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Abb 3BSE004191R1 PFTL 101B pillow-block load cell

ABB 3BSE004191R1 (PFTL 101B-5.0kN) is a Pressductor® pillow-block load cell designed for precise web tension and force measurement in demanding industrial applications.

Product Details

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•Shipping Port: Xiamen

•Manager: Rhonda

•E-mail: xrjtina@gmail.com 

•Tel: + 86-15359273796(WhatsApp)

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•Package: Original packing with cartons

Abb 3BSE004191R1 PFTL 101B

ABB 3BSE004191R1 (PFTL 101B-5.0kN) is a Pressductor® pillow-block load cell designed for precise web tension and force measurement in demanding industrial applications. It is widely used in paper mills, coating lines, winders, unwinders, printing machines, textile equipment, and other continuous web-processing systems.

Key Features

  • Model: PFTL 101B-5.0kN
  • ABB Part Number: 3BSE004191R1
  • Type: Pressductor® Pillow-Block Load Cell
  • Rated Capacity: 5.0 kN (5,000 N)
  • Technology: Magnetoelastic (Pressductor®) sensing principle
  • High Overload Tolerance: Designed to withstand substantial overloads without damage
  • Minimal Deflection: Approximately 0.015 mm for stable and repeatable measurements
  • Robust Construction: Suitable for harsh industrial environments
  • Origin: Sweden

Technical Highlights

Parameter Value
Product ID 3BSE004191R1
Type Designation PFTL 101B-5.0kN
Rated Load 5.0 kN
Permitted Transverse Load 30 kN
Overload Capacity (Measurement Direction) 25 kN
Deflection 0.015 mm
Net Weight Approx. 21 kg
Measurement Principle Pressductor® Magnetoelastic Technology

Applications

  • Paper machines
  • Calenders
  • Coaters
  • Winders and unwinders
  • Film and foil processing lines
  • Printing and converting machinery
  • Textile production equipment

Product Description

The ABB PFTL 101B-5.0kN load cell converts mechanical force into highly reliable electrical signals using ABB's patented Pressductor® technology. Unlike conventional strain-gauge sensors, it offers exceptional resistance to overload, vibration, electrical interference, and harsh environmental conditions, ensuring long-term accuracy and operational reliability.

 

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