Transmission line connecting apparatus

The transmission line connection device addresses limited orientation in conventional optical connector array cases by enabling multi-axis rotation and flexible attachment, improving workability and convenience in installation and operation.

JP2025147858AActive Publication Date: 2025-10-07DX ANTENNA CO LTD
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Patent Information

Application Number
JP2024048335
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-03-25
Publication Date
2025-10-07
Estimated Expiration
2044-03-25

AI Technical Summary

Technical Problem

Conventional optical connector array cases have limited orientation adjustment, restricting workability and flexibility in installation and operation.

Method used

A transmission line connection device with a bracket and connection device body that allows rotation around multiple axes, featuring a connecting structure with a base portion and holding portion, enabling flexible orientation and attachment options to improve workability.

Benefits of technology

Enhances workability by allowing easy orientation and attachment of the connection device body to suit installation conditions, facilitating convenient access to terminal portions and reducing space interference.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a transmission line connecting apparatus with which ease of work can further be improved.SOLUTION: The present invention comprises: a bracket 2 that can be fixed to an installation place; a connecting apparatus body 3 having a plurality of terminals 31 for connecting a transmission line L1; and a coupling structure 4 for coupling the bracket 2 and the connecting apparatus body 3. The bracket 2 and the connecting apparatus body 3 have their coupling parts arranged facing each other. The coupling structure 4 includes: a base unit 400 which is attached to the bracket 2 in the state of being rotatable around a first axial line extending along one of a first direction in which the coupling part of the bracket 2 and the coupling part of the connecting apparatus body 3 face each other and a second direction crossing the first direction; and a holding unit 402 integrated with the base unit 400, for holing the connecting apparatus body 3 in the state of being rotatable around a second axis line extending along the other direction of either the first direction or the second direction.SELECTED DRAWING: Figure 2
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Description

[Technical Field]

[0001] The present invention relates to a transmission line connection device that connects a plurality of transmission lines. [Background technology]

[0002] As the above-mentioned transmission line connection device, an optical connector array case with mounting members is known, which includes an optical connector array case in which multiple optical connectors are arranged on the bottom end surface of the case body, a case holder that detachably holds the optical connector array case, and a fixing plate that is fixed to a wall surface (mounting surface) of a cabinet or building by screws or the like (see, for example, Patent Document 1).

[0003] The fixing portion has a vertically elongated plate-like portion and a shaft portion that is integrally formed with the upper portion of the front face (front surface) of the plate-like portion and that extends along the horizontal direction.

[0004] A first bearing portion is formed on the rear edge of the top plate of the case holder, which rotatably and detachably engages with the shaft portion of the fixed plate, and a second bearing portion is formed on one side edge of the case holder, which rotatably and detachably engages with the shaft portion of the fixed plate.

[0005] According to the optical connector array case equipped with the mounting member, the orientation of the optical connector array case can be determined and installed by attaching either the first bearing portion or the second bearing portion of the case holder to the shaft portion of the fixing plate.

[0006] When the optical connector array case equipped with the mounting members is installed at the installation location, the orientation of the optical connector array case can be changed to an orientation suitable for work by rotating the optical connector array case together with the case holder around the first bearing portion or the second bearing portion that is attached to the shaft portion of the fixing plate. [Prior art documents] [Patent documents]

[0007] [Patent Document 1] Patent No. 5339633 Summary of the Invention [Problem to be solved by the invention]

[0008] However, with the above-mentioned conventional optical connector array case equipped with mounting members, after it has been installed at the installation location, the orientation of the array case can only be rotated in a circumferential direction around the first axis portion or a circumferential direction around the second axis portion, which limits the range in which the orientation of the array case can be changed and also limits the improvement in workability.

[0009] In view of the above circumstances, an object of the present invention is to provide a transmission line connecting device that can further improve workability. [Means for solving the problem]

[0010] The transmission line connection device of the present invention comprises: A bracket that can be fixed to the installation location, a connection device body having a plurality of terminal portions for connecting transmission lines; a connecting structure that connects the bracket and the connection device body, The bracket and the connection device main body are connected to each other by connecting portions disposed opposite each other, The connecting structure is a base portion attached to the bracket in a state rotatable about a first axis extending along either a first direction in which the connecting portion of the bracket and the connecting portion of the connection device main body face each other, or a second direction intersecting the first direction; and a holding portion that is integrated with the base portion and holds the connection device main body in a rotatable state around a second axis that extends along the other of the first direction and the second direction.

[0011] According to the transmission line connection device having the above configuration, the connection device body is rotatable in the circumferential direction about the first axis and the circumferential direction about the second axis due to the connection structure that connects the connection device body and the bracket. Therefore, with the bracket fixed to the installation location, the orientation of the connection device body can be changed by rotating the connection device body in the circumferential direction about the first axis and the circumferential direction about the second axis.

[0012] Therefore, the transmission line connecting device can be easily oriented so that the connecting device body is suitable for work, thereby improving workability.

[0013] In the transmission line connected device of the present invention, the coupling portion of the connection device main body is located on one side of the connection device main body in a third direction intersecting the first direction and the second direction, The plurality of terminal portions may be configured to face the other side in the third direction.

[0014] This allows the terminal portion to be easily oriented toward the worker, improving the convenience of working on the terminal portion.

[0015] In the transmission line connected device of the present invention, The bracket is a connection base portion on which the connection portion is provided; a connecting base portion connected to the connecting base portion, The connecting base portion and the connecting base portion may be configured to be selectively fixed to the installation location.

[0016] In this way, the part to which the bracket is fixed at the installation location can be selected from the connecting base part and the connecting base part, which increases the range of options for how to fix the bracket and improves convenience during installation work.

[0017] The transmission line connection device of the present invention comprises: The connection device main body has a flat box-shaped case, In the case, The wide surface and a narrow surface portion having an outer surface area smaller than that of the wide surface portion, The wide surface portion is disposed opposite the connecting base portion, The narrow surface portion may be arranged to face the connecting base portion.

[0018] With the transmission line connection device, the space occupied by the connection device when the installation location is viewed from the front changes depending on whether the connecting base part is fixed to the installation location or the connecting base part is fixed to the installation location. Therefore, it is possible to select whether to fix the connecting base part to the installation location or the connecting base part to the installation location depending on the size of the installation location when viewed from the front, thereby improving convenience during installation work.

[0019] In the transmission line connected device of the present invention, the base is configured to be able to maintain its posture by friction with the bracket; The holding portion may be configured to be able to maintain the attitude of the connection device body by friction with the connection device body even when the transmission line is connected to the terminal portion.

[0020] In this way, even if an operator rotates the connection device main body with the transmission line connected to the terminal portion and then releases his / her hand from the connection device main body, the attitude of the connection device main body is maintained, thereby improving the convenience of working on the connection device main body. [Effects of the Invention]

[0021] As described above, the transmission line connecting device of the present invention can achieve the excellent effect of further improving workability. [Brief explanation of the drawings]

[0022] [Figure 1] FIG. 1 is a perspective view of a transmission line connection device according to an embodiment of the present invention. [Figure 2]FIG. 2 is an exploded perspective view of the transmission line connection device according to the embodiment. [Figure 3] In FIG. 3, (a) is a view of the transmission line-connected device as seen from the front side, and (b) is a view of the transmission line-connected device as seen from the rear side. [Figure 4] In FIG. 4, (a) is a view of the transmission line-connected device as seen from the side opposite the wiring connection surface, and (b) is a view of the transmission line-connected device as seen from the wiring connection surface. [Figure 5] In FIG. 5, (a) is a view of the transmission line-connected device as seen from one side, and (b) is a view of the transmission line-connected device as seen from the other side. [Figure 6] FIG. 6 is an explanatory diagram of the inside of a connection device body of the transmission line connection device according to the embodiment. [Figure 7] FIG. 7 is an explanatory diagram of a terminal portion of a connection device body of the transmission line connection device according to the embodiment. [Figure 8] FIG. 8 is a partial cross-sectional view taken along line VIII-VIII in FIG. 4(a). [Figure 9] FIG. 9 is a partial cross-sectional view taken along line IX-IX in FIG. 4(a). [Figure 10] FIG. 10 is a diagram showing the state in which the connection device main body shown in FIG. 9 is rotated in the circumferential direction around the holding portion. [Figure 11] FIG. 11 is a diagram showing an example of an installation state of a transmission line connected device according to the embodiment. [Figure 12] In FIG. 12, (a) is an explanatory diagram of the state before the connection device main body is rotated around the holding part, and (b) is an explanatory diagram of the state after the connection device main body is rotated around the holding part. [Figure 13] In FIG. 13, (a) is an explanatory diagram of the state before the connection device main body is rotated around the base part, and (b) is an explanatory diagram of the state after the connection device main body has been rotated around the base part. [Figure 14] In FIG. 14, (a) is an explanatory diagram of the state before the connection device main body is rotated around the base part, and (b) is an explanatory diagram of the state after the connection device main body has been rotated around the base part. [Figure 15]In FIG. 15, (a) is an explanatory diagram of the state before the connection device main body is rotated around the holding part, and (b) is an explanatory diagram of the state after the connection device main body is rotated around the holding part. [Figure 16] FIG. 16 is an explanatory diagram of a transmission line connected device according to another embodiment of the present invention. [Figure 17] FIG. 17 is an explanatory diagram of a transmission line connected device according to still another embodiment of the present invention. [Figure 18] FIG. 18 is an explanatory diagram of a transmission-line-connected device according to still another embodiment of the present invention, in which the structure of the transmission-line-connected device shown in FIGS. 1 to 15 is flipped left and right. [Figure 19] FIG. 19 is an explanatory diagram of a transmission-line-connected device according to still another embodiment of the present invention, in which the structure of the transmission-line-connected device shown in FIG. 16 is flipped left to right. [Figure 20] FIG. 20 is an explanatory diagram of a transmission-line-connected device according to still another embodiment of the present invention, in which the structure of the transmission-line-connected device shown in FIG. 17 is flipped left to right. DETAILED DESCRIPTION OF THE INVENTION

[0023] A transmission line connection device (hereinafter referred to as a connection device) according to one embodiment of the present invention will be described below with reference to the accompanying drawings.

[0024] The connection device is configured so that an input transmission line and an output transmission line can be detachably connected from the outside, and a signal passing through the connected input transmission line can be transmitted to the output transmission line.

[0025] The connection device of this embodiment will be described below by taking as an example a device configured to connect an optical communication cable as a transmission line.

[0026] As shown in FIG. 1, the connection device 1 of this embodiment includes a bracket 2 that can be fixed to an installation location, a connection device main body 3 having a plurality of terminal portions for connecting transmission lines, and a connecting structure 4 that connects the bracket 2 and the connection device main body 3.

[0027] 2, the bracket 2 has a connecting base part 20 to which the connection device main body 3 is connected, a connecting base part 21 connected to the connecting base part 20, and a bracket-side mounting part 22 formed on the connecting base part 20 and serving as a mounting part for the connecting structure 4 (part of the connecting part that connects the connection device main body 3 by the connecting structure 4). The bracket 2 is capable of selectively fixing the connecting base part 20 and the connecting base part 21 to the installation location.

[0028] The connecting base part 20 has a plate-shaped connecting plate part 200, a connecting fixing part 201 for fixing the connecting plate part 200 to an installation location, and an anti-slip part 202 (see FIG. 3(b)) made of rubber.

[0029] The connecting plate portion 200 has an inward surface 2000 facing the connection device main body 3, and an outward surface 2001 facing the opposite side to the inward surface 2000, as shown in FIG. 3(b).

[0030] The outward surface 2001 is a surface that faces the installation location. In addition, since the outward surface 2001 is a flat surface, when the connecting plate part 200 is installed on a flat installation location, the outward surface 2001 faces the flat installation location in a state parallel to the flat installation location.

[0031] The connecting and fixing part 201 has a screwing part 2010 for screwing the connecting plate part 200 to the installation location, and an attachment part 2011 that can be attached to the installation location.

[0032] The screw fastening portion 2010 is formed as part of the connecting plate portion 200, and has a through-hole formed therein that penetrates the connecting plate portion 200 in the thickness direction (the direction in which the inward surface 2000 and the outward surface 2001 are aligned) (see FIG. 2).

[0033] The attachment portion 2011 is made of a magnetic material (specifically, a magnet). Therefore, if the installation location has magnetic properties, the attachment portion 2011 can be attached to this installation location. Two attachment portions 2011 are attached to the outward surface 2001 of the connecting plate portion 200.

[0034] The anti-slip portion 202 is attached to the connecting plate portion 200, and is exposed outward from the outward surface 2001. Furthermore, since the anti-slip portion 202 protrudes slightly outward from the outward surface 2001, when the connecting base portion 20 is installed at an installation location, the anti-slip portion 202 abuts against the installation location, thereby restricting movement of the connecting plate portion 200 relative to the installation location (i.e., preventing it from slipping).

[0035] The anti-slip portion 202 is made of rubber and has elasticity, so that when the connecting plate portion 200 is pressed against the installation location, the outward surface 2001 as well as the anti-slip portion 202 can be brought into contact with the installation location.

[0036] As shown in FIG. 2, the connecting base portion 21 has a plate-shaped connecting plate portion 210 and a connecting fixing portion 211 for fixing the connecting plate portion 210 to an installation location.

[0037] The connecting plate portion 210 has an inward surface 2100 facing the connection device main body 3, and an outward surface 2101 facing the opposite side to the inward surface 2100, as shown in FIG. 5(b).

[0038] The continuous plate portion 210 and the connecting plate portion 200 are perpendicular or substantially perpendicular to each other (see FIG. 2).

[0039] The outward surface 2101 is the surface that faces the installation location.

[0040] The connecting and fixing part 211 has a screwing part 2110 for screwing the connecting plate part 210 to the installation location, and an attachment part 2111 that can be attached to the installation location.

[0041] The screw fastening portion 2110 is formed as part of the connecting plate portion 210, and has a through hole formed therein that penetrates the connecting plate portion 210 in the thickness direction (the direction in which the inward surface 2100 and the outward surface 2101 are aligned) (see FIG. 2).

[0042] The attachment portion 2111 is made of a magnetic material (specifically, a magnet). Therefore, if the installation location has magnetic properties, the attachment portion 2111 can be attached to this installation location. Two attachment portions 2111 are attached to the outward surface 2101 of the connecting plate portion 210.

[0043] The anti-slip portion 212 is attached to the connecting plate portion 210, and is exposed outward from the outward surface 2101. Furthermore, since the anti-slip portion 212 protrudes slightly outward from the outward surface 2101, when the connecting base portion 21 is installed at an installation location, the anti-slip portion 212 abuts against the installation location, thereby restricting movement of the connecting plate portion 210 relative to the installation location (i.e., preventing it from slipping).

[0044] The anti-slip portion 212 is made of rubber and has elasticity, so that when the connecting plate portion 210 is pressed against the installation location, the outward surface 2101 as well as the anti-slip portion 212 can be brought into contact with the installation location.

[0045] As shown in FIG. 2, the connection device main body 3 has a flat box-shaped case 30, a terminal portion 31 that is attached inside the case 30 and configured to allow a transmission line to be detachably connected, a case-side attachment portion 32 that is formed on the case 30 and serves as an attachment portion of the connection structure 4 (part of the connection portion that connects the bracket 2 by the connection structure 4), and an inner protrusion portion 33 (see FIG. 10) that protrudes from the inner wall of the case 30.

[0046] The case 30 has a plurality of wide surface portions 300 (see Figures 3(a) and 3(b)) and narrow surface portions 301 (see Figures 4(a) and 4(b) and Figures 5(a) and 5(b)) whose outer surface area is smaller than that of the wide surface portions 300.

[0047] The multiple wide surface portions 300 include a rear surface portion 3000 (see Figure 3(b)) that is arranged opposite the connecting base portion 20, and a front surface portion 3001 (see Figure 3(a)) that is formed to face the opposite side of the rear surface portion 3000.

[0048] The multiple narrow surface portions 301 include a wiring surface portion 3010 (see Figure 4(b)) formed so that the terminal portion 31 (the insertion port of the terminal portion 31, described later) is exposed, an anti-wiring surface portion 3011 (see Figure 4(a)) formed so that it faces the opposite side from the wiring surface portion 3010, and a pair of side portions (see Figures 5(a) and 5(b)) formed between the wiring surface portion 3010 and the wiring surface portion 3010.

[0049] In the following description, one of the pair of side surface portions will be referred to as one side surface portion 3012 (see FIG. 5(a)), and the other of the pair of side surface portions will be referred to as the other side surface portion 3013 (see FIG. 5(b)).

[0050] 5(a), the rear surface portion 3000 is formed so that its outer surface is stepped, and the wiring surface portion 3010 side is located further outward in the case 30 than the anti-wiring surface portion 3011 side. The size of the step between the wiring surface portion 3010 side of the rear surface portion 3000 and the anti-wiring surface portion 3011 side of the rear surface portion 3000 is set to be equal to or less than the thickness of the connecting plate portion 200.

[0051] 3(a), the other side surface portion 3013 is formed so that its outer surface is stepped, and the wire connection surface portion 3010 side is located further outward in the case 30 than the anti-wire connection surface portion 3011. The size of the step between the wire connection surface portion 3010 side of the other side surface portion 3013 and the anti-wire connection surface portion 3011 side of the other side surface portion 3013 is set to be equal to or less than the thickness of the connecting plate portion 210.

[0052] As shown in Figure 2, the case 30 of this embodiment has a box-shaped storage section 302 with one side (front) open, and a cover section 303 that is detachable from the front of the storage section 302 and is configured to cover the open portion of the storage section 302 when attached to the front of the storage section 302.

[0053] In the case 30 of this embodiment, the storage section 302 is configured to have a back section 3000, a wiring surface section 3010, an anti-wiring surface section 3011, one side section 3012, and the other side section 3013, and the cover section 303 is configured to have a front section 3001.

[0054] As shown in FIG. 6, the terminal portion 31 has an external connection portion 310 having an insertion port through which the transmission line L1 can be inserted and removed, and a plurality of internal connection portions 311 arranged within the case 30, which are connected to the internal connection portions of other terminal portions 31 via relay lines L2.

[0055] In the connection device 1 of this embodiment, the multiple terminal units 31 are configured with one input terminal unit 31 and two output terminal units 31. In the drawings, the input terminal unit 31 is indicated by the symbol 31 followed by "(A)", and the output terminal unit 31 is indicated by the symbol 31 followed by "(B)".

[0056] Accordingly, the relay line L2 in this embodiment is configured by an input-side relay line L20 whose end is connected to the input terminal unit 31, and a plurality of (two in this embodiment) output-side relay lines L21 whose end is connected to the output terminal unit 31. The input-side relay line L20 and the output-side relay line L21 may be connected to each other directly or via a connector or the like.

[0057] In the terminal section 31, the transmission line L1 inserted into the external connection section 310 is connected to the relay line L2 connected to the internal connection section 311.

[0058] The external connection unit 310 shown in FIG. 6 has a transmission line L1 inserted into the socket, but if the transmission line L1 is not inserted into the socket, a plug P can be inserted instead of the transmission line L1 (see FIG. 7).

[0059] As shown in FIG. 2, the connecting structure 4 has a connecting structure body 40 and a mounting fixture 41 that mounts the connecting structure body 40 to the bracket 2.

[0060] In the connecting structure 4 of this embodiment, the mounting fixture 41 has a screw 410 and a washer 411 .

[0061] Here, the bracket side mounting portion 22 and the case side mounting portion 32 to which the connecting structure main body 40 is attached will be described.

[0062] As shown in Figure 9, the bracket side mounting portion 22 has an insertion portion 220 in which a through hole 2200 is formed that penetrates the connecting plate portion 200 in the thickness direction, and a peripheral wall portion 221 formed around the opening of the through hole 2200 on the outward surface 2001 of the connecting plate portion 200.

[0063] The peripheral wall portion 221 protrudes from the outward surface 2001 of the connecting plate portion 200. The peripheral wall portion 221 has a curved shape that is curved in the circumferential direction with the through-hole 2200 as the center.

[0064] As shown in Figure 8, the case side mounting portion 32 has a pair of back support wall portions 320 formed inside the storage portion 302, and a front support wall portion 321 formed inside the cover portion 303 and arranged opposite the back support wall portions 320.

[0065] The opposing surfaces of the back support wall portion 320 and the front support wall portion 321 are formed concavely, and the connecting structure main body 40 (more specifically, the holding portion 402 described later) is configured to be rotatably clamped between the back support wall portion 320 and the front support wall portion 321.

[0066] In this embodiment, the case side mounting portion 32 is formed on one side of the case 30 (the side opposite the wiring surface portion 3011, and the end portion on one side of the case 30 in a third direction (see Figure 2) perpendicular to the first direction and second direction described below), and each of the multiple terminal portions 31 is attached to the other side of the case 30 (the side opposite the wiring surface portion 3010, and the end portion on the other side of the case 30 in the third direction (see Figure 2)).

[0067] As shown in FIG. 2, the connecting structure main body 40 has a base 400 attached to the bracket 2 in a state where it can rotate around a first axis A1 extending along a first direction in which the bracket side mounting portion 22 and the case side mounting portion 32 face each other, a core portion 401 formed integrally with the base 400, a holding portion 402 which is integrated with the base 400 via the core portion 401 and holds the connecting device main body 3 in a state where it can rotate around a second axis A2 extending along a second direction that intersects with the first direction (orthogonal in this embodiment), and an interference protrusion 403 which protrudes from the core portion 401 and is formed so as to interfere with the case 30 of the connecting device main body 3 which rotates around the second axis A2.

[0068] 9, the base portion 400 is formed in a cylindrical shape and extends from a core portion 401. The outer surface of the base portion 400 is formed in a stepped shape, with the outer diameter on the tip side being smaller than the outer diameter on the base end side.

[0069] The tip side of the base 400 is inserted into the through-hole 2200 of the insertion portion 220. In addition, the base end side of the base 400 is configured to abut against the inward surface 2000 of the connecting plate portion 200 in a state where the tip side of the base 400 is inserted into the through-hole 2200 of the insertion portion 220.

[0070] The base 400 can have the screw 410 of the mounting fixture 41 screwed into it. Therefore, when attaching the base 400 to the bracket-side attaching part 22, the washer 411 is aligned with the position of the insertion part 220 and placed on the outward surface 2001 of the connecting plate part 200, and the screw 410 is inserted through the washer 411 and the insertion part 220 from the outward surface 2001 side of the connecting plate part 200. Then, the screw 410 is screwed into the base 400, whereby the base 400 is attached to the bracket-side attaching part 22.

[0071] The base 400 can be rotated around its own central axis by external operation, and is configured so that when external operation ceases, the rotated state is maintained by the frictional force (static frictional force) generated between it and the connecting plate 200.

[0072] In this embodiment, the connecting plate portion 200 is formed with an interference portion 2002 that interferes with the outer peripheral surface of the base portion 400, and is configured so that the rotated state of the base portion 400 is maintained by the static friction force generated between the base portion 400 and the interference portion 2002.

[0073] Thus, the first axis in the connecting structure 4 of this embodiment is the central axis of the base portion 400.

[0074] 2, a pair of holding portions 402 are integrally formed with core portion 401. The pair of holding portions 402 are configured to extend from core portion 401 in opposite directions in the second direction.

[0075] The holding portion 402 of this embodiment is formed in a shaft shape.

[0076] As shown in FIG. 8, the holding portion 402 is rotatably sandwiched between the back receiving wall portion 320 and the front receiving wall portion 321.

[0077] Since the retaining portion 402 abuts against the opposing surfaces of the back receiving wall portion 320 and the front receiving wall portion 321, a frictional force (static frictional force) is generated between the abutting portion of the opposing surfaces of the retaining portion 402 and the back receiving wall portion 320 and the abutting portion of the opposing surfaces of the retaining portion 402 and the front receiving wall portion 321.

[0078] Therefore, when an external force is applied to the connection device main body 3, it can rotate in a circumferential direction around the holding portion 402, but when the external force is removed, the static friction force generated between the holding portion 402 and the back support wall portion 320 and the static friction force generated between the holding portion 402 and the front support wall portion 321 causes the connection device main body 3 to maintain its position while stopping the rotation.

[0079] Thus, the second axis in the connecting structure 4 of this embodiment is the central axis of the holding portion 402.

[0080] As shown in FIGS. 9 and 10, the interference protrusion 403 is configured to interfere with the inner protrusion 33 that is a part of the case 30 when the case 30 rotates around the holding portion 402 .

[0081] The tip of the interfering protrusion 403 is located within the movable range of the inner protrusion 33. When the inner protrusion 33 rotates around the holding part together with the connection device main body 3, it comes into contact with the tip of the interfering protrusion 403 and moves over it.

[0082] The configuration of the connection device 1 according to this embodiment is as described above. Next, as a method of using the connection device 1, an installation method and a rotation operation of the connection device main body 3 will be described.

[0083] When installing the connection device 1, the worker selects either the connecting plate portion 200 or the connecting plate portion 210 to be fixed to the installation location.

[0084] When the installation location is viewed from the front, the space occupied by the connection device 1 changes depending on whether the connecting plate section 200 is fixed to the installation location or whether the connecting plate section 210 is fixed to the installation location. For example, if the installation location has a large amount of free space, the connecting plate section 200 is fixed to the installation location, and if the installation location has a small amount of free space, the connecting plate section 210 is fixed to the installation location.

[0085] When fixing the connecting plate portion 200 to the installation location, the worker further selects whether to fix the connecting plate portion 200 to the installation location using the screw fastening portion 2010, to fix the connecting plate portion 200 to the installation location using the adhesive portion 2011, or to fix the connecting plate portion 200 to the installation location using both the adhesive portion 2011 and the screw fastening portion 2010.

[0086] When fixing the connecting plate section 210 to the installation location, the worker can further select whether to fix the connecting plate section 210 to the installation location using the screw fastening section 2110, to fix the connecting plate section 210 to the installation location using the adhesive section 2111, or to fix the connecting plate section 210 to the installation location using both the adhesive section 2111 and the screw fastening section 2110.

[0087] In the following description, a case where the connecting plate portion 200 is fixed to the installation location will be taken as an example.

[0088] When the connecting plate portion 200 is fixed to the installation location, the front portion 3001 of the case 30 faces in front of the operator (see FIG. 11).

[0089] When the connection device main body 3 is rotated around the holding portion 402 while not rotated relative to the bracket 2, the wiring surface portion 3010 can be directed toward the front as seen by the operator (see Figures 12(a) and 12(b)).

[0090] Furthermore, since the connection device main body 3 maintains a state in which the wiring surface 3010 is facing the worker, it becomes easier for the worker to perform work on the terminal portion 31 (such as inserting and removing a plug into and from the terminal portion 31, or inserting and removing a transmission line).

[0091] Furthermore, even when the connection device main body 3 is rotated around the holding portion 402, the posture of the connection device main body 3 can be changed by rotating the connection device main body 3 around the base portion 400 (see Figures 13(a) and 13(b)).

[0092] When the connection device main body 3 is rotated around the base 400 while not rotated relative to the bracket 2, the wire connection surface 3010 can be oriented horizontally (see FIGS. 14(a) and 14(b)).

[0093] When the connection device main body 3 is turned so that the wiring surface 3010 is oriented horizontally, the screw fastening portion 2010 of the connecting and fixing portion 201 that was hidden behind the connection device main body 3 appears (see FIG. 14(b)).

[0094] Furthermore, since the connection device main body 3 is maintained with the wiring surface 3010 facing sideways, the screw fastening portion 2010 of the connecting and fixing portion 201 can be maintained in an exposed state. This makes it easier for the worker to work on the screw fastening portion 2010 of the connecting and fixing portion 201.

[0095] Furthermore, even when the connection device main body 3 is rotated around the base 400, the orientation of the connection device main body 3 can be changed by rotating the connection device main body 3 around the holding part 402 (see Figures 15(a) and 15(b)).

[0096] In this way, the connection device 1 of this embodiment can be installed by determining the fixing mode of the bracket 2 according to the conditions of the installation location, and the orientation of the connection device main body 3 can be changed to an orientation that makes it easier for the worker to work when performing another task after the installation work.

[0097] As described above, according to the connection device 1 of this embodiment, the connection structure 4 that connects the connection device main body 3 and the bracket 2 makes the connection device main body 3 rotatable in the circumferential direction about the first axis and the circumferential direction about the second axis. Therefore, with the bracket 2 fixed to the installation location, the orientation of the connection device main body can be changed by rotating the connection device main body 3 in the circumferential direction about the first axis and the circumferential direction about the second axis.

[0098] Therefore, the connection device 1 makes it easier to orient the connection device body 3 in a direction suitable for work, thereby achieving the excellent effect of improving workability.

[0099] Furthermore, the connection device main body 3 is rotatably connected to the bracket 2 at one end in the third direction by the connecting structure 4, and the terminal part 31 is attached facing outward at the other end in the third direction, so that when the connection device main body 3 is rotated, the terminal part 31 can be easily directed toward the worker, thereby improving the convenience of working on the terminal part 31.

[0100] Furthermore, the connection device main body 3 can be rotated around the holding part 402 even after it has rotated around the base part 400, and can be rotated around the base part 400 even after it has rotated around the holding part 402.Furthermore, the operation of rotating the connection device main body 3 around the base part 400 and the operation of rotating it around the holding part 402 can be performed simultaneously, making it easy to use.

[0101] Furthermore, the rotated connection device main body 3 is configured to be able to maintain the rotated state whether the transmission line L1 is connected to the terminal portion 31 or not. Therefore, even if the worker releases the rotated connection device main body 3, the posture of the connection device main body 3 is maintained, improving the convenience of working on the connection device main body 3.

[0102] Furthermore, when the connection device 1 is installed at the installation location, if the anti-slip portion 202 of the connecting base portion 20 or the anti-slip portion 212 of the connecting base portion 21 abuts against the installation location, movement of the bracket 2 relative to the installation location is restricted, so that when the connection device main body 3 is rotated, the bracket 2 can be prevented from moving in conjunction with the connection device main body 3, making it easier to rotate the connection device main body 3.

[0103] In the connection device 1 of this embodiment, the wide surface portion 300 and the narrow surface portion 301 of the connection device main body 3 are formed with different widths, and the connecting plate portion 200 and the connecting plate portion 210 are also formed with different widths to match the wide surface portion 300 and the narrow surface portion 301 of the connection device main body 3, thereby improving convenience during installation work.

[0104] More specifically, in connection device 1, the width (thickness) of narrow surface portion 301 of connection device main body 3 when viewed from the front is smaller than the width (horizontal width) of wide surface portion 300 of connection device main body 3 when viewed from the front, and the width of inward surface 2100 of connecting plate portion 210 when viewed from the front is smaller than the width of inward surface 2000 of connecting plate portion 200 when viewed from the front, so the space occupied by connection device 1 when the installation location is viewed from the front differs depending on whether connecting plate portion 200 is fixed to the installation location or when connecting plate portion 210 is fixed to the installation location.

[0105] Furthermore, during installation work, it is possible to choose whether to fix the connecting plate section 200 or the connecting plate section 210 to the installation location depending on the size of the installation location when viewed from the front, thereby improving convenience during installation work.

[0106] Furthermore, in the case 30, the outer surface of the rear portion 3000 is formed in a stepped shape, and the size of the step between the wiring surface portion 3010 side of the rear portion 3000 and the anti-wiring surface portion 3011 side of the rear portion 3000 is set to be less than the thickness of the connecting plate portion 200, so that the outward surface 2001 of the connecting plate portion 200 is positioned outside the outer surface of the rear portion 3000.

[0107] Therefore, when the connecting base part 20 is attached to the installation location with the outward surface 2001 of the connecting plate part 200 facing the installation location, the back part 3000 of the case 30 is not in contact with the installation location, and therefore the back part 3000 of the case 30 is prevented from interfering with the installation location, thereby preventing the rotational movement of the connection device main body 3 from being hindered.

[0108] In addition, in the case 30, the outer surface of the other side surface portion 3013 is also formed to be stepped, and the size of the step between the wiring surface portion 3010 side of the other side surface portion 3013 and the anti-wiring surface portion 3011 side of the other side surface portion 3013 is set to be less than the thickness of the connecting plate portion 210, so that the outward surface 2101 of the connecting plate portion 210 is positioned outside the outer surface of the other side surface portion 3013.

[0109] Therefore, when the connecting base part 21 is attached to the installation location with the outward surface 2101 of the connecting plate part 210 facing the installation location, the other side part 3013 of the case 30 is not in contact with the installation location, and by preventing the other side part 3013 of the case 30 from interfering with the installation location, the rotational movement of the connection device main body 3 can be prevented from being hindered.

[0110] Furthermore, both the connecting plate portion 200 and the connecting plate portion 210 can be fixed to the installation location by screwing or by pasting, which further improves ease of use during installation work.

[0111] Furthermore, the holding portion 402 of the connecting structure 4 rotatably holds the connection device main body 3 on the anti-wiring surface portion 3011 side opposite the wiring surface portion 3010 that exposes the insertion port of the terminal portion 31, making it easier to face the insertion port of the terminal portion 31 toward the worker, thereby improving workability.

[0112] The transmission line connection device according to the present invention is not limited to the above-described embodiment, and it goes without saying that various modifications can be made without departing from the spirit of the present invention.

[0113] Although the connection device 1 in the above embodiment is configured to connect an optical communication cable as the transmission line L1, the present invention is not limited to this configuration. For example, the connection device 1 may be configured to connect a broadcast line as the transmission line L1, or may be configured to connect a communication line or a power line.

[0114] In the above embodiment, the attachment portion 2011 of the connecting and fixing part 201 is configured by a magnet, but is not limited to this configuration. For example, the attachment portion 2011 of the connecting and fixing part 201 may be configured by a suction cup or an adhesive.

[0115] In the above embodiment, the attachment portion 2111 of the connecting and fixing portion 211 is configured by a magnet, but is not limited to this configuration. For example, the attachment portion 2111 of the connecting and fixing portion 211 may be configured by a suction cup or an adhesive.

[0116] In the above embodiment, the connection device 1 is configured so that the base 400 is formed in an axial shape and the bracket-side attachment portion 22 serves as a bearing, but this configuration is not limiting. For example, the connection device 1 may be configured so that the bracket-side attachment portion 22 is formed in an axial shape and the base 400 serves as a bearing.

[0117] In the connection device 1 of the above embodiment, the holding portion 402 is formed in a shaft shape and the case-side mounting portion 32 is configured to function as a bearing, but this configuration is not limiting. For example, the connection device 1 may be configured so that the case-side mounting portion 32 is formed in a shaft shape and the holding portion 402 functions as a bearing.

[0118] The connecting structure 4 in the above embodiment is configured to be able to stop rotation of the connection device main body 3 by static friction forces generated between the base 400 and the connecting plate 200 (specifically, the interference portion 2002) and static friction forces generated between the holding portion 402 and the front receiving wall 321, but is not limited to this configuration. For example, the connecting structure 4 may be configured to be able to stop rotation of the connection device main body 3 by engagement between the base 400 and the connecting plate 200 or engagement between the holding portion 402 and the front receiving wall 321.

[0119] In the connecting structure 4 of the above embodiment, the base 400 and the holding portion 402, which serve as the rotation center of the connection device main body 3, are formed in an axial shape, but the present invention is not limited to this configuration. For example, the connecting structure 4 may have a spherical joint as the rotation center of the connection device main body 3.

[0120] In this way, the connection device main body 3 can perform movements equivalent to the rotational movement around the first axis described in the description of the connecting structure 4 of the above embodiment, and movements equivalent to the rotational movement around the second axis, and can also more easily perform movements other than these rotational movements, thereby improving usability.

[0121] Although the connection device 1 in the above embodiment is configured to connect one input transmission line L1 and two output transmission lines L1, the present invention is not limited to this configuration.

[0122] For example, the connection device 1 may be configured to connect one input transmission line L1 and four output transmission lines L1 (see FIG. 16), or the connection device 1 shown in FIG. 16 may have multiple terminal units 31 configured from one input terminal unit 31 and four output terminal units 31.

[0123] Furthermore, the connection device 1 may be configured to connect one input transmission line L1 and eight output transmission lines L1 (see FIG. 17), or the connection device 1 shown in FIG. 17 may have multiple terminal units 31 configured from one input terminal unit 31 and eight output terminal units 31.

[0124] Furthermore, the connection device main body 3 may be configured to have an external case 34 provided on the outer surface of the case 30 as shown in Fig. 17, depending on the number of terminal parts 31. The case 30 and the external case 34 may be molded integrally, or may be configured as separate bodies.

[0125] In the above embodiment, the connecting base portion 21 is configured to be disposed opposite the other side surface portion 3013 of the plurality of narrow surface portions 301, but is not limited to this configuration. For example, the connecting base portion 21 may be configured to be disposed opposite one side surface portion 3012 of the plurality of narrow surface portions 301, as shown in FIG.

[0126] The connection device 1 shown in FIG. 18 is obtained by flipping the shape and structure of the connection device 1 shown in FIG. 11 from side to side.

[0127] Similarly, the connection device 1 shown in FIG. 16 may be configured, like the connection device 1 shown in FIG. 19, so that the connecting base portion 21 is arranged opposite one side portion 3012 of the multiple narrow surface portions 301, and similarly, the connection device 1 shown in FIG. 17 may be configured, like the connection device 1 shown in FIG. 20, so that the connecting base portion 21 is arranged opposite one side portion 3012 of the multiple narrow surface portions 301.

[0128] Furthermore, although not specifically mentioned in the description of the connection device 1 of the above embodiment, the layout of the external connection section 310 can also be reversed left to right as shown in FIG.

[0129] Similarly, the layout of the connection section 310 of the connection device 1 shown in FIG. 16 can be reversed left to right, as in the connection device 1 shown in FIG. 19, and the layout of the connection section 310 of the connection device 1 shown in FIG. 17 can be reversed left to right, as in the connection device 1 shown in FIG. 20.

[0130] Figure 14(b), which was referred to in the explanation of the connection device 1 of the above embodiment, illustrates a state in which the screw fastening portion 2010 of the connecting fixing portion 201, which was hidden behind the connection device main body 3, is revealed when the wiring surface portion 3010 of the connection device main body 3 is facing straight to the side, but the orientation of the wiring surface portion 3010 of the connection device main body 3 that can expose the entire screw fastening portion 2010 is not limited to a state in which the wiring surface portion 3010 of the connection device main body 3 is facing straight to the side, and varies depending on the size, etc. of the connection device main body 3 and the formation position of the screw fastening portion 2010, etc.

[0131] Although not particularly mentioned in the description of the connection device 1 of the above embodiment, the layout of the trunk line L2 shown in FIG. 6 is merely an example, and is not limited to the layout shown in FIG.

[0132] Although not specifically mentioned in the description of the interference portion 2002 in the above embodiment, the shape of the interference portion 2002 is not particularly limited as long as it can generate a static friction force between the base portion 400 and the interference portion 2002 . [Explanation of symbols]

[0133] 1...connection device, 2...bracket, 3...connection device main body, 4...connection structure, 20...connection base portion, 21...connection base portion, 22...bracket side mounting portion (connection portion), 30...case, 31...terminal portion, 32...case side mounting portion (connection portion), 33...inner protrusion portion, 34...external case, 40...connection structure main body, 41...mounting fixture, 200...connection plate portion, 201...connection fixing portion, 210...connection plate portion, 211...connection fixing portion, 220...insertion portion, 221...peripheral wall portion, 300...wide surface portion, 301...narrow surface portion, 302...accommodation portion, 303...cover portion, 310...external connection portion, 311...internal connection portion, 320...back support wall portion, 321...front Receiving wall portion, 400...base portion, 401...core portion, 402...holding portion, 403...interference protrusion portion, 411...washer, 2000...inner surface, 2001...outer surface, 2002...interference portion, 2010...screw fastening portion, 2011...attaching portion, 2100...inner surface, 2101...outer surface, 2110...screw fastening portion, 2111...attaching portion, 2200...through hole, 3000...rear portion, 3001...front portion, 3010...wiring connection surface portion, 3011...anti-wiring connection surface portion, 3012...one side portion, 3013...other side portion, A1...first axis, A2...second axis, L1...transmission line, L2...relay line, L20...input side relay line, L21...output side relay line, P...plug

Claims

1. A bracket that can be fixed to the installation location, a connection device body having a plurality of terminal portions for connecting transmission lines; a connecting structure that connects the bracket and the connection device body, The bracket and the connection device main body are connected to each other by connecting portions disposed opposite each other, The connecting structure is a base portion attached to the bracket in a state rotatable about a first axis extending along either a first direction in which the connecting portion of the bracket and the connecting portion of the connection device main body face each other, or a second direction intersecting the first direction; a holding portion that is integrated with the base portion and that holds the connection device main body in a state in which the connection device main body can rotate about a second axis that extends along the other of the first direction and the second direction, Transmission line connection equipment.

2. the coupling portion of the connection device main body is located on one side of the connection device main body in a third direction intersecting the first direction and the second direction, The plurality of terminal portions are configured to face the other side in the third direction.

2. The transmission line connection device according to claim 1.

3. The bracket is a connection base portion on which the connection portion is provided; a connecting base portion connected to the connecting base portion, The connecting base portion and the connecting base portion are configured to be selectively fixed to the installation location.

3. The transmission line connection device according to claim 2.

4. The connection device main body has a flat box-shaped case, In the case, The wide surface and a narrow surface portion having an outer surface area smaller than that of the wide surface portion, The wide surface portion is disposed opposite the connecting base portion, The narrow surface portion is configured to face the connecting base portion.

4. The transmission line connection device according to claim 3.

5. the base is configured to be able to maintain its posture by friction with the bracket; the holding portion is configured to be able to maintain the posture of the connection device body by friction with the connection device body even when the transmission line is connected to the terminal portion.

5. The transmission line connection device according to claim 1.

Citation Information

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