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Cylindrical three-phase isolation transformer with upper and lower yoke structure

A technology of isolating transformer and yoke structure is applied in the field of transformers, which can solve the problems of troublesome assembly, complicated structure, and difficulty in adjusting the no-load current of the transformer.

Inactive Publication Date: 2013-03-20
DONGGUAN GUANGHUA IND
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] like Figure 7 As shown, it shows the structure of the iron core in a typical three-phase transformer in the traditional technology. The iron core of this structure is assembled by three horizontal pieces 2 and three iron core columns 1 in an interlaced manner. Its structure It is more complex and cumbersome to assemble, especially, it is difficult to adjust the no-load current of the transformer by adjusting the iron core

Method used

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  • Cylindrical three-phase isolation transformer with upper and lower yoke structure
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  • Cylindrical three-phase isolation transformer with upper and lower yoke structure

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Embodiment Construction

[0034] Please refer to Figure 1 to Figure 6 As shown, it shows the specific structure of the preferred embodiment of the present invention, including iron core 10, winding 20 and fixing structure for fixing winding 20 and iron core 10, each winding 20 includes primary winding 21 and Secondary winding 22.

[0035] Such as Figures 4 to 6 As shown, the iron core 10 includes an upper yoke 11, a lower yoke 12 and three middle columns 13, the three middle columns 13 are arranged side by side in parallel and their top and bottom edges are correspondingly flush, the upper yoke 11, the lower The yokes 12 are respectively located in the upper and lower positions of the center column 13 in a parallel manner, and an air gap 30 is formed between the upper yoke 11 and the lower yoke 12 and the top and bottom ends of the center column 13 respectively. By adjusting the upper yoke 11, the lower yoke 12 and the The size of the air gap 30 between the center pillars 13 is adjustable to achiev...

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Abstract

The invention discloses a cylindrical three-phase isolation transformer with an upper and lower yoke structure, which comprises an iron core, windings and a fixing structure for fixing the windings and iron core. Each winding comprises a primary winding and a secondary winding. The iron core comprises an upper yoke, a lower yoke and three middle columns. The upper and the lower yokes respectively form air gaps with the top and the bottom ends of the middle columns. The primary and secondary windings are sequentially sleeved in the peripheries of corresponding middle columns from inside to outside. A full air flue located between the primary and secondary windings is arranged in the periphery of the primary winding. Conventional iron core is replaced by the upper and lower yoke structure, thus, the air gaps between the upper and lower yokes and the middle columns can be conveniently adjusted to adjust a no-load current. The full air flue is adopted between the primary and secondary windings to adjust the distance between the primary and secondary windings so as to adjust the short-circuit impedance. Meanwhile, the full air flue is designed so that the transformer has a better ventilating and radiating condition and low temperature rise, so that the service life of the transformer is prolonged, and the use cost is lowered.

Description

technical field [0001] The invention relates to the technology in the field of transformers, in particular to a barrel-type three-phase isolation transformer with upper and lower yoke structures. Background technique [0002] In electrical equipment and wireless circuits, transformers are often used as step-down voltages. Transformers are devices that use the principle of electromagnetic induction to change AC voltage. A traditional three-phase transformer includes an iron core with three iron core legs and a plurality of transverse pieces, and a winding wrapped on each iron core leg, and the winding includes a primary winding and a secondary winding. [0003] Such as Figure 7 As shown, it shows the structure of the iron core in a typical three-phase transformer in the traditional technology. The iron core of this structure is assembled by three horizontal pieces 2 and three iron core columns 1 in an interlaced manner. Its structure It is more complicated and the assembly ...

Claims

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Application Information

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IPC IPC(8): H01F30/12H01F27/26H01F27/30
Inventor 陈锦棠方朝晖
Owner DONGGUAN GUANGHUA IND
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