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Efficient layout data compression algorithm and its low-complexity, high-performance hardware decoder implementation for multiple electron-beam direct-write systems

机译:多电子束直写系统的高效布局数据压缩算法及其低复杂度,高性能硬件解码器实现

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摘要

A lossless electron-beam layout (EBL) data compression algorithm, LineDiff Entropy v2.0, and its low-complexity, high-performance hardware decoder for multiple electron-beam direct-write lithography systems are proposed. The algorithm compares consecutive data scanlines and encodes the data based on the changeo-change of pixel values and the lengths of pixel sequences. Then, the compaction steps of data omission, merging, and encoding of consecutive long identical scanlines are applied. Unique short codes are assigned to data with high occurrence frequency. The hardware decoder is designed as three circuit blocks that perform entropy decoding, decompaction, and EBL data generation through parallel outputs. The results demonstrate that our algorithm can achieve excellent compression performance and that the hardware decoder can decompress data at very high data rates.
机译:提出了一种无损电子束布局(EBL)数据压缩算法LineDiff Entropy v2.0及其低复杂度,高性能的多电子束直接写入光刻系统的硬件解码器。该算法比较连续的数据扫描线,并根据像素值的更改/不更改以及像素序列的长度对数据进行编码。然后,应用数据省略,合并和编码连续的长相同扫描线的压缩步骤。唯一的短代码被分配给出现频率很高的数据。硬件解码器被设计为三个电路块,它们通过并行输出执行熵解码,解压缩和EBL数据生成。结果表明,我们的算法可以实现出色的压缩性能,并且硬件解码器可以以很高的数据速率对数据进行解压缩。

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