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    • 1. 发明申请
    • REMOTE CONTROL CODES
    • 远程控制代码
    • WO2009107029A1
    • 2009-09-03
    • PCT/IB2009/050636
    • 2009-02-17
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.THISSEN, Rogier, L., J., W.D'HOORE, Michael, W., P.HELLEMANS, Lucas, G., J.
    • THISSEN, Rogier, L., J., W.D'HOORE, Michael, W., P.HELLEMANS, Lucas, G., J.
    • G01C19/28G08C23/04
    • G08C19/28G08C23/04G08C2201/21G08C2201/50G08C2201/92
    • In an apparatus (1), such as a database or a processor/memory combination of a remote control system (10), for supplying for example infrared codes defining functions for remotely controlling devices, code-sets comprise function-code-combinations for each one of two/more different functions. By distinguishing main- functions such as power on/off and sub-functions such as channel up/down and volume up/down, code-sets can be allocated to a group of code-sets for a target device in case a code of a function-code-combination for the main- function is valid for the target device. This increases an efficiency of the apparatus (1). The group of code-sets may form a tree, whereby the main- function and its code(s) form a root of the tree, whereby a sub-function forms a branch of the tree and a code or codes defining this sub-function form a leaf or leaves of the branch. The group of code-sets may be defined for device-types and/or device-brands.
    • 在用于提供例如定义用于远程控制设备的功能的红外代码的诸如数据库或远程控制系统(10)的处理器/存储器组合的装置(1)中,代码集包括用于每个的功能代码组合 两个/更多不同功能之一。 通过区分诸如电源开/关的主要功能以及诸如通道上/下和音量上/下的子功能,可以将代码集分配给目标设备的一组代码集,以防万一代码 主要功能码组合对目标设备有效。 这提高了装置(1)的效率。 代码集的组可以形成一个树,由此主函数及其代码形成树的根,由此子函数形成树的分支和定义该子函数的代码或代码 形成分枝的叶子或叶子。 可以为设备类型和/或设备品牌定义一组代码集。
    • 2. 发明申请
    • SURVEYING GYROSCOPE
    • SURVEYING KREISEL
    • WO2009052947A8
    • 2009-07-16
    • PCT/EP2008008481
    • 2008-10-08
    • DMT GMBH & CO KGNIESE JOERGFRANZEN RUDOLF
    • NIESE JOERGFRANZEN RUDOLF
    • G01C19/28G01C19/38
    • G01C19/28G01C19/38
    • Surveying gyroscope for measuring the deviation from north, having a rotatable device housing in which a gyroscope pendulum which is suspended from a supporting band in a freely oscillating manner is arranged, an optoelectronic angle pick-off for detecting the rotary oscillations of the gyroscope pendulum, a central control and evaluation processor, a releasable locking means for the gyroscope pendulum, and a releasable clamping apparatus for fastening the rotatable housing in particular positions, wherein sensors for measuring state variables are arranged in the gyroscope pendulum, said sensors being connected to a microcontroller which is connected to the central control and evaluation processor using a wireless bidirectional transmission apparatus.
    • 测量陀螺仪,用于测量北托盘用旋转设备壳体,其中,摆动自由地从一个携带式带离心力摆布置的光电角度用于检测离心力摆,一个中央控制和分析的处理器,可释放的锁定机构,用于所述的旋转振荡的悬浮 离心摆以及用于确保与用于状态变量的测量传感器的某些位置的可转动的外壳可释放的夹紧装置被布置在连接到与无线双向传输设备向所述中央控制和分析处理器相连接的微控制器中的离心力摆。
    • 5. 发明申请
    • VERMESSUNGSKREISEL
    • SURVEYING KREISEL
    • WO2009052947A1
    • 2009-04-30
    • PCT/EP2008/008481
    • 2008-10-08
    • DTM GMBH & CO. KGNIESE, JörgFRANZEN, Rudolf
    • NIESE, JörgFRANZEN, Rudolf
    • G01C19/28G01C19/38
    • G01C19/28G01C19/38
    • Vermessungskreisel zur Messung der Nord-Ablage mit einem drehbaren Gerätegehäuse, in dem ein an einem Trageband frei schwingend aufgehängtes Kreiselpendel angeordnet ist, einem opto-elektronischen Winkelabgriff für die Erfassung der Drehschwingungen des Kreiselpendels, einem zentralen Steuer- und Auswerteprozessor, einer lösbaren Arretierung für das Kreiselpendel und einer lösbaren Klemmvorrichtung für die Befestigung des drehbaren Gehäuses in bestimmten Positionen, wobei in dem Kreiselpendel Sensoren zur Messung von Zustandsgrößen angeordnet sind, die mit einem Mikrocontroller verbunden sind, der mit einer drahtlosen bidirektionalen Übertragungsvorrichtung an den zentralen Steuer- und Auswerteprozessor angeschlossen ist.
    • 测量陀螺仪,用于测量北托盘用旋转设备壳体,其中,摆动自由地从一个携带式带离心力摆布置的光电角度用于检测离心力摆,一个中央控制和分析的处理器,可释放的锁定机构,用于所述的旋转振荡的悬浮 离心摆以及用于确保与用于状态变量的测量传感器的某些位置的可转动的外壳可释放的夹紧装置被布置在连接到与无线双向传输设备向所述中央控制和分析处理器相连接的微控制器中的离心力摆。
    • 6. 发明申请
    • HANDHELD GYROSCOPIC EXERCISE DEVICE
    • 手持式运动锻炼装置
    • WO2005042107A3
    • 2006-09-21
    • PCT/US2004033833
    • 2004-10-14
    • DWORZAN WILLIAM S
    • DWORZAN WILLIAM S
    • A63B23/14A63B20060101A63B21/22G01C19/06G01C19/16G01C19/24G01C19/28G01C19/34G01C19/44
    • A63B21/22A63B21/222A63B23/14
    • A gyroscopic exercise device has a pair of handles attached to a housing. A user holds and rotates the handles along a cone-like path causing precession of a rotor, which is rotating about its spin axis, to provide resistance to the user. The device has a ring guide that holds ends of a shaft, which is coupled to the rotor. The periphery of the ring guide and the ends of the shaft are within a circular race defined by the housing. A motor attached to the ring guide drives a wheel that rotates the rotor about a spin axis by using energy provided by batteries in one of the handles. The energy passes through a conducting conduit that rotates about the precession axis. The ring guide, motor, and rotor can rotate together during precession of the rotor.
    • 陀螺仪锻炼装置具有连接到壳体的一对把手。 用户沿着锥形路径保持和旋转把手,引起围绕其旋转轴线旋转的转子的进动,以提供对使用者的抵抗力。 该装置具有环形引导件,其保持连接到转子的轴的端部。 环形引导件的周边和轴的端部在由壳体限定的圆形外圈内。 附接到环形引导件的电动机通过使用其中一个手柄中的电池提供的能量驱动转子围绕旋转轴旋转的车轮。 能量通过围绕进动轴线旋转的导管。 环形导轨,电动机和转子可在转子进动期间一起旋转。
    • 7. 发明申请
    • TWO DEGREE OF FREEDOM GYRO HAVING AN AXIAL GAP PERMANENT MAGNET MOTOR
    • 具有轴向间隙永磁电机的两度自由陀螺仪
    • WO1980001950A1
    • 1980-09-18
    • PCT/US1980000188
    • 1980-02-27
    • NORTHROP CORP
    • NORTHROP CORPGROHE L
    • G01C19/28
    • G01C19/08G01C19/20G01C19/28Y10T74/1225Y10T74/125Y10T74/1275Y10T74/1282
    • A two degree of freedom gyro having an axial gap, permanent magnet motor (72). The gyro housing (14) supports a stator having two sets of quadrature wound series-connected coils (39a, 39b) (39c, 39d). The principal axis of each coil is parallel to a spin reference axis (Z) with which first (A) and second (B) input axes are mutually orthogonal, each set of coils being annularly arranged about the spin reference axis. The rotor (42, 44) of the motor is rotatable about a spin axis and rotationally displaceable about the two input axes. The rotor includes a set of permanent magnets (46, 48) supported annularly about the spin axis, the magnetic moments of adjacent magnets being oppositely directed and the flux from the magnets is coupled to the stator coils. A magnetic flux return ring (50) completes the path for flux passing through the coils. An excitation network (70) detects back emf in the coils and generates control signals for driving alternate currents having a 90 relative phase shift in the respective coils but in phase with the detected back emf in the respective coils. A further network detects rotational displacement of the rotor about the input axes and generates appropriate signals for torquers (72, 76) which serve to maintain the rotor in a position where its spin axis is substantially coincident with the spin reference axis.