Description

LLB130 is a subminiature load button with extraordinarily high accuracy and reliability. Measuring compression with a tiny footprint of an 0.38” [9.5mm] outside diameter and 0.14” [3.4mm] height, the LLB130  features a custom single-gauge design for robust integration with the sensor case that completely eliminates inter-gauge wiring, leading to enhanced calibration performance. A customized strain element allows increased strain measurement around the active sensor element that reduces reproducibility errors and installation mishaps. 

 

The LLB130 offers a capacity range from as low as 35. 2739 oz [100g] up to 50lbs [22.67kg]. The diverse and durable sensor is designed for press or inline compression applications, such as measuring loads on a turbine shaft or gauging forces on a CNC workpiece. The sensor has a highly flexible 34 AWG, 4-conductor, 5-feet [1.5m] long braided shielded cable. FUTEK also offers custom sensor versions that can be optimized to meet your requirements.

 
Features
  •  Fully internally temperature compensated (no external conditioning circuitry)
  •  Sub-miniature load cell / light weight
  •  Low deflection / fast response
  •  17-4 PH stainless-steel construction
  •  For use in compression
  •  Utilizes metal foil strain gauge technology
  •  Adheres to RoHS directive 2015/863/EU
  •  Accessories and related instruments available
Specifications
  CHANNEL MIN TYP MAX UNIT
Calibration Excitation
1
 
5
 
Vdc
Shunt Calibration
1
 
60.4
 
kOhm
Excitation
1
1
 
7
Vdc
Input Resistance
1
 
350
 
Ohms nom.
  Insulation Resistance   1   500       Mohms @ 50 Vdc
Safe Overload
1
   
150
% of R.O.
Capacity
1
   
25
lbs
Hysteresis
1
-0.5
 
0.5
% of R.O.
Nonlinearity
1
-0.5
 
0.5
% of R.O.
Nonrepeatability
1
-0.1
 
0.1
% of R.O.
Output Resistance
1
 
350
 
Ohms nom.
Rated Output
1
 
2
 
mV/V nom.
Compensated Temperature
1
60
 
160
F
Operating Temperature
1
-60
 
200
F
Temperature Shift Span
1
-0.02
 
0.02
% of Load/F
Temperature Shift Zero
1
-0.02
 
0.02
% of R.O./F
Zero Balance
1
-3
 
3
% of R.O.
 

 


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