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Dynamic Ink-Jet Printing Analysis System with Addressable Waveform Trimming

机译:具有可寻址波形修剪的动态喷墨打印分析系统

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Definitely the ink-jet fabrication is an expectable technology for the fields of display and semiconductors, such like for the fabrication of color filters, the forming of metal circuits, the dispensing of liquid crystal, and for the further continuous manufacture of flexible displays etc. Recently, inkjet printing technologies have been rapidly developing and are not only for the diminished size of the drops to the pico-liter, the multiplex driving scheme, or for the real-time observation technology which led to the improvement of the inkjet printing performance, and which realized the pixel-to-pixel control. In this article, an electrical controller is designed to differentiate the waveform for each nozzle synchronously, to compensate for the nozzle cell deformation and pressure drag loss during inkjet firing at high voltage, and for a high frequency named addressable waveform trimming circuit (AWTC). The controller is composed of a high voltage control block which drives each nozzle, an FPGA chip to multiplex the high voltage output, an A/D converter which transfers an analog signal into a digital signal and then into FPGA, a differential signal input to FPGA as feedback to correct analog output, which gives a real-time tracking of jetting quality to verify the nozzle-to-nozzle variation. For dynamic feedback of the drop variation in real jetting, this A WTC accepts correction signals by a machine vision system synchronously with the firing trigger in order to analyze the individual captured images. The maximum support nozzle channel is up to 1280 and can be handled within a 2% jetting accuracy.
机译:绝对喷墨制造是可预期的技术用于显示和半导体的领域中,例如像的彩色滤光片的制造中,金属电路的形成中,液晶的分配,和用于所述另外的连续制造柔性显示器等的最近,喷墨印刷技术得到了迅速发展,不仅对滴至微微升的减少尺寸,多重驱动方案,或用于实时观测技术而导致喷墨打印性能的提高,并且实现了像素到像素控制。在本文中,电控制器被设计成区分用于每个喷嘴同步的波形,以补偿喷墨期间喷头细胞变形和压力的阻力损失,在高电压点火,以及用于高频名为寻址波形微调电路(AWTC)。所述控制器被构成,其驱动每个喷嘴,一个FPGA芯片复用高电压输出,高电压控制块的A / d转换器,其将模拟信号传送到一个数字信号,然后到FPGA中,输入到FPGA的差分信号作为反馈以正确的模拟输出,它给出了一个实时的喷射质量来验证的喷嘴到喷嘴的变化进行跟踪。用于实时喷射液滴的变化动态反馈,这方面的一个WTC通过与击发扳机机器视觉系统同步,以分析各个拍摄的图像接受校正信号。最大支持喷嘴通道是高达1280,并且可以在2%喷射精度范围内进行处理。

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