Location History:
- Redondo Beach, CA (US) (1999 - 2003)
- Simi Valley, CA (US) (2003)
Company Filing History:
Years Active: 1999-2003
Title: Innovations by Joseph Milelli
Introduction
Joseph Milelli is an accomplished inventor based in Simi Valley, California. He holds a total of four patents, showcasing his expertise in the field of opto-electronic devices. His work primarily focuses on the development of innovative technologies for quantitative analysis of target molecules.
Latest Patents
Milelli's latest patents include groundbreaking inventions such as a measurement, data acquisition, and signal processing system for a photonic molecular probe. This opto-electronic device utilizes a band of partially polarized polychromatic light to analyze specimens containing target molecules. The device features a polarizer that produces a segmented band of light, a specimen cell for transporting the light to the specimen, and a polarizing analyzer for comparison purposes. The target molecule alters the ellipticity of the light, and the polarizer is synchronized with the analyzer to enhance accuracy. Another notable invention is the photonic molecular probe, which also employs polychromatic light for analyzing target molecules within mixed specimens. This device includes a movable polarizer and a movable polarizing analyzer, ensuring precise measurements.
Career Highlights
Throughout his career, Joseph Milelli has worked with various companies, including Xoetronics, LLC and International Diagnostics Technologies, Inc. His contributions to these organizations have significantly advanced the field of opto-electronics.
Collaborations
Milelli has collaborated with notable individuals such as James Wyly and Frank Madarasz, further enriching his professional experience and expertise.
Conclusion
Joseph Milelli's innovative work in the field of opto-electronics has led to the development of advanced devices for quantitative analysis. His patents reflect his commitment to pushing the boundaries of technology and improving analytical methods.