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High-Speed Transmission and Mass Data Storage Solutions for Large-Area and Arbitrarily Structured Fabrication through Maskless Lithography

机译:大面积的高速传输和质量数据存储解决方案,通过掩模光刻进行任意结构化制造

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摘要

This paper presents the implementation aspects and design of high-speed data transmission in laser direct-writing lithography. With a single field programmable gate array (FPGA) chip, mass data storage management, transmission, and synchronization of each part in real-time were implemented. To store a massive amount of data and transmit data with high bandwidth, a serial advanced technology attachment (SATA) intellectual property (IP) was developed on Xilinx Virtex-6 FPGA. In addition, control of laser beam power, collection of status read back data of the lithography laser through an analog-to-digital converter, and synchronization of the positioning signal were implemented on the same FPGA. A data structure for each unit with a unique exposure dose and other necessary information was established. Results showed that the maximum read bandwidth (240 MB/s) and maximum write bandwidth (200 MB/s) of a single solid-state drive conform to the data transmission requirement. The total amount of data meets the requirement of a large-area diffractive element approximately 102 cm2. The throughput has been greatly improved at meters per second or square centimeter per second. And test results showed that data transmission meets the requirement of the experiment.
机译:本文介绍了激光直接写入光刻中的高速数据传输的实现方面和设计。利用单场可编程门阵列(FPGA)芯片,实现实时每个部件的质量数据存储管理,传输和同步。为了存储具有高带宽的大量数据和传输数据,在Xilinx Virtex-6 FPGA上开发了串行高级技术附件(SATA)知识产权(IP)。另外,控制激光束功率,通过模数转换器的状态读取数据的读取数据,并在相同的FPGA上实现定位信号的同步。建立了具有唯一曝光剂量和其他必要信息的每个单元的数据结构。结果表明,最大读带宽(240 MB / s)和单个固态驱动器的最大写入带宽(200 MB / s)符合数据传输要求。数据总量符合大面积衍射元件约102cm2的要求。吞吐量以每秒或平方厘米每秒大大提高。测试结果表明,数据传输符合实验的要求。

著录项

  • 作者

    Yu Lu; Wei Wu; Ke-yi Wang;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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