EP2829152A2

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

Abstract

This record has no abstract on file.

Term

Projected expiry 21 March 2033.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

42 claims: 23 independent, 19 dependent

  1. 1
    Claims of equivalent WO 2013142662 A2 We claim:1. A central unit for providing communications signals in a distributed antenna 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.
  2. 4
    The central unit according to any of claims 2 and 3, wherein the communications interface is included in the at least one RFIC chip.
  3. 5
    The central unit according to any of claims 2-4, wherein the communications interface further comprises a switching matrix configured to switch received downlink IF communications signals to selected RUs among the one or more RUs.
  4. 6
    The central unit according to any of the preceding claims, further comprising synthesizer circuitry configured to generate at least one first frequency conversion reference signal provided to the first frequency conversion circuitry and generate at least one second frequency conversion reference signal provided to the second frequency conversion circuitry.
  5. 9
    The central unit according to any of the preceding claims, wherein:the first frequency conversion circuitry is further configured to receive at least one first local oscillator (LO) signal to shift the frequency of the downlink RF communication signals to the IF to provide the downlink RF communication signals, and the second frequency conversion circuitry is further configured to receive at least one second LO signal to shift the frequency of the uplink IF communication signals to the RF communications frequency to provide the uplink RF communication signals.
  6. 10
    The central unit according to any of the preceding claims, further comprising:a second communications interface configured to: receive second downlink RF communication signals at a second RF communications frequency for a second RF communications service;and receive second uplink RF communication signals at the second RF communications frequency for the second RF communications service;at least one second RFIC chip comprising at least one of : a third frequency conversion circuitry configured to shift the frequency of the second downlink RF communication signals to a second intermediate frequency (IF) having a different frequency than the second RF communications frequency, to provide second downlink IF communications signals;and a fourth frequency conversion circuitry configured to shift the frequency of second uplink IF communication signals to the second RF communications frequency to provide the second uplink RF communications signals.
  7. 12
    The central unit according to any of the preceding claims, wherein:the 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, and the uplink IF communication signals are comprised of MIMO uplink IF communications signals;and further comprising: the RF communications interface 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;at 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.
  8. 14
    The central unit according to any of the preceding claims, wherein the at least one RFIC chip is comprised of a single RFIC chip.
  9. 15
    The central unit according to any of the preceding claims, wherein the at least one RFIC chip is comprised of a first frequency conversion RFIC chip comprising the first frequency conversion circuitry, and a second frequency conversion RFIC chip comprising the second frequency conversion circuitry.
  10. 16
    The central unit according to any of the preceding claims, wherein the first frequency conversion circuitry is comprised of a down conversion frequency conversion circuitry, the second frequency conversion circuitry is comprised of an up conversion frequency conversion circuitry.
  11. 17
    The central unit according to any of the preceding claims, wherein the first frequency conversion circuitry is comprised of an up conversion frequency conversion circuitry, the second frequency conversion circuitry is comprised of a down conversion frequency conversion circuitry.
  12. 18
    A method for providing communications signals in a central unit in a distributed antenna system, comprising:receiving downlink radio-frequency (RF) communication signals at a RF communications frequency for a RF communications service in a communications interface;receiving uplink RF communication signals at the RF communications frequency for the RF communications service in the communications interface;shifting 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 in a first frequency conversion circuitry;and shifting the frequency of uplink IF communication signals to the RF communications frequency to provide the uplink RF communications signals in a second frequency conversion circuitry;wherein at least one of the first frequency conversion circuitry and the second frequency conversion circuitry are provided in at least one RF integrated circuit (IC) (RFIC) chip.
  13. 20
    The method according to any of the preceding method claims, further comprising:synthesizing in synthesizer circuitry in the at least one RFIC chip, at least one first local oscillator (LO) signal and at least one second LO signal;providing the first LO signal to the at least one RFIC chip;and providing the second LO signal to the at least one RFIC chip.
  14. 22
    The method according to any of the preceding method claims, further comprising:receiving second downlink RF communication signals at a second RF communications frequency for a second RF communications service in the communications interface;receiving second uplink RF communication signals at the second RF communications frequency for the second RF communications service in the communications interface;shifting the frequency of the second downlink RF communication signals to a second IF having a different frequency than the second RF communications frequency, in a third frequency conversion circuitry provided in the at least one RFIC chip, to provide second downlink IF communications signals;and shifting the frequency of second uplink IF communication signals to the second RF communications frequency in a fourth frequency conversion circuitry provided in the at least one RFIC chip, to provide the second uplink RF communications signals
  15. 23
    The method according to any of the preceding method claims, wherein:the 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 communication signals are comprised of MIMO downlink IF communication signals, and the uplink IF communications signals are comprised of MIMO uplink IF communications signals;and further comprising: receiving second MIMO downlink RF communication signals at the RF communications frequency for the RF communications service in the communications interface;receiving second MIMO uplink RF communication signals at the RF communications frequency for the RF communications service in the communications interface;shifting the frequency of the second MIMO downlink RF communication signals to a second intermediate frequency (IF) having a different frequency than the RF communications frequency in a third frequency conversion circuitry provided in the at least one RFIC chip, to provide second MIMO downlink IF communications signals;and shifting the frequency of second MIMO uplink IF communication signals to the RF communications frequency in a fourth frequency conversion circuitry provided in the at least one RFIC chip, to provide the second MIMO uplink RF communications signals.
  16. 24
    A remote unit (RU) for providing received communications signals in a distributed antenna system, comprising:a radio-frequency (RF) communications interface configured to: receive downlink intermediate frequency (IF) communication signals at an IF for a RF communications service over a communications medium from a central unit;and receive uplink RF communication signals at a 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 downlink IF communication signals to a RF communications frequency of RF communications service to radiate downlink RF communications signals over a first antenna element;and a second frequency conversion circuitry configured to shift the frequency of uplink RF communication signals received from a second antenna element to the IF to provide uplink IF communications signals.
  17. 27
    The RU according to any of the preceding remote unit claims, further comprising a communications interface comprising communications circuitry configured to:receive the downlink IF communication signals from the central unit and provide the downlink IF communication signals to an up conversion RFIC chip;and receive the uplink IF communication signals and provide the uplink IF communications signals to the central unit.
  18. 29
    The RU according to any of claims 27 and 28, wherein the communications interface further comprises a switching matrix configured to switch received uplink IF communications signals to selected communications interfaces of the central unit.
  19. 30
    The RU according to any of the preceding remote unit claims, further comprising synthesizer circuitry configured to generate at least one first local oscillator (LO) signal provided to the at least one RFIC chip and generate at least one second LO signal provided to the at least one RFIC chip.
  20. 32
    The RU according to any of claims 30 and 31 , wherein:the first frequency conversion circuitry is further configured to receive the at least one first LO signal to shift the frequency of the downlink IF communication signals to the RF communications frequency to provide the downlink RF communications signals;and the second frequency conversion circuitry is further configured to receive the at least one second LO signal to shift the frequency of the uplink RF communication signals to the IF to provide the uplink IF communications signals.
  21. 34
    The RU according to any of the preceding remote unit claims, further comprising:a second communications interface configured to: receive second downlink intermediate frequency (IF) communication signals at a second IF for a second RF communications service;and receive second uplink RF communication signals at a second RF communications frequency for the second RF communications service;at least one second RFIC chip comprising at least one of: a third frequency conversion circuitry configured to shift the frequency of the second downlink IF communication signals to the second RF communications frequency of the RF communications service to radiate second downlink RF communications signals over a third antenna element;and a fourth frequency conversion circuitry configured to shift the frequency of second uplink RF communication signals received from a fourth antenna element to the second IF to provide second uplink IF communications signals.
  22. 38
    41. The method according to any of claims 38-40, further comprising:receiving second downlink intermediate frequency (IF) communication signals at a second IF for a second RF communications service in the RF communications interface;receiving second uplink RF communication signals at a second RF communications frequency for the second RF communications service;shifting the frequency of the second downlink IF communication signals to the second RF communications frequency of second RF communications service in a third frequency conversion circuitry provided in the at least one RFIC chip, to radiate a second downlink RF communications signals over a third antenna element;and shifting the frequency of second uplink RF communication signals received from a fourth antenna element to the second IF in a fourth frequency conversion circuitry provided in the at least one RFIC chip, to provide second uplink IF communications signals. The method according to any of claims 38-41 , wherein: the 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 communication signals are comprised of MIMO downlink IF communication signals, and the uplink IF communications signals are comprised of MIMO IF communications signals;and further comprising: receiving second downlink intermediate frequency (IF) communication signals at a second IF for the RF communications service in the communications interface;receiving second uplink RF communication signals at the RF communications frequency for the RF communications service;shifting the frequency of the second downlink IF communication signals to the RF communications frequency of RF communications service in a third frequency conversion circuitry provided in the at least one RFIC chip, to radiate the second downlink RF communications signals over a third antenna element;and shifting the frequency of second uplink RF communication signals received from a fourth antenna element to the second IF in a fourth frequency conversion circuitry provided in the at least one RFIC chip, to provide second uplink IF communications signals.
  23. 40
    44. A distributed antenna system for distributing communications signals, comprising:one or more remote units (RUs);and a central unit, comprising: a central unit radio-frequency (RF) communications interface configured to: receive downlink RF communication signals at a RF communications frequency for a RF communications service;and receive uplink RF communication signals at the RF communications frequency for the RF communications service;a down conversion RF integrated circuit (IC) (RFIC) chip comprising down conversion circuitry configured to shift the 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 an up conversion RFIC chip comprising up conversion circuitry configured to shift the frequency of uplink IF communication signals to the RF communications frequency to provide the uplink RF communications signals;and a central unit communications interface comprising communications circuitry configured to: receive the downlink IF communication signals and provide the downlink IF communications signals to one or more remote units (RUs) over a communications medium;and receive the uplink IF communication signals from the one or more RUs over the communications medium and provide the uplink IF communication signals to the up conversion RFIC chip;the one or more remote units (RUs) each comprising: a RU communications interface configured to: receive the downlink IF communication signals from the central unit for the RF communications service;and receive uplink RF communication signals at a RF communications frequency for the RF communications service;an up conversion RFIC chip comprising up conversion circuitry configured to shift the frequency of downlink IF communication signals to the RF communications frequency to radiate the downlink RF communications signals over a first antenna element;and a down conversion RFIC chip comprising down conversion circuitry configured to shift the frequency of uplink RF communication signals received from a second antenna element to the IF to provide the uplink IF communications signals.
Independent claims23