Inventor
Stephen M. Rossnagel
Inventor
Pleasantville, NY, US
Overview
Patents· 81 as inventor
Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.
H10Wprimary
H10WGeneric packages, interconnections, connectors or other constructional details of devices covered by class h1013%
G01NInvestigating or analysing materials by determining their chemical or physical properties10%
B82YSpecific uses or applications of nanostructures8%
H10PGeneric processes or apparatus for the manufacture or treatment of devices covered by class h108%
C12QMeasuring or testing processes involving enzymes, nucleic acids or microorganisms5%
C23CCoating metallic material5%
H10NElectric solid-state devices not otherwise provided for5%
Y10STechnical subjects covered by former uspc cross-reference art collections [xracs] and digests5%
B81CProcesses or apparatus specially adapted for the manufacture or treatment of microstructural devices or systems3%
H01LSemiconductor devices3%
PatentTitleYear
11,056,722Tool and method of fabricating a self-aligned solid state thin film battery202111,015,258Feedback control of dimensions in nanopore and nanofluidic devices202110,943,863Techniques to improve reliability in Cu interconnects using Cu intermetallics202110,818,590Techniques to improve reliability in Cu interconnects using Cu intermetallics202010,720,670Self-aligned 3D solid state thin film battery202010,679,853Self-aligned, over etched hard mask fabrication method and structure202010,461,026Techniques to improve reliability in Cu interconnects using Cu intermetallics201910,323,333Feedback control of dimensions in nanopore and nanofluidic devices201910,316,423Feedback control of dimensions in nanopore and nanofluidic devices201910,267,784DNA sequencing using multiple metal layer structure with different organic coatings forming different transient bondings to DNA20199,891,189'Techniques for fabricating horizontally aligned nanochannels for microfluidics and biosensors'20189,853,210Reduced process degradation of spin torque magnetoresistive random access memory20179,651,518'Nano-fluidic field effective device to control DNA transport through the same'20179,643,179'Techniques for fabricating horizontally aligned nanochannels for microfluidics and biosensors'20179,513,277'DNA sequencing using multiple metal layer structure with different organic coatings forming different transient bondings to DNA'20169,422,154'Feedback control of dimensions in nanopore and nanofluidic devices'20169,285,339'DNA sequencing using multiple metal layer structure with different organic coatings forming different transient bondings to DNA'20169,222,930'Fabrication of tunneling junction for nanopore DNA sequencing'20159,046,511'Fabrication of tunneling junction for nanopore DNA sequencing'20158,986,524'DNA sequence using multiple metal layer structure with different organic coatings forming different transient bondings to DNA'20158,940,148'Nano-fluidic field effective device to control DNA transport through the same'20158,889,537'Implantless dopant segregation for silicide contacts'20148,858,764'Electron beam sculpting of tunneling junction for nanopore DNA sequencing'20148,852,407'Electron beam sculpting of tunneling junction for nanopore DNA sequencing'20148,764,968'DNA sequencing using multiple metal layer structure with organic coatings forming transient bonding to DNA bases'20148,691,067'Charged entities as locomotive to control motion of polymers through a nanochannel'20148,680,501'Memory cell with post deposition method for regrowth of crystalline phase change material'20148,641,879'Charged entities as locomotive to control motion of polymers through a nanochannel'20148,618,581'Nanofludic field effect transistor based on surface charge modulated nanochannel'20138,599,533'Nanostructure electrode for pseudocapacitive energy storage'20138,598,018'Forming an electrode having reduced corrosion and water decomposition on surface using a custom oxide layer'20138,564,935'High energy density storage material device using nanochannel structure'20138,448,790'Surface charge enabled nanoporous semi-permeable membrane for desalination'20138,404,589'Silicide contact formation'20138,390,987'High energy density storage material device using nanochannel structure'20138,354,336'Forming an electrode having reduced corrosion and water decomposition on surface using an organic protective layer'20138,354,659'Post deposition method for regrowth of crystalline phase change material'20138,307,994'Surface charge enabled nanoporous semi-permeable membrane for desalination'20128,297,449'Nanoporous semi-permeable membrane and methods for fabricating the same'20128,287,604'High energy density storage material device using nanochannel structure'20128,278,155'Reprogrammable fuse structure and method'20128,212,218'Dosimeter powered by passive RF absorption'20128,110,410'Nanofludic field effect transistor based on surface charge modulated nanochannel'20128,089,157'Contact metallurgy structure'20128,084,760'Ring-shaped electrode and manufacturing method for same'20118,084,319'Precisely tuning feature sizes on hard masks via plasma treatment'20118,039,250'Piezoelectric-based nanopore device for the active control of the motion of polymers through the same'20118,029,716'Amorphous nitride release layers for imprint lithography, and method of use'20118,017,433'Post deposition method for regrowth of crystalline phase change material'20118,003,319'Systems and methods for controlling position of charged polymer inside nanopore'20117,998,842'Atomic layer deposition metallic contacts, gates and diffusion barriers'20117,960,808'Reprogrammable fuse structure and method'20117,956,463'Large grain size conductive structure for narrow interconnect openings'20117,951,708'Copper interconnect structure with amorphous tantalum iridium diffusion barrier'20117,901,980'Self-aligned in-contact phase change memory device'20117,851,357'Method of forming electrodeposited contacts'20107,749,898'Silicide interconnect structure'20107,514,705'Phase change memory cell with limited switchable volume'20097,488,967'Structure for confining the switching current in phase memory (PCM) cells'20097,405,154'Structure and method of forming electrodeposited contacts'20087,405,153'Method for direct electroplating of copper onto a non-copper plateable layer'20087,388,273'Reprogrammable fuse structure and method'20087,378,338'Method of forming an interconnect structure diffusion barrier with high nitrogen content'20087,247,946'On-chip Cu interconnection using 1 to 5 nm thick metal cap'20077,211,507'PE-ALD of TaN diffusion barrier region on low-k materials'20077,186,446'Plasma enhanced ALD of tantalum nitride and bilayer'20077,098,537'Interconnect structure diffusion barrier with high nitrogen content'20067,074,719'ALD deposition of ruthenium'20067,001,835'Crystallographic modification of hard mask properties'20066,943,097'Atomic layer deposition of metallic contacts, gates and diffusion barriers'20056,380,075'Method for forming an open-bottom liner for a conductor in an electronic structure and device formed'20026,342,132'Method of controlling gas density in an ionized physical vapor deposition apparatus'20026,238,532'Radio-frequency coil for use in an ionized physical vapor deposition apparatus'20016,210,545'Method for forming a perovskite thin film using a sputtering method with a fully oxidized perovskite target'20016,176,931'Wafer clamp ring for use in an ionized physical vapor deposition apparatus'20016,178,082'High temperature, conductive thin film diffusion barrier for ceramic/metal systems'20015,182,230'Laser methods for circuit repair on integrated circuits and substrates'19935,171,709'Laser methods for circuit repair on integrated circuits and substrates'19924,824,544'Large area cathode lift-off sputter deposition device'19894,633,129'Hollow cathode'19864,588,490'Hollow cathode enhanced magnetron sputter device'1986Career & activity timeline
Assembled from patent assignee/location history and declaration credentials.
1986–2021Patents assigned to IBM (78)· patent assignee history
1986–1993Based in White Plains, NY, US· patent location history
2001–2021Based in Pleasantville, NY, US· patent location history
2011–2016Patents assigned to ROSSNAGEL STEPHEN M (21)· patent assignee history
2011–2015Patents assigned to PENG HONGBO (14)· patent assignee history
2011–2013Based in Yorktown Heights, NY, US· patent location history
2012–2015Patents assigned to POLONSKY STANISLAV (7)· patent assignee history
2013–2016Patents assigned to HARRER STEFAN (8)· patent assignee history
Inventor activity
Assignee and location history derived from the patent record.
Assignees
| Assignee | Patents | Span |
|---|---|---|
| IBM | 78 | 1986–2021 |
| ROSSNAGEL STEPHEN Mself | 21 | 2011–2016 |
| PENG HONGBO | 14 | 2011–2015 |
| HARRER STEFAN | 8 | 2013–2016 |
| POLONSKY STANISLAV | 7 | 2012–2015 |
Locations
| Location | Patents | Span |
|---|---|---|
| Pleasantville, New York, US | 65 | 2001–2021 |
| Yorktown Heights, New York, US | 11 | 2011–2013 |
| White Plains, New York, US | 5 | 1986–1993 |