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    • 2. 发明申请
    • Real time detection of ink stick jams in phasing printing systems
    • 在定相打印系统中实时检测墨水棒卡纸
    • US20050146546A1
    • 2005-07-07
    • US10749724
    • 2003-12-30
    • Amin GodilLarry HindmanAmy Thornton
    • Amin GodilLarry HindmanAmy Thornton
    • B41J2/015B41J2/175B41J29/38
    • B41J2/17593
    • A method and system for detecting an ink stick jam in a solid liquid ink phasing delivery system for supplying ink to a printer. The phasing system includes a heater plate disposed to engage a solid ink stick and heat an engaging portion of the ink stick to a liquid phase. A temperature sensing device associated with the heater plate detects the temperature thereof. A control system selectively supplies power to the heater plate. The method comprises supplying a predetermined amount of power through the control system to the heater plate intended to achieve the desired melt rate of the ink stick during a phase change from solid to liquid. The desired melt rate is associated with the predetermined desired temperature of the heater plate. The temperature of the heater plate is sensed with the sensing device during the supply of power thereto. When a sensed temperature of the heater plate varies from the predetermined desired temperature by a selected amount, the supply power is interrupted, whereby heater damage and printer ink starvation can be avoided.
    • 一种用于检测用于向打印机供墨的固体液体墨相位输送系统中的墨卡纸堵塞的方法和系统。 定相系统包括加热板,其设置成接合固体墨棒并将墨棒的接合部分加热到液相。 与加热板相关联的温度检测装置检测其温度。 控制系统选择性地向加热板供电。 该方法包括通过控制系统将预定量的功率供应到加热器板,用于在从固体到液体的相变期间实现墨棒的期望熔体速率。 所需的熔融速率与加热器板的预定期望温度相关联。 在向其供电期间用感测装置感测加热器板的温度。 当感测到的加热板的温度从预定的期望温度变化了一定量时,供电就被中断,从而可以避免加热器损坏和打印机墨水不足。
    • 5. 发明申请
    • Heater assembly including thermal fuse
    • 加热器总成包括热保险丝
    • US20050151817A1
    • 2005-07-14
    • US10754141
    • 2004-01-09
    • Amin GodilLarry Hindman
    • Amin GodilLarry Hindman
    • B41J2/005B41J11/00B41J2/01
    • B41J2/0057B41J11/002
    • A heater assembly heats media substrate in a printing system prior to imprinting a desired image on the substrate. A plate member engages the substrate and communicates thermal energy thereto for the heating. A laminar assembly is adhered to the plate member and includes a trace pattern for converting electrical energy to the thermal energy. A thermal storage member is interposed between the plate member and the trace pattern for distributing thermal energy throughout the thermal storage member. Two thermal fuses are serially connected, one at each end of the trace pattern and disposed relative to the thermal storage member for detecting an undesired temperature increase in the laminar assembly sufficient for opening the fuses and electrically isolating the heater assembly against a consequential thermal run-away causing insulation degradation and an electrical short between the trace pattern and the plate member.
    • 在将期望的图像压印在基板上之前,加热器组件将打印系统中的介质基板加热。 板构件与衬底接合并将热能传递到其上用于加热。 层状组件粘附到板构件并且包括用于将电能转换为热能的迹线图案。 蓄热构件插入在板构件和迹线图案之间,用于在整个蓄热构件中分配热能。 两个热熔丝被串联连接,一个在迹线图案的每一端并且相对于热存储构件设置,用于检测层状组件中不希望的温度升高,足以打开保险丝并将加热器组件电隔离, 导致绝缘劣化和迹线图案和板构件之间的电短路。
    • 6. 发明申请
    • Ink delivery and printing method for phasing printing systems
    • 用于定相打印系统的墨水输送和打印方法
    • US20050140705A1
    • 2005-06-30
    • US10749289
    • 2003-12-30
    • Amin GodilLarry HindmanAmy Thornton
    • Amin GodilLarry HindmanAmy Thornton
    • B41J2/175B41J2/195
    • B41J2/17593B41J2/17566
    • A method and system is provided for more accurately determining ink in-flow and out-flow to a reservoir in a solid-to-liquid ink phasing delivery system for supplying ink to a printer. The printer throughput is safely maximized with a software algorithm that measures the ink available in the printer reservoir for printing. The algorithm is based on the known amount of ink in the reservoir when a level sensor probe is tripped and then calculates additional changes in ink volume. The process is done until the algorithm determines the reservoir volume is below a predetermined minimum level when the level sense probe senses ink. The algorithm calculates the ink leaving the reservoir using an out-flow model based on pixel counting and calculates ink entering the reservoir using an in-flow model based on a minimum guaranteed amount of ink delivered from the melt heater. A time out period is further calculated in which the reservoir should be refilled, and if not, the system is checked for an ink stick jam.
    • 提供了一种方法和系统,用于更准确地确定用于将油墨供应到打印机的固体到液体的墨相移输送系统中的墨水流入和流出到储存器。 打印机吞吐量通过软件算法安全地最大化,该算法可测量打印机存储器中可用于打印的墨水。 当水位传感器探针跳闸时,该算法基于储存器中已知的油墨量,然后计算油墨体积的附加变化。 当液位感测探头感测墨水时,该过程完成,直到算法确定储存器容积低于预定最小水平。 该算法使用基于像素计数的流出模型来计算离开储层的墨水,并且使用基于从熔融加热器输送的最小保证量的油流模型来计算进入储层的油墨。 进一步计算溢出时间,其中储存器应该被重新填充,如果不是,则检查系统是否存在墨卡堵塞。
    • 7. 发明申请
    • Adaptive power control of ink melt heaters for uniform ink melt rate
    • 油墨熔融加热器的自适应功率控制,使油墨熔融率均匀
    • US20050140713A1
    • 2005-06-30
    • US10749723
    • 2003-12-30
    • Amin GodilLarry Hindman
    • Amin GodilLarry Hindman
    • B41J2/175B41J29/38
    • B41J2/17593
    • A method and system for selectively controlling supplied power to an ink melt heater for maintaining a desired ink melt rate despite a varying ambient parameter affecting an actual melt rate. A predetermined amount of power is supplied to the ink melt heater intended to cause the desired ink melt rate. The ambient parameter is detected by the ink melt heater. A determination is made if the detected ambient parameter will cause a variance in the actual ink melt rate from the desired ink melt rate. If a variance is so determined, the supplied power is adjusted from the predetermined amount to an adjusted amount for realizing desired ink melt rate. The ambient parameter preferably comprises sensing a factor representative of at least one of local environmental air temperature to the printing system or adjacent ink temperature to the heat plate.
    • 一种方法和系统,用于选择性地控制向油墨熔融加热器供应的功率,以保持所需的油墨熔融速率,尽管影响实际熔融速率的环境参数变化。 将预定量的功率供给到旨在引起所需油墨熔融速率的油墨熔融加热器。 环境参数由墨水加热器检测。 如果检测到的环境参数会导致实际油墨熔融速率与所需油墨熔融速率的变化,则确定。 如果如此确定方差,则将所提供的功率从预定量调整到调节量,以实现所需的油墨熔化率。 环境参数优选地包括感测代表打印系统的局部环境空气温度或与加热板相邻的油墨温度中的至少一个的因子。