Cable stacker, cable-processing apparatus comprising a cable stacker, and method for safely conveying a cable
US-2024150137-A1 · May 9, 2024 · US
US9787047B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9787047-B2 |
| Application number | US-201514705833-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 6, 2015 |
| Priority date | May 12, 2014 |
| Publication date | Oct 10, 2017 |
| Grant date | Oct 10, 2017 |
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A sensor includes a sensor element and a conductive wire. The sensing element includes a sensing portion and a terminal wire extending from the sensing portion. The sensing portion has an electrical characteristic that changes in accordance with a change in an atmosphere. The conductive wire is for communicating an electrical signal from the sensor element. The conductive wire includes a plurality of conductors twisted together. The terminal wire and the conductive wire are arranged in a longitudinal direction of the sensor and are connected to each other by welding. The conductive wire includes a first weld portion formed by integrating the plurality of conductors in the longitudinal direction by welding. The terminal wire and the conductive wire are connected to each other through a second weld portion, and the second weld portion is formed only in a region longitudinally overlapping the first weld portion.
Opening claim text (preview).
What is claimed is: 1. A sensor comprising: a sensor element including a sensing portion and a terminal wire extending from the sensing portion, the sensing portion having an electrical characteristic that changes in accordance with a change in an atmosphere around the sensing portion; and a conductive wire for communicating an electrical signal from the sensor element, the conductive wire including a plurality of conductors twisted together and having ends in a longitudinal direction of the sensor, the terminal wire and the conductive wire arranged in the longitudinal direction and connected to each other by welding, wherein, a portion of the conductive wire extending in the longitudinal direction is welded to integrate the plurality of conductors therein and to form a first weld portion, the first weld portion is formed by continuously integrating the plurality of conductors from their ends in the longitudinal direction, and the terminal wire and the conductive wire are connected to each other through a second weld portion, the second weld portion formed only in a region longitudinally overlapping the first weld portion. 2. A sensor according to claim 1 , wherein a longitudinal length of the first weld portion is equal to or more than ½ of a length of portions of the plurality of conductors projecting from an insulating cover layer covering the plurality of conductors. 3. A sensor according to claim 1 , wherein a maximum width of the terminal wire is smaller than a maximum width of the first weld portion. 4. A method of producing a sensor comprising a sensor element including a sensing portion and a terminal wire extending from the sensing portion, the sensing portion having an electrical characteristic that changes in accordance with a change in an atmosphere around the sensing portion, and a conductive wire for communicating an electrical signal from the sensor element, the conductive wire including a plurality of conductors twisted together, the terminal wire and the conductive wire arranged in a longitudinal direction of the sensor and connected to each other by welding, the method comprising: a first step of melting by first welding a portion of the conductive wire in the longitudinal direction to integrate the plurality of conductors therein and to form a first weld portion by placing the plurality of conductors in a groove of a guide member, the groove having a prescribed width, and forming the first weld portion while the conductors are restrained from spreading in a width direction thereof; and a second step of placing the terminal wire on the conductive wire such that the terminal wire and the conductive wire overlap each other in the longitudinal direction to form an overlapping region extending over at least part of the first weld portion, and then forming a second weld portion by second welding the terminal wire to the conductive wire only in a region overlapping the first weld portion and within the overlapping region. 5. The method of producing a sensor according to claim 4 , wherein the second step is performed in a state in which the overlapping region is formed by placing the terminal wire on the plurality of conductors disposed in the groove of the guide member.
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