WO2006109957A1 - Iron core, mold and method of forming and laminating the same - Google Patents
Iron core, mold and method of forming and laminating the same Download PDFInfo
- Publication number
- WO2006109957A1 WO2006109957A1 PCT/KR2006/001274 KR2006001274W WO2006109957A1 WO 2006109957 A1 WO2006109957 A1 WO 2006109957A1 KR 2006001274 W KR2006001274 W KR 2006001274W WO 2006109957 A1 WO2006109957 A1 WO 2006109957A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- shaped iron
- iron core
- iron cores
- cores
- shaped
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21D—WORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21D28/00—Shaping by press-cutting; Perforating
- B21D28/02—Punching blanks or articles with or without obtaining scrap; Notching
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T29/00—Metal working
- Y10T29/49—Method of mechanical manufacture
- Y10T29/49002—Electrical device making
- Y10T29/4902—Electromagnet, transformer or inductor
- Y10T29/49075—Electromagnet, transformer or inductor including permanent magnet or core
- Y10T29/49078—Laminated
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T29/00—Metal working
- Y10T29/51—Plural diverse manufacturing apparatus including means for metal shaping or assembling
- Y10T29/5197—Multiple stations working strip material
Definitions
- the present invention relates to an iron core, and a mold and a method for forming and laminating the same, whereby an E-shaped iron core and a pair of CI -shaped iron cores are continuously formed and laminated, without losing iron material (scrap iron) when the iron core is stamped from a sheet of silicon steel by a press mold.
- the present invention relates to an iron core which is built in a transformer, a rectifier, a stabilizer, a lamp, and others, and a mold and a method for forming and laminating the iron core, whereby when the iron core is formed, an E-shaped iron core and a pair of CI -shaped iron cores, which are arranged on both sides of the E- shaped iron core, are simultaneously stamped from a sheet of silicon steel, and a predetermined number of E-shaped iron cores and pairs of CI -shaped iron cores are assembled and laminated to form a laminated iron core.
- FIG. 1 is a perspective view illustrating the process of forming an iron core according to the related art.
- a sheet of silicon steel 1 being continuously fed is stamped by a press mold having a predetermined shape (e.g., a mold and a die each having a shape corresponding to the shape of the iron core) to form C -shaped iron cores 2.
- a press mold having a predetermined shape (e.g., a mold and a die each having a shape corresponding to the shape of the iron core) to form C -shaped iron cores 2.
- the scrap iron causes a manufacturing cost of the iron core 2 to be increased, and thus the price competitiveness of the iron core built in a product (e.g., transformer) is decreased.
- a subsequent process of thermally bonding the formed iron cores 2 through argon welding and so on is required, after the iron cores 2 are laminated, which decreases its workability and productivity.
- the bonded portion of the iron core 2 may interrupt an electric flow or cause electric interference to deteriorate the electric characteristic of the iron core, and this degrades the quality and reliability of the product.
- E-shaped iron cores and I-shaped iron cores formed according to the prior art as shown in FIG. 2 prevent the sheet of silicon steel 1 from being scraped when the E-shaped iron cores 4 and the I-shaped iron cores 5 are stamped from the sheet of silicon steel 1 by using a single mold punch and die (not shown), and this can reduce the manufacturing cost thereof.
- an object of the present invention is to provide an iron core, and a mold and a method for forming and laminating the same, whereby when an iron core is formed, an E-shaped iron core and a pair of C -shaped iron cores, which are arranged on both sides of the E-shaped iron core, are simultaneously stamped from a sheet of silicon steel, thereby preventing the sheet of expensive silicon steel from being scraped and thus reducing a manufacturing cost.
- Another object of the present invention is to provide an iron core, and a mold and a method for forming and laminating the same, whereby iron cores are downwardly stamped from a sheet of silicon steel by a mold punch and a die, and thus the stamped iron cores can be easily taken out from the die.
- Still another object of the present invention is to provide an iron core, and a mold and a method for forming and laminating the same, whereby when iron cores are stamped from a sheet of silicon steel, a predetermined number of iron cores can be laminated, without performing a subsequent process, thereby shortening the number of operations.
- Yet still object of the present invention is to provide an iron core, and a mold and a method for forming and laminating the same, whereby since the pitch of a mold punch and a die for stamping iron cores has a decreased interval, the entire size of the mold punch and die is increased, thereby increasing a stamping speed of a press.
- Yet still another object of the present invention is to provide an iron core, and a mold and a method for forming and laminating the same, whereby a subsequent process of thermally bonding a predetermined number of iron cores which are separately formed and laminated is not required, and the magnetic flux density of iron cores is increased as compared with conventional E-shaped and I-shaped electric characteristics of the iron cores.
- an iron core comprising an E- shaped iron core having side legs symmetrically formed on both sides thereof and a center leg formed between the side legs and coupled to a bobbin around which a coil is wound; and a pair of C -shaped iron cores each having a long leg formed corresponding to the side leg of the E-shaped iron core, and a short leg formed corresponding to the center leg of the E-shaped iron core; wherein the E-shaped iron core and the pair of C -shaped iron cores, which are arranged on both sides of the E-shaped iron core so that a stamped groove formed between the side leg and the center leg of the E-shaped iron core corresponds to the short leg of the CI -shaped iron core and a stamped groove formed between the legs of the C -shaped iron core corresponds to the side leg of the E-shaped iron core, are stamped from a sheet of silicon steel.
- a mold for forming and laminating iron cores from a sheet of silicon steel comprising a mold punch having embossing punches for forming embossed portions to closely laminate the iron cores, a pair of c -shaped iron core forming punches for stamping a pair of c: -shaped iron cores and having a laminating punch on a bottom surface thereof, and an E-shaped iron core forming punch for stamping an E-shaped iron core between the pair of C -shaped iron cores from the sheet of silicon steel and having a laminating punch on a bottom surface thereof; and a die having recessed portions formed corre a first receiving portion, formed in a shape corresponding to the pair of C -shaped iron core forming punches, for receiving the pairs of C -shaped iron cores being accumulated and laminated therein, and a second receiving portion, formed in a shape corresponding to the E-shaped iron core forming punch, for receiving the E-shaped
- the E-shaped iron cores and the pairs of the C -shaped iron cores are stamped by pressing down the sheet of silicon steel being transferred on the die using the mold punch.
- a method for laminating iron cores stamped from a sheet of silicon steel using a press mold comprising a first step of forming embossed portions on the sheet of silicon steel; a second step of stamping pairs of C -shaped iron cores from the sheet of silicon steel using a C -shaped iron core forming punch and die having a shape corresponding to the pairs of C - shaped iron cores and stamping E-shaped iron cores arranged between the pairs of C- shaped iron cores from the sheet of silicon steel using an E-shaped iron core forming punch and die having a shape corresponding to the E-shaped iron cores; a third step of accumulating the pairs of the CI -shaped iron cores and the E-shaped iron cores in a first receiving portion and a second receiving portion formed in the die
- the iron core may further include means for coupling the E-shaped iron core and the pair of CI -shaped iron cores, the coupling means having recessed portions formed on a center leg of the E-shaped iron core, an engaging boss formed on each short leg of the C - shaped iron cores and engaged with the recessed portion, an engaging boss formed on each side leg of the E-shaped iron core, and a recessed portion formed on each long leg of the Cl -shaped iron cores and engaged with the engaging boss.
- the mold punches and dies may be arranged in 2, 4, 6 or 8 rows, so that the E-shaped iron cores and the pairs of Cl -shaped iron cores are simultaneously stamped in 2, 4, 6 or 8 pairs from the sheet of silicon steel.
- the iron core, and the mold and the method for forming and laminating the same according to the present invention, as described above, have the following advantages.
- the E-shaped iron core and the pair of C -shaped iron cores which are arranged on both sides of the E-shaped iron core, are simultaneously stamped from the sheet of silicon steel, thereby preventing the sheet of expensive silicon steel from being scraped and thus reducing the manufacturing cost.
- the press speed for stamping the iron core can be increased to improve its workability and productivity, and a predetermined number of iron cores can be laminated, without performing a subsequent process.
- the iron cores are downwardly stamped from tl mold punch and die, the stamped iron core can be easily taken out from the die.
- FIG. 1 is a perspective view illustrating the process of forming a C -shaped iron core from a sheet of silicon steel according to the related art.
- FIG. 2 is a perspective view illustrating the process of forming E-shaped iron cores and I-shaped iron cores from a sheet of silicon steel according to the related art.
- FIG. 3 is a perspective view illustrating an iron core according to the present invention.
- FIG. 4 is a perspective view illustrating a mold punch and die used to form and laminate iron cores according to the present invention.
- FIG. 5 is a perspective view illustrating the process of forming E-shaped iron cores and pairs of c -shaped iron cores, which are arranged on both sides of the E-shaped iron core, are simultaneously stamped from a sheet of sili ⁇ invention.
- FIG. 6 is a perspective view illustrating iron cores formed and laminated according to the present invention.
- FIG. 7 is an alternative embodiment of an iron core according to the present invention.
- an E-shaped iron core 12 and a pair of C -shaped iron cores 16, which are arranged on both sides of the E-shaped iron core 12, are simultaneously stamped from a sheet of silicon steel 17 having a predetermined thickness (in general, 0.5 mm, or 0.1 to 0.35 mm) by using a press mold (not shown), so as to prevent the sheet of silicon steel 17 from being scraped.
- the iron core includes the E-shaped iron core 12 having side legs 10 symmetrically formed on both sides thereof, a center leg 11 formed between the side legs 10 and coupled to a bobbin (not shown) around which a coil is wound, and stamped grooves 14 formed between the side legs 10 and the center leg 11.
- the iron core also includes the pair of C -shaped iron cores 16 each having a long leg 22 formed corresponding to the side leg 10 of the E-shaped iron core 12, a short leg 15 formed corresponding to the center leg 11 of the E-shaped iron core 12, and a stamped groove 13 corresponding to the stamped groove 14 of the E-shaped iron core 12. Since both legs 15 and 22 of the C -shaped iron core 16 have different lengths, the C -shaped iron core 16 has an asymmetric cross section.
- the iron core also includes means for coupling the of Cl -shaped iron cores 16.
- the coupling means has recessed portions 18 lormed on me center leg 11 of the E-shaped iron core 12, an engaging boss 19 formed on each short leg 15 of the Cl -shaped iron cores 16 and engaged with the recessed portion 18, an engaging boss 20 formed on each side leg 10 of the E-shaped iron core 12, and a recessed portion 23 formed on each long leg 22 of the C -shaped iron cores 16 and engaged with the engaging boss 20.
- Reference numeral 35 indicates a recessed portion inevitably formed on the E-shaped iron core 12 when the short leg 15 of the Cl -shaped iron core 16 is stamped from the sheet of silicon steel 17
- reference numeral 36 indicates a recessed portion inevitably formed on the C -shaped iron core 16 when the side leg 10 of the E-shaped iron core 12 is stamped from the sheet of silicon steel 17.
- the mold for forming and laminating the iron core according to the present invention can prevent the silicon steel 17 from being scraped when the E-shaped iron core 12 and the pair of Cl -shaped iron cores 16, which are arranged to engage with each other, are stamped from the sheet of silicon steel 17.
- the embossed portion 24 of the Cl -shaped iron core 16 and the embossed portion 24 of the E- shaped iron core 12 are pressed by laminating press punches 26 and 28 to laminate the C- shaped iron cores 16 and the E-shaped iron cores 12 in a predetermined number.
- the mold for forming and laminating the iron core includes a mold punch 30 having through-hole forming punches 41 for punching through- holes 50 in the sheet of silicon steel 17, embossing punches 25 for forming embossed portions 24 to closely laminate the iron cores, a pair of C -shaped iron core forming punches 27 for stamping the C -shaped iron core 16 anc bottom surface thereof, and an E-shaped iron core forming punch 29 for stamping the E- shaped iron core 12 between the pair of c -shaped iron cores 16 from the sheet of silicon steel 17 and having a laminating punch 28 on a bottom surface thereof.
- the mold for forming and laminating the iron core according to the present invention includes a die 34 having through-holes 42 formed corresponding to the through- hole forming punches 41, recessed portions 31 formed corresponding to the embossing punches 25, a first receiving portion 32 formed in a shape corresponding to the C -shaped iron core forming punches 27, in which the c -shaped iron cores 16 are laminated, and a second receiving portion 33 formed in a shape corresponding to the E-shaped iron core forming punch 29, in which the E-shaped iron cores 12 are received and laminated.
- Reference numerals 39 and 39a indicate a punch and a through-hole 40a used to stamp the recessed portion 23 of the CZ -shaped iron core 16, and reference numerals 40 and 40a indicate a punch and a through-hole 40a used to stamp the recessed portion 18 of the E- shaped iron core 12.
- the C -shaped iron cores 16 may be stamped from the sheet of the silicon steel 17 by the structure comprising the first receiving portion 32 formed in the die 34 in the shape corresponding to the ⁇ zz -shaped iron core 16, and the C -shaped iron core forming punch 27 formed in the mold punch 30 in the shape corresponding to the first receiving portion 32.
- the E-shaped iron core 12 may be stamped from the sheet of the silicon steel 17 by the structure comprising the second receiving portion 33 formed in the die 34 in the shape corresponding to the E-shaped iron core 12, and the E- fornied in the mold punch 30 in the shape corresponding to the second receiving portion 33.
- the E-shaped iron core 12 and the pair of c: -shaped iron cores 16 are stamped from the sheet of the silicon steel 17 by using the mold punch 30 and the die 34.
- the means of transferring the sheet of silicon steel 17 and the means of driving the mold punch 30 and the die 34 are well known in the art, and the detailed explanation of the structure and operation thereof will be omitted.
- the sheet of silicon steel 17 is transferred onto the upper surface of the mold punch 30 (indicated by an imaginary line in FIG. 4), the sheet of the silicon steel 17 is provided with the through-holes 50 by the structure comprising the through-hole forming punch 41 formed in the mold punch 30 and the through-holes 39a formed in the die 34 in the shape corresponding to the through-hole forming punch 41.
- the through-holes 50 can prevent the embossed portions 24 from spreading when the iron core is stamped.
- the long legs 22 of the C -shaped iron cores portions 23 by the structure comprising the punch 39 formed in the mold punch 30 and the through-holes 39a formed in the die 34 in the shape corresponding to the punch 39.
- the recessed portions 18 are formed on the center leg 11 of the E- shaped iron core 12 by the structure comprising the punch 40 formed in the mold punch 30 and the through-holes 40a formed in the die 34 in the shape corresponding to the punch 40.
- the sheet of silicon steel 17 is provided with the embossed portions 24 by the structure comprising the embossing punch 25 of the mold punch 30 and the recessed portions 31 formed on the die 34 in the shape corresponding to the embossing punch 25.
- the c -shaped iron cores 16 are stamped from the sheet of the silicon steel 17 by the structure comprising the C -shaped iron core forming punches 27 of the mold punch 30 and the first receiving portion 32 formed in the die 34 in the shape corresponding to the punch 27.
- the stamped grooves 14 of the E-shaped iron core 12 are provided with the recessed portions 35 by the bosses 27a of the C -shaped iron core forming punches 27, and the side legs 10 of the E-shaped iron core 12 are provided with the bosses 20 by the recessed grooves 27b of the C -shaped iron core forming punches 27.
- the embossed portions 24 of the C-shaped iron core 16 are pressed by the laminating press punch 26 protruding from the bottom surface of the punch 27, thereby laminating the iron cores in a predetermined number.
- the c -shaped iron cores 16 laminated in the predetermined number can be removed from the first receiving portion 32 of the die 34 by the driving means (not shown).
- the E-shaped iron core 12 is stamped from the ! structure comprising the E-shaped iron core forming punch 2y ot the mold punch JU formed in the shape corresponding to the E-shaped iron core 12, and the second receiving portion 33 formed in the die 34 in the shape corresponding to the punch 29. After the E-shaped iron cores 12 are separately stamped from the sheet of silicon steel
- the embossed portions 24 of the E-shaped iron core 12 are pressed by the laminating press punch 28 protruding from the bottom surface of the punch 29, thereby laminating the E-shaped iron cores in a predetermined number.
- the E-shaped iron cores 12 laminated in the predetermined number can be removed from the second receiving portion 33 of the die 34 by the driving means (not shown).
- the sheet of the silicon steel 17 is provided with the through-holes (not shown) by the structure comprising the through-hole forming punch 41 formed in the mold punch 30 and the through-holes 42 formed in the die 34 in the shape corresponding to the through-hole forming punch 41.
- the through-holes can prevent the embossed portions 24 of the E- shaped iron core 12 from spreading when the embossed portions of the E-shaped iron core 12 are pressed by the laminating pressing punch 28.
- the iron cores 16 and 12 are separately formed and stamped from the sheet of silicon steel, the iron cores 16 and 12 are laminated in the first and second receiving portions 32 and 33, without carrying out a subsequent bonding process, thereby increasing its workability and productivity.
- the mold punches 30 and the dies 34 are arranged in 2, 4, 6 or 8 rows, so that the E-shaped iron cores 12 and the Cl -shaped iron cores 16 can be simultaneously stamped in 2, 4, 6 or 8 pairs from the sheet of silicon steel 17, thereby increasing its workability and productivity and thus decreasing the manufacturing cost.
- CI -shaped iron cores 16a can be stamped from sheets of silicon steel 17 arranged on both sides of the sheet of silicon steel 17 by using a mold punch and die (not shown).
- the laminated iron cores are thermally bonded.
- the stamping process of the E-shaped iron cores 12a and the CI -shaped iron cores 16a is substantially similar to that shown in FIG. 3, and thus the detailed explanation thereof will be omitted.
- the E-shaped iron core and the pair of Cl -shaped iron cores which are arranged on both sides of the E-shaped iron core, are simultaneously stamped from the sheet of silicon steel, thereby prevei steel from being scraped and thus reducing the manufacturing cost.
- the press speed for stamping the iron core can be increased to improve its workability and productivity, and a predetermined number of iron cores can be laminated, without performing a subsequent process.
- the stamped iron core As the iron cores are downwardly stamped from the sheet of silicon steel by using the mold punch and die, the stamped iron core can be easily taken out from the die.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Manufacturing Cores, Coils, And Magnets (AREA)
Abstract
Description
Claims
Priority Applications (5)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| BRPI0612932-3A BRPI0612932A2 (en) | 2005-04-12 | 2006-04-07 | Iron core, mold and method of forming and rolling thereof |
| CA002604174A CA2604174A1 (en) | 2005-04-12 | 2006-04-07 | Iron core, mold and method of forming and laminating the same |
| MX2007012599A MX2007012599A (en) | 2005-04-12 | 2006-04-07 | Iron core, mold and method of forming and laminating the same. |
| EP06732832A EP1868749A1 (en) | 2005-04-12 | 2006-04-07 | Iron core, mold and method of forming and laminating the same |
| US11/887,805 US20090040002A1 (en) | 2005-04-12 | 2006-04-07 | Iron Core, Mold and Method of Forming and Laminating the Same |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| KR10-2005-0030530 | 2005-04-12 | ||
| KR1020050030530A KR100591251B1 (en) | 2005-04-12 | 2005-04-12 | Core core, mold for forming and laminating it, laminating method |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2006109957A1 true WO2006109957A1 (en) | 2006-10-19 |
Family
ID=37087209
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/KR2006/001274 Ceased WO2006109957A1 (en) | 2005-04-12 | 2006-04-07 | Iron core, mold and method of forming and laminating the same |
Country Status (8)
| Country | Link |
|---|---|
| US (1) | US20090040002A1 (en) |
| EP (1) | EP1868749A1 (en) |
| KR (1) | KR100591251B1 (en) |
| CN (1) | CN101160185A (en) |
| BR (1) | BRPI0612932A2 (en) |
| CA (1) | CA2604174A1 (en) |
| MX (1) | MX2007012599A (en) |
| WO (1) | WO2006109957A1 (en) |
Families Citing this family (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| KR101018260B1 (en) | 2009-06-30 | 2011-03-03 | 삼성전기주식회사 | Transformers |
| CN103123860B (en) * | 2011-07-07 | 2016-12-21 | 洛克威尔自动控制技术股份有限公司 | For having the cost-effective design of the current transformer of integrated magnetic actuator |
| CN108717899B (en) * | 2018-08-30 | 2023-12-08 | 江阴市南闸中天电器有限公司 | High-efficient suppression device of blade of silicon steel with protect function |
| KR102265192B1 (en) * | 2019-08-13 | 2021-06-15 | 김홍관 | Apparatus and method for combining jewelry and jewelry using the same |
| CN113275459B (en) * | 2021-07-22 | 2021-09-14 | 宁波震裕科技股份有限公司 | Manufacturing process of step type iron core |
Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2609483B2 (en) * | 1990-11-27 | 1997-05-14 | 広畑電磁鋼センター 株式会社 | Iron core manufacturing equipment |
| US5777537A (en) * | 1996-05-08 | 1998-07-07 | Espey Mfg. & Electronics Corp. | Quiet magnetic structures such as power transformers and reactors |
| JPH10294220A (en) * | 1997-04-17 | 1998-11-04 | Murai Itsuki | Laminate core constituting closed magnetic circuit in theta shape |
-
2005
- 2005-04-12 KR KR1020050030530A patent/KR100591251B1/en not_active Expired - Fee Related
-
2006
- 2006-04-07 WO PCT/KR2006/001274 patent/WO2006109957A1/en not_active Ceased
- 2006-04-07 US US11/887,805 patent/US20090040002A1/en not_active Abandoned
- 2006-04-07 CA CA002604174A patent/CA2604174A1/en not_active Abandoned
- 2006-04-07 CN CNA2006800120882A patent/CN101160185A/en active Pending
- 2006-04-07 EP EP06732832A patent/EP1868749A1/en not_active Withdrawn
- 2006-04-07 MX MX2007012599A patent/MX2007012599A/en not_active Application Discontinuation
- 2006-04-07 BR BRPI0612932-3A patent/BRPI0612932A2/en not_active IP Right Cessation
Patent Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2609483B2 (en) * | 1990-11-27 | 1997-05-14 | 広畑電磁鋼センター 株式会社 | Iron core manufacturing equipment |
| US5777537A (en) * | 1996-05-08 | 1998-07-07 | Espey Mfg. & Electronics Corp. | Quiet magnetic structures such as power transformers and reactors |
| JPH10294220A (en) * | 1997-04-17 | 1998-11-04 | Murai Itsuki | Laminate core constituting closed magnetic circuit in theta shape |
Also Published As
| Publication number | Publication date |
|---|---|
| MX2007012599A (en) | 2008-01-11 |
| CA2604174A1 (en) | 2006-10-19 |
| BRPI0612932A2 (en) | 2010-12-07 |
| CN101160185A (en) | 2008-04-09 |
| KR100591251B1 (en) | 2006-06-21 |
| US20090040002A1 (en) | 2009-02-12 |
| EP1868749A1 (en) | 2007-12-26 |
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