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Investigation of CMOS Multiplexer Jet Matrix Addressing and Micro-Droplets within a Printhead Chip

机译:打印头芯片内CMOS多路复用器射流矩阵寻址和微液滴的研究

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摘要

In this study, we demonstrate and investigate a new droplet injection design. We create a thermal inkjet (TIJ) printhead using an application-specific integrated circuit system and bulk micromachining technology (microelectromechanical systems). We design inkjet printhead chips with a new structure and investigate their properties. For the new structure, the integration of complementary metal-oxide-semiconductors (MOSs) and enhancement-mode devices, as well as power switches and a TIJ heater transducer, enables logic functions to be executed on-chip. This capability is used in the proposed design to address individual jets with even fewer input lines than in matrix addressing. A high number of jets (at least 896) can be addressed with only 11 input lines. E1 (Enable 1) and E2 (Enable 2) are set up dependently, and they have the ability to reverse their signals in relation to each other (i.e., if E1 is disabled, E2 is enabled and vice versa). The E1 and E2 signals each service 448 jets. If one of the MOSs is turned on, then it corresponds to a power line with a similar function. If an addressing gate terminal of the other MOS has a discharge action, then we can control a different heater to generate heating bubbles in the jet inks. The operating frequency for addressing these measurements is 18 kHz in normal mode, 26 kHz in draft mode, and 16 kHz in best mode.
机译:在这项研究中,我们演示并研究了一种新的液滴注入设计。我们使用专用集成电路系统和批量微机械加工技术(微机电系统)创建热喷墨(TIJ)打印头。我们设计具有新结构的喷墨打印头芯片,并研究其性能。对于新结构,互补金属氧化物半导体(MOS)和增强模式器件以及电源开关和TIJ加热器传感器的集成使逻辑功能可以在芯片上执行。此功能在建议的设计中用于以比矩阵寻址更少的输入线来寻址单个喷嘴。仅11条输入线即可解决大量喷头(至少896个)。 E1(启用1)和E2(启用2)是独立设置的,并且它们具有使彼此的信号反向的能力(即,如果E1被禁用,则E2被启用,反之亦然)。 E1和E2用信号通知每个服务448架飞机。如果其中一个MOS导通,则它对应于功能相似的电源线。如果另一个MOS的寻址栅极端子具有放电作用,则我们可以控制其他加热器以在喷墨油墨中产生加热气泡。处理这些测量的工作频率在正常模式下为18 kHz,在草稿模式下为26 kHz,在最佳模式下为16 kHz。

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