FLAT HARNESS
20200404776 ยท 2020-12-24
Inventors
Cpc classification
H01B7/0838
ELECTRICITY
International classification
Abstract
A flat harness includes a plurality of flat circuit bodies that are stacked to each other. A mark is provided on a side surface of each of the plurality of flat circuit bodies. A position of the mark in a length direction of the flat circuit body is provided so as to be different for each type of the flat circuit body.
Claims
1. A flat harness comprising: a plurality of flat circuit bodies that are stacked to each other in a thickness direction, wherein a mark is provided on a side surface of each of the plurality of flat circuit bodies and extends in the thickness direction; and wherein a position of the mark in a length direction of each of the plurality of flat circuit bodies is provided so as to be different for each type of the plurality of flat circuit bodies.
2. The flat harness according to claim 1, wherein the mark is provided by coloring.
3. The flat harness according to claim 2, wherein a color or a shape of the mark is different for each type of the plurality of flat circuit bodies.
4. The flat harness according to claim 1, wherein a distance in the length direction of each of the plurality of flat circuit bodies from a reference position of each of the plurality of flat circuit bodies to the position of the mark is different for each type of the plurality of flat circuit bodies.
5. The flat harness according to claim 4, wherein each of the plurality of flat circuit bodies has a bent portion formed by bending and overlapping a part of each of the plurality of flat circuit bodies; and wherein the bent portion is the reference position.
6. The flat harness according to claim 4, wherein the plurality of flat circuit bodies are stacked so that distances from the reference positions to the positions of the marks in the plurality of flat circuit bodies increase toward one side in the thickness direction of the plurality of flat circuit bodies.
7. The flat harness according to claim 1, wherein the mark is provided directly on the side surface of each of the plurality of flat circuit bodies.
8. The flat harness according to claim 1, wherein the side surface of each of the plurality of flat circuit bodies is flush with the side surface of each other of the plurality of flat circuit bodies in a width direction.
9. The flat harness according to claim 1, wherein the mark is uniform symbol on the side surface of each of the plurality of flat circuit bodies.
10. The flat harness according to claim 1, wherein the side surface of each of the plurality of flat circuit bodies extends perpendicular to a width direction.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION OF THE EXEMPLARY EMBODIMENTS
[0026] A specific embodiment of the present invention will be described below with reference to the drawings.
[0027] A flat harness 1 of the present embodiment shown in
[0028] As shown in
[0029] The conductive portions 21 are each provided in a long sheet shape, and the plurality of conductive portions 21 are arranged side by side at intervals in a width direction D1. The pair of insulating covering portions 22, 22 is also provided in a long sheet shape, and covers the plurality of conductive portions 21 with both sides thereof sandwiched in a thickness direction D2. In an example shown in
[0030] As shown in
[0031] As shown in
[0032] In the present embodiment, the marking M1 provided on the flat circuit body 2 stacked on the top in
[0033] According to the flat harness 1 described above, the markings M1 to M3 are provided on the side surfaces S1 of the flat circuit bodies 2. In addition, the distances from the respective bent portions 23 to the markings M1 to M3 are different for each type of the flat circuit bodies 2. In other words, positions of the markings M1 to M3 in the length direction D3 are different for each type of the flat circuit bodies 2. Accordingly, the flat circuit body 2 can be identified by the positions of the markings M1 to M3 in the length direction D3 (the distances from the respective bent portions 23 to the markings M1 to M3). Therefore, the flat circuit body 2 can be easily identified at low cost.
[0034] According to the flat harness 1 described above, the markings M1 to M3 are provided by coloring. Accordingly, the markings M1 to M3 can be easily provided. In addition, since the distances from the respective bent portions 23 to the markings M1 to M3 are different for each type of the flat circuit bodies 2, even if the markings M1 to M3 are each provided by coloring on a portion having a small area such as the side surface S1, the flat circuit body 2 can be easily identified.
[0035] In the flat harness 1 described above, it is possible to identify the flat circuit body 2 and to easily determine whether or not there is an error in a laminating order of the flat circuit body 2 only by visually recognizing the side surface S1 as described above. However, as shown in
[0036] In the flat harness 1 described above, in the plurality of flat circuit bodies 2, the distances from the bent portions 23 to the markings M1 to M3 become longer as the arrangement positions go downward in the thickness direction D2. As a result, it is possible to easily recognize whether or not there is an error in the lamination of the flat circuit body 2.
[0037] The identification of the flat circuit body 2 using the identification jig 10 will be described. Hereinafter, as shown in
[0038] The identification jig 10 is provided in a substantially cubic shape, includes a bottom wall (not shown) and three side walls 11 to 13 erecting from the bottom wall, and has an elongated groove portion 14 formed therein. A periphery of the bent portion 23 of the flat harness 1 is inserted into the groove portion 14. The side walls 11, 12 are spaced apart from each other in a width direction D4 of the groove portion 14 and form the groove portion 14 therebetween. One side (a lower side in the figure) of the groove portion 14 in a depth direction D5 is closed by the bottom wall (not shown), and another side (an upper side in the figure) of the groove portion 14 in the depth direction D5 is opened. In addition, one side (a right side in the figure) of the groove 14 in a longitudinal direction D6 is opened, and another side (a left side in the figure) of the longitudinal direction D6 is closed by the side wall 13.
[0039] The operator inserts the periphery of the bent portion 23 of the flat harness 1 into the groove portion 14 so that the side surface portion S21 of the flat circuit body 2 abuts against the bottom wall (not shown) of the identification jig 10 and the side surface portion S12 abuts against the side wall 13. When the flat harness 1 is inserted into the groove portion 14 of the identification jig 10 in this manner, as shown in
[0040] As shown in
[0041] As a result, as shown in
[0042] On the other hand, as shown in
[0043] According to the embodiment described above, since the markings M1 to M3 are respectively provided on the flat circuit bodies 2 with the bent portions 23 as the reference positions, each of the flat circuit bodies 2 can be identified more easily using the identification jig 10 as shown in
[0044] The present invention is not limited to the embodiment described above, and may be appropriately modified, improved, or the like. In addition, materials, shapes, dimensions, numbers, arrangement positions or the like of elements in the embodiment described above are optional and not limited as long as the present invention can be achieved.
[0045] According to the embodiment described above, the distances between the respective bent portions 23 and the markings M1 to M3 are different for each type of the flat circuit bodies 2, but the present invention is not limited thereto. The colors and shapes of the markings M1 to M3 may be different depending on the type of the flat circuit bodies 2. In this case, the colors of the markings M1 to M3 may be different for each form of the flat circuit bodies 2, and the shapes of the markings M1 to M3 may be different for each shape (the different lengths, or the like) of the flat circuit bodies 2. In an example shown in
[0046] According to the embodiment described above, the correct laminating order of the flat circuit body 2 is shown in
[0047] According to the embodiment described above, the reference position of the flat circuit body 2 is the bent portion 23, but the present invention is not limited thereto. As the reference position, an end portion of the flat circuit body 2 may be set as the reference position.
[0048] According to the embodiment described above, a mark (the markings M1 to M3) provided on the side surface S1 of the flat circuit body 2 is provided by coloring, but the present invention is not limited thereto. The mark may be provided by cutting out the side surface S1 or by protruding a tab.