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    • 4. 发明申请
    • PAGE-WIDTH ARRAY PRINTING DEVICE
    • PAGE-WIDTH阵列打印设备
    • US20140055526A1
    • 2014-02-27
    • US13957501
    • 2013-08-02
    • Ta-Wei HsuehYing-Lun ChangHsien-Chung TaiYung-Lung HanChi-Feng Huang
    • Ta-Wei HsuehYing-Lun ChangHsien-Chung TaiYung-Lung HanChi-Feng Huang
    • B41J2/155
    • B41J2/155B41J2/14145B41J2002/14459B41J2202/20
    • A page-width array printing device includes a page-width array printing mechanism including at least one page-width array printing module. The page-width array printing module includes a printing platform, a first page-width array printing unit and a second page-width array printing unit. The first page-width array printing unit includes a plurality of first inkjet cartridges. The second page-width array printing unit includes a plurality of second inkjet cartridges. The first page-width array printing unit and the second page-width array printing unit are in parallel with each other. The first inkjet cartridges and the second inkjet cartridges are staggered and independently and detachably disposed on the printing platform. Each of the first inkjet cartridges and the second inkjet cartridges includes an inkjet chip. The inkjet chip includes four ink supply channels and a plurality of nozzles so as to perform a monochromatic or polychromatic page-width array printing operation.
    • 页宽阵列打印设备包括具有至少一个页宽阵列打印模块的页宽阵列打印机构。 页宽阵列打印模块包括打印平台,第一页宽阵列打印单元和第二页宽阵列打印单元。 第一页宽阵列印刷单元包括多个第一喷墨盒。 第二页宽阵列印刷单元包括多个第二喷墨盒。 第一页宽阵列打印单元和第二页宽阵列打印单元彼此并联。 第一喷墨墨盒和第二喷墨墨盒是交错的并且可独立且可拆卸地设置在打印平台上。 第一喷墨盒和第二喷墨盒中的每一个包括喷墨芯片。 喷墨芯片包括四个供墨通道和多个喷嘴,以执行单色或多色页宽阵列打印操作。
    • 7. 发明申请
    • PRINTING SYSTEM
    • 打印系统
    • US20120081420A1
    • 2012-04-05
    • US13226905
    • 2011-09-07
    • Rong Ho YUWen Hsiung LiaoHsien Chung TaiCheng Ming Chang
    • Rong Ho YUWen Hsiung LiaoHsien Chung TaiCheng Ming Chang
    • B41J2/01
    • G06K15/1894
    • The present invention relates to a printing system, which comprises: a data receiving and processing unit connected with the electronic device, for receiving a printing signal from the electronic device and processing the printing signal into a data signal; and an ink-jet head module including a control chip and an ink-jet heating chip. The control chip includes a wireless transmission module and a control circuit, wherein the wireless transmission module includes an antenna, a front-end processing unit, an instruction unit, a clock transmission unit, and a modulation and demodulation unit. Besides, the control circuit includes a control processing unit, a coding and decoding processing unit, and a memory device, to receive the data signal processed by the wireless transmission module and transform the processed data signal into a control signal. In addition, the ink-jet heating chip is connected with the control circuit for executing the ink-jet printing.
    • 打印系统技术领域本发明涉及一种打印系统,包括:与电子设备连接的数据接收和处理单元,用于从电子设备接收打印信号并将打印信号处理成数据信号; 以及包括控制芯片和喷墨加热芯片的喷墨头模块。 控制芯片包括无线传输模块和控制电路,其中无线传输模块包括天线,前端处理单元,指令单元,时钟传输单元和调制和解调单元。 此外,控制电路包括控制处理单元,编码和解码处理单元以及存储器件,用于接收由无线传输模块处理的数据信号,并将处理的数据信号变换成控制信号。 此外,喷墨加热芯片与用于执行喷墨打印的控制电路连接。
    • 8. 发明授权
    • Page-width array printing device
    • 页宽阵列打印设备
    • US09022525B2
    • 2015-05-05
    • US13957501
    • 2013-08-02
    • Ta-Wei HsuehYing-Lun ChangHsien-Chung TaiYung-Lung HanChi-Feng Huang
    • Ta-Wei HsuehYing-Lun ChangHsien-Chung TaiYung-Lung HanChi-Feng Huang
    • B41J2/155B41J2/14
    • B41J2/155B41J2/14145B41J2002/14459B41J2202/20
    • A page-width array printing device includes a page-width array printing mechanism including at least one page-width array printing module. The page-width array printing module includes a printing platform, a first page-width array printing unit and a second page-width array printing unit. The first page-width array printing unit includes a plurality of first inkjet cartridges. The second page-width array printing unit includes a plurality of second inkjet cartridges. The first page-width array printing unit and the second page-width array printing unit are in parallel with each other. The first inkjet cartridges and the second inkjet cartridges are staggered and independently and detachably disposed on the printing platform. Each of the first inkjet cartridges and the second inkjet cartridges includes an inkjet chip. The inkjet chip includes four ink supply channels and a plurality of nozzles so as to perform a monochromatic or polychromatic page-width array printing operation.
    • 页宽阵列打印设备包括具有至少一个页宽阵列打印模块的页宽阵列打印机构。 页宽阵列打印模块包括打印平台,第一页宽阵列打印单元和第二页宽阵列打印单元。 第一页宽阵列印刷单元包括多个第一喷墨盒。 第二页宽阵列印刷单元包括多个第二喷墨盒。 第一页宽阵列打印单元和第二页宽阵列打印单元彼此并联。 第一喷墨墨盒和第二喷墨墨盒是交错的并且可独立且可拆卸地设置在打印平台上。 第一喷墨盒和第二喷墨盒中的每一个包括喷墨芯片。 喷墨芯片包括四个供墨通道和多个喷嘴,以执行单色或多色页宽阵列打印操作。
    • 10. 发明授权
    • Inkjet head manufacturing method
    • 喷墨头制造方法
    • US08621751B2
    • 2014-01-07
    • US13219386
    • 2011-08-26
    • Chiang-Ho ChengKe-Ming HuangWen-Ti LoHsien-Chung TaiKwo-Yuan Shi
    • Chiang-Ho ChengKe-Ming HuangWen-Ti LoHsien-Chung TaiKwo-Yuan Shi
    • B21D53/76B23P17/00H01L41/22H04R17/00
    • B41J2/1632B41J2/14233B41J2/161
    • An inkjet head manufacturing method includes the following steps. Firstly, a multilayered structure with a plurality of microstructure layers is provided. The alignment check holes of the microstructure layers are concentric and have different diameters. Then, the microstructure layers are stacked together and the microstructure layers are aligned with each other according to the concentric and different-diameter alignment check holes, wherein a dry film layer is sandwiched between every two adjacent microstructure layers. The preset slots of the microstructure layers are collectively defined as inlet flow channels, ink chambers, pressure cavities and outlet flow channels. Then, the multilayered structure is assembled and positioned through the dry film layers by a thermal compression process. Then, a cutting knife is used to linearly cut the actuator plate over a spacer between every two adjacent pressure cavities and along a path parallel with rims of the pressure cavities.
    • 喷墨头制造方法包括以下步骤。 首先,提供具有多个微结构层的多层结构。 微结构层的对准检查孔是同心的,具有不同的直径。 然后,将微结构层堆叠在一起,并且根据同心和不同直径的对准检查孔将微结构层彼此对准,其中干膜层夹在每两个相邻的微结构层之间。 微结构层的预设槽共同定义为入口流动通道,油墨室,压力腔和出口流动通道。 然后,通过热压缩工艺将多层结构组装和定位穿过干膜层。 然后,使用切割刀将致动器板在每两个相邻压力腔之间的间隔件上沿着与压力腔的边缘平行的路径线性切割。