IP Library Patent Application 12078962
Patent Application
App. No. 12/078,962

Transformer unit, and power converting device

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Patent No.
US None
App. No.
12/078,962
Abstract

A transformer unit and a power converting device, which lessen the influence of noise caused by an external magnetic flux, while reducing the temperature dependency of a coupling coefficient, and which transfer signals while insulating a low-voltage and a high-voltage side electrically. Air-core type insulated transformers have a first and second winding of a primary winding as a sending side and a first and second winding of a secondary winding as a receiving side. The windings of the primary winding are connected in parallel and are wound so that the directions of magnetic fields generated by an exciting current oppose each other. The windings of the secondary winding are wound so that electromotive forces to be generated by an external magnetic flux cancel each other, and are connected in series so as to raise the electromotive forces by a signal magnetic flux generated by the primary winding.

Claims (46)

1 . A transformer unit comprising a primary winding on a sending side, and a secondary winding on a receiving side,

said primary winding including at least a plurality of windings connected in parallel and wound in respective individual winding directions so that respective directions of respective magnetic fields to be generated by respective exciting currents are contrary to each other, and

said secondary winding including at least a plurality of windings wound in respective winding directions so that respective electromotive forces to be generated by an external magnetic flux cancel each other, and connected in series so as to increase signal electromotive forces generated by said magnetic fields in said primary winding.

2 . The transformer unit according to claim 1 ,

said primary winding including a first winding and a second winding different from each other in their winding directions such that a leading end of the first winding of said primary winding and a leading end of the second winding of said primary winding are connected with each other, and such that a trailing end of the first winding of said primary winding and a trailing end of the second winding of said primary winding are connected with each other, and

said secondary winding including a first winding and a second winding different from each other in their winding directions such that a leading end of the first winding of said secondary winding and a trailing end of the second winding of said secondary winding are connected with each other, or such that a trailing end of the first winding of said secondary winding and a leading end of the second winding of said secondary winding are connected with each other,

wherein the first winding of said primary winding is coaxial with the first winding of said secondary winding, and the second winding of said primary winding is coaxial with the second winding of said secondary winding, whereas the first and second windings of said primary winding are adjacent to each other, and the first and second windings of said secondary winding are adjacent to each other.

3 . The transformer unit according to claim 1 ,

said primary winding including a first winding and a second winding identical to each other in their winding directions such that a leading end of the first winding of said primary winding and a trailing end of the second winding of said primary winding are connected with each other, and such that a trailing end of the first winding of said primary winding and a leading end of the second winding of said primary winding are connected with each other, and

said secondary winding including a first winding and a second winding identical to each other in their winding directions such that a leading end of the first winding of said secondary winding and a leading end of the second winding of said secondary winding are connected with each other, or such that a trailing end of the first winding of said secondary winding and a trailing end of the second winding of said secondary winding are connected with each other,

wherein the first winding of said primary winding is coaxial with the first winding of said secondary winding, and the second winding of said primary winding is coaxial with the second winding of said secondary winding, whereas the first and second windings of said primary winding are adjacent to each other, and the first and second windings of said secondary winding are adjacent to each other.

4 . The transformer unit according to claim 1 ,

said primary winding including a first winding and a second winding different from each other in their winding directions such that the leading end of the first winding of said primary winding and the leading end of the second winding of said primary winding are connected with each other, and such that the trailing end of the first winding of said primary winding and the trailing end of the second winding of said primary winding are connected with each other, and

said secondary winding including a first winding and a second winding identical to each other in their winding directions such that a leading end of the first winding of said secondary winding and a leading end of the second winding of said secondary winding are connected with each other, or such that a trailing end of the first winding of said secondary winding and a trailing end of the second winding of said secondary winding are connected with each other,

wherein the first winding of said primary winding is coaxial with the first winding of said secondary winding, and the second winding of said primary winding is coaxial with the second winding of said secondary winding, whereas the first and second windings of said primary winding are adjacent to each other, and the first and second windings of said secondary winding are adjacent to each other.

5 . The transformer unit according to claim 1 ,

said primary winding including a first winding and a second winding identical to each other in their winding directions such that a leading end of the first winding of said primary winding and a trailing end of the second winding of said primary winding are connected with each other, and such that a trailing end of the first winding of said primary winding and a leading end of the second winding of said primary winding are connected with each other, and

said secondary winding including a first winding and a second winding different from each other in their winding directions such that the leading end of the first winding of said secondary winding and the trailing end of the second winding of said secondary winding are connected with each other, or such that the trailing end of the first winding of said secondary winding and the leading end of the second winding of said secondary winding are connected with each other,

wherein the first winding of said primary winding is coaxial with the first winding of said secondary winding, and the second winding of said primary winding is coaxial with the second winding of said secondary winding, whereas the first and second windings of said primary winding are adjacent to each other, and the first and second windings of said secondary winding are adjacent to each other.

6 . The transformer unit according to claim 1 , wherein the first windings and the second windings of said secondary winding are substantially identical in their respective number of turns.

7 . The transformer unit according to claim 1 , wherein said air-core type insulated transformer is formed by a fine working technique.

8 . A power converting device comprising:

a switching element configured to turn an electric current flowing into a load ON/OFF;

a control circuit configured to generate a control signal to instruct turning ON and OFF of said switching element;

a drive circuit configured to drive the control terminal of said switching element on the basis of said control signal; and

an air-core type insulated transformer including a sending-side primary winding and a receiving-side secondary winding positioned so that said control circuit and said drive circuit are insulated from each other,

wherein said sending-side primary winding includes at least a plurality of windings connected in parallel and wound in respective individual winding directions so that the directions of respective magnetic fields to be generated by respective exciting currents are contrary to each other, and

wherein said receiving-side secondary winding includes at least a plurality of windings wound in respective individual winding directions so that respective electromotive forces to be generated by an external magnetic flux cancel each other, and connected in series so as to raise the electromotive forces by a signal magnetic flux generated by said primary winding.

9 . The power converting device according to claim 8 ,

said primary winding including a first winding and a second winding different from each other in their winding directions such that a leading end of the first winding of said primary winding and a leading end of the second winding of said primary winding are connected with each other, and such that a trailing end of the first winding of said primary winding and a trailing end of the second winding of said primary winding are connected with each other, and

said secondary winding including a first winding and a second winding different from each other in their winding directions such that a leading end of the first winding of said secondary winding and a trailing end of the second winding of said secondary winding are connected with each other, or such that a trailing end of the first winding of said secondary winding and a leading end of the second winding of said secondary winding are connected with each other,

wherein the first winding of said primary winding is coaxial with the first winding of said secondary winding, and the second winding of said primary winding is coaxial with the second winding of said secondary winding, whereas the first and second windings of said primary winding are adjacent to each other, and the first and second windings of said secondary winding are adjacent to each other.

10 . The power converting device according to claim 8 ,

said primary winding including a first winding and a second winding identical to each other in their winding directions such that a leading end of the first winding of said primary winding and a trailing end of the second winding of said primary winding are connected with each other, and such that a trailing end of the first winding of said primary winding and a leading end of the second winding of said primary winding are connected with each other, and

said secondary winding including a first winding and a second winding identical to each other in their winding directions such that a leading end of the first winding of said secondary winding and a leading end of the second winding of said secondary winding are connected with each other, or such that a trailing end of the first winding of said secondary winding and a trailing end of the second winding of said secondary winding are connected with each other,

wherein the first winding of said primary winding is coaxial with the first winding of said secondary winding, and the second winding of said primary winding is coaxial with the second winding of said secondary winding, whereas the first and second windings of said primary winding are adjacent to each other, and the first and second windings of said secondary winding are adjacent to each other.

11 . The power converting device according to claim 8 ,

said primary winding including a first winding and a second winding different from each other in their winding directions such that the leading end of the first winding of said primary winding and the leading end of the second winding of said primary winding are connected with each other, and such that the trailing end of the first winding of said primary winding and the trailing end of the second winding of said primary winding are connected with each other, and

said secondary winding including a first winding and a second winding identical to each other in their winding directions such that a leading end of the first winding of said secondary winding and a leading end of the second winding of said secondary winding are connected with each other, or such that a trailing end of the first winding of said secondary winding and a trailing end of the second winding of said secondary winding are connected with each other,

wherein the first winding of said primary winding is coaxial with the first winding of said secondary winding, and the second winding of said primary winding is coaxial with the second winding of said secondary winding, whereas the first and second windings of said primary winding are adjacent to each other, and the first and second windings of said secondary winding are adjacent to each other.

12 . The power converting device according to claim 8 ,

said primary winding including a first winding and a second winding identical to each other in their winding directions such that a leading end of the first winding of said primary winding and a trailing end of the second winding of said primary winding are connected with each other, and such that a trailing end of the first winding of said primary winding and a leading end of the second winding of said primary winding are connected with each other, and

said secondary winding including a first winding and a second winding different from each other in their winding directions such that the leading end of the first winding of said secondary winding and the trailing end of the second winding of said secondary winding are connected with each other, or such that the trailing end of the first winding of said secondary winding and the leading end of the second winding of said secondary winding are connected with each other,

wherein the first winding of said primary winding is coaxial with the first winding of said secondary winding, and the second winding of said primary winding is coaxial with the second winding of said secondary winding, whereas the first and second windings of said primary winding are adjacent to each other, and the first and second windings of said secondary winding are adjacent to each other.

13 . The power converting device according to claim 8 , wherein the first windings and the second windings of said secondary winding are substantially identical in their respective number of turns.

14 . The power converting device according to claim 8 , wherein said air-core type insulated transformer is formed by a fine working technique.

Assignments (3)
MERGER AND CHANGE OF NAME Recorded Aug 26, 2011
From: FUJI ELECTRIC SYSTEMS CO., LTD. (FES); FUJI TECHNOSURVEY CO., LTD. (MERGER BY ABSORPTION)
To: FUJI ELECTRIC CO., LTD.
Reel/Frame 026970/0872 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 20, 2010
From: FUJI ELECTRIC DEVICE TECHNOLOGY CO., LTD.
To: FUJI ELECTRIC SYSTEMS CO., LTD.
Reel/Frame 024252/0438 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 19, 2008
From: YOSHIMURA, HIROYUKI; SUGIMOTO, MASATOSHI
To: FUJI ELECTRIC DEVICE TECHNOLOGY CO., LTD
Reel/Frame 021159/0926 →