A wire adapter
By designing a wire adapter that includes a wire outlet hole row, a single connection component and a row connection piece, the problem of time-consuming and labor-intensive operation of traditional wire adapters is solved, and flexible and efficient wire control is achieved with a simple structure and low cost.
Patent Information
- Application Number
- CN202211084435.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-06
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2042-09-06
AI Technical Summary
Traditional single-input, multiple-output screw-type wire adapters are time-consuming and labor-intensive to operate when multiple outlet terminals need to be wired, and lack efficient control methods.
A wire adapter is designed, which includes a conductive plate and a shell. The shell is provided with a wire outlet row, a single connection component and a row connection piece. The connection of a single or multiple wire outlets is controlled by a single control component and a row control component, thereby realizing independent or batch control.
It provides a flexible wire pressing method, and users can choose to control wires individually or in batches according to their needs, which improves operating efficiency, has a simple structure and low cost.
Smart Images

Figure CN115986509B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electronic components, and in particular to a wire adapter. Background Art
[0002] Conventional cable adapters are mostly screw-type cable adapters with one input and multiple outputs.
[0003] For example, the Chinese utility model patent with application number CN202023061094.3 discloses a safe and dust-proof terminal box, which consists of a box body, a box cover, terminal blocks, screws, and a stepped insulating bracket; this type of traditional one-input and multiple-output screw-type wire adapter has the following disadvantages: one screw controls one outlet terminal. When multiple outlet terminals need to be wired, it is necessary to operate the corresponding screws one by one, which is time-consuming and labor-intensive. Summary of the Invention
[0004] In view of the problems existing in the prior art, the present invention proposes a wire adapter which can independently control the wiring of each wire outlet and batch control the wiring of multiple wire outlets.
[0005] The present invention is achieved through the following technical solutions:
[0006] A wire adapter, comprising a shell with a conductive plate installed, a wire outlet hole row being provided on one side of the shell, the wire outlet hole row comprising a plurality of wire outlet holes, and the plurality of wire outlet holes being arranged in a line in a direction parallel to the front face of the shell; the shell is also equipped with a single connection component, the single connection component comprising a plurality of single connection frames arranged corresponding to each wire outlet hole in the wire outlet hole row, the single connection frames being arranged on the downstream side of the corresponding wire outlet holes in the plugging direction of the wires inserted into the wire outlet holes; the shell is also slidably connected to a row connection piece, the row connection piece comprising a plurality of wire insertion slots, the plurality of wire insertion slots being arranged one by one on the downstream side of each single connection frame of the single connection piece in the plugging direction, for allowing the wires inserted into the wire outlet holes and passing through the corresponding single connection frames to pass along the plugging direction. The wire direction is further inserted; the conductive plate includes a single-connection plate group and a strip plate group; the single-connection plate group includes multiple single-connection plates, which are used to be inserted one by one into each single-connection frame of the single-connection component; the strip plate group includes multiple strip plates, which are used to be inserted one by one into each wire socket of the strip connector; the single-connection plate includes a single-connection surface facing the wire in the single-connection frame, and the shell is equipped with multiple single controls for pushing each single-connection frame one by one to press the wire inserted into the single-connection frame against the corresponding single-connection surface; the strip plate includes a strip connection surface facing the wire in the wire socket, and the shell is equipped with a strip control component for pushing the strip connector to press each wire passing through the single-connection frame and inserted into the corresponding wire socket against its corresponding strip connection surface.
[0007] The single-connection frame is arranged on the downstream side of the corresponding wire outlet hole in the wire insertion direction of the wire insertion hole, and the multiple wire insertion grooves are arranged one by one on the downstream side of each single-connection frame of the single-connection component in the wire insertion direction. Thus, the wire inserted into the wire outlet hole can be further inserted into the corresponding single-connection frame in the single-connection component along the wire insertion direction, and further inserted into the corresponding wire insertion groove in the connector strip.
[0008] The shell is equipped with multiple single controls for pushing each single connection frame one by one to press the wires inserted into the single connection frame against the corresponding single connection surface; the shell is also equipped with a row control component for pushing the connection piece to press the wires passing through the single connection frame and inserted into the corresponding wire insertion slot against their respective corresponding row connection surfaces; thus, after the wires are inserted into the wire outlet holes, the corresponding single connection frames and the wire insertion slots in sequence along the wire insertion direction, the user can either press each wire one by one through the single control component, or press the entire row of wires together through the row control component, so that the user can choose a more time-saving and labor-saving wire pressing method according to actual usage needs.
[0009] Preferably, the single junction is located on the side of the corresponding wire facing the front of the shell, and the single control includes a screw portion and a rotating column portion, the screw portion is perpendicular to the single junction and is screwed to the single junction frame, and the rotating column portion is connected to one end of the screw portion facing the front of the shell and is connected to the shell.
[0010] After being mounted on a wall, the front of the housing faces the user. Preferably, the single joint is located on the side of the wire facing the front of the housing. The single control comprises a screw portion and a rotating column portion. The screw portion is perpendicular to the single joint and is screwed to the single joint frame. The rotating column portion is connected to the end of the screw portion facing the front of the housing and is rotated to the housing. Thus, the user can conveniently rotate the rotating column portion relative to the housing from the front of the user. The rotating column portion drives the screw portion to rotate, thereby driving the single joint frame to move in the direction of pressing the wire to the single joint, or in the direction of releasing the pressing of the wire.
[0011] Preferably, the moving direction of the row connecting member is parallel to the arrangement direction of the wire outlet holes in the row of wire outlet holes.
[0012] The length direction of the connector is the arrangement direction of the wire sockets it has, the single frame corresponds to the wire outlet hole, and the wire sockets of the connector correspond to the single frame. Preferably, the moving direction of the connector is parallel to the arrangement direction of the wire outlet holes in the wire outlet hole row, that is, the length direction of the connector is parallel to the arrangement direction of its wire sockets. Thus, the connector can be slidably connected to the shell through the side with the long side, which is beneficial to improve the stability of the sliding connection between the connector and the shell, and is also beneficial to improve the support of the shell for the connector.
[0013] Preferably, the exhaust control assembly includes an active part connected to the conductive plate, a transmission part connected to the active part, and a driven part; the active part includes a column and a control block connected to the column, the column passes through the conductive plate in a direction perpendicular to the front of the shell, and the control block is arranged on the side of the conductive plate facing the front of the shell.
[0014] The conductive plate is fixedly connected to the housing, which is mounted on a wall via its rear surface and faces an operator via its front surface. Preferably, the rod extends through the conductive plate in a direction perpendicular to the front surface of the housing, and the control block is disposed on the side of the conductive plate facing the front surface of the housing, thereby facilitating operation by the operator. Specifically, the control block can be a hexagonal nut or a cross nut. The operator uses a corresponding screwdriver or wrench to drive the active member to rotate relative to the conductive plate via the control block.
[0015] Preferably, the follower includes a ramp block connected to the connecting member; the ramp block includes a ramp surface, and the ramp surface is arranged on the upstream side of the ramp block in the pressing direction of the connecting member; the transmission member includes a push block for pressing against the ramp surface; the column rod is screwed to the push block, and the push block is slidably connected to the outer shell in the penetration direction of the column rod.
[0016] The moving direction of the connecting piece is parallel to the arrangement direction of the wire outlet holes in the wire outlet hole row, and the arrangement direction of the wire outlet holes in the wire outlet hole row is parallel to the front face of the shell. Therefore, the moving direction of the connecting piece is parallel to the front face of the shell; the column rod passes through the conductive plate in a direction perpendicular to the front face of the shell. Therefore, the sliding direction of the connecting piece is perpendicular to the penetration direction of the column rod.
[0017] Preferably, the driven member includes a ramp block connected to the connecting member, the transmission member includes a push block for pressing the ramp block, the column rod is screwed to the push block, and the push block is slidably connected to the housing in the direction of penetration of the column rod; the push block presses against the sloped surface of the ramp block, and the push block and the ramp block constitute an inclined wedge mechanism, thereby, the push block can be driven to press against the ramp block by rotating the active member, thereby pushing the ramp block toward the line pressing direction of the connecting member, thereby driving the connecting member connected to the ramp block to move along its own line pressing direction. After the adjustment is completed, the column rod, which is no longer affected by the force applied by the operator, can be locked relative to the push block it is screwed to through the self-locking nature of the thread to prevent the connecting member from moving back.
[0018] Preferably, the driven member includes a push rod parallel to the sliding direction of the connecting member and screwed to the outer shell, and the connecting member includes a stop plate located downstream of the push rod in its own pressing direction; the active member also includes a main bevel gear connected to the column rod, the transmission member includes a slave bevel gear connected to the outer shell and meshing with the main bevel gear, and the push rod includes a square rod portion for passing through the slave bevel gear.
[0019] The sliding direction of the connecting piece is perpendicular to the penetration direction of the column. It preferably includes a main bevel gear and a slave bevel gear that mesh with each other. Specifically, the axial direction of the main bevel gear is perpendicular to the axial direction of the slave bevel gear. By rotating the column relative to the conductive plate, the main bevel gear is driven to rotate, and the main bevel gear further drives the slave bevel gear to rotate. The slave bevel gear drives the push rod screwed to the shell to rotate. The push rod moves along the sliding direction of the connecting piece while rotating. Thus, by rotating the column, the push rod can be pressed against the plate along the pressing direction of the connecting piece, thereby driving the connecting piece to move along its own pressing direction to press the line. After the adjustment is completed, the push rod is relatively locked to the shell through the self-locking property of the thread to prevent the connecting piece from moving back.
[0020] Preferably, the housing is connected to an elastic member for pressing the row connecting member in a direction opposite to the line pressing direction of the row connecting member.
[0021] Therefore, when the operating column is rotated to move the push block or the push rod back, the elastic member can drive the connecting member to move back in the opposite direction of its own wire pressing direction to release the pressure of the connecting member on the wire.
[0022] Preferably, the housing includes a plurality of rows of wire outlet holes, and the conductive plate includes a corresponding number of single-connection plate groups and row plate groups; the housing is installed with a corresponding number of single-connection components, row connectors, single controls, and a plurality of row control components arranged one by one on the same side of each row connector; the housing is also slidably connected to a control board located on the other side of each row connector, and the housing is also installed with a row control component on the side of the control board away from the row connector, which is used to push the control board toward the wire pressing direction of the row connector, thereby driving each row connector to press the wire together.
[0023] Preferably, the housing is further slidably connected to a control panel located on the other side of each row of connectors. A control assembly is also mounted on the side of the housing away from the connectors, for moving the control panel toward the connectors' wire-pressing direction, thereby driving each row of connectors to press the wires together. Thus, when there are multiple rows of wire outlets, each wire can be compressed individually using a single control panel, each row of wires can be compressed individually using a control assembly, or each row of wires can be compressed together using a control assembly located on the side of the control panel away from the connectors.
[0024] Preferably, a hanging groove is provided on the back side of the shell, and a buckle is provided on the inner wall of the hanging groove.
[0025] Thus, a hanging plate can be installed on the wall, and multiple shells can be quickly and neatly hung on the hanging plate through the hanging grooves, and then more stably fastened and fixed to the hanging plate through the fasteners.
[0026] Preferably, the shell has two side walls perpendicular to the wire insertion direction, one with a protrusion and the other with a groove; the protrusion is used to be plugged into the groove on the shell adjacent to the side, and the groove is used to be plugged into the protrusion on the shell adjacent to the side.
[0027] The two side walls of the shell that are perpendicular to the direction of plugging in, that is, the two side walls of the shell that do not require wiring, can allow the shell to abut against other adjacent shells. Preferably, one of the two side walls that do not require wiring is provided with a protrusion and the other is provided with a groove, so that adjacent shells can be easily plugged in through the protrusion and the groove to be arranged neatly.
[0028] The embodiments of the present invention have the following beneficial effects:
[0029] 1. The housing is equipped with a single connection frame corresponding to each outlet hole, a single control for controlling each single connection frame, a row of connectors corresponding to each row of outlet holes, a row control assembly for controlling each row of connectors, a control board for driving each row of connectors to move together, and a row control assembly for controlling the movement of the control board. After the wires are inserted into the outlet holes, the corresponding single connection frames, and the wire slots in sequence along the insertion direction, the user can either press each wire one by one using the single control, or press the entire row of wires together using the row control assembly for controlling each row of connectors one by one, or press each row of wires together using the control board and the row control assembly for controlling the movement of the control board, so that the user can choose a more time-saving and labor-saving wire pressing method according to actual usage needs.
[0030] 2. The length direction of the connector is the arrangement direction of the wire sockets provided thereon. The wire sockets of the connector correspond to the single connection frame, and the single connection frame corresponds to the wire outlet holes. The moving direction of the connector is parallel to the arrangement direction of the wire outlet holes in the row of wire outlet holes, that is, the length direction of the connector is parallel to the arrangement direction of its wire sockets. Therefore, the connector can be slidably connected to the shell through the side with the long side, which is beneficial to improving the stability of the sliding connection between the connector and the shell, and also beneficial to improving the support of the shell for the connector.
[0031] 3. In one embodiment, the driven member includes a ramp block connected to the connecting member; the ramp block includes a ramp surface, and the ramp surface is arranged on the upstream side of the ramp block in the line-pressing direction of the connecting member; the transmission member includes a push block for pressing against the ramp surface; the column rod is screwed to the push block, and the push block is slidably connected to the housing in the penetration direction of the column rod. By rotating the active member, the push block can be driven to press against the ramp block, and then the ramp block can be pushed toward the line-pressing direction of the connecting member, and then the connecting member connected to the ramp block can be driven to move along its own line-pressing direction. After the adjustment is completed, the column rod, which is no longer affected by the force applied by the operator, can be relatively locked with the push block to which it is screwed through the self-locking property of the thread. This embodiment has a simple structure and low production cost.
[0032] 4. In another embodiment, the driven member comprises a push rod, and the connecting member comprises a counterplate. The active member comprises a main bevel gear connected to the column, the transmission member comprises a slave bevel gear, and the push rod comprises a square rod portion for engaging the slave bevel gear. By rotating the column relative to the conductive plate, the main bevel gear is driven to rotate, which in turn drives the slave bevel gear, which in turn drives the push rod threaded to the housing. This rotation simultaneously moves the push rod in the sliding direction of the connecting member. Thus, by rotating the column, the push rod can be pressed against the counterplate in the direction of the connecting member's line pressure, thereby causing the connecting member to move in its own line pressure direction. After adjustment is complete, the push rod is locked relative to the housing via the self-locking nature of the threads. This embodiment has a stable and reliable structure.
[0033] 5. The housing is connected to an elastic member for pressing the connector in the opposite direction of the wire pressing direction of the connector. Therefore, when the operating column is rotated to move the push block or push rod back, the elastic member can drive the connector to move back in the opposite direction of its own wire pressing direction, so as to release the pressure of the connector on the wire.
[0034] 6. The housing has two side walls perpendicular to the direction of insertion, one with a protrusion and the other with a groove. The back of the housing also has a mounting groove, the inner wall of which is provided with a fastener. This facilitates the insertion of adjacent housings through the protrusions and grooves for neat arrangement. Alternatively, a mounting plate can be installed on the wall, and multiple housings can be quickly and neatly mounted on the mounting plate through the mounting grooves, and then more stably fastened to the mounting plate using the fastener. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] Figure 1 is a schematic diagram of the three-dimensional structure of the wire adapter;
[0036] Figure 2 is a schematic diagram of the three-dimensional structure of the wire adapter from another perspective;
[0037] Figure 3This is a schematic diagram of the three-dimensional structure of the wire adapter after part of the outer shell is removed;
[0038] Figure 4 It is a three-dimensional structural diagram of the discharge control assembly, discharge connector and control board installed on the conductive plate;
[0039] Figure 5 It is a schematic diagram of the three-dimensional structure of the discharge control assembly in which the driven member includes a ramp block;
[0040] Figure 6 The figure is a three-dimensional structural diagram of an exhaust control assembly in which the driven part includes a bevel gear.
[0041] In the figure: 1 housing, 11 wire outlet hole row, 111 wire outlet hole, 12 hanging groove, 13 protrusion, 14 groove, 2 conductive plate, 21 single connection plate group, 211 single connection plate, 2111 single connection surface, 22 row connection plate group, 221 row connection plate, 2211 row connection surface, 3 single connection frame, 4 row connection parts, 41 plug slot, 42 abutment plate, 5 single control, 51 screw part, 52 rotating column part, 6 row control assembly, 61 active part, 611 column, 612 control block, 613 main bevel gear, 62 transmission part, 621 push block, 622 from bevel gear, 63 driven part, 631 ramp block, 632 push rod, 6321 square rod part, 7 elastic part, 8 control plate, 9 buckle part. DETAILED DESCRIPTION
[0042] The following specific embodiments are merely explanations of the present invention and are not limitations of the present invention. After reading this specification, those skilled in the art may make non-creative modifications to the embodiments as needed. However, as long as they are within the scope of the claims of the present invention, they are protected by patent law.
[0043] A wire adapter, such as Figure 1 , comprising a housing 1 with a conductive plate 2 installed thereon, a wire outlet hole row 11 being provided on one side of the housing 1, the wire outlet hole row 11 comprising a plurality of wire outlet holes 111 arranged in a line in a direction parallel to the front face of the housing 1.
[0044] like Figure 3 and 4 The housing 1 is also equipped with a single-connection component, which includes a plurality of single-connection frames 3 arranged one-to-one corresponding to each outlet hole 111 of the outlet hole row 11. The single-connection frame 3 is arranged on the downstream side of the corresponding outlet hole 111 in the insertion direction of the wire into the outlet hole 111.
[0045] The housing 1 is also slidably connected to a strip connector 4, which includes a plurality of wire insertion slots 41. The plurality of wire insertion slots 41 are arranged one by one on the downstream side of each single-connection frame 3 of the single-connection assembly in the wire insertion direction, and are used for allowing the wires inserted into the wire outlet hole 111 and passing through the corresponding single-connection frame 3 to be further inserted along the wire insertion direction.
[0046] The conductive plate 2 includes a single-connection plate group 21 and a strip plate group 22; the single-connection plate group 21 includes multiple single-connection plates 211, which are used to be inserted one by one into each single-connection frame 3 of the single-connection component; the strip plate group 22 includes multiple strip plates 221, which are used to be inserted one by one into each wiring slot 41 of the strip connector 4.
[0047] The single-connection plate 211 includes a single connection surface 2111 facing the wires in the single connection frame 3, and the housing 1 is equipped with multiple single controls 5 for pushing each single connection frame 3 one by one to press the wires inserted into the single connection frame 3 against the corresponding single connection surface 2111; the strip connection plate 221 includes a strip connection surface 2211 facing the wires in the wire insertion slot 41, and the housing 1 is equipped with a strip control component 6 for pushing the strip connection component 4 to press each wire passing through the single connection frame 3 and inserted into the corresponding wire insertion slot 41 against its corresponding strip connection surface 2211.
[0048] Thus, the user can either compress each wire one by one through the single control 5 or compress each row of wires one by one through the row control component 6.
[0049] The direction of movement of the single connection frame 3, which is used to press the wires against the single connection surface 2111, is the wire-pressing direction of the single connection frame 3, and the direction of movement of the row connection member 4, which is used to press the wires against the row connection surface 2211, is the wire-pressing direction of the row connection member 4. Preferably, both the single connection surface 2111 and the row connection surface 2211 are provided with ridges to increase the contact area with the wires, thereby increasing friction and preventing the compressed wires from falling out.
[0050] After being mounted on the wall, the front of the housing 1 faces the user. The single-joint surface 2111 is located on the side of the housing 1 facing the front of the corresponding wire. The single control 5 includes a screw portion 51 and a rotating column portion 52. The screw portion 51 is perpendicular to the single-joint surface 2111 and is screwed to the single-joint frame 3. The rotating column portion 52 is connected to the end of the screw portion 51 facing the front of the housing 1 and is transferred to the housing 1. The front of the rotating column is provided with a single-control hole for allowing the user to pass through the housing 1 to rotate the rotating column. The side of the rotating column away from the screw portion 51 is provided with a cross hole. As a result, the user can conveniently use a cross screwdriver to control the rotating column portion 52 to rotate relative to the housing 1 from the front facing the user. The rotating column portion 52 drives the screw portion 51 to rotate, thereby driving the single-joint frame 3 to move in the direction of pressing the wire to the single-joint surface 2111, or to move in the direction of releasing the pressing of the wire.
[0051] To enable the connector 4 to be slidably connected to the housing 1 along its length, the movement direction of the connector 4 is parallel to the arrangement direction of the outlet holes 111 in the outlet hole row 11. Thus, the connector 4 can be slidably connected to the housing 1 via the side surface having the long side, which helps to improve the stability of the sliding connection between the connector 4 and the housing 1 and also helps to improve the support of the housing 1 for the connector 4.
[0052] The exhaust control assembly 6 includes an active member 61 connected to the conductive plate 2, a transmission member 62 connected to the active member 61, and a driven member 63. The active member 61 includes a column 611 and a control block 612 connected to the column 611. The column 611 passes through the conductive plate 2 in a direction perpendicular to the front of the housing 1. The control block 612 is arranged on the side of the conductive plate 2 facing the front of the housing 1. The control block 612 can be an external hexagonal column or a cylinder with a cross hole. The front of the housing 1 is provided with an exhaust control hole for an operator to pass through the housing 1 to operate the control block 612 to rotate relative to the conductive plate 2.
[0053] like Figure 5 In one embodiment, the driven member 63 includes a ramp block 631 connected to the connecting member 4; the ramp block 631 includes a ramp surface, which is located upstream of the ramp block 631 in the line-pressing direction of the connecting member 4. Correspondingly, the transmission member 62 includes a push block 621 for pressing against the ramp surface. The column 611 is screwed onto the push block 621, and the push block 621 is slidably connected to the housing 1 in the direction of penetration of the column 611. In this embodiment, the push block 621 presses against the ramp surface. The push block 621 and the ramp block 631 form an inclined wedge mechanism. By rotating the active member 61, the push block 621 can be driven to press against the ramp block 631, thereby pushing the ramp block 631 toward the line-pressing direction of the connecting member 4, thereby driving the connecting member 4 connected to the ramp block 631 to move along its own line-pressing direction. After the adjustment is completed, the column rod 611 which is no longer affected by the force applied by the operator can be relatively locked with the push block 621 screwed thereto through the self-locking property of the thread, so as to prevent the connecting member 4 from moving back.
[0054] like Figure 6In another embodiment, the driven member 63 includes a push rod 632 parallel to the sliding direction of the connecting member 4 and threadedly connected to the housing 1. The connecting member 4 includes a stop plate 42 located downstream of the push rod 632 in its own pressing direction. The active member 61 further includes a main bevel gear 613 connected to the column 611. The transmission member 62 includes a slave bevel gear 622 connected to the housing 1 and meshing with the main bevel gear 613. The push rod 632 includes a square rod portion 6321 for connecting to the slave bevel gear 622. Specifically, the axial direction of the main bevel gear 613 is perpendicular to the axial direction of the slave bevel gear 622. In this embodiment, by rotating the column 611 relative to the conductive plate 2, the main bevel gear 613 can be driven to rotate. The main bevel gear 613 further drives the slave bevel gear 622 to rotate. The slave bevel gear 622 drives the push rod 632 screwed to the housing 1 to rotate. The push rod 632 moves along the sliding direction of the connecting member 4 while rotating. Thus, by rotating the column 611, the push rod 632 can be pressed against the plate 42 in the pressing direction of the connecting member 4, thereby driving the connecting member 4 to move along its own pressing direction to press the wire. After adjustment is completed, the push rod 632 is locked relative to the housing 1 through the self-locking property of the thread to prevent the connecting member 4 from moving back.
[0055] Furthermore, the housing 1 is connected to an elastic member 7 for pressing the connector 4 in the direction opposite to the wire pressing direction of the connector 4. Therefore, when the operating column 611 rotates to move the push block 621 or the push rod 632 back, the elastic member 7 can drive the connector 4 to move back in the direction opposite to its own wire pressing direction, thereby releasing the pressure of the connector 4 on the wires.
[0056] One side of the housing 1 can be provided with multiple rows of wire hole rows 11, and the multiple rows of wire hole rows 11 are arranged in a direction perpendicular to the front of the housing 1. Accordingly, the conductive plate 2 includes a corresponding number of single-connection plate groups 21 and row connection plate groups 22; the housing 1 is installed with a corresponding number of single-connection components, row connection parts 4, single control components 5, and multiple row control components 6 arranged one by one on the same side of each row connection part 4; the housing 1 is also slidably connected to a control board 8 located on the other side of each row connection part 4, and the housing 1 is also installed with a row control component 6 on the side of the control board 8 away from the row connection part 4, which is used to push the control board 8 toward the wire pressing direction of the row connection part 4, thereby driving each row connection part 4 to press the wires together. Therefore, the user can also press each row of wires together through the row control component 6 arranged on the side of the control board 8 away from the row connection part 4.
[0057] In actual use, there are situations where multiple wire adapters need to be installed in one area. In order to enable multiple wire adapters to be installed on the wall quickly and neatly, such as Figure 2On the one hand, a hanging groove 12 is provided on the back of the shell 1, and a buckle 9 is provided on the inner wall of the hanging groove 12. In this way, a hanging plate can be installed on the wall, and multiple shells 1 can be quickly and neatly hung on the hanging plate through the hanging groove 12, and then more stably buckled and fixed to the hanging plate through the buckle 9. On the other hand, in the two side walls of the shell 1 perpendicular to the plug-in direction, that is, the two side walls of the shell 1 that do not require wiring, one is provided with a protrusion 13 and the other is provided with a groove 14; the protrusion 13 is used to plug into the groove 14 on the shell 1 adjacent to the side, and the groove 14 is used to plug into the protrusion 13 on the shell 1 adjacent to the side. In this way, without setting up a hanging plate, it is convenient for adjacent shells 1 to be plugged into the wall through the protrusion 13 and the groove 14 so as to be quickly and neatly installed.
[0058] The embodiments of the present invention described above and shown in the accompanying drawings are for illustrative purposes only and do not limit the present invention. Any person skilled in the art can easily think of various equivalent modifications or replacements within the technical scope disclosed by the present invention, and these modifications or replacements should all be included in the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be based on the scope of protection of the claims. The purpose of the present invention has been fully and effectively achieved. The functional and structural principles of the present invention have been demonstrated and explained in the embodiments. Without departing from the principles, the embodiments of the present invention may be deformed or modified in any way.
Claims
1. A wire adapter, characterized in that: A housing (1) is provided with a conductive plate (2), a wire outlet hole row (11) is provided on one side of the housing (1), the wire outlet hole row (11) comprises a plurality of wire outlet holes (111), and the plurality of wire outlet holes (111) are arranged in a line in a direction parallel to the front surface of the housing (1); The housing (1) is further provided with a single connection assembly, the single connection assembly comprising a plurality of single connection frames (3) arranged corresponding to each outlet hole (111) of the outlet hole row (11), the single connection frames (3) being arranged on the downstream side of the corresponding outlet hole (111) in the insertion direction of the wires into the outlet hole (111); The housing (1) is also slidably connected to a row connection piece (4), and the row connection piece (4) includes a plurality of wire insertion slots (41), and the plurality of wire insertion slots (41) are arranged one by one on the downstream side of each single connection frame (3) of the single connection assembly in the wire insertion direction, and are used for allowing the wires inserted into the wire outlet hole (111) and passing through the corresponding single connection frame (3) to be further inserted along the wire insertion direction; The conductive plate (2) comprises a single-connection plate group (21) and a row-connection plate group (22); the single-connection plate group (21) comprises a plurality of single-connection plates (211) for being inserted one by one into each single-connection frame (3) of the single-connection assembly; the row-connection plate group (22) comprises a plurality of row-connection plates (221) for being inserted one by one into each wiring slot (41) of the row-connection component (4); The single-connection plate (211) includes a single connection surface (2111) facing the wires in the single connection frame (3), and the housing (1) is equipped with a plurality of single controls (5) for pushing each single connection frame (3) one by one, so as to press the wires inserted into the single connection frame (3) against the corresponding single connection surface (2111); the row connection plate (221) includes a row connection surface (2211) facing the wires in the plug-in slot (41), and the housing (1) is equipped with a row control component (6) for pushing the row connection component (4), so as to press each wire passing through the single connection frame (3) and inserted into the corresponding plug-in slot (41) against its corresponding row connection surface (2211); The control assembly (6) includes an active member (61) connected to the conductive plate (2), a transmission member (62) connected to the active member (61), and a driven member (63); the active member (61) includes a column (611) and a control block (612) connected to the column (611), the column (611) passes through the conductive plate (2) in a direction perpendicular to the front of the housing (1), and the control block (612) is arranged on the side of the conductive plate (2) facing the front of the housing (1); the driven member (63) includes a push rod (632) parallel to the sliding direction of the row connection member (4) and screwed to the housing (1), the row connection member (4) includes a stop plate (42) located downstream of the push rod (632) in its own pressing direction; the active member (61) also includes a main bevel gear (613) connected to the column (611), the transmission member (62) is connected to the column (611), and the control block (612) is connected to the column (611). ) includes a slave bevel gear (622) connected to the housing (1) and meshing with the main bevel gear (613), and the push rod (632) includes a square rod portion (6321) for being connected to the slave bevel gear (622); the housing (1) includes a plurality of wire outlet holes (11), and the conductive plate (2) includes a corresponding number of single-connection plate groups (21) and row connection plate groups (22); the housing (1) is installed with a corresponding number of single-connection components, row connection parts (4), single control components (5), and a plurality of row control components (6) arranged one by one on the same side of each row connection part (4); the housing (1) is also slidably connected to a control board (8) located on the other side of each row connection part (4), and the housing (1) is also installed with a row control component (6) on the side of the control board (8) away from the row connection part (4), which is used to push the control board (8) toward the line pressing direction of the row connection part (4), thereby driving each row connection part (4) to press the line together.
2. The wire adapter according to claim 1, characterized in that: The single junction (2111) is located on the side of the corresponding wire facing the front of the housing (1), and the single control (5) includes a screw portion (51) and a rotating column portion (52), the screw portion (51) is perpendicular to the single junction (2111) and is screwed to the single junction frame (3), and the rotating column portion (52) is connected to the end of the screw portion (51) facing the front of the housing (1) and is connected to the housing (1).
3. The wire adapter according to claim 1, characterized in that: The moving direction of the row connection member (4) is parallel to the arrangement direction of each outlet hole (111) in the outlet hole row (11).
4. The wire adapter according to claim 1, characterized in that: The housing (1) is connected to an elastic member (7) for pressing the row connecting member (4) in a direction opposite to the line pressing direction of the row connecting member (4).
5. The wire adapter according to claim 1, characterized in that: A hanging groove (12) is provided on the back of the housing (1), and a buckle (9) is provided on the inner wall of the hanging groove (12).
6. The wire adapter according to claim 1, characterized in that: The housing (1) has two side walls perpendicular to the wiring direction, one of which is provided with a protrusion (13) and the other with a groove (14); the protrusion (13) is used to be plugged into the groove (14) on the housing (1) adjacent to the side, and the groove (14) is used to be plugged into the protrusion (13) on the housing (1) adjacent to the side.
Citation Information
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Dustproof wiring terminal box with good safety
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