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    • 72. 发明申请
    • CONNECTOR FOR WEARABLE ELECTRONICS
    • 耐磨电子连接器
    • WO2006070326A1
    • 2006-07-06
    • PCT/IB2005/054382
    • 2005-12-22
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHSCHMIDT, RalfDAHLHOFF, Knut
    • SCHMIDT, RalfDAHLHOFF, Knut
    • A61B5/0478H01R13/62H01R13/71
    • H01R13/62H01R13/71H01R2201/12
    • An electrical connector is described which comprises a first unit, a second unit, each unit bearing an electrical contact, the first unit comprising a protruding portion (103), the second unit comprising a receiving portion (102), wherein both the protruding portion and the receiving portion have substantially planar matching shapes, the protruding portion is arranged to be insertable into the receiving portion along an axis substantially perpendicular to each substantially planar matching shape, and the protruding portion and the receiving portion are arranged to be rotatable relative to each other about the axis thereby bringing the electrical contacts into alignment. The connector is particularly suitable for use in wearable electronics and solves the problem of how to arrange a connector which is easy to connect up, particularly by the old or infirm.
    • 描述了一种电连接器,其包括第一单元,第二单元,每个单元承载电接触,所述第一单元包括突出部分(103),所述第二单元包括接收部分(102),其中所述突出部分和 接收部分具有基本上平面的匹配形状,突出部分被布置成沿着基本上垂直于每个基本上平面的匹配形状的轴可插入到接收部分中,并且突出部分和接收部分布置成可相对于彼此旋转 关于轴线,从而使电触点对准。 该连接器特别适用于可穿戴式电子设备,并且解决了如何布置容易连接的连接器的问题,特别是老式或不牢固的连接器。
    • 79. 发明申请
    • METHOD OF DETERMINING THE QUANTITY OF RADIATION ABSORBED BY A RADIATION SENSOR
    • 确定辐射传感器吸收的辐射量的方法
    • WO2002077667A1
    • 2002-10-03
    • PCT/IB2002/000958
    • 2002-03-20
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS CORPORATE INTELLECTUAL PROPERTY GMBHSCHMIDT, RalfECK, Kai
    • SCHMIDT, RalfECK, Kai
    • G01T1/40
    • G01T1/40
    • The invention relates to a method for the calibration of a radiation sensor, in which method a first calibration takes place with external radiation x and an internal signal s of the radiation sensor, and in which later calibrations are carried out exclusively with the internal signal. This enables the calculation of an approximate value x*(t) for the quantity of radiation x(t) absorbed in a radiation sensor (10) while taking into account a behavior of the radiation sensor that changes in time. First the primary characteristic ft1(x) is measured at a first instant t 1 ; this characteristic describes the dependency of an output signal o on the absorbed quantity of radiation x. At the same time the secondary characteristic g t2 (s) is measured, which characteristic describes the dependency of the output signal o on an internal signal s. The signals s and x should together form an intermediate signal w that is further processed with a function D(w,t) that varies in time in order to form the output signal o. The secondary characteristic is measured again at a later instant t 3 after the occurrence of aging; this measurement can be performed without utilizing (X) radiation. The calculation of the approximate value for the absorbed quantity of radiation can then be performed in conformity with the following formula: X*(t):=ft1?-1 ¿(g¿t2 (gt3?-1(o(t))))
    • 本发明涉及一种用于校准辐射传感器的方法,其中第一次校准是用外部辐射x和辐射传感器的内部信号s进行的,其中随后的校准仅用内部信号进行。 这使得能够计算在辐射传感器(10)中吸收的辐射量x(t)的近似值x *(t),同时考虑到时间变化的辐射传感器的行为。 首先,在第一时刻t> 1 <测量第一特征ft1(x) 该特征描述了输出信号o对吸收的辐射量x的依赖性。 同时测量二次特性g> t2 <(s),该特性描述了输出信号o对内部信号s的依赖性。 信号s和x应该一起形成中间信号w,该中间信号w被进一步用功能D(w,t)进行处理,该功能在时间上变化以便形成输出信号o。 在老化发生后的时间t> 3再次测量二次特性; 可以在不使用(X)辐射的情况下执行该测量。 辐射吸收量的近似值的计算可以按照下列公式进行:X *(t:= f> t1 <α-1>(gt2(gt3)(o(t) ))))