Compact power supply distributor

By using a U-shaped base box and a stepped wiring harness design, the problem of high space occupancy in power distributors is solved, enabling stable wiring terminal layout in a compact space, reducing the impact of adjacent wiring harnesses, and optimizing the overall structure of the power distributor.

CN223540443UActive Publication Date: 2025-11-11CHENCHUAN IND INTELLIGENT TECH (SUZHOU) CO LTD
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Patent Information

Application Number
CN202422043647.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-11-11
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

Traditional power distributors have a high space occupancy rate, complex structure, lack integrated planning of wiring area, and are difficult to stably deploy wiring terminals and reduce mutual interference between wiring terminals in a limited space.

Method used

The U-shaped base box design features stepped upper and lower wiring terminals on the wiring base, which are alternately arranged and guided laterally. Combined with the embedded sliding cavity and raised guide of the base box cover, the assembly space of the wiring harness is optimized and the influence of adjacent wiring harnesses is reduced.

Benefits of technology

It provides better wiring harness assembly space in a compact space, reduces the impact of adjacent wiring harnesses, reduces the size of the power distributor, and improves the rationality of the layout and the stability of the assembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of power supply distribution, in particular to a compact power supply distributor, which comprises a U-shaped base box, base box cover plates are arranged on two sides of the base box, a stepped upper wiring seat and a stepped lower wiring seat are arranged on a wiring base, screw holes with the same number are arranged in the upper wiring seat and the lower wiring seat, and the upper wiring seat and the lower wiring seat are connected with a power supply. The upper side of the upper wire distribution seat and the upper side of the lower wire distribution seat are both provided with wire through holes, the stepped upper wire distribution seat and the stepped lower wire distribution seat are arranged on the wire distribution base, the upper wire distribution seat and the lower wire distribution seat are separated in a stepped mode, an assembly space can be better provided for wire harnesses in a compact space, and in addition, the wire distribution base is convenient to assemble and disassemble. The upper wiring seats and the lower wiring seats can also reduce the space occupancy rate of a traditional wiring seat, the upper wiring seats and the lower wiring seats are alternately arranged in the transverse direction, a guiding effect can be provided for assembly of the adjacent upper wiring seats and lower wiring seats, the space occupancy rate during assembly is reduced, and therefore the size of the whole power supply distributor is further reduced.
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Description

Technical Field

[0001] This utility model relates to the field of power distribution technology, and in particular to a compact power distributor. Background Technology

[0002] A power distributor is an electronic device used to distribute power in various industries for the control of computer rooms. It can provide reasonable power distribution for monitoring applications. With the increasing number of monitoring devices in computer rooms, there are more stringent requirements for power distributors. The space occupancy rate of power distributors has become a problem that urgently needs to be solved. Traditional power distributors have a high space occupancy rate, complex structure and large size, and lack integrated planning of the wiring area. How can a smaller power distributor ensure more stable wiring layout in a limited space, reduce mutual interference between wiring terminals, and ensure that the wiring at the wiring terminals is not affected? Therefore, a compact power distributor is needed. Utility Model Content

[0003] In view of the shortcomings of the prior art described above, the purpose of this utility model is to provide a compact power distributor to solve the problem of reducing the size of the power distributor in the prior art.

[0004] To achieve the above and other related objectives, this utility model provides the following technical solution:

[0005] A compact power divider includes:

[0006] The base box is a U-shaped base box, and base box cover plates are provided on both sides of the base box;

[0007] A wiring base is provided at the open end of a base box. The wiring base is equipped with stepped upper and lower wiring bases. Both the upper and lower wiring bases have an equal number of screw holes. Both the upper and lower wiring bases have through holes on their upper sides. Multiple sets of stepped upper and lower wiring bases are provided on the wiring base. The upper and lower wiring bases are alternately arranged in the horizontal direction, and the exposed alternating surface on the upper side of the lower wiring base is the connection surface of adjacent upper and lower wiring bases.

[0008] To achieve the above technical solution, a stepped upper and lower wiring harness is configured on the wiring base. By separating the upper and lower wiring harnesses in a stepped manner, more assembly space can be provided for the wire harness within a compact space, while reducing the impact between adjacent wire harnesses. Furthermore, the upper and lower wiring harnesses can reduce the space occupancy of traditional wiring bases. Alternating the upper and lower wiring harnesses horizontally can provide guidance for the assembly of adjacent upper and lower wiring harnesses and reduce the space occupancy during assembly, thereby further reducing the overall size of the power distributor.

[0009] In one embodiment of the present invention, two sets of stepped upper and lower wiring terminals are arranged above and below the wiring base, and the lower wiring terminals are all arranged close to the middle position of the wiring base, with the adjacent lower wiring terminals spaced apart.

[0010] To achieve the above technical solution, the lower wiring terminals are all positioned close to the center of the wiring base, which improves the overall integrity and reduces space waste. Furthermore, the spacing between adjacent lower wiring terminals reduces the impact on their use.

[0011] In one embodiment of the present invention, a screw hole cavity is provided at the front end of the lower wiring base. The screw hole cavity is a trapezoidal cavity, and the front dimension of the screw hole cavity gradually decreases in the direction away from the wiring base.

[0012] To achieve the above technical solution, setting the screw hole cavity as a trapezoidal cavity can provide more ample installation space for the wiring harness installation of the lower wiring connector, while avoiding mutual interference between the wiring harness installation of the lower wiring connector and the wiring harness installation of the upper wiring connector, further improving the overall layout rationality of the power adapter. Setting the front dimension of the screw hole cavity to gradually decrease away from the wiring base can reduce the assembly impact between adjacent lower wiring connectors.

[0013] In one embodiment of this utility model, the through holes all extend to form an upper wiring socket and a lower wiring socket.

[0014] To achieve the above technical solution, the through holes are extended to the upper and lower wiring terminals, which provides a more obvious installation position for the wiring harness during assembly and facilitates manual operation.

[0015] In one embodiment of the present invention, base grooves are provided on both sides of the opening end of the base box, the wiring base is inserted into the base grooves, and a groove cavity is provided on the side of the base groove near the bottom of the base box, the lower side of the groove cavity is open.

[0016] To achieve the above technical solution, the base groove can provide guidance for the assembly between the wiring base and the base box. The lower side of the groove cavity is open, which allows for deformation space when the groove cavity is under pressure, thereby improving the assembly stability.

[0017] In one embodiment of the present invention, the slide cavity is a convex-shaped slide cavity, and the inner side of the base box cover plate is provided with a cover plate protrusion embedded in the slide cavity.

[0018] To achieve the above technical solution, by setting a cover plate protrusion, when the base box cover plate covers the side of the base box, the cover plate protrusion set in the embedded sliding cavity can provide a guiding effect for the installation of the base box cover plate.

[0019] As described above, the compact power distributor of this utility model has the following beneficial effects: by configuring a stepped upper and lower wiring harness on the wiring base, and by separating the upper and lower wiring harness in a stepped manner, it is possible to better provide assembly space for the wire harness in a compact space, while reducing the impact between adjacent wire harnesses. Furthermore, the upper and lower wiring harnesses can also reduce the space occupancy rate of traditional wiring harnesses. Alternating the upper and lower wiring harnesses in the horizontal direction can provide guidance for the assembly of adjacent upper and lower wiring harnesses and reduce the space occupancy rate during assembly, thereby further reducing the overall size of the power distributor. Attached Figure Description

[0020] Figure 1 The diagram shown is a structural schematic of the compact power distributor disclosed in an embodiment of this utility model.

[0021] Figure 2 The diagram shown is a schematic of the base slide structure of the compact power distributor disclosed in this embodiment of the present invention.

[0022] Component designation explanation

[0023] 1. Base box; 2. Base box cover; 3. Wiring base; 4. Upper wiring base; 5. Lower wiring base; 6. Screw hole; 7. Through hole; 8. Screw hole cavity; 9. Base groove; 10. Groove cavity. Detailed Implementation

[0024] The following specific embodiments illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. It should be noted that, unless otherwise specified, the following embodiments and features can be combined with each other.

[0025] Please see Figures 1 to 2This utility model provides a compact power distributor, including a U-shaped base box 1 with base box cover plates 2 on both sides. A wiring base 3 is located at the open end of the base box 1. The wiring base 3 is equipped with stepped upper wiring base 4 and lower wiring base 5. Both the upper wiring base 4 and the lower wiring base 5 are provided with the same number of screw holes 6. Both the upper wiring base 4 and the lower wiring base 5 are provided with through holes 7 on their upper sides. Multiple sets of stepped upper wiring base 4 and lower wiring base 5 are provided on the wiring base 3. The upper wiring base 4 and the lower wiring base 5 are alternately arranged in the horizontal direction, and the exposed alternating surface on the upper side of the lower wiring base 5 is the connection surface of adjacent upper wiring base 4 and lower wiring base 5.

[0026] By configuring stepped upper wiring harness 4 and lower wiring harness 5 on the wiring base 3, and separating the upper wiring harness 4 and lower wiring harness 5 in a stepped manner, better assembly space can be provided for the wire harness in a compact space, while reducing the impact between adjacent wire harnesses. Furthermore, the upper wiring harness 4 and lower wiring harness 5 can also reduce the space occupancy rate of traditional wiring harnesses. The alternating arrangement of the upper wiring harness 4 and lower wiring harness 5 in the horizontal direction can provide guidance for the assembly of adjacent upper wiring harness 4 and lower wiring harness 5, and reduce the space occupancy rate during assembly, thereby further reducing the size of the entire power distributor.

[0027] Two sets of stepped upper patch panels 4 and lower patch panels 5 are arranged above and below the patch panel base 3. The lower patch panels 5 are all located close to the middle of the patch panel base 3, and the upper and lower adjacent lower patch panels 5 are spaced apart. Placing the lower patch panels 5 close to the middle of the patch panel base 3 improves the overall integrity and reduces space waste. Furthermore, the spaced arrangement between the upper and lower adjacent lower patch panels 5 reduces the impact on the use of the lower patch panels 5.

[0028] The lower wiring harness 5 has a screw hole cavity 8 at its front end. The screw hole cavity 8 is a trapezoidal cavity, and its front dimension gradually decreases in size as it moves away from the wiring base 3. By making the screw hole cavity 8 a trapezoidal cavity, more installation space can be provided for the wiring harness installation of the lower wiring harness 5. At the same time, it avoids mutual interference between the wiring harness installation of the lower wiring harness 5 and the wiring harness installation of the upper wiring harness 4, further improving the overall layout rationality of the power adapter. By making the front dimension of the screw hole cavity 8 gradually decrease in size as it moves away from the wiring base 3, the assembly impact between adjacent lower wiring harnesses 5 can be reduced.

[0029] The through holes 7 all extend out to the upper wiring harness 4 and the lower wiring harness 5. By extending the through holes 7 out to the upper wiring harness 4 and the lower wiring harness 5, the installation position of the wire harness can be more obvious during assembly, which facilitates manual operation.

[0030] The base box 1 has base grooves 9 on both sides of the open end. The wiring base 3 is inserted into the base groove 9. A groove cavity 10 is provided on the side of the base groove 9 near the bottom of the base box 1. The lower side of the groove cavity 10 is open. By setting the base groove 9, the assembly between the wiring base 3 and the base box 1 can be guided. The lower side of the groove cavity 10 is open, which allows the groove cavity 10 to have deformation space when it is under pressure, thus improving the assembly stability.

[0031] The slide cavity 10 is a U-shaped slide cavity 10. The inner side of the base box cover plate 2 is provided with a cover plate protrusion embedded in the slide cavity 10. By providing the cover plate protrusion, when the base box cover plate 2 covers the side of the base box 1, the cover plate protrusion embedded in the slide cavity 10 can provide a guiding effect for the installation of the base box cover plate 2.

[0032] This utility model features a stepped upper and lower wiring harness on a wiring base. By separating the upper and lower wiring harnesses in a stepped manner, it can provide better assembly space for wire harnesses within a compact space, while reducing the impact between adjacent wire harnesses. Furthermore, the upper and lower wiring harnesses can reduce the space occupied by traditional wiring bases. The alternating arrangement of the upper and lower wiring harnesses in the horizontal direction can provide guidance for the assembly of adjacent upper and lower wiring harnesses and reduce the space occupied during assembly, thereby further reducing the overall size of the power distributor.

[0033] The above embodiments are merely illustrative of the principles and effects of this utility model and are not intended to limit this utility model. All equivalent modifications or alterations made by those skilled in the art without departing from the spirit and technical concept disclosed in this utility model should still be covered by the claims of this utility model.

Claims

1. A compact power distributor, characterized in that, include: The base box is a U-shaped base box, and base box cover plates are provided on both sides of the base box; A wiring base is provided at the open end of a base box. The wiring base is equipped with stepped upper and lower wiring bases. Both the upper and lower wiring bases have an equal number of screw holes. Both the upper and lower wiring bases have through holes on their upper sides. Multiple sets of stepped upper and lower wiring bases are provided on the wiring base. The upper and lower wiring bases are alternately arranged in the horizontal direction, and the exposed alternating surface on the upper side of the lower wiring base is the connection surface of adjacent upper and lower wiring bases.

2. The compact power distributor according to claim 1, characterized in that: The stepped upper and lower wiring terminals are arranged in two sets on the upper and lower parts of the wiring base. The lower wiring terminals are all located close to the middle of the wiring base, and the adjacent lower wiring terminals are spaced apart.

3. The compact power distributor according to claim 1, characterized in that: The lower wiring base is provided with a screw hole cavity at its front end. The screw hole cavity is a trapezoidal cavity, and the front dimension of the screw hole cavity gradually decreases in size as it moves away from the wiring base.

4. The compact power distributor according to claim 1, characterized in that: The through holes all extend to form upper and lower wiring terminals.

5. The compact power distributor according to claim 1, characterized in that: The base box has base grooves on both sides of the open end, the wiring base is inserted into the base grooves, and a groove cavity is provided on the side of the base groove near the bottom of the base box. The lower side of the groove cavity is open.

6. The compact power distributor according to claim 1, characterized in that: The slide cavity is a U-shaped slide cavity, and the inner side of the base box cover plate is provided with a cover plate protrusion that is embedded in the slide cavity.