ABB Rectangular load cells PFVL141V
Rectangular load cells PFVL141V
Nominal load (MN):
0.63. 0.80. 1.0. 1.25. 1.6. 2.0. 2.5. 3.1. 4.0. 5.0. 6.3. 8.0. 10. 12.5. 14. 16. 18. 20. 22. 25. 28. 31. 35. 40. 45. 50. 56
PFVL141x QGPR104/102
Accuracy class (% of Fnom) ± 0.5 ± 1.0
Linearity deviation (% of Fnom) ≤± 0.5 ≤± 1.0
Hysteresis (% of Fnom) ≤ 0.2 ≤ 0.2
Repeatability error (% of Fnom) ≤ ± 0.1 ≤ ± 0.05
Compression (mm at Fnom) 0.05 0.05
Calibration error (% of Fnom) 0.1 0.1
Compensation for min. error +20 – +80°C +20 – +80°C
– Zero point drift ≤ ± 0.01%/°C ≤ ± 0.005%/°C
– Sensitivity drift ≤ ± 0.01%/°C ≤ ± 0.01%/°C
Working temperature range -10 – +90°C -10 – +80°C
Max. permitted short-term temp. +110°C +110°C
Storage temperature range -40 – +90°C -40 – +90°C
Application
ABB has many years of experience of installing load cells in all types of rolling mills. To achieve the best possible measurement results, certain basic rules must be observed during the installation of the load cell:
The entire force must pass through the load cell.
The force must be measured as close to the source of the force (the roll gap) as possible.
The load cells must be protected to the greatest possible extent from large bending, lateral and torsional forces.
Under the mill screw
For installation under the mill screw, the load cell can be combined with thrust bearings and pressure plates into a package attached to the mill screw.
This arrangement results in good force distribution, simple, inexpensive installation and easy servicing. In addition, there is no need to machine any surfaces on the roll stand. However, this arrangement does take up space in the roll window .
Under the lower back-up roll bearing
There must be a sufficiently large flat surface on the lower part of the roll stand to allow the installation of the load cell under the lower back-up roll bearing.
This arrangement has the advantage that there is no need to pay particular attention to the load cell during roll change. See also our offer regarding Load Cell Packages to the right .
| 2094-BC02-M02-S Kinetix 6000 Drive component |
| PCIE-5565PIORC-100A00 Ultra high speed fiber-optic Reflective Memory PCIE card |
| 6410-024-N-N-N Pacific stepper Drive |
| 22A-A2P3N114 Internal CE Compliant Filter |
| APPLICOM PCI1500S7 PCI Profibus Card |
| 760-P5-G5-S5-HI-A20-R feeder management relay |
| TIS600-124 Traco Power DIN rail power supply |
| 5466-1158 MicroNet Simplex 48/24 HDDIO-2 Smart-Plus module |
| 330180-50-00 5/8 mm Proximity Sensor |
| 330101-00-09-10-02-CN 3300 XL 8mm Proximity Transducer System |
| 3500/22M 138607-01 Standard transient data interface module |
| 330101-00-18-10-02-CN 3300 XL 8 mm Proximity Probe |
| 330101-00-20-10-02-05 3300 XL 8mm Proximity Transducer System |
| 330101-12-40-10-02-CN 3300 XL 8mm Proximity Transducer System |
| 330500-00-00 Velomitor Piezo-velocity Sensor |
| 330104-00-25-10-02-00 3300 XL 8mm Proximity Transducer System |
| IC693CPU363 90-30 series processor module |
| 84661-50 Velomitor Interconnect Cable |
| 330104-00-13-10-02-CN 3300 XL 8mm Proximity Transducer System |
| 330104-00-10-10-02-CN 3300 XL 8 mm Proximity Probes |
| 330104-00-08-10-02-05 3300 XL 8mm Proximity Transducer System |
| RED670 Line differential protection |
| 8237-1597 ProTech-GII is a configurable overspeed detection system |