Location History:
- Wauconda, IL (US) (2011 - 2018)
- Lincolnshire, IL (US) (2024)
Company Filing History:
Years Active: 2011-2024
Title: The Innovative Mind of Anthony Casale
Introduction
Anthony Casale, based in Wauconda, Illinois, is a prolific inventor with a notable portfolio of five patents. His contributions to the field of hydraulic control systems reflect his dedication to advancing engineering solutions and enhancing operational efficiency in various applications.
Latest Patents
Among Anthony's latest innovations is the "Hydraulic Control Valve with Visual Identification System." This invention features a system that aids users in visually identifying specific characteristics of control valves during system assembly. The innovative design incorporates first and second indicators, each marked with distinct values, allowing for easy differentiation and selection when mounting the appropriate indicator member.
Another significant patent is the "Method of Controlling Proportional Motion Control Valve." This invention employs an electro-mechanical actuator to achieve infinitely controlled pressure settings in response to electric signals. The design cleverly integrates a pilot-operated valve that fluidly isolates the valve body’s internal cavity, thereby promoting efficient valve operation under varying conditions.
Career Highlights
Anthony has demonstrated his inventive capabilities while working with reputable companies such as Hydraforce, Inc. and International Truck Intellectual Property Company, LLC. His experience in these organizations has allowed him to refine his skills and develop impactful technologies.
Collaborations
Throughout his career, Anthony has collaborated with talented individuals, including David A. Dornbach and Tomasz Slawinski. These partnerships have facilitated the exchange of ideas and fostered innovative solutions in the realm of hydraulic systems.
Conclusion
Anthony Casale continues to make significant strides in the field of engineering through his innovative patents and collaborative efforts. As technologies advance, his contributions are likely to play a crucial role in shaping the future of hydraulic systems and their applications.