会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明申请
    • Nasal cannula
    • 鼻插管
    • US20090025723A1
    • 2009-01-29
    • US11920100
    • 2005-12-30
    • Ulla SchobelSilvio KilzIngo MullerMartin BaeckeHeiko Krause
    • Ulla SchobelSilvio KilzIngo MullerMartin BaeckeHeiko Krause
    • A61M16/06
    • A61M16/0666A61M16/0808A61M16/0833A61M16/1095A61M2205/3372A61M2205/3653A61M2205/42
    • The invention relates to a nasal cannula for an anti-snoring apparatus, comprising a forked tube pneumatically connected to apertures, which are embodied and positioned in such a way that air can be administered into the nose of a user via these apertures. The nasal cannula further comprises a heating wire extending in the interior of forked tube in such a way that the heating wire can heat the air supplied through the forked tube. The invention moreover relates to a nosepiece and to a Y-shaped element for nasal cannula including internal radius steps at tube connection points. The invention further relates to a nosepiece and to a Y-shaped element having rounded off transition regions. The invention finally relates to a method for avoiding condensation in nasal cannulas. To this end, the gas is heated as it flows through the tubes of a nasal cannula.
    • 本发明涉及一种用于防打鼾装置的鼻插管,包括气动连接到孔的叉形管,其被实施和定位成使得空气可以经由这些孔被施用到使用者的鼻子中。 鼻插管还包括在分叉管的内部延伸的加热线,使得加热丝可以加热通过分叉管供应的空气。 此外,本发明涉及鼻梁和用于鼻插管的Y形元件,其包括在管连接点处的内半径步骤。 本发明还涉及一种具有圆形过渡区域的鼻梁和Y形元件。 本发明最终涉及一种避免鼻塞中冷凝的方法。 为此,气体在流过鼻插管的管道时被加热。
    • 4. 发明申请
    • CONDUCTING UNIT, AND CONDUCTING METHODS
    • 导电单元和导电方法
    • US20120301267A1
    • 2012-11-29
    • US12301885
    • 2007-05-03
    • Martin BaeckeIngo MüllerHeiko Krause
    • Martin BaeckeIngo MüllerHeiko Krause
    • F04D29/66F04D23/00
    • A61M16/0057A61M16/0063A61M16/107A61M2205/42F04D23/008F04D25/16F04D29/584F04D29/664
    • The invention relates to a delivering unit for gas, comprising a compressor (101) in a noise-insulation housing (20, 40), which comprises an inlet opening (27, 66) and a blow-out opening (24, 69, 70). An inlet tube (96) can pneumatically connect the inlet opening to the inlet of the compressor. An outlet tube (96) can connect the blow-out opening to the outlet of the compressor. A noise absorber (60, 80) having an inlet chamber (73, 97) and an outlet chamber (74, 98) may be accommodated in the noise-insulation housing. Neoprene may be used as lining for the inner walls of the noise-insulation housing. Sheets (131. 133) may be provided between the noise-insulation housing and the compressor. An inner heat sink (42) and an inner blower (48, 49) can cool the compressor. A heat sink (41) may form one side (40) of the noise-insulation housing. An outer blower (7) can cool the heat sink. Blind tubes can be used both at the inlet and the outlet, so as to suppress tonal sound. Moreover, the invention relates to corresponding delivering methods.
    • 本发明涉及一种用于气体的输送单元,包括在隔音壳体(20,40)中的压缩机(101),其包括入口(27,66)和吹出口(24,69,70) )。 入口管(96)可以将进气口气动地连接到压缩机的入口。 出口管(96)可以将吹出口连接到压缩机的出口。 具有入口室(73,97)和出口室(74,98)的噪声吸收器(60,80)可以容纳在隔音壳体中。 氯丁橡胶可用作隔音外壳内壁的内衬。 可以在隔音壳体和压缩机之间设置片材(131,133)。 内部散热器(42)和内部鼓风机(48,49)可以冷却压缩机。 散热器(41)可以形成隔音壳体的一侧(40)。 外部鼓风机(7)可以冷却散热器。 盲管可以在入口和出口两者使用,以抑制音调声音。 此外,本发明涉及相应的递送方法。
    • 6. 发明申请
    • Radiometer, sighting device for a radiometer and method therefor
    • 辐射计,辐射计瞄准装置及其方法
    • US20050029459A1
    • 2005-02-10
    • US10714692
    • 2003-11-17
    • Meinrad GotzPatrick ZahnAndreas DerrHerbert RosenstielUwe HauryWolfgang SchworerAxel RichterMartin Baecke
    • Meinrad GotzPatrick ZahnAndreas DerrHerbert RosenstielUwe HauryWolfgang SchworerAxel RichterMartin Baecke
    • G01B11/06G01J5/00G01J5/02
    • G01B11/0658G01J5/0022
    • The present invention relates to a radiometer comprising an IR detector, a lens and a light source. The lens is arranged with respect to the IR detector such that it focuses IR radiation from a measuring surface to the detector. The light source emits visible light for marking the measuring surface. The beam path of the visible light extends through the lens. Moreover, the invention relates to a sighting device for a radiometer for visibly marking a measuring surface the temperature of which is measured by the radiometer. The sighting device comprises a light source for emitting a visible light beam, which marks the measuring surface. A piezoactuator controls the direction of the light beam. As an alternative to the piezoactuator, the light beam may be guided at a constant angular velocity, and a stepwise change of the direction of the light beam may be accomplished by a sectorized mirror. The invention finally relates to corresponding methods. In addition, the invention relates to the adjustment of light sources in a sighting device.
    • 本发明涉及一种包括IR检测器,透镜和光源的辐射计。 透镜相对于IR检测器布置,使得其将来自测量表面的IR辐射聚焦到检测器。 光源发出用于标记测量表面的可见光。 可见光的光束路径延伸穿过透镜。 此外,本发明涉及一种用于可视地标记由辐射计测量其温度的测量表面的辐射计的瞄准装置。 瞄准装置包括用于发出标记测量表面的可见光束的光源。 压电致动器控制光束的方向。 作为压电致动器的替代,光束可以以恒定的角速度被引导,并且光束的方向的逐步改变可以通过扇形镜来实现。 本发明最终涉及相应的方法。 此外,本发明涉及瞄准装置中光源的调节。
    • 9. 发明申请
    • Evaporators and Evaporation Methods
    • 蒸发器和蒸发方法
    • US20080245365A1
    • 2008-10-09
    • US11573058
    • 2005-08-01
    • Harald GengerMartin BaeckeUlla Schoebel
    • Harald GengerMartin BaeckeUlla Schoebel
    • A61M16/16F24F6/10B01D47/02
    • A61M16/16A61M16/0066A61M16/1075A61M16/109A61M16/14
    • This invention relates to an evaporator comprising a casing (1; 21) and a heater (7; 27). Gas is supplied through an inlet (4; 24) and discharged through an outlet (5; 25). The casing forms an evaporating space (2; 22) and a heating space (3; 33) heated by the heater (7; 27). The evaporating space (2; 22) may be partially filled with a liquid (16; 36). The gas flows from the inlet (4; 24) via the heating space (3; 23) to the evaporating space (2; 22) and further to the outlet (5; 25). This invention moreover relates to an evaporator comprising an outer and an inner tub. The outer tub is heated. The inner tub may contain a water reserve and is inserted into the outer tub. The upper side of the bottom of the outer tub (8; 28) or the underside of the bottom of the inner tub (10; 30) is made of a soft elastic material. The invention finally relates to corresponding methods.
    • 本发明涉及一种包括壳体(1; 21)和加热器(7; 27)的蒸发器。 气体通过入口(4; 24)供应,并通过出口(5; 25)排出。 壳体形成由加热器(7; 27)加热的蒸发空间(2; 22)和加热空间(3; 33)。 蒸发空间(2; 22)可以部分地填充有液体(16; 36)。 气体从入口(4; 24)经由加热空间(3; 23)流到蒸发空间(2; 22),并进一步从出口(5; 25)流出。 本发明还涉及一种包括外桶和内桶的蒸发器。 外桶加热。 内桶可以包含储水部,并且插入外桶中。 外桶(8; 28)的底部的上侧或内桶(10; 30)的底部的下侧由柔软的弹性材料制成。 本发明最终涉及相应的方法。
    • 10. 发明申请
    • Side channel compressor with housing shells and running wheel
    • 侧通道压缩机带外壳和行车轮
    • US20070231121A1
    • 2007-10-04
    • US11786451
    • 2007-04-11
    • Martin BaeckePeter HartungIugo Muller
    • Martin BaeckePeter HartungIugo Muller
    • F04D5/00
    • F04D23/008F04D29/083F04D29/622
    • The invention relates to a side channel compressor, comprising a housing shell and a running wheel. The running wheel is mounted to be rotatable with respect to the housing shell to provide two annular sealing areas between the housing shell and the running wheel. The housing shell between the first and the second sealing area can be made of one piece. The gap dimensions of the first and second sealing areas can be adjusted by means of a disc spring/nut system or a wobble means. A fan impeller may be fixed on the motor shaft, and the housing shell can comprise cooling ribs, wherein the cooling ribs are arranged and formed such that the air conveyed by the fan impeller sweeps through the cooling ribs. One of the annular sealing areas can include a dead volume chamber. The housing shell may be a casting or a machined extruded profile.
    • 本发明涉及一种侧通道压缩机,包括壳体壳体和行走轮。 运行轮被安装成能够相对于壳体壳体旋转,以在壳体壳体和行驶轮之间提供两个环形密封区域。 第一和第二密封区域之间的壳体壳体可以由一个部件制成。 第一和第二密封区域的间隙尺寸可以通过盘簧/螺母系统或摆动装置来调节。 风扇叶轮可以固定在电动机轴上,并且壳体壳体可以包括冷却肋,其中冷却肋被布置和形成,使得由风扇叶轮输送的空气扫过冷却肋。 环形密封区域中的一个可以包括死体积室。 外壳可以是铸造或加工的挤压型材。