随着电子产品小型化和液晶显示器IC封装技术的快速发展,COF(Chip on Film)技术的应用市场得到了迅速扩大。按照片式减成方法制作的线宽/线距在50μm/50μm以下的精细线路,常常会出现导线过细或断线等缺陷。论文采用目前先进的RTR(Roll t...随着电子产品小型化和液晶显示器IC封装技术的快速发展,COF(Chip on Film)技术的应用市场得到了迅速扩大。按照片式减成方法制作的线宽/线距在50μm/50μm以下的精细线路,常常会出现导线过细或断线等缺陷。论文采用目前先进的RTR(Roll to Roll)生产工艺,选用12μm铜箔、15μm干膜,使用玻璃菲林进行图形转移,并运用正交设计法对影响精细线路品质的曝光能量、显影速度、蚀刻速度、蚀刻压力等因素进行优化试验。以精细线路的线宽和蚀刻系数作为评价标准,找出最佳参数,并分析了蚀刻压力对精细线路的影响机理。将最优化参数应用到生产中,使25μm/25μm的COF精细线路的成品率提高20%。最终实现25μm/25μm的COF精细线路的小批量生产。展开更多
Using directional antennas in Wireless Ad hoc Networks (WANETs) offers great potential of reducing the radio interference, and improving the communication throughput. Directional antennas, however, introduces new prob...Using directional antennas in Wireless Ad hoc Networks (WANETs) offers great potential of reducing the radio interference, and improving the communication throughput. Directional antennas, however, introduces new problems in the wireless Media Access Control (MAC), that is, the deafness and new hidden terminal problem, which may cause severe performance degradation. To solve the problems, we propose an effective Circular RTR Directional MAC (CRDMAC) protocol for WANETs by using a sub-transmission channel and Ready to Receive (RTR) packets, which modifies the IEEE 802.11 Distributed Coordinated Function (DCF). The sub-channel avoids collisions to other ongoing transmission, and the RTR packets notify the neighbor nodes that the mutual transmission has been finished. We evaluate the CRDMAC protocol through simulations and the results show that the proposed protocol outperforms existing DMAC (directional MAC) protocol and the CRCM (Circular RTS and CTS MAC) protocol in terms of throughput and packet drop rate.展开更多
文摘随着电子产品小型化和液晶显示器IC封装技术的快速发展,COF(Chip on Film)技术的应用市场得到了迅速扩大。按照片式减成方法制作的线宽/线距在50μm/50μm以下的精细线路,常常会出现导线过细或断线等缺陷。论文采用目前先进的RTR(Roll to Roll)生产工艺,选用12μm铜箔、15μm干膜,使用玻璃菲林进行图形转移,并运用正交设计法对影响精细线路品质的曝光能量、显影速度、蚀刻速度、蚀刻压力等因素进行优化试验。以精细线路的线宽和蚀刻系数作为评价标准,找出最佳参数,并分析了蚀刻压力对精细线路的影响机理。将最优化参数应用到生产中,使25μm/25μm的COF精细线路的成品率提高20%。最终实现25μm/25μm的COF精细线路的小批量生产。
基金supported by the Grant-in-Aid for Scientific Research of Japan Society for Promotion of Science(JSPS)Collaboration Research Grant of National Institute of Informatics (NII) ,Japan
文摘Using directional antennas in Wireless Ad hoc Networks (WANETs) offers great potential of reducing the radio interference, and improving the communication throughput. Directional antennas, however, introduces new problems in the wireless Media Access Control (MAC), that is, the deafness and new hidden terminal problem, which may cause severe performance degradation. To solve the problems, we propose an effective Circular RTR Directional MAC (CRDMAC) protocol for WANETs by using a sub-transmission channel and Ready to Receive (RTR) packets, which modifies the IEEE 802.11 Distributed Coordinated Function (DCF). The sub-channel avoids collisions to other ongoing transmission, and the RTR packets notify the neighbor nodes that the mutual transmission has been finished. We evaluate the CRDMAC protocol through simulations and the results show that the proposed protocol outperforms existing DMAC (directional MAC) protocol and the CRCM (Circular RTS and CTS MAC) protocol in terms of throughput and packet drop rate.