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    • 6. 发明授权
    • Apparatus and method for non-contact manipulation, conditioning, shaping and drying of surfaces
    • 用于非接触操作,调理,成形和干燥表面的装置和方法
    • US09272301B2
    • 2016-03-01
    • US13782910
    • 2013-03-01
    • S. Dana Seccombe
    • S. Dana Seccombe
    • B41J2/01B05C5/02B41J3/60B41J11/00B41J11/06
    • B05C5/0208B41J3/60B41J11/002B41J11/0085B41J11/06
    • Non-contact method and apparatus for Drying, Conditioning, Shaping and Manipulating of sheet fed Media. These functions are performed either on one side, or simultaneously or delayed one from the other on both sides, of the Media. For Drying, the energy applied is minimized to that necessary to supply latent heat of vaporization permitting use in, for example, low cost printers. No friction is introduced in the transport path enabling high speed, reliable Media transport. A region is established between Media and Platen wherein heat, support, and chemical or other processing may occur in a controlled way. Relatively few, inexpensive, and small parts are needed lowering the cost, energy, and space requirements for performing the various functions allowing for new applications in many fields. Media is supported a specific distance from a Platen by a balance of Fluid forces. The Media and the Platen bound a region in which forced convection greatly enhances process rates otherwise be limited by diffusion. The method and apparatus described is particularly suitable for high speed, low cost, inkjet printing.
    • 用于干燥,调理,成型和操作片材进料介质的非接触方法和装置。 这些功能可以在一侧进行,也可以同时进行,也可以在两侧从另一侧执行。 对于干燥,所施加的能量被最小化为提供允许在例如低成本打印机中使用的蒸发潜热所必需的能量。 传输路径中没有引入摩擦,可实现高速度,可靠的介质传输。 介质和压板之间建立一个区域,其中热,支撑和化学或其他处理可能以受控的方式发生。 相对较少的,便宜的和小的部件需要降低成本,能量和空间要求,以执行允许许多领域的新应用的各种功能。 媒体通过流体力量的平衡支撑与平台的距离。 媒体和稿台界定了强制对流极大地提高了处理速度的区域,否则受扩散的限制。 所描述的方法和装置特别适用于高速,低成本,喷墨印刷。
    • 7. 发明申请
    • Apparatus and method for non-contact manipulation, conditioning, shaping and drying of surfaces
    • 用于非接触操作,调理,成形和干燥表面的装置和方法
    • US20140245950A1
    • 2014-09-04
    • US13782910
    • 2013-03-01
    • S. Dana Seccombe
    • S. Dana Seccombe
    • B05C5/02
    • B05C5/0208B41J3/60B41J11/002B41J11/0085B41J11/06
    • Non-contact method and apparatus for Drying, Conditioning, Shaping and Manipulating of sheet fed Media. These functions are performed either on one side, or simultaneously or delayed one from the other on both sides, of the Media. For Drying, the energy applied is minimized to that necessary to supply latent heat of vaporization permitting use in, for example, low cost printers. No friction is introduced in the transport path enabling high speed, reliable Media transport. A region is established between Media and Platen wherein heat, support, and chemical or other processing may occur in a controlled way. Relatively few, inexpensive, and small parts are needed lowering the cost, energy, and space requirements for performing the various functions allowing for new applications in many fields. Media is supported a specific distance from a Platen by a balance of Fluid forces. The Media and the Platen bound a region in which forced convection greatly enhances process rates otherwise be limited by diffusion. The method and apparatus described is particularly suitable for high speed, low cost, inkjet printing.
    • 用于干燥,调理,成型和操作片材进料介质的非接触方法和装置。 这些功能可以在一侧进行,也可以同时进行,也可以在两侧从另一侧执行。 对于干燥,所施加的能量被最小化为提供允许在例如低成本打印机中使用的蒸发潜热所必需的能量。 传输路径中没有引入摩擦,可实现高速度,可靠的介质传输。 介质和压板之间建立一个区域,其中热,支撑和化学或其他处理可能以受控的方式发生。 相对较少的,便宜的和小的部件需要降低成本,能量和空间要求,以执行允许许多领域的新应用的各种功能。 媒体通过流体力量的平衡支撑与平台的距离。 媒体和稿台界定了强制对流极大地提高了处理速度的区域,否则受扩散的限制。 所描述的方法和装置特别适用于高速,低成本,喷墨印刷。
    • 9. 发明授权
    • Printhead with reduced interconnections to a printer
    • 打印机与打印机互连减少
    • US5541629A
    • 1996-07-30
    • US312489
    • 1994-09-26
    • Michael B. SaundersAndre GarciaS. Dana SeccombeRajeev BabyalJames R. Hulings
    • Michael B. SaundersAndre GarciaS. Dana SeccombeRajeev BabyalJames R. Hulings
    • B41J2/01B41J2/05B41J29/00G06K15/10
    • B41J2/04521B41J2/04541B41J2/04543B41J2/04546B41J2/0458G06K15/10G06K2215/0077
    • The interconnections for transmitting print commands from a printer to a printhead are reduced by the use of on-printhead circuitry. In a basic embodiment, the printhead driver circuitry includes a matrix of drivers controlled by gates, power and control interconnections. Interconnections are reduced by enabling rows and columns of drivers with the power and control interconnections. A multiplexer may also be added to further reduce control interconnections. In an advanced embodiment, the printhead driver circuitry includes a register for converting a serial stream of print enable signals from the printer into a format for applying such signals concurrently to switching devices for one or more heater resistors. An address generator on the printhead generates address signals in response to an address generating signal from the printer. The printer provides constant power to the printhead so that energizing of the heater resistors is a function of the address and print enable signals and not of the power. Variations on the basic and advanced embodiments are also shown and described.
    • 通过使用打印头电路来减少从打印机向打印头传送打印命令的互连。 在基本实施例中,打印头驱动器电路包括由门,功率和控制互连控制的驱动器矩阵。 通过启用功率和控制互连的驱动器行和列来减少互连。 还可以添加多路复用器以进一步减少控制互连。 在高级实施例中,打印头驱动器电路包括用于将来自打印机的打印使能信号的串行流转换为用于同时向一个或多个加热电阻器的切换装置施加这种信号的格式的寄存器。 打印头上的地址发生器响应于来自打印机的地址产生信号而产生地址信号。 打印机为打印头提供恒定的电力,以便加热电阻器的通电是地址和打印使能信号而不是功率的功能。 还显示和描述了基本和高级实施例的变化。