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    • 61. 发明申请
    • Hand-held portable drop light
    • 手提便携式落地灯
    • US20060250791A1
    • 2006-11-09
    • US11389551
    • 2006-03-23
    • Thomas Miller
    • Thomas Miller
    • F21L4/00
    • F21L14/026F21V19/04
    • A hand-held portable drop-light is provided. The light comprises a handle, a housing, a cover, a novel mounting assembly, and a light bulb. The mounting assembly is configured with a pivoting light bulb socket and positioned within the handle for mounting the light bulb within a housing interior. The housing possesses an aperture through which the container interior and light bulb may be accessed. The cover is reversibly attached to the housing so as to inhibit access to the light bulb through the aperture. When replacing the light bulb, the cover is moved from the aperture and the mounting assembly is pivoted between a retracted position, where the bulb is substantially retained within the housing and an extended position, where a portion of the bulb is positioned outside the housing. In this manner, the light bulb is easily accessed for replacement.
    • 提供手提便携式落地灯。 灯包括手柄,壳体,盖子,新颖的安装组件和灯泡。 安装组件配置有旋转灯泡插座并且定位在手柄内,用于将灯泡安装在壳体内部。 壳体具有孔,可以通过该孔容纳容器内部和灯泡。 盖可逆地附接到壳体,以便禁止通过孔径进入灯泡。 当更换灯泡时,盖子从光圈移动,并且安装组件在缩回位置之间枢转,在缩回位置处,灯泡基本上保持在壳体内并且延伸位置,其中灯泡的一部分位于壳体外部。 以这种方式,灯泡可以方便地进行更换。
    • 62. 发明申请
    • Treatment of decompression sickness with inhaled nitric oxide gas
    • 用吸入一氧化氮气治疗减压病
    • US20060191535A1
    • 2006-08-31
    • US11065748
    • 2005-02-25
    • Thomas ShafferJoseph TuckoshThomas Miller
    • Thomas ShafferJoseph TuckoshThomas Miller
    • A61M16/00A62B7/00F16K31/02
    • A61M16/021A61M2202/0275
    • The present invention includes a method for treating an individual suffering from decompression sickness, a gas mixture that can be used to treat the individual, and an apparatus that can be used to administer the gas mixture. The method includes administering a gas mixture of oxygen and a therapeutically effective amount of nitric oxide gas to the individual. The gas mixture can include a mixture of oxygen, helium and, nitric oxide gases. The gas mixture can be administered using an apparatus that can be worn by the individual. The apparatus includes dispensers for gases, a gas blender to mix the gases, an inspiratory passage, a face mask substantially conformable with the individual's face, and an expiratory passage. When the individual wearing the face mask inhales, the gas mixture travels from the gas blender, through the inspiratory passage to the face mask. The gas mixture is then inhaled by the individual. When the individual exhales a breath, the breath travels from the face mask through the expiratory passage.
    • 本发明包括用于治疗患有减压病的个体的方法,可用于治疗个体的气体混合物,以及可用于施用气体混合物的装置。 该方法包括向个体施用氧气和治疗有效量的一氧化氮气体的气体混合物。 气体混合物可以包括氧气,氦气和一氧化氮气体的混合物。 气体混合物可以使用可由个体佩戴的装置来施用。 该装置包括用于气体的分配器,用于混合气体的气体混合器,吸气通道,基本上与个人脸部相适应的面罩以及呼气通道。 当佩戴面罩的人吸入时,气体混合物从气体搅拌器行进,通过吸气通道进入面罩。 然后气体混合物被个体吸入。 当个人呼气时,呼吸从面罩通过呼气通道行进。
    • 64. 发明申请
    • METHOD AND SYSTEM FOR RESETTING TIRE PRESSURE MONITORING SYSTEM FOR AN AUTOMOTIVE VEHICLE
    • 用于重新安装汽车轮胎压力监测系统的方法和系统
    • US20060139158A1
    • 2006-06-29
    • US10905093
    • 2004-12-15
    • Thomas MillerThomas McQuadeRobert Mince
    • Thomas MillerThomas McQuadeRobert Mince
    • B60C23/00
    • B60C23/0408B60C23/0418B60C23/0462G07C5/085G07C9/00182G07C2009/00793
    • A tire pressure monitoring system (12) for a vehicle (10) includes a vehicle speed sensor (38, 98) that is used to generate a vehicle speed signal. A receiver (28) operates using a first protocol when the vehicle speed signal is below a first speed threshold and operates using a second protocol when the vehicle speed is above the speed threshold. A remote keyless entry system (23) is coupled to the receiver and operates when the vehicle speed is below a speed threshold. The remote keyless entry system (23) receives signals from a keyless entry transmitter (60) using the first protocol. A tire pressure monitoring system (12) has a pressure transmitter (16A-16E) that generates a signal using a first protocol and a second protocol when the speed signal is below the speed threshold and generating the signal using only the second protocol when the speed signal is above the speed threshold.
    • 用于车辆(10)的轮胎压力监测系统(12)包括用于产生车速信号的车速传感器(38,98)。 当车速信号低于第一速度阈值时,接收器(28)使用第一协议操作,并且当车速高于速度阈值时,使用第二协议进行操作。 远程无钥匙进入系统(23)耦合到接收器,并且当车速低于速度阈值时操作。 远程无钥匙进入系统(23)使用第一协议从无钥匙进入发射器(60)接收信号。 轮胎压力监测系统(12)具有压力传感器(16A-16E),其在速度信号低于速度阈值时产生使用第一协议和第二协议的信号,并且仅当第二协议产生信号时 速度信号高于速度阈值。
    • 68. 发明申请
    • Reduction of coal-fired combustion emissions
    • 减少燃煤燃烧排放
    • US20060034743A1
    • 2006-02-16
    • US11204765
    • 2005-08-16
    • Jerrold RadwayThomas Miller
    • Jerrold RadwayThomas Miller
    • B01D53/50
    • C10L9/10B01D53/508B01D53/64F23J2215/20F23K1/00F23K2201/101F23K2201/505
    • A process for mitigation of fouling deposits within a combustion zone, capturing of toxic metal emissions, and reduction of visible sulfur emissions attributable to sulfuric acid mist during coal combustion. SO3 formed during coal combustion is reduced by the addition to the coal of raw, unprocessed magnesium-containing minerals such as magnesite ore or brucite ore. The minerals are pulverized to a fine particle size and combined with pulverized coal to provide a mixture of the particles. The mixture is combusted and the ore particles calcine and decrepitate to very fine magnesium oxide particles that have a significant particle surface area. The magnesium oxide particles react with the SO3 produced during combustion of the coal and also capture toxic metals to reduce the quantity of undesirable stack discharge components.
    • 一种减少燃烧区内污垢沉积物的过程,捕获有毒金属排放物,以及减少煤燃烧过程中硫酸雾引起的可见硫排放。 在煤燃烧期间形成的SO 3通过添加到未加工的含镁矿物如镁砂矿石或水镁石矿石的煤中而减少。 将矿物粉碎至细粒度并与粉煤混合以提供颗粒的混合物。 混合物燃烧,矿石颗粒煅烧并破碎成具有显着颗粒表面积的非常细小的氧化镁颗粒。 氧化镁颗粒与煤燃烧期间产生的SO 3反应,并且还捕集有毒金属以减少不期望的堆放电组分的量。
    • 69. 发明申请
    • Hardline coaxial cable connector
    • 硬线同轴电缆连接器
    • US20050277330A1
    • 2005-12-15
    • US10865314
    • 2004-06-10
    • Brian KislingThomas Miller
    • Brian KislingThomas Miller
    • H01R9/05H01R13/646H01R4/66
    • H01R24/40H01R9/0524H01R2103/00
    • An axially-compressible connector (200) for a hardline coaxial cable (1000) has a housing that includes a body (202), a coupling nut (210) and a compression can (208). A nonmetallic sleeve (302), which is mounted within the housing, has a tubular portion and an integral insulator portion. The insulator portion holds a contact (306) that has arms (311-314) for seizing an inner conductor (1002) of the hardline coaxial cable. A ferrule (408) is slip fit mounted within the housing, and seizes an outer conductor (1006) of the hardline coaxial cable. A gripping member (414) is mounted within the housing and seizes a jacket (1008) of the hardline coaxial cable. An actuator (412), which is mounted within the housing around a portion of the tubular portion of the sleeve, has an angled surface (413) to guide an end of the outer conductor toward the tubular portion of the sleeve, as the tubular portion of the sleeve is inserted into the end of the coaxial cable. The jacket is gripped by the gripping member only after the outer conductor is seized by the ferrule.
    • 用于硬线同轴电缆(1000)的可轴向压缩的连接器(200)具有包括主体(202),联接螺母(210)和压缩罐(208)的壳体。 安装在壳体内的非金属套筒(302)具有管状部分和整体绝缘体部分。 绝缘体部分保持具有用于卡住硬线同轴电缆的内部导体(1002)的臂(311-314)的触头(306)。 套圈(408)滑动配合安装在壳体内,并且抓住硬线同轴电缆的外导体(1006)。 抓握构件(414)安装在壳体内并且抓住硬线同轴电缆的护套(1008)。 一个致动器(412),其围绕套管的管状部分的一部分安装在壳体内,具有成角度的表面(413),以将外导体的端部朝向套筒的管状部分引导,作为管状部分 将套筒插入同轴电缆的端部。 仅在外导体被套圈扣住之后,护套才被夹持构件抓住。