Strain Gauges

Strain Gauges

Manufacturer
Series
Operating Temperature
Length - Overall
Width - Overall
Resistance Tolerance
Width - Overall Pattern
Width - Active
Strain Range
Resistance

Clear


Image Part Number Manufacturer Description Series Operating Temperature Length - Overall Width - Overall Resistance Tolerance Width - Overall Pattern Width - Active Strain Range Resistance
MMF016618 Vishay Precision Group EGP-5-350 EMBEDMENT GAGE (1/PK) - - - - - - - - -
MMF003672 Vishay Precision Group STRAIN GAUGE 350 OHM TEE 1=5PC CEA -100 ~ 350°F (-75 ~ 175°C) 0.31" (7.9mm) 0.31" (7.9mm) ±0.4% 0.225" (5.72mm) 0.080" (2.03mm) per section ±3% 350 Ohms
MMF023410 Vishay Precision Group CEA-05-375UW-120 STRAIN GAGES (5 - - - - - - - - -
MMF011614 Vishay Precision Group CEA-03-062UT-350 STRAIN GAGES (5 - - - - - - - - -
MMF335488 Vishay Precision Group WK-03-250TR-10C/W STRAIN GAGES ( - - - - - - - - -
MMF001063 Vishay Precision Group EA-06-062EN-350/E STRAIN GAGES ( - - - - - - - - -
MMF003241 Vishay Precision Group CEA-03-250UW-350 STRAIN GAGES (5 CEA -100 ~ 350°F (-75 ~ 175°C) 0.55" (14.0mm) 0.27" (6.9mm) ±0.3% 0.180" (4.57mm) 0.180" (4.57mm) ±5% 350 Ohms
MMF003162 Vishay Precision Group CEA-03-125UW-350 STRAIN GAGES (5 CEA -100 ~ 350°F (-75 ~ 175°C) 0.42" (10.7mm) 0.45" (11.4mm) ±0.3% 0.365" (9.27mm) 0.165" (4.19mm) ±5% 350 Ohms
MMF003145 Vishay Precision Group CEA-13-125UR-350 STRAIN GAGES (5 CEA -100 ~ 350°F (-75 ~ 175°C) 0.42" (10.7mm) 0.62" (15.7mm) ±0.4% 0.560" (14.22mm) 0.060" (1.52mm) ±5% 350 Ohms
MMF003073 Vishay Precision Group CEA-06-062UR-120 STRAIN GAGES (5 - - - - - - - - -

About Strain Gauges


Strain gauges are devices designed to measure the deformation or strain in mechanical structures subjected to stress or load. These sensors consist of thin conductive wires or foil patterns bonded to the surface of the material under measurement. As the material deforms under stress, the strain gauge's electrical resistance changes proportionally, allowing the measurement of strain. Strain gauges find applications in structural health monitoring, load cells, force measurement, and material testing for tasks such as stress analysis, fatigue testing, and structural integrity assessment. They offer advantages such as high sensitivity, accuracy, and compatibility with different materials and structural configurations, making them valuable tools in structural engineering, aerospace, automotive, and civil engineering applications.