Integrated support for a distributed control system
Patent Information
- Application Number
- CN202521806774.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-25
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-08-25
AI Technical Summary
[0003]现有的一体化支架虽然可对分布式控制系统进行支撑承载,然而通常支架架体不能够兼具线束收纳的功能,线束分布散乱,需要另外配置束线结构,因此使用相对麻烦
[0014] This utility model is equipped with a lifting support assembly. By adjusting the position and height of the inner support frame inside the lower support frame, the support height of the lifting support assembly can be adjusted, allowing the upper support frame on the upper side of the lifting support assembly to be located at different heights. After adjustment, it can be locked and fixed by locking bolts. The wire channel and cable channel are interconnected, so that the cable channel inside the inner support frame and the lower support frame can accommodate the cables of the distributed control system. At the same time, the wire channel on the lower side wall of the upper support frame facilitates wire threading, making it more convenient to use and preventing the wire harness from being scattered.
Smart Images

Figure CN224722117U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of distributed control system technology, specifically to an integrated support for a distributed control system. Background Technology
[0002] A distributed control system is a computerized control system consisting of multiple computers and dedicated control software connected through a communication network; distributed control systems require corresponding integrated support structures.
[0003] While existing integrated brackets can support and carry distributed control systems, the bracket frame usually cannot also store wire harnesses. The wire harnesses are scattered and require additional wiring harness structures, making them relatively cumbersome to use. Utility Model Content
[0004] The purpose of this invention is to provide an integrated support for a distributed control system to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: an integrated support for a distributed control system, comprising a base plate, a lifting support assembly, and a movable carrier plate. A lower support frame is fixed to the upper side of the base plate, and lifting support assemblies are installed on the upper sides of the four corners of the lower support frame. An upper support frame is installed on the top of the lifting support assembly. The lifting support assembly includes a lower support frame, locking bolts, an inner support frame, a cable trough, a wire threading trough, and a wire passage trough. Locking bolts pass through the outer side of the lower support frame, and an inner support frame is slidably installed on the upper inner side of the lower support frame. Cable troughs are provided inside both the inner support frame and the lower support frame. An extension assembly is installed in the middle of both the upper and lower support frames, and a movable carrier plate is installed on the upper side of the extension assembly. A positioning assembly is installed on the upper side of the movable carrier plate, and casters are provided at the bottom of the base plate.
[0006] Furthermore, the lower support frame is fixedly connected to the lower bearing frame, and the inner support frame is fixedly connected to the upper bearing frame, and the upper and lower bearing frames are parallel to each other.
[0007] Furthermore, the lifting support assembly also includes a wire threading groove and a cable passage groove. Wire threading grooves are provided at all four corners of the upper support frame, and the wire threading grooves are interconnected with the cable grooves. A cable passage groove is provided on the lower side wall of the upper support frame.
[0008] Furthermore, the extension component includes a fixed frame, a bidirectional lead screw, and a movable sleeve. The fixed frame is rotatably equipped with the bidirectional lead screw, and two movable sleeves are symmetrically sleeved on the outer side of the bidirectional lead screw.
[0009] Furthermore, the expansion component also includes a connecting block, with a connecting block fixed to the upper side of each of the two movable sleeves, and the upper side of the connecting block is fixedly connected to the movable carrier plate.
[0010] Furthermore, the movable sleeve is slidably connected to the inner wall of the fixed frame, and a drive motor is installed on the outer side of the fixed frame.
[0011] Furthermore, the positioning component includes a side plate, a slider, and a groove. The side plate is fixed to the side of the movable carrier plate, and a groove is formed on the upper surface of the movable carrier plate. The slider is slidably installed inside the groove.
[0012] Furthermore, the positioning assembly also includes a positioning plate, a threaded cylinder, and a threaded rod. The positioning plate is fixed to the upper side of the slider, and a threaded cylinder is provided in the middle of the side plate. The threaded cylinder is threaded with a threaded rod inside.
[0013] This utility model provides an integrated support for a distributed control system, which has the following advantages:
[0014] This utility model is equipped with a lifting support assembly. By adjusting the position and height of the inner support frame inside the lower support frame, the support height of the lifting support assembly can be adjusted, allowing the upper support frame on the upper side of the lifting support assembly to be located at different heights. After adjustment, it can be locked and fixed by locking bolts. The wire channel and cable channel are interconnected, so that the cable channel inside the inner support frame and the lower support frame can accommodate the cables of the distributed control system. At the same time, the wire channel on the lower side wall of the upper support frame facilitates wire threading, making it more convenient to use and preventing the wire harness from being scattered.
[0015] This utility model is equipped with an expansion component and a positioning component. The movable carrier plate is used to support the distributed control system. The expansion component facilitates the adjustment of the distance between the two movable carrier plates on the upper and lower carrier frames to expand the bearing surface, making it suitable for distributed control systems of different sizes. The positioning plate of the positioning component, together with the driving side plate on the other side, can position the distributed control system on the movable carrier plate to achieve stable bearing of the distributed control system. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural diagram of an integrated support for a distributed control system according to the present invention.
[0017] Figure 2 This is a half-sectional structural diagram of an integrated support for a distributed control system according to the present invention.
[0018] Figure 3 This is a side view of the integrated support structure of a distributed control system according to this utility model.
[0019] In the diagram: 1. Base plate; 2. Lower support frame; 3. Lifting support assembly; 301. Lower support frame; 302. Locking bolt; 303. Inner support frame; 304. Cable trough; 305. Wire groove; 306. Wire passage groove; 4. Upper support frame; 5. Extension assembly; 501. Fixed frame; 502. Two-way lead screw; 503. Moving sleeve; 504. Connecting block; 6. Moving carrier plate; 7. Drive motor; 8. Positioning assembly; 801. Side plate; 802. Positioning plate; 803. Slider; 804. Slide groove; 805. Threaded cylinder; 806. Threaded rod; 9. Moving wheel. Detailed Implementation
[0020] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0021] like Figure 1 As shown, an integrated support for a distributed control system includes a base plate 1, a lifting support assembly 3, and a movable carrier plate 6. A lower support frame 2 is fixed to the upper side of the base plate 1, and lifting support assemblies 3 are installed on the upper sides of the four corners of the lower support frame 2. An upper support frame 4 is installed on the top of the lifting support assembly 3. The lifting support assembly 3 includes a lower support frame 301, a locking bolt 302, an inner support frame 303, a cable trough 304, a wire threading trough 305, and a wire passage trough 306. The locking bolt 302 passes through the outer side of the lower support frame 301, and the inner support frame 303 is slidably installed on the upper inner side of the lower support frame 301. Cable troughs 304 are opened inside both the inner support frame 303 and the lower support frame 301. The lower support frame 301 is fixedly connected to the lower support frame 2, and the inner support frame 303 is fixedly connected to the upper support frame 4. The upper support frame 4 and the lower support frame 6 are also fixedly connected. The two are parallel to each other. The lifting support assembly 3 also includes a wire-passing groove 305 and a cable tray 306. The four corners of the upper support frame 4 are provided with wire-passing grooves 305, and the wire-passing grooves 305 are connected to the cable trays 304. The lower side wall of the upper support frame 4 is provided with a cable tray 306. By adjusting the position and height of the inner support frame 303 inside the lower support frame 301, the support height of the lifting support assembly 3 can be adjusted, so that the upper support frame 4 on the upper side of the lifting support assembly 3 can be located at different heights. After adjustment, it can be locked and fixed by locking bolts 302. The wire-passing groove 305 and the cable tray 304 are connected to each other, so that the cable tray 304 inside the inner support frame 303 and the lower support frame 301 can accommodate the cables of the distributed control system. At the same time, the cable tray 306 on the lower side wall of the upper support frame 4 facilitates wire passing, making it more convenient to use and preventing the wire harness from being scattered.
[0022] like Figures 1-2As shown, an extension assembly 5 is installed in the middle of both the upper support frame 4 and the lower support frame 2, and a movable carrier plate 6 is installed on the upper side of the extension assembly 5. The extension assembly 5 includes a fixed frame 501, a bidirectional lead screw 502, and a movable sleeve 503. The bidirectional lead screw 502 is rotatably mounted inside the fixed frame 501, and two movable sleeves 503 are symmetrically sleeved on the outer side of the bidirectional lead screw 502. The extension assembly 5 also includes a connecting block 504. The upper side of each of the two movable sleeves 503 is fixedly connected to the movable carrier plate 6. The movable sleeves 503 are connected to the fixed frame. The inner wall of 501 is slidably connected, and a drive motor 7 is installed on the outer side of the fixed frame 501. The movable carrier plate 6 is used to support the distributed control system. The drive motor 7 facilitates the rotation of the bidirectional lead screw 502 inside the fixed frame 501, which in turn drives the moving sleeves 503 on the outer side of the bidirectional lead screw 502 to move in opposite directions. This causes the two moving sleeves 503 and the connecting block 504 to move the two movable carrier plates 6, thereby adjusting the distance between the two movable carrier plates 6 on the upper support frame 4 and the lower support frame 2 to expand the bearing surface. This is suitable for distributed control systems of different sizes.
[0023] like Figures 2-3 As shown, a positioning assembly 8 is installed on the upper side of the movable carrier plate 6. The positioning assembly 8 includes a side plate 801, a slider 803, and a groove 804. The side plate 801 is fixed to the side of the movable carrier plate 6, and a groove 804 is formed on the upper surface of the movable carrier plate 6. The slider 803 is slidably installed inside the groove 804. The positioning assembly 8 also includes a positioning plate 802, a threaded cylinder 805, and a threaded rod 806. The positioning plate 802 is fixed to the upper side of the slider 803, and the threaded cylinder 805 is provided in the middle of the side plate 801. The threaded cylinder 805 has a threaded rod 806 screwed into its internal thread, and the bottom of the base plate 1 is provided with a movable wheel 9. The sliding engagement of the slider 803 and the slide groove 804 facilitates the movement of the positioning plate 802 on the movable carrier plate 6. By rotating the threaded rod 806 inside the threaded cylinder 805, the threaded rod 806 can push the positioning plate 802 at its front end to move. In turn, the positioning plate 802, together with the other side driving the side plate 801, can position the distributed control system on the movable carrier plate 6, so as to realize the stable bearing of the distributed control system.
[0024] In summary, as Figures 1-3As shown, the integrated support frame of this distributed control system can be used by first adjusting the position and height of the inner support frame 303 on the inner side of the lower support frame 301. After adjustment, it can be locked and fixed by locking bolts 302, thereby adjusting the support height of the upper support frame 4 above the lifting support assembly 3. Then, the movable carrier plate 6 can be adjusted according to the size of the distributed control system. At this time, the drive motor 7 can drive the rotation of the bidirectional lead screw 502 inside the fixed frame 501, which in turn drives the moving sleeves 503 on the outer side of the bidirectional lead screw 502 to move in opposite directions. This causes the two moving sleeves 503 and the connecting block 504 to move the two movable carrier plates 6. Finally, the distance between the two movable carrier plates 6 on the upper support frame 4 and the lower support frame 2 can be adjusted to expand the bearing surface. Then, the distributed control system can be placed on the upper side of the movable carrier plate 6. The threaded rod 806 inside the threaded cylinder 805 can be rotated to push the positioning plate 802 at its front end to move. The sliding cooperation of the slider 803 and the slide groove 804 can promote the movement of the positioning plate 802 on the moving carrier plate 6. In turn, the positioning plate 802, together with the other side driving the side plate 801, can position the distributed control system on the moving carrier plate 6, so as to achieve stable support of the distributed control system. During the process, the wire groove 305 and the cable groove 304 are interconnected, so that the cable groove 304 inside the inner support frame 303 and the lower support frame 301 can hold the cable of the distributed control system. At the same time, the wire groove 306 on the lower side wall of the upper support frame 4 can pass the wire through, thereby preventing the wire harness from being scattered. In this way, the use process of the integrated bracket of the distributed control system is completed.
[0025] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.
Claims
1. An integrated support for a distributed control system, comprising a base plate (1), a lifting support assembly (3), and a movable carrier plate (6), characterized in that, A lower support frame (2) is fixed to the upper side of the base plate (1), and lifting support assemblies (3) are installed on the upper side of the four corners of the lower support frame (2). An upper support frame (4) is installed on the top of the lifting support assembly (3). The lifting support assembly (3) includes a lower support frame (301), a locking bolt (302), an inner support frame (303), a cable trough (304), a wire trough (305), and a wire passage trough (306). A locking bolt (302) passes through the outer side of the lower support frame (301). 02), and an inner support frame (303) is slidably installed on the upper inner side of the lower support frame (301), and cable grooves (304) are opened inside the inner support frame (303) and the lower support frame (301). An extension component (5) is installed in the middle of the upper support frame (4) and the lower support frame (2), and a movable carrier plate (6) is installed on the upper side of the extension component (5). A positioning component (8) is installed on the upper side of the movable carrier plate (6), and a movable wheel (9) is provided at the bottom of the base plate (1).
2. The integrated support frame for a distributed control system according to claim 1, characterized in that, The lower support frame (301) is fixedly connected to the lower support frame (2), and the inner support frame (303) is fixedly connected to the upper support frame (4). Moreover, the upper support frame (4) and the lower support frame (2) are parallel to each other.
3. The integrated support frame for a distributed control system according to claim 1, characterized in that, The lifting support assembly (3) also includes a wire threading groove (305) and a cable passage groove (306). The upper support frame (4) is provided with wire threading grooves (305) at all four corners, and the wire threading grooves (305) are connected to the cable grooves (304). The lower side wall of the upper support frame (4) is provided with a cable passage groove (306).
4. The integrated support frame for a distributed control system according to claim 1, characterized in that, The extension component (5) includes a fixed frame (501), a bidirectional lead screw (502), and a movable sleeve (503). The fixed frame (501) is rotatably provided with the bidirectional lead screw (502), and two movable sleeves (503) are symmetrically sleeved on the outer side of the bidirectional lead screw (502).
5. The integrated support frame for a distributed control system according to claim 4, characterized in that, The extension component (5) also includes a connecting block (504), and the upper sides of the two movable sleeves (503) are fixed with the connecting block (504), and the upper side of the connecting block (504) is fixedly connected to the movable carrier plate (6).
6. The integrated support frame for a distributed control system according to claim 4, characterized in that, The movable sleeve (503) is slidably connected to the inner wall of the fixed frame (501), and a drive motor (7) is installed on the outer side of the fixed frame (501).
7. The integrated support frame for a distributed control system according to claim 1, characterized in that, The positioning component (8) includes a side plate (801), a slider (803) and a groove (804). The side plate (801) is fixed to the side of the movable carrier plate (6), and a groove (804) is provided on the upper surface of the movable carrier plate (6). The slider (803) is slidably installed inside the groove (804).
8. The integrated support frame for a distributed control system according to claim 7, characterized in that, The positioning component (8) further includes a positioning plate (802), a threaded cylinder (805), and a threaded rod (806). The positioning plate (802) is fixed on the upper side of the slider (803), and the threaded cylinder (805) is provided in the middle of the side plate (801). The threaded rod (806) is screwed into the internal thread of the threaded cylinder (805).