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    • 2. 发明授权
    • Infrared detector element, and infrared sensor unit and infrared detecting device using it
    • 红外线检测元件,红外线传感器单元及红外线检测装置
    • US06403959B1
    • 2002-06-11
    • US09402969
    • 1999-11-22
    • Kazuhiko FujikawaTakeshi MasutaniTsutomu NakanishiShinji UmedaKazuki KomakiKatsumasa MikiKoji Nomura
    • Kazuhiko FujikawaTakeshi MasutaniTsutomu NakanishiShinji UmedaKazuki KomakiKatsumasa MikiKoji Nomura
    • G01J102
    • G01J5/04G01J5/0022G01J5/0025G01J5/0285G01J5/045G01J5/046G01J5/08G01J5/0806G01J5/0846G01J5/0853G01J5/0875G01J5/089G01J5/10G01J5/34
    • The present invention relates to an infrared detector element to detect infrared rays by means of a pyroelectric material, and an infrared sensor unit and an infrared detecting device using the infrared detector element and has an object of realizing an omnidirectional infrared detector element that can gain an output against an object to be detected moving in whatever directions. In order to accomplish this object, the present invention proposes a setup comprising a pair of first electrodes (12, 13), which have a function of absorbing infrared rays, are close to trapezoidal in shape, respectively, and are disposed on one of the surfaces of a pyroelectric material (11) with electrical connections made in such a way that the first electrodes are opposite to each other in polarity, and a pair of second electrodes (14, 15) disposed on the other surface of the pyroelectric material (11) and electrically connected with each other, in which the lower side of the close to trapezoidal shape of the first electrodes (12, 13) of one hand is aligned in the same direction as the lower side of the close to trapezoidal shape of the second electrodes (14, 15) of the other hand, thereby producing an effect of gaining an output against an object to be detected making a movement from whatever directions.
    • 本发明涉及一种利用热电材料检测红外线的红外线检测元件,以及使用该红外线检测元件的红外线传感器单元和红外线检测装置,其目的在于,实现能够获得红外线检测元件的全向红外线检测元件 针对被检测物体的输出在任何方向上移动。 为了实现该目的,本发明提出一种包括具有吸收红外线功能的一对第一电极(12,13)分别接近梯形的设置,并且设置在其中一个 具有以使得第一电极极性彼此相对的方式制造的电连接的热电材料(11)的表面和设置在热电材料(11)的另一表面上的一对第二电极(14,15) )并且彼此电连接,其中一只手的第一电极(12,13)接近梯形形状的下侧在与第二电极(12,13)的接近梯形形状的下侧相同的方向上对准 另一方面的电极(14,15),从而产生相对于从任何方向移动的待检测物体的输出的效果。
    • 3. 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。
    • 9. 发明授权
    • Digital camera having sequential shooting mode
    • 具有顺序拍摄模式的数码相机
    • US07948553B2
    • 2011-05-24
    • US11880352
    • 2007-07-20
    • Koji NomuraYoji Watanabe
    • Koji NomuraYoji Watanabe
    • G03B13/00
    • G03B13/36G02B7/08
    • A digital camera comprises a CCD for subjecting subject light flux incident from a photographing lens to photoelectric conversion and outputting subject image signals, a movable mirror section, arranged in the imaging light path of the CCD, for reflecting some of the subject light flux and transmitting the remainder, a range finder/photosensor for receiving subject light flux reflected by the movable mirror member and carrying out ranging integration, and an optical system drive mechanism for carrying out focal point adjustment of the photographing lens based on output of the range finder/photosensor. In a sequential shooting mode for sequentially acquiring images using the CCD, during the imaging operation by the CCD ranging integration by the range finder/photosensor 217 is carried out using subject light flux that has been reflected by the movable mirror member.
    • 数码相机包括:CCD,用于使从拍摄镜头入射的被摄体光通量光电转换并输出被摄体图像信号;可移动镜部分,布置在CCD的成像光路中,用于反射一些被摄体光通量并传输 剩余部分,用于接收由可移动镜构件反射的目标光束并执行测距一体化的测距仪/光电传感器,以及用于基于测距仪/光电传感器的输出执行拍摄镜头的焦点调节的光学系统驱动机构 。 在使用CCD顺序采集图像的顺序拍摄模式中,在通过测距仪/光电传感器217进行CCD测距积分的成像操作期间,使用已被反射的被摄体光束进行可动镜部件的反射。