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    • 43. 发明申请
    • DYNAMIC PHASE SHIFTS TO IMPROVE STREAM PRINT
    • 动态相移以改进流水印
    • US20110109677A1
    • 2011-05-12
    • US12613683
    • 2009-11-06
    • Kim W. MontzTodd R. GriffinDavid L. JeanmaireRobert Link
    • Kim W. MontzTodd R. GriffinDavid L. JeanmaireRobert Link
    • B41J29/38
    • B41J2/03B41J2002/022B41J2002/031B41J2002/033
    • A method of forming print drops includes forming drops of a first size by applying drop forming energy pulses during a unit time period, τ0; forming drops of a second size by applying drop forming energy pulses during a second drop time period, τm, wherein the second drop time period is a multiple, m, of the unit time period, τm=m*τ0, m≧2; providing timing between drops for printing consecutive pixels is τi=a*τ0 where a is an integer≧m; forming non-print drops and print drops according to the liquid pattern data; delaying the timing of the pulses for the drop forming energy pulses sent to the drop forming transducers of group number g relative to the drop forming energy pulses sent to the transducers of a first group by a delay time τL, where τL=g*(INT(a/n)+1/n)*τ0+τb where g is an integer
    • 形成印刷液滴的方法包括通过在单位时间段τ0期间施加液滴形成能量脉冲来形成第一尺寸的液滴; 通过在第二下降时间段τm期间施加液滴形成能量脉冲来形成第二尺寸的液滴,其中第二液滴时间周期是单位时间周期的倍数,mm =τ*,τ,m≥2; 提供用于打印连续像素的液滴之间的定时是τi= a *τ0,其中a是≧m的整数; 根据液体图案数据形成非印刷液滴和印刷液滴; 延迟发送到组数g的液滴形成换能器的液滴形成能量脉冲的定时相对于发送到第一组的换能器的下降形成能量脉冲延迟时间τL,其中τL= g *(INT (a / n)+ 1 / n)*τ0+τb其中g是整数
    • 45. 发明授权
    • Continuous ink-jet printing apparatus with integral cleaning
    • 连续喷墨打印设备,整体清洁
    • US06899410B2
    • 2005-05-31
    • US10606106
    • 2003-06-25
    • David L. Jeanmaire
    • David L. Jeanmaire
    • B41J2/165B41J2/03B41J2/07B41J2/18B41J2/185B41J2/15
    • B41J2/16552B41J2/03B41J2/07B41J2/185B41J2002/022B41J2002/031B41J2002/033B41J2202/16
    • An ink jet printing apparatus having a cleaning station that is structurally integrated with a droplet deflector is provided. The apparatus includes an ink droplet forming mechanism formed from a printhead having at least one nozzle for ejecting a stream of ink droplets of different volumes, a pneumatic droplet deflector for producing a flow of gas that transversely impinges the droplet stream of the printhead in order to separate ink droplets of different volumes from one another. The droplet deflector includes a pressurized gas source, which may be an air blower, and a plenum for conducting the gas flow generated by the gas source. The cleaning station is formed at least in part from the plenum of the droplet deflector, and provides a flow of both a liquid cleaning fluid and a flow of gas to periodically clean the printhead of the ink droplet forming mechanism.
    • 提供一种具有与液滴偏转器结构整合的清洁台的喷墨打印设备。 该装置包括由打印头形成的墨滴形成机构,该打印头具有用于喷射不同体积的墨滴流的至少一个喷嘴,气动液滴偏转器,用于产生横向冲击打印头的液滴流的气体流,以便 分开不同体积的墨滴彼此分开。 液滴偏转器包括可以是鼓风机的加压气体源和用于传导由气体源产生的气流的增压室。 清洁站至少部分地由液滴偏转器的气室形成,并且提供液体清洁流体和气流两者的流动,以周期性地清洁墨滴形成机构的打印头。
    • 46. 发明授权
    • Continuous ink-jet printing apparatus with pre-conditioned air flow
    • 具有预调节气流的连续喷墨打印设备
    • US06588889B2
    • 2003-07-08
    • US09906489
    • 2001-07-16
    • David L. Jeanmaire
    • David L. Jeanmaire
    • B41J202
    • B41J2/07B41J2/03B41J2002/022B41J2002/031B41J2002/033B41J2202/16
    • A continuous stream ink jet printer is provided having an ink droplet forming mechanism for ejecting a stream of ink droplets having a selected one of at least two different volumes toward a print medium, a droplet deflector for producing a flow of gas that interacts with the ink droplet stream to separate droplets having different volumes, and a gas flow conditioner for preconditioning the gas flow produced by the deflector with a solvent vapor. The provision of a solvent vapor in the gas flow prevents or at least reduces changes in ink viscosity which could otherwise interfere with the recycling and filtering of ink droplets captured by the gutter of the printer.
    • 提供连续流式喷墨打印机,其具有墨滴形成机构,用于将具有至少两种不同体积中的选定的一个的墨滴流朝向打印介质喷射;液滴偏转器,用于产生与墨水相互作用的气流 液滴流以分离具有不同体积的液滴;以及气体流动调节器,用于用溶剂蒸汽预处理由偏转器产生的气流。 在气流中提供溶剂蒸气防止或至少减少油墨粘度的变化,否则可能会干扰由打印机的槽排出的墨滴的再循环和过滤。
    • 47. 发明授权
    • Assemblage and Process for thermal dye transfer
    • 热染料转移的组合和工艺
    • US5866506A
    • 1999-02-02
    • US882507
    • 1997-06-25
    • Lee W. TuttDavid L. Jeanmaire
    • Lee W. TuttDavid L. Jeanmaire
    • B41M5/34B41M5/48B41M5/035B41M5/38
    • B41M5/48B41M5/345
    • This invention relates to a thermal dye transfer assemblage comprising:I) a dye-donor element comprising a support having thereon a set of sequential repeating dye patches of two subtractive primary color image dyes dispersed in a polymeric binder; andII) a dye-receiving element comprising a support having thereon in order:a) a layer comprising a heat-sensitive, dye-forming precursor of a third, complementary, subtractive primary color image dye dispersed in a polymeric binder, the dye-forming precursor being capable of forming the third, complementary, subtractive primary color image dye at a temperature which is higher than the temperature used to transfer the other two subtractive primary color image dyes; andb) a dye image-receiving layer; the dye-receiving element being in superposed relationship with the dye-donor element so that the dye layer is in contact with the dye image-receiving layer.
    • 本发明涉及一种热染料转移组合物,其包括:I)染料供体元件,其包含其上具有分散在聚合物粘合剂中的两组减色原色图像染料的顺序重复染色剂片的载体; 和II)染料接收元件,其包含其上依次具有的载体:a)包含分散在聚合物粘合剂中的第三种互补的减色原色图像染料的热敏染料形成前体的层, 其形成前体能够在高于用于转移另外两种减色原色图像染料的温度的温度下形成第三互补的减色原色图像染料; 和b)染料影像接收层; 染料接收元件与染料供体元件重叠关系,使得染料层与染料影像接收层接触。
    • 48. 发明授权
    • Dynamic phase shifts to improve stream print
    • 动态相移以改善流打印
    • US08226217B2
    • 2012-07-24
    • US12613683
    • 2009-11-06
    • Kim W. MontzTodd R. GriffinDavid L. JeanmaireRobert Link
    • Kim W. MontzTodd R. GriffinDavid L. JeanmaireRobert Link
    • B41J2/07B41J29/38B41J2/15B41J2/12
    • B41J2/03B41J2002/022B41J2002/031B41J2002/033
    • A method of forming print drops includes forming drops of a first size by applying drop forming energy pulses during a unit time period, τ0; forming drops of a second size by applying drop forming energy pulses during a second drop time period, τm, wherein the second drop time period is a multiple, m, of the unit time period, τm=m*τ0, m≧2; providing timing between drops for printing consecutive pixels is τi=a*τ0 where a is an integer≧m; forming non-print drops and print drops according to the liquid pattern data; delaying the timing of the pulses for the drop forming energy pulses sent to the drop forming transducers of group number g relative to the drop forming energy pulses sent to the transducers of a first group by a delay time τL, where τL=g*(INT(a/n)+1/n)*τ0+τb where g is an integer
    • 形成印刷液滴的方法包括通过在单位时间段τ0期间施加液滴形成能量脉冲来形成第一尺寸的液滴; 通过在第二下降时间段τm期间施加液滴形成能量脉冲来形成第二尺寸的液滴,其中第二液滴时间周期是单位时间周期的倍数,mm =τ*,τ,m≥2; 提供用于打印连续像素的液滴之间的定时是τi= a *τ0,其中a是≧m的整数; 根据液体图案数据形成非印刷液滴和印刷液滴; 延迟发送到组数g的液滴形成换能器的液滴形成能量脉冲的定时相对于发送到第一组的换能器的下降形成能量脉冲延迟时间τL,其中τL= g *(INT (a / n)+ 1 / n)*τ0+τb其中g是整数
    • 49. 发明申请
    • PHASE SHIFTS FOR TWO GROUPS OF NOZZLES
    • 两组喷嘴的相变
    • US20110109705A1
    • 2011-05-12
    • US12613712
    • 2009-11-06
    • Kim W. MontzTodd R. GriffinDavid L. JeanmaireRobert Link
    • Kim W. MontzTodd R. GriffinDavid L. JeanmaireRobert Link
    • B41J2/02
    • B41J2/03B41J2/04573B41J2/07B41J2002/022B41J2002/031
    • A method includes forming drops of first size by applying drop-forming pulses during unit time period, τ0; forming drops of second size by applying drop-forming pulses during second size drop time period, τm, wherein the second sized drop time period is a multiple, m, of the unit time period, τm=m*τ0, and m≧2; providing timing between drops for printing consecutive pixels is equal to τi=a*τ0 where a is an integer≧m and is a function of print media speed; forming the corresponding plurality of drop forming pulse sequences so as to form non-print drops and print drops according to the liquid pattern data; delaying the timing of the drop forming pulses sent to the transducers of the second group relative to the drop forming pulses sent to the transducers of the first group by a delay time τL which is approximately equal to τi/2.
    • 一种方法包括通过在单位时间段τ0期间施加液滴形成脉冲来形成第一尺寸的液滴; 通过在第二尺寸下降时间段τm期间施加液滴形成脉冲来形成第二尺寸的液滴,其中第二大小的下降时间周期是单位时间周期的倍数,m,mm,τ0和m≥2; 提供用于打印连续像素的液滴之间的定时等于τi= a *τ0,其中a是≧m的整数,并且是打印介质速度的函数; 形成相应的多个液滴形成脉冲序列,以便根据液体图案数据形成非印刷液滴和印刷液滴; 将发送到第二组的换能器的液滴形成脉冲的定时相对于发送到第一组的换能器的液滴形成脉冲延迟大约等于τi/ 2的延迟时间τL。