Wilsonville, OR, United States of America

Qiyue Chia Jiang


Average Co-Inventor Count = 7.0

ph-index = 1

Forward Citations = 26(Granted Patents)


Company Filing History:


Years Active: 1998

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1 patent (USPTO):Explore Patents

Title: Qiyue Chia Jiang: Innovator in Ferroelectric Relaxor Actuators

Introduction

Qiyue Chia Jiang is a notable inventor based in Wilsonville, Oregon, recognized for his contributions to the field of actuator technology. He holds a patent for a ferroelectric relaxor actuator specifically designed for ink-jet print heads. His innovative work has implications for improving the efficiency and performance of printing technologies.

Latest Patents

Qiyue Chia Jiang's patent, titled "Ferroelectric relaxor actuator for an ink-jet print head," focuses on a ferroelectric relaxor ceramic actuator material, such as lead magnesium niobate (PMN). This material is known for its high electromechanical conversion efficiency and wide operating temperature ranges. The actuator does not require permanent polarization and provides useful mechanical activity with reduced electrical drive voltages. The patent details how a PMN actuator can be bonded to an actuator diaphragm using high-temperature soldering or brazing processes. Additionally, the patent discusses the characteristics of PMN material, including its diffuse Curie point range, which affects the dielectric constant and 'd' coefficient as temperature changes.

Career Highlights

Qiyue Chia Jiang is currently employed at Tektronix, Inc., where he continues to develop innovative technologies in the field of printing and actuation. His work has significantly contributed to advancements in ink-jet printing technology, particularly through the use of PMN actuators.

Collaborations

Some of Qiyue Chia Jiang's coworkers include Jon C Mutton and Hue Phuoc Le, who collaborate with him on various projects at Tektronix, Inc. Their combined expertise enhances the development of cutting-edge technologies in their field.

Conclusion

Qiyue Chia Jiang's innovative work in ferroelectric relaxor actuators represents a significant advancement in ink-jet printing technology. His contributions continue to influence the efficiency and performance of printing systems, showcasing the importance of innovation in this field.

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