Ramamoorthy Ramesh

Moraga, CA, United States of America

Ramamoorthy Ramesh

This inventor holds 93 USPTO granted patents and 8 published patent applications, plus 1 CIPO patent, primarily in Ferroelectric Memory (CPC class H03K19-23). Top assignees: Kepler Computing Inc., Bell Communications Research, Inc., University System of Maryland. Active years: 1992-2026.

USPTO Granted Patents = 93 

% Patents Active = 93.5


Average Co-Inventor Count = 3.3

ph-index = 28

Forward Citations = 1,958(Granted Patents)

Forward Citations (Not Self Cited) = 1,722(Dec 10, 2025)


Inventors with similar research interests:

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Location History:

  • Eatontownship, Monmouth County, NJ (US) (1992)
  • Eatontown, NJ (US) (1992 - 1994)
  • Tinton Falls, NJ (US) (1993 - 1996)
  • Burtonsville, MD (US) (1998 - 2001)
  • Silver Springs, MD (US) (2001 - 2003)
  • Silver Spring, MD (US) (2000 - 2005)
  • Moraga, CA (US) (2010 - 2024)

Company Filing History:


Years Active: 1992-2026

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Areas of Expertise:
Ferroelectric Memory
Transistor Technologies
3D Stacking
Non-Volatile Memory
Pillar Capacitor
Perovskite Devices
Majority Logic Gate
Thermal Annealing
Low Power Logic
High Density Memory
Spin-Orbit Logic
Capacitor Fabrication
93 patents (USPTO):Explore Patents

Title: Ramamoorthy Ramesh: Pioneering Ferroelectric Innovator with 49 Patents

Introduction:

Ramamoorthy Ramesh, a devoted inventor and researcher based in Moraga, California, has made significant contributions in the field of ferroelectric devices. With an impressive portfolio of 49 patents to his name, Ramesh has been at the forefront of groundbreaking advancements in ferroelectric technology. This article delves into his latest patents, innovative research, and notable collaborations.

Latest Patents:

One of Ramesh's recent patents is titled "Ferroelectric device film stacks with a texturing layer which is part of a bottom electrode and barrier." This invention describes the incorporation of a texturing layer beneath a ferroelectric layer, enabling the ferroelectric material to acquire a preferential orientation despite the absence of epitaxial substrates. This innovative approach opens up possibilities for enhanced device performance and manufacturing flexibility.

Another notable patent is the "Majority gate-based low-power ferroelectric adder with reset mechanism." This invention presents an advanced adder design that utilizes majority gates and non-linear polar capacitors to achieve efficient and reliable computational processes. Ramesh's approach enables low power consumption while maintaining the fast pace required for arithmetic operations.

Significant Collaborations:

Ramesh has collaborated with esteemed researchers and professionals throughout his career. Notable among his collaborators are Sasikanth Manipatruni and Rajeev Kumar Dokania. Together, they have worked towards pushing the boundaries of ferroelectric technology and exploring new applications in various industries.

Noteworthy Affiliations:

Ramesh has contributed his expertise to prestigious institutions such as Kepler Computing Inc. and the University of California. His association with these organizations has facilitated an environment for groundbreaking research and development in the field of ferroelectric devices.

Conclusion:

Ramamoorthy Ramesh's prolific career and groundbreaking contributions to the field of ferroelectric devices have paved the way for significant advancements in this area of study. With an extensive patent portfolio and innovations that span multiple applications, Ramesh continues to be a driving force in the world of ferroelectric technology. His collaborations and affiliations further emphasize his dedication to pushing the boundaries of innovation and establishing new frontiers in the field.

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