Custom Flight Simulator Motion System Design
A custom flight simulator motion system improves fidelity, payload fit, and integration for training devices that demand precision and low latency.
Custom Flight Simulator Motion System Design Read More »
A custom flight simulator motion system improves fidelity, payload fit, and integration for training devices that demand precision and low latency.
Custom Flight Simulator Motion System Design Read More »
How to evaluate a 6DOF motion platform manufacturer for fidelity, payload, latency, integration, and long-term support in U.S. simulators.
Choosing a 6DOF Motion Platform Manufacturer Read More »
Introduction The six degrees of freedom (6DOF) motion base platforms are the foundation of high-fidelity simulation when accurate motion cueing, repeatability, and long-term stability are required. At Servos & Simulation, Inc., our 6DOF motion base platforms are engineered for professional environments where performance must remain stable and consistent across the years—and often decades—of continuous operation. This article provides a technical overview of
Engineering Precision Motion Base Platforms Read More »
Application Overview One of the most demanding real‑world applications of a high‑fidelity motion base platform is closed‑loop avionics and navigation system testing. For NASA’s Artemis Space Launch System (SLS) program, a 6DOF Motion Base was used because precise motion replication was required to validate avionics behavior under dynamic conditions without introducing artificial disturbances or latency
6DOF Motion Base for NASA Artemis Testing – A Case Study Read More »
Servos & Simulation, Inc. offers advanced six-degree-of-freedom (6DOF) motion platforms designed for high-fidelity simulations in training and research. Key features include fully electric actuation, high payload capacity, and robust digital control systems. These platforms ensure long-term reliability, minimal maintenance, and seamless integration with various simulation environments, emphasizing precision and performance.
Inside Servos & Simulation’s 6DOF Motion Platform Read More »
A non-linear motion base platform math model refers to the mathematical representation of a motion platform which is typically a Stewart platform or similar 6DOF system—where the relationship between actuator lengths and platform position/orientation is non-linear. This means that small changes in actuator length do not result in proportional changes in platform position or rotation, and the system’s behavior cannot
Motion Base Platform: Understanding Non-Linear Dynamics Read More »
Last week, FIT\’s Human Spaceflight Lab had an article written about what they were doing. A few years ago, Mr. Doule came to us with an idea… an idea of something that he required, but wasn\’t quite sure as to how to get there. Take a look at the article and how Servos helped them
Florida Institute of Technology mentions Servos in published Article Read More »