Wiring device of intelligent computing center switch cabinet
By setting up multiple wire storage mechanisms and driving mechanisms in the switch cabinet, and using transmission mechanisms and gear meshing switching to achieve orderly storage of wires, the problem of messy network cables in the switch cabinet is solved, the security and signal quality are improved, and the maintenance process is simplified.
Patent Information
- Application Number
- CN202422493666.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-10-15
AI Technical Summary
The network cables in the switch cabinet are messy, resulting in safety hazards, performance degradation and maintenance difficulties.
Multiple wire storage mechanisms and driving mechanisms are adopted to independently drive the wire storage through the transmission mechanism, and the wire is collected and released by the meshing switching of the drive rod and gear, and the state switching is achieved by combining motors and buttons or manual switching.
The orderly storage of wires is achieved, entangled and exposed, improved safety and signal transmission quality, and simplified maintenance operations.
Smart Images

Figure CN223188711U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of wire storage, and in particular to a wiring device for an intelligent computing center switch cabinet. Background Art
[0002] Switch cabinets play a crucial role in intelligent computing centers. As one of the core infrastructure components for data exchange and communication, switch cabinets centrally deploy and manage multiple switches, enabling high-speed, reliable connections between large-scale network nodes. These switches not only handle data communication between internal network devices (such as servers and storage devices), but also interconnect with external networks (such as the internet and other data centers), ensuring the efficient and secure execution of various computing tasks and data services in intelligent computing centers.
[0003] However, a significant issue that requires special attention in the daily operation and management of switch cabinets is the difficulty in effectively storing and organizing the network cables connecting the switches and network devices. Due to the dense equipment and complex network connections within the intelligent computing center, a large number of network cables (including optical fiber and copper cables) are intertwined within the cabinets. Without a scientific wiring plan and effective storage measures, the following problems will occur:
[0004] Disorganized: Unorganized network cables easily form a disorganized layout inside the cabinet, which not only affects the overall aesthetics of the computer room, but also brings inconvenience to subsequent maintenance and management.
[0005] Safety hazards: The messy accumulation of network cables may cause the insulation layer of the wires to wear, increase safety risks such as short circuits and leakage, and may even cause serious accidents such as fire.
[0006] Performance degradation: Bending, twisting, or squeezing of network cables may affect signal transmission quality, leading to performance issues such as increased network latency and packet loss, affecting the data processing efficiency and stability of the intelligent computing center.
[0007] Difficult maintenance: In an environment with tangled network cables, once a fault occurs and requires troubleshooting or replacing equipment, it will greatly increase the difficulty and time cost of finding the fault point and performing maintenance operations.
[0008] Therefore, in order to address the problem of difficulty in storing network cables inside switch cabinets, a series of measures need to be taken to improve and optimize them, such as designing reasonable wiring plans, using professional wiring products and tools, and implementing regular sorting and maintenance, so as to ensure the stable operation and efficient management of the intelligent computing center network system. Utility Model Content
[0009] In response to the problems existing in the prior art, the present invention provides a wiring device for an intelligent computing center switch cabinet, comprising:
[0010] A plurality of wire storage mechanisms, each of which is wound with wire;
[0011] A driving mechanism, wherein the driving mechanism independently drives each of the wire storage mechanisms to reel in or unreel through a plurality of transmission mechanisms;
[0012] Each of the line storage mechanisms and the driving mechanism is arranged inside the switch cabinet.
[0013] Preferably, each of the transmission mechanisms comprises:
[0014] A driving rod, wherein both ends of the driving rod are respectively provided with a first driving gear and a second driving gear;
[0015] an engagement switching device connected to the drive lever, configured to switch the drive lever to a first state so that the first drive gear engages with the drive mechanism and the second drive gear engages with the corresponding wire storage mechanism, and to switch the drive lever to a second state so that the second drive gear engages with the drive mechanism and the first drive gear engages with the corresponding wire storage mechanism;
[0016] When the driving rod is in the first state, the corresponding wire storage mechanism rotates in a first direction to complete wire winding; when the driving rod is in the second state, the corresponding wire storage mechanism rotates in a second direction to complete wire paying out.
[0017] Preferably, each of the deposit lines includes:
[0018] A fixed shaft is arranged on the inner wall of the switch cabinet, and a rotatable wire storage wheel is sleeved on the fixed shaft. One side of the wire storage wheel extends outward and is provided with a third driving gear. The third driving gear is engaged with the transmission mechanism to drive the wire storage wheel to rotate. When the transmission mechanism drives the third driving gear to rotate in a first direction, the wire storage mechanism reels in the wire. When the transmission mechanism drives the third driving gear to rotate in a second direction, the wire storage mechanism unwinds the wire.
[0019] Preferably, the driving mechanism includes:
[0020] A motor, wherein a plurality of fourth drive gears are provided on the rotating shaft of the motor, each of the fourth drive gears corresponds to one of the transmission mechanisms, and the fourth drive gears are engaged with the corresponding transmission mechanism to independently drive any of the line storage mechanisms to release or reel in the line.
[0021] Preferably, each of the transmission mechanisms further comprises:
[0022] a first limiting block, wherein when the driving rod is in the first state, the first driving gear abuts against the first limiting block;
[0023] The second limiting block is configured such that when the driving rod is in the second state, the second driving gear and the second limiting block are in contact with each other.
[0024] Preferably, each of the transmission mechanisms further includes a first switching button and a second switching button, which are arranged on the outer wall of the switch cabinet, and the engagement switching device includes:
[0025] a pusher, wherein a push rod of the pusher is connected to the driving rod and is also electrically connected to the first switching button and the second switching button respectively;
[0026] When the operator presses the first switching button, the pusher pushes the driving rod toward the first pushing direction so that the first driving gear is engaged with the driving mechanism, and the second driving gear is engaged with the corresponding wire storage mechanism so that the driving rod is in the first state;
[0027] When the operator presses the second switching button, the pusher pushes the drive rod toward the second pushing direction so that the second drive gear and the drive mechanism are engaged, and the first drive gear and the corresponding line storage mechanism are engaged so that the drive rod is in the second state.
[0028] Preferably, each of the transmission mechanisms also includes a third switching button, which is arranged on the outer wall of the switch cabinet. When the operator presses the third switching button, the pusher pushes the drive rod so that the first drive gear, the drive mechanism, the second drive gear and the corresponding line storage mechanism are not engaged with each other.
[0029] Preferably, the engagement switching device includes:
[0030] A travel groove is provided on the inner wall of the switch cabinet and connects the inside and the outside of the switch mechanism;
[0031] a travel rod, disposed in the travel slot and sliding between a travel start point and a travel end point of the travel slot, one end of the travel rod extending outward from the switch cabinet, and the other end of the travel rod connected to the drive rod;
[0032] When the operator pulls the travel rod to the travel starting point of the travel groove, the driving rod is driven to move in the first pushing direction so that the first driving gear is engaged with the driving mechanism, and the second driving gear is engaged with the corresponding wire storage mechanism so that the driving rod is in the first state;
[0033] When the operator pushes the travel rod to the travel end point of the travel groove, the drive rod is driven to move toward the second pushing direction so that the second drive gear and the drive mechanism are engaged, and the first drive gear and the corresponding wire storage mechanism are engaged so that the drive rod is in the second state.
[0034] Preferably, an elastic ball protruding from the inner wall of the travel groove is provided at the midpoint of the travel of the travel groove, and a clamping groove cooperating with the elastic ball is provided on the travel rod;
[0035] When the operator pulls the travel rod to cause the elastic ball to engage in the engaging groove, the first driving gear, the driving mechanism, the second driving gear and the corresponding wire storage mechanism are not engaged with each other.
[0036] The above technical solution has the following advantages or beneficial effects:
[0037] 1) The wires are wound on the wire storage mechanism for storage. Each wire storage mechanism is wound with a wire, and the wires do not interfere with each other, thus avoiding the problems of wire entanglement, disorder, and exposed wires that are easily damaged in traditional technologies.
[0038] 2) Through the cooperation of the drive mechanism and multiple transmission mechanisms, each wire storage mechanism can be independently driven to reel in or pay out the wires. When the network equipment moves and the distance between the network equipment and the switch cabinet changes, the wire storage mechanism can be driven to pay out the wires so that the operator can route the wires. After the routing is completed, the wire storage mechanism can be driven to reel in the excess wires.
[0039] 3) All wire storage mechanisms are driven by the same set of driving mechanisms, saving equipment costs; for each wire storage mechanism, there is an independent transmission mechanism between the driving mechanism, so that each wire storage mechanism is independent of each other and does not interfere with each other. BRIEF DESCRIPTION OF THE DRAWINGS
[0040] Figure 1 This is a top view of a wiring device for an intelligent computing center switch cabinet in a preferred embodiment of the present invention;
[0041] Figure 2 This is a schematic structural diagram of the driving mechanism in a preferred embodiment of the present invention;
[0042] Figure 3 This is a structural diagram of a wire storage mechanism in a preferred embodiment of the present invention;
[0043] Figure 4 This is a schematic structural diagram of the transmission mechanism in a preferred embodiment of the present utility model;
[0044] Figure 5This is a structural diagram of a meshing switching device in a preferred embodiment of the present utility model;
[0045] Figure 6 This is a structural diagram of another engagement switching device in a preferred embodiment of the present invention. DETAILED DESCRIPTION
[0046] The present invention is described in detail below with reference to the accompanying drawings and specific embodiments. The present invention is not limited to this embodiment, and other embodiments may also fall within the scope of the present invention as long as they conform to the main purpose of the present invention.
[0047] In a preferred embodiment of the present invention, based on the above-mentioned problems existing in the prior art, a wiring device for an intelligent computing center switch cabinet is provided, comprising:
[0048] A plurality of wire storage mechanisms 100, each wire storage mechanism 100 having a wire wound thereon;
[0049] The driving mechanism 200 independently drives each wire storage mechanism 100 to reel in or unreel through multiple transmission mechanisms 300;
[0050] Each line storage mechanism 100 and driving mechanism 200 is arranged inside the switch cabinet.
[0051] Specifically, in traditional intelligent computing center switch cabinets, wires (such as network cables and optical fibers) are connected at one end to the switch port of the switch device in the switch cabinet and at the other end to the network port of an external network device. The length of the wires is often greater than the distance between the switch cabinet and the network device. The excess wires are randomly scattered on the ground or randomly stuffed into the switch cabinet, resulting in tangled wires, disorganized cables, and exposed cables that are easily damaged.
[0052] In this embodiment, the wires are stored by winding them around the wire storage mechanism 100. Each wire storage mechanism 100 is wound with a wire, and the wires do not interfere with each other, thus avoiding the problems of wire entanglement, disorder, and easy damage caused by exposure in traditional technologies.
[0053] Furthermore, through the cooperation of the driving mechanism 200 and the multiple transmission mechanisms 300, each wire storage mechanism 100 can be independently driven to reel in or reel out the wires. When the network device moves and the distance between the network device and the switch cabinet changes, the wire storage mechanism 100 can be driven to reel out the wires so that the operator can route the wires. After the routing is completed, the wire storage mechanism 200 can be driven to reel in the excess wires.
[0054] All the wire storage mechanisms 100 are driven by the same set of driving mechanisms 200, saving equipment costs;
[0055] Each wire storage mechanism 100 is provided with an independent transmission mechanism 300 between the drive mechanism 200 , so that each wire storage mechanism 100 is independent of each other and does not interfere with each other.
[0056] Moreover, the winding or releasing state can be changed simply by changing the meshing relationship between the corresponding transmission mechanism 300 and itself and the driving mechanism 200.
[0057] In the preferred embodiment of the present invention, Figure 4 As shown, each transmission mechanism 300 includes:
[0058] A driving rod 310, with a first driving gear 320 and a second driving gear 330 respectively provided at both ends of the driving rod 310;
[0059] an engagement switching device connected to the drive rod 310, for switching the drive rod 310 to a first state so that the first drive gear 320 is engaged with the drive mechanism 200 and the second drive gear 330 is engaged with the corresponding wire storage mechanism 100, and switching the drive rod 310 to a second state so that the second drive gear 330 is engaged with the drive mechanism 200 and the first drive gear 320 is engaged with the corresponding wire storage mechanism 100;
[0060] When the driving rod 310 is in the first state, the corresponding wire storage mechanism 100 rotates in the first direction to complete wire winding. When the driving rod 320 is in the second state, the corresponding wire storage mechanism 100 rotates in the second direction to complete wire paying out.
[0061] Furthermore, each of the depositing mechanisms 100 in this embodiment includes:
[0062] The fixed shaft 110 is arranged on the inner wall of the switch cabinet 400. A rotatable wire storage wheel 120 is sleeved on the fixed shaft 110. One side of the wire storage wheel 120 extends outward and is provided with a third drive gear 130. The third drive gear 130 is engaged with the transmission mechanism 300 to drive the wire storage wheel 120 to rotate. When the transmission mechanism 300 drives the third drive gear 130 to rotate in the first direction, the wire storage mechanism 100 reels in the wire. When the transmission mechanism 300 drives the third drive gear 130 to rotate in the second direction, the wire storage mechanism 100 pays out the wire.
[0063] Furthermore, the driving mechanism 200 in this embodiment includes:
[0064] The motor 210 has a plurality of fourth drive gears 220 disposed on the rotating shaft 230 of the motor 210. Each fourth drive gear 220 corresponds to a transmission mechanism 300. The fourth drive gear 220 and the corresponding transmission mechanism 300 are engaged to independently drive any line storage mechanism 100 to release or reel in the line.
[0065] Specifically, such as Figure 1-4 As shown, the motor 210 in this embodiment drives all the fourth driving gears 220 to rotate synchronously. Figure 1 There are three sets of line storage mechanisms 100 and transmission mechanisms 300, which are respectively in the states of releasing the line (i.e., the second state), retrieving the line (i.e., the first state), and neither releasing nor retrieving the line (i.e., the third state) from right to left.
[0066] With respect to the wire storage mechanism 100 and the transmission mechanism 300 in the wire-releasing state, it can be seen that the fourth driving gear 220 keeps rotating. At this time, the upper sides of the first driving gear 320 and the fourth driving gear 220 ( Figure 1 The second driving gear 320 and the third driving gear 330 are engaged. Figure 1 From the perspective of the fourth driving gear 220, the fourth driving gear 220 is downward ( Figure 1 The first driving gear 320 rotates to the left ( Figure 1 Since the first driving gear 320 and the second driving gear 330 are coaxial, the second driving gear 330 also rotates to the left ( Figure 1 The second driving gear 330 drives the third driving gear 130 to the right ( Figure 1 (right) rotation of the viewing angle in the middle to release the line;
[0067] With respect to the wire storage mechanism 100 and the transmission mechanism 300 in the wire-reeling state, it can be seen that the fourth driving gear 220 keeps rotating. At this time, the lower sides of the second driving gear 330 and the fourth driving gear 230 ( Figure 1 The first drive gear 320 and the third drive gear 130 are engaged. Figure 1 From the perspective of the fourth driving gear 220, the fourth driving gear 220 is downward ( Figure 1 The first driving gear 320 rotates to the right ( Figure 1 Since the first driving gear 320 and the second driving gear 330 are coaxial, the second driving gear 330 also rotates to the right ( Figure 1 The second driving gear 330 drives the third driving gear 130 to the left ( Figure 1 (left of the perspective in the image) to reel in the line;
[0068] With respect to the wire depositing mechanism 100 and the transmission mechanism 300 in the state of neither retracting nor releasing, it can be seen that the first drive gear 320, the second drive gear 330, the third drive gear 130 and the fourth drive gear 220 are not engaged with each other, and thus no transmission relationship exists between the drive mechanism 200 and the wire depositing mechanism 100.
[0069] It can be seen that in order to change the winding, payout and the non-winding / non-releasing state of the wire storage mechanism 100 after winding / releasing is completed, it is only necessary to adjust the meshing relationship between the first drive gear 320, the second drive gear 330, the third drive gear 130 and the fourth drive gear 220. In addition, these three states can exist simultaneously, and the winding / payout / non-winding / non-releasing states of each wire storage mechanism are independent and do not interfere with each other.
[0070] In a preferred embodiment of the present invention, each transmission mechanism further includes a first switching button 410 and a second switching button 420, which are arranged on the outer wall of the switch cabinet. Figure 5 As shown, the engagement switching device 400 includes:
[0071] A pusher 430, wherein a push rod 431 of the pusher 430 is connected to the driving rod 310 and is also electrically connected to the first switch button 410 and the second switch button 420 respectively;
[0072] When the operator presses the first switching button 410, the pusher 430 pushes the driving rod 310 toward the first pushing direction so that the first driving gear 320 is engaged with the driving mechanism 200, and the second driving gear 330 is engaged with the corresponding wire storage mechanism 100 so that the driving rod 310 is in the first state;
[0073] When the operator presses the second switching button 420, the pusher 430 pushes the driving rod 310 toward the second pushing direction so that the second driving gear 330 and the driving mechanism 200 are engaged, and the first driving gear 320 and the corresponding wire storage mechanism 100 are engaged so that the driving rod 310 is in the second state.
[0074] In a preferred embodiment of the present invention, each transmission mechanism 300 further includes a third switching button 440, which is disposed on the outer wall of the switch cabinet. When an operator presses the third switching button 440, the pusher pushes the driving rod 310 so that the first driving gear 320, the driving mechanism 200, the second driving gear 330, and the corresponding line storage mechanism 100 do not mesh with each other.
[0075] Specifically, as shown in the figure, the winding / releasing / neither winding nor releasing state between the various stored lines in the aforementioned embodiment is switched by the engagement switching device 400. The engagement switching device 400 of this embodiment adopts an electric method. The operator only needs to press the corresponding button. When the first button is pressed, the pusher 410 can push the driving rod 310 toward the first pushing direction ( Figure 1 The first state is achieved when the pusher 430 moves to the maximum stroke in the first pushing direction and the second button 420 is pressed to push the driving rod 310 toward the second pushing direction ( Figure 1When the third button 440 is pressed, the driving rod 310 is pushed to the midpoint of the total stroke distance of the pusher 430 (ie, Figure 1 In the leftmost set of the wire storage mechanism 100 and the transmission mechanism 300, the third driving gear 130 is located between the first driving gear 320 and the second gear 330, and the first driving gear 320 and the second gear 330 are located above and below the fourth driving gear 220 ( Figure 1 (upper and lower perspective) between the gears on both sides).
[0076] The pushing direction of the pusher 430 after pressing the button can be achieved by using technical means in the prior art. It is not the inventive point of the present utility model, and it only needs to be able to achieve the above-mentioned effect.
[0077] In a preferred embodiment of the present invention, Figure 6 The illustrated engagement switching device 400 includes:
[0078] A travel groove 450 is provided on the inner wall of the switch cabinet and connects the inside and outside of the switch mechanism;
[0079] A travel rod 460 is disposed in the travel slot 450 and slides between a travel start point and a travel end point of the travel slot 450 . One end of the travel rod 460 extends outward from the switch cabinet, and the other end of the travel rod 460 is connected to the drive rod 310 .
[0080] When the operator pulls the travel rod 460 to the starting point of the travel groove 450, the driving rod 310 is driven to move in the first pushing direction so that the first driving gear 320 is engaged with the driving mechanism 200, and the second driving gear 330 is engaged with the corresponding wire storage mechanism 100, so that the driving rod 310 is in the first state;
[0081] When the operator pushes the travel rod 460 to the end of the travel groove 450, the driving rod 310 is driven to move toward the second pushing direction so that the second driving gear 330 and the driving mechanism 200 are engaged, and the first driving gear 320 and the corresponding wire storage mechanism 100 are engaged so that the driving rod is in the second state.
[0082] In a preferred embodiment of the present invention, an elastic ball 470 protruding from the inner wall of the travel groove 450 is provided at the midpoint of the travel of the travel groove 450, and a clamping groove 480 cooperating with the elastic ball is provided on the travel rod 460;
[0083] When the operator pulls the travel rod 460 to cause the elastic ball 470 to engage in the engaging groove 480 , the first driving gear 320 , the driving mechanism 200 , the second driving gear 330 and the corresponding wire storage mechanism 100 are not engaged with each other.
[0084] Furthermore, in this embodiment, unlike the above-mentioned electric engagement switching device 400, this embodiment adopts manual switching. The operator slides the travel rod 460 in the travel slot 450 to complete the switching between the three states in the above-mentioned embodiment. When the operator pulls the travel rod 460 to the starting point of the travel slot 450, the corresponding Figure 1 The state of the rightmost set of wire storage mechanism 100 and transmission mechanism 300 (second state / wire release state); when the operator pushes the stroke rod 460 to the end of the stroke groove 450, the corresponding Figure 1 The state of the middle set of wire storage mechanism 100 and transmission mechanism 300 (first state / wire rewinding state); when the operator pulls the stroke rod 460 to the midpoint of the stroke slot 450, the corresponding Figure 1 The state of the leftmost group of wire storage mechanisms 100 and transmission mechanisms 300 (third state / neither retracting nor releasing state).
[0085] In a preferred embodiment of the present invention, Figure 4 Each transmission mechanism 300 shown further includes:
[0086] The first limiting block 340 is configured such that when the driving rod 310 is in the first state, the first driving gear 320 abuts against the first limiting block 340 ;
[0087] The second limiting block 350 is in contact with the second driving gear 330 when the driving rod 310 is in the second state.
[0088] Specifically, in this embodiment, each transmission mechanism 300 further includes a first limit block 340 and a second limit block 350 for moving the driving rod 310 up and down ( Figure 1 The limit in the up and down directions prevents the driving rod 310 from exceeding the stroke and causing the gears to be unable to engage.
[0089] The above are only preferred embodiments of the present invention and do not limit the implementation methods and protection scope of the present invention. Those skilled in the art should be aware that all solutions obtained by equivalent substitutions and obvious changes made using the contents of this specification and illustrations should be included in the protection scope of the present invention.
Claims
1. A wiring device for an intelligent computing center switch cabinet, characterized in that: include: A plurality of wire storage mechanisms, each of which is wound with wire; A driving mechanism, wherein the driving mechanism independently drives each of the wire storage mechanisms to reel in or unreel through a plurality of transmission mechanisms; Each of the line storage mechanisms and the driving mechanism is arranged inside the switch cabinet.
2. The wiring device according to claim 1, wherein: Each of the transmission mechanisms comprises: A driving rod, wherein both ends of the driving rod are respectively provided with a first driving gear and a second driving gear; an engagement switching device connected to the drive lever, configured to switch the drive lever to a first state so that the first drive gear engages with the drive mechanism and the second drive gear engages with the corresponding wire storage mechanism, and to switch the drive lever to a second state so that the second drive gear engages with the drive mechanism and the first drive gear engages with the corresponding wire storage mechanism; When the driving rod is in the first state, the corresponding wire storage mechanism rotates in a first direction to complete wire winding; when the driving rod is in the second state, the corresponding wire storage mechanism rotates in a second direction to complete wire paying out.
3. The wiring device according to claim 1, wherein: Each of the depository institutions comprises: A fixed shaft is arranged on the inner wall of the switch cabinet, and a rotatable wire storage wheel is sleeved on the fixed shaft. One side of the wire storage wheel extends outward and is provided with a third driving gear. The third driving gear is engaged with the transmission mechanism to drive the wire storage wheel to rotate. When the transmission mechanism drives the third driving gear to rotate in a first direction, the wire storage mechanism reels in the wire. When the transmission mechanism drives the third driving gear to rotate in a second direction, the wire storage mechanism unwinds the wire.
4. The wiring device according to claim 1, wherein The driving mechanism comprises: A motor, wherein a plurality of fourth drive gears are provided on the rotating shaft of the motor, each of the fourth drive gears corresponds to one of the transmission mechanisms, and the fourth drive gears are engaged with the corresponding transmission mechanism to independently drive any of the line storage mechanisms to release or reel in the line.
5. The wiring device according to claim 2, wherein: Each of the transmission mechanisms further comprises: a first limiting block, wherein when the driving rod is in the first state, the first driving gear abuts against the first limiting block; The second limiting block is configured such that when the driving rod is in the second state, the second driving gear and the second limiting block abut against each other.
6. The wiring device according to claim 2, wherein: Each of the transmission mechanisms further includes a first switching button and a second switching button, which are arranged on the outer wall of the switch cabinet, and the engagement switching device includes: a pusher, wherein a push rod of the pusher is connected to the driving rod and is also electrically connected to the first switching button and the second switching button respectively; When the operator presses the first switching button, the pusher pushes the driving rod toward the first pushing direction so that the first driving gear is engaged with the driving mechanism, and the second driving gear is engaged with the corresponding wire storage mechanism so that the driving rod is in the first state; When the operator presses the second switching button, the pusher pushes the drive rod toward the second pushing direction so that the second drive gear and the drive mechanism are engaged, and the first drive gear and the corresponding line storage mechanism are engaged so that the drive rod is in the second state.
7. The wiring device according to claim 6, wherein: Each of the transmission mechanisms also includes a third switching button, which is arranged on the outer wall of the switch cabinet. When the operator presses the third switching button, the pusher pushes the drive rod so that the first drive gear, the drive mechanism, the second drive gear and the corresponding line storage mechanism are not engaged with each other.
8. The wiring device according to claim 2, wherein: The engagement switching device comprises: A travel groove is provided on the inner wall of the switch cabinet and connects the inside and the outside of the switch cabinet; a travel rod, disposed in the travel groove and sliding between a travel start point and a travel end point of the travel groove, one end of the travel rod extending outward from the switch cabinet, and the other end of the travel rod connected to the drive rod; When the operator pulls the travel rod to the travel starting point of the travel groove, the driving rod is driven to move in the first pushing direction so that the first driving gear is engaged with the driving mechanism, and the second driving gear is engaged with the corresponding wire storage mechanism so that the driving rod is in the first state; When the operator pushes the travel rod to the travel end point of the travel groove, the drive rod is driven to move toward the second pushing direction so that the second drive gear and the drive mechanism are engaged, and the first drive gear and the corresponding wire storage mechanism are engaged so that the drive rod is in the second state.
9. The wiring device according to claim 8, wherein: An elastic ball protruding from the inner wall of the travel groove is provided at the midpoint of the travel of the travel groove, and a clamping groove matching the elastic ball is provided on the travel rod; When the operator pulls the travel rod to cause the elastic ball to engage in the engaging groove, the first driving gear, the driving mechanism, the second driving gear and the corresponding wire storage mechanism are not engaged with each other.