Hsin-Chu, Taiwan

Ming-Jiunn Jou

USPTO Granted Patents = 14 

Average Co-Inventor Count = 4.5

ph-index = 9

Forward Citations = 270(Granted Patents)


Location History:

  • Hsinchu Hsien, TW (2001)
  • Chubei, TW (2003)
  • Hsinchu, TW (1994 - 2015)

Company Filing History:


Years Active: 1994-2015

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14 patents (USPTO):Explore Patents

Title: The Innovations of Ming-Jiunn Jou

Introduction

Ming-Jiunn Jou is a prominent inventor based in Hsin-Chu, Taiwan. He has made significant contributions to the field of light-emitting diodes (LEDs) and holds a total of 14 patents. His work focuses on advanced semiconductor technologies that enhance the performance and efficiency of LED devices.

Latest Patents

Among his latest patents is a method of making a multilayer structure for a light-emitting diode that features a transparent substrate. This innovative approach involves creating two semiconductor multilayers and bonding them together. The first semiconductor multilayer is formed on a non-transparent substrate, while the second is created by forming an amorphous interface layer on a transparent substrate. After bonding the two semiconductor multilayers, the non-transparent substrate is removed, resulting in a semiconductor multilayer with a transparent substrate. This method significantly improves the functionality of light-emitting diodes.

Career Highlights

Ming-Jiunn Jou has worked with notable companies such as Epistar Corporation and the Industrial Technology Research Institute. His experience in these organizations has allowed him to develop cutting-edge technologies and contribute to advancements in the LED industry.

Collaborations

Some of his notable coworkers include Biing-Jye Lee and Min-Hsun Hsieh. Their collaborative efforts have further propelled innovations in semiconductor technology.

Conclusion

Ming-Jiunn Jou's contributions to the field of light-emitting diodes and his impressive portfolio of patents highlight his role as a leading inventor in semiconductor technology. His work continues to influence the development of more efficient and effective LED devices.

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