This inventor holds 1 USPTO granted patent. Top assignee: Purity (Xiamen) Sanitary Ware Co., Ltd.. Active years: 2021.
Company Filing History:
Years Active: 2021
Title: Shi-Fa Huang: Innovator in Liquid Pump Mechanisms
Introduction
Shi-Fa Huang is a notable inventor based in Xiamen, China. He has made significant contributions to the field of sanitary ware, particularly with his innovative designs for liquid pump mechanisms. His work has led to the development of a patent that enhances the functionality of soap dispensers.
Latest Patents
Shi-Fa Huang holds a patent for a liquid pump mechanism designed specifically for soap dispensers. This mechanism includes a pump body, an outlet tube, an upper wave-shaped pad, a piston, a spring, an annular internal sleeve, and a lower wave-shaped pad, all arranged sequentially within the pump body. The design features a dividing member that separates the inner cavity into a main chamber and an inlet chamber. The outlet passage is formed in the outlet tube, which is movably sealed with the main chamber. The piston divides the main chamber into a compatible chamber and a liquid soap chamber, with an outlet hole connecting the outlet passage to the liquid soap chamber. An inlet hole allows communication between the liquid soap chamber and the inlet chamber. The upper and lower wave-shaped pads serve to movably close the outlet and inlet holes, respectively.
Career Highlights
Shi-Fa Huang is currently employed at Purity (Xiamen) Sanitary Ware Co., Ltd., where he continues to innovate in the field of sanitary products. His work has not only improved the efficiency of soap dispensers but has also contributed to the overall design and functionality of liquid dispensing mechanisms.
Collaborations
Shi-Fa Huang has collaborated with colleagues such as James Wu and Alex Wu, who have supported his innovative endeavors in the development of new products.
Conclusion
Shi-Fa Huang's contributions to the field of liquid pump mechanisms exemplify his dedication to innovation and design. His patent for a liquid pump mechanism for soap dispensers showcases his ability to enhance everyday products through thoughtful engineering.