Tag Archive for: force measurement

Essential Interface Accessories for Force and Torque Measurement
Interface accessories contribute to the performance and longevity of force and torque measurement devices. Accessories include cables, connectors, base kits, mounting hardware, adapters, calibration resistors, simulator couplings, bearings, TEDS, and more. Explore accessories for load cells and torque transducers.

Interface Measurement Solutions for Shipbuilding From Hull to Deck
Interface’s force measurement technology is indispensable for modern shipbuilding. Load cells, torque transducers, and instrumentation help shipbuilders produce high-quality, safe, and reliable vessels, from testing materials for durability to ensuring the safe assembly of critical components. With ongoing advancements in maritime engineering, Interface continues to innovate, providing essential tools to meet the evolving demands of shipbuilding from testing rigging to materials.

Actuators and Sensors Combine Forces in Test and Measurement
An actuator is a device that converts energy into mechanical movement or force. An actuator is responsible for moving and controlling a mechanism…

Why Students Need to Learn About Force Measurement
Learning about force measurement empowers students to become innovators and problem-solvers in an increasingly technology-driven world. Interface load cell basics, force measurement 101, and industry applications highlight the importance of learning about testing and force measurement. Engineers, product designers, innovators, and scientists benefit from understanding force measurement whether they pursue careers in civil engineering, medical research, aerospace, robotics, energy, or other industries.

Measurement Solutions Advance Industrial IoT Success
Interface provides high-accuracy measurement solutions for Industrial IoT. Our Wireless Telemetry System (WTS) components drive adoption and innovation in IIoT, from cobot design to smart pallet inventory controls. Load cells, torque transducers, instrumentation, and DAQ systems evaluate force, torque, and weighing data to optimize IIoT in manufacturing, energy, agriculture, and other sectors.

Comparing Shear Versus Compaction Force Measurement
Interface load cells are used in shear and compaction force measurement. Understanding the differences between shear and compaction is determinative, as it directly impacts applications, sensor choices, and output data for testing analysis. Learn about shear force versuse compaction, also known as compressive, measurement, applications and load cell types. This understanding aids in making informed test and measurement decisions in material science, mechanical engineering, and industrial automation.

Interface Load Cells 401 Weighing and Advanced Testing Applications Guide
Interface Load Cells 401 Guide references advanced systems, providing detailed configuration information and illustrations for applications that require multi-cell systems, specialized weighing configurations, and advanced testing protocols

Interface Load Cells 301 Characteristics and Applications Guide
The Interface Load Cells 301 Guide is a technical resource for test engineers and measurement device users. It provides comprehensive insights into load cell characteristics, performance, and optimization tips. The essential tool offers technical explanations, visualizations, and scientific details to ensure you understand and maximize the functionality of load cells in diverse applications. Topics include load cell stiffness, on-axis and off-axis loading, natural frequency, calibration loads, extraneous loading effects, and more.

Powering Up Precision Machine Building and Automation Webinar
Interface's new webinar explores the world of load cells, torque transducers, multi-axis sensors, wireless technologies, and instrumentation used in machine building and automation. Get engineering tips on the latest advancements in sensor technology, including miniaturization, wireless integration, and the rise of the Industrial Internet of Things (IIoT). Join us to explore building smarter, more responsive machines.