Planet row controller structure

By designing the planetary row controller structure, the wiring complexity and maintenance difficulty caused by the single row wiring design are solved, and the stability of the wiring line and the maintenance-friendly effect are achieved.

CN222996812UActive Publication Date: 2025-06-17TIANXIA PRECISION CONTROL (XIAMEN) TECH CO LTD
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Patent Information

Application Number
CN202421700218.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-18
Publication Date
2025-06-17
Estimated Expiration
2034-07-18

AI Technical Summary

Technical Problem

The wiring pins on existing controllers are designed with a single row, resulting in complex wiring arrangements and narrow wiring space when connecting multiple devices, increasing the difficulty of maintenance and troubleshooting.

Method used

A planetary row controller structure is designed, including a controller housing, control module, both side plates and two wiring rows. The wiring row is installed between the two side plates and the connecting shaft is flipped for easy maintenance and troubleshooting.

Benefits of technology

Through the planetary row design, the stability of the wiring row is achieved and maintenance is facilitated, which reduces cable interweaving and chaos, and reduces the difficulty of maintenance and troubleshooting.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a planet row controller structure, which comprises a controller shell, a control module, at least two side plates and at least two line banks, the control module is arranged on the inner bottom wall of the controller shell, and the at least two side plates are arranged on the left side of the controller shell. According to the planet row controller structure, the butt-joint circuits on the two devices are separated from the two connector bars respectively, so that maintenance of the circuits and elimination of faults are facilitated, the connector bar on the upper side is rotated, the connector bar on the upper side and the connector bar on the lower side are in a vertical state, and the connector bar on the lower side and the connector bar on the lower side are in a vertical state. Meanwhile, the connector bar on the lower side is exposed, maintenance and troubleshooting of circuits on the connector bar on the lower side are facilitated, in addition, the fasteners are tightened to be attached to the side plates on the front side, then the two side plates are attached to the connector bar on the upper side, and therefore the connector bar on the upper side is fixed; and the stability of the line bank after line installation is ensured.
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Description

Technical Field

[0001] The utility model relates to the technical field of controllers, in particular to a planetary gear controller structure. Background Art

[0002] The controller is a main command device that changes the wiring of the main circuit or control circuit and the resistance value in the circuit in a predetermined order to control the start, speed regulation, braking and reversal of the motor. It is composed of a program counter, an instruction register, an instruction decoder, a timing generator and an operation controller. It is the "decision-making body" that issues commands, that is, it coordinates and directs the operation of the entire computer system.

[0003] The wiring pins on current controllers usually adopt a single-row design. When multiple devices need to be connected to the controller, the line arrangement on the controller is complicated, and the single-row design may lead to narrow wiring space. When multiple devices need to be connected, the cables are easily intertwined and messy, which increases the difficulty of maintenance and troubleshooting. Especially on densely populated controller boards, there may be a risk of connection difficulties or miswiring. Utility Model Content

[0004] In view of the deficiencies in the prior art, the utility model provides a planetary gear controller structure, which solves the problem that a single-row design may result in narrow wiring space, and when multiple devices need to be connected, the cables are easily intertwined and confused, increasing the difficulty of maintenance and troubleshooting.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a planetary gear controller structure, including a controller housing, a control module, at least two side plates and at least two terminal blocks;

[0006] The control module is arranged on the inner bottom wall of the controller housing, at least two of the side panels are arranged on the left side of the controller housing, and an installation area is formed between at least two of the side panels;

[0007] At least two of the terminal blocks are installed between the two side plates and are located inside the installation area;

[0008] At least two of the wiring banks are electrically connected to the control module.

[0009] Furthermore, a connecting shaft is connected through the interior of the upper wiring bank along the Y-axis direction, and both ends of the connecting shaft are rotatably connected to the interior of the two side plates, so that the upper wiring bank can be flipped on the ZX plane.

[0010] Furthermore, a bearing plate is installed between the opposite sides of the two side plates, and the bearing plate is attached to the lower surface of the upper wiring bank.

[0011] Further, a limiting ring that fits against the back surface of the rear side plate is sleeved outside the connecting shaft;

[0012] And a fastening member that fits against the front surface of the front side plate is threadedly connected outside the connecting shaft.

[0013] Further, a plurality of wiring ports are arranged along the Y-axis direction inside at least two of the wiring rows.

[0014] Further, at least two of the wiring rows are arranged at intervals up and down.

[0015] Compared with the prior art, the technical solution of the present application has the following beneficial effects:

[0016] For the planetary gear controller structure, by respectively connecting the docking lines on two devices to two wiring rows, the docking lines on the two devices are separated, facilitating the maintenance of the lines and the troubleshooting of faults. By rotating the upper wiring row, the upper wiring row is perpendicular to the lower wiring row, and at the same time, the lower wiring row is exposed, making it convenient to maintain the lines on the lower wiring row and troubleshoot faults. In addition, by tightening the fastening member, the fastening member fits against the front side plate, and further the two side plates fit against the upper wiring row to fix the upper wiring row, ensuring the stability of the wiring row after the lines are installed. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a schematic structural diagram of the present utility model;

[0018] Figure 2 is a schematic internal structural diagram of the present utility model;

[0019] Figure 3 is a schematic left view structural diagram of the present utility model;

[0020] Figure 4 is a schematic connection structural diagram of the connecting shaft and the wiring row of the present utility model.

[0021] In the figure: 1, controller housing; 2, control module; 3, side plate; 4, wiring row; 5, connecting shaft; 6, carrier plate; 7, fastening member. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0023] Please refer toFigures 1-4 , a planetary row controller structure in this embodiment is used to dock multiple devices, making the arrangement of the connected lines neat, which is convenient for maintenance and troubleshooting.

[0024] Specifically, it includes a controller housing 1, a control module 2, at least two side plates 3 and at least two terminal blocks 4; the control module 2 is arranged on the inner bottom wall of the controller housing 1, at least two side plates 3 are both arranged on the left side of the controller housing 1, and an installation area is formed between at least two side plates 3; at least two terminal blocks 4 are both installed between the two side plates 3 and are located inside the installation area, and at least two terminal blocks 4 are electrically connected to the control module 2.

[0025] During actual use, the docking lines on two devices are respectively connected to the two terminal blocks 4, so that the docking lines on the two devices are separated, which is convenient for the maintenance and troubleshooting of the lines.

[0026] Preferably, in order to facilitate the maintenance of the lines on the lower terminal block 4, a connecting shaft 5 is penetrated and connected along the Y-axis direction inside the upper terminal block 4 in this embodiment. The two ends of the connecting shaft 5 are respectively rotatably connected inside the two side plates 3, so that the upper terminal block 4 can be flipped on the ZX plane.

[0027] During actual use, by rotating the upper terminal block 4, the upper terminal block 4 is perpendicular to the lower terminal block 4, and at the same time the lower terminal block 4 is exposed. At this time, it is convenient for the maintenance and troubleshooting of the lines on the lower terminal block 4.

[0028] In addition, in order to support the upper terminal block 4 and prevent the upper terminal block 4 from rotating excessively, a bearing plate 6 is installed between the opposite sides of the two side plates 3, and the bearing plate 6 is attached to the lower surface of the upper terminal block 4.

[0029] During actual setting, the bearing plate 6 is in a parallel state with the lower terminal block 4, that is, when the upper terminal block 4 is attached to the bearing plate 6, the two terminal blocks 4 are in a parallel state.

[0030] Further preferably, in order to fix the upper terminal block 4, a limit ring that fits the back surface of the rear side plate 3 is sleeved outside the connecting shaft 5 in this embodiment; and a fastener 7 that fits the front surface of the front side plate 3 is threadedly connected outside the connecting shaft 5.

[0031] During actual use, by tightening the fastener 7, the fastener 7 fits the front side plate 3, and then the two side plates 3 fit the upper terminal block 4, so as to fix the upper terminal block 4 and ensure the stability of the terminal block 4 after the lines are installed.

[0032] It should be noted that a plurality of wiring ports are arranged inside at least two wiring rows 4 along the Y-axis direction, and at least two wiring rows 4 are distributed at intervals up and down.

[0033] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A planetary gear controller structure, characterized in that: It comprises a controller housing (1), a control module (2), at least two side panels (3) and at least two wiring banks (4); The control module (2) is arranged on the inner bottom wall of the controller housing (1), at least two of the side panels (3) are arranged on the left side of the controller housing (1), and an installation area is formed between at least two of the side panels (3); At least two of the wiring blocks (4) are installed between the two side plates (3) and are located inside the installation area; At least two of the wiring banks (4) are electrically connected to the control module (2).

2. A planetary gear controller structure according to claim 1, characterized in that: A connecting shaft (5) is connected to the interior of the upper wiring row (4) along the Y-axis direction, and the two ends of the connecting shaft (5) are respectively rotatably connected to the interior of the two side plates (3), so that the upper wiring row (4) can be turned over on the ZX plane.

3. A planetary gear controller structure according to claim 2, characterized in that: A bearing plate (6) is installed between the opposite sides of the two side plates (3), and the bearing plate (6) is attached to the lower surface of the upper wiring row (4).

4. A planetary gear controller structure according to claim 2, characterized in that: A limiting ring is sleeved on the outer side of the connecting shaft (5) and is fitted with the back side of the rear side side plate (3); A fastener (7) is threadedly connected to the outside of the connecting shaft (5) and is fitted to the front side of the front side plate (3).

5. A planetary gear controller structure according to claim 1, characterized in that: At least two of the wiring banks (4) are provided with a plurality of wiring ports along the Y-axis direction.

6. A planetary gear controller structure according to claim 1, characterized in that: At least two of the wiring banks (4) are spaced apart and distributed vertically.