Kedah Darul Aman, Malaysia

Yew Hong Ooi


Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2019

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1 patent (USPTO):Explore Patents

Title: Yew Hong Ooi: Innovator in Ionic Lubricants

Introduction

Yew Hong Ooi is a notable inventor based in Kedah Darul Aman, Malaysia. He has made significant contributions to the field of lubrication technology, particularly with his innovative ionic perfluoropolyether lubricant. His work has implications for various applications, especially in magnetic recording mediums.

Latest Patents

Yew Hong Ooi holds a patent for an ionic lubricant that features a perfluoropolyether main chain. This lubricant is characterized by its unique structure, where each end of the main chain is terminated by an end group. At least one of these end groups includes an ionic bond and a functional group. The ionic perfluoropolyether lubricant is designed to provide an ultra-thin and uniform distribution over a protective overcoat layer of a magnetic recording medium. It offers strong adhesion to the protective layer, allowing for shorter magnetic spacing between the medium and the magnetic head, which enhances operational efficiency.

Career Highlights

Yew Hong Ooi is currently employed at Fuji Electric (Malaysia) Sdn. Bhd. His role at the company has allowed him to further develop his innovative ideas and contribute to advancements in lubrication technology. His work is recognized for its potential to improve the performance and longevity of magnetic recording devices.

Collaborations

Yew Hong Ooi collaborates with talented individuals such as Yeng Yeng Por and Khairul Azlan Bin Saleh. These collaborations foster a creative environment that encourages innovation and the development of new technologies.

Conclusion

Yew Hong Ooi's contributions to the field of ionic lubricants demonstrate his commitment to innovation and excellence. His patent for the ionic perfluoropolyether lubricant showcases his ability to address complex challenges in technology. His work continues to influence advancements in magnetic recording mediums and beyond.

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