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EVALUATION OF OZONE EMISSIONS DESTRUCTION UNITS FOR SACVD PROCESS TOOLS

机译:SACVD工艺工具的臭氧排放破坏装置的评估

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摘要

Motorola uses ozone in the sub-atmospheric chemical vapor deposition (SACVD) process. Ozone is generated continuously and delivered to the tools where it is either consumed in the process or diverted to the gas panel exhaust stream when not required by the process. As a result of the continuous generation, ozone emissions can be significant. Several drivers have led to the development of goals to reduce ozone emissions. In order to quantify ozone emissions from SACVD tools, stack testing using extractive FTIR was conducted in addition to point of generation testing. Based on the measured concentrations, algorithms were developed to quantify ozone emissions. Although expensive solutions exist for reducing ozone emissions, low cost solutions were investigated. A solution that appears to reduce ozone emissions and is relatively low cost to implement is point-of-use ozone catalytic destruction. These ozone destruction units were evaluated on two different process tools to determine if ozone emissions reductions are feasible for multiple platforms of SACVD tools. This evaluation identified that a catalytic ozone destruction unit can significantly reduce ozone emissions.
机译:摩托罗拉在低于大气压的化学气相沉积(SACVD)工艺中使用臭氧。臭氧是连续产生的,并输送到工具中,在此过程中不需要时,臭氧要么在过程中被消耗掉,要么被转移到气体面板废气流中。连续产生的结果是,臭氧排放量可能很大。几个驱动因素导致了减少臭氧排放目标的制定。为了量化SACVD工具产生的臭氧排放量,除了进行发电点测试外,还进行了使用萃取FTIR的烟囱测试。根据测得的浓度,开发了量化臭氧排放量的算法。尽管存在减少臭氧排放的昂贵解决方案,但对低成本解决方案进行了研究。一种似乎可以减少臭氧排放并且实施成本相对较低的解决方案是使用点臭氧催化销毁。在两个不同的处理工具上对这些臭氧破坏装置进行了评估,以确定减少臭氧排放量对于SACVD工具的多个平台是否可行。该评估确定,催化臭氧破坏装置可以大大减少臭氧排放。

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