Company Filing History:
Years Active: 2009-2020
Title: Martin Olsen: Innovator in Heat Management Solutions
Introduction
Martin Olsen is a notable inventor based in East Greenwich, Rhode Island. He has made significant contributions to the field of heat management for electronic equipment. With a total of 3 patents to his name, Olsen's work focuses on innovative solutions for improving efficiency in data centers and electronic housing.
Latest Patents
Olsen's latest patents include an "Assembly for extracting heat from a housing for electronic equipment." This invention features a unique assembly designed to extract heat effectively from a housing that has a solid top and back portion. The assembly includes strategically placed openings that facilitate the flow of heat through a chimney, ensuring optimal cooling for electronic devices.
Another significant patent is titled "Systems and methods for closed loop heat containment with cold aisle isolation for data center cooling." This invention combines advanced systems and methods to manage airflow and temperature in data centers. It incorporates panels and doors to create a cold aisle, preventing cooled air from escaping and warm air from entering. The design includes chimneys that exhaust warm air, enhancing the cooling efficiency of the data center.
Career Highlights
Throughout his career, Martin Olsen has worked with reputable companies such as Wright Line, LLC and Eaton Intelligent Power Limited. His experience in these organizations has allowed him to develop and refine his innovative ideas in heat management.
Collaborations
Olsen has collaborated with talented individuals in the industry, including Mark Germagian and John Prunier. These partnerships have contributed to the successful development of his inventions.
Conclusion
Martin Olsen is a distinguished inventor whose work in heat management has made a significant impact on the efficiency of electronic equipment and data centers. His innovative patents reflect his commitment to advancing technology in this critical area.