arrow_back_ios

Main Menu

See All Software See All Instruments See All Transducers See All Vibration Testing Equipment See All Electroacoustics See All Acoustic End-of-Line Test Systems See All Academy See All Resource Center See All Applications See All Industries See All Services See All Support See All Our Business See All Our History See All Global Presence
arrow_back_ios

Main Menu

See All Analysis & Simulation Software See All DAQ Software See All Drivers & API See All Utility See All Vibration Control See All High Precision and Calibration Systems See All DAQ Systems See All S&V Hand-held Devices See All Industrial Electronics See All Power Analyzer See All S&V Signal Conditioner See All Acoustic Transducers See All Current and Voltage Sensors See All Displacement Sensors See All Force Sensors See All Load Cells See All Multi Component Sensors See All Pressure Sensors See All Strain Sensors See All Strain Gauges See All Temperature Sensors See All Tilt Sensors See All Torque Sensors See All Vibration See All Accessories for Vibration Testing Equipment See All Vibration Controllers See All Measurement Exciters See All Modal Exciters See All Power Amplifiers See All LDS Shaker Systems See All Test Solutions See All Actuators See All Combustion Engines See All Durability See All eDrive See All Production Testing Sensors See All Transmission & Gearboxes See All Turbo Charger See All Training Courses See All Acoustics See All Asset & Process Monitoring See All Custom Sensors See All Durability & Fatigue See All Electric Power Testing See All NVH See All Reliability See All Vibration See All Weighing See All Automotive & Ground Transportation See All Calibration See All Installation, Maintenance & Repair See All Support Brüel & Kjær See All Release Notes See All Compliance
arrow_back_ios

Main Menu

See All nCode - Durability and Fatigue Analysis See All ReliaSoft - Reliability Analysis and Management See All API See All Experimental Testing See All Electroacoustics See All Noise Source Identification See All Environmental Noise See All Sound Power and Sound Pressure See All Noise Certification See All Industrial Process Control See All Structural Health Monitoring See All Electrical Devices Testing See All Electrical Systems Testing See All Grid Testing See All High-Voltage Testing See All Vibration Testing with Electrodynamic Shakers See All Structural Dynamics See All Machine Analysis and Diagnostics See All Dynamic Weighing See All Vehicle Electrification See All Calibration Services for Transducers See All Calibration Services for Handheld Instruments See All Calibration Services for Instruments & DAQ See All On-Site Calibration See All Resources See All Software License Management

Improving Test & Measurement with TEDS

The first phase of a measurement performed using modern data acquisition systems is the setup. The user has to type in the sensor characteristics such as sensitivity, rated output, or cubic fittings so that the data acquisition system can calculate the physical values based on the sensors’ electrical output signals. This is a time-consuming and significantly risky process, as any typing error can lead to serious consequences. TEDS (Transducer Electronic Data Sheet) technology provides a solution to these issues associated with test and measurement data acquisition systems.

What is TEDS?

 

TEDS is a tiny electronic chip that carries unique sensor information. The TEDS technology is described by the IEEE1451.4 standard. As the IEEE1451 is an internationally accepted standard, the TEDS technology not only works with components from one manufacturer but also with devices from different suppliers combined in one measurement chain.  HBM was actively involved in the development of this standard and electronic transducer identification using TEDS. All data in a TEDS chip is stored in templates, which are essentially tables where the sensor parameters are laid out.  Several templates are available for different sensors, such as voltage sensors, bridge sensors (strain-gauge technology), or current output sensors. When connecting a sensor featuring TEDS to a data acquisition system that can read a TEDS chip, the setup of the measurement chain is performed automatically. Typing errors are obviously not an issue with his technology and the setup time is substantially reduced. This ensures accurate measurements, even with frequently changing measurement configurations and large numbers of connected transducers. TEDS is beneficial for test and measurement applications in development laboratories as well as for manufacturing and production monitoring.

null

TEDS at HBM

 

Almost all the sensors supplied by HBM are optionally equipped with TEDS, and the HBM amplifiers and data acquisition systems are capable of reading TEDS. The electrical connection of a TEDS in combination with a strain-gauge based sensor can be done using the six wires that, in any case, are used to connect such sensors to a data acquisition system.  Therefore, a clever circuit allows switching the TEDS sensor to two different states. When switched to “Read TEDS”, the TEDS is ready to be read out so that the measurement chain can be set up. When switched to “Measure”, the sensor acts like a normal sensor and measurements can be performed. The major advantage of this technology is that existing cable infrastructure can be used. It is also possible to have two additional wires for connecting the TEDS and the data acquisition system. HBM offers a range of TEDS solutions, including TEDS modules for upgrading transducers, new transducers with TEDS, and amplifiers that read TEDS. If you would like to learn more about TEDS by HBM and how we can help with your test and measurement applications, please don’t hesitate to contact us.

null

Related Content

No more result to load