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    • 11. 发明授权
    • Electrostatic actuator, liquid droplet discharging head, methods for manufacturing them, and liquid droplet discharging apparatus
    • 静电致动器,液滴喷射头,其制造方法和液滴喷射装置
    • US07766456B2
    • 2010-08-03
    • US11761207
    • 2007-06-11
    • Yoshifumi HanoMasahiro Fujii
    • Yoshifumi HanoMasahiro Fujii
    • B41J2/04
    • B41J2/14314B41J2/16B41J2/1628B41J2/1629B41J2/1631B41J2/1642B41J2002/14411Y10T29/49002
    • To allow formation of an insulation film to be applied even to a glass substrate without depending on a substrate material so as to improve pressure generated by an electrostatic actuator, as well as to achieve improvement in driving stability and driving durability of the electrostatic actuator at a low cost. [Solving Means] An electrostatic actuator including an individual electrode 5 formed on a substrate, a vibration plate 6 arranged opposite to the individual electrode 5 via a predetermined gap and a driving means for causing a displacement of the vibration plate 6 by generating an electrostatic force between the individual electrode 5 and the vibration plate 6 includes an insulation film 7 provided on one or both of opposing surfaces of the fixed electrode and the movable electrode and a surface protection film 8 provided on the insulation film 7. The surface protection film 8 is made of a hard ceramic film or a hard carbon film.
    • 为了允许形成即使施加到玻璃基板上的绝缘膜而不依赖于基板材料,从而改善由静电致动器产生的压力,并且可以实现静电致动器的驱动稳定性和驱动耐久性的提高 低成本。 [解决方案]一种静电致动器,包括形成在基板上的单独电极5,经由预定间隙与单独电极5相对设置的振动板6以及用于通过产生静电力使振动板6发生位移的驱动装置 单个电极5和振动板6之间包括设置在固定电极和可动电极的相对表面的一个或两个上的绝缘膜7和设置在绝缘膜7上的表面保护膜8.表面保护膜8是 由硬质陶瓷膜或硬质碳膜制成。
    • 12. 发明授权
    • Detection device
    • 检测装置
    • US08773658B2
    • 2014-07-08
    • US13455516
    • 2012-04-25
    • Kohei YamadaYoshifumi Hano
    • Kohei YamadaYoshifumi Hano
    • G01J3/44G01N21/00E03B1/00F17D1/00F17D3/00
    • G01N21/05G01N21/658G01N2021/0346G01N2021/058Y10T137/0324
    • A detection device includes a sensor chip, a suction section adapted to suck a fluid sample to the sensor chip, a light source adapted to irradiate the sensor chip, a light intensity adjustment section adapted to adjust intensity of the light, a light detection section adapted to detect the light reflecting the sample adsorbed to the sensor chip, and a control section adapted to perform drive control on the suction section. The control section sets the suction flow velocity to V1 in the first mode in which the light detection section performs the detection, and sets the suction flow velocity to V2 (V2>V1) in the second mode. The light intensity adjustment section sets the light intensity to L1 in the first mode, and sets the light intensity to L2 (L2>L1) in the second mode. The first and second modes are switched based on the signal from the light detection section.
    • 一种检测装置,包括传感器芯片,适于将流体样本吸入传感器芯片的吸入部,适于照射传感器芯片的光源,适于调节光强度的光强调节部,适于 检测反射吸附在传感器芯片上的样品的光,以及适于对吸引部进行驱动控制的控制部。 控制部在第一模式中将吸引流速设定为V1,在第一模式中,光检测部进行检测,并将吸引流速设定为V2(V2> V1)。 光强度调节部将第一模式的光强度设定为L1,在第二模式中将光强度设定为L2(L2> L1)。 基于来自光检测部的信号来切换第一和第二模式。
    • 16. 发明授权
    • Detection device
    • 检测装置
    • US08970839B2
    • 2015-03-03
    • US13441374
    • 2012-04-06
    • Kohei YamadaYoshifumi Hano
    • Kohei YamadaYoshifumi Hano
    • G01J3/44G01N21/65
    • G01N21/658
    • A detection device includes an optical device, a suction section adapted to suck the fluid sample in the optical device, a light source adapted to irradiate the optical device with light, a light detection section adapted to detect light emitted from the optical device, and a control section adapted to perform drive control on the suction section. The optical device emits light reflecting the fluid sample to be adsorbed. The control section sets a suction flow velocity of the fluid sample on the optical device to V1 in a first mode including a period of performing detection by the light detection section, sets the suction flow velocity of the fluid sample on the optical device to V2 (V2>V1) in a second mode, and switches between the first mode and the second mode based on a signal from the light detection section.
    • 一种检测装置,包括光学装置,适于吸收光学装置中的流体样本的吸入部,适于对光学装置照射光的光源,适于检测从光学装置发射的光的光检测部,以及 控制部分适于在抽吸部分上执行驱动控制。 光学装置发射反射待吸附的流体样品的光。 控制部将包含光检测部的检测期间的第一模式的光学元件上的流体样本的吸入流速设定为V1,将光学元件上的流体样本的吸引流速设定为V2( V2> V1),并且基于来自光检测部分的信号在第一模式和第二模式之间切换。
    • 17. 发明授权
    • Electrostatic actuator, liquid droplet discharging head, methods for manufacturing them, and liquid droplet discharging apparatus
    • 静电致动器,液滴喷射头,其制造方法和液滴喷射装置
    • US08136925B2
    • 2012-03-20
    • US12819057
    • 2010-06-18
    • Yoshifumi HanoMasahiro Fujii
    • Yoshifumi HanoMasahiro Fujii
    • B41J2/04
    • B41J2/14314B41J2/16B41J2/1628B41J2/1629B41J2/1631B41J2/1642B41J2002/14411Y10T29/49002
    • To allow formation of an insulation film to be applied even to a glass substrate without depending on a substrate material so as to improve pressure generated by an electrostatic actuator, as well as to achieve improvement in driving stability and driving durability of the electrostatic actuator at a low cost. An electrostatic actuator including an individual electrode formed on a substrate, a vibration plate arranged opposite to the individual electrode via a predetermined gap and a driving means for causing a displacement of the vibration plate by generating an electrostatic force between the individual electrode and the vibration plate includes an insulation film provided on one or both of opposing surfaces of the fixed electrode and the movable electrode and a surface protection film provided on the insulation film. The surface protection film is made of a hard ceramic film or a hard carbon film.
    • 为了允许形成即使施加到玻璃基板上的绝缘膜而不依赖于基板材料,从而改善由静电致动器产生的压力,并且可以实现静电致动器的驱动稳定性和驱动耐久性的提高 低成本。 一种静电致动器,包括形成在基板上的单独电极,经由预定间隙与单独电极相对设置的振动板和驱动装置,用于通过在各个电极和振动板之间产生静电力而引起振动板的位移 包括设置在固定电极和可动电极的相对表面的一个或两个上的绝缘膜和设置在绝缘膜上的表面保护膜。 表面保护膜由硬质陶瓷膜或硬碳膜制成。
    • 20. 发明授权
    • Ink for inkjet printer
    • 墨水喷墨打印机
    • US06702881B2
    • 2004-03-09
    • US10066672
    • 2002-02-06
    • Yoshifumi HanoChiyoshige Nakazawa
    • Yoshifumi HanoChiyoshige Nakazawa
    • C09D1102
    • C09D11/50
    • The present invention provides ink for an ink-jet printer containing a fluorescent compound which emits fluorescence by ultraviolet irradiation, a surfactant, and water. The ink can satisfy all points of quick-drying property of the ink after printing, print quality, and change in the hue, lightness, and chroma of the print part by irradiation of light source. A fluorescent compound which has absorption in the visible light range and which emits fluorescence by ultraviolet irradiation and a fluorescent compound which has no absorption in the visible light range and which emits fluorescence, by ultraviolet irradiation, with a hue different from that of the fluorescence emitted from the aforementioned fluorescent compound under visible light are mixed.
    • 本发明提供一种含有通过紫外线照射发射荧光的荧光化合物,表面活性剂和水的喷墨打印机的油墨。 油墨可以通过照射光源来满足打印后油墨的快干性能,打印质量以及打印部件的色调,亮度和色度的变化。 在可见光范围内具有吸收并且通过紫外线照射发射荧光的荧光化合物和在可见光范围内没有吸收的荧光化合物,并且通过紫外线照射发出不同于发射的荧光的色调的荧光 从可见光下的上述荧光化合物混合。