Location History:
- San Francisco, CA (US) (1999)
- South San Francisco, CA (US) (2001)
Company Filing History:
Years Active: 1999-2001
Title: The Innovative Contributions of Petr Gefter
Introduction
Petr Gefter is a notable inventor based in South San Francisco, CA. He has made significant contributions to the field of electrostatics and ionization technology. With a total of 2 patents, his work has advanced the understanding and application of ionizing devices.
Latest Patents
Gefter's latest patents include a "Piezoelectric/electrostrictive device and method of manufacturing same" and a "Method and apparatus for air ionization." The first patent describes an ionizing bar assembly featuring a plastic housing with two individual ionizing electrode modules. These modules are designed with printed circuit boards that have signal traces and ionizing electrodes extending from them. The innovative design allows for effective ionization by aligning the electrodes along a common central linear axis. The second patent outlines a method and apparatus for air ionization that utilizes a pair of inverters to supply ionizing voltages. This method promotes efficient operation by alternating the activation of the inverters, ensuring that high voltage is applied effectively to neutralize electrostatic charges.
Career Highlights
Petr Gefter is currently associated with Ion Systems, Inc., where he continues to develop and refine technologies related to ionization. His work has been instrumental in creating devices that enhance the efficiency of electrostatic charge neutralization.
Collaborations
Gefter has collaborated with notable colleagues such as Ira J. Pitel and Mark Blitshteyn. Their combined expertise has contributed to the advancement of innovative solutions in the field of ionization technology.
Conclusion
Petr Gefter's contributions to the field of electrostatics and ionization are significant and impactful. His innovative patents and collaborations reflect his dedication to advancing technology in this area. His work continues to influence the development of effective ionizing devices.