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Low Counting Scale Load Cell Price

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Conpany Profile

6 YRS Xiamen Loadcell Technology Co.,Ltd

Transaction Level:
lct@lctxm.com
+8618059246520

Product Details

Find high quality low counting scale load cell price with competitive price here. Please rest assured to buy low counting scale load cell price with Xiamen Loadcell Technology Co.,Ltd

Production Information

Description

Model: LAD-N-A

Brand: LCT

Capacity: 100,200,300,500,800,1000,3000 (KG)

Usage: Mainly used for price computing scales,counting scales,platform scales etc.

Dimension: 195*75*76MM


Features

Applications

Description

LCT Single Point Load Cells have been designed such that their excellent mechanical and measurement properties can be optimally used in a wide range of applications. A Single Point Load Cells is also called Platform Load Cell.

Advantages of LCT Single Point Load Cells / Platform Load Cells:

Quick to install thanks to off-center load compensation at the factory (per OIML R60),and only one unit is sufficient to build up a scale.

Model LAD-N-A load cells are designed to this “single point”type and manufactured from high quality aluminum alloy of aviation standard. LAD-N-A load cells can be used to measure loads range from 100kg to 1000kg with the measuring accuracy of 0.02% R.O.( R.O.=Rated Output)

LAD-N-A load cells are mainly used for price computing scales,counting scales,weighing scales,retail scales,bench scales and platform scales.

Dimension

LAD-N-ADR.jpg 

Electrical Connection

LAD-N-AWR.jpg

Technical Data

Single point load cells
LAD-N-A
Rated Capacity100,200,300,500,800,1000 (kg)Excitation,Recommended5-12VDC
Accuracy ClassExcitation,Maximum 18VDC
Rated Output 2.0±5%mV/VOperating Temp.Range-20-+60?
Zero Balance±5%R.O.Safe Overload150%R.C.
Input Resistance405±10OO
 
Ultimate Overload200%R.C.
Output Resistance350±3OO Insulation Resistance=5000MO(50VDC)
  Cable,Length6mm×2m *
Linearlty Error±0.015%R.O.Protection ClassIP66
Repeatability Error±0.01%R.O. 
Hysteresis Error±0.01%R.O.  
Creep in 30 Min.±0.02%R.O.  
Temp.Effect on Output±0.02%R.O./10?  
Temp.Effect on Zero±0.02%R.O./10?  
Compensated Temp.Range-10-+40?  

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