Plano, IL, United States of America

Darrold E Doyle


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 9(Granted Patents)


Company Filing History:


Years Active: 1978

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1 patent (USPTO):Explore Patents

Title: Darrold E Doyle - Innovator in Timed Metering Valve Technology

Introduction

Darrold E Doyle is a notable inventor based in Plano, Illinois. He is recognized for his innovative contributions to valve technology, particularly in the design of timed metering valves. His work has significantly impacted fluid control systems, enhancing their efficiency and functionality.

Latest Patents

Doyle holds a patent for a timed metering valve. This invention features a valve body with an inlet and outlet connected by a passageway surrounded by a valve seat. The design includes a movable piston within a cylinder, which is normally seated on the valve seat to prevent fluid flow. A bypass circuit leads from the inlet through a timing mechanism to a pressure chamber behind the piston, allowing for controlled fluid release. The timing mechanism utilizes a disc of deformable material, which can be adjusted to regulate fluid flow effectively. This invention is particularly beneficial for institutional shower installations, as it includes a vented cover and a push button for relief valve activation.

Career Highlights

Doyle is associated with Bradley Corporation, where he has applied his expertise in valve technology. His work at the company has contributed to advancements in fluid control systems, showcasing his commitment to innovation in this field.

Collaborations

Doyle has collaborated with Thomas G Barnum, working together to enhance the development of valve technologies. Their partnership has fostered a creative environment that encourages innovative solutions in fluid control.

Conclusion

Darrold E Doyle's contributions to the field of valve technology, particularly through his patented timed metering valve, demonstrate his innovative spirit and dedication to improving fluid control systems. His work continues to influence the industry, making a lasting impact on how fluid systems operate.

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