The electrical components are incorporated in a RF-tight case of stainless steel. The cables enter through glands. The RF-tight termination of the openings is produced by specially shaped lids. The conductors and equipment grounding conductor are connected by threaded bolts.

 

Features

  • General-purpose use through design with separate lines without cross talk
  • Use of single choke concept. Thus the insertion loss values are not reduced under all operating current conditions and not when operated with artificial mains networks (AMN) or other equipment with high leakage currents
  • Insertion loss to CISPR 17

Assembly

The filters are mounted to the wall panels of the facility. Special-formed mounting flanges and gaskets form the RF seal. A grounding stud is located in the shield wall adjacent to the filter positions.

 

 

standard insertion loss (B84299-xxxxx-x001)

Overview of power line filters

  • Filter for power lines, type B84299–D2160–....
    2 or 4 lines 16 A, 250 V ac and/or, 400 V ac
  • Filter for power lines, type B84299–D2320–....
    2 or 4 lines 32 A, 250 V ac and/or, 400 V ac
  • Filter for power lines, type B84299–D1630–....
    2 or 4 lines 63 A, 250 V ac and/or, 400 V ac
  • Filter for power lines, type B84299–D1100–....
    2 or 4 lines 100 A, 250 V ac and/or, 400 V ac

 

enhanced insertion loss (B4299-xxxxx-x003)

Overview of power line filters

  • Filter for power lines, type B84299–D2160–....
    2 or 4 lines 16 A, 250 V ac and/or, 400 V ac
  • Filter for power lines, type B84299–D2320–....
    2 or 4 lines 32 A, 250 V ac and/or, 400 V ac
  • Filter for power lines, type B84299–D1630–....
    2 or 4 lines 63 A, 250 V ac and/or, 400 V ac
  • Filter for power lines, type B84299–D1100–....
    2 or 4 lines 100 A, 250 V ac and/or, 400 V ac

 

mechanical design – a choice of

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