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ABB PFTL301E-1.0KN 3BSE019050R1000 PillowBlock Load cells
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ABB PFTL301E-1.0KN 3BSE019050R1000 PillowBlock Load cells

+86-15305925923
Mr.Wang
wang@kongjiangauto.com

The Horizontal Mini Series PillowBlock load cells for the web processing industries have the same dimensions as conventional load cells and mount in the same way. But they measure only the horizontal force component of the web tension.

18795.00
¥18795.00
Weight:5.500KG
Product parameters
  • Telephone:+86-15305925923
  • contacts:Mr.Wang
  • Email:wang@kongjiangauto.com
Description

The Horizontal Mini Series PillowBlock load cells for the web processing industries have the same dimensions as conventional load cells and mount in the same way. But they measure only the horizontal force component of the web tension.


ABB PFTL301E-1.0KN 3BSE019050R1000 PillowBlock Load cells

Pressductor PillowBlock Load cells - horizontal force measurement

PFTL301E

The Horizontal Mini Series PillowBlock load cells for the web processing industries have the same dimensions as conventional load cells and mount in the same way. But they measure only the horizontal force component of the web tension.

Unlike load cells that measure along the vertical axis, they are not forced to sense the roll weight along with the web tension. So these load cells can be sized to the tension level alone, and function at the high end of their measuring range, where load cells perform best. The result: always optimal tension measurement performance – even when rolls are heavy and tension light.

  • Quality load cells that eliminates drift and recalibration

  • Wide operating range

  • Easy to apply


Data


Properties
PFTL301E
Nominal load




(rated capacity)kN0.10.20.51.0

Lbs.2245112225
Extended loadkN0.150.30.751.5

Lbs.3367169337
Permitted load




Transverse directionkN0.30.61.53.0
(vertical) h=135 mmLbs.67135337674
Overload capacity




Measurement directionkN0.30.61.53.0
(horizontal)Lbs.67135337674
Transverse directionkN0.51.02.55.0
(vertical) h=135 mmLbs.1122255621125
Deflectionmm0.050.050.070.13

1/1000 in.2.02.02.85.0
Spring constantkN/mm2.04.07.08.0

1000 Lbs./inch11.322.439.744.6


Pressductor® Technology

The first Pressductor transducer was developed in Västerås, Sweden, in the early 1950's and patented in 1954.

ABB's well-known Pressductor® Technology is a measurement principle based on the magnetoelastic effect - the magnetic properties of a material are influenced by the mechanical force applied to it.

When exposed to mechanical force, ABB's Pressductor transducer produces measurement signals as a result of changes in magnetic fields. (Move your mouse over the illustration to see these changes.) Because these signals are not contingent upon physical movement or deformation, the load cells combine sensitivity with extraordinary tolerance to overloads and virtually no built-in limit to the number of load cycles.

The ABB Pressductor transducers produces high-power, low-impedance AC signals that are very resistant to electrical interference and earth faults.

ABB's Pressductor transducer stands for unbeatable load cell performance, thanks to its unique combination of accuracy, overload capacity and ability to withstand harsh environments. By using this technology you will achieve higher quality and reliability, especially under demanding conditions.

All load cells

Operating principle Electromagnetic

Pressductor technology

Accuracy class 4 % ±1.0

Repeatability error % <±0.1

Operating range 30:1

Stainless steel SIS 2387 5

DIN X4CrNiMo165

Working temperature range –10 to 80°C

14 to 176 °F

Zero point drift 6 %/°C <±0.015

%/°F <±0.008

Sensitivity drift 6 %/°C <±0.025

%/°F <±0.014

1 Values indicate the total capacity of the load cells when

taking into account their permissible “extended capacity”.

In the extended range, above the nominal load, some small

decline in measurement accuracy may be experienced.

2 Maximum permitted loads without affecting load cell calibration.

3 At nominal load.

4 Accuracy class is defined as the maximum deviation, and is

expressed as a percentage of the sensitivity at nominal load.

This includes linearity deviation, hysteresis and repeatability error.

5 Corrosion resistance properties similar to AISI 304.

6 Applies for 20 to 60 °C/68 to 148 °F.

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