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 Enfield TechnologiesEnfield Technologies has been providing advanced automation control solutions since 1991. Our patented servo-pneumatic systems provide infinitely variable control of pneumatic devices such as air cylinders and pressure vessels. Enfield Technologies systems are the preferred choice of designers in industrial automation, product testing, and animatronics because our systems operate faster and smoother than alternative systems.
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Design Guide
The LS-C30 amplifies the output of bridge-type resistive sensors (pressure sensors, load cells) to ±10 Vdc. This allows low-level sensors to be used with the LS-C10, LS-C41 and C2 controllers.
Design Guide
The A-PS12VSB is an economical choice for powering both the Enfield Technologies LS-C10 controller and the LS-C30-12V sensor interface (PULS ML30.106).
Design Guide
The AAF25S5F3CFRG provides clean, dry, regulated air to downstream pneumatic devices.
Design Guide
The ASG-1 provides easy switching among analog signal sources when bench-testing or troubleshooting a new system design. Designed for applications where local manual adjustment of a system is desired.
Design Guide
The LS System is a high speed, proportional servo-pneumatic control system comprised of a specialized, patented proportional valves and dedicated device controllers. The LS system can be used in open loop and closed loop configurations.
Case Study
A government contract outlined the need for a high performance life like prosthetic limb tester, for prostheses made out of lighter advanced materials, including a control system for testing regimens required in the development, assessment and design certification of prosthetic ankles and feet.
Case Study
Pneu-Robotics wanted to develop an original type of operator controlled humanoid robot with the ability to walk and move smoothly, and with a safety advantage for use in the home and workplace.
Case Study
Consumers want their chairs and car seats to remain comfortable and last for many years. While it is not feasible to hire a battery of people to sit, fidget and wiggle to test seat components and assemblies, seating manufacturers need testing systems capable of replicating these varying loads with up to six degrees of freedom: vertical, lateral, longitudinal, pitch, roll and yaw.
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