Location History:
- Suwon, KR (2005)
- Kyungki-do, KR (2005)
- Seoul-si, KR (2006)
- Suwon-si, KR (2009)
- Seoul, KR (2010)
- Seongnam-si, KR (2010 - 2017)
- Gyeonggi-do, KR (2010 - 2022)
Company Filing History:
Years Active: 2005-2024
Title: Innovations and Contributions of Ki-Vin Im in Semiconductor Technology
Introduction: Ki-Vin Im is a prominent inventor located in Seongnam-si, South Korea. With a remarkable portfolio of 28 patents, his work primarily focuses on semiconductor devices. His ingenuity and innovative approaches to technology have significantly impacted the field of electronics.
Latest Patents: One of Ki-Vin Im's latest inventions is a semiconductor device featuring a booster layer and a method for fabricating the same. This semiconductor device includes a first electrode, a second electrode, and a multi-layered stack with a hafnium oxide layer exhibiting a tetragonal crystal structure situated between these electrodes. The inventive architecture promotes the tetragonal crystallization of the hafnium oxide layer through a seed layer, enhancing the material's dielectric constant via a booster layer. This advancement has the potential to enhance semiconductor performance considerably.
Career Highlights: Ki-Vin Im has made significant contributions during his tenure at renowned companies such as Samsung Electronics Co., Ltd. and SK Hynix Inc. His work in these high-tech environments has not only expanded his expertise but has also facilitated numerous advancements in semiconductor technology.
Collaborations: Throughout his career, Ki-Vin Im has collaborated with notable colleagues, including Jae-Hyun Yeo and Jong-Cheol Lee. These collaborations have led to continued innovation and the successful development of various semiconductor technologies.
Conclusion: Ki-Vin Im's contributions to the field of semiconductors through his innovative patents reflect his dedication to advancing technology. With a strong background in prominent companies and collaborations with skilled professionals, his work continues to influence the future of semiconductor devices and electronics.