This inventor holds 1 USPTO granted patent. Top assignee: Molins Plc. Active years: 1987.
Company Filing History:
Years Active: 1987
Title: Simon G Calverley: Innovator in Conveying Apparatus Technology
Introduction
Simon G Calverley is a notable inventor based in Heaton Chapel, GB. He has made significant contributions to the field of conveying apparatus technology, particularly for rod-like articles. His innovative approach has led to the development of a unique patent that enhances the efficiency of conveying systems.
Latest Patents
Simon G Calverley holds a patent for a "Conveying apparatus for rod-like articles." This apparatus is designed to convey rod-like articles between a delivery device, such as a cigarette maker, and a receiving device, like a cigarette packer. The system includes a conveyor for articles in stack formation, a container loading device, a container unloading device, and a container handling system for moving containers between the devices. Notably, the container loading and unloading devices may be in non-parallel orientations, and the container handling system can include a common container reservoir and a container turning device. This innovative design also features subsidiary conveyors that include a twisting path portion.
Career Highlights
Simon is associated with Molins Plc, a company known for its expertise in the manufacturing of machinery for the tobacco industry. His work at Molins Plc has allowed him to apply his inventive skills in a practical setting, contributing to advancements in the industry.
Collaborations
Throughout his career, Simon has collaborated with notable colleagues, including David C Carter and Peter A Clarke. These collaborations have fostered an environment of innovation and creativity, leading to the development of effective solutions in conveying technology.
Conclusion
Simon G Calverley's contributions to the field of conveying apparatus technology exemplify his innovative spirit and dedication to improving industrial processes. His patent reflects a significant advancement in the efficiency of conveying systems for rod-like articles.
