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Karma, T Rosette Strain Gauges for Stability & High Temperatures

2 mm Grid Length, 1.1 mm Grid Width 350 Ω Resistance, ST STC Number

$96.06

Item# SGK-B3A-K350U-PC11-E

Volume discounts available
Volume Discount Schedule
Quantity Price each
1-4 $96.06
5-9 $91.26
10-24 $89.34
25-49 $85.49
50-99 $83.57
100+ $81.65

In stock

Lead Time (If not in stock): 4 weeks
2 mm Grid Length, 1.1 mm Grid Width 350 Ω Resistance, ST STC Number SGK-B3A-K350U-PC11-E SGK-B3A-K350U-PC11-E
  • K-Series, Transducers Quality
  • Good Linearity Over Wide Temperature Range -75 to 200°C (-100 to 392°F)
  • Good Fatigue Life
  • Custom Gages Available - Fast Delivery

SGK-B3A-K350U-PC11-E Model Options

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Edit these specs to order a different model. Not all combinations are valid. Options compatible with previous selections will be in bold.

*Highlighted options are not compatible. Please select a different combination.

Grid Length
Grid Width
STC number
Features
Grid Style
Grid Length Range
Temperature Range Units
Temperature Range Min
Temperature Range Max
Connection Type
Resistance
Maximum Strain


  • Measurement Type Strain
  • Minimum Compensation Temperature -75 {C} (-100 {F})
  • Maximum Compensation Temperature 200 {F} (392 {F})
OMEGADYNE® offers K-Series Tee Rosettes for Axial strain transducer designs. Precision Karma material offers excellent temperature and fatigue characterisitcs. K-Series gages have plated solder pads which make soldering quick and easy. No special solders or fluxes are required.

Three different Tee Rosette styles available:
SGK-B3A-K350U -***** has 2 separate strain gages with perpendicular grids on a single carrier.
SGK-BH3A-K350U-***** is a half-bridge design, with 2 strain gages, perpendicular grids with a common lead/pad on a single carrier.
SGK-B5A-K350W-***** is a half-bridge Tee Rosette design, often used for column load cell design where high accuracy is a requirement. The geometry for this strain gage is shown with the tabs along the top, and the center strain gage is vertical, and used for the principal stress direction in the column. The Perpendicular grid is split, half on each side. This may also be known as transverse grid. The transverse grid tends to correct for bending strain, or off-axis loading in the column.
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