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    • 3. 发明申请
    • LIQUID EJECTING APPARATUS AND CONTROL METHOD OF THE SAME
    • US20100245425A1
    • 2010-09-30
    • US12730149
    • 2010-03-23
    • Yoshiyuki Suzuki
    • Yoshiyuki Suzuki
    • B41J29/38
    • B41J29/38B41J2/04581B41J2/04588B41J2/04595B41J2/04596
    • A liquid ejecting apparatus includes a liquid ejecting head having a nozzle, a pressurizing chamber that communicates with the nozzle, and a pressurizing element that causes a pressure change in liquid within the pressurizing chamber, the liquid ejecting head being capable of ejecting liquid from the nozzle by operating the pressurizing element; and a driving signal generation unit that generates a driving signal including a driving pulse that drives the pressurizing element. The driving signal includes an ejection driving pulse that ejects a liquid droplet and a non-ejection driving pulse that drives the pressurizing element to a degree whereby a liquid droplet is not ejected. The ejection driving pulse is a pulse waveform having an expansion element that causes the pressurizing chamber to expand and retract a meniscus toward the pressurizing chamber and a constriction element that causes the pressurizing chamber expanded by the expansion element to constrict and push the meniscus in the direction of ejection. The non-ejection driving pulse is a pulse waveform having an expansion element that causes the pressurizing chamber to expand and retract the meniscus toward the pressurizing chamber, a holding element that holds the voltage at the end of the expansion element for a set amount of time, and a constriction element that causes the pressurizing chamber expanded by the expansion element to constrict and push the meniscus in the direction of ejection. When the length of time from the end of the constriction element in the ejection driving pulse to the beginning of the expansion element in the non-ejection driving pulse is taken as t, the lengths of time of the expansion element, holding element, and constriction element in the non-ejection driving pulse are taken as a, b, and c, respectively, and the inherent vibration cycle of the liquid within the pressurizing chamber is taken as Tc, t, a, b, and c are within the ranges defined by the following equations (1) through (3): Tc/4≦t≦Tc/2  (1) (5Tc/8)−t≦a≦(3Tc/4)−t  (2) b+c=Tc−t−a  (3)
    • 4. 发明申请
    • LIQUID EJECTING METHOD, LIQUID EJECTING HEAD, AND LIQUID EJECTING APPARATUS
    • 液体喷射方法,液体喷射头和液体喷射装置
    • US20090225135A1
    • 2009-09-10
    • US12398623
    • 2009-03-05
    • Yoshiyuki Suzuki
    • Yoshiyuki Suzuki
    • B41J2/14
    • B41J2/04588B41J2/04581B41J2/14274B41J2202/11
    • Provided is a liquid ejecting method, comprising ejecting a liquid from a liquid ejecting head, wherein: the viscosity of the liquid is in a range from 6 mPa·s to 15 mPa·s, the liquid ejecting head includes: nozzles which eject the liquid; a pressure chamber which applies a pressure variation to the liquid in order to eject the liquid from the nozzles; and a supply unit which communicates with the pressure chamber and supplies the liquid to the pressure chamber, the cross-sectional area of the supply unit is in a range from ⅓ of the cross-sectional area of the pressure chamber to the cross-sectional area of the pressure chamber, and the channel length of the pressure chamber is equal to or more than the channel length of the supply unit and is equal to or less than twice of the channel length of the supply unit.
    • 提供一种液体喷射方法,包括从液体喷射头喷射液体,其中:液体的粘度在6mPa.s至15mPa.s的范围内,液体喷射头包括:喷射液体的喷嘴 ; 压力室,其对所述液体施加压力变化,以便从所述喷嘴喷射液体; 以及供应单元,其与压力室连通并将液体供应到压力室,供应单元的横截面积在压力室的横截面面积的1/3到横截面积的范围内, 压力室的截面积和压力室的通道长度等于或大于供应单元的通道长度,并且等于或小于供应单元的通道长度的两倍。
    • 5. 发明申请
    • Light scanning device
    • 光扫描装置
    • US20070023620A1
    • 2007-02-01
    • US11434280
    • 2006-05-16
    • Yoshiyuki Suzuki
    • Yoshiyuki Suzuki
    • H01J3/14H01J5/16
    • G02B26/125G02B27/0031
    • A light scanning device, including a light source including plural light emitting elements arranged linearly, a deflection section that deflects plural light beams emitted from the light source to scan a surface to be scanned, a photosensor that receives at least one of the plural light beams that are deflected by the deflection section, a signal generation section that generates a signal when a light energy amount received at the photosensor reaches a predetermined amount, and a control section that starts scanning of the surface to be scanned by each light beam after a predetermined amount of time passes from a point in time when the signal is generated by the signal generation section, the light receiving surface of the photosensor being inclined to receive light beams emitted from at least two light emitting elements among the plural light emitting elements, is provided.
    • 一种光扫描装置,包括包括线性布置的多个发光元件的光源,使从所述光源发射的多个光束偏转以扫描待扫描的表面的偏转部,接收所述多个光束中的至少一个的光传感器 由偏转部分偏转的信号产生部分,当在光传感器处接收的光能量达到预定量时产生信号的信号产生部分;以及控制部分,其在预定的光束之后开始扫描由每个光束扫描的表面 提供了从信号产生部产生信号的时间点的时间量,光传感器的光接收表面倾斜以接收从多个发光元件中的至少两个发光元件发射的光束 。
    • 8. 发明授权
    • Folding stroller
    • 折叠婴儿车
    • US06893031B2
    • 2005-05-17
    • US10086448
    • 2002-03-04
    • Yoshiyuki Suzuki
    • Yoshiyuki Suzuki
    • B62B7/08B62B9/20B62B7/06
    • B62B9/20B62B7/08B62B9/203B62B2205/22
    • A stroller has a body structure adapted to be unfolded into an unfolded state for use, and to be folded into a folded state. A handle is supported on the body structure for forward and backward turning. The handle is set in either a backward-inclined position for a back-faced pushing mode or a forward-inclined position for a front-faced pushing mode. A handle locking mechanism locks the handle in the backward-inclined position for the back-faced pushing mode via a stopping member and a back stopping projection that engages with the stopping member. When the body structure is folded and armrests are turned upwardly from a working position, the stopping projection, which is fixed to the armrest, turns relative to the stopping member and an end part of the stopping projection is located with its major axis extended perpendicularly to an axis of the handle, and with a part thereof lying in a groove. When the stroller is folded, the end part engages with a stepped part formed in the groove to restrain the stopping member from upward movement, i.e. movement in an unlocking direction.
    • 婴儿车具有适于展开成未展开状态并使其折叠成折叠状态的本体结构。 手柄支撑在车身结构上,用于前后转。 手柄被设置在用于背面推动模式的后倾位置或用于前面推动模式的向前倾斜位置。 手柄锁定机构经由止动构件和与止动构件接合的后止动突起将手柄锁定在用于背面推压模式的后倾位置。 当主体结构被折叠并且扶手从工作位置向上转动时,固定到扶手上的止动突起相对于止动构件转动,并且止动突起的端部位于其长轴垂直延伸 手柄的轴线,并且其一部分位于凹槽中。 当婴儿车折叠时,端部与形成在槽中的阶梯部接合,以阻止止动构件向上运动,即沿解锁方向运动。
    • 10. 发明授权
    • Ink jet printer, ink jet head, and image forming method
    • 喷墨打印机,喷墨头和成像方法
    • US06786589B2
    • 2004-09-07
    • US10392534
    • 2003-03-20
    • Yoshiyuki SuzukiYoko Hirai
    • Yoshiyuki SuzukiYoko Hirai
    • B41J201
    • B41J11/002
    • An ink jet printer for forming an image on a recording medium with an active-ray-setting ink, which is hardened by an irradiation of active rays; having a plurality of heads, each of the plurality of heads having a plurality of jet openings for jetting the active-ray-setting ink as ink drops towards the recording medium; and a plurality of active ray sources of irradiate active rays for hardening the ink drops of the active-ray-setting ink landed on the recording medium, wherein each of the plurality of heads and each of the plurality of active ray sources are arranged alternately.
    • 一种用于在记录介质上形成图像的喷墨打印机,其中所述活性光线固化油墨通过活性光线的照射而硬化; 具有多个头部,所述多个头部中的每一个具有多个喷射开口,用于喷射所述主动光线固化油墨,因为墨滴朝向所述记录介质喷射; 以及多个有源射线源,其照射活性射线用于硬化落在记录介质上的主动射线设定墨水的墨滴,其中多个头和每个多个活性射线源中的每一个交替排列。