Elevator wiring holder and elevator

The elevator wiring holder with a cylindrical member and attachment arms allows easy attachment and detachment, addressing the inflexibility of existing systems by enabling flexible wiring route changes and reusability during modernization.

JP7776036B1Active Publication Date: 2025-11-26MITSUBISHI ELECTRIC BUILDING SOLUTIONS CORP +1
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Patent Information

Application Number
JP2025032903
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2025-11-26
Estimated Expiration
2045-03-03

AI Technical Summary

Technical Problem

Existing elevator wiring systems lack flexibility in accommodating changes to the wiring route during renovation or modernization, as they are fixed to the outside of the car and do not allow easy detachment or reconfiguration.

Method used

An elevator wiring holder with a cylindrical member and an attachment member that can be easily attached and detached from the car, allowing cables to be routed along the outer surface of the car, with arms and screw holes for secure attachment.

Benefits of technology

Enables easy attachment and detachment of the wiring holder, facilitating flexible wiring route changes and reusability during modernization work, and allowing wiring from multiple angles without limiting to the landing side of the car.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide an elevator wiring holder that can be easily attached to and detached from a car, and an elevator equipped with the same. [Solution] The present invention provides an elevator cable holder 100 for holding cables arranged in the vertical direction along the outer surface of a side of a car, the elevator cable holder 100 including a cylindrical tubular member 110 through which the cables are passed, and an attachment member 150 for detachably attaching the tubular member 110 to the car. The attachment member 150 has a first arm 120 and a second arm 130 connected to the tubular member 110, and when attaching the tubular member 110 to the car, the first arm 120 faces the outer surface of the upper part of the car, and the second arm 130 faces the outer surface of the lower part of the car, and one or both of the first arm 120 and the second arm 130 are provided with screw holes 140 into which attachment screws are threaded in the vertical direction.
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Description

[Technical Field]

[0001] The present disclosure relates to an elevator wiring retainer for retaining cables arranged in the vertical direction along the outer side surface of a car, and to an elevator. [Background technology]

[0002] When laying wiring connecting equipment installed on top of an elevator car with equipment located under or in the middle of the car, in order to facilitate the installation work of the wiring along the side panels of the car, Patent Document 1 discloses that relay means for relaying the wiring on top of the car with the wiring under or in the middle of the car is attached and fixed to the outside of the side panels of the car. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Publication No. 2-233487 Summary of the Invention [Problem to be solved by the invention]

[0004] When carrying out renovation work such as remodeling or renewal of an elevator, changes to the layout may require changes to the wiring route. However, Patent Document 1 only discloses that relay means are attached and fixed to the outside of the side panel of the car, and does not disclose a configuration that can accommodate changes to the wiring route, etc.

[0005] Therefore, an object of the present disclosure is to provide an elevator wiring holder that can be easily attached to and detached from a car, and an elevator equipped with the same. [Means for solving the problem]

[0006] The elevator wiring holder according to the present disclosure is an elevator wiring holder for holding a cable arranged in the vertical direction along the outer surface of a side of a car, and includes: a cylindrical member through which the cable is passed; As if pinching the basket vertically, and an attachment member for detachably attaching the cylindrical member to the car. [Effects of the Invention]

[0007] The elevator wiring holder and elevator according to the present disclosure can be easily attached to and detached from the car. [Brief explanation of the drawings]

[0008] [Figure 1] 1 is a conceptual diagram showing an elevator according to a first embodiment. [Figure 2] FIG. 2 is a perspective view of a car according to the first embodiment. [Figure 3] 1 is a perspective view of an elevator wiring holder according to a first embodiment. [Figure 4] 3 is a diagram showing how the elevator wiring holder according to the first embodiment is attached to a car. FIG. [Figure 5] 10A and 10B are diagrams showing a modified example of the wire holder according to the first embodiment. [Figure 6] 3 is a diagram showing an elevator wire holder in which an opening is provided in a tubular member according to the first embodiment. FIG. [Figure 7] 1 is a view showing an elevator wire holder in which a tubular member according to the first embodiment has an extension portion. FIG. [Figure 8] FIG. 10 is a diagram showing an elevator wiring holder according to a second embodiment. [Figure 9] 10 is a view showing an elevator wire holder in which a tubular member according to a second embodiment has a storage portion. FIG. DETAILED DESCRIPTION OF THE INVENTION

[0009] Embodiment 1 An elevator cable holder 100 according to a first embodiment and an elevator 1 equipped with the same will be described with reference to FIGS. 1 to 7. FIG. 1 is a conceptual diagram showing the elevator 1 according to the embodiment. In the following description, the directions of "up" and "down" are identified as shown by the arrows in FIG. 1. The vertically upward direction is defined as "up," and the vertically downward direction is defined as "down." The elevator 1 includes a car 10 that moves up and down within a hoistway 2, and an elevator cable holder 100 that is detachably attached to the car. The box-shaped car 10 has an upper outer surface 11, a side outer surface 12, and a lower outer surface 13. An on-car station 20 is provided on the upper outer surface 11, and an under-car equipment 30 is provided on the lower outer surface 13. The elevator cable holder 100 is attached to the side outer surface 12 to hold cables connecting the on-car station 20 and the under-car equipment 30.

[0010] FIG. 2 is a perspective view of the car 10 provided with the over-car station 20, the elevator cable holder 100, and the under-car equipment 30. The over-car station 20 transmits operation control commands for the car 10 to a control panel (not shown). As shown in FIG. 2, a cable extends from the over-car station 20 and is referred to as the over-car cable 21. The under-car equipment 30 is equipment provided on the lower outer surface 13 of the car 10, such as an electronic chime, an emergency stop switch, and an inspection light. A cable extends from the under-car equipment 30 and is referred to as the under-car cable 31. The over-car cable 21 and the under-car cable 31 are connected via a joint cable 300. That is, on the side outer surface 12, a portion of the over-car cable 21 (the end on the side outer surface), a portion of the under-car cable 31 (the end on the side outer surface), and the joint cable 300 connecting these cables are arranged in the vertical direction.

[0011] The elevator cable retainer 100 holds cables arranged in the vertical direction along the outer side surface 12 of the car 10. FIG. 3 is a perspective view of the elevator cable retainer 100. As shown in FIG. 3, the elevator cable retainer 100 includes a tubular member 110 and an attachment member 150.

[0012] The tubular member 110 has a tubular shape through which cables such as the car upper cable 21, the car lower cable 31, and the joint cable 300 are passed. The tubular member 110 has a tubular shape with a rectangular cross section when viewed from the axial direction, for example. The tubular member 110 is arranged on the side outer surface 12 of the car 10 so that the axial direction of the tubular member 110 is the up-down direction, and is attached to the car 10 by an attachment member 150, which will be described later.

[0013] The surface of the tubular member 110 that faces the side outer surface 12 of the car 10 when the tubular member 110 is attached to the car 10 is referred to as the facing surface. A slit 114 may be formed at the upper end of the facing surface to route the over-car cables 21 along the upper outer surface 11. A slit may be formed at the lower end of the facing surface to route the under-car cables 31 along the lower outer surface 13. The tubular member 110 is desirably thin so as not to interfere with the hoistway 2 when attached to the car 10. Here, the thickness of the tubular member 110 is the length from the outer surface of the wall that forms the facing surface of the tubular member 110 to the outer surface of the wall that forms the surface opposite the facing surface. In addition, in this embodiment, the axial length of the tubular member 110 is longer than the vertical length of the side outer surface 12 of the car 10. The tubular member 110 is made of a lightweight metal material, such as aluminum.

[0014] The mounting member 150 detachably mounts the tubular member 110 to the car 10. The mounting member 150 has a first arm 120 and a second arm 130 connected to the car 10.

[0015] The first arm 120 faces the upper outer surface 11 of the car 10 when the tubular member 110 is attached to the car 10. The first arm 120 is connected, for example, to the upper end of the tubular member 110 or near the upper part. The second arm 130 faces the lower outer surface 13 of the car 10 when the tubular member 110 is attached to the car 10. The second arm 130 is connected, for example, to the lower end of the tubular member 110 or near the lower part. In other words, the first arm 120 and the second arm 130 are provided on the tubular member 110 so that the car 10 is sandwiched between the first arm 120 and the second arm 130 in the vertical direction.

[0016] Further, either or both of the first arm 120 and the second arm 130 are provided with screw holes 140 into which mounting screws 200 are screwed in the vertical direction. Below, a case where screw holes 140 are provided in both the first arm 120 and the second arm 130 will be described. The mounting screws 200 are screwed from top to bottom into the screw holes 140 of the first arm 120. The mounting screws 200 are screwed from bottom to top into the screw holes 140 of the second arm 130.

[0017] A wiring method between the above-car station 20 and the below-car equipment 30 using the elevator cable retainer 100 will be described with reference to Fig. 4. Fig. 4 is a diagram showing how a worker attaches the elevator cable retainer 100 to the car 10. First, as shown in Fig. 4(a), the worker places the elevator cable retainer 100 on the side outer surface 12 of the car 10. At this time, the first arm 120 is positioned opposite the upper outer surface 11 of the car 10, and the second arm 130 is positioned opposite the lower outer surface 13 of the car 10. Note that a joint cable 300 has been temporarily fixed inside the tubular member 110 in advance.

[0018] 4(b), a worker on top of the car 10 screws the mounting screw 200 into the screw hole 140 of the first arm 120. Also, a worker in the pit screws the mounting screw 200 into the screw hole 140 of the second arm 130. The mounting screw 200 screwed into the first arm 120 is tightened downward until the tip of the mounting screw 200 comes into contact with the upper outer surface 11 of the car 10. Also, the mounting screw 200 screwed into the second arm 130 is tightened upward until the tip of the mounting screw 200 comes into contact with the lower outer surface 13 of the car 10. In this way, the elevator wiring holder 100 is attached to the car 10.

[0019] Next, a worker connects the over-car cable 21 and the under-car cable 31 via the joint cable 300. More specifically, the over-car cable 21 and the joint cable 300 are connected so that the connection portion between the connector of the over-car cable 21 and the connector at one end of the joint cable 300 is positioned inside the tubular member 110. The under-car equipment cable 31 and the joint cable 300 are also connected so that the connection portion between the connector of the under-car equipment cable 31 and the connector at the other end of the joint cable 300 is positioned inside the tubular member 110. Finally, the temporary fixation between the tubular member 110 and the joint cable 300 is released, completing the wiring between the over-car station 20 and the under-car equipment 30 using the elevator wire holder 100.

[0020] Furthermore, by loosening the mounting screws 200 fastened to the first arm 120 and the second arm, the elevator wiring holder 100 is released from its attachment to the car 10, and the elevator wiring holder 100 can be removed from the car 10.

[0021] As described above, the elevator cable holder 100 according to the first embodiment includes a cylindrical member 110 through which a cable is passed, and an attachment member 150 that detachably attaches the cylindrical member 110 to the car 10. The attachment member 150 has a first arm 120 and a second arm 130 connected to the cylindrical member 110, and when attaching the cylindrical member 110 to the car 10, the first arm 120 faces the upper outer surface 11 of the car 10, and the second arm 130 faces the lower outer surface 13 of the car 10, and one or both of the first arm 120 and the second arm 130 are provided with screw holes into which attachment screws are threaded in the vertical direction. This allows the elevator cable holder 100 to be easily attached to and detached from the car.

[0022] Furthermore, since the elevator wiring holder 100 can be easily attached to and detached from the car 10, the wiring route and layout can be easily changed.

[0023] Furthermore, since the elevator cable holder 100 can be easily attached to and detached from the car 10, the elevator cable holder 100 can be reused during modernization work.

[0024] Furthermore, when attaching the elevator wiring holder 100 to the car 10, workers can work from above the car 10 and from the pit, which allows for wiring routes that are not limited to the landing side of the car 10, and allows the tubular member 110 to be positioned in a flexible manner.

[0025] Variation 1. Modification 1 will be described with reference to FIG. 5. In the first embodiment, the axial length of the tubular member 110a is longer than the vertical length of the side outer surface 12 of the car 10, but this is not limited to this. FIG. 5 is a diagram showing a modification of the elevator cable holder 100a. As shown in FIG. 5, as long as the first arm 120a and the second arm 130a are provided on the tubular member so that the first arm 120a faces the upper outer surface 11 of the car 10 and the second arm 130a faces the lower outer surface 13 of the car 10, the axial length of the tubular member 110a may be shorter than or equal to the vertical length of the side outer surface 12. As shown in FIG. 5, the first arm 120a is L-shaped. One end of the first arm 120a is fixed to or near the upper end of the tubular member 110, and a portion that rises perpendicular to the fixed portion faces the upper outer surface 11 of the car 10. The second arm 130a is also L-shaped. One end of the second arm 130a is fixed to the lower end or near the lower end of the tubular member 110a, and the part that rises perpendicular to the fixed part faces the lower outer surface 13 of the car 10.

[0026] Variation 2. Modification 2 will be described with reference to FIG. 6. In the first embodiment, the elevator cable holder 100 holds the cable connecting the on-car station 20 and the under-car device 30, but this is not limiting. The elevator cable holder 100 may hold the cable connecting the on-car station 20 and the in-car device 40 (e.g., a wheelchair control panel) provided inside the car 10. FIG. 6 is a diagram showing an elevator cable holder 100b in which an opening 111 is provided in a tubular member 110b. This diagram shows a cross section corresponding to the AA cross section in FIG. 2 in Modification 1. As shown in FIG. 6, the tubular member 110b has the opening 111 on a surface facing the side outer surface 12 when the tubular member 110b is attached to the car 10. Note that a hole is formed in the side outer surface 12 of the car 10, to which the in-car device 40, such as a wheelchair control panel, is attached, through which the in-car device cable 41 extending from the in-car device 40 is passed. The car in-equipment cable 41 is passed through the tubular member 110b from the opening 111 of the tubular member 110b, and is connected to the on-car station 20 via a joint cable 300.

[0027] Variation 3. Modification 3 will be described with reference to FIG. 7 . The tubular member 110c may be shaped to cover not only the side outer surface 12 of the car 10 but also one or both of the upper outer surface 11 and the lower outer surface 13. As an example, FIG. 7 shows an elevator cable retainer 100c in which the tubular member 110c has an extension 113. As shown in FIG. 7 , the tubular member 110c has a main body 112 extending in the vertical direction along the side outer surface 12 of the car 10, and the extension 113 extending from the end of the main body 112 along both the upper outer surface 11 and the lower outer surface 13 of the car 10. A connected internal space for passing cables is formed from the main body 112 to the extension 113. This allows the elevator cable retainer 100c to retain not only cables arranged on the side outer surface 12 of the car 10 but also cables arranged on the upper outer surface 11 and the lower outer surface 13. 7 illustrates an example in which the tubular member 110c has a shape that covers both the upper outer surface 11 and the lower outer surface 13, but it may have a shape that covers either one of them. For example, if the tubular member 110c has a shape that covers the side outer surface 12 and the upper outer surface 11 of the car 10, it can hold the cables arranged on the side outer surface 12 and the cables arranged on the upper outer surface 11.

[0028] In the first embodiment and each of the modifications, the cross section of the tubular member 110 as viewed from the axial direction is rectangular, but the present invention is not limited to this. The tubular member 110 may have a cylindrical shape whose cross section as viewed from the axial direction is circular, bow-shaped, or polygonal.

[0029] Furthermore, in the above-described first embodiment and each of the modified examples, the case where the screw holes 140 are provided in the first arm 120 and the second arm 130 has been described, but this is not limiting. The screw holes 140 may be provided in only one of the first arm 120 and the second arm 130. By screwing the mounting screw 200 into either the first arm 120 or the second arm 130, the elevator wire holder 100 can be attached to the car 10.

[0030] Furthermore, in the first embodiment and each of the modified examples, the tubular member 110 of the elevator cable holder 100 may have a partition plate that axially divides the internal space of the tubular member 110. This allows the cables passing through the tubular member 110 to be routed separately for each piece of under-car equipment 30 when there are multiple pieces of under-car equipment 30.

[0031] Furthermore, in the above-described first embodiment and each of the modified examples, the mounting member 150 is attached by fastening the mounting screw 200 to the first arm 120 and / or the second arm 130 provided with the screw hole 140, but the present invention is not limited to this. The mounting member 150 may be any member that can detachably attach the tubular member 110 to the car 10, and may, for example, be a member that can attach and detach the first arm 120 and / or the second arm 130 to the outer surface of each opposing car 10 by crimping.

[0032] Embodiment 2 An elevator cable holder 100d according to a second embodiment and an elevator 1 equipped with the same will be described with reference to Fig. 8 showing the elevator cable holder 100d according to the second embodiment. The elevator 1 according to the second embodiment includes a car 10d having a protrusion 14 provided on a side outer surface 12, and an elevator cable holder 100. In the first embodiment, the elevator cable holder 100 is attached to the car 10 so as to sandwich the upper outer surface 11 and the lower outer surface 13 of the car 10 with the mounting members 150, but the elevator cable holder 100d according to the second embodiment is attached to the car 10d so as to sandwich the protrusion 14 with the mounting members 150d.

[0033] As shown in Fig. 8, protrusions 14 are provided on the outer side surfaces 12 of the car 10d. The protrusions 14 are provided, for example, on the upper and lower parts of the outer side surfaces 12. In the following description, the protrusions 14 provided on the upper part of the outer side surfaces 12 will be referred to as upper protrusions, and the protrusions 14 provided on the lower part will be referred to as lower protrusions.

[0034] The tubular member 110d of the elevator wiring holder 100d has a tubular shape through which cables such as the car upper cable 21, the car lower cable 31, and the joint cable 300 are passed. The tubular member 110d has a tubular shape with a rectangular cross section when viewed from the axial direction, for example. The tubular member 110d is arranged on the side outer surface 12 of the car 10d so that the axial direction of the tubular member 110d is the up-down direction, and is attached to the car 10d by an attachment member 150d, which will be described later.

[0035] The surface of the tubular member 110d that faces the outer side surface 12 of the car 10d when the tubular member 110d is attached to the car 10d is called the "facing surface." The tubular member 110d is desirably thin so that it does not interfere with the elevator shaft 2 when attached to the car 10d. Here, the thickness of the tubular member 110d is the length from the outer surface of the wall that forms the facing surface of the tubular member 110d to the outer surface of the wall that forms the surface opposite the facing surface. In this embodiment, the axial length of the tubular member 110d is shorter than the vertical length of the outer side surface 12 of the car 10d. The tubular member 110d is made of a lightweight metal material, such as aluminum.

[0036] The mounting member 150d has a third arm 160 and a fourth arm 170 connected to the tubular member 110d. The third arm 160 faces the upper surface of the protrusion 14 provided on the side outer surface 12 when the tubular member 110d is mounted to the car 10d. For example, if the side outer surface 12 is provided with multiple protrusions 14, such as upper and lower protrusions, two third arms 160 are also provided so as to face the upper surfaces of the respective protrusions 14. The fourth arm 170 faces the lower surface of the protrusion 14 when the tubular member 110d is mounted to the car 10d. If the side outer surface 12 is provided with multiple protrusions 14, such as upper and lower protrusions, two fourth arms 170 are also provided so as to face the lower surfaces of the respective protrusions 14.

[0037] Further, a screw hole 140 into which a mounting screw 200 is screwed in the vertical direction is provided in either or both of the third arm 160 and the fourth arm 170. For example, if a screw hole 140 is provided in the third arm facing the upper surface of the upper protrusion, the mounting screw 200 is screwed from top to bottom into the screw hole 140. The mounting screw 200 screwed into the third arm facing the upper surface of the upper protrusion is screwed downward until the tip of the mounting screw 200 contacts the upper surface of the upper protrusion. Further, if a screw hole 140 is provided in the fourth arm facing the lower surface of the lower protrusion, the mounting screw 200 is screwed from bottom to top into the screw hole 140. The mounting screw 200 screwed into the fourth arm facing the lower surface of the lower protrusion is screwed upward until the tip of the mounting screw 200 contacts the lower surface of the lower protrusion. In this way, the elevator wiring holder 100 is attached to the protrusion 14 provided on the car 10.

[0038] As described above, mounting member 150d of elevator cable holder 100d according to embodiment 2 has third arm 160 and fourth arm 170 connected to car 10d, and when tubular member 110d is attached to car 10d, third arm 160 faces the upper surface of protrusion 14 provided on side outer surface 12, and fourth arm 170 faces the lower surface of protrusion 14, and screw holes 140 into which mounting screws 200 are screwed in the vertical direction are provided in either or both of third arm 160 and fourth arm 170. This allows elevator cable holder 100d to be easily attached to and detached from the car.

[0039] Furthermore, a screw hole 140 is provided in a third arm 160 that faces the upper surface of an upper protrusion provided at the top of the outer side surface 12 of the car 10d, allowing a worker to tighten the mounting screw 200 from above the car. Furthermore, a screw hole 140 is provided in a fourth arm 170 that faces the lower surface of a lower protrusion provided at the bottom of the outer side surface 12 of the car 10d, allowing a worker to tighten the mounting screw 200 from a pit.

[0040] Variation 4. Modification 4 will be described with reference to FIG. 9. In the second embodiment, the third arm 160 and the fourth arm 170 are provided so as to entirely protrude from the opposing surface of the tubular member 110d (the surface opposing the side outer surface 12 of the car 10d), but this is not limiting. FIG. 9 is a diagram showing an elevator cable holder 100e in which the tubular member 110e has a storage section 180. In the example shown in FIG. 9, the tubular member 110e has a concave storage section 180 on the opposing surface that faces the side outer surface 12 when the tubular member 110e is attached to the car 10d. In addition, a part or the entire third arm 160 and a part or the entire fourth arm 170 are stored in the storage section 180. This allows the height of the elevator cable holder 100e from the side outer surface 12 (attachment surface) when attached to the car 10d to be lower than that of the elevator cable holder 100d of the second embodiment.

[0041] In the above-described second embodiment and fourth modification, a case has been described in which a total of two protrusions 14 are provided at the upper and lower parts of the outer side surface 12 of the car 10d, but this is not limiting. One protrusion 14 may be provided, or three or more protrusions 14 may be provided. A plurality of protrusions 14 may be provided on the outer side surface 12 of the car 10d so as to be lined up at a predetermined height in the vertical direction. For example, two protrusions 14 may be provided side by side at predetermined positions on the upper and lower parts, so that a total of four protrusions 14 are provided. Alternatively, a plurality of protrusions 14 may be provided on the outer side surface 12 so as to be lined up at a predetermined height.

[0042] Furthermore, in the above-described second embodiment and fourth modification, the mounting member 150d has been described as having two third arms 160 and two fourth arms 170, but this is not limiting. The mounting member 150d is only required to have at least one third arm 160 and one fourth arm 170. Depending on the number of protrusions, the mounting member 150d may have three or more third arms 160 and three or more fourth arms 170. Furthermore, the cylindrical member 110d may have a plurality of third arms 160 arranged side by side at a predetermined height on the cylindrical member 110d, and a plurality of fourth arms 170 arranged side by side at a predetermined height different from the arrangement position of the third arms 160.

[0043] Furthermore, in the above-described second embodiment and fourth modification, the mounting member 150d is attached by fastening the mounting screw 200 to the third arm 160 and / or the fourth arm 170 provided with the screw hole 140, but the present invention is not limited to this. The mounting member 150d may be any member that can detachably attach the tubular member 110d to the car 10, and may be, for example, a snap fit or a clip that clamps the protrusion 14 from the top and bottom.

[0044] Various aspects of the present disclosure are summarized below as appendices. (Appendix 1) An elevator wiring holder for holding a cable arranged in the vertical direction along the outer side surface of a car, a cylindrical member through which the cable is passed; an attachment member that detachably attaches the cylindrical member to the car; An elevator wiring holder comprising: (Appendix 2) the mounting member has a first arm and a second arm connected to the tubular member, when the cylindrical member is attached to the car, the first arm faces an upper outer surface of the car, and the second arm faces a lower outer surface of the car; An elevator wiring holder as described in Appendix 1, wherein one or both of the first arm and the second arm have screw holes into which mounting screws are screwed in the vertical direction. (Appendix 3) The cylindrical member is a main body portion extending in the up-down direction along the side outer surface; an extension extending the end of the main body along one or both of the upper and lower outer surfaces of the car; 3. An elevator wiring holder according to claim 1 or 2, comprising: (Appendix 4) the mounting member has a third arm and a fourth arm connected to the tubular member, When the cylindrical member is attached to the car, the third arm faces an upper surface of a protrusion provided on the outer surface of the side portion, and the fourth arm faces a lower surface of the protrusion, An elevator wiring holder as described in Appendix 1, wherein one or both of the third arm and the fourth arm have screw holes into which mounting screws are screwed in the vertical direction. (Appendix 5) the cylindrical member has a recessed storage portion on an opposing surface that faces the outer side surface when the cylindrical member is attached to the car, An elevator wiring holder according to claim 4, wherein a part or all of the third arm and a part or all of the fourth arm are stored in the storage section. (Appendix 6) An elevator wiring holder according to any one of appendices 1 to 5, wherein the tubular member has an opening on an opposing surface that faces the outer side surface when the tubular member is attached to the car. (Appendix 7) The basket, An elevator wiring holder according to any one of appendices 1 to 3; An elevator equipped with: (Appendix 8) the cage having the protrusions provided on the outer side surfaces; The elevator wiring holder described in Appendix 4 or 5 An elevator equipped with: [Explanation of symbols]

[0045] 1. Elevator 2 elevator shaft 10 baskets 10d basket 11 Upper outer surface 12 outer side 13 Lower outer surface 14 Protrusion 20 Over-basket Station 21 Car-mounted cable 30 Under-car equipment 31 Under-car cable 40 Car equipment 41 Car equipment cable 100 Elevator wiring holder 100a Elevator Wiring Holder 100b Elevator wiring holder 100c Elevator Wiring Holder 100d Elevator Wiring Holder 100e Elevator Wiring Holder 110 Cylinder member 110a tubular member 110b cylindrical member 110c cylindrical member 110d Cylinder 111 Opening 112 Main body 113 Extension 114 Slit 120 First Arm 120a First Arm 130 Second Arm 130a Second Arm 140 screw holes 150 Mounting material 150d mounting bracket 160 Third Arm 170 4th Arm 180 Storage area 200 Mounting screws 300 Joint Cable

Claims

1. An elevator wiring holder for holding a cable arranged in the vertical direction along the outer side surface of a car, a cylindrical member through which the cable is passed; an attachment member that detachably attaches the cylindrical member to the car so as to sandwich the car in the vertical direction; An elevator wiring holder comprising:

2. An elevator wiring holder for holding a cable arranged in the vertical direction along the outer side surface of a car, a cylindrical member through which the cable is passed; an attachment member that detachably attaches the cylindrical member to the car, the mounting member has a first arm and a second arm connected to the tubular member, When the tubular member is attached to the car, the first arm faces an outer surface of an upper part of the car, and the second arm faces an outer surface of a lower part of the car.

3. An elevator wiring holder as described in Claim 2, wherein either or both of the first arm and the second arm have screw holes into which mounting screws are screwed in the vertical direction.

4. The cylindrical member is a main body portion extending in the up-down direction along the side outer surface; an extension extending the end of the main body along one or both of the upper and lower outer surfaces of the car; 3. The elevator wiring holder according to claim 2, further comprising:

5. An elevator wiring holder for holding a cable arranged in the vertical direction along the outer side surface of a car, a cylindrical member through which the cable is passed; an attachment member that detachably attaches the cylindrical member to the car so as to sandwich the protrusion provided on the outer surface of the side portion; An elevator wiring holder comprising:

6. An elevator wiring holder for holding a cable arranged in the vertical direction along the outer side surface of a car, a cylindrical member through which the cable is passed; an attachment member that detachably attaches the cylindrical member to the car, the mounting member has a third arm and a fourth arm connected to the tubular member, When the tubular member is attached to the car, the third arm faces an upper surface of a protrusion provided on the outer surface of the side portion, and the fourth arm faces a lower surface of the protrusion.

7. An elevator wiring holder as described in Claim 6, wherein either or both of the third arm and the fourth arm have screw holes into which mounting screws are screwed in the vertical direction.

8. the cylindrical member has a recessed storage portion on an opposing surface that faces the outer side surface when the cylindrical member is attached to the car, The elevator cable holder according to claim 6, wherein a part or the whole of the third arm and a part or the whole of the fourth arm are housed in the housing portion.

9. The elevator wiring holder according to any one of claims 1 to 8, wherein the tubular member has an opening in a surface facing the outer side surface when the tubular member is attached to the car.

10. The basket, The elevator wiring holder according to any one of claims 1 to 4, An elevator equipped with:

11. the cage having the protrusions provided on the outer side surfaces; The elevator wiring holder according to any one of claims 5 to 8, An elevator equipped with:

Citation Information

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