Inventor

Richard E. Riley

Inventor
Palo Alto, CA, US

Overview

50→
Patents
1976–2019
Patent span
Human necessities
Primary field (CPC A)

Patents· 50 as inventor

Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.

A61Nprimary
A61NElectrotherapy44%
H01CResistors12%
Y10TTechnical subjects covered by former us classification12%
G01FMeasuring volume, volume flow, mass flow or liquid level7%
A61HPhysical therapy apparatus, e.g. devices for locating or stimulating reflex points in the body5%
H01HElectric switches5%
A61BDiagnosis3%
G01DMeasuring not specially adapted for a specific variable3%
H05KPrinted circuits3%
C04BLime, magnesia1%
PatentTitleYear
10,207,115Method and systems for heart failure prevention and treatments using ultrasound and leadless implantable devices201910,143,850Systems and methods for implantable leadless tissue stimulation20189,731,139'Local lead to improve energy efficiency in implantable wireless acoustic stimulators'20179,452,286'Systems and methods for implantable leadless tissue stimulation'20169,333,364'Methods and systems for heart failure treatments using ultrasound and leadless implantable devices'20169,008,776'Leadless tissue stimulation systems and methods'20158,498,715'Systems and methods for implantable leadless cochlear stimulation'20138,494,644'Systems and methods for implantable leadless bone stimulation'20138,494,642'Systems and methods for implantable leadless spine stimulation'20138,494,637'Systems and methods for implantable leadless gastrointestinal tissue stimulation'20138,494,643'Systems and methods for implantable leadless nerve stimulation'20138,494,639'Systems and methods for implantable leadless brain stimulation'20138,315,701'Leadless tissue stimulation systems and methods'20128,078,283'Systems and methods for implantable leadless bone stimulation'20117,996,087'Leadless tissue stimulation systems and methods'20117,899,541'Systems and methods for implantable leadless gastrointestinal tissue stimulation'20117,899,542'Systems and methods for implantable leadless spine stimulation'20117,894,910'Systems and methods for implantable leadless cochlear stimulation'20117,894,907'Systems and methods for implantable leadless nerve stimulation'20117,894,904'Systems and methods for implantable leadless brain stimulation'20117,890,173'Implantable transducer devices'20117,848,815'Implantable transducer devices'20107,809,438'Methods and systems for treating arrhythmias using a combination of vibrational and electrical energy'20107,765,001'Methods and systems for heart failure prevention and treatments using ultrasound and leadless implantable devices'20107,702,392'Methods and apparatus for determining cardiac stimulation sites using hemodynamic data'20107,610,092'Leadless tissue stimulation systems and methods'20097,606,621'Implantable transducer devices'20097,558,631'Leadless tissue stimulation systems and methods'20097,184,830'Methods and systems for treating arrhythmias using a combination of vibrational and electrical energy'20077,050,849'Vibrational therapy device used for resynchronization pacing in a treatment for heart failure'20067,006,864'Methods and systems for vibrational treatment of cardiac arrhythmias'20066,815,039'Resistance element for potentiometric devices, and method of manufacture'20046,248,964'Thick film on metal encoder element'20016,241,666'Ablation catheter tip with a buffer layer covering the electrode'20015,702,653'Thick-film circuit element'19975,652,562'Thermally fused resistor having a portion of a solder loop thermally connected to an electrically insulated portion of an outer surface of the resistor'19975,275,044'Three wire potentiometric liquid level sensor'19945,181,313'Method of making a variable power resistor'19935,169,465'Thick-film circuit element on a ceramic substrate'19925,146,785'Fluid level sensor with stair step output'19925,138,881'Liquid level sensor including conductive plastic technology'19925,129,261'Three wire potentiometric liquid level sensor'19925,119,063'Variable power resistor'19925,017,741'Rotary digital contact encoder substrate'19915,007,159'Method of manufacturing an electrical component, e.g. a digital contacting encoder'19914,827,769'Fuel level sensor with buried conductor'19894,403,133'Method of trimming a resistance element'19834,345,235'Variable resistance device having a resistance element with laser cuts'19824,278,725'Cermet resistor and method of making same'19813,939,558'Method of forming an electrical network package'1976

Career & activity timeline

Assembled from patent assignee/location history and declaration credentials.

1976–2004Based in Riverside, CA, US· patent location history
1981–1997Patents assigned to SPECTROL ELECTRONICS CORP (10)· patent assignee history
2001–2019Based in Palo Alto, CA, US· patent location history
2006–2019Patents assigned to EBR SYSTEMS INC (31)· patent assignee history
2011–2016Patents assigned to BRISKEN AXEL F (9)· patent assignee history
2011–2016Patents assigned to COWAN MARK W (9)· patent assignee history
2011–2016Patents assigned to ECHT DEBRA S (9)· patent assignee history

Inventor activity

Assignee and location history derived from the patent record.

Assignees
AssigneePatentsSpan
EBR SYSTEMS INC312006–2019
SPECTROL ELECTRONICS CORP101981–1997
BRISKEN AXEL F92011–2016
COWAN MARK W92011–2016
ECHT DEBRA S92011–2016
Locations
LocationPatentsSpan
Palo Alto, California, US322001–2019
Riverside, California, US181976–2004