Longmont, CO, United States of America

Christoper Lee Medrano


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 8(Granted Patents)


Company Filing History:


Years Active: 2017

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1 patent (USPTO):Explore Patents

Title: Innovations in Thermal Management by Inventor Christoper Lee Medrano

Introduction

Christoper Lee Medrano, an inventive mind located in Longmont, Colorado, is known for his contributions to energy-efficient thermal management systems. With a single patent to his name, he has made a significant impact in the field of portable computing devices.

Latest Patents

Medrano's patent, titled "Energy efficiency aware thermal management in a multi-processor system on a chip," focuses on optimizing power consumption in heterogeneous, multi-processor systems on chips (SoCs). His innovative methods allow for the evaluation of processing efficiencies at various temperatures, aiming to enhance the quality of service (QoS) by adjusting power supplies, reallocating workloads, or changing power modes of energy-inefficient components. This approach effectively minimizes power consumption while maintaining processing power for complex workloads.

Career Highlights

Christoper Medrano is affiliated with Qualcomm Incorporated, a global leader in semiconductor and telecommunications equipment. His expertise in energy efficiency has positioned him at the forefront of developing technologies that balance performance and power use in modern computing devices.

Collaborations

Throughout his career, Medrano has collaborated with notable colleagues, including Hee Jun Park and Young Hoon Kang. Their joint efforts have undoubtedly contributed to the advancement of innovative solutions in the realm of thermal management systems.

Conclusion

In summary, Christoper Lee Medrano's inventive work in energy efficiency represents a meaningful progression in thermal management technologies. His contributions not only enhance the performance of portable computing devices but also set a benchmark for future innovations in multi-processor systems.

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