This inventor holds 1 USPTO granted patent and 1 published patent application and 1 EPO patent. Top assignee: Raytheon Company. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: The Innovative Contributions of Robert M. Darling
Introduction
Robert M. Darling is a notable inventor based in South Windsor, CT (US). He is recognized for his innovative work in the field of cooling technologies, particularly for electronics used in missiles. His contributions have significantly impacted the efficiency and reliability of electronic systems in critical applications.
Latest Patents
One of Robert M. Darling's key patents is the "Passive, porous, phase-change cold plate." This invention is designed for cooling electronics within a missile. The cold plate features a housing that encloses a compartment, which contains an outlet manifold. Inside the compartment, a wick is positioned adjacent to the outlet manifold, and a liquid inlet is fluidically connected to the wick. Additionally, a vapor outlet connects the outlet manifold to the atmosphere or space, enhancing the cooling process.
Career Highlights
Throughout his career, Robert M. Darling has worked with prominent companies in the defense and technology sectors. Notably, he has been associated with Raytheon Company and Kidde Technologies Incorporated. His experience in these organizations has allowed him to develop and refine his innovative ideas, contributing to advancements in missile technology.
Collaborations
Robert M. Darling has collaborated with several professionals in his field, including James D. Saraidaridis and Malcolm P. MacDonald. These collaborations have fostered a creative environment that has led to the development of groundbreaking technologies.
Conclusion
Robert M. Darling's contributions to the field of cooling technologies, particularly through his patent for a passive, porous, phase-change cold plate, demonstrate his innovative spirit and dedication to advancing technology. His work continues to influence the efficiency of electronic systems in critical applications.
