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    • 2. 发明申请
    • SHEET TURNAROUND ASSEMBLY
    • 表格组合
    • US20090051975A1
    • 2009-02-26
    • US11843880
    • 2007-08-23
    • Curt A. WiensThomas Brace
    • Curt A. WiensThomas Brace
    • H04N1/21B65H5/02
    • H04N1/0057B65H29/12B65H2301/33214B65H2301/44314B65H2701/1719H04N1/00596H04N1/00602H04N1/0061H04N1/00615H04N1/00641
    • A sheet turnaround assembly including a drive shaft positioned laterally across a transport path from a processing system, a plurality of drive wheels axially coupled to and positioned in a spaced fashion along the drive shaft, and a plurality of continuous belts, one belt corresponding to each drive wheel. Each belt is positioned so that its outside surface is tensioned against and forms a desired wrap angle about the corresponding drive wheel to create an arcuate turnaround path there between extending between input and output nips formed by initial and final points of contact between the belt and the drive wheel. The sheet turnaround is configured to receive a thermally developed sheet of photothermographic imaging media from a thermal processor at the input nip via the transport path. Rotation of the drive wheels by the drive shaft causes the outside surface of each belt to run along the corresponding drive wheel and drive the developed sheet along and expel the developed sheet from the turnaround path at the output nip to an output device after turning the developed sheet from the transport path by an angle substantially equal to the wrap angle.
    • 一种片材周转组件,包括一个驱动轴,该驱动轴横向于从处理系统的传送路径横向定位,多个驱动轮轴向地联接到驱动轴上并以其间隔开的方式定位,以及多个连续的带,一个带对应于每个 驱动轮 每个带被定位成使得其外表面被张紧并围绕相应的驱动轮形成期望的包角,以在其之间形成弓形转向路径,在其之间延伸,在输入和输出压区之间,由输送和输出压区之间的初始和最终接触点形成 驱动轮 片材周转被配置为经由传送路径从输入压区的热处理器接收热显影的光热成像介质片。 通过驱动轴的驱动轮的旋转使得每个带的外表面沿着相应的驱动轮行进并且驱动展开的片材并将展开的片材从输出压区处的转向路径排出到输出装置,在转动发达的 片材从传送路径开始大致等于包角的角度。
    • 3. 发明授权
    • Thermal recording system employing adjustable head pressure
    • 热敏记录系统采用可调头压力
    • US07355613B2
    • 2008-04-08
    • US11196181
    • 2005-08-03
    • Curt A. Wiens
    • Curt A. Wiens
    • B41J2/32
    • B41J2/32B41J25/312B41J25/316B41J2202/31
    • An imaging apparatus (30) for thermally recording images on an imaging media (44) including a printhead (32) having an array of individually energizeable heating elements (42), a rotatable drum (34) for conveying imaging media (44) past the array of heating elements (42), and an anchor element (36) moveable within a range of positions. A biasing mechanism (38) is positioned between printhead (32) and anchor element (36) and is configured to provide a biasing force to hold at least a portion of the array of heating elements (42) against rotatable drum (34), wherein a magnitude of the biasing force is based on the position of anchor element (36). An actuator system (40) is configured to adjust the position of the anchor element (36) within the range of positions so as to adjust the magnitude of the biasing force over a range of values.
    • 一种用于在成像介质(44)上热像记录图像的成像设备(30),该成像介质包括具有单独可加热加热元件阵列的打印头(32),用于将成像介质(44)传送通过所述可旋转滚筒 加热元件阵列(42)和可在位置范围内移动的锚固元件(36)。 偏置机构(38)定位在打印头(32)和锚固元件(36)之间,并且构造成提供偏压力以将加热元件阵列(42)的至少一部分保持在可旋转滚筒(34)上,其中 偏置力的大小基于锚固元件(36)的位置。 致动器系统(40)被配置为在锚定元件(36)的位置范围内调节位置,以便在一定范围的值范围内调节偏置力的大小。
    • 4. 发明授权
    • Thermal recording system and method
    • 热记录系统及方法
    • US07319473B2
    • 2008-01-15
    • US11315106
    • 2005-12-22
    • Curt A. Wiens
    • Curt A. Wiens
    • B41J2/355
    • B41J2/355
    • A recording apparatus includes a plurality of thermal elements, a strobe generator, and a data sequencer. The strobe generator provides a strobe signal comprising a sequence of N pulses, each pulse having a same period, the sequence including a first group of pulses having an active state for a first duration a second group of pulses having an active state for a second duration, wherein each pulse of the second group is positioned next to a pulse of the first group such their active states combine form a continuous active state. The data sequencer provides an N-bit data sequence representative of a gradation level to each thermal element, each bit corresponding to one of the N pulses, wherein the N bits have active states such that whenever the corresponding gradation level is within a predetermined range and whenever a bit corresponding to a pulse of the second group has an active state the bit corresponding to adjacent pulse of the first group has an active state, wherein each thermal element generates heat based on the strobe signal and the corresponding N-bit sequence.
    • 记录装置包括多个热元件,闪光发生器和数据定序器。 选通发生器提供包括N个脉冲序列的选通信号,每个脉冲具有相同的周期,该序列包括具有第一持续时间的活动状态的第一组脉冲,具有第二持续时间的活动状态的第二组脉冲 ,其中所述第二组的每个脉冲位于所述第一组的脉冲之后,使得所述第二组的活动状态组合形成连续的活动状态。 数据定序器提供表示每个热元件的灰度级的N位数据序列,每个位对应于N个脉冲中的一个,其中N位具有有效状态,使得每当相应的灰度级在预定范围内时, 每当对应于第二组的脉冲的位具有活动状态时,与第一组的相邻脉冲相对应的位具有活动状态,其中每个热元件基于选通信号和相应的N位序列产生热量。
    • 6. 发明申请
    • THERMAL PROCESSOR EMPLOYING A TEMPERATURE COMPENSATION SYSTEM
    • 采用温度补偿系统的热处理器
    • US20110091822A1
    • 2011-04-21
    • US09144927
    • 2007-03-12
    • JOHN R. SCUFSADAVID J. MCDANIELCURT A. WIENS
    • JOHN R. SCUFSADAVID J. MCDANIELCURT A. WIENS
    • G03C5/00G03B15/00
    • G03C1/49881G03B15/00
    • A thermal processor for use in developing an image in an imaging material which is transported along a transport path through the thermal processor. The thermal processor includes a preheat assembly for preheating the thermally processable material to the threshold temperature. The preheat assembly includes a heated member having a major surface facing the thermally processable material. A dwell assembly is provided for thermal development of the image in the thermally processable material. Means are provided for moving the thermally processable material along the transport path through the preheat assembly and the dwell assembly including a roller assembly which contacts the thermally processable material. The roller assembly includes rollers positioned between the heated member and the thermally processable material. Means are provided for reducing optical density loss in the thermally processable material, including means for selectively changing the temperature of the heated member as the thermally processable material moves along the transport path.
    • 一种用于显影成像材料中的图像的热处理器,其通过热处理器沿输送路径输送。 热处理器包括用于将可热加工材料预热到阈值温度的预热组件。 预热组件包括具有面向可热加工材料的主表面的加热构件。 提供驻留组件用于热可加热材料中的图像的热显影。 提供了用于使热可加工材料沿着传送路径移动通过预热组件和驻留组件的装置,该组合组件包括接触可热加工材料的辊组件。 辊组件包括定位在加热构件和可热加工材料之间的辊。 提供了用于减少可热加工材料中的光密度损失的装置,包括用于当可热加工材料沿着输送路径移动时选择性地改变加热构件的温度的装置。
    • 8. 发明授权
    • Apparatus for cooling a thermally processed material
    • 用于冷却热处理材料的装置
    • US6116794A
    • 2000-09-12
    • US144382
    • 1998-08-31
    • Graham F. NelsonCurt A. Wiens
    • Graham F. NelsonCurt A. Wiens
    • G03D13/00G03D7/00
    • G03D13/002
    • Disclosed is an apparatus for cooling a thermally processed, imaging material which has been heated to a first temperature by a thermal processor. The cooling apparatus includes a cooling article, on which the imaging material rides after the imaging material exits the thermal processor, and an imaging material transport mechanism. The cooling article is at a lower temperature than the first temperature to cool the imaging material. The transport mechanism conveys the imaging material over the cooling article. The transport mechanism operates at a rate of speed that is faster than an operational rate of speed of an imaging material conveyance device of the thermal processor. This speed differential allows the transport mechanism to apply tension to the imaging material as the imaging material passes over the cooling article to minimize imaging material defects during cooling.
    • 公开了一种用于冷却通过热处理器被加热到​​第一温度的热处理的成像材料的设备。 冷却装置包括:成像材料在成像材料离开热处理器之后乘坐的冷却物品,以及成像材料输送机构。 冷却制品处于比第一温度低的温度以冷却成像材料。 运输机构将成像材料传送到冷却制品上。 输送机构以比热处理器的成像材料输送装置的运转速度快的速度进行运转。 该速度差异允许传送机构在成像材料通过冷却物品时对成像材料施加张力,以使冷却期间的成像材料缺陷最小化。