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Victor Scott Shupe

age ~62

from Blountville, TN

Also known as:
  • Victor S Shupe
  • Scott S Shupe
  • Vada Scott Shupe
  • Vada Lea Shupe
  • Vada L Shupe
  • Veda L Shupe
  • Victor Shope
Phone and address:
780 Hamilton Rd, Blountville, TN 37617

Victor Shupe Phones & Addresses

    s
  • 780 Hamilton Rd, Blountville, TN 37617
  • 104 Kingston Ct, Murfreesboro, TN 37127 • 6159049405
  • Brentwood, TN
  • Hollister, CA
  • Cheyenne, WY
  • Mc Kenzie, TN
  • San Jose, CA
  • 807 N Highland Ave, Murfreesboro, TN 37130

Us Patents

  • Coaxial Communication Active Tap Device And Distribution System

    view source
  • US Patent:
    8495696, Jul 23, 2013
  • Filed:
    Apr 27, 2010
  • Appl. No.:
    12/768579
  • Inventors:
    John Pavlic - Port Matilda PA, US
    Mark Fox - Ramey PA, US
    Victor Scott Shupe - Murfreesboro TN, US
  • Assignee:
    ARRIS Solutions, Inc. - Suwanee GA
  • International Classification:
    H04N 7/173
    H04N 7/16
  • US Classification:
    725127, 725149
  • Abstract:
    An apparatus, system, and method for affordably distributing cable communication signals at greatly reduced power consumption levels with high signal quality with an active tap having gain stage characterized by low power (less than 1 Watt), low noise figure (less than 3 dB), high bandwidth (typically DC-2 GHz), and high gain (at least 15 dBmV).
  • Coaxial Communication Active Tap Device And Distribution System

    view source
  • US Patent:
    20050210529, Sep 22, 2005
  • Filed:
    Mar 22, 2004
  • Appl. No.:
    10/805226
  • Inventors:
    John Pavlic - Port Matilda PA, US
    Mark Fox - Ramey PA, US
    Victor Shupe - Murfreesboro TN, US
  • Assignee:
    C-COR.NET CORP. - State College PA
  • International Classification:
    H04N007/173
    H03G011/04
    H04N007/16
    H04B003/04
  • US Classification:
    725127000, 725105000
  • Abstract:
    An apparatus, system, and method for affordably distributing cable communication signals at greatly reduced power consumption levels with high signal quality with an active tap having gain stage characterized by low power (less than 1 Watt), low noise figure (less than 3 dB), high bandwidth (typically 2 GHz), and high gain (at least 15 dBmV).

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