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    • 3. 发明申请
    • TEXTILE CARRIER FOR ELECTRICALLY ADDRESSING AN ELECTRONIC COMPONENT IN AN ELECTRONIC TEXTILE
    • 用于电子电纺织物电子部件的电纺织物
    • WO2010067283A1
    • 2010-06-17
    • PCT/IB2009/055502
    • 2009-12-04
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.BHATTACHARYA, RabinVAN OS, Koen
    • BHATTACHARYA, RabinVAN OS, Koen
    • H05K1/14H05K3/10D03D15/00
    • H05K1/144D03D1/0088D03D11/00D03D15/00D03D15/0027D10B2331/02D10B2331/04D10B2401/16H01R4/029H01R33/08H05K1/147H05K3/10
    • The invention relates to a textile carrier comprising a first textile member having a first electrode, and a second member having a second electrode. The first electrode has a direct electrically conductive contact to the second electrode. According to the invention, the direct electrically conductive contact is fixed by a welded connection between the first textile member and the second member. The textile carrier according to the invention can be manufactured by a method that comprises a heating step wherein an area of the first textile member comprising the first electrode is heated to form a liquefied portion of a yarn. The method further comprises a contacting step wherein the area of the first textile member is contacted to the second member to form a direct electrically conductive connection between the first electrode and the second electrode, followed by a fixing step wherein the liquefied portion is solidified to fix the electrically conductive connection between the first electrode and the second electrode. The textile carrier according to the invention can be used to electrically address an electronic component in an electronic textile, particularly in applications that require large-area electronic textiles.
    • 本发明涉及一种纺织品载体,其包括具有第一电极的第一纺织部件和具有第二电极的第二部件。 第一电极具有与第二电极的直接导电接触。 根据本发明,直接导电接触件通过第一织物构件和第二构件之间的焊接连接来固定。 根据本发明的纺织品载体可以通过包括加热步骤的方法制造,其中包括第一电极的第一织物的区域被加热以形成纱线的液化部分。 所述方法还包括接触步骤,其中所述第一织物部件的区域与所述第二部件接触以在所述第一电极和所述第二电极之间形成直接导电连接,接着是固定​​步骤,其中所述液化部分被固化以固定 第一电极和第二电极之间的导电连接。 根据本发明的纺织品载体可以用于电子地寻址电子纺织品中的电子部件,特别是在需要大面积电子纺织品的应用中。
    • 8. 发明申请
    • ELECTRONIC TEXTILE AND METHOD FOR DETERMINING A FUNCTIONAL AREA OF AN ELECTRONIC TEXTILE
    • 用于确定电子纺织品功能区域的电子纺织品和方法
    • WO2010032173A1
    • 2010-03-25
    • PCT/IB2009/053957
    • 2009-09-10
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.BHATTACHARYA, Rabin
    • BHATTACHARYA, Rabin
    • H05K1/00D03D15/00
    • H05K1/038D03D1/0088D10B2401/16H05K1/0289H05K1/162H05K1/189H05K2201/0281H05K2201/029H05K2201/10106Y10T442/3976
    • The invention relates to a method for determining a functional area of an electronic textile (100;200). The electronic textile comprises a textile substrate having a first plurality of conductors (108a-b;202a-d), a second plurality of conductors (104a-c;204a-d), and a plurality of capacitors (112;212a-p), each capacitor comprising a conductor from the first plurality of conductors (108a-b;202a-d) and a conductor from the second plurality of conductors (104a-c;204a-d), separated by a dielectric (103a), the capacitors (112;212a-p) being distributed across substantially an entire surface of the electronic textile, wherein each capacitor (112;212a-p) has a capacitance of at least 10 pF. The method comprises, for each of the capacitors, the steps of (a) applying (301) a voltage between the conductor from the first plurality of conductors associated with the capacitor and the conductor from the second plurality of conductors associated with the capacitor, (b) detecting (302) an electrical characteristic indicative of a capacitance of the capacitor, (c) evaluating (303) the detected electrical characteristic, and (d) determining (304) whether the capacitor is included in the functional area of the electronic textile based on the evaluation. As the method takes advantages of physical characteristics inherent in the electronic textile, such as the capacitors formed between conductors in the electronic textile, no electronic devices need to be arranged on the electronic textile to determine the functional area.
    • 本发明涉及一种用于确定电子织物(100; 200)的功能区域的方法。 电子纺织品包括具有第一多个导体(108a-b; 202a-d),第二多个导体(104a-c; 204a-d)和多个电容器(112; 212a-p)的织物基底, 每个电容器包括来自第一多个导体(108a-b; 202a-d)的导体和由电介质(103a)隔开的来自第二多个导体(104a-c; 204a-d)的导体,电容器 (112; 212a-p)分布在所述电子纺织品的基本上整个表面上,其中每个电容器(112; 212a-p)具有至少10pF的电容。 对于每个电容器,该方法包括以下步骤:(a)在来自与电容器相关联的第一多个导体的导体与来自与电容器相关联的第二多个导体的导体之间施加(301)电压( b)检测(302)表示电容器的电容的电特性,(c)评估(303)检测到的电特性,以及(d)确定(304)电容器是否包括在电子纺织品的功能区域 基于评估。 由于该方法利用电子纺织品固有的物理特性,例如在电子纺织品中形成的电容器之间形成的电容器,则不需要在电子纺织品上布置电子装置来确定功能区域。