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Radio-frequency integrated circuit (RFIC) chip(s) for providing distributed antenna system functionalities, and related components, systems, and methods

  • US 10,141,959 B2
  • Filed: 04/12/2018
  • Issued: 11/27/2018
  • Est. Priority Date: 03/23/2012
  • Status: Active Grant
First Claim
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1. A central unit for providing communications signals in a wireless communications system, comprising:

  • a radio-frequency (RF) communications interface configured to;

    receive downlink RF communication signals at a RF communications frequency for a RF communications service; and

    provide uplink RF communication signals at the RF communications frequency for the RF communications service;

    at least one RF integrated circuit (IC) (RFIC) chip comprising at least one of;

    a first frequency conversion circuitry configured to shift a frequency of the downlink RF communication signals to an intermediate frequency (IF) having a different frequency than the RF communications frequency, to provide downlink IF communications signals; and

    a second frequency conversion circuitry configured to shift the frequency of uplink IF communication signals to the RF communications frequency to provide the uplink RF communications signals, whereinthe downlink RF communication signals are comprised of MIMO downlink RF communication signals,the uplink RF communications signals are comprised of MIMO uplink RF communication signals,the downlink IF communications signals are comprised of MIMO downlink IF communication signals,the uplink IF communication signals are comprised of MIMO uplink IF communications signals; and

    the RF communications interface is further configured to;

    receive second MIMO downlink RF communication signals at the RF communications frequency for the RF communications service; and

    receive second MIMO uplink RF communication signals at the RF communications frequency for the RF communications service, the central unit further comprisingat least one second RFIC chip comprising at least one of;

    a third frequency conversion circuitry configured to shift the frequency of the second MIMO downlink RF communication signals to a second IF having a different frequency than the RF communications frequency, to provide second MIMO downlink IF communications signals; and

    a fourth frequency conversion circuitry configured to shift the frequency of second MIMO uplink IF communication signals to the RF communications frequency to provide the second MIMO uplink RF communications signals.

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