Half Bridge Foil Resistance Strain Gauges For Load Sensing

Half Bridge Foil Resistance Strain Gauges For Load Sensing

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Half Bridge Foil Resistance Strain Gauges for load sensing, Model:FB-A Series , Carrier Material: Phenolic Aldehyde/Polyimide/Epoxyg Grid Material: Foil (nickel copper alloy, Constantan or Karma) Resistance: 350-1000 Ohm Operational temperature -20~+80℃, Temperature compensation range +10~+80℃ Four (4) solder points,long terms...
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Half Bridge Strain Gauges
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Description
Technical Parameters

Half Bridge Foil Resistance Strain Gauges for load sensing

Model: FB-A series

 

Half Bridge Double Parallel Strain Gauge consists of two linear strain gauges arranged in parallel. They can be utilized with various bridge circuit configurations. A common example is the bending full-bridge circuit, where two parallel strain gauges are positioned on opposite sides of the structure. Double parallel strain gauges are indispensable in scenarios demanding high precision, environmental resilience, and multi-axis strain analysis. Their versatility spans industries from heavy machinery to biomedical engineering, making them a cornerstone of modern strain measurement technology. Always refer to manufacturer guidelines for optimal installation and calibration.

 

Specifications:

Model: FB Series 
Carrier Material: Phenolic Aldehyde /Polyimide/Epoxy
Grid Material: Foil (nickel copper alloy, Constantan or Karma)
Resistance: 350-1000 Ohm

Soldering point: 4 Tin points
Operational temperature -20~+80℃, Temperature compensation range +10~+80℃

 

Features:

Long terms stable performance

Suitable for multiple elastical surface: Steel, Alluminium or Ceramic, etc.

OEM/ODM available

 

Dimension: 

 

Model No. Grid Size
(mm)
Base Size (mm)
BF( BA/BE)350-2FB-A 2.0×3.2 5.7×7.7
BF( BA/BE)350-3FB-A 3.1×3.1 7.2×7.6
BF( BA/BE)350-4FB-A 4.0×2.7 8.1 ×6.9
BF( BA/BE)350-6FB-A 6.0×2.7 10.3×6.9
BF( BA/BE) 1000-2FB-A 2.0×3.2 5.7×7.7
BF( BA/BE) 1000-3FB-A 3.0×3.3 7.1 ×7.8

 

Applications:

Load Cells and Torque Sensors: For precise force or rotational torque measurement.

Structural Health Monitoring: Detecting strain in bridges, buildings, or aerospace components.

Material Testing/ Crash testing/ pressure analyasis: Evaluating stress-strain behavior in laboratories.

 

Note: Other models and sizes are available according to customer request

 

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