Robert Jay Greenberg

Los Angeles, CA, United States of America

Robert Jay Greenberg

This inventor holds 335 USPTO granted patents and 14 published patent applications and 69 EPO patents, primarily in Visual Prosthetics (CPC class A61N1-36046). Top assignees: Second Sight Medical Products, Inc., Johns Hopkins University, Alfred E. Mann Foundation for Scientific Research. Active years: 1978-2026.

USPTO Granted Patents = 335 

% Patents Active = 75.5

 

Average Co-Inventor Count = 3.4

ph-index = 40

Forward Citations = 6,281(Granted Patents)

Forward Citations (Not Self Cited) = 5,502(Dec 10, 2025)


Inventors with similar research interests:

🔬 See more inventors

Location History:

  • New York, NY (US) (1978 - 1980)
  • West Bloomfield, MI (US) (1998)
  • Atlantic Beach, NY (US) (1999 - 2001)
  • Los Angeles, CA (US) (1986 - 2024)

Company Filing History:


Years Active: 1978-2026

Loading Chart...
Loading Chart...
Areas of Expertise:
Photoplethysmography
Implantable Device
Visual Cortical Prosthesis
Flexible Circuit
Neural Stimulation
Electrode Array
Face Detection
Pattern Detection
Retinal Stimulation
Biocompatible Bonding
Cortical Interface
Impedance Measurement
335 patents (USPTO):Explore Patents

Title: Robert Jay Greenberg: Innovator in Flexible Circuit Electrode Arrays

Introduction:

Robert Jay Greenberg is an esteemed inventor and innovator based in Los Angeles, California. With an impressive portfolio of 319 patents, Greenberg has made significant contributions to the field of medical technology, specifically in the development of flexible circuit electrode arrays and peripheral nerve stimulators. His groundbreaking inventions have revolutionized the way we understand and treat various medical conditions.

Latest Patents:

One of Greenberg's latest patents is for a "Flexible Circuit Electrode Array and Method of Manufacturing the Same." This method involves creating a flexible circuit electrode array by layering polymer and metal materials. The array and its supply cable are formed as a single body, ensuring excellent adhesion between the layers and insulation of trace metals and electrodes. This innovation can have far-reaching implications for medical devices and their applications.

Another noteworthy patent by Greenberg is for a "Flexible Circuit Peripheral Nerve Stimulator with Low Profile Hybrid Assembly." This peripheral nerve stimulator is designed as a flexible circuit, allowing for the stimulation or blocking of nerve activity. The electrode array can be curved cylindrically to encompass a nerve, and it can be manipulated into a cylinder-shaped structure using a stretchable polymer. The electronics package of this stimulator utilizes low-profile, stacked, thin chip electronic components that are tunable in-situ, requiring less space than traditional stacked passives.

Career Highlights:

Throughout his career, Greenberg has played a pivotal role in the medical technology sector. He has held key positions in renowned companies such as Second Sight Medical Products, Inc., where he contributed to the development of groundbreaking retinal prostheses. Greenberg's work at The Johns Hopkins University has further solidified his expertise in the field of medical innovation.

Collaborations:

Robert Jay Greenberg has collaborated with notable individuals, including Kelly Hobart McClure and Neil Hamilton Talbot. These collaborations have fueled the exchange of ideas, leading to the development of novel inventions and patents. Through teamwork and shared expertise, Greenberg and his colleagues have made significant advancements in medical technology.

Conclusion:

Robert Jay Greenberg's remarkable career is characterized by his commitment to the advancement of medical technology. With his extensive patent portfolio, he has contributed immensely to the field of flexible circuit electrode arrays and peripheral nerve stimulators. Greenberg's dedication to innovation and collaboration underscores his significant impact on improving medical treatments and enhancing the quality of life for countless individuals worldwide.

Profile summary based on public USPTO records.
Please report any incorrect information to [email protected]
Loading…