Patents by Inventor Tsutomu Inuzuka
Tsutomu Inuzuka has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 7911295Abstract: A common mode noise filter includes a nonmagnetic layer, first and second magnetic layers sandwiching the nonmagnetic layer between the magnetic layers and contacting the nonmagnetic layer, a plane coil provided between the first and second magnetic layers and contacting the nonmagnetic layer, and an external electrode connected electrically with the plane coil. The first and second magnetic layers include a magnetic oxide layer and an insulator layer provided on the magnetic oxide layer. The insulator layer contains glass component. This common mode noise filter has a large bonding strength between the external electrode and the insulator layer.Type: GrantFiled: May 8, 2006Date of Patent: March 22, 2011Assignee: Panasonic CorporationInventors: Tsutomu Inuzuka, Hiroshi Fujii, Hironori Motomitsu, Shogo Nakayama
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Publication number: 20090003191Abstract: A common mode noise filter includes a nonmagnetic layer, first and second magnetic layers sandwiching the nonmagnetic layer between the magnetic layers and contacting the nonmagnetic layer, a plane coil provided between the first and second magnetic layers and contacting the nonmagnetic layer, and an external electrode connected electrically with the plane coil. The first and second magnetic layers include a magnetic oxide layer and an insulator layer provided on the magnetic oxide layer. The insulator layer contains glass component. This common mode noise filter has a large bonding strength between the external electrode and the insulator layer.Type: ApplicationFiled: May 8, 2006Publication date: January 1, 2009Applicant: MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.Inventors: Tsutomu Inuzuka, Hiroshi Fujii, Hironori Motomitsu, Shogo Nakayama
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Patent number: 7378930Abstract: A magnetic ferrite operating well in the GHz zone, and a magnetic device of superior high frequency characteristics which uses the magnetic ferrite for its magnetic core. The magnetic ferrite includes iron oxide, cobalt oxide and zinc oxide as the main components and at least one item selected from among the group consisting of titanium, tantalum, indium, zirconium, lithium, tin and vanadium as the side component.Type: GrantFiled: July 13, 2004Date of Patent: May 27, 2008Assignee: Matsushita Electric Industrial Co., Ltd.Inventor: Tsutomu Inuzuka
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Patent number: 7202766Abstract: A magnetic element superior in high frequency characteristics is provided that comprises magnetic ferrite having iron oxide, cobalt oxide and zinc oxide as the main ingredients, a conducting coil formed over the magnetic ferrite, an insulating material covering the conducting coil, and two or more external electrodes connected with the conducting coil.Type: GrantFiled: June 24, 2004Date of Patent: April 10, 2007Assignee: Matsushita Electric Industrial Co., Ltd.Inventor: Tsutomu Inuzuka
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Patent number: 7084825Abstract: An antenna capable of attaining the miniaturization thereof and the widening of a band in use, and an electronic device containing this antenna therein, having a miniaturized structure and adaptable to a wide band. This antenna is provided with a feeding element having a feeder end, an antenna core provided with the feeding element on an outer circumference thereof, a feeder lead connected to the feeder end, and a magnetic member covering the feeder end. This electronic device is provided with the antenna, a transmission system, and a reception system, and the feeder lead of the antenna is connected to at least one of the transmission system and reception system.Type: GrantFiled: December 22, 2003Date of Patent: August 1, 2006Assignee: Matsushita Electric Industrial Co., Ltd.Inventors: Misako Sakae, Naoki Yuda, Yuki Satoh, Tsutomu Inuzuka
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Publication number: 20060158293Abstract: A magnetic ferrite operating well in the GHz zone, and a magnetic device of superior high frequency characteristics which uses the magnetic ferrite for its magnetic core. The magnetic ferrite includes iron oxide, cobalt oxide and zinc oxide as the main components and at least one item selected from among the group consisting of titanium, tantalum, indium, zirconium, lithium, tin and vanadium as the side component.Type: ApplicationFiled: July 13, 2004Publication date: July 20, 2006Inventor: Tsutomu Inuzuka
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Publication number: 20060066432Abstract: A magnetic element superior in high frequency characteristics is provided that comprises magnetic ferrite having iron oxide, cobalt oxide and zinc oxide as the main ingredients, a conducting coil formed over the magnetic ferrite, an insulating material covering the conducting coil, and two or more external electrodes connected with the conducting coil.Type: ApplicationFiled: June 24, 2004Publication date: March 30, 2006Inventor: Tsutomu Inuzuka
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Publication number: 20050156805Abstract: An antenna capable of attaining the miniaturization thereof and the widening of a band in use, and an electronic device containing this antenna therein, having a miniaturized structure and adaptable to a wide band. This antenna is provided with a feeding element having a feeder end, an antenna core provided with the feeding element on an outer circumference thereof, a feeder lead connected to the feeder end, and a magnetic member covering the feeder end. This electronic device is provided with the antenna, a transmission system, and a reception system, and the feeder lead of the antenna is connected to at least one of the transmission system and reception system.Type: ApplicationFiled: December 22, 2003Publication date: July 21, 2005Inventors: Misako Sakae, Naoki Yuda, Yuki Satoh, Tsutomu Inuzuka
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Patent number: 6911890Abstract: A laminated high frequency device includes a laminated body including plural magnetic sheets having relative permeabilities larger than 1, inductor patterns for forming plural inductors in the laminated body, and capacitor patterns forming a capacitor. The capacitor patterns are opposed to each other about another sheet of the laminated body. The inductors have large inductances without thickening of the magnetic sheet or thinning of the inductor patterns providing a large conductor loss. This arrangement reduces a size of the laminated high frequency device while providing isolation between the inductors.Type: GrantFiled: August 26, 2003Date of Patent: June 28, 2005Assignee: Matsushita Electric Industrial Co., Ltd.Inventors: Yuki Satoh, Tsutomu Inuzuka
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Publication number: 20040239564Abstract: An antenna of the present invention is provided with a magnetic material (31) in the vicinity of a grounding lead wire (28) and with a nonmagnetic space between a radiation electrode (27) and a ground electrode (26).Type: ApplicationFiled: July 13, 2004Publication date: December 2, 2004Inventors: Misako Sakae, Naoki Yuda, Hiroshi Takahashi, Shinji Harada, Tsutomu Inuzuka
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Publication number: 20040075968Abstract: A laminated high frequency device includes a laminated body including plural magnetic sheets having relative permeabilities larger than 1, inductor patterns for forming plural inductors in the laminated body, and capacitor patterns forming a capacitor. The capacitor patterns are opposed to each other about another sheet of the laminated body. The inductors have large inductances without thickening of the magnetic sheet or thinning of the inductor patterns providing a large conductor loss. This arrangement reduces a size of the laminated high frequency device since a necessary isolation between the inductors is assured.Type: ApplicationFiled: August 26, 2003Publication date: April 22, 2004Inventors: Yuki Satoh, Tsutomu Inuzuka
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Patent number: 6166620Abstract: A resistance wiring board having a cavity disposed on an insulated substrate, a resistance disposed in the cavity, a protective film disposed on a top face of the resistance, and electrodes electrically connected at near both ends of the resistance, wherein surfaces of the electrodes and a surface of the protective film are the same level as or lower than a surface of the wiring board. A method for manufacturing a resistance wiring board comprising the steps of forming a green sheet, forming an electrode pattern on the green sheet, forming a dented pattern on the green sheet, firing the green sheet, forming a resistance by filling a resistance material in the dent of the green sheet, and forming a protective film on a top face of the resistance.Type: GrantFiled: April 8, 1999Date of Patent: December 26, 2000Assignee: Matsushita Electric Industrial Co., Ltd.Inventors: Tsutomu Inuzuka, Satoshi Tomioka, Shigeo Furukawa, Tsuyoshi Himori, Suzushi Kimura
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Patent number: 5928979Abstract: The present invention relates to ceramics and a method for making ceramics having very little dimensional change after sintering and high dimensional accuracies, so that the characteristics of inorganic functional material are fully maintained and utilized. The ceramics of the present invention comprise grains of inorganic functional material and grains of complex oxide. The pores existing between said grains of inorganic functional material are filled with said grains of complex oxide produced by a sintering reaction between an oxidized metal and an inorganic compound.Type: GrantFiled: January 30, 1998Date of Patent: July 27, 1999Assignee: Matsushita Electric Industrial Co., Ltd.Inventors: Tsutomu Inuzuka, Shinji Harada, Yuji Mido, Tadashi Tojyo, Satoshi Tomioka
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Patent number: 5683617Abstract: The invention relates to a magnetic material and a method of manufacturing the same. An objective of the invention resides in providing a magnetic material whose dimensional change rate after sintering is low and whose magnetic property is not deteriorated. In order to achieve the objective, a magnetic material according to the invention comprises a great number of ferrite grains (1) which are formed by sintering ferrite raw powder, and shrinkage preventing grains (2) which are interposed among these plural ferrite grains (1) and which are sintered with the ferrite grains (1) in contact with the outer peripheries thereof and are also oxidized with oxygen so as to change into ferrite when they are sintered.Type: GrantFiled: January 31, 1996Date of Patent: November 4, 1997Assignee: Matsushita Electric Industrial Co., Ltd.Inventors: Tsutomu Inuzuka, Shinji Harada, Hiroshi Fujii, Michio Ohba
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Patent number: 5639704Abstract: The present invention relates to ceramics and a method for making ceramics having very little dimensional change after sintering and high dimensional accuracies, so that the characteristics of inorganic functional material are fully maintained and utilized. The ceramics of the present invention comprise grains of inorganic functional material and grains of complex oxide. The pores existing between said grains of inorganic functional material are filled with said grains of complex oxide produced by a sintering reaction between an oxidized metal and an inorganic compound.Type: GrantFiled: February 7, 1995Date of Patent: June 17, 1997Assignee: Matsushita Electric Industrial Co., Ltd.Inventors: Tsutomu Inuzuka, Shinji Harada, Yuji Mido, Tadashi Tojyo, Satoshi Tomioka
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Patent number: 5518641Abstract: The invention relates to a magnetic material and a method of manufacturing the same. An objective of the invention resides in providing a magnetic material whose dimensional change rate after sintering is low and whose magnetic property is not deteriorated. In order to achieve the objective, a magnetic material according to the invention comprises a great number of ferrite grains (1) which are formed by sintering ferrite raw powder, and shrinkage preventing grains (2) which are interposed among these plural ferrite grains (1) and which are sintered with the ferrite grains (1) in contact with the outer peripheries thereof and are also oxidized with oxygen so as to change into ferrite when they are sintered.Type: GrantFiled: June 29, 1994Date of Patent: May 21, 1996Assignee: Matsushita Electric Industrial Co., Ltd.Inventors: Tsutomu Inuzuka, Shinji Harada, Hiroshi Fujii, Michio Ohba