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    • 5. 发明申请
    • VEHICLE WITH AIR CONDITIONER
    • 带空调的车
    • US20140138049A1
    • 2014-05-22
    • US13892285
    • 2013-05-12
    • Dirk SchroederHans HammerChristian RebingerPeter Heyl
    • Dirk SchroederHans HammerChristian RebingerPeter Heyl
    • B60H1/00
    • B60H1/00321B60H1/00921B60H2001/00957
    • The invention relates to a vehicle with an air conditioner for heating inlet air flowing into a vehicle interior, the air conditioner including: a heater heat exchanger thermally coupled through a coolant cycle with a drive unit or similar; and a supplemental heat exchanger which is connected to a refrigerant cycle of the air conditioner and which transfers heat to the inlet air in heating mode, wherein the supplemental heat exchanger is configured with at least two rows including a first heat exchanger row and a second heat exchanger row in a refrigerant flow direction, wherein the first heat exchanger row and the second heat exchanger row are arranged in a refrigerant flow direction so that super cooling of a condensed refrigerant is provided in the second heat exchanger row and at least heat extraction of the refrigerant is provided in the first heat exchanger row.
    • 本发明涉及一种具有空气调节器的车辆,该空气调节器用于加热流入车辆内部的入口空气,所述空调包括:通过冷却剂循环与驱动单元或类似物热耦合的加热器热交换器; 以及辅助热交换器,其连接到所述空调的制冷剂循环,并且以加热模式将热量传递到所述入口空气,其中所述补充热交换器配置有至少两排,包括第一热交换器排和第二热 其中,所述第一热交换器排和所述第二热交换器排布置在制冷剂流动方向上,使得在所述第二热交换器排中设置冷凝的制冷剂的超冷却,并且至少热提取所述第二热交换器排 制冷剂设置在第一热交换器排中。
    • 6. 发明申请
    • VEHICLE WITH AIR CONDITIONING SYSTEM
    • 具有空调系统的车辆
    • US20120318000A1
    • 2012-12-20
    • US13328396
    • 2011-12-16
    • DIRK SCHROEDERHans HammerPeter Heyl
    • DIRK SCHROEDERHans HammerPeter Heyl
    • F25D3/12
    • B60H1/00735B60H1/0073B60H1/00814B60H1/00828B60H1/00899
    • A vehicle includes an air conditioning system for conditioning intake air flowing into a vehicle interior. The air conditioning system has a primary heat exchanger in thermal communication with a drive unit via a coolant circuit, a compressor, and a secondary heat exchanger which is disposed jointly with the compressor in a refrigerant circuit. The secondary heat exchanger operates as a condenser in a heating mode of the air conditioning system and jointly with the primary heat exchanger gives off heat to the intake air. A control device controls operation of the refrigerant circuit in response to an input by a user. The control device includes an evaluation unit to carry out a comparison between a desired heat supply commensurate with the input by the user and a determined actual heat supply, and generates an output signal for operating the compressor in response to the comparison.
    • 车辆包括用于调节流入车辆内部的进气的空调系统。 空调系统具有通过与制冷剂回路中的压缩机一起设置的冷却剂回路,压缩机和二次热交换器与驱动单元热连通的主要热交换器。 二次热交换器在空调系统的加热模式下作为冷凝器工作,并且与主热交换器联合地将热量排放到进气。 控制装置响应于用户的输入来控制制冷剂回路的操作。 控制装置包括:评估单元,用于进行与用户的输入相对应的期望供热和确定的实际供热之间的比较,并且响应于比较生成用于操作压缩机的输出信号。
    • 7. 发明授权
    • Ultrasonic apparatus for sector scanning
    • 用于扇区扫描的超声波设备
    • US4385521A
    • 1983-05-31
    • US191450
    • 1980-09-29
    • Jurgen HagenWalter HetzGert HetzelDirk Schroeder
    • Jurgen HagenWalter HetzGert HetzelDirk Schroeder
    • A61B8/00G01S7/52G01S7/523G10K11/35G01N29/04
    • A61B8/00G01S7/52063G10K11/355A61B8/543
    • In the exemplary embodiments, the apparatus comprises: an ultrasonic transducer arrangement; a drive arranged to pivotably displace the transducer arrangement within a predetermined angular range; an actual-value generator for supplying a signal (F.sub.I (.rho.) dependent upon the angular position of the transducer arrangement within the said range; a desired-value generator for supplying a signal (F.sub.S (.rho.)) representing a desired angular position of the transducer arrangement within the said range; and a control for controlling the drive in dependence upon such signals from the actual-value and desired-value generators. The actual-value and desired-value generators are adapted to supply respective signals having the same or similar forms over a relatively large signal range within the said range.
    • 在示例性实施例中,该装置包括:超声换能器装置; 布置成在预定角度范围内可枢转地移动所述换能器装置的驱动器; 用于提供取决于所述范围内的换能器装置的角位置的信号(FI(rho))的实际值发生器;用于提供表示所述范围内的所需角度位置的信号(FS(rho))的期望值发生器 传感器布置在所述范围内;以及控制器,用于根据来自实际值和期望值发生器的这些信号来控制驱动器。实际值和期望值发生器适于提供具有相同或相似的相应信号 在所述范围内的相对大的信号范围内形成。
    • 10. 发明申请
    • Motor vehicle comprising an air conditioning system
    • 机动车辆包括一个空调系统
    • US20060218956A1
    • 2006-10-05
    • US10552203
    • 2004-04-08
    • Hans HammerDirk SchroederChristian RebingerFrank ObristFrank WolfMartin Graz
    • Hans HammerDirk SchroederChristian RebingerFrank ObristFrank WolfMartin Graz
    • B60H1/32F25D19/00
    • B60H1/00571
    • The aim of the invention is to obviate the need for rubber hoses or other flexible rubber compensation elements, which prevent the transmission of vibrations to the vehicle body. To achieve this, the pipelines of an air conditioning system including their pipe couplings (42-45) are configured entirely of metal with an external diameter, in relation to the compressor, of less than 11 mm on the discharge side and less than 13 mm on the suction side. A damping curvature (35, 36) is also configured in the pipelines (6′, 12′) that connect the compressor to a heat exchanger, in addition to at least one curvature (37-40) required by the installation geometry of the conduit system. The system is also equipped with a pipeline, designed to restrict the flow of operating fluid, said pipeline being configured as a particularly thin pipe with an internal diameter of capillary-tube type proportions, designed to restrict the flow and an external diameter ranging between 2 and 4 mm.
    • 本发明的目的是为了避免橡胶软管或其它柔性橡胶补偿元件的需要,其防止振动传递到车体。 为了实现这一点,包括其管接头(42-45)的空调系统的管道完全由相对于压缩机的外径的金属构成在排出侧小于11mm且小于13mm 在吸力侧。 除了管道的安装几何形状所需的至少一个曲率(37-40)之外,阻尼曲率(35,36)还被配置在将压缩机连接到热交换器的管道(6',12')中 系统。 该系统还配有管道,其设计用于限制工作流体的流动,所述管道被配置为具有毛细管类型比例的内径的特别薄的管道,设计成限制流量和外径在2 和4毫米。