New Fairfield, CT, United States of America

Karen Moraleda

USPTO Granted Patents = 2 


 

Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2013-2021

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2 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Karen Moraleda

Introduction

Karen Moraleda is a prominent inventor based in New Fairfield, CT (US). She has made significant contributions to the field of pharmaceutical engineering, particularly through her innovative reactor designs. With a total of 2 patents, her work has the potential to enhance the production of pharmaceutical particles.

Latest Patents

One of her latest patents is focused on a reactor for producing pharmaceutical particles in a precipitation process. This invention includes a housing that defines a reaction chamber, a stator assembly with multiple stators, and a rotor assembly with several rotors. The rotor assembly is designed to rotate about an axis of rotation relative to the stator assembly. The reactor features a first inlet for supplying a first reactant material at a specific radial location and a second inlet for a different reactant material at another radial location. The interaction of these materials leads to the precipitation of particles within the reaction chamber, which are then expelled through an outlet.

Career Highlights

Karen currently works at Mannkind Corporation, where she applies her expertise in reactor design and pharmaceutical production. Her innovative approaches have positioned her as a valuable asset in her field.

Collaborations

Karen has collaborated with notable coworkers such as Sanket Gandhi and Jadwiga Jachowicz, contributing to a dynamic and innovative work environment.

Conclusion

Karen Moraleda's contributions to the field of pharmaceutical engineering through her innovative reactor designs exemplify her commitment to advancing technology in this critical area. Her work not only showcases her inventive spirit but also has the potential to significantly impact pharmaceutical production processes.

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