San Diego, CA, United States of America

Jung Pill Kim

Average Co-Inventor Count = 3.7

ph-index = 13

Forward Citations = 683(Granted Patents)

Forward Citations (Not Self Cited) = 608(Sep 21, 2024)

DiyaCoin DiyaCoin 1.11 

Inventors with similar research interests:


Location History:

  • US (2000)
  • San Diego, CA (US) (2012 - 2024)


Years Active: 2000-2025

where 'Filed Patents' based on already Granted Patents

117 patents (USPTO):

Title: Jung Pill Kim: Leading Innovator in Hardware-Accelerated Storage Compression

Introduction:

In the world of technological advancements, few inventors have made a significant impact in the field of hardware-accelerated storage compression as Jung Pill Kim. With a rich portfolio of patents and an impressive track record, Kim has become a prominent figure in the industry. In this article, we will explore his latest patents, career highlights, collaborations, and acknowledge his contributions to the field.

Latest Patents:

Jung Pill Kim has secured a remarkable 113 patents, each showcasing his expertise in hardware-accelerated storage compression. One of his latest patents, titled "Hardware-Accelerated Storage Compression," introduces a novel approach to reduce processing overhead associated with traditional software-based compression systems. By enabling compression at the storage controller level, this innovation improves compression control and efficiency over traditional storage device-driven compression systems. Kim's invention enhances the overall performance and storage capacity of devices, paving the way for more effective data management in modern storage technologies.

Another noteworthy patent by Kim, "Offset-Cancellation Sensing Circuit (OCSC)-Based Non-Volatile (NV) Memory Circuits," addresses the challenges associated with power consumption and memory restoration in idle mode. This invention employs an offset-cancellation sensing circuit (OCSC) that cancels out the offset voltage of a differential amplifier within the circuit. By effectively mitigating restoration degradation, this OCSC-based NV memory circuit significantly enhances power efficiency and performance in non-volatile memory circuits.

Career Highlights:

Throughout his career, Jung Pill Kim has held notable positions in prestigious organizations. He has contributed his expertise to Qualcomm Incorporated, a leading semiconductor and telecommunications equipment company. Kim's work at Qualcomm has undoubtedly played a pivotal role in advancing hardware acceleration technologies, thereby enhancing storage capacity and efficiency.

Additionally, Kim has made valuable contributions to the Industry-Academic Cooperation Foundation at Yonsei University, furthering collaborations between academia and industry. His involvement with the foundation has nurtured research synergies, fostered innovation, and promoted technological advancements within the academic community and beyond.

Collaborations:

In his pursuit of breakthrough innovations, Jung Pill Kim has collaborated with esteemed colleagues and co-workers. One notable collaborator is Seung Hyuk Kang, whose contributions have complemented Kim's pioneering work in hardware-accelerated storage compression. Together, they have explored novel approaches and advanced the state-of-the-art in this domain.

Kim has also worked alongside Taehyun Kim, another prominent figure in the field. Their collaboration has resulted in the development and refinement of innovative solutions, which have greatly influenced the advancement of storage and memory technologies.

Conclusion:

Jung Pill Kim, with his extensive patent portfolio and groundbreaking inventions, has revolutionized the field of hardware-accelerated storage compression. His work has significantly improved compression efficiencies and brought about advancements in storage device technologies. Collaborating with industry giants such as Qualcomm Incorporated and the Industry-Academic Cooperation Foundation at Yonsei University, Kim has shaped the landscape of storage and memory systems. We anticipate that his future contributions will continue to drive innovation and shape the future of technology.

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