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NIR laser diode and FTIR based process control for industrial CVD reactors

机译:基于NIR激光二极管和FTIR的工业CVD反应器过程控制

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摘要

Aiming toward process control of industrial high yield/high volume CVD reactors, the potential of optical sensors as a monitoring tool has been explored. The sensors selected are based on both Fourier transform infrared spectroscopy (FTIR) and tuneable diode laser spectroscopy (NIR-DLS). The former has the advantage of wide spectral capability and well-established databases. NIRLD spectroscopy has potentially high sensitivity, laser spatial resolution and the benefits of comparatively easier integration capabilities - including optical fibre compatibility. The proposed technical approach for process control is characterised by a 'chemistry based' feedback system with in-situ optical data as input information. The selected optical sensors continuously analyse the gas phase near the surface of the growing layer. The spectroscopic data has been correlated with process performance and layer properties, which, in turn establish data basis for process control. The new process control approach is currently being verified on different industrialised CVD coaters. One of the selected applications deals with the deposition of SnO2 layers on glass based on the oxidation of (CH3)(2)SnCl2, which is used in high volume production for low-E glazings. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 8]
机译:为了对工业高产率/高体积CVD反应器进行过程控制,已经探索了光学传感器作为监测工具的潜力。选择的传感器基于傅立叶变换红外光谱(FTIR)和可调谐二极管激光光谱(NIR-DLS)。前者的优点是具有广泛的光谱功能和完善的数据库。 NIRLD光谱具有潜在的高灵敏度,激光空间分辨率以及相对较容易的集成功能(包括光纤兼容性)的优点。所提出的过程控制技术方法的特征是“基于化学物质”的反馈系统,以原位光学数据作为输入信息。所选的光学传感器会连续分析生长层表面附近的气相。光谱数据已经与过程性能和层特性相关联,从而为过程控制建立了数据基础。目前正在不同的工业化CVD涂布机上验证新的过程控制方法。选定的应用之一涉及基于(CH3)(2)SnCl2的氧化在玻璃上沉积SnO2层,该氧化用于大量生产低E的玻璃。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:8]

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