Data acquisition module support of power test cabinet
By adding bending edges and cable ties to the data acquisition module bracket, the wire harness can be directly bundled. Combined with cable trays to optimize cable management, the problems of low space utilization, complex installation, and high cost caused by existing cable tie frames are solved, achieving the effects of simplified installation, reduced costs, and improved system reliability.
Patent Information
- Application Number
- CN202423073578.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2034-12-12
AI Technical Summary
The existing power test cabinet's data acquisition module bracket design requires additional cable ties, resulting in low space utilization, complex installation, high cost, difficult maintenance, and short line life.
Design a data acquisition module bracket that includes bent edges and cable ties for direct bundling of wire harnesses, eliminating the need for cable tie frames. Combined with cable trays, it optimizes cable management and provides stability and thermal management.
Simplify the installation process, reduce material and labor costs, improve cable management efficiency, extend cable life, and enhance system reliability and thermal stability.
Smart Images

Figure CN223815383U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the power test cabinet field of wind driven generator system, concretely relates to a data acquisition module support of power test cabinet. BACKGROUND
[0002] The power acquisition module is installed on the guide rail, the original data acquisition module support can only fix the power acquisition module, when the module needs to be wired, another wire holder needs to be additionally installed for fixing the wire harness, and the purpose of the wire holder is only to fix the connecting wire on the mounting plate, the design needs additional multiple wire holders to stably fix, thereby causing many problems, first, the space utilization rate is low, and the wire position flexibility is insufficient, second, the wire holder needs to be separately installed, the installation steps are increased, the installation time is prolonged, and the error risk in the installation process can be increased, third, the wire harness is fixed on the independent wire holder, the complexity of the later maintenance and overhaul is increased, the fault troubleshooting time can be prolonged, then, material waste is caused, and the cost is increased, and finally, the wire is fixed in such a bending mode, and the service life of the wire can be greatly affected.
[0003] In order to solve the above problems, a series of improvements are made. CONTENT OF THE UTILITY MODEL
[0004] The utility model aims at providing a data acquisition module support of power test cabinet to overcome the above-mentioned shortcomings and deficiencies existing in the prior art.
[0005] A data acquisition module support of power test cabinet, comprising a data acquisition module support, a bent edge, a wire hole, a guide rail and a wire slot, the data acquisition module support is symmetrically arranged on both sides of the guide rail, the bent edge is connected with both sides of the top end of the data acquisition module support, the wire hole is arranged on the bent edge, and wire slots are arranged on both sides of the data acquisition module support.
[0006] Further, the data acquisition module support is a symmetrical structure, the data acquisition module support comprises a fixed bottom edge, a side edge and a connecting top edge, the fixed bottom edge is connected with the mounting panel through a hole, the fixed bottom edge is connected with the side edge, the side edge is symmetrically arranged on both sides of the connecting top edge, the connecting top edge is connected with the bent edge, the side edge is in contact with both ends of the data acquisition module, and the connecting top edge is in contact with the top end of the data acquisition module.
[0007] The utility model has the advantages that:
[0008] Compared with the prior art, the wire harness of the data acquisition module can be directly bundled on the wire hole of the data acquisition module support, and the material cost and labor cost of installing the wire holder are saved. DRAWINGS
[0009] Figure 1 It is a structural schematic view of the utility model.
[0010] Reference signs:
[0011] The data acquisition module support 100, the fixed bottom edge 110, the side edge 120 and the connecting top edge 130.
[0012] The bending edge 200, the wire bundling hole 300, the guide rail 400, the wiring slot 500 and the data acquisition module 600. DETAILED DESCRIPTION
[0013] The utility model will be further explained in connection with specific embodiments. It should be understood that the following embodiments are only used to illustrate the utility model and are not used to limit the scope of the utility model.
[0014] Embodiment 1
[0015] Figure 1 It is a structural schematic view of the utility model.
[0016] As Figure 1 Indicated, a kind of data acquisition module support of power test cabinet, it include: data acquisition module support 100, bending edge 200, wire bundling hole 300, guide rail 400 and wiring slot 500, data acquisition module support 100 is symmetrically arranged in guide rail 400 both sides, bending edge 200 is connected with the top end both sides of data acquisition module support 100, bending edge 200 is equipped with wire bundling hole 300, data acquisition module support 100 adjacent two sides are equipped with wiring slot 500.
[0017] Data acquisition module support 100 is symmetrical structure, data acquisition module support 100 include: fixed bottom edge 110, side edge 120 and connecting top edge 130, fixed bottom edge 110 is connected with mounting panel by hole, fixed bottom edge 110 is connected with side edge 120, side edge 120 is symmetrically arranged in connecting top edge 130 both sides, connecting top edge 130 is connected with bending edge 200, side edge 120 is contacted with the front and rear ends of data acquisition module 600, connecting top edge 130 is contacted with the top end of data acquisition module 600.
[0018] The utility model discloses an innovation lies in, first on data acquisition module support 100 increase bending edge 200, replace the flanging structure of traditional structure, compared with flanging structure, the length of bending edge 200 is longer, the purpose is that wire bundling hole 300 can be increased in bending edge 200.This design not only optimizes space utilization, but also provides convenient cable management solution.The need of additional installation wire bundling frame is saved by directly bundling wire harness on wire bundling hole, so as to reduce material and labor cost.This design effectively simplifies installation process, improves overall efficiency.
[0019] On the other hand, the integrated design of the data acquisition module support 100 wire harness fixation: the data acquisition module support 100 adopts a cover design, and the combination of the fixed bottom edge 110 and the side edge 120 can stably protect the data acquisition module 600, enhancing the stability of the data acquisition module 600. The bent edge 200 not only provides a fixing point for the wire harness through the wire tying hole 300, but also provides additional support. After the wire harness is inserted into the module, it is bent downward and tied at the wire tying hole 300, ensuring the stability and safety of the wire harness. Subsequently, the wire harness is guided into the wire routing groove 500, further optimizing the arrangement and protection of the cable.
[0020] Finally, the functionality enhancement of the wire routing groove 500: the design of the wire routing groove 500 makes cable management more orderly, reducing the possibility of cable entanglement and signal interference. By introducing the wire harness into the wire routing groove 500, the cable is protected from the external environment, prolonging the service life of the cable and improving the reliability of the system. Moreover, compared with traditional wire tying frames, the wire routing groove 500 is not just a cable containment space, but also achieves passive thermal management of the cable through the combination of heat conduction and heat dissipation materials. The arrangement of the wire harness in the wire routing groove is optimized through thermal fluid dynamics simulation, ensuring the thermal stability of the system during high-load operation and improving the consistency and reliability of overall performance. Traditional wire tying frames not only lack such capabilities, but also can affect other components or be affected by other components.
[0021] Compared with the traditional technology, the wire harness of the data acquisition module can be directly tied on the wire tying hole of the data acquisition module support, saving the material cost and labor cost of installing the wire tying frame.
[0022] The specific embodiments of the utility model have been described above, but the utility model is not limited thereto, as long as it does not deviate from the purpose of the utility model, the utility model can also have various changes.
Claims
1. A data acquisition module rack for a power test cabinet, characterized by, Include: Data acquisition module support (100), bending edge (200), wire hole (300), guide rail (400) and wiring slot (500), the data acquisition module support (100) is symmetrically arranged on both sides of the guide rail (400), the bending edge (200) is connected with the top of the data acquisition module support (100) on both sides, the bending edge (200) is provided with wire hole (300), the data acquisition module support (100) is provided with wiring slot (500) on both sides.
2. The data acquisition module rack of a power test cabinet of claim 1, wherein: The data acquisition module support (100) is a symmetrical structure, the data acquisition module support (100) comprises a fixed bottom edge (110), a side edge (120) and a connecting top edge (130), the fixed bottom edge (110) is connected with the mounting panel through the hole, the fixed bottom edge (110) is connected with the side edge (120), the side edge (120) is symmetrically arranged on both sides of the connecting top edge (130), the connecting top edge (130) is connected with the bending edge (200), the side edge (120) is in contact with the front and rear ends of the data acquisition module (600), and the connecting top edge (130) is in contact with the top end of the data acquisition module (600).