LIGHT EMITTING TUFTED CARPET
    91.
    发明申请
    LIGHT EMITTING TUFTED CARPET 有权
    发光地毯

    公开(公告)号:US20100254141A1

    公开(公告)日:2010-10-07

    申请号:US12743848

    申请日:2008-11-17

    IPC分类号: F21S4/00

    摘要: The invention provides a light emitting tufted carpet (1). The carpet (1) comprises a primary backing layer (100), an optional secondary backing layer (200), an optional adhesive layer (300), a plurality of carpet integrated LEDs (40) arranged to generate carpet light (41), and a first electric conductor (10) and a second electric conductor (20). The first electric conductor (10) and the second electric conductor (20) are arranged to provide power from a power source (50) to the LEDs (40). The primary backing layer (100) comprises a first felt layer (30′), or the optional secondary backing layer (200) comprises second felt layer (30″), or both the primary backing layer (100) and the optional secondary backing layer (200) comprise felt layers (30′,30″). One or more of the first electric conductor (10) and the second electric conductor (20) are at least partially integrated in one or more of the first felt layer (30′) and the second felt layer (30″).

    摘要翻译: 本发明提供一种发光簇绒地毯(1)。 地毯(1)包括主背衬层(100),任选的辅助背衬层(200),可选的粘合层(300),布置成产生地毯光(41)的多个地毯集成LED(40),以及 第一电导体(10)和第二导电体(20)。 第一电导体(10)和第二导电体(20)被布置成从电源(50)向LED(40)提供电力。 主衬里层(100)包括第一毡层(30'),或者任选的第二衬里层(200)包括第二毡层(30“),或者主衬里层(100)和可选的辅衬层 (200)包括毡层(30',30“)。 第一电导体(10)和第二电导体(20)中的一个或多个至少部分地集成在第一毡层(30')和第二毡层(30“)中的一个或多个中。

    Method for the protection of an optical element of a lithographic apparatus and device manufacturing method
    95.
    发明申请
    Method for the protection of an optical element of a lithographic apparatus and device manufacturing method 审中-公开
    保护光刻设备的光学元件的方法及其制造方法

    公开(公告)号:US20090074962A1

    公开(公告)日:2009-03-19

    申请号:US11898801

    申请日:2007-09-14

    IPC分类号: C23C16/06

    摘要: A method for the protection of an optical element of a lithographic apparatus is disclosed. A deposition gas comprising SnH4 is provided to the surface of the optical element to deposit a Sn cap layer on the surface of the optical element. In this way, a Sn cap layer is deliberately provided on the optical element, which may protect the optical element during lithographic processing from debris from a (Sn) plasma source. During or after lithographic processing, the (deteriorated) cap layer may be repaired by providing a hydrogen radical containing gas and/or a SnH4 containing gas. Additionally or alternatively, the (deteriorated) cap layer may be removed and a new cap layer provided by providing the deposition gas comprising SnH4.

    摘要翻译: 公开了一种用于保护光刻设备的光学元件的方法。 包含SnH4的沉积气体被提供到光学元件的表面以在光学元件的表面上沉积Sn盖层。 以这种方式,在光学元件上有意地提供Sn盖层,这可以在光刻处理期间保护光学元件免受来自(Sn)等离子体源的碎片的影响。 在平版印刷加工期间或之后,可以通过提供含氢自由基气体和/或含SnH 4的气体来修复(劣化的)盖层。 附加地或替代地,可以去除(劣化的)盖层,并且通过提供包括SnH 4的沉积气体提供新的盖层。

    Non-Invasive System and Method for Measuring Skin Hydration of a Subject
    96.
    发明申请
    Non-Invasive System and Method for Measuring Skin Hydration of a Subject 失效
    非侵入性系统和测量受试者皮肤水合的方法

    公开(公告)号:US20080275319A1

    公开(公告)日:2008-11-06

    申请号:US12158714

    申请日:2006-12-26

    摘要: A non-invasive system and method for measuring skin hydration of a subject comprising a thermistor (7) used in transient mode to obtain a measurement of the thermal conductivity of the skin of the subject and a processor (8) for determining a skin hydration value from the thermal conductivity measurement. The system for measuring skin hydration may be comprised in a non-invasive system for detecting blood analyte concentration, preferably glucose, including a spectroscopic device having e.g. an infrared source (2) which generates infrared beam (3) and detector (6) for detecting transmitted radiation through portion 1 (e.g. finger) of a subject. The system may also include skin hydrator (9) which moisturises the skin connected in a control loop to the system for measuring skin hydration. The system for detecting blood analyte concentration may include a photoacoustic device or a metabolic heat conformation device.

    摘要翻译: 一种用于测量受试者的皮肤水合的非侵入性系统和方法,包括在瞬态模式中使用的热敏电阻(7)以获得对象皮肤的热导率的测量值和用于确定皮肤水合值的处理器(8) 从热导率测量。 用于测量皮肤水合的系统可以包含在用于检测血液分析物浓度的非侵入性系统中,优选葡萄糖,包括具有例如血液的分光装置。 产生用于检测通过被摄体的部分1(例如手指)的透射辐射的红外光束(3)和检测器(6)的红外源(2)。 该系统还可以包括皮肤水分器(9),其将在控制回路中连接的皮肤保湿到用于测量皮肤水合的系统。 用于检测血液分析物浓度的系统可以包括光声装置或代谢热构造装置。

    System for Non-Invasive Measurement of Bloold Glucose Concentration
    97.
    发明申请
    System for Non-Invasive Measurement of Bloold Glucose Concentration 审中-公开
    Bloold葡萄糖浓度无创测量系统

    公开(公告)号:US20080269580A1

    公开(公告)日:2008-10-30

    申请号:US12158469

    申请日:2006-12-12

    IPC分类号: A61B5/01 A61B5/1468 A61B8/06

    摘要: A system and method for non-invasive measurement of glucose concentration in a live subject including a thermal emission spectroscopy (TES) device 10, an optical coherence tomography (OCT) device 20 or near infrared diffuse reflectance (NIDR) device. The TES 10 generates a signal indicative of the absorbtion of glucose, from which the blood glucose concentration is determined and the OCT device 20 generates a signal indicative of the scattering coefficient of a portion of the live subject, from which the blood glucose concentration is determined. The signals generated by the TES and OCT devices along with signals generated by sensors for measuring the body heat and surface temperature of the subject are used in the metabolic heat conformation (MHC) method of determining blood glucose concentration. The system may include a photoacoustic sensor for generating a signal indicative of thermo-elastic skin properties from which the blood glucose concentration is also determined.

    摘要翻译: 包括热发射光谱(TES)装置10,光学相干断层摄影(OCT)装置20或近红外漫反射(NIDR)装置的活体内的葡萄糖浓度无创测量的系统和方法。 TES10产生指示葡萄糖吸收的信号,从该葡萄糖中测定血糖浓度,并且OCT装置20产生指示活体受试者的一部分的散射系数的信号,从该血糖浓度确定血葡萄糖浓度 。 在测定血糖浓度的代谢热构象(MHC)方法中使用由TES和OCT装置产生的信号以及由传感器产生的用于测量受试者体温和表面温度的信号。 该系统可以包括光声传感器,用于产生指示也确定血糖浓度的热弹性皮肤特性的信号。