Electrical conductor for telecommunications cable
First Claim
1. A telecommunications cable having an air-core in which a plurality of insulated electrical conductors are provided, each of which comprises a conductor of diameter between 0.0126 inch and 0.0360 inch having insulation comprising an unpigmented inner layer of solid non-cellular polyolefin based composition of at least 2 mils thick, and an outer layer of cellular polyolefin based composition wherein the cells provide an air space which is at least 15% of the total volume of the outer layer and wherein the nominal mutual capacitance between conductors is at 83 nanofarads/mile and a predetermined dielectric breakdown value between conductors is obtained, the maximum outside diameter across the insulation being less than that of an electrical conductor of equal conductor diameter which provides the same nominal mutual capacitance with a solid non-cellular insulation of the same material as said inner layer.
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Accused Products
Abstract
Insulated electrical conductor for telecommunications cable in which two layers of insulation are provided. The inner of the two layers is a solid non-cellular construction and the outer layer is cellular. The nominal mutual capacitance between the conductor and an identical conductor is at a desired nominal value of 83 nanofarads/mile value between conductors above a desired minimum value while having an outside diameter across the insulation which is less than for a conductor of the same gauge which provides the same mutual capacitance and has a solid insulation of the same material as the inner layer.
37 Citations
4 Claims
- 1. A telecommunications cable having an air-core in which a plurality of insulated electrical conductors are provided, each of which comprises a conductor of diameter between 0.0126 inch and 0.0360 inch having insulation comprising an unpigmented inner layer of solid non-cellular polyolefin based composition of at least 2 mils thick, and an outer layer of cellular polyolefin based composition wherein the cells provide an air space which is at least 15% of the total volume of the outer layer and wherein the nominal mutual capacitance between conductors is at 83 nanofarads/mile and a predetermined dielectric breakdown value between conductors is obtained, the maximum outside diameter across the insulation being less than that of an electrical conductor of equal conductor diameter which provides the same nominal mutual capacitance with a solid non-cellular insulation of the same material as said inner layer.
Specification