Inventor
Alan Devoe
Inventor
La Jolla, CA, US
Overview
78→
Patents
1994–2020
Patent span
General tagging of new technological developments
Primary field (CPC Y)
Patents· 78 as inventor
Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.
Y02Eprimary
Y02EReduction of greenhouse gas [ghg] emissions, related to energy generation, transmission or distribution23%
H01MProcesses or means, e.g. batteries, for the direct conversion of chemical energy into electrical energy20%
H01GCapacitors16%
Y02PClimate change mitigation technologies in the production or processing of goods12%
Y10TTechnical subjects covered by former us classification7%
H05KPrinted circuits4%
H10WGeneric packages, interconnections, connectors or other constructional details of devices covered by class h104%
Y02BClimate change mitigation technologies related to buildings, e.g. housing, house appliances or related end-user applications4%
B33YAdditive manufacturing, i.e. manufacturing of three-dimensional [3d] objects by additive deposition, additive agglomeration or additive layering, e.g. by 3d printing, stereolithography or selective laser sintering3%
B82YSpecific uses or applications of nanostructures1%
PatentTitleYear
10,741,330High voltage fringe-effect capacitor202010,734,659Fuel cell device and system202010,673,081Solid oxide fuel cell device202010,559,839Solid oxide fuel cell device and system202010,355,300Method of making a fuel cell device201910,320,012Fuel cell device201910,312,530Fuel cell device and system201910,262,803High voltage fringe-effect capacitor201910,163,573Capacitor assemblies, energy storage modules and assemblies, and methods of making same201810,153,496Fuel cell device and system201810,096,846Solid oxide fuel cell device201810,062,911Fuel cell device and system20189,859,582'Solid oxide fuel cell device and system'20189,786,437'High voltage fringe-effect capacitor'20179,716,286'Method of making a fuel cell device'20179,673,459'Solid oxide fuel cell device'20179,577,281'Method of making a fuel cell device'20179,437,894'Method of making a fuel cell device'20169,397,346'Solid oxide fuel cell device'20169,362,572'Fuel cell device and system'20169,343,753'Fuel cell device and system'20169,209,474'Fuel cell device'20159,123,937'Solid oxide fuel cell device'20159,059,450'Fuel cell device and system'20159,023,555'Method of making a fuel cell device'20158,962,209'Fuel cell device and system'20158,932,776'Solid oxide fuel cell device and system'20158,715,879'Fuel cell device and system'20148,644,000'Nanostructured dielectric materials for high energy density multilayer ceramic capacitors'20148,614,026'Fuel cell device and system'20138,609,290'Solid oxide fuel cell device'20138,470,493'Fuel cell device and system'20138,409,764'Fuel cell device and system'20138,343,684'Fuel cell device and system'20138,309,266'Fuel cell device and system'20128,293,417'Solid oxide fuel cell device'20128,293,415'Solid oxide fuel cell device and system'20128,293,429'Method of making a fuel cell device'20128,289,675'Stacked multilayer capacitor'20128,278,013'Fuel cell device and system'20128,257,884'Method of making a fuel cell device'20128,227,128'Fuel cell device and system'20128,153,318'Method of making a fuel cell device'20128,029,937'Solid oxide fuel cell device and system'20117,981,565'Solid oxide fuel cell device and system'20117,883,816'Solid oxide fuel cell device and system, method of using and method of making'20117,842,429'Solid oxide fuel cell device and system'20107,838,137'Solid oxide fuel cell device and system'20107,685,703'Method of making an essentially monolithic capacitor'20107,444,726'Method of making an essentially monolithic capacitor'20087,307,829'Integrated broadband ceramic capacitor array'20077,075,776'Integrated broadband ceramic capacitor array'20067,035,080'Combined multilayer and single-layer capacitor for wirebonding'20066,974,516'Method of making laminate thin-wall ceramic tubes and said tubes with electrodes, particularly for solid oxide fuel cells'20056,969,647'Method of making single layer capacitor'20056,970,341'Integrated broadband ceramic capacitor array'20056,924,967'Noninterdigitated mounting for interdigitated stacked capacitor and method'20056,917,509'Single layer capacitor with dissimilar metallizations'20056,885,539'Single layer capacitor'20056,831,529'Feed-through filter capacitor assembly'20046,831,824'Surface mountable vertical multi-layer capacitor'20046,822,847'Single layer capacitor'20046,816,356'Integrated broadband ceramic capacitor array'20046,753,218'CERAMIC CHIP CAPACITOR OF CONVENTIONAL VOLUME AND EXTERNAL FORM HAVING INCREASED CAPACITANCE FROM USE OF CLOSELY SPACED INTERIOR CONDUCTIVE PLANES RELIABLY CONNECTING TO POSITIONALLY TOLERANT EXTERIOR PADS THROUGH MULTIPLE REDUNDANT VIAS'20046,751,082'CERAMIC CHIP CAPACITOR OF CONVENTIONAL VOLUME AND EXTERNAL FORM HAVING INCREASED CAPACITANCE FROM USE OF CLOSELY SPACED INTERIOR CONDUCTIVE PLANES RELIABLY CONNECTING TO POSITIONALLY TOLERANT EXTERIOR PADS THROUGH MULTIPLE REDUNDANT VIAS'20046,695,940'Laminate thin-wall ceramic tubes, including with integral stress wrappings, thickened ends and/or internal baffles, particularly for solid oxide fuel cells'20046,690,558'Power resistor and method for making'20046,661,639'Single layer capacitor'20036,587,327'Integrated broadband ceramic capacitor array'20036,542,352'CERAMIC CHIP CAPACITOR OF CONVENTIONAL VOLUME AND EXTERNAL FORM HAVING INCREASED CAPACITANCE FROM USE OF CLOSELY SPACED INTERIOR CONDUCTIVE PLANES RELIABLY CONNECTING TO POSITIONALLY TOLERANT EXTERIOR PADS THROUGH MULTIPLE REDUNDANT VIAS'20036,366,443'CERAMIC CHIP CAPACITOR OF CONVENTIONAL VOLUME AND EXTERNAL FORM HAVING INCREASED CAPACITANCE FROM USE OF CLOSELY-SPACED INTERIOR CONDUCTIVE PLANES RELIABLY CONNECTING TO POSITIONALLY-TOLERANT EXTERIOR PADS THROUGH MULTIPLE REDUNDANT VIAS'20026,081,416'Lead frames for mounting ceramic electronic parts, particularly ceramic capacitors, where the coefficient of thermal expansion of the lead frame is less than that of the ceramic'20006,011,684'Monolithic integrated multiple electronic components internally interconnected and externally connected by conductive side castellations to the monolith that are of varying width particularly monolithic multiple capacitors'20005,740,010'Printing and adhering patterned metal on laid-up multi-layer green wafer before firing so as to later form precise integral co-fired conductive traces and pads on top and bottom surfaces of monolithic, buried-substrate, capacitors'19985,657,199'Close physical mounting of leaded amplifier/receivers to through holes in monolithic, buried-substrate, multiple capacitors simultaneous with electrical connection to dual capacitors otherwise transpiring, particularly for hearing aid filters'19975,625,528'Monolithic, buried-substrate, ceramic multiple capacitors isolated, one to the next, by dual-dielectric-constant, three-layer-laminate isolation layers'19975,572,594'Ear canal device holder'19965,367,430'Monolithic multiple capacitor'1994Career & activity timeline
Assembled from patent assignee/location history and declaration credentials.
1994–2020Patents assigned to PRESIDIO COMPONENTS INC (12)· patent assignee history
1994Based in Cambridge, MA, US· patent location history
1996Based in Coronado, CA, US· patent location history
1997–2020Based in La Jolla, CA, US· patent location history
2005–2020Patents assigned to DEVOE ALAN (49)· patent assignee history
2005–2020Patents assigned to DEVOE LAMBERT (47)· patent assignee history
2005–2012Patents assigned to DEVOE DANIEL (5)· patent assignee history
2010–2011Based in LaJolla, CA, US· patent location history
2014Patents assigned to BURN IAN (1)· patent assignee history
Inventor activity
Assignee and location history derived from the patent record.
Assignees
| Assignee | Patents | Span |
|---|---|---|
| DEVOE ALANself | 49 | 2005–2020 |
| DEVOE LAMBERT | 47 | 2005–2020 |
| PRESIDIO COMPONENTS INC | 12 | 1994–2020 |
| DEVOE DANIEL | 5 | 2005–2012 |
| BURN IAN | 1 | 2014 |
Locations
| Location | Patents | Span |
|---|---|---|
| La Jolla, California, US | 71 | 1997–2020 |
| LaJolla, California, US | 5 | 2010–2011 |
| Coronado, California, US | 1 | 1996 |
| Cambridge, Massachusetts, US | 1 | 1994 |