Mountain View, CA, United States of America

Joseph John Rumpler, Ii


Average Co-Inventor Count = 2.0

ph-index = 1


Company Filing History:

goldMedal1 out of 832,680 
Other
 patents

Years Active: 2015

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1 patent (USPTO):Explore Patents

Title: The Innovations of Joseph John Rumpler II

Introduction

Joseph John Rumpler II is an accomplished inventor based in Mountain View, California. With a focus on advancing semiconductor technologies, he has contributed significantly to the development of optoelectronic devices. His innovative work offers new solutions for the communications industry, showcasing the power of creativity in the realm of technology.

Latest Patents

Joseph holds a patent for a highly integrable semiconductor device. This patent details a novel technique used to manufacture thin III-V semiconductor cleaved facet edge emitting active optical devices, including lasers and optical amplifiers. Notably, these laser platelets feature both top-side and bottom-side electrical contacts, allowing them to function as freestanding optoelectronic building blocks. This technology facilitates their integration on various substrates, enhancing their application in communications.

Career Highlights

Joseph has made significant strides in the field of semiconductor technology, particularly through his development of fully processed laser platelets. These innovations are recognized for their precision in assembly and their potential to address the challenges associated with integrating edge emitting lasers onto silicon substrates, a critical hurdle in silicon optoelectronics.

Collaborations

Throughout his career, Joseph John Rumpler II has collaborated with notable professionals, including Clifton Fonstad Jr. These partnerships have fostered a dynamic environment for creativity and innovation, driving advancements in optoelectronics.

Conclusion

Joseph John Rumpler II's contributions to the field of semiconductor devices mark him as a valuable inventor in the technology sector. His innovative patent illustrates the potential of optoelectronic integration, paving the way for future advancements in communications and beyond.

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