Guarded coaxial cable assembly
View Patent ↗A guarded coaxial cable assembly including a micro-coaxial cable and at least one rail.
1. A guarded coaxial cable assembly comprising: a rail and a micro-coaxial cable extending in spaced apart relationship; a cableway formed from a length of the rail and the micro-coaxial cable encased in a substantially flat jacket; the rail having a cross-section and a location within the jacket chosen to guard the micro-coaxial cable by preferentially bearing transverse loads tending to further flatten the jacket; the rail, micro-coaxial cable and jacket materials being flexible and in combination operative to enable the cableway to substantially retain deformations consistent with bending a flat side of the cableway around window and door frame obstructions; the micro-coaxial cable extends between spaced apart rails; a micro-coaxial cable center line lying substantially between the rails; the jacket envelops the rails and the micro-coaxial cable and fills the spaces between them; an electrically conductive material incorporated into each of the rails; and, wherein the rails are operable to electrically interconnect a plurality of devices associated with one or more of capture, transport and utilization of a radio frequency signal.
2. The guarded coaxial cable assembly of claim 1 further comprising:
a first female coaxial cable connector attached to one end of the micro-coaxial cable; and,
a second female coaxial cable connector attached to an opposed end of the micro-coaxial cable.
3. The guarded coaxial cable assembly of claim 2 wherein the thickness of the flat cableway jacket is less than 7 mm.
4. The guarded coaxial cable assembly of claim 3 wherein the width of the flat cableway jacket is greater than 12 mm.
5. A method of guarding a coaxial cable comprising
the steps of providing first and second rails; orienting the rails in spaced apart relationship with a micro-coaxial cable therebetween; forming a cableway by encasing the rails and cable in a flattened jacket such that transverse loads tending to further flatten the jacket will be preferentially borne by the rails; choosing the rail, micro-coaxial cable and jacket materials such that in combination they enable the cableway to substantially retain deformations consistent with bending a flat side of the cableway around window and door frame obstructions; incorporating an electrically conductive material into each of the rails; and terminating the rails at opposite ends of the cableway with electrical connectors.