Company Filing History:
Years Active: 2022
Title: Innovations by Riley Chicci in Automated Cannabis Cigarette Production
Introduction
Riley Chicci is an innovative inventor based in Tempe, AZ (US). She has made significant contributions to the field of automated production systems, particularly in the cannabis industry. With a focus on efficiency and precision, her work has the potential to revolutionize how cannabis products are prepared and consumed.
Latest Patents
Riley Chicci holds a patent for "Systems and methods for automated production of cigarettes." This invention features an enclosed cannabis cigarette preparation system that includes an indexing module designed to accept a plurality of pre-rolled cones. Each cone has a sealed end and an open end, allowing for a streamlined production process. The system incorporates several modules, including a filling module that dispenses cannabis shake material into the open ends of the cones, a tamping module that compresses the material, a de-clogging module, and a pinching module that twists the open ends to form rolled cigarettes. This innovative approach enhances the efficiency of cannabis cigarette production.
Career Highlights
Riley Chicci has made notable strides in her career, particularly through her work at Utektik, Inc. Her dedication to innovation and her expertise in automated systems have positioned her as a key player in the industry. With her patent, she has demonstrated her ability to merge technology with cannabis production, paving the way for future advancements.
Collaborations
Riley collaborates with talented individuals such as Jack Leadbeater and Trent Bohl. Their combined expertise fosters a creative environment that encourages the development of cutting-edge solutions in the cannabis sector.
Conclusion
Riley Chicci's contributions to automated cannabis cigarette production exemplify her innovative spirit and commitment to advancing the industry. Her patent and collaborative efforts highlight the potential for technology to enhance traditional processes.