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    • 1. 发明授权
    • Apparatus and method for forming image with high image resolution from images having various dot densities
    • 从具有各种点密度的图像形成具有高图像分辨率的图像的装置和方法
    • US06417876B1
    • 2002-07-09
    • US09590639
    • 2000-06-08
    • Yoshinori NakajimaTetsuro ToyoshimaTadashi IwamatsuNobuyuki AzumaYoshinori Mutou
    • Yoshinori NakajimaTetsuro ToyoshimaTadashi IwamatsuNobuyuki AzumaYoshinori Mutou
    • G03G1500
    • H04N1/40037
    • A control unit of an image forming apparatus for controlling exposure energy includes a reference image storage unit storing a plurality of reference images, an image recognition unit comparing image information consisting of a plurality of pieces of pixel information with data stored in the reference image storage unit, an exposure energy density storage unit storing an exposure energy density for each reference image stored in the reference image storage unit, an exposure energy density determination unit based on data from the image recognition unit and data in the exposure energy density storage unit an exposure energy density to be applied to a dot position corresponding to each piece of the pixel information, and a laser drive driving a laser of an exposure unit based on data from the exposure energy density determination uni. Accordingly, the image forming apparatus can be provided which exhibits an excellent image reproducibility for images with various dot densities.
    • 用于控制曝光能量的图像形成装置的控制单元包括存储多个参考图像的参考图像存储单元,图像识别单元将由多个像素信息组成的图像信息与存储在参考图像存储单元中的数据进行比较 曝光能量密度存储单元,其存储参考图像存储单元中存储的每个参考图像的曝光能量密度;基于来自图像识别单元的数据和曝光能量密度存储单元中的数据的曝光能量密度确定单元,曝光能量 密度被施加到与每个像素信息相对应的点位置,以及激光驱动器,其基于来自曝光能量密度确定单元的数据驱动曝光单元的激光。 因此,可以提供对于具有各种点密度的图像具有优异的图像再现性的图像形成装置。
    • 10. 发明授权
    • Developing method by flying toner
    • 开发方法通过飞行墨粉
    • US6087056A
    • 2000-07-11
    • US307180
    • 1999-05-07
    • Tetsuro ToyoshimaTadashi IwamatsuNobuyuki AzumaHideaki FujitaTakayuki Yamanaka
    • Tetsuro ToyoshimaTadashi IwamatsuNobuyuki AzumaHideaki FujitaTakayuki Yamanaka
    • G03G9/08G03G13/08G03G15/08G03G15/14
    • G03G13/08G03G9/0819G03G9/0821G03G9/0823
    • A toner which can exhibit 5 nN or less of inter-particle force calculated by the following equation (1) when the toner is laminated and carried on a toner carrier:Fv=q.multidot.E-Fi (1)where Fv is an inter-particle force, q.multidot.E is a Coulomb force calculated by the following equation:q.multidot.E=q.multidot.{Vb+(Q/M).multidot..delta..multidot.P.multidot.dt.sub.1.sup.2 /(2.epsilon.o.epsilon..sub.T)}/(.epsilon..sub.T .multidot.g+dt.sub.1) (2)where Fi is an image-force calculated by the following equation (3):Fi={(W.sub.1 .multidot..pi.d.sup.3 .multidot..delta.)/(6 .epsilon.o .epsilon..sub.T)}.multidot.(Q/M).sup.2 (3)where q is a quantity of charge [C] of the toner particle to be developed, E is an electric field strength [V/m] acting on the toner layer, Q/M is a toner charge-to-mass ratio [mC/g], W.sub.1 is an amount of toner separated by development among the toner laminated and carried on the toner carrier, .epsilon.o is a vacuum dielectric constant [C/(V.multidot.m)], .epsilon..sub.T is an apparent specific dielectric constant [C/(V.multidot.m)] of the toner layer, d is an average particle size [.mu.m] of the toner, .delta. is a true density [g/cm.sup.3 ] of the toner, g is a gap [mm] between the outermost surface of the toner on the toner carrier and the electrostatic latent image holder, dt.sub.1 is a thickness [.mu.m] of the toner layer on the toner carrier, Vb is a development bias voltage [V] and P is a toner packing rate.The present invention provides a toner and a non-contact developing method using the same which realize stable flying-development by suppressing to 5 nN or less the inter-particle force of the toner other than the image-force acting on the toner laminated and carried on the toner carrier.
    • 当调色剂层压并承载在调色剂载体上时,可以通过下列等式(1)计算出5nN或更小的颗粒间力的调色剂:Fv = qxE-Fi(1)其中Fv是颗粒间力 ,qxE是通过以下等式计算的库仑力:qxE = qx {Vb +(Q / M)x delta xPxdt12 /(2 epsilonεT)} /(epsilon Txg + dt1)(2)其中,Fi是图像 - 由下式(3)计算的力:Fi = {(W1x pi d3x delta)/(6 epsilonεT)} x(Q / M)2(3)其中q是电荷量[C] 调色剂颗粒,E是作用在调色剂层上的电场强度[V / m],Q / M是调色剂电荷质量比[mC / g],W1是通过显影分离出的调色剂量 在层压并承载在调色剂载体上的调色剂中,ε是真空介电常数[C /(Vxm)],εT是调色剂层的表观比介电常数[C /(Vxm)],d是平均 调色剂的粒径μ,δ是真密度[g / cm 3] o f是调色剂,g是调色剂载体上的调色剂的最外表面与静电潜像保持体之间的间隙[mm],dt1是调色剂载体上调色剂层的厚度μ,Vb是显影剂 偏压[V]和P是调色剂包装率。 本发明提供一种调色剂和非接触显影方法,其使用该调色剂和非接触显影方法,其通过抑制除了作用在层叠和携带的调色剂上的图像力之外的调色剂的颗粒间的力以5NN以下,实现稳定的飞行显影 在调色剂载体上。