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    • 2. 发明申请
    • LIQUID IMMERSION SCANNING EXPOSURE SYSTEM USING AN IMMERSION LIQUID CONFINED WITHIN A LENS HOOD
    • 液体渗透扫描曝光系统使用在镜头内部配置的液体液体
    • US20110157567A1
    • 2011-06-30
    • US12649212
    • 2009-12-29
    • Wenzhan ZhouSia Kim TanLei YuanMeisheng Zhou
    • Wenzhan ZhouSia Kim TanLei YuanMeisheng Zhou
    • G03B27/52
    • G03F7/70341
    • A liquid immersion scanning exposure system utilizes an immersion liquid confined within a watertight lens hood having a base portion formed from a solid optical element. During operation, a bottom portion of a lens assembly is disposed within the immersion liquid and the solid optical element is placed upon a photoresist material or layer (to be patterned). The lens assembly moves laterally through the immersion liquid parallel to the photoresist material. Because the solid optical element separates the immersion liquid from the photoresist material and does not move relative to the photoresist material, the photoresist material does not contact with the immersion liquid and the solid optical element and is not susceptible to damage or scratching by the solid optical element.
    • 液浸式扫描曝光系统利用限制在具有由固体光学元件形成的基部的防水透镜罩内的浸液。 在操作期间,透镜组件的底部设置在浸没液体内,并且固体光学元件被放置在光致抗蚀剂材料或层(待图案化)上。 透镜组件横向移动通过平行于光致抗蚀剂材料的浸没液体。 由于固体光学元件将浸没液体与光致抗蚀剂材料分离并且不相对于光致抗蚀剂材料移动,所以光致抗蚀剂材料不与浸没液体和固体光学元件接触,并且不易受固体光学元件的损坏或划伤 元件。
    • 4. 发明授权
    • Liquid immersion scanning exposure system using an immersion liquid confined within a lens hood
    • 液体浸渍扫描曝光系统使用限制在透镜罩内的浸液
    • US08896810B2
    • 2014-11-25
    • US12649212
    • 2009-12-29
    • Wenzhan ZhouSia Kim TanLei YuanMeisheng Zhou
    • Wenzhan ZhouSia Kim TanLei YuanMeisheng Zhou
    • G03B27/42
    • G03F7/70341
    • A liquid immersion scanning exposure system utilizes an immersion liquid confined within a watertight lens hood having a base portion formed from a solid optical element. During operation, a bottom portion of a lens assembly is disposed within the immersion liquid and the solid optical element is placed upon a photoresist material or layer (to be patterned). The lens assembly moves laterally through the immersion liquid parallel to the photoresist material. Because the solid optical element separates the immersion liquid from the photoresist material and does not move relative to the photoresist material, the photoresist material does not contact with the immersion liquid and the solid optical element and is not susceptible to damage or scratching by the solid optical element.
    • 液浸式扫描曝光系统利用限制在具有由固体光学元件形成的基部的防水透镜罩内的浸液。 在操作期间,透镜组件的底部设置在浸没液体内,并且固体光学元件被放置在光致抗蚀剂材料或层(待图案化)上。 透镜组件横向移动通过平行于光致抗蚀剂材料的浸没液体。 由于固体光学元件将浸没液体与光致抗蚀剂材料分离并且不相对于光致抗蚀剂材料移动,所以光致抗蚀剂材料不与浸没液体和固体光学元件接触,并且不易受固体光学元件的损坏或划伤 元件。