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    • 1. 发明授权
    • Imaging apparatus capable of inhibiting inadvertent ejection of a satellite ink droplet therefrom and method of assembling same
    • 能够抑制卫星墨滴的意外喷射的成像装置及其组装方法
    • US06276774B1
    • 2001-08-21
    • US09083679
    • 1998-05-22
    • Omid A. MoghadamAnthony R. LubinskyChristopher N. DelametterThomas E. Kocher
    • Omid A. MoghadamAnthony R. LubinskyChristopher N. DelametterThomas E. Kocher
    • B41J2938
    • B41J2/04516B41J2/04551B41J2/04581B41J2/04588B41J2/04596B41J2/055B41J2002/14354B41J2202/10
    • An imaging apparatus capable of inhibiting inadvertent ejection of a satellite ink droplet and method of assembling same. The imaging apparatus comprises a print head transducer including a pair of sidewalls defining a chamber therebetween, the channel having the ink body disposed therein. The transducer is in fluid communication with the ink body for inducing a first pressure wave in the ink body in order to eject an ink droplet. A waveform generator is connected to the transducer for supplying voltage waveforms to the transducer, so that the transducer induces pressure waves in the ink body. However, the first pressure wave has a reflected portion formed by the first pressure wave reflecting from the sidewalls. The reflected portion is sufficient to otherwise inadvertently eject unintended satellite ink droplets. Thus, a sensor is in fluid communication with the ink body for sensing the reflected portion and is connected to the transducer for inducing a second pressure wave in the ink body. The second pressure wave has an amplitude and phase damping the reflected portion of the first pressure wave in order to the inhibit inadvertent ejection of satellite ink droplets.
    • 能够抑制卫星墨滴的意外喷射的成像装置及其组装方法。 成像装置包括打印头换能器,其包括在其间限定腔室的一对侧壁,该通道具有设置在其中的墨体。 传感器与墨体流体连通,用于在墨体中引入第一压力波,以便喷射墨滴。 波形发生器连接到换能器,用于向换能器提供电压波形,使得换能器在墨体中引起压力波。 然而,第一压力波具有由从侧壁反射的第一压力波形成的反射部分。 反射部分足以否则无意中弹出非预期的卫星墨滴。 因此,传感器与墨体流体连通,用于感测反射部分,并连接到换能器,用于在墨体中引入第二压力波。 第二压力波具有振幅和相位阻尼第一压力波的反射部分,以便抑制卫星墨滴的无意的喷射。
    • 2. 发明授权
    • Imaging apparatus capable of suppressing inadvertent ejection of a satellite ink droplet therefrom and method of assembling same
    • 能够抑制卫星墨滴的无意喷射的成像装置及其组装方法
    • US06186610B1
    • 2001-02-13
    • US09157455
    • 1998-09-21
    • Thomas E. KocherChristopher N. DelametterAnthony R. LubinskyOmid A. Moghadam
    • Thomas E. KocherChristopher N. DelametterAnthony R. LubinskyOmid A. Moghadam
    • B41J2938
    • B41J2/04516B41J2/04551B41J2/04581B41J2/04588B41J2/04596B41J2/055B41J2002/14354B41J2202/10
    • An imaging apparatus capable of suppressing inadvertent ejection of a satellite ink droplet and method of assembling the apparatus. The imaging apparatus comprises a print head transducer including a pair of sidewalls defining a chamber therebetween, the channel having an ink body disposed therein. The transducer is capable of inducing a first pressure wave in the ink body in order to eject an intended ink droplet. A waveform generator is connected to the transducer for supplying a voltage waveform to the transducer, so that the transducer induces pressure waves in the ink body to eject the ink droplet. However, the first pressure wave has a reflected portion formed by the first pressure wave reflecting from the sidewalls. The reflected portion is sufficient to inadvertently eject unintended satellite ink droplets following ejection of the intended ink droplet. To avoid formation of satellite ink droplets, a sensor is in fluid communication with the ink body for sensing the reflected portion. A feedback circuit interconnects the transducer and the sensor for inducing a second pressure wave in the ink body in response to the reflected portion sensed by the sensor. The second pressure wave has an amplitude and phase damping the reflected portion of the first pressure wave in order to the suppress inadvertent ejection of the satellite ink droplets.
    • 能够抑制卫星墨滴的意外喷射的成像装置及组装装置的方法。 该成像设备包括一个打印头转换器,该打印头换能器包括一对在其间限定腔室的侧壁,该通道具有设置在其中的墨体。 传感器能够在墨体中引入第一压力波,以便喷射预期的墨滴。 波形发生器连接到换能器以向换能器提供电压波形,使得换能器在墨体中引起压力波以喷射墨滴。 然而,第一压力波具有由从侧壁反射的第一压力波形成的反射部分。 反射部分足以在弹出预期的墨滴之后无意中弹出非预期的卫星墨滴。 为了避免形成卫星墨滴,传感器与墨体流体连通,用于感测反射部分。 反馈电路将换能器和传感器互连,以响应于由传感器感测的反射部分而在墨体中感应第二压力波。 第二压力波具有振幅和相位阻尼第一压力波的反射部分,以便抑制卫星墨滴的无意的喷射。
    • 3. 发明授权
    • Printhead container and method
    • 打印头容器和方法
    • US6047816A
    • 2000-04-11
    • US149701
    • 1998-09-08
    • Omid A. MoghadamAnthony R. LubinskyThomas E. Kocher
    • Omid A. MoghadamAnthony R. LubinskyThomas E. Kocher
    • B41J2/175B65D81/20B65D81/26
    • B41J2/17533B65D81/2053
    • Printhead container and method. The container comprises an enclosure surrounding a printhead body having an ink channel terminating in a nozzle orifice. The ink channel has ink therein. The enclosure is capable of being pressurized to a predetermined internal pressure. The internal pressure acts on the ink to retain the ink in the channel, so that the ink is prevented from flowing along the channel and through the orifice. A one-way valve is in communication with the interior of the enclosure for ingress of a pressurizing medium into the interior of the enclosure, while avoiding reverse flow through the valve in order to allow sustained pressurization of the enclosure. Moreover, a support frame disposed in the enclosure may be provided, the frame defining a well sized to matingly receive the printhead body for constraining movement of the printhead body during transport of the enclosure.
    • 打印头容器和方法。 容器包括围绕打印头主体的外壳,其具有终止于喷嘴孔中的墨水通道。 墨水通道中具有墨水。 外壳能够被加压到预定的内部压力。 内部压力作用在油墨上以将油墨保持在通道中,使得防止油墨沿着通道流过孔口。 单向阀与外壳的内部连通,用于将加压介质进入外壳的内部,同时避免逆流通过阀门,以允许外壳持续加压。 此外,可以设置设置在外壳中的支撑框架,框架限定适当尺寸以匹配地接收打印头主体,用于在运送封闭件期间限制打印头主体的运动。
    • 4. 发明申请
    • Computed radiography system for mammography
    • 计算机X线摄影系统
    • US20090078874A1
    • 2009-03-26
    • US12156300
    • 2008-05-30
    • Stefan SchweizerJacqueline A. JohnsonAnthony R. Lubinsky
    • Stefan SchweizerJacqueline A. JohnsonAnthony R. Lubinsky
    • G01T1/164A61B6/04
    • G01T1/2014G01T1/2012
    • A computed radiography system including a stimulating light source such as a laser, a photostimulable glass imaging plate (PGIP) substantially transparent to the stimulating light positioned such that the stimulating light impinges the PGIP perpendicularly thereto producing photostimulated luminescence light (PLL), a light collector having a light reflecting inner surface proximate the PGIP for collecting PLL emitted from the PGIP and having a hole or slot therein for admitting stimulating light into the light collector and onto the PGIP. An optical filter in communication with the light collector for blocking stimulating light waves and passing PLL therethrough. A light detector receives PLL from the optical filter and the light collector, mechanism providing relative movement between the PGIP and the stimulating light source, and mechanism including an analog to digital converter for converting the collected and detected PLL to a diagnostic readout. The system is particularly useful in mammography.
    • 一种计算机放射摄影系统,包括诸如激光的刺激光源,对刺激光基本上透明的光激光玻璃成像板(PGIP),其被定位成使得刺激光垂直于其激发PGIP产生光刺激的发光光(PLL),光收集器 具有靠近PGIP的光反射内表面,用于收集从PGIP发射的PLL并且在其中具有孔或狭槽,用于将刺激光引入聚光器和PGIP。 与光收集器连通的滤光器,用于阻挡刺激光波并使PLL通过。 光检测器从滤光器和光收集器接收PLL,其提供PGIP和刺激光源之间的相对运动,以及包括用于将收集和检测到的PLL转换为诊断读数的模数转换器的机构。 该系统在乳房X线照相术中特别有用。
    • 5. 发明授权
    • Electrical drive waveform for close drop formation
    • 用于紧密滴落形成的电驱动波形
    • US06450602B1
    • 2002-09-17
    • US09679931
    • 2000-10-05
    • Anthony R. LubinskyDiane C. FreemanSimon D. Yandila
    • Anthony R. LubinskyDiane C. FreemanSimon D. Yandila
    • B41J2938
    • B41J2/04581B41J2/04588B41J25/308
    • An inkjet printing apparatus and method of operating an inkjet printhead provides an inkjet orifice of the printhead that is located within a predetermined spacing of less than 1000 micrometers, and more preferably in a range of 50-500 micrometers for printing high resolution images. Electrical drive signals are provided to the printhead, the drive signals being adapted to enable the printhead to generate a droplet. In response to the drive signals, a free spherical droplet is formed between the orifice and a receiver member and deposits a droplet upon the receiver member substantially without presence of an attached or detached ligament of printing liquid that would otherwise provide an artifact mark on the receiver member.
    • 喷墨打印设备和操作喷墨打印头的方法提供打印头的喷墨孔,其位于小于1000微米的预定间隔内,更优选地在50-500微米的范围内,用于打印高分辨率图像。 电驱动信号被提供给打印头,驱动信号适于使打印头产生液滴。 响应于驱动信号,在孔口和接收器构件之间形成游离的球形液滴,并将液滴沉积在接收器构件上,基本上不存在否则在接收器上提供伪影标记的附着或分离的印刷液体韧带 会员。
    • 7. 发明授权
    • Ink jet printer capable of increasing spatial resolution of a plurality
of marks to be printed thereby and method of assembling the printer
    • 能够增加要印刷的多个标记的空间分辨率的喷墨打印机和组装打印机的方法
    • US6089696A
    • 2000-07-18
    • US188574
    • 1998-11-09
    • Anthony R. Lubinsky
    • Anthony R. Lubinsky
    • B41J2/01B41J2/205B41J2/51B41J2/145B41J2/15B41J23/00B41J29/393
    • B41J25/001B41J25/005B41J2202/14
    • An ink jet printer capable of increasing spatial resolution of a plurality of marks to be printed thereby and method of assembling the printer. The printer comprises a print head body having a nozzle block including a plurality of adjacent ink channels of predetermined pitch "P" for printing an image on a receiver. The nozzle block is slidably disposed in the print head body and thus is movable relative to the print head body. A displacement mechanism is connected to the nozzle block for slidably moving the nozzle block a predetermined distance "P.sub.1 " less than pitch P. Before the nozzle block is moved, the channels are enabled in order to eject ink droplets which have pitch P for defining a first spatial resolution of the marks on the receiver. The displacement mechanism then moves the nozzle block the predetermined distance P.sub.1 to a second position. The channels are again enabled while the nozzle block is in this second position. Additional marks are then formed intermediate the marks formed when the nozzle block was in its first position. All the marks formed on the receiver now define a second spatial resolution greater than the first spatial resolution of the marks, so that the image has increased spatial resolution.
    • 能够提高要印刷的多个标记的空间分辨率的喷墨打印机以及组装打印机的方法。 打印机包括具有喷嘴块的打印头本体,该喷嘴块包括用于在接收器上打印图像的预定间距“P”的多个相邻油墨通道。 喷嘴块可滑动地设置在打印头本体中,因此可相对于打印头本体移动。 位移机构连接到喷嘴块,用于使喷嘴块可滑动地移动小于间距P的预定距离“P1”。在喷嘴块移动之前,通道被启用以喷射具有间距P的墨滴,用于限定 接收机上标记的第一个空间分辨率。 位移机构然后将喷嘴块移动到预定距离P1到第二位置。 在喷嘴块处于该第二位置时,通道再次启用。 然后在喷嘴块处于其第一位置时形成的标记之间形成附加标记。 接收器上形成的所有标记现在定义大于标记的第一空间分辨率的第二空间分辨率,使得图像具有增加的空间分辨率。
    • 10. 发明授权
    • Apparatus and method for maintaining a substantially constant closely spaced working distance between an inkjet printhead and a printing receiver
    • US06561607B1
    • 2003-05-13
    • US09680378
    • 2000-10-05
    • Anthony R. LubinskySimon D. YandilaDiane C. Freeman
    • Anthony R. LubinskySimon D. YandilaDiane C. Freeman
    • B41J25308
    • B41J25/3086B41J25/308
    • The present invention resides in an apparatus (8) and method for maintaining a print head (10) at a substantially constant, closely spaced working distance (22) from a surface (17) of a printing receiver (16) during relative translational movement between the print head (10) and the receiver (16) along a predetermined path of movement for depositing liquid or ink droplets (12) onto the surface (17), the apparatus (8) including an actuator (20) connected to the print head (10) and controllably actuable for moving the print head (10) toward and away from the receiver (16), an element (35,36) for detecting a representative distance between the print head (10) and locations on the surface (17) of the receiver (16) along the path of movement and generating a signal having a value representative of or related to the representative distance, an element (46) for comparing the signal value to a reference; value representative of the working distance (22) for determining a difference between the signal value and the reference value and generating a control signal representative of the difference, and a control element (24) for receiving the control signal and responsively controllably actuating the actuator (20) to move the print head (10) toward or away from the receiver (16) to locate the print head (10) at the working distance (22) from the locations on the surface (17) of the receiver (16) when the print head (10) is positioned for depositing the liquid or ink droplets thereon. The method of the present invention includes the steps of (a) generating signals representative of distances between the print head (10) and the locations on the surface (17) of the receiver (16) along the path of movement prior to the print head (10) being positioned for depositing liquid or ink droplets onto the locations on the surface (17), respectively; and (b) responsively to the signals, as required, moving the print head (10) toward or away from the receiver (16) to locate the print head (10) at substantially the closely spaced working distance (22) from the locations on the surface (17) of the receiver (16) when positioned for depositing the liquid or ink droplets thereon, respectively.