Strain Gauges

Results:
981
Manufacturer
Operating Temperature
Strain Range
Width - Active
Width - Overall
Resistance Tolerance
Length - Active
Resistance
Length - Overall Pattern
Series
Length - Overall
Pattern Type
Width - Overall Pattern
Results remaining981
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ImageProduct DetailPriceAvailabilityECAD ModelSeriesOperating TemperatureLength - OverallResistance TolerancePattern TypeStrain RangeLength - ActiveLength - Overall PatternWidth - ActiveWidth - Overall PatternWidth - OverallResistance
MMF000405
WK-06-031CF-350 STRAIN GAGES (5/
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MMF003119
CEA-06-125UE-350 STRAIN GAGES (5
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MMF405531
EA-06-060PBA-350 STRAIN GAGES (5
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MMF000576
EA-06-045AL-350 STRAIN GAGES (5/
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MMF001267
EA-06-062TW-120 STRAIN GAGES
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MMF405195
SENSOR EA-06-125PCA-350/E
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MMF335018
EA-00-031DE-350/LE STRAIN GAGES
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MMF002650
EA-06-250PD-350 STRAIN GAGES (5/
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MMF405048
C4A-13-060SL-120-39P - STRAIN GA
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Quantity
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PCB Symbol, Footprint & 3D Model
C4A
-51°C ~ 80°C
0.24" (6.0mm)
±0.3%
Linear
±3%
0.060" (1.52mm)
0.166" (4.22mm)
0.100" (2.54mm)
0.130" (3.30mm)
0.19" (4.9mm)
120 Ohms
MMF404825
C4A-06-060SL-120-39P - STRAIN GA
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Quantity
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PCB Symbol, Footprint & 3D Model
C4A
-51°C ~ 80°C
0.24" (6.0mm)
±0.3%
Linear
±3%
0.060" (1.52mm)
0.166" (4.22mm)
0.100" (2.54mm)
0.130" (3.30mm)
0.19" (4.9mm)
120 Ohms
MMF018737
CEA-13-062UW-350/P2 STRAIN GAGES
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MMF300621
WK-05-125TB-10C/W STRAIN GAGES (
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MMF309785
WK-05-125RA-350 STRAIN GAGES (5/
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Quantity
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PCB Symbol, Footprint & 3D Model
WK
-452 ~ 550°F (-269 ~ 290°C)
0.39" (9.9mm)
±0.4%
Rectangular Rosette
±1.5%
0.125" (3.18mm) per section
0.275" (6.99mm)
0.062" (1.57mm) per section
0.424" (10.77mm)
0.46" (11.7mm)
350 Ohms
MMF015537
WK-05-031CF-350 STRAIN GAGES (5/
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Quantity
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PCB Symbol, Footprint & 3D Model
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MMF321190
WK-03-250RA-350/W STRAIN GAGES (
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MMF300069
SK-06-125RA-350 STRAIN GAGES (5/
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Quantity
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PCB Symbol, Footprint & 3D Model
SK
-452 ~ 450°F (-269 ~ 230°C)
0.39" (9.9mm)
±0.4%
Rectangular Rosette
±1.5%
0.125" (3.18mm) per section
0.275" (6.99mm)
0.062" (1.57mm) per section
0.424" (10.77mm)
0.46" (11.7mm)
350 Ohms
MMF000392
SK-06-031CF-350 STRAIN GAGES (5/
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Quantity
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PCB Symbol, Footprint & 3D Model
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MMF022132
SA-05-062AQ-350 STRAIN GAGES (5/
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MMF002377
EA-13-250AE-350 STRAIN GAGES (5/
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MMF018792
CEA-13-250UR-350/P2 STRAIN GAGES
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Quantity
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PCB Symbol, Footprint & 3D Model
CEA
-100 ~ 350°F (-75 ~ 175°C)
0.65" (16.5mm)
±0.4%
Rectangular Rosette
±5%
0.250" (6.35mm) per section
0.500" (12.70mm)
0.120" (3.05mm) per section
0.760" (19.30mm)
0.80" (20.3mm)
350 Ohms

Strain Gauges

Strain gauges are specialized sensors designed to measure the strain or deformation forces experienced by materials. They play a crucial role in engineering, structural analysis, and material testing. The most commonly used strain gauge consists of a flexible backing material, typically made of an insulating material like polyimide, with a metallic foil pattern applied to it. To use a strain gauge, it is attached to the surface of the object or material being tested using a suitable adhesive. When an external force or load is applied to the object, it causes deformation or strain in the material. This deformation also affects the flexible backing and metallic foil pattern of the strain gauge. As the object deforms, the flexible backing and the attached metallic foil also undergo deformation. This deformation changes the electrical resistance of the metallic foil. The change in resistance is directly proportional to the magnitude of the strain or deformation experienced by the material being tested. To accurately measure this change in resistance, strain gauges are often connected in a Wheatstone bridge circuit. A Wheatstone bridge is an electrical circuit that balances the resistance values of multiple strain gauges to produce a measurable output voltage. The change in resistance of the strain gauge due to deformation causes an imbalance in the Wheatstone bridge, leading to a detectable change in the output voltage. By measuring the change in electrical resistance or output voltage, the strain gauge provides valuable information about the strain forces acting on the material. This data is then used to analyze the mechanical properties, stress distribution, or structural integrity of the tested object or material. Strain gauges find widespread application in various fields such as aerospace, civil engineering, automotive industry, and material science. They enable engineers and researchers to accurately measure and understand the behavior of materials under different loading conditions, contributing to the development of safer and more efficient structures, components, and systems.