Tag Archive for: advanced robotics

How Sensor Technologies Advance Oil and Gas Robotics and Automation
Interface sensor technologies for oil and gas robotics test mobility, assess mechanical performance, and confirm the structural integrity of inspection tools. Robotics and automation in the oil and gas sector use load cells, torque transducers, and multi-axis sensors for infrastructure, production, maintenance, security, monitoring, and safety.

Granular Dynamics of Robot Articulated Sensing
Interface multi-axis sensors are perfect for testing a robot's structural components, including joints, grippers, and specialized end-effectors. Robot design engineers and testing labs focus on precision by setting articulation standards and analyzing performance with detailed assessments and accurate measurements of mechanical motion as it translates into perceptive interaction. The development of robotics is shifting from rigid motion to perceptive interaction, measured with multi-axis sensor technology.

How Precision Sensors are Driving the Robotic Revolution
Interface measurement sensor technologies provide crucial data that enables robots to function correctly in various environments. Load cells, torque transducers, and multi-axis sensors act as the sense of touch, quality controller, articulation master, and fail-safe robot monitors in robotics. From industrial arms to mobile autonomous robots, Interface sensors are fundamental in design, test, and performance monitoring.

The Force Behind the Future of Humanoid Robotics
Interface provides force measurement sensors and instrumentation for humanoid robot design, testing, and performance monitoring. Humanoid testing of the human-like movements, balance, manipulation, and interactions require accurate force measurement using load cells, torque transducers, and multi-axis sensors. Interface is dedicated to providing high-quality sensor solutions for all types of robotics.

Types of Robots Using Interface Sensors
Interface load cells and torque transducers are commonly used in the design and testing of robots to measure and monitor forces and loads experienced by various robot components. Load cells are used to measure the forces exerted by robotic arms and grippers, while torque transducers are used to measure the torque generated by motors. Multi-axis load cells are growing in use with robotic engineers throughout the R&D phases for more measurement data to make smarter decisions in design and use of the robot.

Collaborative Robots Using Interface Sensors
Cobots are typically equipped with sensors technologies that allow them to detect the presence of humans and react accordingly. Force measurement sensors are often used in collaborative robots to provide feedback on the force being applied during a task. There are several types of force measurement sensors that can be used in cobots, including load cells, torque transducers, miniature load cell load buttons and multi-axis sensors.