GAUSSIAN CHAMBER CABLE DIRECT CONNECTOR
First Claim
1. A connector apparatus for an EMI (Electromagnetic Interference) enclosure, comprising:
- at least one conductor centrally and respectively located within at least one EMI enclosure comprising a geometrically shaped chamber, wherein said at least one EMI enclosure facilitates inter and intra pair signal isolation and eliminates EMI field effects with respect to the following cable applications;
a small form factor cable application, a high density cable application, and a high speed multiconductor copper-based cable application; and
an insulator ring disposed within said geometrically shaped chamber, wherein said insulator ring surrounds an internal enclosing geometrical component that includes a soldered terminated component and wherein said internal enclosing geometrical component in turn surrounds said at least one conductor.
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Abstract
A connector system, method and apparatus for an EMI enclosure such as a Gauss/Faraday cage or chamber. The connector system, method and/or apparatus includes one or more individual conductors located within the EMI enclosure to eliminate EMI/E&H field effects with respect to applications such as a small form factor cable applications, high density cable applications, and a high speed (e.g., greater than 1 Gbps) multiconductor copper-based cable applications. This approach therefore isolates individual or multiple cable signals (e.g., single conductors) within individual Gaussian/Faraday cages to eliminate EMI/E&H field effects for small form factor, high density, high speed (e.g., >1 Gbps) multiconductor copper based cable applications.
48 Citations
20 Claims
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1. A connector apparatus for an EMI (Electromagnetic Interference) enclosure, comprising:
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at least one conductor centrally and respectively located within at least one EMI enclosure comprising a geometrically shaped chamber, wherein said at least one EMI enclosure facilitates inter and intra pair signal isolation and eliminates EMI field effects with respect to the following cable applications;
a small form factor cable application, a high density cable application, and a high speed multiconductor copper-based cable application; andan insulator ring disposed within said geometrically shaped chamber, wherein said insulator ring surrounds an internal enclosing geometrical component that includes a soldered terminated component and wherein said internal enclosing geometrical component in turn surrounds said at least one conductor. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8)
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9. A connector apparatus for an EMI (Electromagnetic Interference) enclosure, comprising:
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at least one conductor centrally and respectively located within at least one EMI enclosure comprising a geometrically shaped chamber facilitates inter and intra pair signal isolation and eliminates EMI field effects with respect to the following cable applications;
a small form factor cable application, a high density cable application, and a high speed multiconductor copper-based cable application; andan insulator ring disposed within said geometrically shaped chamber, wherein said insulator ring surrounds an internal geometrically enclosing component that may be welded or soldered and wherein said internal enclosure component in turn surrounds said at least one conductor and a contact pin that is configured to match a wire gauge of said at least one conductor; and an impedance tuner. - View Dependent Claims (10, 11, 12, 13, 14)
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15. A connector apparatus for an EMI (Electromagnetic Interference) enclosure, comprising:
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a plug house that maintains at least one EMI enclosure among a plurality of EMI enclosures, wherein said at least one EMI enclosure comprises a geometrically shaped chamber; at least one conductor centrally and respectively located within said at least one EMI enclosure, wherein said at least one EMI enclosure eliminates EMI field effects with respect to the following cable applications;
a small form factor cable application, a high density cable application, and a high speed multiconductor copper-based cable application. - View Dependent Claims (17, 18, 19, 20)
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16. (canceled)
Specification