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REBL Nanowriter: Reflective Electron Beam Lithography

机译:REBL Nanowriter:反射电子束光刻

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REBL (Reflective Electron Beam Lithography) is being developed for high throughput electron beam direct write maskless lithography. The system is specifically targeting 5 to 7 wafer levels per hour throughput on average at the 45 nm node, with extendibility to the 32 nm node and beyond. REBL incorporates a number of novel technologies to generate and expose lithographic patterns at estimated throughputs considerably higher than electron beam lithography has been able to achieve as yet. A patented reflective electron optic concept enables the unique approach utilized for the Digital Pattern Generator (DPG). The DPG is a CMOS ASIC chip with an array of small, independently controllable cells or pixels, which act as an array of electron mirrors. In this way, the system is capable of generating the pattern to be written using massively parallel exposure by ~1 million beams at extremely high data rates (~1Tbps). A rotary stage concept using a rotating platen carrying multiple wafers optimizes the writing strategy of the DPG to achieve the capability of high throughput for sparse pattern wafer levels. The exposure method utilized by the DPG was emulated on a Vistec VB-6 in order to validate the gray level exposure method used in REBL. Results of these exposure tests are discussed.
机译:REBL(反射电子束光刻)正在开发用于高通量电子束直接写入掩模光刻。该系统专门针对45nm节点的平均每小时吞吐量为5至7个晶片水平,具有与32nm节点和超出的可扩展性。 REBL包含许多新颖的技术来在估计的吞吐量下产生和暴露光刻图案,比电子束光刻相当高,已经能够实现。获得专利的反射电子视镜概念使得能够用于数字图案发生器(DPG)的独特方法。 DPG是CMOS ASIC芯片,其阵列小,可独立可控的电池或像素,其充当电子镜阵列。以这种方式,该系统能够在极高的数据速率(〜1Tbps)下通过〜100万光束的大规模平行曝光来产生要写入的图案。使用携带多个晶片的旋转压板的旋转级概念优化了DPG的写入策略,以实现稀疏图案晶片水平的高吞吐量的能力。 DPG利用的曝光方法在VISTEC VB-6上仿真,以验证REBL中使用的灰度级别曝光方法。讨论了这些曝光测试的结果。

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