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    • 1. 发明授权
    • Method for fabricating passivation layer
    • 钝化层制造方法
    • US07166542B2
    • 2007-01-23
    • US10707112
    • 2003-11-21
    • Ming-Hung LoLiang-Pin ChouChun-Ming WangLi-Fu Chen
    • Ming-Hung LoLiang-Pin ChouChun-Ming WangLi-Fu Chen
    • H01L21/31H01L21/469
    • H01L21/76834H01L21/76832
    • A method of fabricating a passivation layer is provided. A substrate with a plurality of device structures and at least an interconnect thereon is provided. A patterned metallic layer is formed over the interconnection layer. A plasma-enhanced chemical vapor deposition process is performed to form a first passivation over the metallic layer such that the processing pressure is higher (and/or the processing power is lower) than the pressure (the power) used in prior art. A moisture impermeable second passivation is formed over the first passivation layer. With the first passivation formed in a higher processing pressure (and/or lower processing power), damages to metallic layers or devices due to plasma bombardment is minimized.
    • 提供一种制造钝化层的方法。 提供具有多个器件结构并且至少在其上的互连的衬底。 在互连层上形成图案化的金属层。 执行等离子体增强化学气相沉积工艺以在金属层上形成第一钝化,使得处理压力比现有技术中使用的压力(功率)更高(和/或处理能力较低)。 在第一钝化层上形成不透水的第二钝化。 由于在较高的处理压力(和/或较低的处理能力)下形成的第一钝化,由于等离子体轰击而对金属层或器件造成的损害最小化。
    • 2. 发明授权
    • High strength cellulose fiber or film
    • 高强度纤维素纤维或薄膜
    • US5290349A
    • 1994-03-01
    • US733967
    • 1991-07-22
    • Li Fu Chen
    • Li Fu Chen
    • D01F2/02C08L1/02
    • D01F2/02
    • The present invention relates to the production of high tensile strength, solvent-spun cellulose fiber which is stable in alkaline solutions. More particularly, the invention relates to a process in which cellulose is solubilized in a zinc chloride solution then extruded into a coagulation medium in which the cellulose fibers form. The fibers are removed from the coagulation medium, treated to remove the coagulation medium, stretched and recrystallized in water, thus forming the high tensile strength, solvent-spun cellulose fibers.
    • 本发明涉及在碱性溶液中稳定的高拉伸强度的溶剂纺丝纤维素纤维的生产。 更具体地说,本发明涉及一种方法,其中将纤维素溶解在氯化锌溶液中,然后挤出成纤维素纤维形成的凝固介质。 将纤维从凝固介质中除去,经处理以除去凝固介质,在水中拉伸和重结晶,从而形成高拉伸强度的溶剂纺丝纤维素纤维。
    • 7. 发明申请
    • Starchy material processed to produce one or more products comprising starch, ethanol, sugar syrup, oil, protein, fiber, gluten meal, and mixtures thereof
    • 加工成淀粉,乙醇,糖浆,油,蛋白质,纤维,麸质粉及其混合物的一种或多种产品的淀粉原料
    • US20070014905A1
    • 2007-01-18
    • US11478345
    • 2006-06-29
    • Li-Fu ChenQin Xu
    • Li-Fu ChenQin Xu
    • C12G3/08
    • A23J1/125C11B1/025C11B1/10Y02E50/17
    • The invention provides a method and system of processing a starchy material that can advantageously produce ethanol, sugar syrup, or starch as the chief products along with food-grade co-products such as, but not limited to oil, protein, fiber, and gluten meal. The invention can apply such a force to a starchy material that is at a superambient temperature with a high shear processor to mill, mix, and gelatinize some of the starch. A liquefaction enzyme can be introduced into the high shear processor to liquefy the processed product. The moisture content of the processed starchy material can be reduced, which preferably occurs in the high shear processor. Some of the co-products such as the oil, protein, fiber and gluten meal can be separated prior to the sugar syrup purification or ethanol fermentation steps.
    • 本发明提供了一种加工淀粉质材料的方法和系统,其可以有利地生产乙醇,糖浆或淀粉作为主要产物以及食品级副产物,例如但不限于油,蛋白质,纤维和谷蛋白 膳食。 本发明可以将这样的力施加到处于超临界温度的高剪切处理剂的淀粉质材料上,以研磨,混合和糊化一些淀粉。 可以将液化酶引入高剪切处理器以液化加工产品。 可以减少加工的淀粉材料的含水量,优选在高剪切加工机中发生。 在糖浆纯化或乙醇发酵步骤之前,可以分离一些副产物如油,蛋白质,纤维和谷蛋白粉。
    • 10. 发明申请
    • [METHOD FOR FABRICATING PASSIVATION LAYER]
    • [制造钝化层的方法]
    • US20050074964A1
    • 2005-04-07
    • US10707112
    • 2003-11-21
    • Ming-Hung LoLiang-Pin ChouChun-Ming WangLi-Fu Chen
    • Ming-Hung LoLiang-Pin ChouChun-Ming WangLi-Fu Chen
    • H01L21/4763H01L21/768
    • H01L21/76834H01L21/76832
    • A method of fabricating a passivation layer is provided. A substrate with a plurality of device structures and at least an interconnect thereon is provided. A patterned metallic layer is formed over the interconnection layer. A plasma-enhanced chemical vapor deposition process is performed to form a first passivation over the metallic layer such that the processing pressure is higher (and/or the processing power is lower) than the pressure (the power) used in prior art. A moisture impermeable second passivation is formed over the first passivation layer. With the first passivation formed in a higher processing pressure (and/or lower processing power), damages to metallic layers or devices due to plasma bombardment is minimized.
    • 提供一种制造钝化层的方法。 提供具有多个器件结构并且至少在其上的互连的衬底。 在互连层上形成图案化的金属层。 执行等离子体增强化学气相沉积工艺以在金属层上形成第一钝化,使得处理压力比现有技术中使用的压力(功率)更高(和/或处理能力较低)。 在第一钝化层上形成不透水的第二钝化。 由于在较高的处理压力(和/或较低的处理能力)下形成的第一钝化,由于等离子体轰击而对金属层或器件造成的损害最小化。