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BIOELECTRODE AND ELECTRIC CONNECTION STRUCTURE OF INTERLAYER

机译:中间层的生物电极和电连接结构

摘要

PROBLEM TO BE SOLVED: To provide a bioelectrode formed in a laminated structure that eliminates a conventional problem of the generation of dirt on a printing stand caused by the formation of a through-hole, and reduces manufacturing man-hours by eliminating the need to carry out electric connection in the interlayer by a separate process.;SOLUTION: A bioelectrode for acquiring a biological signal from one or more measurement electrodes is formed in a laminated structure in which an insulation material layer consisting of an insulation material and a conductive material layer consisting of a conductive material are alternately laminated. The conductive material layer includes a circuit layer for transmitting a biological signal acquired by the measurement electrodes and two or more shield layers present on both sides in the thickness direction of the circuit layer. At least any two shield layers are electrically connected to each other in the part more expanded in a width direction than the insulation material layer present between them, and/or an opening part provided to the insulation material layer that penetrates in a thickness direction.;SELECTED DRAWING: Figure 1;COPYRIGHT: (C)2019,JPO&INPIT
机译:解决的问题:提供一种以层叠结构形成的生物电极,该电极消除了因通孔的形成而在印刷机上产生污垢的常规问题,并通过消除了携带的需要而减少了制造工时解决方案:解决方案:一种用于从一个或多个测量电极获取生物信号的生物电极以层压结构形成,该层压结构中的绝缘材料层由绝缘材料组成,而导电材料层则由绝缘材料组成导电材料被交替地层压。导电材料层包括用于传输由测量电极获取的生物信号的电路层以及在电路层的厚度方向上的两侧存在的两个或更多个屏蔽层。至少两个屏蔽层在宽度方向上比它们之间存在的绝缘材料层更宽的部分和/或设置在绝缘材料层上的沿厚度方向穿透的开口部分彼此电连接。选图:图1;版权:(C)2019,JPO&INPIT

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