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    • 62. 再颁专利
    • Controlled-impedance cable termination using compliant interconnect elements
    • USRE47460E1
    • 2019-06-25
    • US15897677
    • 2018-02-15
    • Ardent Concepts, Inc.
    • Gordon A VintherSergio Diaz
    • H01R12/00H02G1/14H01R12/75H01R24/38
    • H02G1/14H01R12/75H01R24/38
    • An apparatus for terminating a controlled-impedance cable using compliant electrical contacts to provide an interface to another device. The terminator includes an anchor block for securing the cable. Optionally, the anchor block is electrically non-conductive. A conductive ferrule is installed on the cable shield and the cable end is dressed. The ferrule/cable assembly is installed in a through hole in the anchor block so the cable end is flush with the anchor block face. An insulating or conductive plate mounted to the anchor block holds the signal contact that electrically connects the center conductor to the device and optional ground contacts that electrically connect the ferrule to the device. The ground contacts surround the signal contact in a pattern that closely mimics the impedance environment of the cable. When using a conductive plate, the signal contact is insulated from the plate by an insulating centering plug or a non-conductive coating. An apparatus for terminating a controlled-impedance cable using compliant electrical contacts to provide an interface to another device. The terminator includes an anchor block for securing the cable. An electrically-conductive ferrule is installed on the cable shield and the cable end is dressed. The ferrule/cable assembly is installed in a through hole in the anchor block so that the cable end is flush with the anchor block face. An electrically-conductive plate mounted to the anchor block face holds the signal contact that electrically connects the center conductor to the device and optional ground contacts that electrically connect the ferrule to the device. The signal contact is insulated from the plate by an insulating plug. The ground contacts surround the signal contact in a pattern that closely mimics the impedance environment of the cable.
    • 63. 再颁专利
    • Controlled-impedance cable termination using compliant interconnect elements
    • USRE47459E1
    • 2019-06-25
    • US15923143
    • 2018-03-16
    • Ardent Concepts, Inc.
    • Gordon A VintherSergio DiazJeffrey G Hebert
    • H01R12/75H01R12/00H01R13/24H01R24/38H01R9/03H01R12/71
    • H01R24/38H01R12/714H01R12/75
    • An apparatus for terminating a controlled-impedance cable using compliant electrical contacts to provide an interface to another device. The terminator includes a conductive ground block for securing the cable by its ground shield and providing a common ground. Once the cable is anchored in the ground block, the block face and cable ends are dressed to make a reliable electrical contact with the compliant signal contact that electrically connects the cable center conductor to the device. An insulating or conductive plate mounted to the ground block holds the signal contact and optional ground contacts that electrically connect the ground block to the ground plane of the device. The ground contacts surround the signal contact in a pattern that closely mimics the impedance environment of the cable. When using a conductive plate, the signal contact is insulated from the plate by an insulating centering plug or a non-conductive coating. A controlled-impedance cable terminator using compliant electrical contacts to provide an interface to another device. The terminator includes a conductive plate with a face surface and a device surface. Signal through holes extend between the face surface and device surface. Each signal through hole has an insulating centering plug with a signal through aperture that has openings in the face surface and the device surface. The signal through aperture holds a skewed coil signal contact with contact points extending from each signal through aperture opening. Optionally, the plate includes ground through apertures that surround the signal through aperture. Each ground through aperture has openings in the face surface and device surface. The ground through aperture holds a skewed coil ground contact with contact points extending from each ground through aperture opening.