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Main traverse line of high tension coil controlled by capacitance

A technology for capacitive control and wire control, applied in transformer/inductor coils/windings/connections, transformer/inductor components, preventing/reducing unwanted electrical/magnetic influences, etc., can no longer guarantee geometric correctness settings, etc.

Inactive Publication Date: 2005-09-21
ESSEX EURO
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In addition, there is the danger that a geometrically correct arrangement of the required winding positions can no longer be guaranteed during the manufacture of the windings.

Method used

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  • Main traverse line of high tension coil controlled by capacitance

Examples

Experimental program
Comparison scheme
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Embodiment Construction

[0012] figure 1 The main conductor of the high-voltage coil for capacitive control is shown, which consists of two Dril conductors 1 and 2 . Each Dil wire has a plurality of rectangular partial wires 5 formed in stacks 3, 4 arranged two by two adjacent. During the production of the Dril conductors 1 and 2 , the uppermost and the lowermost conductor 5 are each switched from the adjacent stack 3 and 4 into the other stack 4 and 3 , wherein the conductors 5 are each preferably offset by half a step. Here, a constant overall height is achieved with an odd number of Dril wires.

[0013] Each Dril wire 1 and 2 has an insulating sheath 1a and 2a, which are preferably covered by paper.

[0014] The two Dril wires 1 and 2 forming the main conductor are wrapped by a casing 6 made of crepe paper. As the crepe paper, slightly creped and calendered insulating paper is used for strength reasons.

[0015] Between the Dil conductors 1 and 2 are arranged a plurality of control conductors 7...

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PUM

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Abstract

In a main conductor for a capacitively controlled high-voltage winding composed of pancake coils for transformers, in which the main conductor for the load current is realized as a twisted conductor, and in which a control conductor is provided which is spatially arranged inside the twisted conductor and is electrically separated from the twisted conductor, the main conductor consists of two twisted conductors ( 1, 2 ) that are electrically separated from each other. The control conductor consists of several flat copper conductors ( 7 ) covered by an insulating sheath ( 7 a), and the copper conductors ( 7 ) are fastened to one of the twisted conductors ( 1, 2 ).

Description

technical field [0001] The invention relates to a main conductor for a capacitance-controlled high-voltage coil according to the preamble of claim 1 and a method for producing a main conductor for a capacitance-controlled high-voltage coil according to the preamble of claim 7 . Background technique [0002] DE19926540C1 discloses a high-voltage coil in which the coil winding is produced with so-called Dril wire. Additional losses due to stray fields can be reduced by using Dril wires. Furthermore, the available winding space is better utilized due to the increased fill factor. [0003] In each case, the manufacture of interwound coils requires welding, which can only be achieved with difficulty or not at all with Dril wire. In order to avoid welding, therefore, when using Dril wires, a continuously wound double-coil circuit is required, wherein the capacitive control takes place via special control wires, the welding of which is easily and economically possible. [0004] ...

Claims

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Application Information

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IPC IPC(8): H01F27/28H01F27/34
CPCH01F27/2871H01F27/345H01F2027/2838
Inventor 威廉·肖姆伯格乔基姆·朗格
Owner ESSEX EURO