EP1607985A2

Multi-pair data cable with configurable core filling and pair separation

Abstract

An improved data telecommunications cable according to the invention includes a plurality of twisted pairs of insulated conductors, and a dielectric pair separator formed with a plurality of folds, to provide a plurality of grooves extending along a longitudinal length of the dielectric filler. Each twisted pair of insulated conductors is disposed within a groove of the dielectric pair separator. The data communications cable also includes a jacket assembly enclosing the plurality of twisted pairs of insulated conductors and the dielectric pair separator. The dielectric pair separator separates each twisted pair of insulated conductors from every other twisted pairs of insulated conductors with a spacing sufficient to provide a desired crosstalk isolation between each of the plurality of twisted pairs of insulated conductors. With this arrangement, the data communications cable of the invention may be used in high speed data transmissions while maintaining a form factor that has desired flexibility and workability, and provides a cable that is compatible with industry standard hardware, such as plugs and jacks. The data communications cable of the invention also has the additional benefit of a reduced size.

EP1607985A2, drawing sheet 1
Sheet 1 of 8

Term

Term ended

Projected expiry passed 25 February 2020, 6.6 years ago.

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34 claims: 4 independent, 30 dependent

  1. 1
    A communications cable comprising:a plurality of twisted pairs of insulated conductors comprising a first twisted pair of insulated conductors and a second twisted pair of insulated conductors;a configurable pair separator disposed between the plurality of twisted pairs of conductors in the finished communications cable and arranged so as to separate the first twisted pair of insulated conductors from the second twisted pair of insulated conductors and so as to be substantially flat in a radial cross-section taken through the finished communications cable;anda jacket enclosing the plurality of twisted pairs of insulated conductors and the configurable pair separator;wherein the plurality of twisted pairs of insulated conductors and the configurable pair separator are twisted about a common axis to form the finished communications cable.
  2. 13
    A data communications cable comprising:a first twisted pair of insulated conductors;a second twisted pair of insulated conductors;a dielectric pair separator disposed between the first twisted pair and the second twisted pair of insulated conductors, the dielectric pair separator being folded and arranged to provide a sufficient spacing between the first twisted pair of insulated conductors and the second twisted pair of insulated conductors so as to provide a desired crosstalk isolation between the first twisted pair of insulated conductors and the second twisted pair of insulated conductors;a jacket assembly enclosing the first twisted pair of insulated conductors, the second twisted pair of insulated conductors and the dielectric pair separator.
  3. 18
    A data communications cable comprising:a plurality of twisted pairs of insulated conductors,a dielectric pair separator formed with a plurality of folds to provide a plurality of grooves extending along a longitudinal length of the delectric pair separator;each twisted pair of insulated conductors of the plurality of twisted pairs of insulated conductors, being disposed within a corresponding groove of the dielectric pair separator;anda jacket assembly enclosing the plurality of the twisted pairs of insulated conductors and the dielectric pair separator.
  4. 33
    A method of producing a data communications cable, comprising the steps of:forming a dielectric pair separator around a round cob to provide a shaped pair separator;passing a plurality of twisted pairs of insulated conductors and the shaped pair separator through a first die which aligns the plurality of twisted pairs of insulated conductors with the shaped pair separator, and prevents twisting of the shaped pair separator and the plurality of twisted pairs of insulated conductors;further shaping the shaped pair separator with a plurality of folds to provide a formed pair separator having a plurality of grooves along the length of the formed pair separator;passing the formed pair separator and the plurality of twisted pairs of insulated conductors through an aperture in a second die to align the plurality of twisted pairs with the grooves of the formed pair separator;bunching the plurality of twisted pairs of insulated conductors and the formed pair separator with a third die, which forces the plurality of twisted pairs of insulated conductors into contact with the grooves of the formed pair separator, to maintain a spatial relationship between each of the plurality adjusted pairs of insulated conductors;andjacketing the plurality of twisted pairs of insulated conductors and the formed pair separator into the data communications cable.