Intelligent power-saving terminal

By designing a compact and modular intelligent energy-saving terminal structure, the problem of inconvenient installation of existing equipment has been solved, and power optimization compensation and convenient installation have been achieved.

CN223540834UActive Publication Date: 2025-11-11SUNTRONT TECH
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422880307.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-11-11
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

In the existing technology, energy-saving equipment for 380VAC low-voltage distribution networks suffers from problems such as inconvenient installation and non-compact structure.

Method used

An intelligent energy-saving terminal was designed, which adopts a compact and modular internal structure, including components such as a cabinet, bracket, PCB circuit board, and terminal block. It achieves convenient installation and effective heat dissipation through designs such as insulated shock-absorbing columns, heat dissipation vents, and hidden handles.

Benefits of technology

It achieves optimized power compensation for 380VAC low-voltage distribution networks, with a compact structure that facilitates user installation and maintenance.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223540834U_ABST
    Figure CN223540834U_ABST
Patent Text Reader

Abstract

The utility model relates to an intelligent power-saving terminal, which is an electric energy optimization compensation power-saving device for a 380VAC low-voltage power distribution network, and comprises a box body, a hanger, a PCB (printed circuit board), a wiring terminal, a front panel, a terminal bracket, a cooling fan, a fan bracket, a radiator, an insulating sheet and a box body cover plate, and the radiator is fixed on the PCB through screws; the fan bracket is fixed in a positioning hole formed in the PCB; the PCB is arranged in the box body; the front panel and the box body are fixed through screws; the insulating sheet is attached to the inner side of the box body cover plate; according to the utility model, the internal structure is compact and modularized, and the installation of a user is facilitated.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of energy-saving equipment technology, and in particular to an intelligent energy-saving terminal. Background Technology

[0002] With the rapid growth of electricity consumption in my country, energy conservation and power saving have become long-term strategic issues related to national economic security, resource and environmental protection, and sustainable economic and social development. Intelligent power-saving terminals are widely used in various industries such as shopping malls, schools, transportation, new energy, communications, banking, hospitals, and power systems. Through the Internet of Things and information technology, a digital power-saving management platform is built, providing users with leading power grid optimization and power-saving solutions, as well as early warning systems for potential power line hazards. Summary of the Invention

[0003] This utility model provides an intelligent energy-saving terminal, which is an energy optimization and compensation energy-saving device for 380VAC low-voltage distribution networks. It has a compact and modular internal structure, making it convenient for users to install.

[0004] To achieve the above objectives, the technical solution of this utility model is as follows:

[0005] The intelligent energy-saving terminal includes a housing, a mounting bracket, a PCB circuit board, wiring terminals, a front panel, a terminal bracket, a cooling fan, a fan bracket, a radiator, insulating sheets, and a housing cover. Its characteristics are:

[0006] The enclosure is equipped with multiple insulating and shock-absorbing columns.

[0007] The box is equipped with multiple PCB circuit board positioning pins;

[0008] The top and upper left and right sides of the enclosure are provided with multiple heat dissipation vents;

[0009] The fan bracket is provided with positioning ribs and screw holes;

[0010] The cooling fan is fixed to the fan bracket;

[0011] The heat sink is fixed to the PCB circuit board with screws;

[0012] The fan bracket is fixed to the positioning holes provided on the PCB circuit board;

[0013] The PCB circuit board is placed inside the housing;

[0014] The bottom of the enclosure is equipped with multiple wiring terminals;

[0015] The terminal bracket is assembled to the front panel via a slot and then fixed with screws;

[0016] The front panel is fixed to the housing with screws;

[0017] The insulating sheet is attached to the inside of the box cover plate;

[0018] The cover plate is fixed to the box body with screws;

[0019] The box body is equipped with concealed handles on both sides of the exterior.

[0020] The bracket is used to fix the terminal. One end of the bracket has multiple fixing holes, and the other end has a bent structure.

[0021] The top back of the box has a hidden hanging port.

[0022] The beneficial effects of this utility model are:

[0023] This utility model is an intelligent energy-saving terminal that can optimize and compensate for power consumption in a 380VAC low-voltage distribution network. It features a compact and modular internal structure, making it easy for users to install. Attached Figure Description

[0024] Appendix Figure 1 This is a schematic diagram of the intelligent energy-saving terminal structure of this utility model. Detailed Implementation

[0025] The technical solution of this utility model will be further described in detail below with reference to specific embodiments and accompanying drawings.

[0026] As attached Figure 1 As shown: The intelligent energy-saving terminal includes a housing 11, a hanging bracket 1, a PCB circuit board 2, a wiring terminal 10, a front panel 9, a terminal bracket 8, a cooling fan 4, a fan bracket 5, a radiator 3, an insulating sheet 7, and a housing cover 6.

[0027] The fan bracket has positioning ribs and screw holes. The cooling fan is fixed to the fan bracket. Specifically, the cooling fan is fixed inside the positioning ribs of the fan bracket and fixed to the fixing holes of the fan bracket with screws.

[0028] The heat sink is fixed to the PCB circuit board with screws. After the cooling fan and fan bracket are assembled, they are fixed to the positioning holes provided on the PCB circuit board. The positioning holes provided on the PCB circuit board are located on one side of the heat sink, and multiple heat dissipation vents are provided on the top and upper left and right sides of the cabinet, which can quickly dissipate the heat generated by the equipment through the air outlets.

[0029] The PCB circuit board is placed inside the enclosure. Specifically, the enclosure has multiple PCB circuit board positioning pins, which are used to install the PCB circuit board into place, and then it is secured with screws. The enclosure also has multiple insulating and shock-absorbing columns inside, which serve to cushion, absorb shock, and insulate the circuit board.

[0030] The bottom of the enclosure is equipped with multiple wiring terminals. The terminal bracket is assembled to the front panel via a slot and then fixed with screws. The assembled terminal bracket and front panel are then fixed to the enclosure with screws.

[0031] The insulating sheet is attached to the inside of the enclosure cover with 3M adhesive, and the enclosure cover is fixed to the enclosure with screws.

[0032] The exterior of both sides of the enclosure is equipped with concealed handles for easy movement of the terminal.

[0033] The bracket is used to fix the terminal. One end of the bracket has multiple fixing holes, and the other end has a bent structure. Specifically, one end of the bracket has fixing holes, which can be fixed in place with screws, and the other end has a bent structure. Together with the hidden hanging port on the back of the top of the box, the terminal can be fixed on the bracket.

Claims

1. An intelligent energy-saving terminal, comprising a housing, a mounting bracket, a PCB circuit board, wiring terminals, a front panel, a terminal bracket, a cooling fan, a fan bracket, a heat sink, insulating sheets, and a housing cover, characterized in that: The enclosure is equipped with multiple insulating and shock-absorbing columns. The box is equipped with multiple PCB circuit board positioning pins; The top and upper left and right sides of the enclosure are provided with multiple heat dissipation vents; The fan bracket is provided with positioning ribs and screw holes; The cooling fan is fixed to the fan bracket; The heat sink is fixed to the PCB circuit board with screws; The fan bracket is fixed to the positioning holes provided on the PCB circuit board; The PCB circuit board is placed inside the housing; The bottom of the enclosure is equipped with multiple wiring terminals; The terminal bracket is assembled to the front panel via a slot and then fixed with screws; The front panel is fixed to the housing with screws; The insulating sheet is attached to the inside of the box cover plate; The cover plate is fixed to the box body with screws; The box body is equipped with concealed handles on both sides of the exterior. The bracket is used to fix the terminal. One end of the bracket has multiple fixing holes, and the other end has a bent structure. The top back of the box has a hidden hanging port.