Company Filing History:
Years Active: 2012
Title: Takashi Kita: Innovator in Deep Ultraviolet Semiconductor Technology
Introduction
Takashi Kita is a prominent inventor based in Osaka, Japan. He is known for his groundbreaking work in the field of deep ultraviolet semiconductor optical devices. His innovative approach addresses the limitations of existing ultraviolet light sources, paving the way for advancements in various applications.
Latest Patents
Kita holds a patent for a deep ultraviolet semiconductor optical device. This device provides a large-area and high-luminance deep ultraviolet light source, overcoming the challenges posed by traditional mercury lamps and light-emitting diodes that operate at wavelengths of 365 nm or less. The device features an anode substrate with an ultraviolet phosphor thin film doped with rare-earth metal ions, such as gadolinium (Gd), and utilizes aluminum nitride as the host material. It also includes a cathode substrate with a field electron emission material thin film, a spacer to maintain a vacuum atmosphere between the substrates, and a voltage circuit to apply an electric field. This innovative design allows for efficient light emission by injecting electrons into the phosphor thin film.
Career Highlights
Throughout his career, Takashi Kita has made significant contributions to the field of semiconductor technology. His work has been instrumental in developing advanced light sources that have practical applications in various industries. His expertise and innovative mindset have positioned him as a key figure in the realm of deep ultraviolet technology.
Collaborations
Kita has collaborated with notable institutions, including Kobe University and Yumex Corporation. These partnerships have facilitated the advancement of his research and the practical implementation of his inventions.
Conclusion
Takashi Kita's contributions to deep ultraviolet semiconductor technology exemplify the spirit of innovation. His patented device not only addresses existing challenges but also opens new avenues for research and application in the field. His work continues to inspire future advancements in optical devices.
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