Inventor
Shinsuke Tanaka
Inventor
Kawasaki, JP
Overview
Patents· 88 as inventor
Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.
A61Bprimary
A61BDiagnosis10%
H01SDevices using the process of light amplification by stimulated emission of radiation [laser] to amplify or generate light10%
G02BOptical elements, systems or apparatus8%
H01LSemiconductor devices6%
H10KOrganic electric solid-state devices5%
A61KPreparations for medical, dental or toiletry purposes5%
A61MDevices for introducing media into, or onto, the body4%
A61PSpecific therapeutic activity of chemical compounds or medicinal preparations4%
B82YSpecific uses or applications of nanostructures3%
G02FOptical devices or arrangements for the control of light by modification of the optical properties of the media of the elements involved therein3%
PatentTitleYear
10,835,5429-aminomethyl minocycline compounds and use thereof in treating community-acquired bacterial pneumonia (CABP)202010,830,950Optical transmitter-receiver202010,790,469Light-emitting device with a sealing film202010,707,030Switch202010,700,306Light emitting apparatus202010,383,8849-aminomethyl minocycline compounds and use thereof in treating community-acquired bacterial pneumonia (CABP)201910,297,788Light emitting apparatus201910,243,166Light-emitting device with stacked layers201910,238,6709-aminomethyl minocycline compounds and methods of use thereof in urinary tract infection (UTI) treatment201910,243,165Light-emitting device201910,164,713Optical transmitter, optical modulator module, and optical transmission system201810,124,014Minocycline compounds and methods of use thereof201810,111,8909-aminomethyl minocycline compounds and uses thereof2018PP029375None2018PP029353None20189,978,986Light emitting apparatus20189,941,975Wavelength division multiplexing optical receiver and driving method for same20189,843,019'Light emitting apparatus'20179,724,358'Minocycline compounds and methods of use thereof'20179,722,213'Method for manufacturing electronic device'20179,620,931'Optical device, optical transmission device, optical reception device, hybrid laser and optical transmission apparatus'20179,439,558'Body-introducable apparatus and medical system'20169,413,465'Optical transceiver and optical output level control method'20169,265,740'Minocycline compounds and methods of use thereof'20169,224,929'Optical semiconductor device and manufacturing method therefor'20159,186,040'Sealing structure and antenna apparatus'20159,001,415'Reflective semiconductor optical amplifier with constant gain versus wavelength'20158,961,400'Capsule-medical-device dedicated power source starter'20158,948,606'Semiconductor optical amplifier'20158,837,548'Semiconductor optical element'20148,821,380'Antenna apparatus, antenna, antenna holder, and body-insertable apparatus system'20148,809,906'Semiconductor optical device'20148,790,248'Indwelling apparatus for body cavity introducing device and body cavity introducing device placing system'20148,749,879'Semiconductor optical amplifier and optical amplification apparatus'20148,740,777'In-vivo imaging system and body-insertable apparatus'20148,740,774'Capsule-type medical apparatus, guidance system and guidance method therefor, and intrasubject insertion apparatus'20148,736,956'Optical amplification control apparatus'20148,602,969'Capsule medical apparatus system'20138,579,883'Body-insertable apparatus and medical agent discharge method'20138,574,150'Capsule medical apparatus'20138,547,630'Optical semiconductor device and manufacturing method therefor'20138,529,433'Body-insertable apparatus system'20138,517,917'Capsule medical apparatus'20138,491,464'In-vivo information acquiring apparatus, in-vivo information acquiring system, and in-vivo information acquiring method'20138,472,109'Semiconductor optical amplifier and optical module'20138,456,385'Display apparatus and display driving method for enhancing grayscale display capable of low luminance portion without increasing driving time'20138,444,572'Capsule medical device and body-tissue obtaining method'20138,440,646'Substituted tetracycline compounds for treatment of Bacillus anthracis infections'20138,422,123'Semiconductor optical amplifier and optical module'20138,390,679'Capsule endoscope device'20138,282,600'Body-insertable device and liquid medicine injection method'20128,269,823'In vivo imaging device, display device, imaging and displaying system and intra-subject indwelling system using the same'20128,202,247'Capsule medical apparatus'20128,179,592'Semiconductor optical amplifier, method for manufacturing the same, and semiconductor optical integrated device'20128,038,600'Medical system'20118,021,357'Body-insertable apparatus'20117,859,745'Semiconductor optical amplifying device, semiconductor optical amplifying system and semiconductor optical integrated element'20107,859,746'Semiconductor optical amplifier'20107,710,359'Display apparatus and display driving method for enhancing grayscale display capable of low luminance portion without increasing driving time'20107,627,212'Optical integrated device'20097,542,201'Semiconductor optical amplification device and optical integrated circuit'20097,508,849'Wavelength tunable laser device'20097,295,366'Optical integrated device and optical module'20077,239,294'Plasma display device'20077,211,938'Double-sided display device and method of fabricating the same'20077,158,547'Wavelength tunable laser of small size'20077,038,372'Organic EL element and method of producing the same'20067,006,060'Plasma display panel and method of driving the same capable of providing high definition and high aperture ratio'20066,992,813'Optical amplifying device'20066,940,475'Method for driving plasma display panel and plasma display device'20056,823,142'Polarization mode dispersion compensating apparatus'20046,636,187'Display and method of driving the display capable of reducing current and power consumption without deteriorating quality of displayed images'20036,327,404'Wavelength filter'20016,084,997'Coupled waveguide structure'20005,859,941'Optical add/drop multiplexer device'19995,556,920'Stretched polypropylene film'19965,430,146'Spirooxazine compounds'19955,246,989'Photochromic compound, composition and use thereof'19935,221,455'Bipolar membrane and method for its production'19935,055,296'Method of treating chronic fatigue syndrome'19914,981,269'Vertical mill'19914,968,305'Radiation-shielding injector for a radio-pharmaceutical liquid composition'19904,923,088'Radiation-shielding container'19904,814,238'Magneto-optical recording medium'19894,612,068'Magneto-optical recording medium'19864,559,573'Magneto-optical recording medium'19854,477,852'Magneto-optical recording and reproducing system'19844,417,290'Multi-layer magneto-optical recording medium'1983Career & activity timeline
Assembled from patent assignee/location history and declaration credentials.
1983–2015Based in Kawasaki, JP· patent location history
2000–2020Based in Tokyo, JP· patent location history
2003–2020Patents assigned to FUJITSU LTD (24)· patent assignee history
2006–2020Patents assigned to PIONEER TOHOKU CORP (9)· patent assignee history
2011–2016Patents assigned to OLYMPUS CORP (11)· patent assignee history
2012–2018Patents assigned to TANAKA SHINSUKE (28)· patent assignee history
2012–2015Patents assigned to OLYMPUS MEDICAL SYSTEMS CORP (15)· patent assignee history
2012–2015Based in Hino, JP· patent location history
2014–2020Based in Hiratsuka, JP· patent location history
2017–2020Based in Yonezawa, JP· patent location history
Inventor activity
Assignee and location history derived from the patent record.
Assignees
| Assignee | Patents | Span |
|---|---|---|
| TANAKA SHINSUKEself | 28 | 2012–2018 |
| FUJITSU LTD | 24 | 2003–2020 |
| OLYMPUS MEDICAL SYSTEMS CORP | 15 | 2012–2015 |
| OLYMPUS CORP | 11 | 2011–2016 |
| PIONEER TOHOKU CORP | 9 | 2006–2020 |
Locations
| Location | Patents | Span |
|---|---|---|
| Kawasaki, JP | 24 | 1983–2015 |
| Hino, JP | 10 | 2012–2015 |
| Yonezawa, JP | 8 | 2017–2020 |
| Hiratsuka, JP | 7 | 2014–2020 |
| Tokyo, JP | 6 | 2000–2020 |