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    • 7. 发明授权
    • Integrated PVD system using designated PVD chambers
    • 集成PVD系统使用指定的PVD腔
    • US07432184B2
    • 2008-10-07
    • US11213662
    • 2005-08-26
    • Akihiro HosokawaMakoto InagawaHienminh Huu LeJohn M. White
    • Akihiro HosokawaMakoto InagawaHienminh Huu LeJohn M. White
    • H01L21/00H01L21/44
    • H01L21/67201C23C14/566C23C14/568H01L21/67167H01L21/67184H01L21/67196H01L29/66765
    • A method for making a film stack containing one or more metal-containing layers and a substrate processing system for forming the film stack on a substrate are provided. The substrate processing system includes at least one transfer chamber coupled to at least one load lock chamber, at least one first physical vapor deposition (PVD) chamber configured to deposit a first material layer on a substrate, and at least one second PVD chamber for in-situ deposition of a second material layer over the first material layer within the same substrate processing system without breaking the vacuum or taking the substrate out of the substrate processing system to prevent surface contamination, oxidation, etc. The substrate processing system is configured to provide high throughput and compact footprint for in-situ sputtering of different material layers in designated PVD chambers.
    • 提供了一种制造包含一个或多个含金属层的膜堆叠的方法和用于在基板上形成膜堆叠的基板处理系统。 衬底处理系统包括耦合到至少一个负载锁定室的至少一个传送室,被配置成将第一材料层沉积在衬底上的至少一个第一物理气相沉积(PVD)室和至少一个第二PVD室 在相同的基板处理系统内在第一材料层上沉积第二材料层而不破坏真空或将基板从基板处理系统取出以防止表面污染,氧化等。基板处理系统被配置为提供 高产量和紧凑的占地面积,用于在指定的PVD室中不同材料层的原位溅射。
    • 8. 发明授权
    • Ganged scanning of multiple magnetrons, especially two level folded magnetrons
    • 组合扫描多个磁控管,特别是两个级别的磁控管
    • US08961756B2
    • 2015-02-24
    • US11780757
    • 2007-07-20
    • Makoto InagawaHien Minh Huu LeAkihiro HosokawaBradley O. StimsonJohn M. White
    • Makoto InagawaHien Minh Huu LeAkihiro HosokawaBradley O. StimsonJohn M. White
    • C23C14/35H01J37/34
    • H01J37/3408H01J37/3455
    • A magnetron assembly including one or more magnetrons each forming a closed plasma loop on the sputtering face of the target. The target may include multiple strip targets on which respective strip magnetrons roll and are partially supported on a common support plate through a spring mechanism. The strip magnetron may be a two-level folded magnetron in which each magnetron forms a folded plasma loop extending between lateral sides of the strip target and its ends meet in the middle of the target. The magnets forming the magnetron may be arranged in a pattern having generally uniform straight portions joined by curved portion in which extra magnet positions are available near the corners to steer the plasma track. Multiple magnetrons, possibly flexible, may be resiliently supported on a scanned support plate and individually partially supported by rollers on the back of one or more targets.
    • 磁控管组件包括一个或多个磁控管,每个磁控管在靶的溅射面上形成封闭的等离子体环。 目标可以包括多个条带目标,相应的带状磁控管在其上滚动并且通过弹簧机构部分地支撑在公共支撑板上。 带状磁控管可以是两级折叠​​磁控管,其中每个磁控管形成在条带靶的侧面之间延伸的折叠等离子体环,并且其端部在目标的中间相遇。 形成磁控管的磁体可以布置成具有通过弯曲部分连接的具有大致均匀的直线部分的图案,其中在角附近提供额外的磁体位置以引导等离子体轨道。 多个可能是柔性的磁控管可以弹性地支撑在扫描的支撑板上,并且单独部分地由一个或多个靶的背面上的辊支撑。
    • 9. 发明申请
    • COOLED ANODES
    • 冷却阳极
    • US20080011601A1
    • 2008-01-17
    • US11771366
    • 2007-06-29
    • ALLEN KA-LING LAUMakoto InagawaBradley O. StimsonAkihiro Hosokawa
    • ALLEN KA-LING LAUMakoto InagawaBradley O. StimsonAkihiro Hosokawa
    • C23C14/35
    • C23C14/35H01J37/32724H01J37/34H01J37/3438H01J37/3455
    • A physical vapor deposition (PVD) apparatus and a PVD method are disclosed. Extending an anode across the processing space between the target and the substrate may increase deposition uniformity on a substrate. The anode provides a path to ground for electrons that are excited in the plasma and may uniformly distribute the electrons within the plasma across the processing space rather than collect at the chamber walls. The uniform distribution of the electrons within the plasma may create a uniform deposition of material on the substrate. The anodes may be cooled with a cooling fluid to control the temperature of the anodes and reduce flaking. The anodes may be disposed across the process space perpendicular to the long side of a magnetron that may scan in two dimensions across the back of the sputtering target. The scanning magnetron may reduce localized heating of the anode.
    • 公开了物理气相沉积(PVD)装置和PVD方法。 将阳极延伸穿过靶和衬底之间的处理空间可增加衬底上的沉积均匀性。 阳极为在等离子体中被激发的电子提供到地面的路径,并且可以将等离子体内的电子均匀地分布在处理空间中,而不是在室壁处收集。 电子在等离子体内的均匀分布可能会在衬底上产生均匀的材料沉积。 阳极可以用冷却流体冷却以控制阳极的温度并减少剥落。 阳极可以跨过垂直于磁控管的长边的处理空间,其可以跨过溅射靶的背面的二维扫描。 扫描磁控管可以减少阳极的局部加热。