首页> 外文会议>Conference on Microlithographic Techniques in Integrated Circuit Fabrication II, Nov 28-30, 2000, Singapore >Minimum-Time Optimal Feedforward Control of Conductive Heating Systems for Microelectronics Processing of Silicon Wafers and Quatz Photomasks
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Minimum-Time Optimal Feedforward Control of Conductive Heating Systems for Microelectronics Processing of Silicon Wafers and Quatz Photomasks

机译:硅晶片和Quatz光掩模微电子加工的导电加热系统的最小时间最优前馈控制

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摘要

An optimal control scheme is designed to improve repeatability by minimizing the loading effects induced by the common processing condition of placement of a semiconductor substrate at ambient temperature on a large thermal-mass bake plate at processing temperature. A model-based optimal controller is presented based on minimum time control strategy for minimizing the worst-case deviation from a nominal temperature set-point during the load disturbance condition. This results in a predictive controller that performs a pre-determined heating sequence prior to the arrival of the substrate as part of the resulting feedforward/feedback strategy to eliminate the load disturbance. The controller is easy to design and implement for conventional thermal processing equipment. The minimum time control formulation also makes it more suitable for on-line implementation such as automatic on-line tuning of feedforward controller. Experimental results are performed for a commercial conventional bake plate and depict an order-of-magnitude improvement in the settling time and the integral-square temperature error between the optimal predictive controller and a feedback controller for a typical load disturbance.
机译:设计了一种最佳控制方案,以通过最大程度地减小在环境温度下将大面积热质烘烤板上的半导体基板在环境温度下放置的普通处理条件引起的负载效应,从而提高可重复性。基于最小时间控制策略,提出了一种基于模型的最优控制器,用于将负载扰动条件下与标称温度设定点的最坏情况偏差降至最低。这导致预测控制器在基板到达之前执行预定的加热顺序,作为所产生的前馈/反馈策略的一部分,以消除负载干扰。该控制器易于设计和实现用于常规热处理设备。最少的时间控制公式也使其更适合在线实施,例如前馈控制器的自动在线调整。针对商用常规烤盘进行的实验结果表明,在典型负载扰动的最佳预测控制器和反馈控制器之间,建立时间和积分平方温度误差的建立时间得到了改善。

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