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Comparisons of Planar and Cylindrical Magnetrons Operating in Pulsed DC and AC Modes

机译:平面直流磁控管和圆柱磁控管在脉冲直流和交流模式下的比较

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The deposition of functional films onto both polymeric web and large area glass substrates has been a major area of growth in recent years. The key to this growth has been the development of the mid-frequency (20-350 kHz) dual bipolar pulsed magnetron sputtering process, which now permits complex, multi-layer structures with specific properties to be routinely deposited in high throughput systems. There are, though, several competing variants of the dual bipolar process currently employed, with each variant imposing its own set of criteria in terms of cost, process stability, throughput and product performance. Commercially available coating systems utilise both planar and cylindrical rotatable magnetrons, driven by AC, or pulsed DC power supplies. Few direct comparisons, though, have been made of these alternative approaches.In this study, therefore, titania coatings have been deposited by reactive magnetron sputtering onto glass substrates in both magnetron configurations and power delivery modes. Film structures have been analysed by SEM and the operating characteristics of the competing technologies have also been studied in terms of deposition rates, hysteresis behaviour and thermal flux at the substrate. The results to date of this study are reported here.
机译:近年来,功能膜在聚合物纤维网和大面积玻璃基板上的沉积一直是增长的主要领域。增长的关键在于中频(20-350 kHz)双双极脉冲磁控溅射工艺的发展,该工艺现在允许在高通量系统中常规沉积具有特定性能的复杂多层结构。但是,目前使用的双双极工艺有几个竞争的变体,每种变体在成本,工艺稳定性,生产量和产品性能方面都有自己的一套标准。市售的涂层系统利用由交流或脉冲直流电源驱动的平面和圆柱形可旋转磁控管。但是,很少有对这些替代方法的直接比较。 因此,在这项研究中,二氧化钛涂层已通过反应磁控溅射在磁控管配置和功率传输模式下沉积在玻璃基板上。薄膜结构已通过SEM进行了分析,并且还研究了竞争技术的操作特性,包括沉积速率,磁滞行为和在基板上的热通量。迄今为止,本研究的结果已在此处报告。

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