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    • 11. 发明授权
    • Integrated circuits and methods for fabricating integrated circuits with active area protection
    • 用于制造具有有源区域保护的集成电路的集成电路和方法
    • US09419126B2
    • 2016-08-16
    • US13835944
    • 2013-03-15
    • GLOBALFOUNDRIES, Inc.
    • Xiaodong YangJin Ping LiuYanxiang LiuXusheng Wu
    • H01L29/78H01L21/8238H01L29/66H01L29/165
    • H01L29/78H01L21/823807H01L21/823814H01L21/823878H01L29/165H01L29/66636H01L29/7848
    • Integrated circuits and methods for fabricating integrated circuits are provided. In an embodiment, a semiconductor substrate includes a shallow trench isolation structure disposed therein. A gate electrode structure overlies semiconductor material of the semiconductor substrate. A first sidewall spacer is formed adjacent to the gate electrode structure, with a first surface of the shallow trench isolation structure exposed and spaced from the first sidewall spacer by a region of the semiconductor material. The first surface of the shallow trench isolation structure is masked with an isolation structure mask. The region of the semiconductor material is free from the isolation structure mask. A recess is etched in the region of the semiconductor material, with the isolation structure mask in place. A semiconductor material is epitaxially grown within the recess to form an epitaxially-grown semiconductor region adjacent to the gate electrode structure.
    • 提供了用于制造集成电路的集成电路和方法。 在一个实施例中,半导体衬底包括设置在其中的浅沟槽隔离结构。 栅电极结构覆盖半导体衬底的半导体材料。 形成与栅电极结构相邻的第一侧壁间隔物,其中浅沟槽隔离结构的第一表面暴露并与第一侧壁间隔物隔开半导体材料的区域。 浅沟槽隔离结构的第一表面用隔离结构掩模掩蔽。 半导体材料的区域没有隔离结构掩模。 在半导体材料的区域中蚀刻凹陷,隔离结构掩模就位。 半导体材料在凹槽内外延生长以形成与栅电极结构相邻的外延生长的半导体区域。
    • 12. 发明授权
    • Gas turbine engine combustors with effusion and impingement cooling and methods for manufacturing the same using additive manufacturing techniques
    • 具有渗出和冲击冷却的燃气涡轮发动机燃烧器及其制造方法使用添加剂制造技术
    • US09410702B2
    • 2016-08-09
    • US14176686
    • 2014-02-10
    • HONEYWELL INTERNATIONAL INC.
    • Rodolphe DudeboutDustin BrandtDavid WaldmanJames NeumannArt Payne
    • F23R3/16F23R3/00F23R3/06
    • F23R3/16F23R3/002F23R3/06F23R2900/00018F23R2900/03041F23R2900/03044Y02T50/675Y10T29/49229
    • Disclosed in various exemplary embodiments are turbine engine combustors with effusion and impingement cooling and methods for manufacturing the same. In one exemplary embodiment, disclosed is a combustor for a turbine engine that includes an annular liner portion including a first metering hole positioned on a cold side annular surface of the annular liner portion and an impingement chamber positioned in the annular liner. The impingement chamber connects to an entry hole on the cold side annular surface and includes a cooling air outlet passageway that is angled with respect to a hot side annular surface of the annular liner portion and that connects to an exit hole positioned on the hot side annular surface of the annular liner portion. The first metering hole is connected to the impingement chamber. The cooling air outlet passageway directs the air onto the hot side annular surface and spreads the airflow axially and laterally parallel to the hot side annular surface. Furthermore, a ratio of a radial thickness of the annular liner portion to a diameter of the entry hole is from about 2 to about 6.
    • 在各种示例性实施例中公开了具有渗出和冲击冷却的涡轮发动机燃烧器及其制造方法。 在一个示例性实施例中,公开了一种用于涡轮发动机的燃烧器,其包括环形衬套部分,其包括位于环形衬套部分的冷侧环形表面上的第一计量孔和定位在环形衬套中的冲击室。 冲击室连接到冷侧环形表面上的入口,并且包括冷却空气出口通道,其相对于环形衬套部分的热侧环形表面成角度并且连接到位于热侧环形的出口孔 环形衬垫部分的表面。 第一计量孔连接到冲击室。 冷却空气出口通道将空气引导到热侧环形表面上,并使气流沿轴向和横向平行于热侧环形表面扩散。 此外,环形衬套部分的径向厚度与入口孔的直径的比率为约2至约6。
    • 20. 发明授权
    • Power management for sugarcane harvesters
    • 甘蔗收割机电力管理
    • US09402344B1
    • 2016-08-02
    • US14600930
    • 2015-01-20
    • DEERE & COMPANY
    • Craig E. WenzelAlan D. SheidlerKent M. Almeida
    • A01D34/00A01D41/127B60W30/188B60W10/08B60W10/26
    • A01D41/127A01D45/10B60W10/08B60W10/26B60W30/188B60W2720/10
    • A sugarcane harvester and related method are disclosed for powering various sugarcane harvester operations. An energy storage device may be configured to receive electrical power from one or more electric machines for storage. The energy storage device may be configured to provide electrical power to the one or more electric machines to power operation of the one or more electric machines. An operating state of the sugarcane harvester may be identified, wherein the operating state is associated with one or more of a power requirement, a torque requirement, and an engine speed requirement for the sugarcane harvester. Based upon identifying the operating state, the one or more electric machines may be caused to receive electrical power from the energy storage device for conversion by the one or more electric machines to mechanical power, in order to power an operation of the sugarcane harvester.
    • 披露了一种甘蔗收割机及其相关方法,为各种甘蔗收割机作业提供动力。 能量存储装置可以被配置为从一个或多个电机接收电力用于存储。 能量存储装置可以被配置为向一个或多个电机提供电力来对一个或多个电机的动力进行动力。 可以识别甘蔗收割机的操作状态,其中操作状态与甘蔗收割机的功率要求,扭矩要求和发动机速度要求中的一个或多个相关联。 基于识别操作状态,可以使一个或多个电机从能量存储装置接收电力,以便由一个或多个电机转换成机械动力,以便为甘蔗收割机的操作供电。