压力室(12),墨水通道(13)和墨水入口(16),并直接粘合到玻璃基底(18)上。 具有导电弹性体(20)的压电薄膜(11)与覆盖压力室(12)的第一基板接合。 弹性体(20)夹在压电薄膜(11)和树脂层(25)之间。 第二基板(19)的厚度小于约0.8mm,其厚度范围为约1.2至约1.9倍(rg-rs),其中rg是通孔(15)的宽端的直径, 并且rs是通孔(15)的窄端的直径。