loadpatents
name:-0.032576084136963
name:-0.050926923751831
name:-0.0014650821685791
Hasegawa; Ryusuke Patent Filings

Hasegawa; Ryusuke

Patent Applications and Registrations

Patent applications and USPTO patent grants for Hasegawa; Ryusuke.The latest application filed is for "method of constructing core with tapered pole pieces and low-loss electrical rotating machine with said core".

Company Profile
0.52.30
  • Hasegawa; Ryusuke - Morristown NJ
*profile and listings may contain filings by different individuals or companies with the same name. Review application materials to confirm ownership/assignment.
Patent Activity
PatentDate
Method of constructing core with tapered pole pieces and low-loss electrical rotating machine with said core
Grant 9,225,205 - Gayler , et al. December 29, 2
2015-12-29
Ferromagnetic amorphous alloy ribbon and fabrication thereof
Grant 8,974,609 - Ogawa , et al. March 10, 2
2015-03-10
Ferromagnetic amorphous alloy ribbon with reduced surface defects and application thereof
Grant 8,968,489 - Azuma , et al. March 3, 2
2015-03-03
Ferromagnetic amorphous alloy ribbon with reduced surface protrusions, method of casting and application thereof
Grant 8,968,490 - Theisen , et al. March 3, 2
2015-03-03
Method of constructing core with tapered pole pieces and low-loss electrical rotating machine with said core
Grant 8,726,490 - Gayler , et al. May 20, 2
2014-05-20
Iron-based high saturation induction amorphous alloy
Grant 8,663,399 - Hasegawa , et al. March 4, 2
2014-03-04
Method Of Constructing Core With Tapered Pole Pieces And Low-loss Electrical Rotating Machine With Said Core
App 20130134825 - GAYLER; John Andrew ;   et al.
2013-05-30
Method Of Reducing Audible Noise In Magnetic Cores And Magnetic Cores Having Reduced Audible Noise
App 20130106559 - Columbus; Mark Robert ;   et al.
2013-05-02
Method of reducing audible noise in magnetic cores and magnetic cores having reduced audible noise
Grant 8,427,272 - Columbus , et al. April 23, 2
2013-04-23
Method Of Constructing Core With Tapered Pole Pieces And Low-loss Electrical Rotating Machine With Said Core
App 20130043744 - GAYLER; John Andrew ;   et al.
2013-02-21
Iron-based high saturation magnetic induction amorphous alloy core having low core and low audible noise
Grant 8,372,217 - Hasegawa , et al. February 12, 2
2013-02-12
Magnetomechanical sensor element and application thereof in electronic article surveillance and detection system
Grant 8,366,010 - Hasegawa , et al. February 5, 2
2013-02-05
Magnetomechanical Sensor Element And Application Thereof In Electronic Article Surveillance And Detection System
App 20130001314 - HASEGAWA; Ryusuke ;   et al.
2013-01-03
Ferromagnetic amorphous alloy ribbon with reduced surface protrusions, method of casting and application thereof
App 20120062351 - Theisen; Eric A. ;   et al.
2012-03-15
Ferromagnetic amorphous alloy ribbon and fabrication thereof
App 20120049992 - Azuma; Daichi ;   et al.
2012-03-01
Ferromagnetic amorphous alloy ribbon and fabrication thereof
App 20120048428 - Ogawa; Yuichi ;   et al.
2012-03-01
Remote temperature sensing device and related remote temperature sensing method
Grant 7,985,022 - Azuma , et al. July 26, 2
2011-07-26
Temperature sensor and related remote temperature sensing method
Grant 7,931,400 - Hasegawa , et al. April 26, 2
2011-04-26
Iron-based high saturation magnetic induction amorphous alloy core having low core and low audible noise
App 20100175793 - Hasegawa; Ryusuke ;   et al.
2010-07-15
Marker for mechanically resonant article surveillance system
Grant 7,561,043 - Hasegawa , et al. July 14, 2
2009-07-14
Filter circuit having an Fe-based core
Grant 7,541,909 - Hasegawa , et al. June 2, 2
2009-06-02
Remote temperature sensing device and related remote temperature sensing method
App 20080212646 - Azuma; Daichi ;   et al.
2008-09-04
Temperature sensor and related remote temperature sensing method
App 20080212644 - Hasegawa; Ryusuke ;   et al.
2008-09-04
Marker for coded electronic article identification system
Grant 7,320,433 - Hasegawa January 22, 2
2008-01-22
Bulk amorphous metal inductive device
Grant 7,289,013 - Decristofaro , et al. October 30, 2
2007-10-30
Marker for mechanically resonant article surveillance system
Grant 7,205,893 - Hasegawa , et al. April 17, 2
2007-04-17
Marker for coded electronic article identification system
App 20070080226 - Hasegawa; Ryusuke
2007-04-12
Marker for mechanically resonant article surveillance system
App 20070080808 - Hasegawa; Ryusuke ;   et al.
2007-04-12
Magnetic implement using magnetic metal ribbon coated with insulator
Grant 7,138,188 - Hasegawa , et al. November 21, 2
2006-11-21
Marker for mechanically resonant article surveillance system
App 20060220849 - Hasegawa; Ryusuke ;   et al.
2006-10-05
Marker for coded electronic article identification system
App 20060219786 - Hasegawa; Ryusuke
2006-10-05
Iron-based high saturation induction amorphous alloy
App 20060180248 - Hasegawa; Ryusuke ;   et al.
2006-08-17
Magnetic implement using magnetic metal ribbon coated with insulator
Grant 7,056,595 - Hasegawa , et al. June 6, 2
2006-06-06
Magnetic implement having a linear BH loop
Grant 7,048,809 - Hasegawa , et al. May 23, 2
2006-05-23
Bulk amorphous metal inductive device
App 20060066433 - Decristofaro; Nicholas J. ;   et al.
2006-03-30
Gapped amorphous metal-based magnetic core
Grant 6,992,555 - Hasegawa , et al. January 31, 2
2006-01-31
Magnetic implement using magnetic metal ribbon coated with insulator
App 20050221126 - Hasegawa, Ryusuke ;   et al.
2005-10-06
Current transformer having an amorphous fe-based core
Grant 6,930,581 - Martis , et al. August 16, 2
2005-08-16
Bulk laminated amorphous metal inductive device
Grant 6,873,239 - Decristofaro , et al. March 29, 2
2005-03-29
Gapped amorphous metal-based magnetic core
App 20040150503 - Hasegawa, Ryusuke ;   et al.
2004-08-05
Magnetic implement using magnetic metal ribbon coated with insulator
App 20040151920 - Hasegawa, Ryusuke ;   et al.
2004-08-05
Magnetic implement having a linear BH loop
App 20040140015 - Hasegawa, Ryusuke ;   et al.
2004-07-22
Fe-based amorphous metal alloy having a linear BH loop
Grant 6,749,695 - Martis , et al. June 15, 2
2004-06-15
Bulk laminated amorphous metal inductive device
App 20040085174 - Decristofaro, Nicholas J. ;   et al.
2004-05-06
Bulk Amorphous Metal Inductive Device
App 20040085173 - Decristofaro, Nicholas J. ;   et al.
2004-05-06
Integrated hybrid electronic article surveillance marker
Grant 6,696,953 - Qiu , et al. February 24, 2
2004-02-24
Electronic article surveillance markers for recorded media
Grant 6,693,542 - Hasegawa February 17, 2
2004-02-17
Current transformer having an amorphous fe-based core
App 20030151483 - Martis, Ronald J. ;   et al.
2003-08-14
Fe-based amorphous metal alloy having a linear BH loop
App 20030150528 - Martis, Ronald J. ;   et al.
2003-08-14
Filter circuit having an Fe-based core
App 20030151487 - Hasegawa, Ryusuke ;   et al.
2003-08-14
Electronic article surveillance markers for recorded media
App 20030090380 - Hasegawa, Ryusuke
2003-05-15
Inductor core-coil assembly and manufacturing thereof
Grant 6,512,438 - Yoshimori , et al. January 28, 2
2003-01-28
Integrated hybrid electronic article surveillance marker
Grant 6,373,387 - Qiu , et al. April 16, 2
2002-04-16
Integrated hybrid electronic article surveillance marker
App 20020021218 - Qiu, An ;   et al.
2002-02-21
Magnetic Glassy Alloys For High Frequency Applications
App 20010001398 - HASEGAWA, RYUSUKE ;   et al.
2001-05-24
Magnetic core-coil assembly for spark ignition systems
Grant 5,868,123 - Hasegawa , et al. February 9, 1
1999-02-09
Metallic glass alloys for mechanically resonant marker surveillance systems
Grant 5,650,023 - Hasegawa , et al. July 22, 1
1997-07-22
Metallic glass alloys for mechanically resonant marker surveillance systems
Grant 5,628,840 - Hasegawa May 13, 1
1997-05-13
Metallic glass alloys for mechanically resonant marker surveillance systems
Grant 5,495,231 - Hasegawa February 27, 1
1996-02-27
Amorphous antipilferage marker
Grant RE35,042 - Anderson, III , et al. September 26, 1
1995-09-26
Methods of monitoring precipitates in metallic materials
Grant 5,055,144 - Fish , et al. October 8, 1
1991-10-08
Ground fault interrupters for glassy metal alloys
Grant 4,956,743 - Hasegawa September 11, 1
1990-09-11
Glassy alloy identification marker
Grant 4,823,113 - Hasegawa April 18, 1
1989-04-18
Methods of and apparatus for monitoring precipitates in metallic materials
Grant 4,634,462 - Fish , et al. January 6, 1
1987-01-06
Amorphous antipilferage marker
Grant 4,553,136 - Anderson, III , et al. November 12, 1
1985-11-12
Iron-boron solid solution alloys having high saturation magnetization and low magnetostriction
Grant 4,483,724 - Hasegawa November 20, 1
1984-11-20
Magnetic implements from glassy alloys
Grant 4,385,944 - Hasegawa May 31, 1
1983-05-31
Beryllium-containing iron-boron glassy magnetic alloys
Grant 4,259,109 - Hasegawa March 31, 1
1981-03-31
Metallic glasses having a combination of high permeability, low magnetostriction, low ac core loss and high thermal stability
Grant 4,152,144 - Hasegawa , et al. May 1, 1
1979-05-01
Iron-boron solid solution alloys having high saturation magnetization
Grant 4,134,779 - Ray , et al. January 16, 1
1979-01-16
Glassy superconducting metal alloys in the beryllium-niobium-zirconium system
Grant 4,116,687 - Hasegawa September 26, 1
1978-09-26
Glassy metal alloy temperature sensing elements for resistance thermometers
Grant 4,064,757 - Hasegawa December 27, 1
1977-12-27

uspto.report is an independent third-party trademark research tool that is not affiliated, endorsed, or sponsored by the United States Patent and Trademark Office (USPTO) or any other governmental organization. The information provided by uspto.report is based on publicly available data at the time of writing and is intended for informational purposes only.

While we strive to provide accurate and up-to-date information, we do not guarantee the accuracy, completeness, reliability, or suitability of the information displayed on this site. The use of this site is at your own risk. Any reliance you place on such information is therefore strictly at your own risk.

All official trademark data, including owner information, should be verified by visiting the official USPTO website at www.uspto.gov. This site is not intended to replace professional legal advice and should not be used as a substitute for consulting with a legal professional who is knowledgeable about trademark law.

© 2024 USPTO.report | Privacy Policy | Resources | RSS Feed of Trademarks | Trademark Filings Twitter Feed