John A Rogers

Champaign, IL, United States of America

John A Rogers

This inventor holds 143 USPTO granted patents and 29 published patent applications and 24 EPO patents, primarily in Epidermal Electronics (CPC class H01L29-78603). Top assignees: University of Illinois, Northwestern University, Tufts University. Active years: 1990-2026.

USPTO Granted Patents = 143 

% Patents Active = 93.7

 

Average Co-Inventor Count = 4.2

ph-index = 45

Forward Citations = 11,395(Granted Patents)

Forward Citations (Not Self Cited) = 8,617(Dec 10, 2025)


Inventors with similar research interests:


Location History:

  • Corona del Mar, CA (US) (1990)
  • Henderson, NV (US) (2004)
  • Atlanta, GA (US) (2013)
  • Urbana, IL (US) (2020)
  • Champaign, IL (US) (2005 - 2021)
  • Evanston, IL (US) (2021)
  • Wilmette, IL (US) (2019 - 2024)

Company Filing History:

goldMedal114 out of 2,420 
 
University of Illinois
 patents
silverMedal36 out of 2,209 
 
Northwestern University
 patents
bronzeMedal6 out of 651 
 
Tufts University
 patents
4. 5 out of 26 
 
Semprius, Inc.
 patents
5. 5 out of 2,645 
 
University of Pennsylvania
 patents
6. 4 out of 1,375 
 
Washington University
 patents
7. 4 out of 175 
 
X-Celeprint Limited
 patents
8. 2 out of 9,364 
 
Lucent Technologies Inc.
 patents
9. 2 out of 2 
 
Transient Electronics, Inc.
 patents
10. 2 out of 390 
 
University of Miami
 patents
11. 1 out of 12 
 
Advanced Diamond Technologies, Inc.
 patents
12. 1 out of 2,921 
 
Dow Corning Corporation
 patents
13. 1 out of 3,069 
 
Harvard College
 patents
14. 1 out of 2,773 
 
Purdue Research Foundation
 patents
15. 1 out of 2,364 
 
Regents of the University of Minnesota
 patents
16. 1 out of 1,769 
 
Sandia Corporation
 patents
17. 1 out of 282 
 
The George Washington University
 patents
18. 1 out of 1,049 
 
The University of Arizona
 patents
19. 1 out of 5,080 
 
United States of America as Represented by the Secretary of the Air Force
 patents
20. 1 out of 1,444 
 
University of Colorado
 patents
21. 1 out of 1,218 
 
Vanderbilt University
 patents
22. 8 out of 834,350 
Other
 patents
where one patent can have more than one assignee

Years Active: 1990-2026

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Areas of Expertise:
Epidermal Sensors
Biofluid Analysis
Wireless Monitoring
Microfluidic Systems
Optogenetics
Stretchable Electronics
Wearable Devices
Transdermal Implants
Electrical Impedance Tomography
Intraoperative Monitoring
Light Delivery
Flexible Electronics
143 patents (USPTO):Explore Patents

Title: John A Rogers: Pioneering Innovations in Monitoring Systems and Implantable Electronics

Introduction:

In the realm of innovations and patents, the name John A Rogers is well-known for his groundbreaking contributions to the fields of monitoring systems and implantable electronics. With an impressive portfolio of 123 patents, his relentless pursuit of cutting-edge technologies has revolutionized various industries. This article provides a closer look into some of his latest patents and explores his notable affiliations and collaborations.

Patent 1: Ultra-low power, miniaturized electronic systems for monitoring physical parameters with wireless communication capabilities and applications of the same

One of John A Rogers' recent patents focuses on the development of a compact, ultra-low power electronic system for monitoring physical parameters. This system incorporates an accumulation mode sensor that generates electrical energy related to the physical parameter in response to a surrounding condition. The electrical energy is then stored in an energy storage device. Through the use of advanced power management techniques, wireless communication capabilities are employed to transmit the monitored physical parameter to a receiver. This patent showcases Rogers' commitment to innovation in minimal power consumption and wirelessly driven systems.

Patent 2: Encapsulated flexible electronics for long-term implantation

Another notable patent by John A Rogers revolves around the creation of long-term implantable electronic devices. The method outlined in this patent involves the use of a substrate with encapsulation layers to foster longevity and protection of sensitive electronic components. Additionally, the incorporation of longevity-extending and ion-barrier layers contributes to increased device lifetime, even in challenging environments. This invention has the potential to enhance the functionality and reliability of implantable electronics.

Affiliations and Collaborations:

John A Rogers has made significant contributions to the field of innovation through his work with esteemed institutions and companies. He has been associated with the University of Illinois, where he has undoubtedly played a crucial role in fostering groundbreaking research initiatives. Rogers has also collaborated with Semprius, Inc., a renowned company dedicated to developing high-efficiency, low-cost solar cell technology. His partnerships with these esteemed organizations have further amplified his impact in the field.

Notable Coworkers:

Throughout his career, John A Rogers has had the privilege of collaborating with exceptional individuals who have further enriched his innovative endeavors. Etienne Menard, a highly regarded scientist in the field of materials science and engineering, has been a notable coworker of Rogers. Additionally, Ralph Nuzzo, a distinguished chemist and materials scientist, has played a significant role in their collective research efforts. Their collaborative efforts have yielded fruitful results, propelling advancements in monitoring systems and implantable electronics.

Conclusion:

John A Rogers stands as a pioneering figure in the fields of monitoring systems and implantable electronics, exemplifying relentless dedication to innovation. With his immense contribution to patenting cutting-edge technologies, his work has the potential to transform industries and improve the quality of life for countless individuals. Rogers' affiliation with renowned institutions and collaborations with notable coworkers further enhance the impact of his research. Overall, John A Rogers continues to pave the way for future innovation in the realms of monitoring systems and implantable electronics.

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