
The most common strain gauges used to quantify the state of stress on a test specimen’s surface, are uniaxial and rosette gauges. For accurate measurements of stress and strain, these uniaxial and rosette gauges are independently connected as a Wheatstone bridge in a 3-wire quarter-bridge or half-bridge arrangement.
Today, most high-end data acquisition equipment manufacturers provide signal conditioning options for collecting data from single strain gauges. Signal conditioning for strain gauges usually includes circuitry for bridge excitation voltage, quarter and half bridge completion arrangements, and shunt calibration.
What we offer
Are you looking for expert assistance with accurately measuring stress and strain? or, Do you need to rent or buy data acquisition equipment to collect stress and strain data?
Sometimes you may need to view or collect data from a single strain gauge using a device that only has analog voltage inputs and no strain signal conditioning. This was precisely the case when I was working with the HX711 load cell/strain amplifier. The HX711 requires a full bridge input so I instrumented my test specimens as such. If I needed to use a single strain gauge with the HX711, I would have had to use an external bridge completion circuit.
What are your options for measuring single strain gauges with a device that only has voltage inputs or full bridge inputs?
Option 1: Buy a commercial off the shelf bridge completion modules.
The list below gives the specifications for some available bridge completion modules. I plan on adding more completion modules to this list for future reference, so send me any additional completion options.
Strain Gauge Completion Modules
![]() | ![]() | ![]() | |
| Manufacturer | NI | VPG | Campbell Scientific |
| Model # | NI 9926, NI 9945, NI 9944 | MR1-10C-129, MR1-350-130, MR1-120-133 | 4WFBS1K, 4WFBS350, 4WFBS120 |
| Description | 3-Wire Quarter Bridge Completion | 3-Wire Quarter Bridge Completion | 3-Wire Quarter Bridge Completion |
| Resistance | 1000 Ω, 350 Ω, 120 Ω | 1000 Ω, 350 Ω, 120 Ω | 1000 Ω, 350 Ω, 120 Ω |
| Strain Gauge Connector | Terminal Block | Solder Tab | Terminal Block |
| Device Connector | RJ50 | Solder Tab | Pins and Lead Wire |
Option 2: Build your own circuit.
If you are building a product or are in the strain business long term, building your own circuit may be a cost effective alternative to the potentially more expensive off the shelf bridge completion option. I have built a few bridge completion circuits in the past. Here is a list of things to keep in mind when designing a circuit.
- Use high precision, low resistance temperature coefficient resistors
- The voltage source used for bridge excitation should be from a stable source like a reference since the output of a Wheatstone bridge is inversely proportional to the excitation voltage Vout/Vex.
- Use remote sensing to compensate for errors in excitation voltage from long lead wires
- Amplification will increase measurement resolution and improve signal-to-noise ratio
- Filter data to remove external, high-frequency noise
For more information about bridge completion or our strain gauging services, contact Ryan Welker @ (844) 837-8797 x701.
Related Links
Strain Gauge Installations for Field Testing
iTestSystem Tip: Strain Gauge Rosette Analysis
Wireless Strain Measurements with iTestSystem, LabVIEW, and Arduino
Ohio University Asphalt Cracking Prediction System Project
Need accurate stress and strain measurements? Talk to the engineers behind ITM’s strain gauging services.
Related solutions
Strain Gauge Services
Expert strain gauge selection, installation, and measurement — from quarter-bridge circuits to custom transducers. Explore →
Data Acquisition
DAQ hardware and signal conditioning for strain, vibration, and mixed-signal measurements — rent, buy, or deploy with ITM. Explore →
Testing Services
Field and lab structural testing that turns stress and strain data into engineering answers. Explore →
Recent insights
-

Precision Cable Harness Fabrication at ITM — Milford, Ohio
How ITM’s people and engineering depth deliver aerospace-grade harness quality, faster and more efficiently. Test System Harnesses, Engineered End-to-End Test system cable harnesses are the connective tissue between a test article and the data acquisition system that records it — strain gauge lead wires, sensor cabling, signal-conditioner runs, and DAQ interconnects. Whether the article is…
-
AWS IoT Analytics, cDAQ-9189, Channel Synchronization, CompactDAQ, Condition-Based Maintenance, Edge-to-Cloud High-Channel Datalogging, Engineering, Instrumentation, iTestSystem, iTestSystem Automated Analytics, iTestSystem Notification Service, NI-9236, NI-9469, Strain, Stress, structural health monitoringHigh Channel Count Synchronous Datalogging
When a manufacturer needed to validate the structural performance of a 38-ton on-highway vehicle, ITM deployed a 200+ channel synchronous datalogging system capable of capturing accelerometer, strain, GPS, and speed data at nearly 2 kS/s per channel…
-
120 ohm strain gage, Instrumentation, iTestSystem, NI-9237, strain gauge, Strain Gauge Installation ServiceA Look Back and Forward at 120-ohm Strain Gauges
Here at Integrated Test & Measurement, we love diving into the nuts and bolts of how things work. While setting up a project using 120-ohm strain gages with the NI-9237 module, I found myself reflecting on the history and technical reasons why 120 ohms became the original standard for strain gages. As it turns out,…



