Matsumoto, Japan

Chitae Hashizume


Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2023

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1 patent (USPTO):Explore Patents

Title: Innovator Delving into the World of Inkjet Technology: Chitae Hashizume

Introduction: Chitae Hashizume, an inventive mind based in Matsumoto, Japan, has made notable contributions to the realm of inkjet technology. His innovative pursuits culminated in a significant patent that focuses on the enhancement of ink compositions for inkjet printing. As a dedicated employee of Seiko Epson Corporation, he continues to work at the forefront of ink technology.

Latest Patents: Hashizume holds one patent titled "Ink Jet Ink Composition, Ink Pack, and Ink Jet Printing Method." This invention elaborates on an inkjet ink composition that contains a dye integrating an azo group, water, and a hindered amine compound with a radical. A remarkable aspect of this invention is that the dissolved nitrogen concentration of the ink composition is maintained at 10 ppm or less, showcasing a focus on quality and performance in ink effectiveness.

Career Highlights: Throughout his professional journey, Chitae Hashizume has entrenched himself in the innovative processes at Seiko Epson Corporation, a leader in printing technology. His role has emphasized the importance of research and excellence in developing ink composition, which is fundamental to enhancing printing capabilities for the company.

Collaborations: Working alongside accomplished colleagues like Nao Kozaka and Yuki Wakushima, Hashizume engages in a collaborative environment that fosters creativity and innovation. These partnerships are crucial in leveraging diverse expertise to advance inkjet technology.

Conclusion: Chitae Hashizume exemplifies the spirit of innovation within the inkjet printing industry. His patent reflects a commitment to improving ink compositions, through which he contributes significantly to Seiko Epson Corporation's reputation as a pioneer in printing solutions. As he continues to work alongside talented colleagues, the potential for further advancements in this field remains promising.

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